Conductive Polymer Solid Aluminum Capacitor Foundation of Teapo Electronic Capacitor Company stock listed in OTC market in Taiwan

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1 Company Profile Established: September 11th 1978 Capital: Revenue: USD 32 million USD 59 million Employees: 900 Listing: August 29 th 1998, Taiwan Stock Exchange Stock Code: 2375 Product Lines: Aluminum Electrolytic Capacitor Conductive Polymer Solid Aluminum Capacitor Milestones: 1956 Set-up Aluminum Capacitor Division at SAMPO Electronic 1975 First development and mass production at Low ESR product in Taiwan 1978 Foundation of Teapo Electronic Capacitor 1998 Company stock listed in OTC market in Taiwan 1998 Manufacturing plant in Dongguan,China 2001 Dongguan factory certified by ISO9001: Merge G-LUXON Electronic Corporation 2006 Manufacturing polymer capacitors 2008 Dongguan factory certified by ISO9001: Dongguan factory certified by ISO14001: Dongguan factory certified by ISO/TS16949: Dongguan factory certified by IECQ/QC080000:2012

2 1 CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS SURFACE MOUNT MINIATURE LARGE

3 Systematic Diagram of Teapo Capacitor Conductive Polymer Aluminum Solid Capacitors :Dip CR 105ºC, 2000hrs WV Ultra low ESR & High ripple CX 105ºC, 2000hrs WV Ultra low ESR & High ripple with bright Aluminum case P.42 P.44 CH 105ºC, 5000hrs WV Ultra low ESR Long Life CG 105ºC, 2000hrs WV Ultra low ESR CF 105ºC, 2000hrs WV Large CS 105ºC, 5000hrs 25-50WV High Voltage Long Life P.51 P.33 P.46 P.49 CA future 125ºC, 2000hrs High Temperature Long Life CT 125ºC, 1000hrs 6.3~25WV High CP 105ºC, 8mm heigh &Ultra low ESR WV,3000hrs 10-25WV, 2000hrs CY 105ºC, 2000hrs WV Ultra low ESR with sleeve CZ 105ºC, 2000hrs WV Ultra low ESR Small size P.53 P.36 P.38 P.40 Conductive Polymer Aluminum Solid Capacitors :SMD VB 105ºC, 2000hrs 2.5~25WV Low Profile P.58 VS 105ºC, 5000hrs 4~20WV Long Life P.60 VP 105ºC, 2000hrs WV Standard P.55 future VD 105ºC, 2000hrs 35WV High Voltage VR future 125ºC, 2000hrs WV High temperature VQ future 125ºC, 1000hrs High temperature future VC 105ºC, 2000hrs High CV

4 Systematic Diagram of Teapo Capacitor Chip Types : YV 105ºC, 1000~2000hrs Low Impedance HV 125ºC, 2000hrs Ultra Low Impedance High temperature P.72 P.80 DV 105ºC, 2000hrs Long Life SV 105ºC, 1000hrs Low Profile ZV 105ºC, 1000hrs Low Impedance EV 105ºC, 2000hrs Ultra Low Impedance XV 105ºC, 3000~5000hrs Ultra Low Impedance Long Life P.68 P.66 P.70 P.74 P.78 NV 105ºC, 2000hrs Non-Polar GV 85ºC, 2000hrs Low Profile CV 85ºC, 2000hrs Low leakage current JV 105ºC, 2000hrs Low profile, Ultra low P.84 P.62 P.82 P.76 FV 85ºC 3000~5000hrs Long Life P.64 Miniature Radial Lead ( General Purpose ) : SK 85ºC, 2000hrs General purpose SE 105ºC, 1000hrs General purpose SH 105ºC, 2000hrs General purpose P.86 ( Low Profile ) : P.89 P.92 D5 85ºC, 1000hrs 5mm height S5 105ºC, 1000hrs 5mm height H5 105ºC, 2000hrs 5mm height D7 85ºC, 1000hrs 7 / 9mm heihgt P.95 S7 105ºC, 1000hrs 7 / 9mm heihgt P.97 H7 105ºC, 2000hrs 7 / 9mm height P.99 P.101 P.103 P.105 ( Low Leakage Current ) : (High Temperature ) : (LEDLighting ) : SB 105ºC, 1000hrs Low Leakage Current AK 125ºC, 2000~5000hrs High Temperature Long Life P.117 P.143 TE 105,12000~20000Hrs LED Lighting Ultra Long Life P.154

5 Systematic Diagram of Teapo Capacitor Miniature Radial Lead Types : ( Bi / Non-polar ) : SN 105ºC, 1000hrs Non-Polar RN 85ºC, 1000hrs Non-Polar RB 85ºC, 1000hrs Non-Polar For Coupling P.109 P.107 P.111 BX 105ºC, 1000hrs Bi-Polar P.115 SR 85ºC, 1000hrs Bi-Polar P.113 ( Low Impedance ) : SJ SC 105ºC, 1000~3000hrs Low ESR SY 105ºC, 2000~6000hrs Low Impedance & Long Life TA 105ºC, 4000~10000hrs Low Impedance & Long Life ST 105ºC, 4000~10000hrs Low Impedance & Long Life SZ 105ºC,1000~2000hrs Ultra Low ESR &High Ripple SJ 105ºC, 1000~5000hrs Low Impedance & Long Life P.121 P.129 P.133 TB 105ºC, 5000~6000hrs Low Impedance & Long Life new TC 105ºC, 6000~10000hrs Low Impedance & Long Life P.135 P.137 P.124 P.127 P.137 ( High Ripple ) : SQ 105ºC, 2000hrs High Ripple SG 105ºC, 3000~5000hrs Long Life SP 105ºC, 10000hrs Long life SU 105ºC, 12000hrs Long life P.145 P.147 P.150 P.151 ( Slim Types ) : SQ TH 105ºC,, 2000hrs General High purpose Ripple TG 105ºC, 5000hrs High Ripple Long life TP 105ºC, 10000hrs High Ripple Long life P.156 P.158 P.160 Large Can Types : LS 105ºC, 2000hrs Smaller size LM hours Smaller size long life LK 105ºC, 7000hrs Long Life P.178 P.187 P.193 LF LH LG LJ LQ 85ºC, 3000hrs Long Life 85ºC, 2000hrs General purpose 105ºC, 2000hrs General purpose 105ºC, 3000hrs Long Life 105ºC, 5000hrs Long Life P.167 P.162 P.172 P.181 P.189

6 Recommended Applications Conductive Polymer Chip Type Miniature Aluminum 6.3~100V Miniature Aluminum 160~500V Large Can Automotives CT HV AK,ST SP LQ Battery Charge CF,CR,CG Whole Whole Whole -- Display CG Whole Whole Whole Whole Digital Still Camera VP,CG Home Appliance CG Whole Whole Whole Whole Lighting CG,CF XV,HV SJ,SY,ST,AK SQ,SG,SP -- MB CR,CG,CX Whole Whole Whole -- NB VP Networks CG,CF XV,HV SJ,SY,ST SG,SP -- Power CG,CF,CR,CT Whole Whole Whole Whole TFT frame -- SV,DV SH,SC SH -- Type Gaming VP GV,SV SK,SH SK,SH LH,LG Audio(stereo) Whole Whole Whole Vedio (DVD) VP,CG -- S5,S7,SK,SH,SC,SY SK,SH -- Toys VP -- SK SK LH 1 Conductive Polymer Aluminum Solid Electrolytic Capacitors TEAPO LUXON Features Endurance (+R=With ripple) Voltage Range (VDC) Capacitanc e Range (uf) Page CG CG Ultra Low ESR hours 2.5 ~25V 10 ~ CP CP 8 mm height & Ultra Low ESR hours 2.5 ~25V 10 ~ CY CY Ultra Low ESR with sleeve hours 6.3 ~16V 150 ~ CZ CZ Ultra Low ESR with Small size hours 2.5 ~16V 100 ~ CR CR Ultra Low ESR & Higher Ripple Current hours 2.5 ~6.3V 270 ~ CX CX Ultra Low ESR & Higher Ripple Current with bright Aluminum case hours 2.5 ~28V 33~ CF CF Super Low ESR & Large hours 2.5 ~63V 10~ CS CS High Voltage & Long Life /5000hours 25~50V 39~ CH CH Ultra Low ESR & Long Life hours 2.5 ~16V 100 ~ CT CT High Temperature hours 6.3 ~25V 10 ~ VP VP SMD Standard hours V 22 ~ VB VB SMD Low Profile hours 2.5~25V 33~ VS VS SMD Long life and Ultra low ESR hours 4~20V 22~470 60

7 2 Surface Mount Aluminum Electrolytic Capacitors TYPE TEAPO LUXON GV GV Features Low profile V-Chip Endurance (+R=With ripple ) hours *General Low leakage Low Profile * Low Impedance Long Life Voltage Range (VDC) Range (uf) 4~100 1~1500 Page 62 FV FV Long life V-Chip ~5000hours SV SV Low profile V-Chip hours * * * 4~100 1~1000 4~100 1~ DV DV Long life V-Chip hours * 6.3~450 1~ ZV ZV Low impedance V-Chip hours+R * 4~50 1~ Vertical Chip YV EV YV EV Low impedance V-Chip Ultra Low impedance V-Chip ~2000hours+R hours+R * * 6.3~50 1~ ~50 4.7~ JV JV Low profile vertical chip hours+R * 6.3~35 10~ XV XV Ultra Low impedance V-Chip ~5000 hours+r * * 6.3~50 1~ HV HV Higher temperature range V-Chip hours * 6.3~50 47~ CV CV Low leakage current V-Chip hours * 6.3~50 1~ NV NV Non-polarized V-Chip hours * 6.3~35 1~ Miniature Aluminum Electrolytic Capacitors TYPE TEAPO LUXON Features Endurance (+R=With ripple) General Minlature Long Life Low impedance Voltage Range (VDC) Range (uf) Page Gerenal Type SK SE (SEK) SH GR SE SM General purpose General purpose Miniature General purpose hours hours hours * * * 6.3~500 1~ ~450 1~ ~500 1~ D5 SF 5 mm height hours 4~50 1~ * S5 FX 5 mm height hours * 4~50 1~ Low Profile H5 D7 H5 SS 5 mm height 7 & 9 mm height hours hours * * * 4~50 4~63 1~330 1~ S7 SX 7 & 9 mm height hours * 4~63 1~ H7 H7 7 & 9 mm height hours * * 4~63 1~

8 TYPE TEAPO LUXON Features Endurance (+R=With ripple) General Miniature Long Life Low Impedance High Ripple Voltage Range (VDC) Range (uf) Page RN RN Non-polar hours * * 4~250 1~ Bi/Non - polar SN RB SR RX RB BP Non-polar Non-polar for crossover Bi-polar, Horizontal correction hours hours hours * * * * 6.3~250 25~100 25~50 1~2200 1~ ~ BX BX Bi-polar, Horizontal correction hours * 25~50 1~ SB LX Low leakage current hours * 6.3~100 1~ SC LZ Low ESR and high frequency ~3000hours+R * 6.3~ ~ SJ LU Low impedance and high ripple ~5000hours+R * * 6.3~ ~ TB TB Low impedance and high ripple ~6000hours+R * * 6.3~35 27~ Low Impedance SY LT Low impedance and long life TA TA Low impedance and long life ST ST Low impedance and long life ~6000hours+R ~10000hours+R ~10000hours+R * * * * * * 6.3~ ~ ~35 33~ ~ ~ TC TC Low impedance and long life NEW ~10000hours+R * * * 6.3~ ~ SZ LW Ultra low ESR ~2000hours+R * 6.3~16 470~ High Temperature AK AK High Temperature and Long Life hours * * 10~ SQ LB High ripple and high voltage hours+R * 160~ ~ High Ripple SG SP LC SP High ripple and long life High ripple and long life ~5000hours+R ~10000hours+R * * * * 160~ ~ ~ ~ SU SU High ripple and long life ~12000hours+R * * 160~ ~ LED Lighting TE TE LED Lighting and Ultra Long Life ~20000Hrs+R * * 160~ ~ Slim capacitors TH TH General purpose hours TG TG High ripple and long life ~5000hours+R TP TP High ripple and long life ~10000hours+R * * * * 250~450 10~150 * 250~450 10~ ~450 10~ Large Can Type Aluminum Electrolytic Capacitors TYPE TEAPO LUXON Features Endurance (+R=With ripple) General Miniature Long Life Sohenl Rroof Voltage Range (VDC) Range (uf) Page Snap-in LH TW General purpose hours+R LF LF Long life hours+R * LG HW LS LS LJ LJ General purpose hours+R Smaller size hours+R Long life hours+R LM LM Smaller size and long life hours+R * * * * LQ LQ Long life hours+R * * * 6.3~500 56~ ~450 56~ ~500 47~ ~ ~ ~ ~ ~450 82~ ~ ~ LK LK Long life hours+R * 160~ ~

9 1-1 Precautions in Using Aluminum Electrolytic Capacitors Please note the following recommendations when using capacitors: 1. Electrolytic capacitors for DC applications require polarization. Confirm the polarity before use. The circuit life may be shortened or the capacitor may be damaged if insert in reversed polarity. For use on circuits whose polarity is occasionally reversed, or whose polarity is unknown, use non-polar capacitors. Also note that the electrolytic capacitors cannot be used for AC applications. 2. Do not apply a voltage exceeding the capacitor's voltage rating. If a voltage exceeding the capacitor's voltage rating is applied, the capacitor may be damaged by increased leakage current. When using the capacitor with AC voltage do not exceed the rated voltage. 8. Cleaning circuit boards after soldering. Halogenated hydrocarbon cleaning solvents are not recommended for use in cleaning capacitors supplied with exposed end seals. Where cleaning with a halogenated solvent is desired, capacitors should be ordered with an Epoxy-coated end seal. 9. Do not apply excessive force to the lead wires or terminals. If excessive force is applied to the lead wires and terminals, they may be broken or their connections on the internal elements may be affected. (For strength of terminals, please refer to JIS C :2010and C :2010. ) 3. Do not allow excessive ripple current passing. Use the electrolytic capacitor at current value within the permissible ripple range. If the ripple exceeds the specified value, request capacitors for high ripple current applications. 4. Ascertain the operation temperature range. Use the electrolytic capacitors according to the specified operation temperature range. Use at room temperature will ensure a longer life. 10. Keep the following clearance between the vent of the capacitor and the case of the appliance. Do not block the operation of the vent, unless otherwise described on the catalogues or product specifications. The narrower clearance may adversely affect the vent operation and result in an explosion of the capacitor. 5. The electrolytic capacitor is not suitable for circuits which are charged and discharged repeatedly. If used in circuits which are charged and discharged repeatedly, the capacitance value may drop or the capacitor may be damaged. Please consult our engineering department for assistance in these applications. 6. When capacitors have been left unused for long time, use them only after due voltage treatments. Long storage of capacitors tends to rise their leakage current levels. In such cases, be sure to provide the necessary voltage treatment before use. 7. Be careful of temperature and time when soldering. When soldering a printed circuit board with various components, care must be taken that the soldering temperature is not too high and that the dipping time is not too long. Otherwise, there will be adverse effect on the electrical characteristics and insulation sleeve of electrolytic capacitors. In the case of small -size electrolytic capacitors, nothing abnormal will be occurred if dipping is performed at less than 260 for less than 10 seconds. Case diameter Clearance ψ6.3 to ψ16 mm 2 mm minimum ψ18 to ψ 35 mm 3 mm minimum ψ40 mm & up 5 mm minimum Fig.1-1 Attention The description in this catalogue is subject to change without prior notice for product improvement. Therefore, please confirm the specification before ordering products. The general characteristics, reliability data, etc., described in this catalogue should not be construed as guaranteed values, they are merely standard values. Before using the products, please read the notes in this catalogue carefully for proper use.

10 1-2 Technical Concepts 1-3 The Function of Electrolytic Capacitors 1. The material and structure of Electrolytic Capacitors The electrolytic capacitors could be widely used in appliance (ie. TV, radio, Electrolytic Capacitor is a simple module. It simply contains an insulator audio equipment, washing machine and air conditioner etc. ), computer between relative conductors in an electrode. The major internal raw material equipment (mother board, image device & the peripherals such as the printer contains an element constructed by an separator paper wrap around the, drawing device, scanner etc), communication equipment,, measure anode foil and cathode foil, which is then impregnated with the electrolyte instrument and also the industrial instrument, airplane, firebomb,, inserted into an aluminum case and sealed. satellite etc. *According to the inflict electric wave & using purpose, it basically with some classified purposes as below : 1. DC Voltage : a. For Momentary High Voltage : For using to the impulse generator such as the shock wave resistance test of the heavy electric machine. b. For High Electric Current : For using to the welding machine, X- Ray facility, copy machine and discharge processing device. c. For DC High Voltage : The electrolytic capacitor and rectifier composing, a special DC high voltage been happened after charged, for using to the power of electronic microscope and accelerator. d. For Integration & Memory : For either memory circuit or compare circuit inside the calculator. 2. The DC voltage that with alternate ingredient : a. For Wave Filter : Combination with the chip resistor & inductor as a internet, to be past by DC current or some frequency to closure or decline some other frequency. Fig.1-2 b. For Bypass : A parallel track that outside from the circuit element, the IC 2. Production Processes (integrated circuit) has been rapidly developing in this years and thus a 1. Etching : The process to increase surface area of aluminum foil by using miniaturization or chip of electrolytic capacitors for by pass was chemical erosion or chemical corrosion method is called Etching. conducted. Normally chemical corrosion method uses the ripple current of c. For Coupling : Combination of the electrolytic capacitor, chip resistor and electrolyte, combination of the liquid and temperature to determine inductor and thus coupling together. the size, shape, and quantity of the dense network of microscopic d. For Arising of Toothed Wave : Composing of RC charge/ discharge circuit channels on the aluminum foil surface. through the electrolytic capacitor as well as the resistor and a toothed wave 2. Forming : The production process of the anode aluminum foil of electrolytic to be created by the RC charge/discharge circuit. capacitors is by anodic oxidation of the etched aluminum foil. e. For Reverse (Change) of Circuit : The equipment for change the AC The production of the cathode aluminum foil sometimes involves voltage to DC voltage. oxidation in special purposes. This anodic oxidation process is called Forming. Boric acid or organic acid is used for high voltage 3. For AC voltage : forming and phosphoric acid or ammonium adipate is used for a. For Power Improving : Connect the end loading of layout transporting & low voltage forming in order to obtain stable natural oxide layer electrolytic capacitor for power improving. of Al 2 O 3. b. For Wave Filter : Prevention of external interference in SCR circuit, use 3. Slitting : The cutting of the aluminum foil and separator paper according the LC wave filter circuit to inhibit or erase the interference. to the required length. c. For Phase Across : Phase change of the inductive electromotor (motor) with 4. Winding : The stitching or cold welding of cut anode and cathode foils and single phase. tab terminal, and wrap the electrolytic paper in between the anode and cathode, then fix the end with glue or sticky tape, and attached leads is called the capacitor "element". 5. Impregnation : The process of eliminating water from the elements by pressurizes or vacuum in order to soak the element with the electrolyte is called Impregnation. The elements fully filled with electrolyte is then centrifuged to remove excess electrolyte. 6. Assembly : The elements seal with rubber to stop the leakage of electrolyte then slip into a sleeve to form the final product. 7. Aging : The purpose of Aging is to repair the oxide film damage by recharging and electrolyte.

11 1-4 Basic Electrical Characteristics 1. (E.S.C.) C : (F) R : Equivalent series resistance(ω) L : Equivalent series inductance(h) Fig.1-3 Simplified equivalent circuit diagram of an electrolytic capacitor DF The capacitive component of the equivalent series circuit (equivalent series capacitance ESC) is determined by applying an alternate voltage of 0.5V at a Temperature( ) frequency of 120 Hz. Fig 1-7 Dissipation factor vs. temperature Temperature dependence of the capacitance The capacitance of an electrolytic capacitor depends on the temperature : with decreasing temperature, the viscosity of the electrolyte increases reducing its conductivity. The capacitance will decrease if the temperature decreases. Furthermore temperature drifts cause armature dilatation and therefore capacitance changes (up to20%, from 0 to 80 C). This phenomenon is more evident for electrolytic capacitors than for other types. DF Frequency Fig 1-8 Dissipation factor vs. frequency CAP Temperature( ) Fig 1-4 change vs. temperature 3. Equivalent series resistance (E.S.R.) The equivalent series resistanceis the resistive component of the equivalent seri circuit. The ESR value depends on frequency and temperature and is related to the tanδ by the following equation : Frequency dependence of the capacitance The tolerance limits of the rated capacitance must be taken into account when calculating this value. CAP ESR Frequency Fig 1-5 change vs. frequency Temperature( ) Fig 1-9 ESR change vs. temperature 2. Dissipation factor (tanδ) The resistance of the electrolyte decreases strongly with increasing The dissipation factor is the ratio between the active and the reactive power for temperature. a sinusoidal waveform voltage. It can be thought as a measurement of the gap between an actual and an ideal capacitor. D.F. = tanδx 100 (%) =ωcr x 100 (%) = 2πfCR x 100 (%) where: R = Equivalent Resistance C = Equivalent ω = 2πf ESR Frequency Fig 1-6 The tanδ δ is measured with the same set up as for the series capacitance ESC. Fig 1-10 ESR change vs. frequency

12 4. Impedance (Z) Re is the most temperature dependant component of electrolytic capacitor The impedance of an electrolytic capacitor results from here below circuit equivalent circuit. The electrolyte resistivity will decrease if the temperature rise formed by the following individual equivalent series components : In order to obtain a low impedance value all over the temperature range, Re must be as little as possible, but too low Re values means a very aggressive electrolyte and then a shorter life of the electrolytic capacitor at the high temperatures. A compromise must be reached. Fig Leakage current (L.C.) Due to the aluminum oxidelayer that serves as adielectric, a small current will continueto flow even after a DC voltage has been applied for long periods. Co = Aluminum oxide capacitance (surface and thickness of the dielectric) This current is called leakage current. A high leakage current flows after Re = Resistance of electrolyte and paper mixture (other resistances not applying a voltage to the capacitor and then decreases in few minutes (e.g. after depending on the frequency are not considered : tabs, plates, and so on) a prolonged storage without any applied voltage). In the course of the Ce = Electrolyte soaked paper capacitance continuous operation, the leakage current will decrease and reach an almost L = Inductive reactance of the capacitor winding and terminals. constant value. After avoltage free storage the oxide layer may deteriorate, especially at high The impedance of an electrolytic capacitor is not a constant quantity that retains temperature. Since there are no leakage current to transport oxygen ions to the its value under all the conditions : it changes depending on the frequency and anode, the oxide layer is not regenerated. The result is that a higher than norma the temperature. leakagecurrent will flow whenavoltageis appliedafter prolongedstorage. As the oxide layer is regenerated in use, the leakage current will gradually decrease to The impedance as a function of frequency (sinusoidal waveform) for a certain its normal level. temperature can be represented as follows : The relationship between the leakage current and the voltage applied at constant temperature can be shown schematically as follows : Fig 1-14 Where : VF = Forming voltage If this level is exceeded a large quantity of heat and gas will be generated and - Capacitive reactance predominates at low frequencies the capacitor could be damaged. - With increasing frequency, the Capacitive reactance Xc=1/ωCo decreases VR = Rated Voltage until it reaches the order of magnitude of the electrolyte resistance Re (A) VS = Surge voltage - At even higher frequencies, the resistance of the electrolyte predominates : It lies between VR and VF: the capacitor can be subjected to VS for short period Z= Re (A - B) only. - When the capacitor's resonance frequency is reached (ω0), capacitive and cancel each other 1/ωCinductive reactance mutually cancel each other 1/ωCe =ωl,ω0=sqr(1/lce)(c). - Above this frequency, the inductive reactance of the winding and its terminals (XL=Z=ωL) becomes effective and leads to an increase in impedance. Generally speaking it can be estimated that Ce 0.01 Co. The impedance as a function of frequency (sinusoidal waveform) for different temperature values can be represented as follows (typical values) :

