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ECO-PAC 2 PSHI 100/06* H-Bridge Configuration Preliminary Data Sheet TM IGBT Module IC25 = 69 A VCES = 600 V VCE(sat)typ. = 2.3 V Short Circuit SOA Capability Square RBSOA F10 A1 K10 K13 H13 S18 N9 IGBTs Symbol VCES VGES IC25 IC80 ICM VCEK tSC (SCSOA) Ptot Symbol TC = 25C TC = 80C VGE = 15 V; RG = 22 ; TVJ = 125C RBSOA, Clamped inductive load; L = 100 H VCE = VCES; VGE = 15 V; RG = 22 ; TVJ = 125C non-repetitive TC = 25C Conditions Conditions TVJ = 25C to 150C NTC P18 PSHI 100/06* *NTC optional Features Maximum Ratings 600 20 69 48 100 VCES 10 208 V V A A A s W * * * * * * * * * * * * * * * * * * * Characteristic Values (TVJ = 25C, unless otherwise specified) min. typ. max. 2.3 2.8 4.5 2.8 6.5 0.8 4.4 100 50 55 300 30 1.8 1.4 2.8 1.2 V V V mA mA nA ns ns ns ns mJ mJ nF 0.6 K/W K/W NPT IGBT technology low saturation voltage low switching losses square RBSOA, no latch up high short circuit capability positive temperature coefficient for easy parallelling MOS input, voltage controlled ultra fast free wheeling diodes solderable pins for PCB mounting package with copper base plate Isolation voltage 3000 V UL registered, E 148688 Advantages space and weight savings reduced protection circuits package designed for wave soldering High power density Easy to mount with two screws VCE(sat) VGE(th) ICES IGES td(on) tr td(off) tf Eon Eoff Cies RthJC RthJH IC = 75 A; VGE = 15 V; TVJ = 25C TVJ = 125C IC = 1 mA; VGE = VCE VCE = VCES; VGE = 0 V; TVJ = 25C TVJ = 125C VCE = 0 V; VGE = 20 V Inductive load, TVJ = 125C VCE = 300 V; IC = 40 A VGE = 15/0 V; RG = 22 Typical Applications motor control - DC motor armature winding - DC motor excitation winding - synchronous motor excitation winding supply of transformer primary winding - power supplies - welding - X-ray - UPS - battery charger VCE = 25 V; VGE = 0 V; f = 1 MHz (per IGBT) with heatsink compound (0.42 K/m.K; 50 m) Caution: These Devices are sensitive to electrostatic discharge. Users should observe proper ESD handling precautions. 2002 POWERSEM reserves the right to change limits, test conditions and dimensions POWERSEM GmbH, Walpersdorfer Str. 53 D - 91126 Schwabach Phone: 09122 - 9764 - 0 FAX: 09122 - 9764 - 20 PSHI 100/06 Reverse diodes (FRED) Symbol IF25 IF80 Symbol VF IRM trr RthJC RthJH Conditions TC = 25C TC = 80C Conditions IF = 40 A; TVJ = 25C TVJ = 125C IF = 30 A; diF/dt = 500 A/s; TVJ = 125C VR = 300 V; VGE = 0 V with heatsink compound (0.42 K/m.K; 50 m) Maximum Ratings 56 35 A A Package style and outline Dimensions in mm (1mm = 0.0394") Characteristic Values min. typ. max. 2.32 1.58 15 70 2.6 2.59 V V A ns 1.3 K/W K/W Temperature Sensor NTC Symbol R25 B25/50 Conditions T = 25C Characteristic Values min. typ. max. 455 470 3474 485 k K Module Symbol TVJ Tstg VISOL Md a Symbol dS dA Weight IISOL 1 mA; 50/60 Hz Mounting torque (M4) Max. allowable acceleration Conditions Creepage distance on surface (Pin to heatsink) Strike distance in air (Pin to heatsink) Conditions Maximum Ratings -40...