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YMIF1200-33

IGBT Module,3300V 1200A,

Brand:
CRRC
Spu:
YMIF1200-33
  • Introduction
Introduction

Features

  • SPT+chip-set for ultra low switching losses
  • Low VCE sat
  • Low driving power
  • AlSiC base plate for high power cycling capability
  • AlN substrate for low thermal resistance

 

Typical application

  • Traction rives
  • DC Chopper
  • Medium voltage inverters/converters
  • Medium voltage UPS system
  • Wind power system

 

Maximum rated values

Parameter

Symbol

Conditions

Min

Max

Unit

Collector-emitter voltage

VCES

VGE=0V,Tvj≥25°C

 

3300

V

DC collector current

IC

TC  =80 °C

 

1200

A

Peak collector current

ICM

tp =1ms,Tc=80°C

 

2400

A

Gate emitter voltage

VGE

 

-20

20

V

Total power dissipation

Ptot

TC =25°C, per switch(IGBT)

 

10500

W

DC forward current

IF

 

 

1200

A

Peak forward current

IFRM

tp  = 1 ms

 

2400

A

Surge current

IFSM

VR = 0 V, Tvj  = 125 °C,

tp  = 10 ms, half-sinewave

 

9000

A

IGBT short circuit SOA

tpsc

VCC = 2500 V, VCEM CHIP  ≤ 3300V VGE ≤ 15 V, Tvj ≤ 125 °C

 

10

µs

Isolation voltage

Visol

1 min, f = 50 Hz

 

10200

V

Junction temperature

Tvj

 

 

150

°C

Junction operating temperature

Tvj(op)

 

-50

125

°C

Case temperature

TC

 

-50

125

°C

Storage temperature

Tstg

 

-50

125

°C

 

Mounting torques

M s

Base-heatsink, M6 screws

4

6

 

Nm

Mt1

Main terminals, M8 screws ,

8

10

Mt2

Auxiliary terminals, M6 screws

2

3

 

IGBT characteristic

Parameter

Symbol

Conditions

min

typ

max

Unit

Collector (- emitter) breakdown voltage

V(BR)CES

VGE = 0 V, IC= 12 mA, Tvj = 25 °C

 

3300

 

 

 

V

Collector emitter  saturation voltage

 

VCE sat

 

C = 1200  A, VGE= 15 V

Tvj=25°C

 

3.1

3.4

V

Tvj=125°C

 

3.8

4.3

V

Collector cut off current

ICES

 

VCE = 3300 V, VGE = 0 V

Tvj=25°C

 

 

12

mA

Tvj=125°C

 

 

120

mA

Gate leakage current

IGES

 

VCE = 0 V, VGE  = ± 20 V, Tvj  =125 °C

-500

 

500

 

nA

Gate-emitter threshold voltage

VGE(th)

IC =240mA,VCE =VGE,Tvj =25°C

5.5

 

7.5

V

Gate charge

Qg

IC =1200 A    VCE =1800V    VGE = -15V ..15  V

 

12.1

 

µC

Input capacitance

Cies

 

VCE = 25 V, V GE  = 0 V, f = 1 MHz, Tvj = 25 °C

 

187

 

nF

Output capacitance

Coes

 

11.57

 

nF

Reverse transfer capacitance

Cres

 

2.22

 

nF

Turn-on delay time

 

td(on)

 

 

 

 

 

VCC  = 1800 V, IC   = 1200A,

RG  = 3.9Ω ,VGE  =±15V

L σ = 280nH, inductive load

Tvj=25°C

 

750

 

ns

Tvj=125°C

 

750

 

ns

Rise time

tr

Tvj=25°C

 

400

 

ns

Tvj=125°C

 

470

 

ns

Turn-off delay time

td(off)

Tvj=25°C

 

1600

 

ns

Tvj=125°C

 

1800

 

ns

Fall time

tf

Tvj=25°C

 

1100

 

ns

Tvj=125°C

 

1200

 

ns

Turn -on switching  loss

 

Eon

Tvj=25°C

 

1400

 

mJ

Tvj=125°C

 

1800

 

mJ

Turn-off switching loss energy

 

Eoff

Tvj=25°C

 

1300

 

mJ

Tvj=125°C

 

1700

 

mJ

Short circuit current

 

ISC

VCC  = 2500 V, VGE  = 15V, L σ = 280nH, inductive load

 

 

5000

 

 

A

 

Diode characteristic

Parameter

Symbol

Conditions

min

typ

max

Unit

Forward voltage

 

VF

IF  = 1200 A

Tvj = 25 °C

 

2.3

2.6

V

Tvj = 125 °C

 

2.35

2.6

V

Reverse recovery current

 

Irr

 

 

 

VCC= 1800 V, IC= 1200 A,

RG=2.3Ω ,VGE=±15V, L σ = 280nH,inductive load

Tvj = 25 °C

 

900

 

A

Tvj = 125 °C

 

1000

 

A

Recovered charge

 

Qrr

Tvj = 25 °C

 

700

 

µC

Tvj = 125 °C

 

1000

 

µC

Reverse recovery time

 

trr

Tvj = 25 °C

 

850

 

ns

Tvj = 125 °C

 

2200

 

ns

Reverse recovery energy

 

Erec

Tvj = 25 °C

 

850

 

mJ

Tvj = 125 °C

 

1300

 

mJ

 

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