13 1-5 Reliability (1)The bathtub curve: Aluminum electrolytic capacitors feature failure rates shown by the following bathtub curve. T x is ditto. where T c is the surface temperature ( ) of capacitor case K c is transfer coefficient between element and case of capacitor from table below: Dia 8ψ 10ψ 12.5ψ 16ψ 18ψ 22ψ 25ψ 30ψ 35ψ 13ψ K c The estimated life is limited to 15 years, if it exceeds 15 years, take 15 years as standard. Fig.1-15 Bathtub curve The formula of Equivalent Resistance (ESR) a. Initial failure period The operating frequency of ESR, DF, f & C must be the same, usually, Deficient Capacitors include any products before dispatch that may they test at 120 Hz. have some deficiency caused by the design, production process or used in ESR=DF / 2πf C (2) inappropriate environments. Where DF: Dissipation Factor(tanδ) b. Random failure period f : Operating frequency(hz) The capacitors have a low defect ratio in the period after it has been stabilized. C: (F) c. Wear out failure period Estimation of life considering the ripple current The performance of capacitors will decrease with an increase in usage The ripple current affects the life of a capacitor because the internal loss (ESR) period.the malfunction rate may vary due to the structural design. generates heat.the generated heat will be: P = I 2 R (3) 1-6 Circuit Design (1) Environmental and Mounting Conditions Where I : Ripple current(arms.) Please make sure the environmental and mounting conditions to which R: ESR(Ω) Fig:1-16 the capacitor will be exposed to are within the conditions specified in TEAPO s catalog. At this time the increase in the capacitor temperature will be: T= I 2 R / AH------(4) (2) Operating Temperature, Equivalent Resistance(ESR), Ripple Current and Load Life Where T: Temperature increase in the capacitor core(degree) MTTF(Mean-Time-TO-Failure) means the useful life at room I : Ripple current(arms) temperature 25 R: ESR(Ω) A: Surface area of the capacitor (cm 2 ) Load life: H: Radiation coefficient(approx.1.5~ W/ cm 2. ) If the capacitor's max. operating temperature is at 105 (85 ), then after applying capacitor's rated voltage (WV) for L 0 hours at 105 (85 ), The above equation (4) shows that the temperature of a capacitor increases in the capacitor shall meet the requirements in detail specification. proportion to the square of the applied ripple current and ESR, and in where L 0 is called "load life" or "useful life (lifetime) at 105 (85 )". inverse proportion to the surface area. Therefore, the amount of the ripple L x = L 0 x 2 (To-Tx) /10 x K - Tx / 5 current determines the heat generation, which affects the life. The values of where Tx= T 0 x ( Ix / I 0 ) 2, Ix>I 0,K=4; Ix I 0,K=2 T varies depending on the capacitor types and operating conditions. The usage is generally desirable if T remains less than 5.The measuring Ripple life: point for temper-ature increase due to ripple current is shown below. If the capacitor's max. operating temperature is at 105 (85 ), then after applying capacitor's rated voltage (WV) with the ripple current for L r Measuring point hours at 105 (85 ), the capacitor shall meet the requirements in detail (w/o Sleeve) specification. where L r is called "ripple life" or "useful ripple life (ripple lifetime) at 105 (85 )". L x = L r x 2 (To-Tx) /10 ( To - Tx) /5 x K where Tx= T 0 x ( Ix / I 0 ) 2, Ix>I 0,K=4; Ix I 0,K=2 The (ripple) life expectancy at a lower temperature than the specified maximum temperature may be estimated by the following equation, but this expectancy formula does not apply for ambient below +40. L 0 = Expected life period (hrs) at maximum operating temperature allowed L r = Expected ripple life period (hrs) at maximum operating temperature allowed (3) Application L x = Expected life period (hrs) at actual operating temperature Aluminium Electrolytic Capacitors are normally polarized. Reverse T 0 = Maximum operating temperature ( ) allowed voltage or AC Voltage should not be applied. When polarity may T x = Actual operating ambient temperature ( ) flip over, non-polar type capacitors should be used, but the non-polar I x = Actual applied ripple current (marms) at operating frequency f 0 (Hz) type cannot be used for AC circuits. I 0 = Rated maximum permissible ripple current I R (marms) x frequency multiplier (C f ) at f 0 (Hz) (4) Applied Voltage Ripple Current calculation: no need Temperature Multiplying Factor Do not exceed the rated voltage of capacitor. For Ripple life,ix Should be 80% equal or more of Io,if less than 80%, calculate with 80%. T 0 5 = Maximum temperature rise ( ) for applying I 0 (marms) Tc =Temperature rise ( ) of capacitor case for applying Ix (ma/rms) T x = Temperature rise ( ) of capacitor element for applying I x (marms) =K c T c =K c (T c -T x )

14 ) (5) Insulation (3) Soldering Aluminum Electrolytic Capacitors should be electrically isolated All TEAPO's cp wires of electrolytic capacitors are without lead (Pb). from among the following points. Soldering conditions(temperatures, times) should be within the specified conditions which are described in the catalog or specification she a. Aluminum case, cathode lead wire, anode lead wire and circuit pattern. If it is necessary that the leads must be formed due to a mismatch of the b. Auxiliary terminals of snap-in type, anode terminal, outward terminal lead space to hole space on the board, bend the lead prior to soldering and circuit pattern. without applying too much stress to the capacitor. Soldering iron should never touch the capacitor's body. (6) Conditions of use Besides SMD for polymer type,do not reflow soldering for other type capac Aluminum Electrolytic Capacitors must not be used under the No high temperature following conditions: a. Damp conditions such as water, saltwater spray, or oil spray or (4) Flow soldering fumes. High humidity or humidity condensation situations Do not dip capacitor's body into melted solder. b. Ambient conditions that include toxic gasses such as hydrogen Din of flow soldering for the capacitors should be limited at 260,10sec. sulfide, sulfurous acid, nitrous acid, chlorine, ammonium, etc. Flux should not be adhered to capacitor's body but only to its terminals. c. Ambient conditions that expose the capacitors to ozone, Other devices which are mounted near capacitors should not touch ultraviolet rays and radiation. the capacitors. d. Severe vibration or shock that exceeds the conditions specified in the catalog or specifications sheets. (5) Lead free type reflow soldering condition(smd For E-CAP) For Aluminum Electrolytic Capacitors (7) Recommended design considerations For reflow, use a thermal condition system such as infrared radiation When designing a circuit board. Please pay attention to the following: or hot blast. Vapor heat transfer systems are not recommended. a. Make the hole spacing on the PC board match the lead space Observe proper soldering conditions(temperature, time, etc. of the capacitor. Do not exceed the specified limits. b. There should not be any circuit pattern or circuit wire above Repeated reflowing : the capacitors. *Avoid reflowing twice if possible. c. In case the capacitor's vent is facing the PC board, make a gas *If repeated reflowing is unavoidable,contact us after measuring the release hole on PC board. first and the second reflow profiles and reflow interval at your side. d. Do not install screw terminal capacitor with end seal side down. *Do not attempt to reflow three times. When you install a screw terminal capacitor in a horizontal mount, the positive terminal must be in the upper position. e. Do not locate any wiring and circuit patterns directly above the Peak temperature T capacitor's vent. 1-7 Caution for Mounting (1) Caution before assembly Aluminum Electrolytic Capacitors cannot be recycled after mounting and applying electricity in unit. The capacitors that are removed from 25 PC board for the purpose of measuring electrical characteristics at a Time periodical inspection should only berecycled to the same position. Aluminum Electrolytic Capacitors may accumulate charge Fig:1-17 naturally during storage. In this case, discharge through a 1KΩ resistor before use. Size Leakage current of Aluminum Electrolytic Capacitors may be increase during long storage time. In this case, the capacitors should be subject to voltage treatment through a 1KΩ resistor before use. (2) In the assembly process Please confirm ratings before installing capacitors on the PC board. Please confirm polarity before installing capacitors on the PC board. Do not drop capacitors on the floor, nor use a capacitor that was dropped. Be careful not to deform the capacitor during installation. Please confirm that the lead spacing of the capacitor matches the hole spacing of the PC board prior to installation. The snap-in type of capacitors should be mounted firmly on the PC board without a gap between the capacitor body and the surface of PC board. Avoid excessive force when clinching lead wire during auto-insertion process. Avoid excessive shock to capacitors by automatic insertion machine, during mounting, parts inspection or centering operations. Please utilize supporting material such as strap or adhesive to mount capacitors to PC board when it is anticipated that vibration or shock is applied. Temperature at lead of capacitor ( ) φ4~φ5 (4V~50V) φ6.3~φ10 (4V~50V) φ4~φ10 63~100V Preheat (160 ~ 190 ) 120 sec (max) T 250 t sec (max) 90 sec (max) 5 5 t sec (max)

15 For Conductive Polymer Aluminum Solid Capacitors Cleaning conditions: Total cleaning time shall be within 5 minutes Resistance to soldering heat condition by immersion, ultrasonic or other method. Test condition (Temperature of the cleaning agent shall be A) Vapor phase soldering method 60 or lower.) After cleaning, capacitors should Solder paste should be applied to the printed wiring boards and then the be dried using hot air for minimum of 10 minutes capacitors are mounted on it. After that, thecapacitor should be maintained along with the PC board. in the vapor phase bath at a temperature of 230 ±2 C for 75 ±1 seconds. Hot air temperature should be below the maximum operating temperature of the capacitor. Insufficient dries dry after water rinse B) Soldering iron method may cause appearance problems, sleeve may shrink, or the bottom-plate Temperature: 400 ±10 C may bulge,etc Duration: seconds 0 Please let us know in advance the solvent name and conditions for your PCB Cleaning. Performance: The capacitors shall meet the following specification after A or B test. Item Performance 1-8 Emergency Action change Within ±10 % of initial capacitance (2.5V: Within ±15 % of initial capacitance) Tangent of loss angle E.S.R. Leakage current Less than or equal to 1.3 times of the value Less than or equal to 1.3 times of the value Less than or equal to the value (1) If you see smoke due to the operation of safety vent, turn off the main switch or pull out the plug from the outlet. (2) Do not put your face near the safety vent as gas which in over Recommendable reflow condition 100 will be emitted when the safety vent operates. If the gas has Reflow profile entered your eyes, please flush your eyes immediately in pure water. If you breathed the gas, immediately wash out your mouth and throat with water. Do not ingest electrolyte. If your skin is exposed to electrolyte, please wash it away using soap and water. 1-9 Storage Condition (1) Aluminum electrolytic capacitors should not be stored in high temperatures or where there is a high level of humidity. The suitable storage condition is 5~35 and less than 75% in relative humidity. (2) Aluminum electrolytic capacitors should not be stored in damp conditions such as water, saltwater spray or oil spray. Fig:1-18 (3) Do not store aluminum electrolytic capacitors in an environment full of hazardous gas (hydrogen sulfide, sulfurous acid gas, nitrous acid, chlorine gas, ammonium, etc.) (4) Aluminum electrolytic capacitors should not be stored under exposure to ozone, ultraviolet rays or radiation. (5) If a capacitor has been stored for more than one year under normal temperature (shorter if high temperature ) and it shows increased leakage Note: current, then a treatment by voltage application is recommended *Measurement position of temperature: The top surface of capacitor and board's surface nearby terminal Environment - Related Substances *Measurement method: Thermo-junction is fixed on measurement position by All TEAPO's capacitors comply to RoHS (Restricition of Hazardous silver paste or an adhesive of resin. Substances) requirements where Chromium VI (Cr +6 ),Cadmium(Cd), Thermo-junction is Classification K, material CA with diameter 0.1mm. Mercury(Hg),Lead(pb),polybrominated biphenyls (PBBs) and *An interval of reflow: In case two times reflow is necessary, CP-CAP shall b Polybrominated bipheny1/dipheny1 ethers (PBBEs / PBDEs) taken into reflow when its return to normaltemperature. have not detected (lower than MDL(Method Detection Limit)) *Heat stress to CP-CAP will be influenced by the different of reflow per SGS certification test report. equipment, board material, size, and numbers ofmounting. The following action must be practice through a practical test mounting before 1-11 Disposal mass-production. Please dispose capacitors in either of the following ways: (1) Check your reflow condition whether it is within the above TEAPO Recommendable Reflow Condition or not. (1) Incinerate capacitors after crushing parts of making a hole on the capacitor body. (2) Confirm CP-CAP's electric characteristic change before and after reflow. (2) Bury capacitors in the ground. Please have a disposal specialist do it. (7) Cleaning Satisfied characteristic of JIS C Aluminum Electrolytic Capacitors may be damaged by corrosion which is caused by any halogenated hydrocarbon solvents (Ex:HCH(Cl)2 ). All of our products are non-solvent-proof, we recommend cleaning method as following: Applicable : Any type,any ratings Cleaning agents : Pine Alpha ST-100S, Clean Through 750H/750L/710M,Sanelek B-12, Aqua Cleaner 210SEP, Techno Care FRW14~17, Iso- propyl Alcohol

16 1-1 使用铝电解电容器的注意事项 铝电解电容器 使用电容器时请注意以下建议 : 1. 电解电容器在直流电应用中需要注意极性, 在使用前确认极性 如果反极插入, 很可能导致电路寿命缩短或损坏电容器 当电解电容器使用于极性经常颠倒或极性是未知的电路中时, 请选择双极性电容器 但双极性电容器也不可使用于交流电路 10. 电容器的防爆阀部位的上方应留置适当空间 勿阻塞防爆阀, 除非目录或产品规格另有特殊说明 狭窄的间隔可能会对防爆阀造成不利的影响, 导致电容器爆炸 2. 电容器的使用电压不能超过电容器的额定电压, 如果使用的电压超过电容器的额定电压, 电容器增大的漏电流可能会损坏电容器 当电容器使用电压有交流电压成分时, 其交流成分加上直流成分电压也不能超过额定电压 3. 使用的纹波电流不要超过电容额定纹波电流值 如果使用的纹波电流超过额定纹波电流值, 请改选用额定纹波电流值较大的电容器 确定使用的温度范围 根据额定工作温度规格的操作温度范围, 使用电解电容器 在室温下使用, 电容器的寿命会更长久 电解电容器不适合在反复充放电的回路中使用 如果使用于反复充放电的回路, 可能导致静电容量减少或损坏电容器 使用于反复充放电回路中的电容器请向我司工程部门咨询 当电容器已经闲置了很长一段时间, 要经过恰当的再充电处理后才可以使用 长期存储往往会增加电容漏电流 在这种情况下, 使用前一定要提供必要的再充电处理 注意焊接温度和时间 在印刷电路板上焊接各种组件时, 必须注意焊接温度不能太高, 浸渍时间不能太长 否则, 会对电容器的电气特性和绝缘套管产生不利影响 浸渍在低于 260 不到 10 秒钟的情况下, 小型号的电解电容器不会发生异常 焊接后电路板的清洗不建议用卤代烃溶剂清洗电容器 当某部位需要用卤代烃溶剂清洗时, 请选用有环氧树脂涂层密封的电容器 铝壳的直径间隔 ψ6.3 to ψ16 mm 2 mm ψ18 to ψ 35 mm 3 mm ψ40 mm & 以上 5 mm Fig.1-1 注意 本目录的内容根据产品的改进可能未经提示而变更 因此, 请在订购产品前确认好规格 本目录所描述的一般电气特性 可靠性数据等不能作为保证值, 仅仅是标准值 ( 参考值 ) 在使用产品之前, 请仔细阅读目录的备注 9. 不宜对电容器的导针和端子施加过大的压力 如果施加在导针和端子的压力过大, 很容易造成损坏, 或使它们与内部素子 ( 部件 ) 的连接会受到影响 ( 端子的强度请参照 JIS C :2010 和 C :2010. )

17 铝电解电容器 1-2 技术定义 1-3 电解电容器的功能 1. 电解电容器的材料与结构电解电容器是一个简单的组件 它包含一个被绝缘装置所隔离的两个电极 主要内部原材料包括由电解纸包覆的正负箔组成的素子, 素子被电解液所浸渍, 然后插入铝壳并密封 电解电容器可以广泛应用于以下器械 ( 即 : 电视 广播 音频设备 洗衣机和空调 等等 ), 计算机设备 ( 主板 影像设备和打印机及外围设备 : 例如扫描仪 绘图装置等等 ) 通讯设备 测量仪器 工业设备 飞机 燃烧弹 卫星等 * 根据不同的使用目的, 基本上的分类如下 : 1. 直流电压 : a. 瞬时高电压 : 应用于脉冲发电机, 例如重型电机的冲击波的阻力测试 b. 大工作电流 : 应用于焊接机 X 射线设备 复印机 放电加工设备 c. 直流高电压 : 电解电容器与整流器组成, 充电后产生特殊的直流高电压, 应用于电子显微镜和加速装置 d. 集成和记忆 : 在计算器内记忆电路或比较电路 2. 直流电压与其他可替换的部件的组合 a. 滤波器 : 结合芯片电阻和电感器组成电路, 通过直流电流, 隔离其它频率电流 b. 分流 : 线路旁的并联装置, 例如 : 近年来迅速发展的集成电路需要一个小型化的贴片电容来做分流 c. 耦合 : 结合电解电容器, 芯片电阻和电感器, 达成耦合效应 d. 齿形波的产生 : 利用各种电阻电容组成充放电路来产生齿形波 e. 电路电压的改变 : 将交流电转换为直流电的设备 3. 交流电压 : Fig.1-2 a. 功率改善 : 为了提高功率, 将电容器与其他部件连接使用 2. 生产流程 b 滤波器 : 利用 LC 滤波器滤除外部对 SCR 电路的干扰 1. 腐蚀 : 利用化学侵蚀或化学腐蚀方法来增加铝箔的表面积的过程称为 c. 相位改变 : 感应电动机 ( 马达 ) 的相位改变 腐蚀 通常化学腐蚀方法乃是利用印加大电流与高温在电解液 上, 使铝箔表面产生稠密网状的不同形状大小的表面通道 化成 : 电解电容器正箔的制造流程 : 是将腐蚀箔阳极氧化 负箔的生产流程有时为了特殊用途, 也会使用氧化处理 此阳极氧化的流程称为化成 一般高压化成会用到硼酸或有机酸, 低压化成一般使用磷酸或己二酸铵 这样可以获得比较稳定的 Al2O3 氧化皮膜 裁切 : 根据所需要的长度切割铝箔和电解纸 卷绕 : 把经过钉接或冷焊端子的的正负箔, 利用电解纸分开卷绕包覆, 并用胶水或胶带固定, 这就形成了素子 含浸 : 把素子中的水分用真空或高温挤压出来, 让素子含浸电解液的工序称为含浸 素子充分含浸电解液, 然后把多余的电解液用分离机分离 6. 组装 : 素子与胶盖完全密封, 防止电解液泄漏, 然后套上套管, 形成最终的产品 7. 老化 : 老化的目的是利用电解液和再充电来修复受损的氧化皮膜

18 1-4 基本电气特性 铝电解电容器 1. 电容 (E.S.C) C: 电容 R: 等效串联电阻 L: 等效串联电感图 1-3: 简化的电解电容器的等效电路图 DF 等效串行电路的电容组件 ( 等效串联电容 ESC) 是由印加的 0.5V 频率 120Hz 的电压测试得来的 电容量的温度特性 溫度 ( ) 图 1-7 散逸因子 vs 温度 电解电容器的电容量取决于温度 : 温度降低, 电解液的粘度增大, 导电性下降 如果温度降低, 电容量会下降 此外, 温度变化引起电枢扩张, 从而电容量产生变化 ( 高达 20%, 从 0 到 80 ) 相比其它的类型, 这种现象在电解电容器上更加明显 DF 电容量 频率 图 1-8 散逸因素 vs 频率 电容量的频率特性 溫度 ( ) 图 1-4 电容变化 vs 温度 3. 等效串联电阻 (E.S.R) 等效串联电阻是等效串行电路的一个电阻分量 ESR 值取决于频率与温度, 并与下面公式的损失角密切相关 计算这个值的时候必须考虑额定电容量的公差范围 电容量 頻率 ESR 图 1-5 电容变化 vs 频率 温度 ( ) 2. 散逸因子 (tanδ 损失角 ) 图 1-9 ESR 变化 vs. 温度 散逸因子是正弦波形电压的无用功率与有效功率的比值 它可以作为一个实际的和理想的电容器之间的测量差距 随着温度的上升, 电解液的电阻急速下降 Fig 1-6 损失角的测量与串联电容 ESC 方面相同 D.F. = tanδx 100 (%) =ωcr x 100 (%) = 2πfCR x 100 (%) 这里的 : R = 等效串联电阻 C = 等效串联电容 ω = 2πf ESR 頻率 图 1-10 ESR 变化 vs. 频率

19 铝电解电容器 4. 阻抗 (Z) 5. 漏电流 (L.C.) 电解电容器的阻抗由下面的等效串联组件电路生成 由于氧化铝层作为电介质, 加载直流电压, 在相当时间后仍然有小电流继续流出 这种电流称为泄露电流 当电容器加载电压后, 泄漏电流较高, 然后在几分钟后降低 ( 例如 : 在长期储存中没有加载电压 ) 在连续操作的过程中, 泄露电流会下降, 达到一个恒定图 1-11 值 在未加电压的状况下闲置存储, 氧化层可能会恶化, 尤其是在高温下 因为没有泄露电流传输氧离子给正极, 氧化层没有再生 结果是, 在长期储存后加载电压时, 高于正常值的泄露电流会流出 随 Co= 氧化膜电容量 ( 介质的表面和厚度 ) 着在使用中氧化层再生, 泄露电流会逐渐下降到正常值 Re= 电解液和电解纸的混合阻抗 ( 其它电阻不依赖频率的不考虑 : 耳片, 金属板, 等等 ) 泄露电流和在恒温下印加的电压的关系如下面的图所示 : Ce= 含浸电解液后, 电解纸的电容量 L= 电容器的等效电感 电解电容器的阻抗不是固定的, 它随温度和频率的变化而变化 于固定温度下, 阻抗与频率 ( 正弦波 ) 曲线可以表示如下 : 图 1-12 图 1-14 在这里 : VF= 化成电压如果超出此电压, 将会生成大量热量和气体, 导致电容器受损 VR= 额定电压 VS= 突波电压此电压在化成电压和额定电压之间, 电容器可能会在短周期内经受突波电压 - 电容器的容抗主要显示在低频时 - 频率升高时, 电容器的容抗 Xc=1/ωCo 下降, 直到它达到电解液的电阻 Re(A) - 当频率更高时, 电解液的电阻占优势 - 当达到共振频率时, 容抗与感抗互相取消 当频率超过共振频率时, 感抗占优势, 并随频率增加而增加 一般来说可以简述为 Ce 0.01 Co 于不同温度下, 阻抗与频率 ( 正弦波 ) 曲线可以表示如下 :( 代表值 ) 图 1-13 在电解电容器等效电路中 Re 是温度依赖性最强的组件 为了在温度范围内得到一个低阻抗值, 如果温度上升, 电容器的电阻系数会下降 Re 必须尽可能小, 但是 Re 值太低, 也意味着电解液很活跃, 在高温的情况下, 电容器的寿命会缩短 因此必须达到一个平衡

