PG7A10BD NIKOSEM | Alldatasheet

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REV 1.2 L-36-2 N-Channel Enhancement Mode Field Effect Transistor PG7A10BD TO-252 Halogen-Free & Lead-Free NIKO-SEM PRODUCT SUMMARY V(BR)DSS RDS(ON) ID 100V 7.4mΩ 81A ABSOLUTE MAXIMUM RATINGS (TA = 25 °C Unless Otherwise Noted) PARAMETERS/TEST CONDITIONS SYMBOL LIMITS UNITS Drain-Source Voltage VDS 100 V Gate-Source Voltage VGS ±20 V Continuous Drain Current2 TC = 25 °C ID A TC = 100 °C 57 Pulsed Drain Current1 IDM 300 Avalanche Current IAS 13.9 Avalanche Energy L = 1mH EAS 96.6 mJ Power Dissipation TC = 25 °C PD 115 W TC = 100 °C 57 Junction & Storage Temperature Range TJ, Tstg -55 to 175 °C THERMAL RESISTANCE RATINGS THERMAL RESISTANCE SYMBOL TYPICAL MAXIMUM UNITS Junction-to-Case RJC 1.3 °C / W Junction-to-Ambient RJA 62.5 1Pulse width limited by maximum junction temperature. 2Package limitation current is 55A. ELECTRICAL CHARACTERISTICS (TJ = 25 °C, Unless Otherwise Noted) PARAMETER SYMBOL TEST CONDITIONS LIMITS UNIT MIN TYP MAX STATIC Drain-Source Breakdown Voltage V(BR)DSS VGS = 0V, ID = 250A 100 V Gate Threshold Voltage VGS(th) VDS = VGS, ID = 250A 1.4 2 3 Gate-Body Leakage IGSS VDS = 0V, VGS = ±20V ±100 nA Zero Gate Voltage Drain Current IDSS VDS = 100V, VGS = 0V 1 VDS = 100V, VGS=0V, TJ=55 °C 10 1. GATE 2. DRAIN 3. SOURCE G D S

REV 1.2 L-36-2 N-Channel Enhancement Mode Field Effect Transistor PG7A10BD TO-252 Halogen-Free & Lead-Free NIKO-SEM Drain-Source On-State Resistance1 RDS(ON) VGS = 10V, ID = 14A 5.7 7.4 mΩ VGS = 4.5V, ID = 10A 7.6 10.4 Forward Transconductance1 gfs VDS = 5V, ID = 14A 51 S DYNAMIC Input Capacitance Ciss VGS = 0V, VDS = 50V, f = 1MHz 3255 pF Output Capacitance Coss 285 Reverse Transfer Capacitance Crss 14 Gate Resistance Rg VGS = 0V, VDS = 0V, f = 1MHz 1.6 Ω Total Gate Charge2 Qg VDS = 50V, ID = 14A, VGS = 10V nC Gate-Source Charge2 Qgs 10 Gate-Drain Charge2 Qgd 16 Turn-On Delay Time2 td(on) 14 nS Rise Time2 tr VDD = 50V 42 Turn-Off Delay Time2 td(off) ID  14A, VGS = 10V, RGS = 6Ω 55 Fall Time2 tf 72 SOURCE-DRAIN DIODE RATINGS AND CHARACTERISTICS (TJ = 25 °C) Continuous Current3 IS 81 A Forward Voltage1 VSD IF = 14A, VGS = 0V 1.2 V Reverse Recovery Time trr IF = 14A, dlF/dt = 100A / S 37 nS Reverse Recovery Charge Qrr 47 nC 1Pulse test : Pulse Width  300 sec, Duty Cycle  2%. 2Independent of operating temperature. 3Package limitation current is 55A.

REV 1.2 L-36-2 N-Channel Enhancement Mode Field Effect Transistor PG7A10BD TO-252 Halogen-Free & Lead-Free NIKO-SEM Output Characteristics ID, Drain-To-Source Current(A) Transfer Characteristics ID, Drain-To-Source Current(A) VGS, Gate-To-Source Voltage(V) VDS, Drain-To-Source Voltage(V) Normalized Drain to Source ON-Resistance TJ , Junction Temperature(˚C) Capacitance Characteristic C , Capacitance(pF) VDS, Drain-To-Source Voltage(V) On-Resistance VS Temperature On-Resistance VS Gate-To-Source Voltage RDS(ON)ON-Resistance(OHM) VGS, Gate-To-Source Voltage(V) On-Resistance VS Drain Current RDS(ON)ON-Resistance(OHM) ID , Drain-To-Source Current(A) 25℃ 125℃ -20℃ 0 1 2 3 4 5 0 1 2 3 4 5 VGS=10V VGS=9V VGS=8V VGS=7V VGS=6V VGS=5V VGS=4.5V VGS=3.2V VGS=3V VGS=3.1V VGS=3.3V 0.003 0.006 0.009 0.012 0.015 0 6 12 18 24 30 VGS=10V VGS=4.5V 0.006 0.012 0.018 0.024 0.03 2 4 6 8 10 ID=14A CISS COSS CRSS 100 1000 10000 0 20 40 60 80 100 0.0 0.5 1.0 1.5 2.0 2.5 3.0 -50 -25 0 25 50 75 100 125 150 175 VGS=10V ID=14A

REV 1.2 L-36-2 N-Channel Enhancement Mode Field Effect Transistor PG7A10BD TO-252 Halogen-Free & Lead-Free NIKO-SEM Gate charge Characteristics Characteristics Qg , Total Gate Charge(nC) VGS , Gate-To-Source Voltage(V) Source-Drain Diode Forward Voltage VSD, Source-To-Drain Voltage(V) IS , Source Current(A) Safe Operating Area Single Pulse Maximum Power Dissipation ID , Drain Current(A) Power(W) Single Pulse Time(s) VDS, Drain-To-Source Voltage(V) Transient Thermal Response Curve r(t) , Normalized Effective Transient Thermal Resistance T1 , Square Wave Pulse Duration(S) 0 12 24 36 48 60 VDS=50V ID=14A single pulse Duty cycle=0.5 0.2 0.1 0.05 0.02 0.01 0.01 0.1 0.0001 0.001 0.01 0.1 1 10 100 Notes 1.Duty cycle, D= t1 / t2 2.RthJC = 1.3 ℃/W 3.TJ-TC = P*RthJC(t) 4.RthJC(t) = r(t)*RthJC 0.1 100 150℃ 25℃ 400 800 1200 1600 2000 0.001 0.01 0.1 1 10 100 Single Pulse RθJC = 1.3 ˚C/W TC = 25˚C DC 100ms 10ms 1ms 0.1 100 1000 0.1 1 10 100 1000 NOTE : 1.VGS = 10V 2.TC =25˚C 3.RθJC = 1.3 ˚C/W 4.Single Pulse Operation in This Area is Limited by RDS(ON)