SINOCHIP(NANJING) ELECTRONIC CO.,LTD Catalog. Ⅳ Varistor Type MYL5 28

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1 ROHS Catalog Ⅰ Varistor Type MYG 3 Ⅱ Varistor Type MYL1) 18 Ⅲ Varistor Type MYL3 25 Ⅳ Varistor Type MYL5 28 Ⅴ Varistor Type SPD 33 1

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3 ⅠVaristor Type MYG Type MYG Varistors are made of semiconductor ceramic materials composed mainly of zinc oxide. They have non-linear resistance that changes as a function of applied voltage. It has small size, high current capacity,and high protection level. 1.(Features) Wide Varistor voltage range (18V~1800V) Excellent non-linearity and protection level Large withstanding surge current Fast response( 20ns) 2.(Recommended Applications) Protection of semiconductors Surge protection of consumer equipment Surge protection of communication,measuring or controller instrument Relay or electromagnetic Valve surge absorption 3.Explanation of Part numbers MY G D K J Varistor G series Element Size 05 ф05mm 07 ф07mm 10 ф10mm Varistor The first two digits are significant figures and the third one denotes number of Tolerance ±10% High Surge 14 ф14mm zeros following 20 ф20mm 3

4 4. Specification and Electrical Characteristics STANDARD VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE ) (1KHZ ) V Acrms(V) DC(V) Vc(V) Ip(A) 10/1000 μs 1time 2times W pf 05D180K D180K D180K (16~20) 14D180K D180K D220K D220K D220K (20~24) 14D220K D220K D270K D270K D270K (24~30) 14D270K D270K D330K D330K D330K (30~36) 14D330K D330K D390K D390K D390K (35~43) 14D390K D390K D470K D470K D470K (42~52) 14D470K D470K D560K D560K D560K (50~62) 14D560K D560K D680K D680K D680K (61~75) 14D680K D680K

5 CAPACITANC STANDARD VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER E (REFERENCE ) (1KHZ) V ACrms(V) DC(V) Vc(V) Ip(A) 10/1000μs 1time 2times W pf 05D820K D820K D820K 82 (74~90) D820K D820K D101K D101K D101K 100 (90~110) D101K D101K D121K D121K D121K (108~132) 14D121K D121K D151K D151K D151K (135~165) 14D151K D151K D181K D181K D181K (162~198) 14D181K D181K D201K D201K D201K (180~220) 14D201K D201K D221K D221K D221K (198~242) 14D221K D221K D241K D241K D241K (216~264) 14D241K D241K

6 STANDARD VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE ) (1KHZ) V ACrms(V) DC(V) Vc(V) Ip(A) 10/1000μs 1time 2times W pf 05D271K D271K D271K 270 (243~297) D271K D271K D331K D331K D331K (297~363) 14D331K D331K D361K D361K D361K (324~396) 14D361K D361K D391K D391K D391K 390 (351~429) D391K D391K D431K D431K D431K (387~473) 14D431K D431K D471K D471K D471K (423~517) 14D471K D471K D511K D511K D511K (459~561) D511K D561K D561K 560 (504~616) D561K

7 STANDARD VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE) (1KHZ) V ACrms(V) DC(V) Vc(V) Ip(A) 10/1000μs 1time 2times W pf 10D621K D621K 620 (558~682) D621K D681K D681K 680 (612~748) D681K D751K D751K 750 (675~825) D751K D781K D781K 780 (702~858) D781K D821K D821K 820 (738~902) D821K D911K D911K (819~1001) 20D911K D102K D102K 1000 (900~1000) D102K D112K D112K (990~1210) 20D112K D182K (1620~1980) 20D182K

