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GD400SGY120C2S

IGBT Module,1200V 450A

Brand:
STARPOWER
Spu:
GD400SGY120C2S
  • Introduction
Introduction

Features

  • Low VCE(sat) Trench IGBT technology
  • 10μs short circuit capability
  • VCE(sat) with positive temperature coefficient
  • Maximum junction temperature 175oC
  • Low inductance case
  • Fast & soft reverse recovery anti-parallel FWD
  • Isolated copper baseplate using DBC technology

Typical Applications

  • Inverter for motor drive
  • AC and DC servo drive amplifier
  • Uninterruptible power supply

Absolute Maximum Ratings TC=25oC unless otherwise noted

 

IGBT

 

Symbol

Description

Value

Unit

VCES

Collector-Emitter Voltage

1200

V

VGES

Gate-Emitter Voltage

±20

V

IC

Collector Current  @ TC=25oC

@ TC= 100oC

630

400

A

ICM

Pulsed Collector Current  tp=1ms

800

A

PD

Maximum Power Dissipation  @ Tj=175oC

2083

W

Diode

 

Symbol

Description

Value

Unit

VRRM

Repetitive Peak Reverse Voltage

1200

V

IF

Diode Continuous Forward Current

400

A

IFM

Diode Maximum Forward Current  tp=1ms

800

A

Module

 

Symbol

Description

Value

Unit

Tjmax

Maximum Junction Temperature

175

oC

Tjop

Operating Junction Temperature

-40 to +150

oC

TSTG

Storage Temperature Range

-40 to +125

oC

VISO

Isolation Voltage  RMS,f=50Hz,t=1min

4000

V

IGBT Characteristics TC=25oC unless otherwise noted

 

Symbol

Parameter

Test Conditions

Min.

Typ.

Max.

Unit

 

 

VCE(sat)

 

 

Collector to Emitter

Saturation Voltage

IC=400A,VGE=15V, Tj=25oC

 

1.70

2.15

 

 

V

IC=400A,VGE=15V, Tj=125oC

 

1.95

 

IC=400A,VGE=15V, Tj=150oC

 

2.00

 

VGE(th)

Gate-Emitter Threshold Voltage

IC= 10.0mA,VCE=VGE, Tj=25oC

5.2

6.0

6.8

V

ICES

Collector Cut-Off

Current

VCE=VCES,VGE=0V,

Tj=25oC

 

 

5.0

mA

IGES

Gate-Emitter Leakage Current

VGE=VGES,VCE=0V,

Tj=25oC

 

 

400

nA

RGint

Internal Gate Resistance

 

 

1.9

 

Ω

Cies

Input Capacitance

VCE=25V,f=1MHz,

VGE=0V

 

41.4

 

nF

Cres

Reverse Transfer

Capacitance

 

1.16

 

nF

QG

Gate Charge

VGE=- 15V…+15V

 

3.11

 

μC

td(on)

Turn-On Delay Time

 

 

VCC=600V,IC=400A,  RG=2.0Ω,

VGE=±15V, Tj=25oC

 

257

 

ns

tr

Rise Time

 

96

 

ns

td(off)

Turn-Off Delay Time

 

628

 

ns

tf

Fall Time

 

103

 

ns

Eon

Turn-On Switching

Loss

 

23.5

 

mJ

Eoff

Turn-Off Switching

Loss

 

34.0

 

mJ

td(on)

Turn-On Delay Time

 

 

VCC=600V,IC=400A,  RG=2.0Ω,

VGE=±15V, Tj= 125oC

 

268

 

ns

tr

Rise Time

 

107

 

ns

td(off)

Turn-Off Delay Time

 

659

 

ns

tf

Fall Time

 

144

 

ns

Eon

Turn-On Switching

Loss

 

35.3

 

mJ

Eoff

Turn-Off Switching

Loss

 

51.5

 

mJ

td(on)

Turn-On Delay Time

 

 

VCC=600V,IC=400A,  RG=2.0Ω,

VGE=±15V, Tj= 150oC

 

278

 

ns

tr

Rise Time

 

118

 

ns

td(off)

Turn-Off Delay Time

 

680

 

ns

tf

Fall Time

 

155

 

ns

Eon

Turn-On Switching

Loss

 

38.5

 

mJ

Eoff

Turn-Off Switching

Loss

 

56.7

 

mJ

 

ISC

 

SC Data

tP≤10μs,VGE=15V,

Tj=150oC,VCC=900V, VCEM≤1200V

 

 

1600

 

 

A

Diode Characteristics TC=25oC unless otherwise noted

 

Symbol

Parameter

Test Conditions

Min.

Typ.

Max.

Unit

 

VF

Diode Forward

Voltage

IF=400A,VGE=0V,Tj=25oC

 

1.80

2.25

 

V

IF=400A,VGE=0V,Tj= 125oC

 

1.85

 

IF=400A,VGE=0V,Tj= 150oC

 

1.85

 

Qr

Recovered Charge

VR=600V,IF=400A,

-di/dt=5000A/μs,VGE=- 15V Tj=25oC

 

38.0

 

μC

IRM

Peak Reverse

Recovery Current

 

285

 

A

Erec

Reverse Recovery Energy

 

19

 

mJ

Qr

Recovered Charge

VR=600V,IF=400A,

-di/dt=5000A/μs,VGE=- 15V Tj= 125oC

 

66.5

 

μC

IRM

Peak Reverse

Recovery Current

 

380

 

A

Erec

Reverse Recovery Energy

 

36.6

 

mJ

Qr

Recovered Charge

VR=600V,IF=400A,

-di/dt=5000A/μs,VGE=- 15V Tj= 150oC

 

76.0

 

μC

IRM

Peak Reverse

Recovery Current

 

399

 

A

Erec

Reverse Recovery Energy

 

41.8

 

mJ

 

Module Characteristics TC=25oC unless otherwise noted

 

Symbol

Parameter

Min.

Typ.

Max.

Unit

LCE

Stray Inductance

 

 

20

nH

RCC’+EE

Module Lead Resistance, Terminal to Chip

 

0.18

 

RthJC

Junction-to-Case (per IGBT)

Junction-to-Case (per Diode)

 

 

0.072

0.095

K/W

 

RthCH

Case-to-Heatsink (per IGBT)

Case-to-Heatsink (per Diode)

Case-to-Heatsink (per Module)

 

0.018

0.023

0.010

 

 

K/W

M

Terminal Connection Torque, Screw M6 Mounting Torque, Screw M6

2.5

3.0

 

5.0

5.0

N.m

G

Weight of Module

 

300

 

g

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