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MYL53-241K (240V) MOV 53mm Zinc Oxide Varistor Round Copper Feet High Power Anti-Surge Voltage

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MYL53-241K (240V) MOV 53mm Zinc Oxide Varistor Round Copper Feet High Power Anti-Surge Voltage

Country/Region china
City & Province dongguan guangdong
Categories Other Welding & Soldering Supplies
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Product Details

SPECIFICATION FOR APPROVAL

 

 SPECIFICATIONNO.
PART NO.53D241KPAGE 1 OF 2
DATE: September 03, 2023
UL CSA 
1.OUTLINE
1.1APPEARANCEWITHOUT ANY CRACK, MARKING SHOULD BE CLEAR
1.2DIMENSIONSDIMENSIONS (mm)
D (Max)60
H (Max)78.0
T (Max)7.0
W (±0.05)9.53
t0.5
E (±1.0)25.4
Φ (M4)4.3

 

 

2.ELETRICAL PARAMETER
2.1MAX ALLOWABLE VOLTAGEAC: 150(V)At 1mA DC
DC: 200V)
2.2VARISTOR VOLTAGE216~264V)V0.1mA □ V1mA ■
2.3MAX CLAMPING VOLTAGEIP: 500(A)

Test Current Waveform

8/20μs

Vc: 395(V)
2.4WITHSTANDING SURGE CURRENTIn: 50000(A)

Test Current Waveform

8/20μs

IMax: 70000(A)
2.5MAX ENERGY570(J)

Test Current Waveform

10/1000μs

2.6TYPICAL CAPACITANCE11000(pf)@1KHz
2.7LEAKAGE CURRENT≦ 30(μA)At 80% of Varistor Voltage
2.8NONLINEAR EXPONENT (α)≧30α=logI1logV1 
I2V2 
2.9

TEMPERATURE COEFFICENT

OF VARISTOR VOLTAGE

≦±0.05%/℃

max

Vc85℃-Vc25℃×1×100(%℃)
Vcat25℃60

 

2.10IMPULSE LIFE≦±10%(V1mA)Test Current Waveform 8/20μs

 

 

 

SPECIFICATION FOR APPROVAL

 

 SPECIFICATIONNO.
PART NO.MYL-53D241KPAGE 2 OF 2
DATE: September 03, 2023
UL CSA 
3.Mechenical Requirements
3.1Tensile of TerminationsNo Outstanding Damage1Kgf; 10Sec.
3.2Bending of TerminationsNo Outstanding Damage0.5Kgf; 90° ,3 Times
3.3VibrationNo Outstanding DamageFreq:10-55hz; Amp:0.75mm,1Min.
3.4SolderabilityMin. 95% of The Terminal Should Be Covered With Solder Uniformly

Solder Temp:260±5℃

Immersed Time: 2±0.5Sec.

3.5Resistance of soldering heat
  • V1mA/V1mA

≦±5%

Solder Temp: 260±5℃
Immersed Time: 10±1Sec.
4.Enviromental Requirements
4.1High Temperature Storage

△V1mA/V1mA

≦±5%

Ambient Temp: 125±2℃ Duration:1000h
4.2Low Temperature Storage

△V1mA/V1mA

≦±5%

Ambient Temp: -40±2℃ Duration:1000h
4.3High Humidity Storage/Damp Heat

△V1mA/V1mA

≦±5%

Ambient Temp: 40±2℃ 90-95% R.H. Duration:1000h
4.4Temperature Cycle

△V1mA/V1mA

≦±5%

StepTemperaturePeriod
1-40℃30 min
2Room Temp15 min
3125℃30 min
4Room Temp15 min
4.5High Temperature Load

△V1mA/V1mA

≦±10%

Ambient temp:85±2℃ Duration:1000h Load: MAx. Allowable Voltage
4.6High Humidity Load

△V1mA/V1mA

≦±10%

Ambient Temp:40±2℃90-95% R.H. Duration:1000H Load: MAX. AllowableVoltage
4.7Operating Temperature Range-40℃ ~ +85℃-40℃ ~ +85℃
4.8Storage Temperature Range-40℃ ~ +125℃-40℃ ~ +125℃

 

Strong Surge Withstand Capacity 53D MOV Metal Oxide Varistor Wide Working Voltage Range

SPD varistor manufacturers believe that semiconductor devices are also one of the new components introduced into automobiles, mainly used to protect the electrical system of automobiles and avoid damage to the system by overvoltage and surge energy. The application of varistors in automobiles can avoid the use of various techniques to adjust the electrical system. The low-voltage high-energy zinc oxide varistor (MYN1) is directly used to adjust the voltage and current of the ab terminal of the power supply to protect the entire electrical system. Even if the battery is disconnected from the power supply or the load drops sharply, and there is a large surge energy at both ends of AB, the varistor can also protect semiconductor devices and various electronic devices from surge impact, thereby reducing the volume and weight of the vehicle, and reducing driving fuel consumption. 

The application of varistors in automobiles can not only protect automobiles, but also improve automobile manufacturing technology and performance. SPD varistor manufacturers believe that rheostats can also protect the voltage and suppress the overvoltage of electronic ignition. When the ignition system is in normal working condition, the ignition ring will generate counter electromotive force. If the voltage across the secondary L2 calculated by the turns ratio exceeds 20kV, the high voltage will cause instantaneous breakdown of the spark plug, and the ignition will start normally. However, if the ignition system fails and the ignition is not normal, the induced voltage will cause a high overvoltage at the primary end of the ignition system, thereby shortening the life. By applying varistors and directly connecting varistors at both ends of the composite tube, it is possible to protect the ignition system, suppress overvoltage, and protect the automotive electrical system.
 