8 HIGH SURGE VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE ) (1KHZ ) V Acrms(V) DC(V) Vc(V) Ip(A) 10/1000 μs 1time 2times W pf 05D180KJ D180KJ D180KJ (16~20) 14D180KJ D180KJ D220KJ D220KJ D220KJ (20~24) 14D220KJ D220KJ D270KJ D270KJ D270KJ (24~30) 14D270KJ D270KJ D330KJ D330KJ D330KJ (30~36) 14D330KJ D330KJ D390KJ D390KJ D390KJ (35~43) 14D390KJ D390KJ D470KJ D470KJ D470KJ (42~52) 14D470KJ D470KJ D560KJ D560KJ D560KJ (50~62) 14D560KJ D560KJ D680KJ D680KJ D680KJ (61~75) 14D680KJ D680KJ

9 HIGH SURGE VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE ) (1KHZ) V ACrms(V) DC(V) Vc(V) Ip(A) 10/1000μs 1time 2times W pf 05D820KJ D820KJ D820KJ 82 (74~90) D820KJ D820KJ D101KJ D101KJ D101KJ 100 (90~110) D101KJ D101KJ D121KJ D121KJ D121KJ (108~132) 14D121KJ D121KJ D151KJ D151KJ D151KJ 150 (135~165) D151KJ D151KJ D181KJ D181KJ D181KJ 180 (162~198) D181KJ D181KJ D201KJ D201KJ D201KJ 200 (180~220) D201KJ D201KJ D221KJ D221KJ D221KJ 220 (198~242) D221KJ D221KJ D241KJ D241KJ (216~264) D241KJ D241KJ

10 20D241KJ HIGH SURGE VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE ) (1KHZ) V ACrms(V) DC(V) Vc(V) Ip(A) 10/1000μs 1time 2times W pf 05D271KJ D271KJ D271KJ 270 (243~297) D271KJ D271KJ D331KJ D331KJ D331KJ 330 (297~363) D331KJ D331KJ D361KJ D361KJ D361KJ 360 (324~396) D361KJ D361KJ D391KJ D391KJ D391KJ 390 (351~429) D391KJ D391KJ D431KJ D431KJ D431KJ 430 (387~473) D431KJ D431KJ D471KJ D471KJ D471KJ 470 (423~517) D471KJ D471KJ D511KJ D511KJ D511KJ (459~561) D511KJ D561KJ D561KJ 560 (504~616) D561KJ

11 HIGH SURGE VARISTOR CONTINUOUS CLAMPING ENERGY (J) PEAK CURRENT 8/20μs(A) RATED POWER CAPACITANC E (REFERENCE) (1KHZ) V ACrms(V) DC(V) Vc(V) Ip(A) 10/1000μs 1time 2times W pf 10D621KJ D621KJ (558~682) 20D621KJ D681KJ D681KJ (612~748) 20D681KJ D751KJ D751KJ (675~825) 20D751KJ D781KJ D781KJ (702~858) 20D781KJ D821KJ D821KJ (738~902) 20D821KJ D911KJ D911KJ (819~1001) 20D911KJ D102KJ D102KJ (900~1000) 20D102KJ D112KJ D112KJ (990~1210) 20D112KJ D182KJ D182KJ (1620~1980) 注 :1 Varistor voltage are measured at 0.1 ma for 05D,and at 1 ma for 07D,10D,14D,20D. 2 Operating Temperature Range: -40 ~+85 Storage Temperature Range: -40 ~

12 5 Dimension 5D 7D 10D 14D Range of voltage Dimensions(mm) (V) D max T max W±1.0 d± ~ ~ ~ ~ ~ ~ ~ ~ ~ D ~ precautions The varistor shall not be operated beyond the specified Ratings and Environmental Conditions in the Catalog or the Specifications to prevent them from deterioration, breakdown, flaming or glowing. Following Precautions for Safety and Application Notes shall be taken in your major consideration. Precautions for Safety: The temperature of the working environment of the varistor must fall in the range required by technical conditions. The varistor shall not be operated exceeding the specified Maximum Allowable in the Catalog or the Specification. The varistor shall not be operated beyond the Maximum Peak Current Rations in the Catalog. It is recommended that the varistor shall be located 3mm away from other hest generating or combustible components. Warning: When the varistor are applied between alive part and a metallic chassis of equipment, following safety countermeasures shall be taken to protect human from electric shock. A) The metallic chassis shall be earthed to the ground. B) A protective device against electric leakage must be installed in the equipment, or altematively,a thermal type fuse should be attached closely to the varistor and series connected within its circuit. C)The live part shall be eqquirpped with a protective cover for preventing electric shock Applicative Notes 12