20 1-5 可靠性 铝电解电容器 (1) 浴盆曲线 :( 失效率曲线 ) 铝电解电容器特性失效率如下图的浴盆曲线所示 : 在这里 : Tc= 铝壳的表面温度 Tx= 实际工作周围温度 Kc= 以下表格中素子与铝壳的转换系数 Dia 8ψ 10ψ 12.5ψ 16ψ 18ψ 22ψ 25ψ 30ψ 35ψ 13ψ K c 有效寿命为 15 年, 如果超出 15 年, 以 15 年为准 等效串联电阻 (ESR) 公式 ESR, DF, f & C 的工作频率必须一致, 通常在 120 Hz 下测试 图 1-15 失效率曲线 ESR=DF / 2πf C (2) a. 早期失效期 在这里 :DF: 散逸因子 (tanδ 损失角 ) 缺陷电容包括在前期因设计 生产制造工序和不适宜的使用环境造成 缺陷的产品 b. 偶发失效期 纹波电流影响电容器的寿命, 因其内部耗损 (ESR) 产生热量 产生的热量 : 电容器在这一阶段的特点是失效性较低且稳定 P = I 2 R (3) 在这里 : c. 耗损失效期 I: 纹波电流 (Arms.) 该阶段电容器的性能随着使用周期的延长而下降, R:ESR(Ω 故障率因电容器的内部设计而不同 在这时, 电容器的温升 : T= I 2 R / AH------(4) 1-6 电路设计 (1) 环境和安装条件 在这里 : T: 铝芯的温升 ( 度 ) 请确保电容器暴露的环境及安装条件在智宝目录指定的条件内 I: 纹波电流 (Arms) R: ESR(Ω) (2) 工作温度, 等效串联电阻 (ESR), 纹波电流和负荷寿命 A: 电容器的表面积 (cm2) MTTF( 平均失效前时间 / 平均无故障时间 ), 指在室温 25 下有效寿命 H: 散热系数 ( 大约 1.5~ W/ cm2. ) 高温负荷寿命 : 如果电容器最高工作温度是 105 (85 ), 然后在 105 (85 ) 下印加额定电压 (WV) L0 小时, 电容器应满足详细规范的要求 在这里, L0 称之为高温负荷寿命或有效期 L x= L0 x 2 (To-Tx) /10 x K - Tx / 5 在这里 : Tx= T 0 x ( Ix / I 0 ) 2, Ix>I 0,K=4; Ix I 0,K=2 以上公式 (4) 显示 : 铝壳的温升与印加电流的平方及电阻成正比, 与表面积成反比 因此, 纹波电流总量决定产生的热量, 热量影响电容器的寿命 T 的值取决于电容器的类型和工作的条件 如果 T 仍低于 5, 使用状况一般是令人满意的 由于纹波电流导致的温升测量点如下图所示 測量点 ( 不含套管 ) 纹波寿命如果电容器的最高工作温度是 105 (85 ), 然后在 105 (85 ) 纹波电流的条件下, 印加额定电压 (WV) Lr 小时 电容器应满足详细规范的要求 在这里,Lr 称之为纹波寿命或有效纹波寿命 L x = Lr x 2 (To-Tx) /10 ( To - Tx) /5 x K where Tx= T 0 x ( Ix / I 0 ) 2, Ix>I 0,K=4; Ix I 0,K=2 Fig:1-16 温度略低于指定最大温度, 有效纹波寿命用以上公式估算, (3) 应用但预期公式不适用于周围温度低于 40 的条件 铝电解电容器通常是有极性的 不能印加反极电压或交流电压 L0= 预期寿命 ( 允许的最高工作温度 ) 当极性颠倒时应使用非极性电容器, 但是非极性电容器也不能应 LR= 预期纹波寿命 ( 允许的最高工作温度 ) 用于交流电路 LX= 实际工作寿命 (4) 印加电压 T0= 允许的最大工作温度不能超出电容器的额定电压 TX= 实际工作周围温度 IX= 在工作频率下实际印加的纹波电流 I0= f0 (Hz) 下, 额定许可的最大纹波电流 X 频率补偿系数 纹波电流计算 对于纹波寿命,IX 应大于或等于 80% I0, 如果少于 80%, 以 80% 计算 T 0 5 = 印加 I0 的最大温升 Tc = 印加 IX, 铝壳的温升 Tx = 印加 IX, 素子的温升 =K c T c =K c (T c -T x )

21 铝电解电容器 (5) 绝缘 (5) 无铅制程回流焊条件 ( 针对表面贴片型电容器 ) 铝电解电容器应从以下几点考虑电气隔离 对于回流, 使用热力条件系统例如红外线辐射或热空气流 不建议 a. 铝壳 阴极导针 阳极导针和电路板布线 使用蒸汽换热系统 b. 牛角型电容器的辅助端子 阳极端子 外接的端子和电路板布线 观察适当的焊接条件 ( 温度 时间等 ) 不要超过指定值 反复回流 : (6) 使用的条件 * 尽可能避免回流两次 铝电解电容器不能在以下条件下使用 * 如果反复回流不可避免, 请在你司先测量第一和第二回流曲线和回 a. 温度条件 : 例如, 盐水喷雾 油雾 烟气 高温高湿冷凝的状况 流间隔后, 再联系我们 b. 外界条件 : 包括有毒气体, 例如氢硫化物 亚硫酸 亚硝酸 * 切勿尝试回流三次 氯气 氨气等 c. 外界条件 : 电容器暴露于臭氧 紫外线 辐射的环境 d. 超出目录或规格书指定条件内的严重的振动或撞击 峰值溫度 T (7) 推荐的设计考虑 時間 :s 在设计电路板时, 请注意以下几点 : a. 电容器的端子间隔需与印刷配线板孔间距匹配 b. 不应该有任何的电路配线或电路铜箔在电容器的上方 c. 假设电容器的安全阀对着 PC 板时, 应在 PC 板上与电容器安全阀相对应之处开一小孔, 以释放当安全阀打开后所流出的气体 d. 安装螺丝端子型电容器时, 端子密封的一面朝上安装 当螺丝端子型电容器在水平方向安装时, 阳极端子必须朝上安装 e. 不要在电容器的安全孔上方进行接线或电路布线 Preheat (160 ~ 190 ) 120 sec (max) 時間 (sec) 60 sec (max) 90 sec (max) Fig: 安装注意事项 尺寸 溫度 時間 (1) 组装前注意事项 已经组装并通电的铝电解电容器请勿在拆下后使用 因特殊用途, φ4~φ5 当电容器从固定的电路板上拆下, 用于测量其电气特性时, 此电 (4V~50V) 容器只能装回原位置使用 铝电解电容器在存储期间可能积累电荷, 此时通过 1KΩ 的电阻 φ6.3~φ10 进行放电后使用 (4V~50V) 铝电解电容器的漏电流可能在长时间储存条件下上升 此时, 电容 φ4~φ10 应当遵从电压处理通过 1KΩ 的限流电阻充电后使用 63~100V (2) 组装过程 安装电容于 PCB 板上时, 请确认电容器各项额定值 安装电容器于 PCB 板之前请确认极性 请勿将电容器掉落到地板上, 跌落在地板上的电容器不能再使用 小心安装, 勿致电容器变形 安装前, 请确认电容器的端子间距与印刷配线板孔间距是否对准 导箔型电容应固定安装于 PCB 板上, 电容机身和 PC 板表面间无空隙 在自动插件过程中, 避免过多压力在钉接导针上 在安装 部件检验 定位操作时, 应避免自动插件机对电容产生过多冲击力 当预期有振动或施加冲击力时, 请使用胶带 粘合剂等辅助性材料以安装电容器于 PC 板上 电容器的温度 ( ) (3) 焊锡 智宝电容器的所有 CP 线是无铅的 焊接条件 ( 温度 时间 ) 请设定在产品目录或规格说明书指定的范围内 如果板上的导针间距和孔距不匹配, 有必要对导针进行成型加工, 焊接前折弯导针不能对电容施加过多压力 请不要将烙铁接触到电容器的本体 除了固态的貼片型電容器, 其他類型的电容器不能进行迴焊 避免高溫 (4) 流焊 请勿将电容器的主体浸入到溶融的焊料中 电容的流焊应限定在 260,10 秒. 除端子部以外, 不可附着有助焊剂 进行焊接时, 要避免其它部件接触到电容器

22 铝电解电容器 高分子铝固态电容 清洗条件 : 在 60 以下, 使用清洗剂, 采用浸泡 超声波等方法清洗五分钟以下 清洗后, 电容器和 PC 板应用至少十分钟的热空气风干 耐焊接热条件 热空气的温度应低于电容器最大工作温度 漂洗后没有足够风干的电 测试条件 容器, 会导致外观问题 套管可能收缩 底部的金属板可能膨胀等 A) 气相焊锡条件焊膏应用于印刷电路板内, 然后安装电容于此, 应当保持电容在气相浴槽温度内为 230±2 C,75±1 秒 请让我们事先了解贵司印刷线路板使用的清洗剂的名称和清洗条件 B) 烙铁方法 1-8 紧急情况 温度 :400±10 C 1 时间 : 秒 (1) 发现配套设备中使用的电容器的安全阀动作并有气体溢出时, 请切 断设备的电源或从插座上拔下电源线的插头 性能 : (2) 当电容器的安全阀动作时, 会喷出 100 的高温气体, 请不将脸部靠 A 或 B 试验之后, 电容器应满足以下规格 : 近 万一喷出的气体不慎进入眼睛, 或吸入的时候, 请马上用水洗 项目 性能 眼 漱口 当粘附在皮肤上时, 请用水和肥皂清洗 在初始值 ±10% 容量变化 损失角 ESR 漏电流荐用的回流条件回流曲线如图标 (2.5V: 在初始值 ±15% 以内 ) 小于或等于 1.3 倍值小于或等于 1.3 倍值小于或等于所示值 1-9 存储条件 (1) 不可将电容器保存在高温高湿的环境 请保管在室温 5~35 湿度 75% 以下的环境 (2) 请不要将电容器储存在潮湿的环境中 : 例如水 盐水喷雾 油雾 (3) 请不要将电容器储存在充满有毒气体的的环境中 : 氢硫化物 亚硫酸 亚硝酸 氯气 氨气等 (4) 不可保管在臭氧 紫外线 放射线辐射的环境下 (5) 如果电容器在常温下储存超过一年 ( 或在高温下储存不超过一年 ), 漏电流增大, 那么建议采用再充电的修护处理 圖 : 与环境有关的物质智宝的所有产品都满足 RoHS 要求所有 TEAPO 电容器满足 RoHS( 有害物质禁用指令 ) 要求, 指经过 SGS 认证测试报告, 没有检测出铬 (Cr + 6) 镉 (Cd), 汞 铅 (pb) PBBs PBBEs/PBDEs( 低于 MDL 检测精确度 ) 电容器顶部和端子的峰值温度 废弃处理 预热 150 ~180 90±30S 请按照以下两种方式处理废弃电容器 达到大于或等于 200 的时间 60S 60S 达到大于或等于 220 的时间 60S 60S (1) 在充分碾碎或在电容器上开孔之后, 焚烧电容器 达到大于或等于 230 的时间回流的数量 60S 2 次 60S 仅一次 (2) 请交给专业的工业废弃物处理厂进行处理 填埋在地下 备注 : * 温度测量部位 : 电容的顶部和接近端子的板面 * 测量方法 : 通过银膏或树脂粘合剂将热接合点固定在测试位置上 热接合点是 K 级分类, 直径 0.1mm 的 CA 材料 * 回流间隔 : 如果有必要回流两次, 固态电容应当 在恢复正常温度时实施回流焊 * 固态电容的热应力受到不同的设备 线路板材料 尺寸 安装数量的影响 以下措施必须在量产之前通过实践测试装置实施 (1) 检查您的回流条件是否在智宝推荐的以上回流条件内 (2) 确认固态电容回流焊前后的电路特性变化 (7) 清洗 符合 JIS C 5101 的电气特性 铝电解电容器可能会受到腐蚀 ( 由卤代烃溶剂导致的 ) ( 例如 :HCH(Cl)2) 我们所有的产品都是非耐溶剂型的 建议清洗方法如下 : 适用的类型 : 任何类型 任何等级清洁剂 Pine Alpha( 派因阿尔法 )ST-100S( 荒川化学工业 ), Clean Through( 库林斯鲁 )750H/750L/710M( 花王 ) SanelekB-12 Aqua Cleaner ( 界面活性剂 )210SEP,Techno Care( 德克诺克阿 ) FRW14~17 Iso-propyl Alcohol( 异丙醇 )

23 The Characterisitics of Endurance Test Change Ratio Dissipation Factor Change Leakage Current Change

24 Typical Failure Modes and Their Factors Main Factor Failure Mode Internal Phenomenon Production Factor Application Factor Corrosion Infiltration of Cl Used for Halongenated Open Leads improperly connected Mechanical Leads Burrs on foil or Short Insulation breakdown of film or electrolytic Metal particles in Stress applied to leads Reduced anode foil capacitance Used in a high temperature tanδ increased Reduced cathode foil capacitance Electrolyte Insufficient electrolyte Excessive ripple current Leakage current increased Deterioration of oxide film Defect in oxide film Over voltage applied Reverse voltage applied Vent operated Increase in internal pressure Increase in internal temperatur Used for a long period of time

25 Part Number Instruction 1 2~3 4~6 7 8~10 11~ ~17 18 K SK 107 M 6R3 S1 A 1 C 11 K TYPE SERIES CAP TOL. VOLTAGE LEAD SPEC. SLEEVE CASE SIZE LENGTH OTHERS Code 1 Type Code K V S P Model Type Standard Dip Type (PET sleeve) SMD (V-chip) Type (Nylon coating) Snap-in Type (PET sleeve) Conductive Polymer Aluminum Solid Capacitor Code 2~3 Name (as content page 6 to page 8) Code 4~6 0.47μF = μF = μF = μF = μF = 478 Code 7 Tolerance M = ±20%, K = ±10%,V = +20~-10% Code 8~10 Voltage 2.5V = 2R5 100V = 100 5V = V = V = 6R3 63V = 063 Code 11~12 Lead Process Explanation for code 11 S : Standard T : Ammo tape C : Straight cut K : Kink(Crimp)cut R : Reel tape F : Formed cut Code 11&12 Description S T R Standard SMD type Standard Dip & Snap-in type Standard ammo tape (pitch 5mm for dia.~ 13mm) Ammo tape with straight lead (available for dia. 4~8mm) Ammo formed tape with pitch 2.5mm (available for dia.4~5mm) Standard reel tape (pitch 5mm for dia.~ 10mm) Reel tape with straight lead (available for dia. 4~8mm) Reel formed tape with pitch 2.5mm (available for dia.4~5mm )

26 Code 11&12 3 C 5 7 K 2 F 6 Description Straight cut lead with L : 3.2+/-0.5mm Straight cut lead with L : 4.0+/-0.5mm Straight cut lead with L : 5.0+/-0.5mm Kink cut lead with L : 4.5+/-0.5mm Forming cut lead with L : 4.0+/-0.5 (Pitch : 5mm) Code 13 Special Specification A : Standard B : DF (tanδ) C : ESR D : Impedance E : Ripple current F : Leakage current H : Customer requirements U: Special packaging K: Above life specified in catalog V: Sleeve L:Pins or Wire diameter W: Code 14 Sleeve Code Code B C H N Color SK Dark blue with white printing S5,D5,H5,S7,D7,H7,SH,SG,SP,SB,SY, SJ,RN,SN,RB,SR,BX,LH,LG,LJ,LF,SQ,LQ,AK,ST, Black with white printing TH,TG,TP,TA,SU,CG,TB,LM,TE,LS,LK TC Black with golden printing SE Brown with white printing SC Green with golden printing SZ Royal blue with golden printing GV,FV,SV,DV,ZV,YV,EV,JV,XV,HV,CV,NV CG,CP,CY,CZ,CR,CX,CF,CS,CH,CT,VP,VB,VS (SMD standard pack & POLYMER ) Code 15~17 Size Code Code 15:Case Size Code Case Size Code Case Size A B C D E F G H J K L M N P Q R S T Code 16~17:Length For ECAP-DIP & POLYMER-DIP & SNAP-IN Code A 11 1B 12 1C Length Code Length Note: For the part hasn't been mentioned above, the Code is the same with Length. For V-CHIP SMD Code LENGTH For POLYMER SMD Code A1 A2 A3 A4 A5 A6 A7 A8 LENGTH E.G.(For Code15~17): Code Size Description B01 4*5.4 For V-CHIP SMD C11 5*11 For ECAP-DIP & POLYMER-DIP Q25 22*25 For SNAP-IN EA1 6.3*5.8 For POLYMER SMD Code 18 Other special instructions ( K for TEAPO standard, 0 for LUXON standard )

27 Code C5:Straight Cut Code K2:Kink cut, & Crimping Code F6:Forming Cut(Φ4~Φ8) Code S1:Standard Type Code T1/R1 : Ammo / Reel Tape (ψ4 ψ6.3) Code T1/R1 : Ammo / Reel Tape (ψ8) SYMBOL CASE SIZE CASE SIZE TOLERANCE ~ ~11 SYMBOL 8 5~30 TOLERANCE φd or 0.5 ±0.05 φd 0.45~0.6 ±0.05 P 12.7 ±1.0 P 12.7 ±1.0 P ±0.3 P ±0.3 P ±0.5 P ±0.7 P ±1.0 P ±1.0 F / 0.2 P / 0.5 W 18.0 ±0.5 θ 110 ±15 W0 8.0 min - F / 0.2 W1 9.0 ±0.5 W 18.0 ±0.5 W2 2.0 max - W0 8.0 min - H 18.5 ±0.75 W1 9.0 ±0.5 H ±0.5 W2 2.0 max - D0 4.0 ±0.3 H 18.5 ±0.75 P 0.2 max - H ±0.5 h 0.2 max - D0 4.0 ±0.3 t 0.6 ±0.3 P h 0.2 max 0.2 max - - t 0.6 ±0.3

28 Code T1/R1 : Ammo / Reel Tape (φ10) Code T1 : Ammo Tape (φ13~φ16) ψ13 ψ16 SYMBOL CASE SIZE CASE SIZE TOLERANCE SYMBOL 10 10~ x15~25 13x13~32 16x16~40 18x20~32 TOLERANCE φd 0.6 ±0.05 φd ±0.05 P 12.7 ±1.0 P ±1.0 P ±0.3 P ±0.3 P ±0.5 P ±0.7 P ±1.0 P2 7.5 ±1.3 F / 0.2 F / 0.2 W W min ±0.5 - W W min ±0.5 - W1 9.0 ±0.5 W1 9.0 ±0.5 W2 2.0 max - W2 2.0 max - H 18.5 ±0.75 H 18.5 ±0.75 D0 4.0 ±0.3 D0 4.0 ±0.3 P 0.2 max - P 0.2 max - h max - h max - t 0.7 ±0.2 t 0.7 ±0.3 Code T2/R2 : Ammo / Reel Tape with straight lead Code T4/R3 : Ammo / Reel Formed Tape (ψ4~ψ5/pitch 2.5mm) SYMBOL CASE SIZE 4 5~7 5 5~ ~11 8 5~20 TOLERANCE SYMBOL φd or ±0.05 φd F / 0.2 P P ±0.5 P0 P ±0.3 P1 P 12.7 ±1.0 P2 P ±1.0 F W 18.0 ±0.5 W W0 8.0 min - W0 W1 9.0 ±0.5 W1 W2 3.0 max - W2 H 18.5 ±0.75 H D0 4.0 ±0.3 H0 p 0.2 max - D0 t 0.6 ±0.2 P h t Case SIZE 4 5~ ~ or min max max 0.2 max 0.6 Tolerance ±0.05 ±1.0 ±0.3 ±0.5 ± / 0.2 ±0.5 - ±0.5 - ±0.75 ±0.5 ± ±0.2

29 SMD Packing Specifications.Reel Dimensions in mm(not to scale) Size A B C D E W T t 4ψ ~ 5ψ 380±2 50min 13.0± ± ±0.5 14±1 20± ψ ~ ±2 50min 13.0± ± ±0.5 18±1 24± ~ 10ψ 380±2 50min 13.0± ± ±0.5 26±1 32±1 3.0 Reel Tape 12.5ψ 380±2 50min 13.0± ψ 380±2 50min 13.0± ± ±0.5 32±1 38± ± ±0.5 44±1 50±1 3.0 Taping Dimensions in mm (not to scale) *Ask factory for technical specifications. Symbol Size W A B Po±0.1 P1 P2±0.1 F ψdo t1 E t2 4x5.4~ x5.4~ x5.4~ x x6.2~ x10.2~ x10.2~ x x x Packaging Specification Size (mm) Q'ty per reel Inner box / measurement (mm) gross weight(kg) Outer carton / measurement (mm) gross weight(kg) Min. ordering amount 4x5.4~ , x195x , x410x kpcs 5x5.4~ , x195x , x410x kpcs 6.3x , x235x , x410x kpcs 6.3x , x235x , x410x kpcs 8x6.2~ , x235x , x410x kpcs 8x10.2~ , x255x , x410x kpcs 10x10.2~ , x255x , x410x kpcs 12.5x , x255x , x410x kpcs 12.5x x255x , x410x kpcs 16.0x x255x , x410x kpcs

30 Conductive Polymer Aluminum Solid Capacitors SMD Packing Specifications.Reel Dimensions in mm(not to scale) Conductive Polymer Aluminum Solid Capacitors Size A B C D E W T t 5ψx ±2 50min 13.0± ± ±0.5 14±1 20± x5.8ψ ~ ±2 50min 13.0± ± ±0.5 18±1 24± ~ 10x ±2 50min 13.0±0.5 Reel Tape 21.0± ±0.5 26±1 32±1 3.0 Taping Dimensions in mm (not to scale) *Ask factory for technical specifications. Symbol Size W A B Po±0.1 P1 P2±0.1 F ψdo t1 E t2 5x ~ x x x x x Packaging Specification Size (mm) Q'ty per reel Inner box / measurement (mm) gross weight(kg) Outer carton / measurement (mm) gross weight(kg) Min. ordering amount 5x , x195x , x410x kpcs 6.3x , x235x , x410x kpcs 6.3x , x235x , x410x kpcs 8x , x235x , x410x kpcs 8x , x255x , x410x kpcs 10x , x255x , x410x kpcs 10x , x255x , x410x kpcs

31 PACKAGING SPECIFICATION Miniature Aluminum Electrolytic Capacitors For Bulk: Standard Cutting & Forming Classification Case size D*L(mm) Vinyl bag Qty Standard Bulk Inner box 289*168*276 (mm) Outer carton 355*297*290 (mm) gross weight (kg) Vinyl bag Qty Cutting & Forming Inner box 289*168*135 (mm) Outer carton 355*297*290 (mm) gross weight (kg) Min. ordering amount 4 5 2,000 24,000 48, ,000 20,000 80, ,000 20,000 40, ,000 16,000 64, ,000 20,000 40, ,000 16,000 64, ,000 16,000 32, ,000 16,000 64, ,000 12,000 24, ,000 10,000 40, ,000 16,000 32, ,000 10,000 40, ,000 12,000 24, ,000 10,000 40, ,000 10,000 20, ,000 7,000 28, x ,000 20, ,500 26, , ,500 15, ,000 16, ,000 10, ,000 12, ,000 10, ,000 8, ,000 8, ,000 8, ,000 8, ,000 8, ,600 7, ,000 8, ,600 7, ,600 6, ,000 6, ,400 5, ,400 4, ,200 4, , ,400 4, , , ,800 3, , ,200 2, , ,200 2, , , ,000 2, , , , , kpcs Classification Case size D*L(mm) Vinyl bag Qty Inner box Qty Standard Bulk Outer carton Qty gross weight (kg) Vinyl bag Qty Cutting & Forming Inner box Qty Outer carton Qty gross weight (kg) Min. ordering amount 16X15,16X X X30,16X X36,16X X X15,18X X22,18X X X32,18X36,18X X45,18X X X X X35,22X kpcs For lattice bar type packing of standard: Case size D*L(mm) Lattice bar of inner carton Height Qty Row packing method Row number Layer number Each row pcs Inner box Qty Outer carton Qty 11.7X * x16~13x * X15-20 L * X21-26 L * X27-32 L * X33-40 L * X15-16 L * X17-26 L * X27-32 L * X33-42 L * X43-50 L * x30-40L * x30-40L * x41-50L * x40-50L * gross weight (kg) Min. ordering amount (kpcs)

