Free SPICE Model of 1SR154-600 , TC=150degree in SPICE PARK
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Free SPICE Model of 1SR154-600 , TC=150degree in SPICE PARK

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FREE SPICE MODEL of 1SR154-600 , TC=150degree in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.

FREE SPICE MODEL of 1SR154-600 , TC=150degree in SPICE PARK. English Version is http://www.spicepark.net. Japanese Version is http://www.spicepark.com by Bee Technologies.

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Free SPICE Model of 1SR154-600 , TC=150degree in SPICE PARK Free SPICE Model of 1SR154-600 , TC=150degree in SPICE PARK Document Transcript

  • Device Modeling ReportCOMPONENTS:DIODE/ GENERAL PURPOSE RECTIFIER / STANDARDPART NUMBER: 1SR154-600MANUFACTURER: ROHMREMARK: TC=150C Bee Technologies Inc. All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • SPICE MODEL*$* PART NUMBER: 1SR154-600* MANUFACTURER: ROHM* VRM=600,TC=150C,IO=1.0A,IFSM=30A* All Rights Reserved Copyright (C) Bee Technologies Inc.2004.MODEL 1sr154-600_150C D+ IS=264.64E-9+ N=2.0566+ RS=53.312E-3+ IKF=12.184+ ISR=0+ CJO=19.976E-12+ M=.38862+ VJ=.24754+ BV=600+ IBV=10.000E-6+ TT=8.6191E-6*$ All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • PSpice model Model description parameter IS Saturation Current N Emission Coefficient RS Series Resistance IKF High-injection Knee Current CJO Zero-bias Junction Capacitance M Junction Grading Coefficient VJ Junction Potential ISR Recombination Current Saturation Value BV Reverse Breakdown Voltage(a positive value) IBV Reverse Breakdown Current(a positive value) TT Transit Time EG Energy-band Gap All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Forward Current Characteristic Reference All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Forward Current CharacteristicCircuit Simulation ResultEvaluation Circuit R1 0.01m V1 0Vdc D1 1SR154-600-150C 0 All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Comparison GraphCircuit Simulation ResultSimulation Result Vfwd(V) Vfwd(V) Ifwd(A) %Error Measurement Simulation 0.01 0.556 0.561 -0.90 0.02 0.608 0.598 1.64 0.05 0.658 0.649 1.37 0.1 0.694 0.688 0.86 0.2 0.732 0.730 0.27 0.5 0.794 0.796 -0.25 1 0.862 0.861 0.12 All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Capacitance CharacteristicCircuit Simulation ResultEvaluation Circuit V2 0Vdc V2 = 600V V1 V1 = 0 D1 TD = 0 TR = 1us TF = 10ns PW = 5us PER = 10us 1SR154-600_150C 0 All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Comparison GraphCircuit Simulation ResultSimulation Result Cj(pF) Cj(pF) Vrev(V) %Error Measurement Simulation 0 19.928 19.928 0.00 0.5 12.933 13.014 -0.63 1 10.664 10.182 4.52 2 8.453 8.486 -0.39 5 6.015 6.093 -1.30 10 4.655 4.702 -1.01 20 3.699 3.609 2.43 50 2.550 2.534 0.63 100 2.000 1.938 3.10 All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Reverse Recovery CharacteristicCircuit Simulation ResultEvaluation Circuit R1 50 V2 = 10.75V V1 V1 = -9.25V D1 TD = 0 TR = 10ns TF = 10ns PW = 20us PER = 50us 1sr154-600_150C 0Compare Measurement vs. Simulation Measurement Simulation %Error trr 5.60 us 5.60 us 0.00 All Rights Reserved Copyright (C) Bee Technologies Inc. 2004
  • Reverse Recovery Characteristic Reference MeasurementTrj =2.4(us)Trb=3.2(us)Conditions: Ifwd=Irev=0.2(A), Rl=50 Example Relation between trj and trb All Rights Reserved Copyright (C) Bee Technologies Inc. 2004