13 Protective Devices for Varistors Precause measures are to be taken against the accident damage 1) In case of Across the Line Use, the Varistor shall be protected by connecting a ground fault circuit interrupter of fusing in series to the devices. 2) In case of Line to Ground Use the short-circuit of the varistor may not blow the current type fuse due to the grounding resistance (between Line and Ground) which may cause flaming or burnout of the devices in the worst case. Following safety countermeasures (a or b) are recommended. a) Connecting a leakage current circuit breaker in series to the varistor t to be protected. b) Use current type fuses and thermal type fuse which are themally coupled with the varistor each other Selection of Varistor Rating 1)General Precautions In selection of Varistor Rating for line protection, following general precautions shall be taken in your consideration. A) Maximum operating voltage shall be lower than the specified Maximum Allowable voltage of the varistor applied. B) In selection of the varistor, reasonable margin is required against fluctuation of the primary line (or circuit) voltage. Special consideration must be given to load unbalance of separately wired loads, short circuit between the live line and the neutral line or LC resonance at switching for a capacitive productive load. 2) Across-the-Line Use (Line to Line Surge Protection) select the varistor recommended in Table 1. Notes: For some electric equipments working under the phase voltage, the endurance of the short-time line voltage shall be taken into consideration during the design, and for such case, please select the varistor with *. 3) Line to Ground Use (Line to Ground Surge Protection) selects the varistor recommended in Table 1. Table 1 Line Line Surge Protection Line Ground Surge Protection Nominal Line Part Number of varistor Nominal Line Part Number of varistor AC100V MYG D271 AC100V MYG D821 AC120V MYG D331 AC120V MYG D821 AC220V MYG D471 AC220V MYG D182 13

14 MYG D511 MYG D561 * MYG D681 * MYG D821 MYG D182 AC380V AC380V MYG D911 Notes: :varistor diameter: Selection of Fuse Rating: The recommended fuse locations are shown.for varistor protection, it is recommended to select suitable fuse in Table 2. Table 2 Varistor series 05D 07D 10D 14D 20D Recommended Fuse Ratings 1 2A 2 4A 3 5A 4 8A 6 10A Environmental Conditions 1) The varistor shall not be exposed outdoors, because of being designed for indoor use. 2) The varistor shall not be operated beyond the Specified Operating Temperature Range and shall not be exposed to direct sunlight and heating part of equipment. 3) The varistor shall not be operated under severe conditions of high temperatures and high humilities such as places exposed to rain, wind and vapour. 4) The varistor shall be free from dust, salty wind and atomospheres polluted by corrosive gas. Precautions for Assemblies and Handings 1) Organic solvents such as thinner and acetone etc, shall not be applied to varistor for preventing deterioration of external coating or molding resin. 2) Abnormal mechanical stresses beyond the specified values such as strong falling shocks, ribrations and bending forces, shall be kept minimum to prevent electrical failures of the devices. Long Term Storage 1) The varistor shall not be stored under severe conditions of high temperatures and high temperatures and high humidities. Store them indoors under 40 max and 75% RH max. Use them within one year, if stored beyond the limit, check the solder bility before use. 2) The varistor shall not be stored under corrosive atomospheres such as hydrogen sulfide, 14

