Aluminum Electrolytic Capacitors Radial Very Low Impedance

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1 Aluminum Electrolytic Capacitors Radial Very Low Impedance FEATURES Very low impedance and low ESR Very long useful life: 4000 h to h at 05 C, very high reliability Excellent ripple current capability Polarized aluminum electrolytic capacitors, non-solid electrolyte Radial leads, cylindrical aluminum case with pressure relief, insulated with a blue sleeve 40 RTM 5 C Charge and discharge proof Material categorization: for definitions of compliance please see higher temperature APPLICATIONS miniaturized 50 RMI Power supplies (SMPS, DC/DC converters) for general industrial, EDP, audio-video, and telecommunications higher CV/volume Smoothing, filtering, buffering 048 RML miniaturized Fig. 48 RUS MARKING The capacitors are marked (where possible) with the following information: QUICK REFERENCE DATA DESCRIPTION VALUE Nominal case sizes (Ø D x L in mm) 0 x to 8 x 35 Rated capacitance range, C R μf to μf Tolerance on C R ± 0 % Rated voltage range, C R 0 V to 00 V Category temperature range -55 C to +05 C Endurance test at 05 C Useful life at 05 C Useful life at 40 C,.8 x I R applied Shelf life at 0 V, 05 C Based on sectional specification 3000 h to 5000 h (dependent on case size) 4000 h to h (dependent on case size) h to h (dependent on case size) 000 h IEC / EN30300 Climatic category IEC / 05 / 56 Rated capacitance value (in μf) Tolerance on rated capacitance, code letter in accordance with IEC 6006 (M for ± 0 %) Rated voltage (in V) Date code, in accordance with IEC 6006 Code indicating factory of origin Name of manufacturer Upper category temperature (05 C) Negative terminal identification Series number (36) Revision: 6-Sep-6 Document Number: 83

2 SELECTION CHART FOR C R, U R, AND RELEVANT NOMINAL CASE SIES (Ø D x L in mm) C R U R (V) (μf) x x x 0 x x x 6 0 x x x 0 x 6.5 x x 0 x 6 0 x x x 0 x 0 0 x 5 6 x x - 0 x 0 0 x x x 0 x 6 0 x 5.5 x 0 6 x x x x 0 x 6 0 x 0 0 x 30 6 x 0 6 x x 6.5 x x x x x 0 x 6 0 x 0.5 x 0.5 x 5 6 x 5 6 x x x x 5 0 x 30.5 x x x 6 0 x x 5 6 x 0 6 x 3 8 x x x x 5 0 x 30-6 x 5 6 x x x 0.5 x 0.5 x 5.5 x 3 6 x 3 8 x x x 0 8 x x 5 0 x 30-6 x 5 6 x x x 30.5 x 5.5 x 3 6 x 5 8 x 3 8 x x 0-6 x x 0-6 x 5 6 x x 5.5 x 3 6 x 3 6 x 35 8 x x 0 8 x 0 8 x x 3 6 x 5 6 x x 0 6 x 5 6 x 35 8 x x x 5 6 x x 3 6 x 35 8 x x x x x 35 8 x x x Revision: 6-Sep-6 Document Number: 83

3 DIMENSIONS in millimeters AND AVAILABLE FORMS L 5 ± L Ø d F Ø D F Ø D 5 min. 5 min. Ø d Fig. - Form CA: Long leads Fig. 3 - Form CB: Cut leads Fig. 4 - Form TFA: Taped in box (ammopack) Table DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES NOMINAL CASE SIE Ø D x L CASE CODE Ø d Ø D max. L max. F Note For detailed tape dimensions refer to packaging information: MASS (g) PACKAGING QUANTITIES FORM CA FORM CB 0 x ± x ± x ± x 5 6L ± x 30 6LL ± x 6 7a ± x ± x ± x 3 8L ± x 0 9a ± x ± x ± x ± x ± x ± x ± x ± FORM TFA Revision: 6-Sep-6 3 Document Number: 83