Basic properties of varistors:
 

(1) Protection characteristics. When the impact strength of the impact source (or the impact current Isp=Usp/Zs) does not exceed the specified value, the limited voltage of the varistor is not allowed to exceed the impact withstand voltage (Urp) that the protected object can withstand. .
(2) Impact resistance characteristics, that is, the varistor itself should be able to withstand the specified impact current, impact energy, and the average power when multiple impacts occur one after another.
(3) There are two life characteristics. One is the continuous working voltage life, that is, the varistor can meet the specified working time (hours) under the specified ambient temperature and system voltage conditions. The second is the impact life, that is, the number of times it can reliably withstand the specified impact.

 

Model Number
53D 181K 241K 431K 471K 511K 561K 681K 751K 781K 821K 911K 102K 112K 152K 182K
Package
Varistors
D/C
Newest
Condition
New & Original
Lead time
Within 1 day
Unit Price
Contact us for latest price
More details
Please contact us


Applications
 

Transistor, diode, IC, thyristor or triac semiconductor protection

Surge protection in consumer electronics Surge protection in industrial electronics

Surge protection in electronic home appliances, gas and petroleum appliances

Relay and electromagnetic valve surge absorption


Competitive Advantage:

  1. Factory supply directly
  2. Completed certificates such as UL,VDE,SGS,etc and high quality available
  3. Quick delivery
  4. Best after-sales services
  5. OEM & ODM available

Specifications:

 

Part NumberVac(V)Vdc(V)V1mA(V)Ip(A)Vac(V)I(A)StandardI(A)High Surge(J)Standard(J)High SurgeRated power(W)

C@

1KHz

(pf)

20D180K(J)111418(15-21.6)20362000300011130.228500
20D220K(J)141822(19.5-26)20432000300014160.218500
20D270K(J)172227(24-31)20532000300016190.213000
20D330K(J)202633(29.5-36.5)20652000300023240.211500
20D390K(J)253139(35-43)20772000300026280.28500
20D470K(J)303847(42-52)20932000300030340.27400
20D560K(J)354556(50-62)201102000300041410.26500
20D680K(J)405668(61-75)201352000300046490.25800
20D820K(J)506582(74-90)10013565001000038561.04900
20D101K(J)6085100(90-110)10016565001000045701.04000
20D121K(J)75100120(108-132)10020065001000055851.03300
20D151K(J)95125150(135-165)100250650010000701061.02700
20D181K(J)115150180(162-198)100300650010000851301.02200
20D201K(J)130170200(180-220)100340650010000951401.02000
20D221K(J)140180220(198-242)1003606500100001001551.01800
20D241K(J)150200240(216-264)1003956500100001081681.01650
20D271K(J)175225270(243-297)1004556500100001271901.01500
20D301K(J)190250300(270-330)1005006500100001362101.01300
20D331K(J)210275330(297-363)1005506500100001502281.01200
20D361K(J)230300360(324-396)1005956500100001632551.01100
20D391K(J)250320390(351-429)1006506500100001802751.01000
20D431K(J)275350430(387-473)1007106500100001903051.0930
20D471K(J)300385470(423-517)1007756500100002203501.0850
20D511K(J)320415510(459-561)1008456500100002203601.0780
20D561K(J)350460560(504-616)1009256500100002203801.0710
20D621K(J)385505620(558-682)10010256500100002203901.0650
20D681K(J)420560680(612-748)10011206500100002304001.0600
20D751K(J)460615750(675-825)10012406500100002554201.0530
20D781K(J)485640780(702-858)10012906500100002654401.0510
20D821K(J)510670820(738-902)10013556500100002824601.0500
20D911K(J)550745910(819-1001)10015006500100003105101.0440
20D102K(J)6258251000(900-1100)10016506500100003425651.0400
20D112K(J)6808951100(990-1210)10018156500100003836201.0360
20D122K(J)7509901200(1080-1320)10019806500100004086601.0350
20D142K(J)88011401400(1260-1540)10023106500100005327841.0340
20D162K(J)100012801600(1440-1760)10026406500100006068961.0330
20D182K(J)110014651800(1620-1980)10029706500100006259901.0320




Production Process / Quality Control​

 

Application

1. Varistor voltage: refers to the voltage value across the varistor at a specified temperature and DC (generally 1mA or 0.1mA). Recorded as V1mA or V0.1mAo
2. Maximum continuous voltage: refers to the maximum effective value of sinusoidal AC voltage or the maximum DC voltage value that can be continuously applied to both ends of the varistor for a long time under the specified ambient temperature
3. Limiting voltage: refers to the maximum peak voltage at both ends of the varistor when a specified surge current (8,20μs) passes through it.
4. Rated power: refers to the maximum average impact power that can be applied to the varistor under the specified ambient temperature.
5. Maximum energy: the maximum impact energy that can be applied to the varistor under the condition that the varistor voltage does not change more than ±10% and the impulse current waveform is 10, 1000μs or 2ms.
6. Current capacity (maximum inrush current)








 

 

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