15 v sulfurous acid, chlorine and ammonia. 3) The varistor shall not be exposed to direct sunlight and shall not be stored under dew formation. Parallel Capacitance of the Varistor The Parallel Capacitance of the Varistor is listed in the specification Table, for the designer s reference in high frequency circuit. 7 Technical Data In the following experiments, all the characteristics, are experimented and obtained in compliance with the method and terms of GB/T idt IEC :1991 QC Specified indoor temperature: 25±5,comparative humidity:45-85%,atmopspheric pressure:86-106kpa. Characteristics Test Methods Specifications The voltage between two leads varistor which is measured under the specified current,05d series a specified current: Varistor 0.1mA, To meet the 07D,10D,14D,20D series a specified current: 1mA. Specified value Maximum The maximum sinusoidal RMS voltage or maximum DC Allowable voltage that can be applied continuously in the specified operating temperature range. The maximum voltage between Two terminals with the Clamping specified To meet the standard impulse current(8/20μs) illustrated below applied Specified value Rated The maximum power that can be applied within the specified power ambient temperature. Maximum Energy Maximum energy from one or a burst of impulse. It is the value within the varistor of ±10% when one impulse of μs or 2ms is applied To meet the Specified value 1 Maximum time Peak Current 2 times Temperature Coefficient of Varistor voltage Capacitance The maximum current within the varistor voltage change of ±10%when a single standard impulse current of 8/20μs is applied. The maximum current within the varistor voltage change of ±10% when a standard impulse current of 8/20μs is applied two times with an interval of 5 minutes. Vc(+85 )-Vc(+25 ) 1 100% Vc(+25 ) 60 Testing Condition :1KHz ±10%.1Vrms.(1MHz ±10% below 100PF) To meet the Specified value 0~-0.05%/ To meet the Specified value 15

16 Insulation Strength (Body Insulation) The specified voltage shall be applied between both terminals of the specimen connected together and metal foil closely wrapped round its body for 1 minute. Varistor voltage Testing (AC) Vc 330V 1000Vrms No breakdown Vc>330V 2000Vrms Impluse Life The change of Vc shall be measured after the impulse current. Listed with the interval of 2 min when 10~1000 impulses are applied or the 10 seconds interval when impulses are applied. Vc/Vc ±10% 16

17 Terminal Pull Strength Terminal Bending Strength After gradually applying the load specified below and keeping the load fixed for 10 seconds. The change shall be measured and meet the requirement with no outstanding damage. Terminal diameter Force 0.6mm, 0.8mm 10N 1.0mm 20N The unit shall be secured with its terminal kept vertical and the weight specified below be applied in the axial direction. The terminal shall gradually be bent by 90 in one direction, then 90 in the opposite direction, and again back to the original position. The change shall be measured and meet the requirement with no outstanding damage. Terminal diameter Force 0.6mm, 0.8mm 10N No Outstanding Damage No Outstanding Damage 1.0mm 20N Vibration Solder ability Subjected to simple harmonic motion of 0.75mm amplitude 1.5mm maximum total excursion between limits of 10-55Hz. Frequency scan shall be traversed in one minute, This motion shall then be applied for period of two hours in each of three mutually perpendicular directions.the change shall be measured and meet the requirement with no outstanding damage. After dipping the terminal to a depth of approximately 2mm from the body in a soldering bath of 235±5 for 2±0.5 sec. The terminations shall be uniformly tinned. The terminal shall be dipped into a soldering bath with temperature of 260±5 to a point of 2-2.5mm from the body for 10±0.5sec. Resistance to (05D shall be 5±1sec.) and then stored at room temperature Soldering Heat and humidity for 1-2 hours. The change of Vc shall be measured and meet the requirement with no outstanding damage. The specimen shall be subjected to 125±2 for 1000 hours in a High Temperature drying oven without load and then stored at room temperature Storage/Dry Heat for 1-2 hours.the change of Vc shall be measured and meet Humidity the requirement with no outstanding damage. The specimen shall be subjected to 40,90 to 95% R.H. For 1000 hours without load and then stored at room temperature for 1-2 hours. The change of Vc shall be measured and meet the requirement with no outstanding damage. No Outstanding Damage Approximate 95% of the terminals shall be covered with new solder uniformly Vc/Vc ± 5%, No Outstanding Damage Vc/Vc ±5% Vc/Vc ±5% 17