4 ELECTRICAL DATA SYMBOL DESCRIPTION C R Rated capacitance at, tolerance ± 0 % I R Rated RMS ripple current at, 05 C I L Max. leakage current after min at U R tan Max. dissipation factor at Max. impedance at ORDERING EXAMPLE Electrolytic capacitor 36 series 000 μf / 5 V; ± 0 % Nominal case size: Ø.5 mm x 5 mm; form TFA Ordering code: MAL E3 Former NC: Note Unless otherwise specified, all electrical values in Table apply at T amb = 0 C, P = 86 kpa to 06 kpa, RH = 45 % to 75 % Table ELECTRICAL DATA AND ORDERING INFORMATION U R (V) 0 6 C R (μf) NOMINAL CASE SIE Ø D x L (mm) I R 05 C (ma) I L min (μa) tan +0 C -0 C FREQ. CODE () ORDERING CODE MAL36... BULK PACKAGING TAPED FORM CA FORM CB FORM TFA x MF 5439E3 6439E3 3439E x MF 5447E3 6447E3 3447E x MF 5468E3 6468E3 3468E x MF 540E3 640E3 340E x MF 9405E3 9406E3 9403E x MF 54E3 64E3 34E x MF 9455E3 9456E x MF 545E3 645E3 345E x MF 548E3 648E3 348E x MF 54E3 64E3 34E x MF 547E3 647E x MF 5433E3 6433E3 3433E x MF 5439E3 6439E3 3439E x MF 5447E3 6447E3 3447E x MF 5456E3 6456E3 3456E x MF 94565E E x MF 5468E3 6468E x MF 94685E E x MF 5403E3 6403E x MF3 557E3 657E3 357E x MF3 5533E3 6533E3 3533E x MF3 5547E3 6547E3 3547E x MF3 5568E3 6568E3 3568E x MF E E E x MF3 558E3 658E3 358E x MF3 550E3 650E3 350E x MF3 955E3 956E x MF3 55E3 65E3 35E x MF3 555E3 655E3 355E x MF3 955E3 956E x MF4 55E3 65E3 35E x MF4 557E3 657E3 357E x MF4 5533E3 6533E3 3533E x MF4 5539E3 6539E3 3539E x MF4 5547E3 6547E x MF E E x MF4 5568E3 6568E3 - Revision: 6-Sep-6 4 Document Number: 83

5 ELECTRICAL DATA AND ORDERING INFORMATION U R (V) C R (μf) NOMINAL CASE SIE Ø D x L (mm) I R 05 C (ma) I L min (μa) tan +0 C -0 C FREQ. CODE () ORDERING CODE MAL36... BULK PACKAGING TAPED FORM CA FORM CB FORM TFA 80 0 x MF3 568E3 668E3 368E3 0 0 x MF3 56E3 66E3 36E x MF3 5633E3 6633E3 3633E x MF3 5647E3 6647E3 3647E x MF E E E x MF3 5656E3 6656E3 3656E x MF3 9685E3 9686E x MF3 568E3 668E3 368E x MF3 560E3 660E3 360E x MF3 9655E3 9656E x MF4 565E3 665E3 365E x MF4 568E3 668E3 368E x MF4 56E3 66E3 36E x MF4 965E3 966E x MF4 567E3 667E3 367E x MF4 5633E3 6633E x MF E E x MF4 5647E3 6647E3-0 0 x MF5 50E3 60E3 30E x MF5 505E3 605E3 305E3 0 0 x MF5 50E3 60E3 30E x MF5 5033E3 6033E3 3033E x MF E E E x MF5 5039E3 6039E3 3039E x MF5 5047E3 6047E3 3047E x MF E E x MF5 5056E3 6056E3 3056E x MF5 5068E3 6068E3 3068E x MF5 9005E3 9006E x MF6 500E3 600E3 300E x MF6 50E3 60E3 30E x MF6 505E3 605E3 305E x MF6 508E3 608E3 308E x MF6 50E3 60E x MF6 905E3 906E x MF6 5033E3 6033E3-8 0 x MF5 589E3 689E3 389E x MF5 50E3 60E3 30E3 0 0 x MF5 5E3 6E3 3E x MF5 55E3 65E3 35E x MF5 58E3 68E3 38E x MF5 985E3 986E3 983E3 0 0 x MF5 5E3 6E3 3E x MF5 9335E3 9336E x MF5 533E3 633E3 333E x MF5 547E3 647E3 347E x MF5 556E3 656E x MF6 568E3 668E3 368E x MF6 58E3 68E3 38E x MF6 50E3 60E3 30E x MF6 905E3 906E x MF6 5E3 6E x MF6 55E3 65E x MF6 5E3 6E3 - Revision: 6-Sep-6 5 Document Number: 83