32 For Taping Ammo & Reel Classification Ammo Tape Reel Tape Min. ordering amount Case size inner box quantity outer carton quantity gross inner carton outer carton gross kpcs D 4ψ(mm) (mm) 3,000 (pcs) (mm) 15,000 (pcs) weight 6 350*350*110 3, *370*675 15,000 weight ψ , ,000 6 ~ 7 2,400 12, ψ , , ,000 10, ψ 5-16L , , ,600 8, ψ 20L , , ,000 5, ψ 10~17L , ψ 20~25L , ψ 30L , ψ 32L below , ψ 36L above , ψ 32L below , ψ 36L above , ψ 20~32L above , Note:For 10ψ Reel Tape: Size 10ψ 10~16L 10ψ 17~20L Large Can Type Aluminum Electrolytic Capacitors Dimension D L (mm) weighe (g/pcs) inner box outer carton 254*254* *270*320 (mm) (mm) Min. ordering amount to ~ kpcs to ~ kpcs to ~ kpcs to ~ kpcs 30 20to ~ kpcs to ~ kpcs 30 x 70 45~ kpcs to ~ kpcs 35 35to ~ kpcs Note: The dimension of 30x70 inner box is 254*254*190, the dimension of 30x70 outer carton is 530*270*400 Conductive Polymer Aluminum Solid Capacitor For Bulk: Standard Cutting & Forming Classification Standard Bulk Cutting & Forming Min. ordering amount Case size Vinyl bag inner box outer carton gross Vinyl bag inner box outer carton gross kpcs D*L(mm) , *168*279 16, *297*290 32,000 weight 11 2, *168*135 10, *297*290 40,000 weight ,000 12,000 24, ,000 10,000 40, ,000 10,000 20, ,000 7,000 28, , 8 10, 8x ,000 8, ,000 8, For Taping Ammo & Reel inner carton(pcs) 1,200 1,000 outer carton(pcs) 6,000 5, ,500 15, ,000 16, Classification Ammo Tape Reel Tape Min. ordering amount Case size inner box quantity outer carton quantity gross inner carton outer carton gross kpcs D 6.3ψ (mm) (mm) 2,000 (pcs) (mm) 10,000 (pcs) weight 8 350*350*110 2, *370*600 10,000 weight ψ 5-16L , , ,600 8, ψ 10~17L , ,000 5,

33 CG CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Ultra low ESR Features: 105,2000hrs, Ultra Low ESR Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive,MO Drive, DVD Drive, Navigation system,portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) -55 ~ ~ 25VDC 10 ~ 2200μ F Characteristics ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV 2.5 ~ 10V tanδ ~25V 0.12 Low Temperature Stability Impedance Ratio (MAX) (20 ) WV Z(100KHz) Z-25 / Z+20 Z-55 / Z ~ 25V Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value After subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 1% per 1,000 hours (confidence level 60% at 105 ) Diagram of Dimensions Marking : case with red printing Size code ψd X L P ψd a B01 4X C01 5X C07 5X E01 6.3X E08 6.3X E1A 6.3X G1B 8X H1A 10X H1C 10X Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K 10K F<100K 100K F 500K Coefficient

34 CG CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Ultra low ESR Dimensions,Rated Ripple Current,Equivalent Resistance (uf) 47 RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE 5X X X X X SIZE x X X X X X X X X X X X X X X X X X x X X X X X X X x X X x x x x X V x x X12.5 Rated Voltage 270 5X x11.5 8x X x X X x X X x X X V 5X7 6.3X7 5X7 5X9 6.3x X6 6.3X7 6.3X10.5 5X9 6.3X9 6.3X6 5X9 6.3X6 6.3X7 6.3X10.5 8x X10.5 8x X12.5 8x X x X X X V 5600 ESR

35 CG CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Ultra low ESR Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage 10V 16V 20V (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE 10 5X X X X X X X X X X X X X x5.4 5X7 5X9 6.3X X X X10.5 8x X X X X X X X X X X x X X X X X x X X X x X X x X X X X x X X X x X X X x X X X X X X X X X X7 6.3X10.5 8X11.5 8X X X X12.5 8X20 10X ESR 30 (uf) 25V SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR X X8 6.3X10.5 8X X X X11.5 8X X11.5 8X X X X Rated Voltage SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

36 CP CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS 8 mm height & Ultra low ESR Features: 105,3000hrs, 8mm height & Ultra Low ESR Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system, Portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) Diagram of Dimensions Characteristics -55 ~ ~ 25VDC 10 ~ 1200μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ WV Z(100KHz) Z-25 / Z+20 Z-55 / Z ~ 25V 0.08 After applying rated voltage for 3000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value WV Life 2.5 ~ 25V ~ 6.3V ~25V 2000 after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 1% per 1,000 hours (confidence level 60% at 105 ) Marking : case with red printing Size code ψd X L P ψd E08 6.3X G08 8X a Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K 10K F<100K Coefficient K F 500K 1

37 CP CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS 8 mm height & Ultra low ESR Dimensions,Rated Ripple Current,Equivalent Resistance (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR 6.3x8 8x8 2.5V x x x x x x x x Rated Voltage X x x V 6.3V 7 6.3x (uf) RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE x x x x x SIZE 6.3x8 6.3x8 10V x x x x x x x x x x x x x x x x8 8x8 Rated Voltage 16V x8 8x8 25V ESR SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

38 CY CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance Features: 105,2000hrs, Low ESR & large capacitance Recommended Applications: Used switching requlator applications in computer. Especially for high frequency. Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) Characteristics -55 ~ ~16VDC 150 ~ 1800μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV Z(100KHz) Z-25 / Z+20 Z-55 / Z+20 WV 6.3 ~ 16V tanδ ~ 16V After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value After subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 0.5% per 1,000 hours (confidence level 60% at 105 ) Diagram of Dimensions Size code ψd X L P ψd a E08 6.3X G08 8X G1B 8X H1C 10X Multiplier for Ripple Current Frequency (Hz) Coefficient 120 f<1k K f<10k K f<100k K f 500K 1

39 CY CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance Features: 105,2000hrs, Low ESR & large capacitance Recommended Applications: Used switching requlator applications in computer. Especially for high frequency. Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage (uf) 6.3V 10V 16V SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR X X X X X7 6.3X8 6.3X6 8X X8 6.3X8 8X8 8X X8 8X8 8X X X8 6.3X X X11.5 8X X X X X X X X8 8X X X X X X X SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

40 CZ CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Small Size & Low ESR Features: 105,2000hrs, Low ESR Recommended Applications: Used switching requlator applications in computer. Especially for high frequency. Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) Diagram of Dimensions Characteristics -55 ~ ~ 16VDC 100 ~ 2200μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ WV Z(100KHz) Z-25 / Z+20 Z-55 / Z ~ 16V ~ 16V After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at norma temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 1% per 1,000 hours (confidence level 60% at 105 ) Marking : case with red printing Size code ψd X L P ψd a B01 4X E01 6.3X E08 6.3X G08 8X G1B 8X H1A 10X H1C 10X Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K 10K F<100K Coefficient K F 500K 1

41 CZ CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Small Size & Low ESR Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage (uf) 2.5V 4V 6.3V SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR x x X x8 6.3x8 6.3X10.5 8x x x x x x x x X x x x x x x x x x x x x x x x x x x x x x x x x x x X Rated Voltage (uf) 10V 16V SIZE RIPPLE ESR SIZE RIPPLE ESR x x X X X X X X X X X X8 8X X X8 8X8 8X X8 8X X X11.5 8X X X X X X X X X SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

42 CR CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS High ripple & low ESR Features: 105,2000hrs, High Ripple & Low ESR Recommended Applications: Motherboard, DC/DC Converter,Adapter, SPS,VCR, Camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system,portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Characteristics -55 ~ ~ 6.3VDC 270 ~ 2700μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 500μA whichever is greater (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV 2.5 ~ 6.3V tanδ 0.10 Low Temperature Stability Impedance Ratio (MAX) (20 ) WV Z(100KHz) Z-25 / Z+20 Z-55 / Z ~ 6.3V Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 1% per 1,000 hours (confidence level 60% at 105 ) Diagram of Dimensions Marking : case with red printing Coated case ψd ψd max P±0.5 P±0.5 L+a max 15min 4min Size code ψd X L P ψd a E08 6.3X G08 8X G1B 8X Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K 10K F<100K 100K F 500K Coefficient

43 CR CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS High ripple & low ESR Dimensions,Rated Ripple Current,Equivalent Resistance (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE X X X X X X X X X X X X X X X X X x X X X X X X X X X X X X X X X X X X X X X X X X X X X X X12.5 Rated Voltage 2.5V 4V 6.3V 8X ESR 10X SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

44 CX CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance Features: 105,2000hrs, Low ESR & large capacitance Recommended Applications: Used switching requlator applications in computer. Especially for high frequency. Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) 105, 2000hrs, Endurance Rated Voltage applied (28V-->25V) 1 Humidity Test Surge Voltage Test Failure Rate (MAX) Diagram of Dimensions Characteristics -55 ~ ~28VDC 33 ~ 820μ F ±20% at 120Hz, V~25V Rated voltage (V) x 1.15, 28V Products is 28V at 25 I 0.2 CV (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV 2.5 ~ 6.3V tanδ 0.08 WV Z(100KHz) Z-25 / Z+20 Z-55 / Z+20 1Please reduce V per 1 from over 85 for 28V products 2.5 ~ 28V ~ 28V 0.12 After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value After subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at norma temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 0.5% per 1,000 hours (confidence level 60% at 105 ) Marking : case with red printing Size code ψd X L P ψd a E08 6.3X G08 8X Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K Coefficient K F<100K K F 500K 1

45 CX CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage 2.5V 4V 6.3V (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR 470 8x x x x x x x Rated Voltage 16V 28V (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE x x x x ESR SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

46 CF CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance Features: 105,2000hrs, Super Low ESR & large capacitance Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system, Portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) Characteristics -55 ~ ~63VDC 10~ 2000μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) WV 2.5 ~ 10V tanδ 0.08 WV Z(100KHz) Z-25 / Z+20 Z-55 / Z ~ 63V ~ 64V 0.12 After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value After subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 0.5% per 1,000 hours (confidence level 60% at 105 ) Diagram of Dimensions Marking : case with red printing Size code ψd X L P ψd a C09 5X E08 6.3X E1A 6.3X G08 8X G10 8X G1B 8X G15 8X H1A 10X H1C 10X H20 10X Multiplier for Ripple Current Frequency (Hz) Coefficient 120 F<1K K F<10K 10K F<100K K F 500K 1

47 CF CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitanc Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage Capacitanc 2.5V 6.3V 10V e (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR 330 5X X X X9 6.3X X X X X10 8X X X X X8 8X X X X X X X X X X X X Capacitanc Rated Voltage 16V 20V 25V e (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR 10 5X X X X X8 6.3X8 8X8 6.3X X X X X10.5 8X8 6.3X X X X X X X9 10X X X8 8X8 8X X X X X X X X X X X Size:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ).20.1

48 CF CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitanc Dimensions,Rated Ripple Current,Equivalent Resistance Capacitanc Rated Voltage 32V 35V 50V e (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE 10 5X X X8 8X X X8 10X X X X X X X X X X X X X X X X X X X X Capacitanc Rated Voltage 63V e (uf) SIZE RIPPLE ESR 33 8X X Size:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ).20.1 ESR 48 45

49 CS CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance & Long Life & High Voltage Features: 105,2000/5000hrs & Large capacitance & Long Life & High Voltage Recommended Applications : LED Driver, LED Power Supply. Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) Characteristics -55 ~ ~ 50VDC 22 ~ 470μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15(at room temperature or at 25 ) I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) WV Z(100KHz) Z-25 / Z+20 Z-55 / Z+20 WV 20 ~ 50V tanδ ~50V After applying rated voltage for 2000/5000 hours at 105 the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value After subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 0.5% per 1,000 hours (confidence level 60% at 105 ) Diagram of Dimensions Marking : case with red printing Size code ψd X L P G1B 8X H1C 10X ψd a Multiplier for Ripple Current Frequency (Hz) Coefficient 120 F<1K 1K F<10K 10K F<100K 100K F 500K

50 CS CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Large capacitance & Long Life & High Voltage Dimensions,Rated Ripple Current,Equivalent Resistance (uf) RIPPLE RIPPLE 22 5X SIZE 20V 150 8X X X X X X X ESR SIZE 25V ESR V 50V (uf) SIZE RIPPLE ESR SIZE RIPPLE ESR 39 8X X X X X X X X X X Size:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

51 CH CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Long life & Ultra low ESR Features: 105,5000hrs, Ultra Low ESR Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system, Portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) Diagram of Dimensions Characteristics -55 ~ ~ 16VDC 100 ~ 2200μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ WV Z(100KHz) Z-25 / Z+20 Z-55 / Z ~ 16V 0.12 After applying rated voltage for 5000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value WV Life 2.5 ~ 16V ~ 16V 5000 after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at norma temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 1% per 1,000 hours (confidence level 60% at 105 ) Marking : case with red printing Size code ψd X L P ψd a C09 5X E01 6.3X E08 6.3X G1B 8X H1C 10X Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K Coefficient K F<100K K F 500K 1

52 CH CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Long life & Ultra low ESR Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage (uf) 2.5V 4V 6.3V SIZE RIPPLE ESR SIZE RIPPLE ESR SIZE RIPPLE ESR X X X X x X X x x X X x X x X X X x x x Rated Voltage (uf) 10V 16V SIZE RIPPLE ESR SIZE RIPPLE ESR X X X X X8 8X8 8x x X x X X X X X x X X Size:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

53 CT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS hrs / hrs & Low ESR Features: 125,1000hrs & 105,5000hrs,Low ESR Recommended Applications: Motherboard, DC/DC Converter,Adapter, SPS,VCR, Camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system,portable Communication Devices Corresponding product to RoHS Specifications Tolerance Surge Voltage Item Category Temperature Range Rated Voltage Range Rated Range Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Characteristics -55 ~ ~ 25VDC 10 ~ 1200μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 I 0.2 CV or 300μA whichever is greater (After rated voltage applied for 2 minutes) Please see the attached characteristics list I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV 6.3 ~ 25V tanδ 0.12 Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Surge Voltage Test Failure Rate (MAX) WV 6.3 ~ 25V Z(100KHz) Z-25 / Z Z-55 / Z After applying rated voltage for 1000 hours at 125 & 5000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. After subjecting to 1,000 cycles each consisting of charge with the surge voltage specified at normal temperature for 30 seconds through a protective resistor and discharge for 5 minutes 30 seconds, the capacitors shall meet the requirement as Endurance. 1% per 1,000 hours (confidence level 60% at 105 ) Diagram of Dimensions Marking : case with red printing Size code ψd X L P ψd a E08 6.3X G08 8X G1B 8X H1C 10X Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K 10K F<100K 100K F 500K Coefficient

54 CT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS hrs / hrs & Low ESR Dimensions,Rated Ripple Current,Equivalent Resistance (uf) Tx:125 Tx: X X X X X X SIZE 8X X X X X X11.5 RIPPLE 6.3V T0:105 ESR LC(μA)(max) after 2mins X X X X X X Rated Voltage SIZE RIPPLE 10V T0:105 ESR LC(μA)(max) after 2mins (uf) Tx:125 Tx: X X X X X X X X X X X X X X SIZE 8X8 RIPPLE ESR 8X X12.5 T0: X X V LC(μA)(max) after 2mins Rated Voltage SIZE RIPPLE 20V T0:105 ESR LC(μA)(max) after 2mins Rated Voltage 25V (uf) RIPPLE LC(μA)(max) SIZE ESR Tx:125 T0:105 after 2mins SIZE X X X X X X X X X X X X X X X RIPPLE Tx:125 T0:105 ESR LC(μA)(max) after 2mins Tx:Ambient temperature SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

55 SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Standard SMD type product VP Features: 105,2000hrs, Standard SMD type product Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system, Portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Endurance Resistance to Soldering Heat* -55 ~ ~ 25VDC 22 ~ 1500μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. Change Dissipation Factor Equivalent Resistance Leakage Current *For any doubt about measured values, measure the leakage current again after the following voltage treatment. Voltage treatment: Applying DC rated voltage to the capacitors for 2 hours at 105 oc. Diagram of Dimensions ΦD L A H I W P ~ 25V 0.12 Characteristics Leakage Current (MAX) (20 )* Less than or equal to the value of Table.(After rated voltage applied for 2 minutes at 20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Humidity Test WV tanδ WV Z(100KHz) Z-25 / Z+20 Z-55 / Z+20 After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value WV Life 2.5 ~ 25V ~ 25V 2000 Within ±10% of the initial value Not more than 130% of the initial specified value Not more than 130% of the initial specified value Not more than the initial specified value Max Max 0.65± 1.5± Max ± 1.8± ± 1.8± Max ± 2.2± Max ± ± ± Max ± ± ± Max ± ± ±0.20 K Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K Coefficient K F<100K K F 500K 1

56 SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Standard SMD type product VP Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage (μ 2.5V 4V F) SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) x x x x x x x x X x x x x x x x x x (μ F) SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) 22 5X x x x x x x x x X X X X x x X x x x x x5.8 8X X x x X x x x X10.4 8x x x X x x V 10V Rated Voltage X x SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

57 SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Standard SMD type product VP Dimensions,Rated Ripple Current,Equivalent Resistance (μ F) SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) 22 5x X x X x x X x X x X X X x x x x X x X X X X (μ Rated Voltage 25V F) SIZE RIPPLE ESR LC(μA max/2min) X X X X X X6.7 10x x V SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz Rated Voltage 20V

58 SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS High capacitance and Super low ESR VB Features: 105,2000hrs, High capacitance and Super low ESR Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system, Portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Endurance Humidity Test Diagram of Dimensions -55 ~ ~ 25VDC 33 ~ 1200μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 Leakage Current (MAX) (20 ) Less than or equal to the value of Table.(After rated voltage applied for 2 minutes at 20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Resistance to Soldering Heat* WV tanδ WV Z(100KHz) Z-25 / Z+20 Z-55 / Z After applying rated voltage for 2000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value WV Life 2.5 ~ 25V ~ 25V 2.5 ~ 25V 2000 after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. Change Dissipation Factor Equivalent Resistance Leakage Current Characteristics *For any doubt about measured values, measure the leakage current again after the following voltage treatment. Voltage treatment: Applying DC rated voltage to the capacitors for 2 hours at 105 oc. Within ±10% of the initial value Not more than 130% of the initial specified value Not more than 130% of the initial specified value Not more than the initial specified value ΦD L A H I W P Max ± 1.8± Max ± 1.8± Max ± 2.2± Max ± ± ± Max ± ± ±0.20 K -0.2 Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K Coefficient K F<100K K F 500K 1

59 VB x X x x X SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS 6.3x X7.7 High capacitance and Super low ESR Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage (μ 2.5V 4V F) SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) X X X (μ F) SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) 68 5X X x x X x X X X X X X X X X x X x5.8 8X10.4 8X X X X X X Rated Voltage 6.3V 10V (μ F) RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) X X SIZE 6.3x X V 6.3x X X X X X X X X Rated Voltage 25V SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

60 SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Long life and Ultra low ESR VS Features: 105,5000hrs, Long life and Ultra low ESR Recommended Applications: Motherboard, DC/DC Converter, Adapter, SPS,VCR, camcorder, DSC, PDA, HD Drive, MO Drive, DVD Drive, Navigation system, Portable Communication Devices Corresponding product to RoHS Specifications Item Category Temperature Range Rated Voltage Range Rated Range Tolerance Surge Voltage Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) (20 ) Endurance Humidity Test Resistance to Soldering Heat* Diagram of Dimensions -55 ~ ~ 20VDC 22 ~ 470μ F ±20% at 120Hz, 20 Rated voltage (V) x 1.15 Less than or equal to the value of Table.(After rated voltage applied for 2 minutes at 20 ) WV tanδ WV Z(100KHz) Z-25 / Z+20 Z-55 / Z+20 4 ~ 16V After applying rated voltage for 5000 hours at 105, the capacitor shall meet the following requirement. Appearance No significant damage Change Within ±20% of the initial value Dissipation Factor Not more than 150% of the initial specified value Equivalent Resistance Not more than 150% of the initial specified value Leakage Current Not more than the initial specified value WV Life 4 ~ 16V 2.5 ~ 16V 5000 Characteristics after subjecting 90 to 95% RH for 1000 hours at 60. the capacitors shall meet the requirement as Endurance. Change Within ±10% of the initial value Dissipation Factor Not more than 130% of the initial specified value Equivalent Resistance Not more than 130% of the initial specified value Leakage Current Not more than the initial specified value *For any doubt about measured values, measure the leakage current again after the following voltage treatment. Voltage treatment: Applying DC rated voltage to the capacitors for 2 hours at 105 oc. ΦD L A H I W P Max ± 1.8± Max 12.0 Max ± ± ± ± ± ±0.20 K Multiplier for Ripple Current Frequency (Hz) 120 F<1K 1K F<10K Coefficient K F<100K K F 500K 1

61 VS SURFACE MOUNT CONDUCTIVE POLYMER ALUMINUM SOLID CAPACITORS Long life and Ultra low ESR Dimensions,Rated Ripple Current,Equivalent Resistance Rated Voltage (μf) SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) x x x V x X X X X X V (μf) 10V SIZE RIPPLE ESR LC(μA max/2min) SIZE RIPPLE ESR LC(μA max/2min) 22 5X x X x x x x x x Rated Voltage 16V (μf) SIZE RIPPLE ESR LC(μA max/2min) X X V Rated Voltage SIZE:ψDxL(mm) tanδ:20,120hz. Ripple Current:(mA/rms), KHz ESR(mΩ) KHz

62 GV General purpose Features : hours & Low profile vertical chip Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer, Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance SURFACE MOUNT ALUMINUM ELECTROLYTIC Home appliance, OA/HA/Communication -40 ~ ~ 100VDC 1 ~ 1500μF ± 20 % at 120Hz, 20 I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) the capacitors shall meet the following requirements. Leakage Current Characteristics After applying rated voltage for 2000hrs at 85, Change Within ±20% of the initial value Dissipation Factor Not more than 200% of the specified value Not more than the specified value Shelf Life After placed at 85 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions(mm) s ψd L A H I W P Max Max ±0.23.1±0.2 ( ) : Reference size Max ±0.24.6± Max 6.5 Max 7.8 Max ± ± ± ± ± ± ±0.11.8± K ± ±0.20 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 60 Coefficient K 10K

63 General purpose GV SURFACE MOUNT ALUMINUM ELECTROLYTIC Dimensions,Max Dissipation Factor,Max Permissible Ripple Current Capacitanc Rated (Surge) Voltage e 4(5) 6.3(8) 10(13) 16(20) (μf) Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple 4.7 4x x x x x x x x x x x x x5.4 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Capacitanc Rated (Surge) Voltage e 25(32) 35(44) 50(63) (μf) Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple 1 4x x x x x x x x x x5.4 5x5.4 5x x x x5.4 5x x x x x x x x7.7 8x x x x x7.7 8x x x x x7.7 8x x x7.7 8x10.2 8x x x x x x x x x x x Capacitanc Rated (Surge) Voltage e 63(79) 100(125) (μf) Size tanδ Ripple Size tanδ Ripple x x x x x x x x x x x x x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 85,120Hz,(mA/rms).

