5KP Series 5000 Watt Axial Leaded Transient Voltage Suppressor

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1 5KP Series 5000 Watt Axial Leaded Transient Voltage Suppressor Description The 5KP Series are designed specifically to protect sensitive Uni-directional electronics equipment from voltage transients induced by lightning and other transient voltage events. These devices are ideal for the protection of I/O interfaces, Vcc bus and other vulnerable circuits used in automotive, industrial and consumer electronic applications. Bi-directional Feature RoHS compliant 5.0 to 190 Volts Glass passivated chip junction Uni-directional and Bi-directional 5000W peak pulse power capability on 10/0μs waveform Excellent clamping capability Repetition rate (duty cycle): 0.05% Low incremental surge resistance Fast response time: typically less than 1.0ps from 0 Volts to V R Absolute maximum rating@25 Parameter Symbol Value Unit Peak Pulse Power Dissipation on 10/0μs waveform(note 1, FIG. 1) P PPM Min 5000 W Peak Pulse of on 10/0μs waveform (Note 1, FIG. 3) I PPM See Table 1 A Steady State Power Dissipation at TL=75 C, Lead lengths.375", P M(AV) 8 W Peak Forward Surge, 8.3ms Single Half Sine-Wave Superimposed on Rated Load, (JEDEC Method) (Note 3) I FSM 400 A Operating junction and Storage T J, T STG -55 to +175 Notes: 1. Non-repetitive current pulse, per Fig.3 and derated above T A = 25 C per Fig.2 2. Mounted on Copper Pad area of 0.8x0.8"(20x20mm) per Fig ms single half sine-wave, or equivalent square wave, Duty cycle= 4 pulses per minutes maximum. Rev

2 Electrical characteristics (Uni) (Bi) Stand off Voltage V R Breakdown Voltage V I T MIN MAX Test I T (ma) Clamping Voltage V PP Peak Pulse I PP (A) Leakage I V R (μa) 5KP5.0A 5KP5.0CA KP6.0A 5KP6.0CA KP6.5A 5KP6.5CA KP7.0A 5KP7.0CA KP7.5A 5KP7.5CA KP8.0A 5KP8.0CA KP8.5A 5KP8.5CA KP9.0A 5KP9.0CA KP10A 5KP10CA KP11A 5KP11CA KP12A 5KP12CA KP13A 5KP13CA KP14A 5KP14CA KP15A 5KP15CA KP16A 5KP16CA KP17A 5KP17CA KP18A 5KP18CA KP20A 5KP20CA KP22A 5KP22CA KP24A 5KP24CA KP26A 5KP26CA KP28A 5KP28CA KP30A 5KP30CA KP33A 5KP33CA KP36A 5KP36CA KP40A 5KP40CA KP43A 5KP43CA KP45A 5KP45CA Rev

3 (Uni) (Bi) Stand off Voltage V R Breakdown Voltage V I T MIN MAX Test I T (ma) Clamping Voltage V PP Peak Pulse I PP (A) Leakage I V R (μa) 5KP48A 5KP48CA KP51A 5KP51CA KP54A 5KP54CA KP58A 5KP58CA KP60A 5KP60CA KP64A 5KP64CA KP70A 5KP70CA KP75A 5KP75CA KP78A 5KP78CA KP85A 5KP85CA KP90A 5KP90CA KPA 5KPCA KP110A 5KP110CA KP120A 5KP120CA KP130A 5KP130CA KP150A 5KP150CA KP160A 5KP160CA KP170A 5KP170CA KP180A 5KP180CA KP190A 5KP190CA For bidirectional type having V R of 30 volts and less, the I R limit is double. For parts without A, the V BR is ±10% Rev

4 Ratings and Characteristic Curves T A =25 unless otherwise noted Non-repetitive pulse PPPM-Peak Power(kW) 10 1 waveform shown in Fig.3 T A =25 Peak Pulse Power(PPP) or (IPP) μs 1.0μs 10μs μs 1.0ms 10ms t d -Pulse Width (sec.) T A -Ambient temperature( ) 200 Figure 1-Peak Pulse Power Rating Curve Figure 2-Pulse Derating Curve IPPM-Peak Pulse, %IRSM t r =10μs Peak Value I PPM Half Value I PPM 2 T J =25 Pulse Width(t d ) is defined as the point where the peak decays to 50% of I PPM 10/0μs.Waveform as defined by R.E.A CJ-Junction Capacitance (pf) Measured at Stang-off Voltage T J =25C f=1mhz Vsig=50mV p-p t d t-time (ms) Figure 3-Pulse Waveform V BR Breakdown Voltage Figure 4-Typical Junction Capacitance Rev

5 Steady State Power Dissipation (W) HZ Resistive or Inductive Load IFSM-Peak Forward Surge (A) ms Single Half Sine-Wave T L -Lead Temperature ( ) of Cycles at 60 Hz Figure 5-Steady State Power Derating Curve Figure 6- Non-Repetitive Forward Surge Product dimension (R-6) 0.360(9.1) 0.340(8.6) DIA 1.0(25.4) MIN 0.360(9.1) 0.340(8.6) 0.052(1.32) 0.048(1.22) DIA 1.0(25.4) MIN Dimensions in inches and (millimeters) Rev

6 IMPORTANT NOTICE and are registered trademarks of Prisemi Electronics Co., Ltd (Prisemi),Prisemi reserves the right to make changes without further notice to any products herein. Prisemi makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Prisemi assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages. Typical parameters which may be provided in Prisemi data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including Typicals must be validated for each customer application by customer s technical experts. Prisemi does not convey any license under its patent rights nor the rights of others. The products listed in this document are designed to be used with ordinary electronic equipment or devices, Should you intend to use these products with equipment or devices which require an extremely high level of reliability and the malfunction of with would directly endanger human life (such as medical instruments, aerospace machinery, nuclear-reactor controllers, fuel controllers and other safety devices), please be sure to consult with our sales representative in advance. Website: For additional information, please contact your local Sales Representative. Copyright 2009, Prisemi Electronics is a registered trademark of Prisemi Electronics. All rights are reserved. Rev

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