6 ELECTRICAL DATA AND ORDERING INFORMATION U R (V) C R (μf) NOMINAL CASE SIE Ø D x L (mm) I R 05 C (ma) I L min (μa) tan +0 C -0 C FREQ. CODE () 47 0 x MF E E E x MF E E E x MF E E E x MF7 580E3 680E3 380E3 0 0 x MF7 58E3 68E3 38E3 0.5 x MF7 985E3 986E3 983E x MF7 585E3 685E3 385E x MF7 588E3 688E3-0.5 x MF7 58E3 68E3 38E x MF7 587E3 687E3 387E x MF8 5833E3 6833E3 3833E x MF7 5839E3 6839E x MF8 5847E3 6847E3 3847E x MF8 5868E3 6868E3 3868E x MF E E x MF8 588E3 688E x MF8 580E3 680E x MF8 585E3 685E3-0 x MF7 599E3 699E3 399E x MF E E E x MF E E E x MF E E E x MF7 590E3 690E3 390E x MF8 595E3 695E3 395E3 0 6 x MF8 59E3 69E3 39E x MF8 5933E3 6933E3 3933E x MF8 5947E3 6947E x MF E E x MF8 5968E3 6968E3 - Note () Determines the applicable row in the table Multiplier of Ripple Current (I R ) as a Function of Frequency ORDERING CODE MAL36... BULK PACKAGING TAPED FORM CA FORM CB FORM TFA ADDITIONAL ELECTRICAL DATA PARAMETER CONDITIONS VALUE Voltage Surge voltage U s.5 x U R Reverse voltage U rev V Current Leakage current After min at U R I L 0.0 C R x U R Inductance Equivalent series inductance (ESL) Resistance Case Ø D = 0 mm Case Ø D.5 mm Typ. 6 nh Typ. 8 nh Equivalent series resistance (ESR) Calculated from tan max. and C R (see Table ) ESR = tan / f C R Revision: 6-Sep-6 6 Document Number: 83

7 CAPACITANCE (C). C C 0. C C Curve : 63 V Curve : 0 V Curve : 63 V Curve : 50 V Curve 3: 35 V Curve 4: 5 V Curve 5: 0 V T amb ( C) C 0 = Typical capacitance at 0 C, Fig. 5 - Typical multiplier of capacitance as a function of ambient temperature f (Hz) C 0 = Typical capacitance at 0 C, T amb = 0 C Fig. 6 - Typical multiplier of capacitance as a function of frequency EQUIVALENT SERIES RESISTANCE (ESR) 0 ESR ESR ESR ESR 0.6 Curve : 63 V Curve : 0 V T amb ( C) ESR 0 = Typical ESR at 0 C, Fig. 7 - Typical multiplier of ESR as a function of ambient temperature f (Hz) ESR 0 = Typical ESR at 0 C, T amb = 0 C Fig. 8 - Typical multiplier of ESR as a function of frequency Revision: 6-Sep-6 7 Document Number: 83

8 IMPEDANCE () Curve : 0 V Curve : 50 V Curve 3: 63 V U R = 0 V and 6 V Curve : 470 µf, 6 V; Ø 0 x 6 mm Curve : 680 µf, 0 V; Ø 0 x 6 mm Curve 3: 000 µf, 0 V; Ø 0 x 0 mm Curve 4: 00 µf, 0 V; Ø.5 x 5 mm Curve 5: 4700 µf, 6 V; Ø 6 x 35 mm Curve 6: µf, 0 V; Ø 8 x 35 mm 0 = Typical impedance at 0 C, Fig. 9 - Typical multiplier of impedance as a function of ambient temperature T amb = 0 C Fig. 0 - Typical impedance as a function of frequency U R = 5 V and 35 V Curve : 0 µf, 5 V; Ø 0 x mm Curve : 0 µf, 35 V; Ø 0 x 6 mm Curve 3: 330 µf, 35 V; Ø 0 x 0 mm Curve 4: 470 µf, 5 V; Ø 0 x 0 mm Curve 5: 470 µf, 35 V; Ø.5 x 0 mm Curve 6: 000 µf, 5 V; Ø.5 x 5 mm Curve 7: 00 µf, 35 V; Ø 6 x 5 mm Curve 8: 00 µf, 35 V; Ø 6 x 35 mm Curve 9: 3300 µf, 5 V; Ø 6 x 35 mm U R = 50 V Curve : 00 µf, 50 V; Ø 0 x mm Curve : 470 µf, 50 V; Ø.5 x 5 mm Curve 3: 680 µf, 50 V; Ø 6 x 0 mm Curve 4: 000 µf, 50 V; Ø 6 x 3 mm Curve 5: 00 µf, 50 V; Ø 8 x 35 mm T amb = 0 C T amb = 0 C Fig. - Typical impedance as a function of frequency Fig. - Typical impedance as a function of frequency Revision: 6-Sep-6 8 Document Number: 83

