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Document overview

  • PDF pages: 6

Technical content

Features

  • High Speed Smooth Switching Device for Hard and Soft Switching
  • Vce(sat) with Positive Temperature Coefficient
  • High Ruggedness, Good Thermal Stability
  • Very Tight Parameter Distribution
  • Halogen Free. “Green” Device (Note 1)
  • Epoxy Meets UL 94 V-0 Flammability Rating
  • Lead Free Finish/RoHS Compliant ("P" Suffix Designates RoHS Compliant. See Ordering Information) Internal Structure 1(G) 2(C) 3(E) Transient Gate‐Emitter Voltage(4) ±30 TO-247AB MIN MAX MIN MAX A 0.189 0.205 4.80 5.20 A1 0.087 0.103 2.21 2.61 A2 0.073 0.085 1.85 2.15 b 0.039 0.055 1.00 1.40 b2 0.075 0.087 1.91 2.21 C 0.020 0.028 0.50 0.70 D 0.815 0.839 20.70 21.30 D1 0.640 0.663 16.25 16.85 E 0.610 0.634 15.50 16.10 E1 0.512 0.535 13.00 13.60 E2 0.189 0.205 4.80 5.20 E3 0.091 0.106 2.30 2.70 L 0.772 0.796 19.62 20.22 L1 - 0.169 - 4.30 P 0.134 0.150 3.40 3.80 Φ P1 0.287 - 7.30 Φ S TYP H1 TYP b3 0.110 0.126 2.80 3.20 MM NOTE 6.15 5.44 0.242 0.214 DIMENSIONS DIM INCHES S E L A C PP1 b b3 D

MCCSEMI.COMRev.3-2-04282022 2/6 Electrical Characteristics @ 25° C (Unless Otherwise Specified) Symbol Test Conditions Min Typ Max Unit V(BR)CES VGE=0V, IC=250μA 650 V VGE=15V, IC=30A, TJ=25℃ 1.95 2.4 VVGE=15V, IC=30A, TJ=125℃ 2.3 VGE=15V, IC=30A, TJ=150℃ 2.4 VGE(th) IC=0.5mA, VCE=VGE 4.5 5.0 5.5 V VCE=650V, VGE=0V 0.25 IGES VCE=0V, VGE=±20V 100 nA Cies 1.6 Cres 0.09 Qg VCC=300V,IC=30A,VGE=15V 0.15 uC td(on) 37 tr 67 td(off) 113 tf 16 Eon 0.87 Eoff 0.26 td(on) 40 tr 69 td(off) 155 tf 18 Eon 1.22 Eoff 0.38 td(on) 41 tr 70 td(off) 165 tf 20 Eon 1.35 Eoff 0.45 mA G‐E Leakage Current Turn-On Delay Time VCC=300V, IC=30A, VGE=-15/15V, RG=33Ω,LS=60nH, TJ=150℃ ns Rise Time Turn-Off Delay Time Fall Time Turn‐On Energy mJ Turn‐Off Energy Turn-On Delay Time VCC=300V, IC=30A, VGE=-15/15V, RG=33Ω,LS=60nH, TJ=125℃ ns Rise Time Turn-Off Delay Time Fall Time Turn‐On Energy mJ Turn‐Off Energy IGBT Switching Characteristics Turn-On Delay Time VCC=300V, IC=30A,VGE=-15/15V, RG=33Ω,LS=60nH, TJ=25℃ ns Rise Time Turn-Off Delay Time Fall Time Turn‐On Energy mJ Turn‐Off Energy Gate Charge Dynamic Characteristics Parameter Input Capacitance VCE=25V,VGE=0V,f=1MHz nF Reverse Transfer Capacitance Static Characteristics Collector‐Emitter Breakdown Voltage Collector‐Emitter Saturation Voltage VCE(sat) G‐E Threshold Voltage C‐E Leakage Current ICES MIW30N65FA

MCCSEMI.COMRev.3-2-04282022 3/6 Electrical Characteristics @ 25° C (Unless Otherwise Specified) Symbol Test Conditions Min Typ Max Unit VGE=0V, IF=30A, TJ=25℃ 1.9 2.4 VGE=0V, IF=30A, TJ=125℃ 1.95 VGE=0V, IF=30A, TJ=150℃ 1.95 Irr 6 A Qrr 0.1 uC Erec 0.06 mJ Irr 10 A Qrr 0.22 uC Erec 0.13 mJ Irr 12 A Qrr 0.26 uC Erec 0.17 mJ Reverse Recovery Current VR=300V, IF=30A, diF/dt=-300A/μs, TJ=150℃Reverse Recovery Charge Reverse Recovery Energy V Reverse Recovery Current VR=300V, IF=30A, diF/dt=-300A/μs, TJ=25℃ Reverse Recovery Energy Reverse Recovery Current VR=300V, IF=30A, diF/dt=-300A/μs, TJ=125℃ Reverse Recovery Energy Parameter Diode Characteristics Reverse Recovery Charge Reverse Recovery Charge Diode Forward Voltage VF MIW30N65FA