64 FV Long Life SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : ~5000 hours,longer life than GV, Low profile vertical chip Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer, OA/HA/Communication Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -40 ~ ~ 100VDC 1 ~ 1000μF ± 20 % at 120Hz, 20 Characteristics I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) After applying rated voltage for 3000~5000 hours at 85, the capacitors shall meet the following requirements. Change Within ±20% of the initial value Case (ψ) Life time (hrs) Dissipation Factor Not move than 200% of the specified value ψd Leakage Current Not more than the specified value ψd After placed at 85 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance Diagram of Dimensions(mm) s ψd L A H I W P Max 0.65± ± ± ±0.2 ( ) : Reference size Max ± ± Max ± ±0.2 ( ) : Reference size Max ± ± Max Max ± ±0.2 K ± ±0.2 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) K 10K Coefficient

65 FV SURFACE MOUNT ALUMINUM ELECTROLYTIC Long Life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current Capacitanc Rated (Surge) Voltage e 4(5) 6.3(8) 10(13) 16(20) (μf) Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple 4.7 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Capacitanc e (μf) Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple 1 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x Capacitanc e (μf) Rated (Surge) Voltage 25(32) 35(44) 50(63) Rated (Surge) Voltage 63(79) 100(125) Size tanδ Ripple Size tanδ Ripple 3.3 8x x x x x x x x x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 85,120Hz,(mA/rms).

66 SV General Purpose SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : hours, Higher temperature range Than GV, Low profile vertical chip Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer, OA/HA/Communication Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance -40 ~ ~ 100VDC 1 ~ 1500μF ± 20 % at 120Hz, 20 I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current Characteristics After applying rated voltage for 1000hrs at 105, Within ±20% of the initial value Not more than 200% of the specified value Not more than the specified value Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions(mm) s ψd L A H I W P Max Max Max Max ± ± ± ± ±0.11.8± ± ± K Max ± ± ±0.2 ( ) : Reference size Max ± ± ±0.2 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 60 Coefficient K K 1.25

67 General Purpose SV Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple 4.7 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple 1 4x x x x x x x x x5.4 SURFACE MOUNT ALUMINUM ELECTROLYTIC Dimensions,Max Dissipation Factor,Max Permissible Ripple Current (μf) (μf) x5.4 Rated (Surge) Voltage 4(5) 6.3(8) 10(13) (32) Rated (Surge) Voltage 35(44) 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 63(79) 100(125) (μf) Size tanδ Ripple Size tanδ Ripple 3.3 8x x x x x x x x x x x x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(mA/rms) x7.7 50(63) 10x (20)

68 DV Long Life SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : hours, Longer life than SV, Low profile vert Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer OA/HA/Communication Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -40 ~ ~ 100VDC 1 ~ 2200μF ± 20 % at 120Hz, 20 I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard ratings WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) After applying rated voltage for 2000hrs at 105, Change Dissipation Factor Leakage Current Characteristics -25~ ~450VDC ~ ~ the capacitors shall meet the following requirements. Case (ψ) ψ4 toψ6.3 Within ±25% of the initial value Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. ψ8 toψ10 Within ±20% of the initial value Diagram of Dimensions(mm) ψd L A H I W P K + s Max ± ± Max ± ± Max ± ± Max ± ± Max ± ± ±0.20 ( ) : Reference size Max ± ± 4.6± ± Max ± ± ± Max ± ± ± Max ± ±0.30 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Coefficient K K 1.25

69 DV Long Life SURFACE MOUNT ALUMINUM ELECTROLYTIC Dimensions,Max Dissipation Factor,Max Permissible Ripple Current Capacitan Rated (surge) Voltage ce 6.3(8) 10(13) 16(20) 25(32) 35(44) (μf) ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl 4.7 e e e 4x e 4x e 6.8 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x5.4 8x x7.7 8x x10.2 8x x x x x x7.7 10x x x x x x x x x x x x x x X x x13.5 Capacitan ce (μf) x x x Rated (surge) Voltage 50(63) 63(79) 100(125) 160(200) 200(250) ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl 1 4x x x x x x x x x7.7 8x x13 8x10.2 8x10.2 8x x x16 8x x x x13 16x x x16 16x x x7.7 8x x x x x x x x x x x x X Capacitan Rated (surge) Voltage ce 250(300) 400(450) 450(500) (μf) ψdxl tanδ Rippl ψdxl tanδ Rippl ψdxl tanδ Rippl x x x x x x x x x x x x x x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(mA/rms).

70 ZV Low Impedance SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : hours, Wide temperature range, Low profile vertical chip,low impedance Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer, Battery charger, Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance -55~ ~ 50VDC 1 ~ 1500μF DC/DC converter,smps,noise filter ± 20 % at 120Hz, 20 I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Leakage Current After applying rated voltage with rated ripple current for 1000hrs at 105, the capacitors shall meet the following requirements. Change Within ±20% of the initial value Dissipation Factor Characteristics Not more than 200% of the specified value Not more than the specified value 50 Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions(mm) s ψd L A H I W P Max ± ± Max Max ±0.11.5± ± ± ± ± K Max ± ± ±0.20 ( ) : Reference size Max ± ± ± Max Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K 10K Coefficient K 1.0

71 ZV SURFACE MOUNT ALUMINUM ELECTROLYTIC Low Impedance Dimensions,Max Permissible Ripple Current,Max Impedance (μf) Rated (Surge) Voltage 4(5) 6.3(8) 10(13) 16(20) Size tanδ Ripple Z Size tanδ Ripple Z Size tanδ Ripple Z Size tanδ Ripple Z 10 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x (μf) Rated (Surge) Voltage 25(32) 35(44) 50(63) Size tanδ Ripple Z Size tanδ Ripple Z Size tanδ Ripple Z 1 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size:Dψx L(mm) Ripple Current: 105,100KHz,(mA/rms) Impedance: 20,100KHz,Z(Ω).

72 YV Low Impedance SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : ~2000 hours, Wide temperature range, Low profile vertical chip,low impedance Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer, Battery charger, Corresponding product to RoHS DC/DC converter,smps,noise filter Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -55 ~ ~ 50VDC 1 ~ 1500μF ± 20 % at 120Hz, 20 I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) After applying rated voltage with rated ripple current for 1000~2000hrs at 105, the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current DΦ Life Characteristics VF Within ±30% of the initial value,10-50vfwithin ±20% of the initial value Not more than 200% of the specified value Not more than the specified value 4x5.4~6.3x hrs After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. 8x10.2~10x hrs Diagram of Dimensions(mm) s ψd L A H I W P Max Max ±0.23.1±0.2 ( ) : Reference size Max ± ± Max Max ± ± ± ± ± ± Max ± ± K ± ±0.20 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K 10K 100K Coefficient

73 YV 10 4x x x x5. 5x x x5. 5x x x5. 5x x x x x x x x x x x x x x x x x x Capacitanc e (μf) SURFACE MOUNT ALUMINUM ELECTROLYTIC Low Impedance Dimensions,Max Permissible Ripple Current,Max Impedance Capacitanc Rated (Surge) Voltage e 6.3(8) 10(13) 16(20) (μf) Size tanδ Ripple Z Size tanδ Ripple Z Size tanδ Ripple Z Rated (Surge) Voltage 25(32) 35(44) 50(63) Size tanδ Ripple Z Size tanδ Ripple Z Size tanδ Ripple Z 1 4x x x x x5. 5x x5. 5x x5. 5x x x x x x x x x x x x x x x x x x x x Size:Dψx L(mm) Ripple Current: 105,100KHz,(mA/rms) Impedance: 20,100KHz,Z(Ω).

74 EV SURFACE MOUNT ALUMINUM ELECTROLYTIC Ultra Low Impedance Features : hours, Low profile vertical chip, Ultra low impedance Recommended Applications: AV(TV,Video,Audio),Monitor/Computer, OA/HA/Communication,SMPS Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -55 ~ ~ 50VDC 4.7 ~ 1500μF ± 20 % at 120Hz, 20 I 0.01CV or 3μA whichever is greater(after rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) After applying rated voltage with rated ripple current for 2000 hours at 105, the capacitor shall meet the following requirement. Change Within±30% of the initial value Dissipation Factor Leakage Current Characteristics Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. 50 Diagram of Dimensions(mm) s ψd L A H I W P Max ± ± Max ± Max ± ± ± Max ± ± Max ± ± K ± Max ± ± ±0.2 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K Coefficient K K 1.00

75 EV (μf) Ultra Low Impedance SURFACE MOUNT ALUMINUM ELECTROLYTIC Case Size / tanδ/ Max Ripple Current / Impedance 6.3(8) Rated (Surge) Voltage 10(13) 16(20) ψdxl tanδ RC Z ψdxl tanδ RC Z ψdxl tanδ RC Z 22 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x (μf) Rated (Surge) Voltage 25(32) 35(44) 50(63) ψdxl tanδ RC Z ψdxl tanδ RC Z ψdxl tanδ RC Z 4.7 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x CASE SIZE:ψDxL(mm) MAX DISSIPATION FACTOR :tanδ / 120Hz,20. MAX PERMISSIBLE RIPPLE CURRENT:RC(mArms) / 100KHz,105. MAX IMPEDANCE:Z(Ω) / 100KHz,20.

76 JV SURFACE MOUNT ALUMINUM ELECTROLYTIC Ultra Low Impedance Features : hours, Low profile vertical chip, Ultra low impedance Recommended Applications: AV(TV,Video,Audio),Monitor/Computer, OA/HA/Communication,SMPS Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -55 ~ ~ 35VDC 10~ 1800μF ± 20 % at 120Hz, 20 I 0.01CV or 3μA whichever is greater(after rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Characteristics After applying rated voltage with rated ripple current for 2000 hours at 105, the capacitor shall meet the following requirement. Change Within±30% of the initial value Dissipation Factor Leakage Current Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions(mm) s ( ) : Reference size ψd L A H I W P Max ± Max Max Max ± ± ± ± ± ± ± Max ± ± Max ± ± K ± ±0.2 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K Coefficient K K 1.00

77 JV (μf) SURFACE MOUNT ALUMINUM ELECTROLYTIC Case Size / tanδ/ Max Ripple Current / Impedance ψdxl tanδ RC Z ψdxl tanδ RC Z ψdxl tanδ RC Z 22 4x x x x Ultra Low Impedance 4x x x x x x x5.4 5x x x x x x x x x x x x x x x x x x x7.7 8x x x x10.2 8x x x x x x x x x x (8) 10(13) Rated (Surge) Voltage 8x x (20) x x (μf) ψdxl tanδ RC Z ψdxl tanδ RC Z 10 4x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 25(32) 35(44) x x x CASE SIZE:ψDxL(mm) MAX DISSIPATION FACTOR :tanδ / 120Hz,20 MAX PERMISSIBLE RIPPLE CURRENT:RC(mArms) / 100KHz,105 MAX IMPEDANCE:Z(Ω) / 100KHz, x

78 XV SURFACE MOUNT ALUMINUM ELECTROLYTIC Ultra Low Impedance & Long Life Features : ~5000 hours, Low profile vertical chip, Ultra low impedance Recommended Applications: AV(TV,Video,Audio),Monitor/Computer, OA/HA/Communication,SMPS Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -55 ~ ~ 50VDC 1.0 ~ 1000μF ± 20 % at 120Hz, 20 I 0.01CV or 3μA whichever is greater(after rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Dissipation Factor Leakage Current DΦ x5.4~6.3x7.7 Characteristics After applying rated voltage with rated ripple current for 3000~5000 hours at 105, the capacitor shall meet the following requirement. Change Within±30% of the initial value Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. 8x10.2~10x10.2 Life 3000hrs 5000hrs Diagram of Dimensions(mm) s ψd L A H I W P Max ± ± Max ± ± Max ± ± Max ± ± Max ± ± Max ± ± K ± ±0.2 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K Coefficient K K 1.00

79 XV SURFACE MOUNT ALUMINUM ELECTROLYTIC Case Size / tanδ/ Max Ripple Current / Impedance (μf) Ultra Low Impedance & Long Life Rated (Surge) Voltage 6.3(8) 10(13) ψdxl tanδ RC Z ψdxl tanδ RC Z ψdxl tanδ RC Z 10 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x (20) (μf) ψdxl tanδ RC Z ψdxl tanδ RC Z ψdxl tanδ RC Z 1 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 25(32) 35(44) 50(63) CASE SIZE:ψDxL(mm) MAX DISSIPATION FACTOR :tanδ / 120Hz,20 MAX PERMISSIBLE RIPPLE CURRENT:RC(mArms) / 100KHz,105 MAX IMPEDANCE:Z(Ω) / 100KHz,20

80 HV SURFACE MOUNT ALUMINUM ELECTROLYTIC Ultra Low Impedance & High temperature Features : ~ 2000 hours,higher temperature range Recommended Applications: Automatic Mounting and Reflow Soldering Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -40 ~ ~ 50VDC 47 ~ 1000μF ± 20 % at 120Hz, 20 Characteristics I 0.01CV or 3μA whichever is greater(after rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) After applying rated voltage for 1000~2000 hours at 125, the capacitor shall meet the following requirement. Change Dissipation Factor DΦ Life Leakage Current Within±30% of the initial value Not more than 300% of the specified value 6.3x7.7-8x hrs Not more than the specified value 8x hrs After placed at 125 without voltage applied for 1000 hours(500 hours for 8x6.2), the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions(mm) s ψd L A H I W P Max ± ± K Max ± ± ± Max ± ± ±0.2 ( ) : Reference size Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K 10K Coefficient K 1.00

81 HV SURFACE MOUNT ALUMINUM ELECTROLYTIC High temperature Case Size / tanδ/ Max Ripple Current Rated (Surge) Voltage (μf) 10(13) 16(20) 25(32) ψdxl tanδ RC ψdxl tanδ RC ψdxl tanδ RC x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage (μf) 35(44) ψdxl tanδ RC ψdxl tanδ RC x x x7.7 8x x6.2 8x x10.2 8x x x x x (63) CASE SIZE:ψDxL(mm) MAX DISSIPATION FACTOR :tanδ / 120Hz,20 MAX PERMISSIBLE RIPPLE CURRENT:RC(mArms) / 120Hz,125

82 CV Low Leakage SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : hours, Low profile vertical chip, Low Leakage current ( 0.5μA to 2.0μA max.) Recommended Applications: Security System, Backup Battery Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) -40 ~ ~ 50VDC 1 ~ 100μF ± 20 % at 120Hz, 20 I 0.002CV or 0.5μA whichever is greater(after rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating Characteristics Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Dissipation Factor After applying rated voltage for 2000 hours at 85, the capacitor shall meet the following requirement. Change Within ±25% of the initial value Leakage Current Not more than 200% of the specified value Not more than the specified value After placed at 85 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. 50 Diagram of Dimensions(mm) ψd L A H I W P K s Max ± ± Max ±0.11.5± Max ± ± Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Coefficient K K 1.25

83 CV Case Size / tanδ/ Max Ripple Current / ESR (μf) SURFACE MOUNT ALUMINUM ELECTROLYTIC Low Leakage Rated (Surge) Voltage 6.3(8) 10(13) 16(20) ψdxl tanδ RC ψdxl tanδ RC ψdxl tanδ RC 10 4x x x x x x x x x x x x (μf) Rated (Surge) Voltage 25(32) 35(44) 50(63) ψdxl tanδ RC ψdxl tanδ RC ψdxl tanδ RC 1 4x x x x x x x x x x x x CASE SIZE:ψDxL(mm) MAX DISSIPATION FACTOR :tanδ / 120Hz,20 MAX PERMISSIBLE RIPPLE CURRENT:RC(mArms) / 120Hz,85

84 NV Non-polar SURFACE MOUNT ALUMINUM ELECTROLYTIC Features : hours,non-polarized,low profile vertical chip, 5.5mm height ( ψ6.3) Recommended Applications: Suitable for AV(TV,Video,Audio),Monitor/Computer, OA/HA/Communication,Reversed polarity circuit Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range (WV) Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -40 ~ ~ 50VDC 1 ~ 47μF ± 20 % at 120Hz, 20 I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Shown in the table of standard rating WV Z(120HZ) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Change Dissipation Factor Leakage Current 6.3 Characteristics After applying rated voltage for 2000hrs at 105, the capacitors shall meet the following requirements. (The polarity shall be reversed every 250 hours Within ±20% of the initial value Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. 50 Diagram of Dimensions(mm) s ψd L A H I W P Max ± ± Max ± ± Max ± ± K ( ) : Reference size Multiplier for Ripple Current Frequency coefficient Frequency (Hz) K Coefficient K 1.20

85 SURFACE MOUNT ALUMINUM ELECTROLYTIC NV Non-polar Dimensions,Max Dissipation Factor,Max Permissible Ripple Current Capacitanc e (μf) 6.3(8) Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple Size tanδ Ripple x x x x x x x x x x x x Capacitanc e (μf) Rated (Surge) Voltage 35(44) 50(63) Size tanδ Ripple Size tanδ Ripple 1 4x x x x x x x x Rated (Surge) Voltage 10(13) 16(20) 25(32) Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(mA/rms).

86 SK General purpose Features: hours Recommended Applications: For general purpose, decoupling, by pass and filtering circuit in entertainment electronics Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -40~+85-25~ ~ 100VDC 160 ~ 500VDC 1 ~ 22000μF ± 20 % at 120Hz, 20 I=0.01CV or 3μA whichever is greater. (After rated voltage applied for 2 minutes ) WV tanδ Characteristics ~ ~ When nominal capacitance is over 1000uF, tanδ shall be added 0.02 to the listed value with increase of every 1000uF Z(120Hz) Z-25 / Z+20 Z-40 / Z+20 After applying rated voltage for 2000 hours at the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Leakage Current WV After placed at 85 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance ~ 470μF I=0.03CV+10(μA) ~ ~ ~ ~500 Not more than 200% of the specified value initial specified value or less Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) K 10K 6.3 ~ 100V Below 68μF ~ 100V 100 ~ 680μF ~ 100V 1000 ~ 22000μF ~ 450V Below 220μF ~ 450V 220μF Above V

87 SK General purpose Dimensions,Rated Ripple Current (μf) Rated (Surge) Voltage 6.3 (8) 10 (13) 16 (20) 25 (32) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 5x x x x x x x x x x x x x x x x x x x X x x x x x x x X x x x x x x x x x x x x x x x x x x x x x x x x11 6.3x11 6.3x x11 6.3x11 6.3x x11 6.3x11 8x x11 8x11 8x x11 10x x x x15 10x x15 10x20 13x x x x x x x x x x x x11 10x20 10x x x20 13x x15 13x20 13x x20 13x25 16x x20 16x25 16x x25 16x36 18x x25 18x36 22x x x x x x x x x x X x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 85,120Hz 35 (44) 50 (63) 63 (79)

88 SK General purpose Dimensions,Rated Ripple Current (μf) Rated (Surge) Voltage 100 (125) 160 (200) 200 (250) 250 (300) 350 (400) 400 (450) 450 (500) 500(550) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple x x x x x x x x x x x x x x x x x x x x x x x x x x X x x11 5x11 5x11 6.3x11 8x11 10x x15 10x x11 8x11 8x11 10x15 10x15 10x20 13x20 13x x11 8x11 8x11 10x15 10x20 10x20 13x25 16x x11 8x15 10x x20 13x20 13x25 16X32 16x x x15 10x15 13x20 13x25 16x25 18X32 16x x11 10x20 10x15 13x20 13x25 16x25 18x36 18X X x20 13x25 16x25 16x32 18x x20 16x25 16x25 18x x11 8x x x x X x x x20 18x x x x X X x25 13x x32 18x x32 16x x x25 18x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 85,120Hz

89 SE General Purpose Features: hours SH Recommended Applications: For general purpose coupling,decoupling, Long Life by pass, and filtering circuit in entertainment electronics SE Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX)(20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance ± 20 % at 120Hz, 20 I=0.01CV or 3(μA),whichever is greater. I=0.03CV+10(μA) (After rated voltage applied for 2 minutes ) WV ~ ~ ~450 tanδ When nominal capacitance is over 1000uF, tanδ shall be added 0.02 to the listed value with increase of every 1000uF the capacitors shall meet the following requirements. Change Leakage Current Characteristics -40~ ~ ~ 100VDC 160 ~ 250VDC 1 ~ 15000μF 1 ~ 470μF Z(120Hz) Z-25 / Z+20 Z-40 / Z+20 WV After applying rated voltage for 1000 hours at 105 Dissipation Factor ~ ~ 450VDC 35~ ~ ~ ~ Within ± 20 % of initial value Not more than 200% of the specified value initial specified value or less 1 ~ 150μF Shelf Life After leaving capacitors under no load at 105 for 500 hours. the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 6.3 ~ 100V Below 68μF 6.3 ~ 100V 100 ~ 680μF 6.3 ~ 100V 1000 ~ 22000μF 160 ~ 450V ALL Cap (μf) K K

90 SE General Purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 6.3 (8) 10 (13) 16 (20) 25 (32) 35 (44) 50 (63) 63 (79) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x X x x x x x x x x x x x x x x x x x x X x x x x x x x x x11 6.3x11 6.3x11 8x11 8x x11 6.3x11 6.3x11 8x11 8X x11 8x11 8x11 10x12.5 8x x11 8x11 8X15 10x15 10x x11 8X15 10x15 10x20 13x x x20 10x20 13x25 13x x15 10x20 13x20 13x25 16x x11 10x x11 10x x x X x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

91 SE General Purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 100 (125) 160 (200) 200 (250) 250 (300) 350 (400) 400 (450) 450 (500) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple x11 5x x11 6.3x x11 6.3x x11 6.3x x11 8x x11 6.3x x11 8x x11 8x x11 10x x x x x x x x x11 5x11 5x x11 8X11 8x x11 8X11 10x x11 8X11 10x X11 8x15 10x x11 10x15 10x x x x x x x x x x x x X x x x x x x x x11 10x x x20 10X20 13X x20 13x20 13x x20 13x25 13x x25 16x25 16x x25 16x25 18x x25 16x x x20 18x x x x x x x x x x x x X x X X X x x X X x x x x x X x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

92 SH Miniature and general purpose Features: hours Recommended Applications: For high quality, reliability application, high CV product Corresponding product to RoHS SH SE Long Life Specifications Item Operating Temperature Rang Rated Voltage Range Rated Range Tolerance ± 20 % at 120Hz, 20 I=0.01CV or 3(μA),whichever is greater. Leakage Current (MAX)(20 (After rated voltage applied for 2 minutes ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) -25~ VDC 2.2~82μF I=0.04CV+100(uA) WV ~ ~ ~ tanδ When nominal capacitance is over 1000uF, tanδ shall be added 0.02 to the listed value with increase of every 1000uF Z-25 / Z+20 Z-40 / Z+20 After applying rated voltage for 2000 hours at the capacitors shall meet the following requirements. Endurance Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Shelf Life -40~ ~ 100VDC 1~ 22000μF Z(120Hz) WV Leakage Current 6.3 Characteristics -25~ ~ 450VDC 1 ~ 470μF I=0.03CV+10(μA) After leaving capacitors under no load at 105 for 1000 hours. the capacitors shall meet the same requirement as Endurance ~ ~ ~450 initial specified value or less 500 Diagram of Dimensions ψd p ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) K 6.3 ~ 100V Below 68μF ~ 100V 100 ~ 470μF ~ 100V 471 ~ 22000μF ~ 450V ALL Cap (μf) 500V ALL Cap (μf) K