+150 -40...+150 3000 1.5 - 2.0 14 - 18 50 C C V~ Nm lb.in. m/s 2 Characteristic Values min. typ. max. 11.2 11.2 24 mm mm g 2002 POWERSEM reserves the right to change limits, test conditions and dimensions POWERSEM GmbH, Walpersdorfer Str. 53 D - 91126 Schwabach Phone: 09122 - 9764 - 0 FAX: 09122 - 9764 - 20 PSHI 100/06 150 A 120 VGE= 17 V 15 V 13 V 150 A 120 90 11V VGE= 17 V 15 V 13 V IC IC 90 60 30 0 11V TVJ = 125C TVJ = 25C 9V 60 30 0 9V 42T60 42T60 0 1 2 3 4 VCE 5 V 6 0 1 2 3 4 VCE 5V 6 Fig. 1 Typ. output characteristics 150 A 120 IC VCE = 20 V Fig. 2 Typ. output characteristics 90 A 75 IF 60 45 90 60 TVJ = 125C TVJ = 25C TVJ = 125C TVJ = 25C 30 15 42T60 30 0 0 42T60 4 6 8 10 12 VGE 14 V 16 0,0 0,5 1,0 VF 1,5 V 2,0 Fig. 3 Typ. transfer characteristics 50 40 A VCE = 300 V IC = 50 A Fig. 4 Typ. forward characteristics of free wheeling diode 150 120 ns 90 TVJ = 125C VR = 300 V IF = 30 A IRM 20 V 15 VGE IRM trr trr 30 20 10 60 30 42T60 5 10 42T60 0 0 0 40 80 120 QG nC 160 0 200 400 600 -di/dt 800 A/s 1000 0 Fig. 5 Typ. turn on gate charge Fig. 6 Typ. turn off characteristics of free wheeling diode 2002 POWERSEM reserves the right to change limits, test conditions and dimensions POWERSEM GmbH, Walpersdorfer Str. 53 D - 91126 Schwabach Phone: 09122 - 9764 - 0 FAX: 09122 - 9764 - 20 PSHI 100/06 10,0 mJ Eon 100 ns 75 tr VCE = 300 V VGE = 15 V td(on) 4 mJ t Eoff Eoff 400 ns 300 t 7,5 3 5,0 50 2 td(off) VCE = 300 V VGE = 15 V RG = 22 TVJ = 125C 200 2,5 Eon RG = 22 TVJ = 125C 42T60 25 1 100 tf 0,0 0 40 80 IC A 120 0 0 42T60 0 40 80 IC A 0 120 Fig. 7 Typ. turn on energy and switching Fig. 8 Typ. turn off energy and switching times versus collector current times versus collector current 3 mJ 600 ns 4 mJ Eon td(on) Eon tr 80 ns 60 t Eoff 3 VCE = 300 V VGE = 15 V IC = 50 A TVJ = 125C 42T60 2 VCE = 300 V VGE = 15 V IC = 50 A TVJ = 125C Eoff td(off) 400 t 2 40 1 200 1 0 10 20 30 40 RG 50 60 20 0 tf 42T60 0 10 20 30 40 RG 50 60 0 Fig. 9 Typ. turn on energy and switching Fig. 10 Typ. turn off energy and switching times versus gate resistor times versus gate resistor 10 K/W ZthJC 1 diode IGBT 120 A ICM 90 RG = 22 TVJ = 125C 0,1 0,01 60 30 0,001 42T60 single pulse 0 0 100 200 300 400 500 600 VCE 700 V 0,0001 0,00001 0,0001 0,001 VID...75-06P1 0,01 0,1 t 1 s 10 Fig. 11 Reverse biased safe operating area Fig. 12 Typ. transient thermal impedance RBSOA 2002 POWERSEM reserves the right to change limits, test conditions and dimensions POWERSEM GmbH, Walpersdorfer Str. 53 D - 91126 Schwabach Phone: 09122 - 9764 - 0 FAX: 09122 - 9764 - 20 |
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