9 U R = 63 V Curve : 47 µf, 63 V; Ø 0 x mm Curve : 68 µf, 63 V; Ø 0 x 6 mm Curve 3: 00 µf, 63 V; Ø 0 x 0 mm Curve 4: 0 µf, 63 V; Ø.5 x 0 mm Curve 5: 70 µf, 63 V; Ø.5 x 5 mm Curve 6: 470 µf, 63 V; Ø 6 x 5 mm Curve 7: 680 µf, 63 V; Ø 6 x 3 mm T amb = 0 C Fig. 3 - Typical impedance as a function of frequency RIPPLE CURRENT AND USEFUL LIFE Table 3 ENDURANCE TEST DURATION AND USEFUL LIFE NOMINAL CASE SIE Ø D x L (mm) Note Multiplier of useful life code: CCC06 CASE CODE ENDURANCE TEST AT 05 C (h) USEFUL LIFE AT 05 C (h) 0 x x x x 5 6L x 30 6LL x 6 7a x x x 3 8L x 0 9a x x x x x x x Revision: 6-Sep-6 9 Document Number: 83

10 3.8 CCC06 I A I R Lifetime multiplier Table 4 Table 5 I A = Actual ripple current at I R = Rated ripple current at, 05 C () Useful life at 05 C and I R applied; see Table 3 Fig. 4 - Multiplier of useful life as a function of ambient temperature and ripple current load MULTIPLIER OF RIPPLE CURRENT (I R ) AS A FUNCTION OF FREQUENCY FREQUENCY (Hz) FREQ CODE I R MULTIPLIER MF MF MF MF MF MF MF MF TEST PROCEDURES AND REQUIREMENTS TEST NAME OF TEST REFERENCE Endurance Useful life Shelf life (storage at high temperature) IEC / EN30300 subclause 4.3 CECC 3030 subclause.8. IEC / EN30300 subclause () T amb ( C) PROCEDURE (quick reference) T amb = 05 C; U R applied; for test duration see Table 3 T amb = 05 C; U R and I R applied; for test duration see Table 3 T amb = 05 C; no voltage applied; 000 h after test: U R to be applied for 30 min, 4 h to 48 h before measurement REQUIREMENTS C/C: ± 0 % tan x spec. limit I L spec. limit C/C: ± 30 % tan 3 x spec. limit I L spec. limit no short or open circuit total failure percentage: % C/C: ± 0 % tan x spec. limit I L spec. limit Statements about product lifetime are based on calculations and internal testing. They should only be interpreted as estimations. Also due to external factors, the lifetime in the field application may deviate from the calculated lifetime. In general, nothing stated herein shall be construed as a guarantee of durability. Revision: 6-Sep-6 0 Document Number:

11 Legal Disclaimer Notice Vishay Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, Vishay ), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special, consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular purpose, non-infringement and merchantability. Statements regarding the suitability of products for certain types of applications are based on Vishay s knowledge of typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements about the suitability of products for a particular application. It is the customer s responsibility to validate that a particular product with the properties described in the product specification is suitable for use in a particular application. Parameters provided in datasheets and / or specifications may vary in different applications and performance may vary over time. All operating parameters, including typical parameters, must be validated for each customer application by the customer s technical experts. Product specifications do not expand or otherwise modify Vishay s terms and conditions of purchase, including but not limited to the warranty expressed therein. Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining applications or for any other application in which the failure of the Vishay product could result in personal injury or death. Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners. 07 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED Revision: 08-Feb-7 Document Number: 9000

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