93 SH Miniature and general purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 6.3 (8) 10 (13) 16 (20) 25 (32) 35 (44) 50 (63) 63 (79) 100 (125) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x X x x x X x x X x x x X x x X x x x x x X x x x x x x X x x X x x x X x x x x X X11 6.3x11 8X11 8X x11 6.3x11 8x11 8X X11 8x11 8X15 10X X11 8X15 10x15 10X x x15 10X20 13X x20 10x20 13x20 13x x20 13x20 16x25 16x x25 16x32 16x x x11 8x11 10x x x x X x x x x X X x x X x x X X X X x x x x x X X X x X X X x X X x x X X X X Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

94 SH Miniature and general purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 160 (200) 200 (250) 250 (300) 350 (400) 400 (450) 420 (470) 450 (500) 500 (550) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple x11 6.3x11 6.3x11 6.3x11 8X x11 6.3x11 6.3x11 8x11 8X x11 6.3x11 8X11 8x11 8x x11 8x11 8x11 8x11 8X x11 8x11 8x11 8x11 10X x11 8x11 8x11 10X X x11 8x11 8X15 10x X x11 8X16 8X X X x11 10x x X X X X x x X X X X x X x X X X X X X x X X x X X X X X x X X X x X X x20 13x x20 13x X25 13x X25 16X x25 16X x25 18X X25 18X X x x X X X X x X x X X X X x X x X x X x x X x x X X x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

95 D5 5mm height Features : 85,1000hrs, Low profile/ultra Miniature, 5mm height Recommended Applications : AV(TV, Video, Audio), Monitor/Computer, OA/HA/Communication, Small signal Corresponding product to RoHS S5 High Temperature D5 Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~ 50VDC 1 ~ 220μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Characteristics I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) Z(-25 ) / Z(+20 ) Z(-40 ) / Z(+20 ) After applying rated voltage for 1000 hours at 85 the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Leakage Current Not more than 200% of the specified value Not more than in specified value After placed at 85 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance. Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq.(Hz) WV(VDC) K 10K 4 ~ ~

96 D5 5mm height Dimensions,Rated Ripple Current (μf) 4 (5) 6.3 (8) 10 (13) 16 (20) 25 (32) 35 (44) 50 (63) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1 4x x x x5 10 4x5 15 4x5 20 5x x5 20 4x5 20 4x5 25 4x5 30 5x x x5 25 4x5 30 5x5 30 5x5 35 5x x x x5 30 5x5 35 5x5 40 5x x x5 35 5x x x x x x x x x5 95 Rated (Surge) Voltage Size: Dψx L (mm) Ripple Current : ma/rms,85,120hz

97 S5 5mm height Features: hours, 5.0mm height Recommended Applications: Applicable for VTR, Camera, Car Audio, Miniaudio and other industrial /commercial applications Corresponding product to RoHS S5 High Temperature D5 Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~ 50VDC 1 ~ 470μF Tolerance ± 20 % at 120Hz, 20 Characteristics Leakage Current (MAX) (20 ) I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV tanδ Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) Z(-25 ) / Z(+20 ) Z(-40 ) / Z(+20 ) the capacitors shall meet the following requirements. Leakage Current After apply rated voltage for 1000 hrs at 105, Change Dissipation Factor After placed at 105 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance Within ± 20 % of initial value Not more than 200% of the specified value initial specified value or less 50 Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) K 10K 1~47μF ~330μF

98 S5 5mm height Dimensions,Rated Ripple Current (μf) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 4x x x x5 20 4x5 16 4x5 18 4x5 17 5x5 20 4x5 18 4x5 20 4x5 23 4x5 20 5x x5 33 5x5 27 4x5 20 4x5 28 5x5 33 4x x x x5 55 5x5 37 4x5 25 4x5 33 4x5 34 5x5 44 5x5 45 5x x x5 53 5x5 30 4x5 35 5x5 46 5x5 54 5x x x x x x5 50 5x x x5 85 8x x x x x x x5 100 Size: Dψx L (mm) 4 (5) Rated (Surge) Voltage 6.3 (8) 10 (13) 16 (20) 25 (32) 35 (44) Ripple Current: (ma/rms), 105,120Hz 50 (63)

99 H5 5mm height Features: hours, Higher temperature range, long life than S5 Low profile/miniature, 5mm height Recommended Applications: Monitor/Computer, AV(TV,Video,Audio), OA/HA/Communication, Small signal Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~ 50VDC 1 ~ 330μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) H5 S5 Long Life I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) WV tanδ Down size tanδ add 3%. WV Z(120Hz) Z-25 / Z Z-40 / Z After applying rated voltage for 2000 hours at 105 Load Life Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current Characteristics the capacitors shall meet the following requirements. 25 initial specified value or less Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as load life. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq. (Hz) WV(VDC) 4~16 25~ K 10K

100 H5 5mm height Dimensions,Rated Ripple Current (μf) 4 (5) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 4x x x x5 10 4x5 15 4x5 15 5x X5 15 4X5 20 4x5 20 4x5 25 5x X X5 20 4X5 25 5X5 25 5x X X X X5 25 5X5 30 5X5 35 5x X X5 30 5X X X X X X X X5 70 8X X X5 120 Size: Dψx L (mm) Rated (Surge) Voltage 6.3 (8) 10 (13) 16 (20) Ripple Current: (ma/rms), 105,120Hz 25 (32) 35 (44) 50 (63)

101 D7 7mm/9mm height Features: 85,1000hrs, Low profile/miniature, 7mm/9mm height Recommended Applications: AV(TV, Video, Audio), Monitor/Computer, OA/HA/Communication, Small signal Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range -40 ~ ~ 63VDC 1 ~ 470μF Rated Range Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) S7 High Temperature D7 Characteristics I 0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) Z(-25 ) / Z(+20 ) Z(-40 ) / Z(+20 ) After applying rated voltage for 1000 hours at 85 4 the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current Not more than in specified value After placed at 85 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq.(Hz) WV(VDC) 4 ~ ~35 50 ~ K K

102 D7 7mm/9mm height Dimensions,Rated Ripple Current (μf) Rated (Surge) Voltage 4 (5) 6.3 (8) 10 (13) 16 (20) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 2.2 4x x x7 20 4x7 20 4x x7 30 4x7 35 4x x7 35 4x7 40 5x7 50 5x x7 35 4x7 40 4x7 45 4x7 50 5x x x7 40 4x7 50 4x7 60 5x x x x7 65 5x7 80 5x x x x x x x x x x x x x x (32) 35 (44) (μf) Rated (Surge) Voltage 50 (63) 63 (79) Size Ripple Size Ripple 1 4x7 10 4x x7 20 4x x7 25 4x x7 35 5x x x x x x7 100 Size: Dψx L (mm) Ripple Current : ma/rms,85,120hz

103 S7 7mm height Features : hours, 7.0/9.0mm height Recommended Applications : For Portable Micro Computer, Disk Driver, Small Calculator and Audio equipment etc Corresponding product to RoHS S7 High Temperature D7 Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~ 63VDC 1 ~ 470μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Characteristics WV tanδ Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) Z-25 / Z Z-40 / Z After applying rated voltage for 1000 hours at 105 the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current initial specified value or less After placed at 105 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 1~47μF 100~330μF K 10K

104 S7 7mm height Dimensions,Rated Ripple Current (μf) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 4x7 10 4x x7 7 4x7 19 4x x7 13 4x7 24 4x x7 19 4x7 24 4x7 24 4x7 29 4x7 26 5x7 24 5x x7 33 4x7 29 4x7 33 4x7 34 4x7 37 5x7 42 5x7 35 5x7 36 5x x x x7 45 4x7 37 4x7 31 4x7 36 4x7 43 5x x7 65 5x7 38 5x7 44 5x x x7 53 4X7 30 5x7 42 4x7 39 4x7 50 5x x7 70 5x7 47 5x x7 65 4X7 35 4x7 46 4x7 50 5x7 75 5x x7 81 5x7 55 5x x x x x X7 55 5x7 75 5x7 85 5x x x x x x x (5) 6.3X x x x x x x x x9 165 Size: Dψx L (mm) 6.3 (8) 10 (13) 16 (20) Ripple Current: (ma/rms), 105,120Hz Rated (Surge) Voltage 25 (32) 35 (44) 50 (63) 63 (79)

105 H7 7mm/9mm height Features : hours, Higher temperature range, Long life than S7 Low profile/miniature, 7mm/9mm height Recommended Applications : Monitor/Computer, AV(TV,Video,Audio), OA/HA/Communication, Small signal Corresponding product to RoHS H7 Long Life S7 Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~ 63VDC 1 ~ 470μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) WV tanδ Down size tanδ add 3%. Characteristics Low Temperature Stability Impedance Ratio (MAX) Load Life Shelf Life WV Z(120Hz) Z-25 / Z Z-40 / Z After applying rated voltage for 2000 hours at 105 the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current initial specified value or less After placed at 105 without voltage applied for1000 hours, the capacitors shall meet the same requirement as load life. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq. (Hz) WV(VDC) 4~16 25~35 50~ K 10K

106 H7 7mm/9mm height Dimensions,Rated Ripple Current (μf) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 4x7 10 4x x7 10 4x7 20 4x x7 10 4x7 25 4x x7 15 4x7 20 4x7 25 4x7 30 5x x7 25 4x7 30 4x7 35 5x x x7 30 4x7 35 5x7 50 5x x X7 30 4x7 35 4x7 40 5x x x7 70 8x X7 35 5x7 50 5x x x7 70 8x7 80 8x X7 55 5x x x x x X x x x x x x x x9 210 Size: Dψx L (mm) 4 (5) Ripple Current: (ma/rms), 105,120Hz Rated (Surge) Voltage 6.3 (8) 10 (13) 16 (20) 25 (32) 35 (44) 50 (63) 63 (79)

107 RN Non-polar Features: 85,1000hrs, Non-polarized/Polarity reversing Recommended Applications: Small crossover network, Reversed polarity circuit, Coupling Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) I 0.03CV+4μA ; L=7mm,I 0.05CV or 10μA whichever is greater (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ When nominal capacitance is over 1000μF tanδ shall be added 0.02 to the listed value with increase of every 1000μF (The polarity shall be reversed every 250 hours) Endurance Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Shelf Life -40 ~ ~ 100VDC 1 ~ 6800μF ± 20 % at 120Hz, 20 Z(120Hz) WV Z(-25 ) / Z(+20 ) Z(-40 ) / Z(+20 ) 4 After placed at 85 without voltage applied for 500 hours, Characteristics -25~ ~250VDC 1~100μF the capacitors shall meet the same requirements as load life After applying rated voltage for 1000 hours at 85,the capacitors shall meet the following requirements. Leakage Current Not more than the specified value 250 Diagram of Dimensions ψd P ψd a ( 0.45 ( 1.0 ) ( 0.45) ( 1.0 ) 0.5 ) ( ) : L = 7 Multiplier for Ripple Current Frequency coefficient Freq.(Hz) WV(VDC) K 10K 4 ~ ~ ~ ~

108 RN Non-polar Dimensions,Rated Ripple Current (μf) (5) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 4x7 10 4x7 15 5x x x7 15 4x7 20 5x7 25 5x x x7 15 5x7 20 5x x7 30 5x x x x x7 35 4x7 20 5x7 20 5x x x x7 30 5x x x7 25 5x x x x x x7 40 5x x7 50 5x7 35 5x x x x x x x7 35 5x7 40 5x x x7 65 5x x x x x x x x x x7 70 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x (8) 10 (13) 16 (20) Rated (Surge) Voltage 25 (32) 35 (44) 50 (63) 63 (79) (μf) 80 (100) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 100 (125) 160 (200) 200 (250) 250 (300) Size: Dψx L (mm) Ripple Current : marms/85,120hz

109 SN Non-polar Features: hours Recommended Application: Non-polar miniature type for used in reversing polarity DC voltage circuits Corresponding product to RoHS SN High Temperatu RN Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Characteristics -40 ~ ~ ~ 100VDC 160~250VDC 1 ~ 2200 μ F 1~100μF ± 20 % at 120Hz, 20 I=0.03CV+ 3μ A; L=7mm, I=0.06CV+ 10μA(After rated voltage applied for 2 minutes ) WV tanδ When nominal capacitance is over 1000uF, tanδ shall be added 0.02 to the listed value with increase of every 1000uF;L=7mm, tanδ shall be added 0.03 Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) Z-25 / Z Z-40 / Z After applying rated voltage for 1000 hours at 105, (The polarity shall be reversed every 250 hrs.) Change Within ± 25 % of initial value Dissipation Factor Not more than 200% of specified value Leakage Current Not more than the specified value After placed at 105 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Factor K K 1.65

110 SN Non-polar Dimensions,Rated Ripple Current (μf) SIZE R.C SIZE R.C SIZE R.C SIZE R.C SIZE R.C SIZE R.C SIZE R.C SIZE R.C SIZE R.C 1 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) (μf) 6.3(8) 10(13) 16(20) 25(32) 35(44) 50(63) 63(79) 80(100) Ripple Current: (ma/rms). 105,120Hz Rated (Surge) Voltage 160(200) 200(250) 250(300) SIZE R.C SIZE R.C SIZE R.C 1 6.3x x x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 100(125)

111 RB Non-Polar Features: 85,1000hrs, Non-polarized/Polarity reversing, High ripple current Recommended Applications: Crossover/Speaker network,reversed polarity circuit Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Endurance Shelf Life Characteristics -40 ~ ~ 100VDC 1 ~ 100μF ± 10 % at 1KHz, 20 I 0.03CV or 3μA whichever is greater (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ After applying rated voltage for 1000 hours at 85,the capacitors shall meet the following requirements. (The polarity shall be reversed every 250 hours) Change Within ± 20 % of the initial value Dissipation Factor Not more than 200% of the specified value Leakage Current Not more than the specified value After placed at 85 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance. Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq.(Hz) WV(VDC) K 10K 100K 25 ~ ~

112 RB Non-Polar Dimensions,Rated Ripple Current (μf) Rated (Surge) Voltage 25 (32) 35 (44) 50 (63) 63 (79) 80 (100) 100 (125) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1 6.3x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current : ma/rms,85,1khz

113 SR Bi-polar horizontal deflection Features: hours Recommended Application:Non-polar capacirors for horizontal deflection circuits of TV sets,correction at high frequency and high ripple currents Corresponding product to RoHS Specifications Item Operating Temperature Range -40 ~ +85 Rated Voltage Range 25~ 50VDC Rated Range 2.2 ~ 47 μ F Tolerance ± 10 %(K) at 120Hz, 20 Leakage Current (MAX) (20 ) DC Leakage current :100μ A Max.(After 2 minutes both direction ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Endurance Shelf Life Diagram of Dimensions WV tanδ Characteristics After applying rated voltage for 1000hrs at 85, ( Polarity inverted every 250 hrs.) the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current Within ± 20 % of initial value Not more than 150% of specified value Not more than the specified value After placed at 85 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance. ψd P ψd a 2.0 Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 60 25~50 V ~ 1 K K 1.0

114 SR Bi-polar horizontal deflection Dimensions,Rated Ripple Current (μf) Rated (Surge) Voltage 25 ( 32 ) 35 ( 44 ) 50 ( 63 ) SIZE RIPPLE SIZE RIPPLE SIZE RIPPLE X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X40 13 Size: Dψx L (mm) Ripple Current: (Ap-p) / Sawtooth waveform 15.75KHz,85

115 BX Bi-Polar Features: 105,1000hrs, Bi-polarized/Polarity reversing Recommended Applications: TV/Monitor, Horizontal deflection correction Corresponding product to RoHS BX SR High Temperature Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Endurance Shelf Life -40 ~ ~ 50VDC 1 ~ 33 μf ± 10 % ( K ) at 120Hz, 20 I 100μA (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) WV (The polarity shall be reversed every 250 hours) Change Within ± 15 % of the initial value Dissipation Factor After applying rated voltage for 1000 hours at 105,the capacitors shall meet the following requirements. Leakage Current 25 tanδ 0.05 Characteristics Not more than 200% of the specified value After placed at 105 without voltage applied for 500 hours,the capacitor shall meet the same requirement as Enduran 35 Not more than the specified value 50 Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) ~ 1 K K 25~50 V

116 BX Bi-Polar Dimensions,Rated Ripple Current,Equivalent Resistance (μf) Size Ripple ESR Size Ripple ESR Size Ripple ESR 1 10x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 25 (32) 35 (44) 50 (63) Size: Dψx L (mm) Max Ripple Current [RC(Ap-p) / Sawtooth waveform 15.75KHz,105 ] ESR:(Ω),120Hz,20

117 SB in where low leakage current is essential as in coupling of pre-amplifies Remaining of very low leakage current even after prolonged storage Corresponding product to RoHS Rated Range Tolerance Dissipation Factor (MAX) (tanδ) (120Hz,20 ) 1 ~ μ F Leakage Current (MAX) (20 ) I=0.002CV or 0.4 μ A,whichever is greater. (After rated voltage applied for 2 minutes ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life Low leakage current Features: hours Recommended Applications: Specifications Item Operating Temperature Range -40 ~ +105 Rated Voltage Range 6.3 ~ 100VDC ± 20 % at 120Hz, 20 WV tanδ When nominal capacitance is over 1000μF, tanδshall be added 0.02 to the listed value with increase of every 1000μF. Z(120Hz) WV Z(-25 )/ Z(+20 ) Z(-40 )/ Z(+20 ) After applying rated voltage for 1000 hours at 105, the capacitors shall meet the following requirements. Change Within ± 25 % of initial value Dissipation Factor Leakage Current Characteristics Not more than 200% of specified value Not more than the specified value After 500 hrs at 105 without applying rated voltage Change Within ± 25 % of initial value Dissipation Factor Not more than 200% of specified value Leakage Current Not more than 200% of specified value Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 6.3 ~ 25 V 35~ 50 V 63 ~ 100 V K 10K

118 SB Low leakage current Dimensions,Rated Ripple Current (μf) 6.3V ( 8 ) Rated (Surge) Voltage 10V ( 13 ) 16V ( 20 ) SIZE Ripple SIZE Ripple SIZE Ripple x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

119 SB Low leakage current Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 25V ( 32 ) 35V ( 44 ) 50V ( 63 ) SIZE Ripple SIZE Ripple SIZE Ripple 1 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

120 SB Low leakage current Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 63V ( 79 ) 80V ( 100 ) 100V ( 125 ) SIZE Ripple SIZE Ripple SIZE Ripple 1 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

121 Low Impedance and high frequency SC Features: ~3000 hours,low impedance, high permissible ripple curre at high frequency and high operation temperature (-40 ~ +105 ) Recommended Applications: Applicable for switching regulator of computer, especially for high frequency Corresponding product to RoHS SY Long Life SC Specifications Item Characteristics Operating Temperature Range -40 ~ +105 Rated Voltage Range 6.3 ~ 100VDC Rated Range 4.7 ~ μ F Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX)(20 ) I=0.01CV or 3μ A,whichever is greater. (After rated voltage applied for 2 minutes ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV tanδ When nominal capacitance is over 1000μF, tanδshall be added 0.02 to the listed value with increase of every 1000μF. Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life Z(120Hz) WV Z-25 / Z+20 Z-40 / Z After applying rated voltage with ripple current for 3000 hours at 105, the capacitors shall meet the following requirements. If dimension is down size, Endurance will be less 1000 hours than standard Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of specified value Leakage Current Not more than the specified value Case Dia 5 x 11 ~ 10 x x 15 higher Life * If dimension is down size,endurance will be less 1000hrs than standard. After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Below 4.7 μ F 5.6 ~ 33 μ F 34 ~ 330 μ F 331 ~ 1000 μ F 1200 μ F Above K K K

122 SC Low Impedance and high frequency Dimensions,Rated Ripple Current,Max Impedance (μf) Rated ( Surge) Voltage 6.3V ( 8 ) 10V ( 13 ) 16V ( 20 ) 25V ( 32 ) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 10 5x x x x x x x x x x x x x x x x x x x x x x x x x *8x x x x x x *6.3x x x x x x x x x *8x *8x x x x x x x x x *8x x *10x *10x x *10x x *10x x x x x x x x *10x x x *8x x *10x *13x x x x *10x x *10x *10x *10x *13x *10x *10x *13x *16x x x x x *10x *10x *13x *16x x x x x x *13x *13x x x *13x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz " * " is down size, Ripple Life is less 1000 hrs than standard

123 SC (μf) 35V ( 44 ) Low Impedance and high frequency Rated Voltage Capacitan Rated Code for Lead Wire Check or Dimensions,Rated Ripple Current,Max Impedance RATED ( SURAGE ) VOLTAGE 50V ( 63 ) 63V ( 79 ) 100V ( 125 ) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 4.7 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x15 *10x16 10x *10x16 10x20 *10x x20 13x20 13x x25 16x32 18x x x x25 13x x x x x x x x x x x x x x x x *16x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz " * " is down size, Ripple Life is less 1000 hrs than standard Rated Voltage Capacitan Rated Code for Lead Wire Check or

124 SJ Features: 105, hrs Low Impedance and High ripple Recommended Applications : AV(TV, Video, Audio), Monitor/Computer, OA/HA/Communication,Converter/Inverter,Adapter, SMPS Corresponding product to RoHS Specifications Item Rated Range Low Impedance and High ripple Operating Temperature Range -40 ~ +105 Rated Voltage Range (WV) Tolerance (20 ) Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) 6.3 ~ 100VDC 5.6 ~ 6800 μf ± 20 % at 120Hz Characteristics SJ High ripple SC I 0.01CV or 3μA,whichever is greater. (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) WV tanδ When nominal capacitance is over 1000μF, tanδ shall be added 0.02 to the listed value with increase of every 1000μF. Low Temperature Stability Impedance Ratio (Max) WV Z(120Hz) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Endurance Shelf Life After applying rated voltage with max ripple current for 1000~5000 hours at 105, the capacitor shall meet the following requirement. Change Within±25% of the initial value Dissipation Factor Not more than 200% of the specified value Leakage Current Not more than the specified value ψd = 10 Case (ψ) Life time (hrs) L= ψd ψd = ψd *If dimension is down size,endurance will be less 1000 hours than standard. After placed at 105 without voltage applied for 1000 hours (500 hours for L=7), the capacitor shall meet the same requirement as Endurance. L 11 Dimensions [mm] ψd P ψd ( 0.45 ) 0.5 ( 0.45 ) 0.6 ( 0.5 ) a ( 1.0 ) 1.5 ( 1.0 ) 1.5 ( 1.0 ) ( ) : L = 7 Multiplier for Ripple Current Frequency coefficient Freq. (Hz) Cap (μf) 5.6 ~ ~ ~ K K K

125 SJ Low Impedance and High ripple Dimensions, Rated Ripple Current,Max Impedance (μf) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 10 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x7 380 Rated ( Surage ) Voltage 6.3V ( 8 ) 10V ( 13 ) 16V (20) 25V (32) 5x x x x x x x7 5x x x x x x7 8x x x x11 35V (44) x x x x x x x x x x x x x20 10x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current : ma/rms,105,100khz 70 Impedance : Z(Ω),20,100KHz

126 SJ Low Impedance and High ripple Dimensions, Rated Ripple Current,Max Impedance Rated ( Surage ) Voltage 50V (63 ) 63V ( 79 ) 100V ( 125 ) (μf) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 5.6 4x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x16 10x x x x x x x x x x x x x x x25 13x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current : ma/rms,105,100khz Impedance : Z(Ω),20,100KHz

127 TB Low Impedance and Long Life Features: ~6000hrs Low Impedance and long Life Recommended Applications : AV(TV, Video, Audio), Monitor/Computer, OA/HA/Communication,Converter/Inverter,Adapter, SMPS Corresponding product to RoHS TB SJ Long Life Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~35VDC 27~ 8200μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) WV tanδ Characteristics When nominal capacitance is over 1000uF,Tanδ shall be added 0.02 to the listed value with increase of every 1000uF. Low Temperature Stability Impedance Ratio (MAX) WV Z(120Hz) Z-25 / Z+20 Z-40 / Z Endurance Shelf Life After applying rated voltage with rated ripple current for 5000~6000hours at 105, the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current Within ± 25 % of initial value(6.3, 10Vdc :±30%) 200% or less of initial specified value initial specified value or less Dφ φ5~6.3φ φ8~16φ Life 5000hrs 6000hrs After placed at 105 without voltage applied for 500 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq. (Hz) Cap(μF) 27 to to to to to K K K

128 TB SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z x x x x x x x11 Rated Voltage 330 Capacita 0.24 Rated Code for 6.3x11 Lead Wire 500 Check 0.11 Lead Wire Check 8x12 Lead Wire Check 270 8x x x x x x x x x x x x x x x x X x x x x x x x X x x X x x x x x x x x x x x x Rated ( Surge) Voltage 6.3V ( 8 ) 10V ( 13 ) 16V ( 20 ) 25V ( 32 ) 35V ( 44 ) 10x x x x x x x x x x x x x x x x x x x x x x Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance Capacitanc e (μf) 13x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz

129 Low Impedance & Long Life SY Features : Low Impedance, high permissible ripple current at high frequency SY and long life than SC Long Life Recommended Applications: SC Used switching requlator applications in computers. Especially for high frequency. Corresponding product to RoHS Specifications Item Characteristics Operating Temperature Range -40 ~ +105 Rated Voltage Range 6.3 ~ 100VDC Rated Range 2.2 ~ μ F Tolerance ±20% at 120Hz, 20 Leakage Current (MAX) (20 ) I=0.01CV or 3μ A,whichever is greater. (After rated voltage applied for 2 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life Diagram of Dimensions WV tanδ When nominal capacitance is over 1000μF, tanδshall be added 0.02 to the listed value with increase of every 1000μF. WV Z(120Hz) Z-25 / Z Z-40 / Z After applying rated voltage with rated ripple current for 6000 hours at 105, the capacitors shall meet the following requirements. Change Within ± 25% of initial value Dissipation Factor Not more than 200% of specified value Leakage Current Not more than the specified value Dψ Life 5ψ~6.3ψ 3000 hrs 8ψ~10ψx hrs 10ψx15~12ψ 5000 hrs *If dimension is down size,endurance will be less 1000 hours than standard. After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance. 13ψ~18ψ 6000 hrs ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 22 ~ 180 μf 220 ~ 560 μf 680 ~1800 μf 2200 ~ 3900 μf 4700 μf Higher K K K

130 SY Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance Rated ( Surge) Voltage (μf) 6.3V ( 8 ) 10V ( 13 ) 16V ( 20 ) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 56 5x x x x x Rated Voltage Capacitanc Rated Code for Standard 6.3x11 Lead Wire 469 Check or x x x x x x *8x x *10x X x x x x x X x x x X *10X x x x x x X x x x *10X x x x x x *10x x x x x x x x x x x x x x x x X x x x x x x x x X x x X x X x x x x x x x x x x x X x x X x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz " * " is down size, Ripple life is less 1000 hrs than standard.

