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 SANKEN ELECTRIC FGM623S
Features Low Saturation Voltage VCE(sat)=1.5V typ. (IC=30A) High Speed SW tf=120ns typ. (IC=30A) Package
TO-3PF
http://www.sanken-ele.co.jp
Jul. 2010
Applications Current Resonance Inverter Switching
Equivalent circuit
C(2)
(1) E(3)
Absolute maximum ratings
(Ta=25C Characteristic Collector to Emitter Voltage Gate to Emitter Voltage Continuous Collector Current Pulsed Collector Current Maximum Collector-emitter dv/dt Maximum Power Dissipation Thermal Resistance IGBT Junction Temperature Storage Temperature 1) PW 100usec. Duty cycle 1% 2) Tc 125 , See Fig.1 Symbol VCES VGES IC IC(pulse) dv/dt PC j-c Tj Tstg
2) )
Rating 600 30 30 100 5 60 (Tc=25C) 2.08 150 55~150
Unit V V A A V/ns W /W C C
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 1
SANKEN ELECTRIC FGM623S
IGBT
Characteristic Symbol Test Conditions
http://www.sanken-ele.co.jp
Jul. 2010
Electrical characteristics
(Ta=25C
Limits MIN. 600 500 100 3 1.5 1.8 2500 150 80 65 20 20 100 80 ns Turn-Off Delay Time Fall Time Turn-On Delay Time Rise Time Turn-Off Delay Time Fall Time td(off) tf td(on) tr td(off) tf L=100uH,Tc=25 See Fig.1 300 120 100 100 ns L=100uH,Tc=125 See Fig.1 300 200 nC pF 6 1.7 TYP. MAX. Unit
Collector to Emitter Breakdown Voltage Gate to Emitter Leakage Current Collector to Emitter Leakage Current Gate Threshold Voltage Collector to Emitter Saturation Voltage Collector to Emitter Saturation Voltage Input Capacitance Output Capacitance Reverse Transfer Capacitance Gate charge Gate to Collector Charge Gate to Emitter Charge Turn-On Delay Time Rise Time
V(BR)CES IGES ICES VGE(th) VCE(sat) VCE(sat) Cies Coes Cres Qgate Qgc Qge td(on) tr
IC=100A,VGE=0V VGE=30V VCE=600V, VGE=0V VCE=10V, IC=1mA VGE=15V, IC=30A VGE=15V, IC=50A VCE=20V VGE=0V f=1MHz
V nA A V V V
VCE=300V IC=30A VGE=15V
VCE=300V,IC=30A VGE=15V,RG=39
VCE=300V,IC=30A VGE=15V,RG=39
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 2
SANKEN ELECTRIC FGM623S
Fig.1 Switching Time Test Method
Clamp Di (FMX-G26S)
http://www.sanken-ele.co.jp
Jul. 2010
IC RG 15 V
L Vcc
Vcc=300V IC=30A VGE=15V RG=39 L=100uH
0V
(a) Test Circuit
90% VGE VCE 10%
dv/dt
90% 10% td(on) tr td(off) tf
90%
IC
10%
(b) Waveforms
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 3
SANKEN ELECTRIC FGM623S
Characteristic Curves
IC - VCE (typical)
100
VGE=20V 15V
http://www.sanken-ele.co.jp
Jul. 2010
Ta=25
IC - VCE (typical)
100
VGE=20V 15V
Ta=125
80
10V
80
10V
IC (A)
40
8V
IC (A)
60
60
8V
40
20
7V
20
7V
0 0 1 2 3 4 5
0 0 1 2
VCE (V)
VCE (V)
3
4
5
VCE(sat) - Tc (typical)
4
VGE=15V
IC - VGE (typical)
100
VCE=5V
3
IC=100A
80
VCE(sat) (V)
60
2
50A
IC (A)
40
Tc=125 25 -55
30A
1
20
0 -50 0 50 100 150
0
Tc ()
0
5
10
15
VGE (V)
VCE - VGE (typical)
5
Tc=25 5
VCE - VGE (typical)
Tc=125
4
4
VCE (V)
VCE (V)
3
IC=100A 50A 30A
3
IC=100A
2
2
50A 30A
1
1
0 1 10 100
0
VGE (V)
1
10 VGE (V)
100
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 4
SANKEN ELECTRIC FGM623S
Capacitance - VCE (typical)
10000 Tc=25 f=1MHz VGE=0V
http://www.sanken-ele.co.jp
Jul. 2010
Characteristic Curves
VCE,VGE - Qg (typical)
40 VCE Tc=25 RL=10
Coes
VCE (x10V) , VGE (V)
Capacitance (pF)
1000
Cies
30
100
Cres
20
VGE
10
10
1 0 10 20
0 30 40 50 0 20 40 60 80
VCE (V)
Qg (nC)
SW Time - IC (typical)
1000 Tc = 25 1000
SW Time - IC (typical)
Tc = 125
td(off)
td(off)
SW Time (ns)
SW Time (ns)
100
tf td(on)
100
tf
td(on) Inductive Load VCE=300V VG=15V Rg=39
tr
Inductive Load VCE=300V VG=15V Rg=39
tr
10 1 10 100
10
IC (A)
1
10
100
IC (A)
SW Time - RG (typical)
1000 Tc = 25
td(off)
SW Time - RG (typical)
Tc = 125 1000
td(off)
SW Time (ns)
tf
100
tr
SW Time (ns)
tf
100
tr
td(on)
Inductive Load VCE=300V VG=15V IC=30A
td(on)
Inductive Load VCE=300V VG=15V IC=30A
10 1 10 100
10 1 10 100
RG ()
RG ()
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 5
SANKEN ELECTRIC FGM623S
Characteristic Curves
Reverse Bias ASO
1000 1000
http://www.sanken-ele.co.jp
Jul. 2010
SAFE OPERATING AREA
100 100
IC(pulse) max 10s
IC (A)
IC (A)
10
100s
10
VGE=15V Rg=39 1shot Tc=125
1
Tc=25 1shot
1 1 10 100 1000
0.1 1 10 100 1000
VCE (V)
VCE (V)
TRANSIENT THERMAL RESISTANCE - PULSE WIDTH
1.E+02
1.E+01
Rth j-c (/W)
1.E+00
1.E-01
1.E-02
Tc = 25 1shot
1.E-03 1.E-06 1.E-05 1.E-04 1.E-03 1.E-02 1.E-01 1.E+00 1.E+01 1.E+02
PT (sec.)
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 6
SANKEN ELECTRIC FGM623S
http://www.sanken-ele.co.jp
Jul. 2010
Outline
TO-3PF
(1) Gate (2) Collctor (3) Emitter
Wight Approx : 6.5g
The information included herein is believed to be accurate and reliable. However, SANKEN ELECTRIC CO., LTD assumes no responsibility for its use ; nor for any infringements of patents or other rights of third parties that may result from its use.
Copy Right: SANKEN ELECTRIC CO.,LTD.
Page 7


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