18 Temperature Cycle High Temperature Load/Dry Heat Load Damp Hest Load/Humidity Load Low Temperature Storage/Cold Temperature cycle operation of the following table shall be repeated 5 times continuously. And then the specimen shall be left at room ambient for 1-2 hours. The change of Vc shall be measured and meet the requirement with no outstanding damage. Stops Temperature( ) Time(min) steps Temperature( ) Time(min) 1-40±3 30± ±2 30±3 2 Room Temperature 15±3 4 Room Temperature 15±3 After being continuously applied the maximum allowable voltage at 85±2 for 1000 hours, the specimen shall be stored at room temperature and humidity for 1-2 hours. The change of Vc shall be measured and meet the requirement with no outstanding damage. After being continuously applied the maximum allowable voltage at 85±2,90-95%R.H. for 1000 hours, the specimen shall be stored at room temperature and humidity for 1-2 hours. The change of Vc shall be measured and meet the requirement with no outstanding damage. Specimen shall be subjected to an ambient of -40±2 for 1000 hours. And after the specimen shall be left at room ambient for 1-2 hours. The change of Vc shall be measured and meet the requirement. with no outstanding damage. Vc/Vc ±5% No Outstanding Damage Vc/Vc ±10% Vc/Vc ±10% Vc/Vc ±5% Advice to Customers According to the agreed contract, ordered production can be provided to meet the customer s demand for product speciality in size, electronic parameter and other characteristics. 18

19 ⅡVaristor Type MYL1 1 Features Varistor voltage(68v-1200v) Excellent non-linearity coefficient Great withstanding surge current Fast response time 2 Recommended Applications Protection of semiconductor Surge protection of consumer equipment Surge protection of communication,measuring or controller instrument Relay or electro magnetic valve surge absorption 3 Explanation of Part Numbers MYL1 D L1 Type Varistor Series A B Element Size 25 ф25mm 32 ф32mm 40 ф40mm 50 ф50mm 60 ф60mm Varistor The first two digits are significant figures and the third one denotes number of zeros following 19

20 3 Specification and Electrical Characteristics of Product Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Rated Power Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) (W) pf MYL1B25D470 47(42-52) MYL1B25D560 56(50-62) MYL1B25D680 68(61-75) MYL1B25D820 82(74-90) MYL1B25D (90-110) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D ( ) MYL1B25D (

21 Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Rated Power Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) (W) pf MYL1B32D470 47(42-52) MYL1B32D560 56(50-62) MYL1B32D680 68(61-75) MYL1B32D820 82(74-90) MYL1B32D (90-110) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D ( ) MYL1B32D (

22 Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Rated Power Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) (W) pf MYL1B40D470 47(42-52) MYL1B40D560 56(50-62) MYL1B40D680 68(61-75) MYL1B40D820 82(74-90) MYL1B40D (90-110) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D ( ) MYL1B40D (

23 Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Rated Power Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) (W) pf MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( ) MYL1B50D ( )

24 Model NO Max Max.Peak Capacitance Allowable Energy Current Max. Rated Varistor (Reference) (2ms) (8/20us) Clamping Power (1kHz) (V) (A) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) (W) pf MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( ) MYL1B60D ( Operating Temperature Range:-40 to +85 Storage Temperature Range:-40 to Dimension Dimensions(mm) Dmax. Tmax. W d MYL1B25D MYL1B25D MYL1B32D MYL1B32D MYL1B40D MYL1B40D MYL1B50D MYL1B60D

25 Dimensions(mm) Dmax. H B Tmax. MYL1B40D MYL1B40D MYL1B50D MYL1B60D Ⅲ Varistor Type MYL3 1 Features Varistor voltage(47v-1200v) Excellent non-linearity coefficient Great withstanding surge current 2 Recommended Applications Protection of semiconductor Surge protection of consumer equipment Surge protection of communication,measuring or controller instrument Relay or electro magnetic valve surge absorption 25