131 SY Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance Rated ( Surge) Voltage (μf) 25V ( 32) 35V ( 44 ) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 2.2 Rated Voltage Rated Code for Standard 5x11 Lead Wire 85 Check or 4.7 5x x x x x x x x x x x x x x x x x x x x x x x *8x X x x x x x *10X *10x x x x x x x *10x x x X x x x x x x x x x x x x X x x x x x x x x x x x x x x *13x X X x x x x x x x x X x x x x x X x x x V ( 63 ) 16x32 Rated Voltage x40 Rated 4080 Code for Standard Lead Wire Check or x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz " * " is down size, Ripple life is less 1000 hrs than standard.

132 SY Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance Rated ( Surge) Voltage (μf) 63V ( 79) 100V (125 ) SIZE Ripple Z SIZE Ripple Z X X Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz

133 TA Low Impedance & Long Life Features: ~10000hrs Low Impedance and long Life Recommended Applications: Applicable for SMPS, Adaptor,Charger,Monitor/Computer Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~35VDC 33 ~ 8200μF Tolerance ± 20 % at 120Hz, 20 TA SY Long Life I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) Leakage Current (MAX) (20 ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV tanδ Characteristics When nominal capacitance is over 1000uF,Tanδ shall be added 0.02 to the listed value with increase of every 1000uF. Low Temperature Stability Impedance Ratio (MAX) WV Z(120Hz) Z-25 / Z+20 Z-40 / Z Endurance Shelf Life After applying rated voltage with rated ripple current for 4000~10000hours at 105, the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current Within ± 25 % of initial value 200% or less of initial specified value initial specified value or less VDC φ5~6.3φ φ8~10φ φ12.5~18φ 6.3~10(V) 4000hrs 6000hrs 8000hrs 16~100(V) 5000hrs 7000hrs 10000hrs After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as load life. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq. (Hz) Cap(μF) 6.8 to to to to μF Higher K K 100K

134 TA Dimensions,Rated Ripple Current,Max Impedance Rated ( Surge) Voltage 6.3V ( 8 ) 10V ( 13 ) 16V ( 20 ) 25V ( 32 ) 35V ( 44 ) (μf) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 33 5x x x x x x x x x Rated Voltage Capacita 6.3x11 Rated 340 Code for Lead Wire Check or 8x11 Lead Wire 640 Check 0.13 or 8x15 Lead Wire 840 Check or x x x x x x x x x x x x x x x x x x x x x X x x x x Low Impedance & Long Life 8x x x x x X x x x x x x X x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz

135 ST Low Impedance & Long Life Features: ~10000hrs Low Impedance and long Life Recommended Applications: Applicable for SMPS, Adaptor,Charger,Monitor/Computer Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~100VDC 2.2 ~ 15000μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) ST SY Long Life I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) WV tanδ When nominal capacitance is over 1000uF,Tanδ shall be added 0.02 to the listed value with increase of every 1000uF. Down size tanδ add 3%. Characteristics Low Temperature Stability Impedance Ratio (MAX) WV Z(120Hz) Z-25 / Z+20 Z-40 / Z Endurance Shelf Life After applying rated voltage with rated ripple current for 4000~10000hours at 105, the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current Within ± 25 % of initial value 200% or less of initial specified value initial specified value or less VDC φ5~6.3φ φ8~10φ φ12.5~18φ 6.3~10(V) 4000hrs 6000hrs 8000hrs 16~100(V) 5000hrs 7000hrs 10000hrs After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as load life. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq. (Hz) Cap(μF) 6.8to to to to μF Higher K K 100K

136 ST Low Impedance & Long Life Dimensions,Rated Ripple Current (μf) Rated Voltage(V) Size Ripple ESR Size Ripple ESR Size Ripple ESR Size Ripple ESR 47 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x X x x x x x x x X X x x x (μf) Size Ripple ESR Size Ripple ESR Size Ripple ESR Size Ripple ESR 2.2 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x X x x x x x X x x x x X x x x Size: Dψx L (mm) Ripple Current: 105,100KHz(mA/rms) ESR(Ω):25,100KHz 50 Rated Voltage(V) x x

137 TC Low Impedance & Long Life Features: ~10000hrs Low Impedance and long Life Recommended Applications:Applicable forav(tv,viodeo,audio), OA/HA/Communication, SMPS, Adapter,Monitor/Computer,Converter/Inverter Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range -40 ~ ~100VDC 8.2 ~ 8200μF Tolerance ± 20 % at 120Hz, 20 TC TB Long Life I=0.01CV or 3(μA), whichever is greater. (After rated voltage applied for 2 minutes ) Leakage Current (MAX) (20 ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV tanδ When nominal capacitance is over 1000uF, Characteristics Tanδ shall be added 0.02 to the listed value with increase of every 1000uF. Low Temperature Stability Impedance Ratio (MAX) Endurance WV Z(120Hz) Z-25 / Z Z-40 / Z After applying rated voltage with rated ripple current for 6000~10000hours at 105, the capacitors shall meet the following requirements. Change Dissipation Factor Leakage Current Within ± 25 % of initial value(6.3v,10v:±30%) 200% or less of initial specified value initial specified value or less Dφ Life 5-6.3φ 6000hrs φ8 8000hrs φ10~18φ 10000hrs Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as load life. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Freq. (Hz) Cap(μF) 8.2 to to to to to K K 100K

138 TC Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance (μ F) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 100 5x x x x x x x x x X x x X x x X X x x X x x x x x x x x x Rated ( Surge) Voltage 6.3V ( 8 ) 10V ( 13 ) 16V ( 20 ) 13x x x x x x x X x x X x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz

139 TC Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance Rated ( Surge) Voltage (μf) 25V ( 32) 35V ( 44 ) 50V ( 63 ) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z 27 5x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz

140 TC Low Impedance & Long Life Dimensions,Rated Ripple Current,Max Impedance Rated ( Surge) Voltage (μf) 63V (79) 80V (100) 100V (125) SIZE Ripple Z SIZE Ripple Z SIZE Ripple Z x x x X X x X Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz Impedance (Ω),20,100KHz

141 SZ Ultra Low ESR Features: ~2000 hours,lower ESR and higher ripple current Recommended Applications: Applicable for switching regulator of computer, especially for high frequency Corresponding product to RoHS SZ Low E.S.R SC Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX)(20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life -40 ~ ~ 16VDC 470 ~ 3300 μ F ± 20 % at 120Hz, 20 WV 6.3 tanδ 0.22 When nominal capacitance is over 1000μF, tanδ shall be added 0.02 to the listed value with increase of every 1000μF. Z(120Hz) the capacitors shall meet the following requirements. Change Within ± 25 % of initial value Leakage Current WV Z-25 / Z Characteristics I=0.03CV,(After rated voltage applied for 2 minutes ) Z-40 / Z+20 Not more than 200% of specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance After applying rated voltage with ripple current for 2000 hours at 105, Dissipation Factor *If dimension is down size,endurance will be less 1000 hours than standard Diagram of Dimensions ψd 8 10 P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 120 1K 10K 100K Factor

142 SZ Ultra Low ESR Dimensions,Rated Ripple Current,Equivalent Resistance Rated ( Surge) Voltage 6.3V ( 8 ) CAP D x L Ripple Current ESR ( μ F) (mm) (ma/ rms 105 / 100KHz) (mω Max 20 / 100KHz) x x x x x x x Rated ( Surge) Voltage 10V ( 13 ) CAP D x L Ripple Current ESR ( μ F) (mm) (ma/ rms 105 / 100KHz) (mω Max 20 / 100KHz) x x 15 8 x x x x x Rated ( Surge) Voltage 16V ( 20 ) CAP D x L Ripple Current ESR ( μ F) (mm) (ma/ rms 105 / 100KHz) (mω Max 20 / 100KHz) x x 15 8 x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms), 105,100KHz ESR (mω),20,100

143 AK Higher temperature range & Long Life Features: ~5000hrs, High Temperature and Long Life Recommended Applications: Applicable for Electronic Ballast,Lighting Ballast Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Characteristics -40 ~ ~ ~63VDC 160~450VDC 47~ 4700μF 1~150μF ± 20 % at 120Hz, 20 I=0.01CV or 3(μA),whichever is greater. I=0.1CV+40 ua (CV 1000) I=0.04CV+100 ua (CV>1000) (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) WV ~ ~450 tanδ When nominal capacitance is over 1000uF, tanδ shall be added 0.02 to the listed value with increase of every 1000uF. Down Size tanδ added Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) ~ ~450 Z25 Z-25 /Z Z-40 / Z After applying rated voltage for 2000~5000hours at 125, the capacitors shall meet the following requirements. Rated Voltage Range 10~63VDC Change Within ± 30 % of initial value Dissipation Factor 300% of initial specified value Leakage Current initial specified value or less 8Φ 10Φ 13Φ 2000Hrs 3000Hrs 5000Hrs After leaving capacitors under no load at 125 for 1000 hours. Change Within ± 30 % of initial value Dissipation Factor 300% of initial specified value Leakage Current 500% of initial specified value 160~450VDC Within ± 20 % of initial value 200% of the initial specified value initial specified value 2000Hrs Within ± 20 % of initial value 200% of the initial specified value 500% of the initial specified value Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coeffcient Frequency (Hz) CAP 10 10<CAP ~63WV 100<CAP <CAP CAP ~450WV CAP K 10K 50K~100K

144 AK Higher temperature range & Long Life Dimensions,Rated Ripple Current Rated Voltage(V) (μf) 10(13) 16(20) 25(32) 35(44) Size Ripple Size Ripple Size Ripple Size Ripple 100 8x x x x x x x x x x x x x x x x x x x x x x x x x Rated Voltage(V) (μf) 50(63) 63(79) Size Ripple Size Ripple 47 8x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: 125,100KHz(mA/rms) Rated Voltage(V) (μf) 160(200) 200(250) 250(300) 350(400) 400(450) 450(500) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 1.0 8x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: 125,120Hz(mA/rms)

145 SQ For adapter and power supply applications Features: hours ;Wide temperature range;high Ripple Recommended Applications :AV(TV, Video, Audio); Monitor/Computer; OA/HA/Communication; Converter/Inverter; Energy saving lamp; PFC circuit; SMPS; Ballast; Adapter Corresponding product to RoHS SQ High Ripple SH Specifications Item Operating Temperature Range Rated Voltage Range(WV) Rated Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Z(-25 ) / Z(20 ) Z(-40 ) / Z(20 ) Endurance Shelf Life -40~ ~ 450VDC 2.2 ~ 220μF ± 20 % at 120Hz, 20 I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Z (120Hz) the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Leakage Current WV Characteristics I 0.03CV +10μA(After rated voltage applied for 3 minutes) WV tanδ After apply rated voltage with rated ripple current for 2000hrs at 105, Dissipation Factor Not more than 200% of the specified value Not More than the specified value After leaving capacitors under no load at 105 for 1000 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) <33μF Coefficient 33μF K 10K K Coefficient Frequency (Hz) K 10K 100K <33μF μF

146 SQ For adapter and power supply applications Dimensions, Rated Ripple Current (μf) ψdxl 160(200) Ripple Ripple Ripple ψdxl ψdxl 120Hz 100KHz 120Hz 100KHz 120Hz 100KHz 10x x x x x x x x x x x x x x x x x Rated ( Surge ) Voltage 200(250) 250(300) Rated ( Surge ) Voltage (μf) (400) 400(450) 450(500) ψdxl Ripple ψdxl Ripple ψdxl Ripple 120Hz 100KHz 120Hz 100KHz 120Hz 100KHz 10x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current : ma/rms,105

147 SG High Ripple and long life Features: High temperature life time 5000 hours at 105 Recommended Applications : High ripple current for Electronic Ballast, Power Supply etc Corresponding product to RoHS SG SQ Long Life Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) ( 20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life Characteristics -40~ ~ ~ ~ 400VDC 450VDC 500VDC 4.7 ~ 330μF 3.3 ~ 100μF 4.7~ 150μF ± 20 % at 120Hz, 20 ± 20 % at 120Hz, 20 I=0.06CV + 10(μA) I=0.04CV + 100(μA) (After rated voltage applied for 2 minutes) (After rated voltage applied for 2 minutes) WV tanδ WV Z (120Hz) Z-25 / Z Z-40 / Z After applying rated voltage with rated ripple current for 5000 hours at 105, the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current initial specified value or less After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd 10 P 5.0 ψd 0.6 a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 50, K 10K~100K 160~450V V

148 SG High Ripple and long life Dimensions, Rated Ripple Current (μf) 10 Size Ripple Size Ripple Size Ripple 15 10x x x X X X x x X X x x x x x x x x x x x x x x x x x x x x x x x x x x x Rated (Surge) Voltage 160 (200) 200 (250) 250 (300) (μf) Size Ripple Size Ripple Size Ripple X x x x X Rated (Surge) Voltage 350 (400) 400 (450) 450 (500) 10X x x X x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size.. Dψx L (mm) Ripple Current.. ma/rms. 105,120Hz Down Size Hrs

149 SG High Ripple and long life Dimensions, Rated Ripple Current (μf) Size Ripple X X X Rated (Surge) Voltage 500 (550) 16X X X X x x x x x x x x x Size.. Dψx L (mm) Ripple Current.. ma/rms. 105,120Hz Down Size Hrs

150 SP Features: High temperature and long life at 105 for 8000 to hours SP Recommended Applications:Applicable for Electronic Ballast Long Life Corresponding product to RoHS SG Specifications Item Characteristics Operating Temperature Range Rated Range Tolerance Leakage Current(MAX)(20 ) Miniature and long life -40~ ~+105 Rated Voltage Range 160 ~ 400VDC 450VDC 3.3 ~ 330μF ± 20 % at 120Hz, 20 Dissipation Factor (MAX) WV 160 (tanδ) (120Hz,20 ) tanδ 0.20 I=0.04CV + 100(μA),(After rated voltage applied for 2 minutes ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) Z-25 / Z Z-40 / Z The follwing sprcifications shall be satisfied when the capacitors are restored to 20 after subjected to DC voltage with the max ripple current is applies for hours (8000 hours for ψ10) at 105. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current initial specified value or less After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Coefficient 120 1K 10K 100K

151 SP Miniature and long life Dimensions,Rated Ripple Current Rated ( Surage ) Voltage 160 (200) 200 (250) (μf) Ripple Ripple Size Size 120Hz 100KHz 120Hz 100KHz 22 10x x20 10x20 13x x20 13x20 13x x20 16x x20 16x x x x x x x x x x x x x Rated ( Surage ) Voltage 400 (450) 450 (500) (μf) Ripple Ripple Size Size 120Hz 100KHz 120Hz 100KHz x x x x x x x x20 16x25 16x x25 16x32 16x x20 18x25 18x x Size.. Dψx L (mm) Ripple Current: (ma/rms),105

152 SU Long Life ~12000hrs long Life Recommended Applications: Electronic lighting and power SU SP Long Life Specifications Item Category Temperature Range Rated Voltage Range Rated Range -25 ~ ~450VDC 3.3 ~ 330μF Characteristics Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) (20 ) I=0.04CV +100μA. (After rated voltage applied for 2 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV tanδ Low Temperature Stability Impedance Ratio (MAX) Z(120Hz) WV Z-25 / Z Endurance Shelf Life After applying rated voltage with rated ripple current for 10000~12000hours at 105, the capacitors shall meet the following requirements. Change Within ± 20 % of initial value ΦD L Dissipation Factor 200% or less of initial specified value 10Φ Leakage Current initial specified value or less 13Φ After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as load life. Life Time(hrs) Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coeffcient Frequency (Hz) Coefficient K K K 1.0

153 SU Long Life Dimensions,Rated Ripple Current (μf) Size 160 Ripple Rated Voltage(V) 200 Ripple Size Size 250 Ripple (μf) Size: Dψx L (mm) Rated Voltage(V) Size Ripple Size Ripple Size Ripple Current: 105,100KHz(mA/rms) Ripple

154 TE Ultra Long Life ~20000hrs Ultra long Life Recommended Applications: For LED Lightingr Specifications Item Category Temperature Range -40 ~ +105 Rated Voltage Range 160~400VDC Rated Range 1.0 ~ 33μF Tolerance ± 20 % at 120Hz, 20 CV 1000 Leakage Current (MAX) (20 ) I=0.1CV +40μA (1 minutes ) I=0.03CV +15μA (5 minutes ) Characteristics CV>1000 I=0.04CV +100μA (1 minutes ) I=0.02CV +25μA (5 minutes ) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) WV tanδ WV Z(120Hz) Z-25 / Z+20 Z-40 / Z Endurance Shelf Life After applying rated voltage with rated ripple current for 12000~20000hours at 105, the capacitors shall meet the following requirements. Change Within ± 30 % of initial value ΦD L Dissipation Factor 300% or less of initial specified value 6.3x11,8X9,10X9 8x11,10x12.5 Leakage Current initial specified value or less 10x16 After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as load life. Life Time(hrs) Diagram of Dimensions ψd P ψd a Multiplier for Ripple Current Frequency coeffcient Frequency (Hz) 120 1~5.6μF 1.0 Coefficient 6.8~18μF ~33μF 1.0 1K K K

155 TE Ultra Long Life Dimensions,Rated Ripple Current (μf) x11 6.3x11 6.3x11 Rated Voltage(V) 200 Size Ripple Size Ripple Size Ripple 6.3x x9 56 8x9 62 8x9 66 8x9 70 8x x9 88 8x x x x x x x x9 28 8x9 30 8x9 33 8x9 8x11 8x11 8x11 10x9 10x x x Size: Dψx L (mm) Ripple Current: 105,120Hz(mA/rms)

156 TH Miniature and general purpose Features: hours Recommended Applications: For high quality, reliability application, high CV product Suitable for slim application Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX)(20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) WV tanδ Characteristics -25~ ~ 450VDC 10 ~ 150μF ± 20 % at 120Hz, 20 I=0.03CV+10(μA),After rated voltage applied for 2 minutes ~ Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life WV Z(120Hz) ~450 Z-25 / Z After applying rated voltage for 2000 hours at 105 the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current initial specified value or less After leaving capacitors under no load at 105 for 1000 hours. the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd p ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) ~ 450V ALL Cap (μf) K K 1.60

157 TH Miniature and general purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage (μf) 250 (300) 350 (400) 400 (450) 420(470) 450 (500) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple x x x x x x30 8x35 8x35 8x40 8x45 10x40 10x x35 8x40 8x42 10x40 10x45 10x x x40 8x45 8x50 8x52 10x45 10x50 10x x40 8x45 8x50 10x42 10x45 10x x x42 8x45 8x52 10x45 10x x * x x35 10x40 10x x x x x35 10x x x x x30 10x35 10x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current: (ma/rms). 105,120Hz

158 TG High Ripple and long life Features: High temperature life time 5000 hours at 105 Recommended Applications : High ripple current for Electronic Ballast, Suitable for slim application Corresponding product to RoHS Power Supply etc Specifications Item Operating Temperature Range Rated Voltage Range Rated Range Tolerance Leakage Current (MAX) ( 20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life Z (120Hz) WV tanδ WV Z-25 / Z ~ 150μF ± 20 % at 120Hz, 20 I=0.06CV + 10(μA), (After rated voltage applied for 2 minutes) the capacitors shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Leakage Current Characteristics -25~ ~ 450VDC After applying rated voltage with rated ripple current for 5000 hours at 105, Not more than 200% of the specified value initial specified value or less After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd 8 10 P ψd a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Coefficient 50, K K~100K 1.60

159 TG High Ripple and long life Dimensions, Rated Ripple Current (μf) x x x x x Size 8x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x X x x x x x x x x x x X x x x x x x x x x x Size.. Dψx L (mm) Ripple Current.. ma/rms. 105,120Hz Rated ( Surage ) Voltage 250 (300) 350 (400) 400 (450) 420 (470) 450(500) Ripple Size Ripple Size Ripple Size Ripple Size Ripple