MCCSEMI.COMRev.3-2-04282022 4/6 0 4 VGE=15V TJ=125°C Collector Current (A) 123 Collector-Emitter Saturation Voltage(V) Fig. 1 - VCE(sat) —IC TJ=25°C 6 7 11 12 TJ=125°CTJ=25°C VCE= 20V Collector Current (A) 8 9 10 Gate-Emitter Saturation Voltage(V) Fig. 2 - IGBT Transfer Characteristics 0 0 1 2 03 0 0 4 0 5 60 0.0 0.5 1.0 1.5 2.0 2.5 3.0 Eoff Eon Switching Energy Losses(mJ) Collector Current (A) Fig.3 - Switching Energy Losses —IC Inductive load,TJ=125°C, VCE=300V, VGE=15V, RG=33Ω 0 30 120 150 0.0 0.5 1.0 1.5 2.0 2.5 3.0Switching Energy Losses(mJ) 60 90 Gate Resistance (Ω) Fig.4 - Switching Energy Losses —RG Inductive load,TJ=125°C, VCE=300V, VGE=15V, IC=30A 0 100 200 300 400 500 600 700 RG=33ohm TJ=125°C VGE=15V Collector Current (A) Collector-Emitter Voltage(V) Fig.5 - RBSOA TJ=125°C Forward Current (A) Forward Voltage(V) Fig. 6 - Forward Voltage TJ=25°C

MCCSEMI.COMRev.3-2-04282022 5/6 0 0 1 2 03 0 0 4 0 5 60 0.0 0.1 0.2 0.3 0.4Switching Energy Losses(mJ) Forward Current (A) Fig.7 - Switching Energy Losses —IF Inductive load,TJ=125°C, VCE=300V, VGE=15V, RG=33Ω 0 30 120 150 0.0 0.1 0.2 0.3 0.4Switching Energy Losses(mJ) 60 90 Gate Resistance (Ω) Fig.8 - Switching Energy Losses —RG Inductive load,TJ=125°C, VCE=300V, VGE=15V, IC=30A 1E-3 0.01 1 10 0.1 10Transient Thermal Resistance 0.1 Pulse Width (s) Fig. 9 - Diode Transient Thermal Impedance RθJC=1.4°C/W 1E-3 0.01 1 10 0.1 10Transient Thermal Resistance 0.1 Pulse Width (s) Fig.10 - IGBT Transient Thermal Impedance RθJC=0.8°C/W

MCCSEMI.COM Rev.3-2-04282022

Ordering Information

Part Number-BP Tube: 30pcs/Tube, 1800pcs/Ctn Micro Commercial Components Corp. reserves the right to make changes without further notice to any product herein to make corrections, modifications , enhancements , improvements , or other changes . Micro Commercial Components Corp . does not assume any liability arising out of the application or use of any product described herein; neither does it convey any license under its patent rights ,nor the rights of others . The user of products in such applications shall assume all risks of such use and will agree to hold Micro Commercial Components Corp . and all the companies whose products are represented on our website, harmless against all damages. Micro Commercial Components Corp. products are sold subject to the general terms and conditions of commercial sale, as published at https://www.mccsemi.com/Home/TermsAndConditions. MCC's products are not authorized for use as critical components in life support devices or systems without the express written approval of Micro Commercial Components Corporation. Counterfeiting of semiconductor parts is a growing problem in the industry. Micro Commercial Components (MCC) is taking strong measures to protect ourselves and our customers from the proliferation of counterfeit parts. MCC strongly encourages customers to purchase MCC parts either directly from MCC or from Authorized MCC Distributors who are listed by country on our web page cited below. Products customers buy either from MCC directly or from Authorized MCC Distributors are genuine parts, have full traceability, meet MCC's quality standards for handling and storage. MCC will not provide any warranty coverage or other assistance for parts bought from Unauthorized Sources. MCC is committed to combat this global problem and encourage our customers to do their part in stopping this practice by buying direct or from authorized distributors. MIW30N65FA