26 3 Explanation of Part Numbers MYL3 Varistor The first two digits L3 Type Varistor Series A B C Element Size Type are significant figures and the third one denotes number of zeros following 4 Specification and Electrical Characteristics of Product Model NO. Varistor Max. Allowable (V) Max. Clamping Energy (2ms) 1time Max.Peak Current (8/20us) 2time Capacitance (reference) (1kHz) V (V) ACrms DC V 150A (V) (J) (A) (A) pf MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( ) MYL3A25D ( )

27 Model NO. Varistor Max. Allowable (V) Max. Clamping Energy (2ms) 1time Max.Peak Current (8/20us) 2time Capacitance (reference) (1kHz) V (V) ACrms DC V 200A (V) (J) (A) (A) pf MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) MYL3A34S ( ) Model NO. Varistor Max. Allowable (V) Max. Clamping Energy (2ms) 1time Max.Peak Current (8/20us) 2time Capacitance (reference) (1kHz) V (V) ACrms DC V 400A (V ) (J) (A) (A) pf MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( ) MYL3A40D ( )

28 Model NO. Varistor Max. Allowable (V) Max. Clamping Energy (2ms) 1time Max.Peak Current (8/20us) 2time Capacitance (reference) (1kHz) V (V) ACrms DC V 500A (V) (J) (A) (A) pf MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) MYL3A60D ( ) Operating Temperature Range:-40 to +85 Storage Temperature Range:-40 to Dimension Type W1±2 W2±2 W3±2 H±1 Dmax d±1 mx MYL3A25D M4 MYL3A34S M4 MYL3A40D M4 MYL3A40D M6 MYL3A 28

29 MYL3B MYL3C Ⅳ Varistor Type MYL5 1 Features Varistor voltage(200v-1200v) Excellent non-linearity coefficient Great with standing surge current Fast response time 2 Recommended Applications Protection of semiconductor Protection of railway automatic signals Surge protection of communication,measuring or controller instrument Transient voltage surge suppressor units Surge protection of vacuum switches 3 Explanation of Part Numbers MYL5 L5 Type Varistor Series A B Element Size mm Varistor The first two digits are significant mm mm Type figures and the third one denotes number of zeros following 29

30 4 Specification and Electrical Characteristics of Product Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) pf MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S ( ) MYL5A22S (

31 Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) pf MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S ( ) MYL5B34S (

32 Model NO Varistor Max Allowable (V) Energy (2ms) Max.Peak Current (8/20us) (A) Max. Clamping Capacitance (Reference) (1kHz) V 1mA (V) AC rms DC (J) 1time 2time V C (V) Ip(A) pf MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( ) MYL5B38S ( Operating Temperature Range: -40 to +85 Storage Temperature Range: -40 to

33 5 Dimension Model NO. Disc Size Dimension(mm) a max. b max. Hmax. Tmax. c D±0.1 F1 F2 X±1 MYL5A22S MYL5B34S MYL5B38S

34 ⅤVaristor Type SPD 1 Features Varistor voltage(150v-1100v) Excellent non-linearity coefficient Great with standing surge current Fast response time Indicator of degradation 2 Recommended Applications Protection of semiconductor Surge protection of communication,measuring or controller instrument Transient voltage surge suppressor units Surge protection of vacuum switches 3 Explanation of Part Numbers HJ XXXAC 40(3V + T) 1 Gas discharge tube 3Varistor Max Peak Current(KA) Max Continuous Sinochip SPD searials 4 Specification and Electrical Characteristics of Product Model NO HJ XXXAC40V HJ XXXAC40(3V+T) Max Continuous protects(20ka)up 1.2KV 1.5KV 1.8KV 2.0KV 1.2KV 1.5KV 1.8KV 2.0KV Electric system TN/TT TN/TT Rated Peak Current 20KA(8/20us) 20KA(8/20us) Max Peak Current 40KA(8/20us) 40KA(8/20us) Impulse Response Time L/N PE 25ns Operating Temperature -40 ~85 相对湿度 Relative Humidity 95% L N N PE 25ns 100ns 绝缘电阻 Insulation >10 3 MΩ 34

35 5 Dimensoin L/N PE HJ-XXXAC40V L1 L2 L3 PE N HJ XXXAC40(3V+T) 35

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