160 D+0.5max TP Miniature and long life Features: High temperature and long life at 105 for 8000 to hours Recommended Applications:Applicable for Electronic Ballast Suitable for slim application Corresponding product to RoHS Specifications Item Characteristics Operating Temperature Range -40~ ~+105 Rated Voltage Range 160 ~ 400VDC 450VDC Rated Range 10 ~ 330μF Tolerance ± 20 % at 120Hz, 20 Leakage Current(MAX)(20 ) I=0.04CV + 100(μA),(After rated voltage applied for 2 minutes ) Dissipation Factor (MAX) WV (tanδ) (120Hz,20 ) tanδ Low Temperature Stability Impedance Ratio (MAX) Endurance WV Z(120Hz) Z-25 / Z Z-40 / Z The follwing sprcifications shall be satisfied when the capacitors are restored to 20 after subjected to DC voltage with the max ripple current is applies for hours (8000 hours for ψ10) at 105. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified value Leakage Current initial specified value or less Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitors shall meet the same requirement as Endurance. Diagram of Dimensions ψd 10 P 5.0 ψd 0.6 a Multiplier for Ripple Current Frequency coefficient Frequency (Hz) Coefficient 120 1K 10K 100K

161 TP Miniature and long life Dimensions,Rated Ripple Current Rated ( Surage ) Voltage (μf) 160 (200) 200 (250) 250(300) 400(450) 420(470) 450(500) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple X * X * x x x x X x x x x x x Size.. Dψx L (mm) Ripple Current: (ma/rms),105, 120Hz

162 LH General Purpose Endurance : hours Ideally suitable for using in Switching Power Supplies and orther industrial /commercial applications Corresponding product to RoHS Specifications Item Operating Temperature Range -40~+85-25~+85 Rated Voltage Range 6.3 ~ 100VDC 160 ~ 500VDC Range 820 ~ μF 47 ~ 2200μF Tolerance ± 20 % at 120Hz, 20 Leakage Current (MAX) Characteristics I=0.02CV or 3(mA), whichever is smaller. (After 5 minutes application of rated voltage at 20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Endurance Shelf Life Rated voltage(v) ~100160~400420~500 tanδ Measurement frequency : 120Hz Rated voltage(v) 6.3~ ~63 80~100160~ Z-25 / Z Z-40 / Z After applying rated voltage with rated Ripple current for 2000hrs at 85, the capacitor shall meet the following requirements. Change Within ± 20 % of initial value Dissipation Factor Not more than 200% of the specified Leakage Current initial specified value or less After placed at 85 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Frequency (Hz) K 10K 6.3~100V ~250V ~450V V

163 LH General Purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage 6.3 (8) 10 (13) 16 (20) 25 (32) (μf) Size Ripple Size Ripple Size Ripple Size Ripple x x30 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x45 30x x50 35x x50 35x x35 35x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 85,120Hz

164 LH General Purpose Dimensions,Rated Ripple Curre (μf) Size Ripple Size Ripple Size Ripple Size Ripple x (44) Rated (Surge) Voltage 50 (63) 63 (79) 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x45 30x x x40 35x x Size: Dψx L (mm) Ripple Current.. A/rms. 85,120Hz 80 (100)

165 LH General Purpose Dimensions,Rated Ripple Curre Rated (Surge) Voltage 100 (125) 160 (200) 180 (225) (μf) Size Ripple Size Ripple Size Ripple Size Ripple x x x x x x Size: Dψx L (mm) 200 (250) 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Ripple Current.. A/rms. 85,120Hz

166 LH General Purpose Dimensions,Rated Ripple Cu Rated (Surge) Voltage 250 (300) 350 (400) 400 (450) 420(470) 450 (500) 500(550) (μf) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 47 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x45 30x x30 35x x x Size: Dψx L (mm) Ripple Current.. A/rms. 85,120Hz

167 LF Long Life Features : hours, Longer life than LH, Snap-in terminal, High ripple current Recommended Applications: Smoothing circuit, TV/Monitor, Adapter, SMPS Corresponding product to RoHS LF LH Long Life Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Endurance Shelf Life -40 ~ ~ 100VDC I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Dissipation Factor(tanδ)shall not exceed the values showed in the table of standard rating the capacitor shall meet the following requirement. Change Dissipation Factor Leakage Current -25 ~ ~ 450VDC 820 ~ 56000μF 56 ~ 2200μF ± 20 % at 120Hz, 20 Characteristics I 0.02CV or 3mA whichever is smaller(after rated voltage applied for 5 minutes) After applying rated voltage with rated Ripple current for 3000hrs at 85, Within±20% of the initial value Not more than 200% of the specified value Not more than the specified value After placed at 85 without voltage applied for 1000 hours, the capacitor shall meet the same requirements as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Freq. (Hz) K Coefficient K 5K K 1.4

168 LF Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 10(13) 16(20) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x x x25 22x35 25x x30 22x40 25x30 30x x35 25x25 22x45 25x35 30x x40 25x30 30x25 22x50 25x45 30x30 35x x45 25x35 30x30 25x45 30x35 35x x50 25x40 30x30 35x25 30x40 35x x45 30x35 35x30 30x45 35x x50 30x40 35x30 35x x45 35x (μf) Long Life Rated (Surge) Voltage 25(32) 35(44) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR 22x x25 22x35 25x30 30x25 35x x30 25x25 22x40 25x35 30x30 35x x35 25x30 22x45 25x35 30x30 35x x40 25x30 30x25 22x50 25x40 30x30 35x x45 25x35 30x30 35x25 25x45 30x35 35x x40 30x35 35x30 30x40 35x x45 30x40 35x30 30x45 35x x45 35x35 35x x50 35x40 35x x45 22x30 25x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 85,120Hz,(A/rms) ESR:20,120Hz,(Ω).

169 LF Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 50(63) 63(79) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x x25 22x30 25x x30 22x35 25x x35 25x25 22x40 25x30 30x x40 25x30 22x45 25x35 30x x45 25x35 30x30 35x25 22x50 25x40 30x30 35x x35 30x30 35x25 25x45 30x35 35x x40 30x35 35x30 25x50 30x40 35x x50 30x40 35x30 30x45 35x x45 35x35 30x50 35x x50 35x40 35x x x (μf) Long Life ψdxl Rated (Surge) Voltage 80(100) 100(125) ψdxl tanδ ESR Ripple Current Ripple Current x x x35 25x x30 25x x40 25x30 30x x35 25x x45 25x35 30x x40 25x30 30x x50 25x40 30x30 35x x30 25x x45 25x35 30x30 25x45 30x35 35x x50 25x40 30x30 35x x50 30x40 35x x45 30x35 35x x45 35x x50 30x40 35x x x45 35x x x x50 35x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 85,120Hz,(A/rms) ESR:20,120Hz,(Ω). tanδ ESR

170 LF Long Life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 160(200) 180(225) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x x25 22x x30 22x30 25x x35 25x30 22x35 25x x35 25x30 22x40 25x30 30x x40 25x35 30x25 22x45 25x35 30x x50 25x40 30x30 22x50 25x40 30x30 35x x45 30x35 35x30 25x50 30x35 35x x50 30x40 35x35 30x40 35x x45 35x40 30x50 35x x50 35x45 35x x (μf) ψdxl Rated (Surge) Voltage 200(250) 250(300) ψdxl tanδ ESR Ripple Current Ripple Current x x25 25x25 22x30 25x x30 25x25 22x30 25x x30 25x25 22x35 25x x35 25x30 30x25 22x40 25x35 30x x40 25x35 30x25 22x45 25x40 30x30 35x x45 25x35 30x30 25x40 30x35 35x x50 25x45 30x35 35x30 25x50 30x40 35x x50 30x35 35x30 30x45 35x x45 35x35 30x50 35x x50 35x40 35x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 85,120Hz,(A/rms) ESR:20,120Hz,(Ω). tanδ ESR

171 LF Long Life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 315(365) 350(400) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x x25 22x x30 22x30 25x x30 25x25 22x35 25x x35 25x30 22x40 25x35 30x x40 25x30 30x25 22x45 25x35 30x30 35x x45 25x35 30x30 35x25 25x45 30x35 35x x50 25x40 30x35 35x30 25x50 30x40 35x x45 30x35 35x30 30x45 35x x40 35x35 30x50 35x x45 35x40 35x x45 35x x (μf) 400(450) ψdxl Ripple Current tanδ Rated (Surge) Voltage 450(500) ψdxl Ripple Current x x25 22x x25 22x30 25x x30 25x25 22x35 25x x35 25x25 30x25 22x40 25x35 30x x40 25x30 30x25 22x50 25x40 30x x45 25x35 30x30 25x45 30x35 35x x50 25x40 30x30 35x25 25x50 30x40 35x x45 30x35 35x30 30x45 35x x50 30x40 35x35 30x50 35x x45 35x35 35x x40 35x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 85,120Hz,(A/rms) ESR:20,120Hz,(Ω). ESR tanδ ESR

172 LG High temperature and general purpose Endurance : hours,high temperature than LH Ideally suitable for using in Switching Power Supplies and orther industrial /commercial applications Corresponding product to RoHS LG LH High temperature Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) -40 ~ ~ 100VDC -25 ~ ~ 500VDC 560 ~ 82000μF 47 ~ 2200μF ± 20 % at 120Hz, 20 Characteristics I=0.02CV,L=20m/m,I=0.03CV or 3mA, whichever is smaller.(at 20,After 5 minutes) Where, I :Leakage Current (μa) ; C:Nominal (μf) ; V:Rated Voltage(v) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Low Temperature Stability Impedance Ratio (MAX) Rated voltage(v) tanδ Measurement frequency : 120Hz Endurance Change ~ ~400420~ Rated voltage(v) 6.3~ ~63 80~100160~400420~ Z-25 / Z+20 Z-40 / Z After applying rated voltage with rated Ripple current for 2000hrs at 105, the capacitor shall meet the following requirements. Dissipation Factor Leakage Current Within ± 20 % of initial value Not more than 200% of the specified valu initial specified value or less Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Frequency (Hz) 6.3~100V 160~250V 315~450V 500V K K

173 LG High temperature and general purpose Dimensions,Rated Ripple Current Rated (Surge) Voltage 6.3 (8) 10 (13) 16 (20) 25 (32) (μf) Size Ripple Size Ripple Size Ripple Size Ripple x x30 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x50 30x45 30x x45 30x50 35x x45 35x45 35x x x40 35x35 35x x35 35x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

174 LG High temperature and general purpose Dimensions,Rated Ripple Curre Rated (Surge) Voltage 35 (44) 50 (63) 63 (79) 80 (100) (μf) Size Ripple Size Ripple Size Ripple Size Ripple x x30 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

175 LG High temperature and general purpose Dimensions,Rated Ripple Curre (μf) Size Ripple Size Ripple Size Ripple Size Ripple x x x x x Size: Dψx L (mm) Rated (Surge) Voltage 100 (125) 160 (200) 180 (225) 200 (250) 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Ripple Current.. A/rms. 105,120Hz

176 LG High temperature and general purpose Dimensions,Rated Ripple Cur Rated (Surge) Voltage 250 (300) 350 (400) 400 (450) 420(470) 450 (500) (μf) Size Ripple Size Ripple Size Ripple Size Ripple Size Ripple 47 22x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

177 LG High temperature and general purpose Dimensions,Rated Ripple Cur Rated (Surge) Voltage 500 (550) (μf) Size Ripple 47 22x x x x35 22x x30 30x x x x x x x x x x x45 30x x35 35x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

178 LS High temperature and Smaller Size Endurance : hours, smaller size than LG Ideally suitable for using in Switching Power Supplies and orther industrial /commercial applications Corresponding product to RoHS LS LG Smaller size Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) -25 ~ ~ 450VDC 100 ~ 3300μF Characteristics ± 20 % at 120Hz, 20 I=0.02CV or 3mA, whichever is smaller.(at 20, After 5 minutes) Where, I :Leakage Current (μa) ; C:Nominal (μf) ; V:Rated Voltage(v) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Rated voltage(v) tanδ 160~ ~ Low Temperature Stability Impedance Ratio (MAX) Measurement frequency : 120Hz Rated voltage(v) 160~ ~450 Z-25 / Z After applying rated voltage with rated Ripple current for 2000hrs at 105, the capacitor shall meet the following requirements. Endurance Change Dissipation Factor Leakage Current Within ± 20 % of initial value Not more than 200% of the specified valu initial specified value or less Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirement as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Frequency 160~250V 315~450V K K

179 LS High temperature and Smaller-size Dimensions,Rated Ripple Current Rated (Surge) Voltage 160 (200) 200 (250) 220 (270) 250(300) (μf) Size Ripple Size Ripple Size Ripple Size Ripple x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

180 LS High temperature and Smaller-size Dimensions,Rated Ripple Current (μf) Rated (Surge) Voltage 400 (450) 420(470) 450 (500) Size Ripple Size Ripple Size Ripple x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

181 LJ Features : hours, Wide temperature range for LF, Longer life than LG, Snap-in terminal, High ripple current Recommended Applications: Smoothing circuit, TV/Monitor,Adapter, SMPS Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) High temperature and long life -40 ~ ~ 100VDC 560 ~ 68000μF ± 20 % at 120Hz, 20 Characteristics -25 ~ ~ 500VDC LJ LG Long Life I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) After applying rated voltage with rated Ripple current for 3000hrs at 105, the capacitor shall meet the following requirement. Endurance Change Within±20% of the initial value Shelf Life Dissipation Factor 56 ~ 2200μF I 0.02CV or 3mA whichever is smaller(after rated voltage applied for 5 minutes) Dissipation Factor(tanδ)shall not exceed the values showed in the table of standard rating Leakage Current Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirements as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Freq. (Hz) K 2.4K 5K 10K 10~450V V

182 LJ Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 10(13) 16(20) (μf) ψdxl ψdxl tanδ ESR tanδ Ripple Current Ripple Current (μf) High temperature and long life 22x x25 22x35 25x x30 25x25 22x40 25x30 30x x35 25x30 30x25 22x45 25x35 30x x40 25x30 30x30 22x50 25x40 30x30 35x x45 25x35 30x30 35x25 25x45 30x35 35x x40 30x35 35x30 30x40 35x x45 30x40 35x30 30x50 35x x50 30x45 35x35 35x x40 35x x30 25x x x Rated (Surge) Voltage 25(32) 35(44) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current x x x25 22x x30 22x35 25x x30 25x25 22x40 25x30 30x x35 25x30 22x45 25x35 30x x40 25x35 30x25 22x50 25x40 30x30 35x x45 25x40 30x30 25x45 30x35 35x x50 25x45 30x35 35x25 25x50 30x40 35x x50 30x40 35x30 30x45 35x x45 35x35 35x x50 35x40 35x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω). tanδ ESR ESR

183 LJ High temperature and long life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 50(63) 63(79) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x x25 22x30 22x30 22x35 22x40 22x45 22x50 25x45 30x40 30x45 25x25 25x30 25x30 25x35 25x40 30x35 35x30 35x35 30x25 30x30 30x30 35x30 22x30 22x35 35x25 25x25 25x30 22x40 22x45 30x50 35x45 25x30 25x35 25x40 25x45 30x45 35x40 30x25 30x30 30x30 30x35 25x50 35x35 35x25 35x30 30x40 35x x x (μf) 80(100) ψdxl Ripple Current tanδ Rated (Surge) Voltage 100(125) ψdxl Ripple Current x x x25 22x30 25x x30 22x35 25x x35 25x25 22x40 25x35 30x x40 25x30 30x25 22x45 25x40 30x30 35x x45 25x35 30x30 25x45 30x35 35x x40 30x30 35x25 25x50 30x40 35x x45 30x35 35x30 30x45 35x x40 35x35 30x50 35x x45 35x35 35x x40 35x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω). ESR tanδ ESR

184 LJ High temperature and long life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 160(200) 180(225) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x25 22x x30 22x x30 25x25 22x35 25x x35 25x30 22x40 25x x40 25x30 30x25 22x45 25x35 30x x45 25x35 30x30 22x50 25x40 30x30 35x x50 25x40 30x30 35x25 25x45 30x35 35x x45 30x35 35x30 25x50 30x40 35x x40 35x35 30x45 35x x50 35x40 35x x45 35x x Rated (Surge) Voltage 200(250) 250(300) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x x x25 22x30 25x x30 22x35 25x x30 25x25 22x40 25x x35 25x30 22x45 25x35 30x25 35x x40 25x35 30x25 22x50 25x40 30x30 35x x45 25x35 30x30 25x40 30x35 35x x45 30x35 35x30 25x50 30x40 35x x45 30x35 35x30 30x45 35x x45 35x35 30x50 35x x50 35x40 35x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω).

185 LJ High temperature and long life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 315(365) 350(400) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x25 22x x30 22x30 25x x30 25x25 22x35 25x x35 25x30 22x40 25x35 30x x40 25x35 30x25 22x45 25x40 30x x45 25x40 30x30 22x50 25x45 30x35 35x x45 30x35 25x50 30x40 35x x50 30x40 35x30 30x45 35x x45 35x30 30x50 35x x50 35x35 35x x40 35x x (μf) 400(450) ψdxl Ripple Current tanδ Rated (Surge) Voltage x x25 22x x30 25x25 22x35 25x x35 25x25 22x40 25x x40 25x30 30x25 22x45 25x35 30x x45 25x35 30x30 35x25 22x50 25x40 30x x50 25x40 30x30 35x25 25x45 30x35 35x x45 30x35 35x30 25x50 30x40 35x x50 30x40 35x30 30x45 35x x45 35x35 30x50 35x x50 35x40 35x x45 35x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω). ESR 450(500) ψdxl Ripple Current tanδ ESR

186 LJ High temperature and long life Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 500(550) (μf) ψdxl tanδ ESR Ripple Current x x x x35 22x45 22x50 25x45 25x30 30x25 25x35 30x35 30x30 35x x x x x50 30x45 30x50 30x40 35x35 35x40 35x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω).

187 LM High temperature and Smaller Size Features : hours, Smaller size than LJ, Longer life than LS, Snap-in terminal, High ripple current Recommended Applications: Smoothing circuit, TV/Monitor,Adapter, SMPS Corresponding product to RoHS LM LJ Smaller size Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) (20 ) Characteristics -25 ~ ~ 450VDC 82 ~ 1000μF ± 20 % at 120Hz, 20 I 0.02CV or 3mA whichever is smaller(after rated voltage applied for 5 minutes) I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Rated voltage(v) tanδ ~ After applying rated voltage with rated Ripple current for 3000hrs at 105, the capacitor shall meet the following requirement. Endurance Change Within±20% of the initial value Dissipation Factor Not more than 200% of the specified value Leakage Current Not more than the specified value Shelf Life After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirements as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Freq. (Hz) ~450V K 10K 50K

188 LM High temperature and Smaller-size Dimensions,Rated Ripple Current (μf) Size Ripple Size Ripple Size Ripple 82 22x x (450) 22X x x x x x X x x x X x X x x x x x x X X x X x x x x x x x X x x X x x x x x X x x x x x X x x x X x x X x x x X x x x x x x x x x x x x x Rated (Surge) Voltage 420(470) 450 (500) x x x x Size: Dψx L (mm) Ripple Current.. A/rms. 105,120Hz

189 LQ Features : hours, Wide temperature range for LF, Longer life than HW, Snap-in terminal, High ripple current Recommended Applications: Smoothing circuit, TV/Monitor,Adapter, SMPS Corresponding product to RoHS Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Endurance Change Shelf Life High temperature and long life ± 20 % at 120Hz, ~ ~ 500VDC 56 ~ 2200μF I 0.02CV or 3mA whichever is smaller(after rated voltage applied for 5 minutes) I= Leakage Current (μa) C = Nominal (μf) V= Rated Voltage (V) Dissipation Factor(tanδ)shall not exceed the values showed in the table of standard rating After applying rated voltage with rated Ripple current for 5000hrs at 105, the capacitor shall meet the following requirement. Dissipation Factor Leakage Current Characteristics LQ After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirements as Endurance. LJ Within±20% of the initial value Not more than 200% of the specified value Not more than the specified value Long Life Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Freq. (Hz) K 2.4K 5K 10K 160~450V V

190 LQ Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 160(200) 180(225) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x25 22x x30 22x x30 25x25 22x35 25x x35 25x30 22x40 25x x40 25x30 30x25 22x45 25x35 30x x45 25x35 30x30 22x50 25x40 30x30 35x x50 25x40 30x30 35x25 25x45 30x35 35x x45 30x35 35x30 25x50 30x40 35x x40 35x35 30x45 35x x50 35x40 35x x45 35x x (μf) High temperature and long life 200(250) ψdxl Ripple Current tanδ Rated (Surge) Voltage 250(300) ψdxl Ripple Current x x x25 22x30 25x x30 22x35 25x x30 25x25 22x40 25x x35 25x30 22x45 25x35 30x25 35x x40 25x35 30x25 22x50 25x40 30x30 35x x45 25x35 30x30 25x40 30x35 35x x45 30x35 35x30 25x50 30x40 35x x45 30x35 35x30 30x45 35x x45 35x35 30x50 35x x50 35x40 35x x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω). ESR tanδ ESR

191 LQ Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage 315(365) 350(400) (μf) ψdxl ψdxl tanδ ESR Ripple Current Ripple Current tanδ ESR x25 22x x30 22x30 25x x30 25x25 22x35 25x x35 25x30 22x40 25x35 30x x40 25x35 30x25 22x45 25x40 30x x45 25x40 30x30 22x50 25x45 30x35 35x x45 30x35 25x50 30x40 35x x50 30x40 35x30 30x45 35x x45 35x30 30x50 35x x50 35x35 35x x40 35x x (μf) High temperature and long life 400(450) ψdxl Ripple Current tanδ Rated (Surge) Voltage x x25 22x x30 25x25 22x35 25x x35 25x25 22x40 25x x40 25x30 30x25 22x45 25x35 30x x45 25x35 30x30 35x25 22x50 25x40 30x x50 25x40 30x30 35x25 25x45 30x35 35x x45 30x35 35x30 25x50 30x40 35x x50 30x40 35x30 30x45 35x x45 35x35 30x50 35x x50 35x40 35x x45 35x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR:20,120Hz,(Ω). ESR 450(500) ψdxl Ripple Current tanδ ESR

192 LQ Dimensions,Max Dissipation Factor,Max Permissible Ripple Current,Max Equivalent Resistance Rated (Surge) Voltage (μf) ψdxl Ripple Current 500(550) tanδ x x x x x x30 30x40 30x45 30x50 35x25 35x30 35x35 35x Size:Dψx L(mm). tanδ:20,120hz. Ripple Current: 105,120Hz,(A/rms) ESR ESR:20,120Hz,(Ω).

193 LK Features : hours, Longer life than LQ, Snap-in terminal, High ripple current Recommended Applications: Smoothing circuit, TV/Monitor,Adapter, SMPS Corresponding product to RoHS High temperature and long life LK LQ Long Life Specifications Item Operating Temperature Range Rated Voltage Range Range Tolerance Leakage Current (MAX) (20 ) Dissipation Factor (MAX) (tanδ) (120Hz,20 ) Endurance Shelf Life ± 20 % at 120Hz, ~ ~ 450VDC I= Leakage Current (μa) C= Nominal (μf) V= Rated Voltage (V) After applying rated voltage with rated Ripple current for 7000hrs at 105, the capacitor shall meet the following requirement. Leakage Current 39 ~ 2200μF I 0.02CV or 3mA whichever is smaller(after rated voltage applied for 5 minutes) Dissipation Factor(tanδ)shall not exceed the values showed in the table of standard rating Change Dissipation Factor Characteristics Within±20% of the initial value Not more than 200% of the specified value Not more than the specified value After placed at 105 without voltage applied for 1000 hours, the capacitor shall meet the same requirements as Endurance. Diagram of Dimensions Multiplier for Ripple Current Frequency coefficient Freq. (Hz) 60(50) K 160~250WV Coefficient 315~450WV K

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