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IRGS4062DPBF Datasheet(PDF) 2 Page - International Rectifier

Part # IRGS4062DPBF
Description  INSULATED GATE BIPOLAR TRANSISTOR WITH ULTRAFAST SOFT RECOVERY DIODE
PDF  12 Pages
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Manufacturer  IRF [International Rectifier]
Direct Link  http://www.irf.com
Logo IRF - International Rectifier

IRGS4062DPBF Datasheet(HTML) 2 Page - International Rectifier

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IRGS/SL4062DPbF
2
www.irf.com
Notes:
 VCC = 80% (VCES), VGE = 20V, L = 100µH, RG = 10Ω.
‚ Pulse width limited by max. junction temperature.
ƒ Refer to AN-1086 for guidelines for measuring V
(BR)CES safely.
Electrical Characteristics @ TJ = 25°C (unless otherwise specified)
Parameter
Min.
Typ. Max. Units
Conditions
Ref.Fig
V(BR)CES
Collector-to-Emitter Breakdown Voltage
600
—
—
V
VGE = 0V, IC = 100µA e
CT6
∆V(BR)CES/∆TJ
Temperature Coeff. of Breakdown Voltage
—0.30
—
V/°C VGE = 0V, IC = 1mA (25°C-175°C)
CT6
—
1.60
1.95
IC = 24A, VGE = 15V, TJ = 25°C
5,6,7
VCE(on)
Collector-to-Emitter Saturation Voltage
—
2.03
—
V
IC = 24A, VGE = 15V, TJ = 150°C
9,10,11
—2.04
—
IC = 24A, VGE = 15V, TJ = 175°C
VGE(th)
Gate Threshold Voltage
4.0
—
6.5
V
VCE = VGE, IC = 700µA
9, 10,
∆VGE(th)/∆TJ
Threshold Voltage temp. coefficient
—
-18
—
mV/°C VCE = VGE, IC = 1.0mA (25°C - 175°C)
11, 12
gfe
Forward Transconductance
—
17
—
S
VCE = 50V, IC = 24A, PW = 80µs
ICES
Collector-to-Emitter Leakage Current
—
2.0
25
µA
VGE = 0V, VCE = 600V
—775
—
VGE = 0V, VCE = 600V, TJ = 175°C
VFM
Diode Forward Voltage Drop
—
1.80
2.6
V
IF = 24A
8
—1.28
—
IF = 24A, TJ = 175°C
IGES
Gate-to-Emitter Leakage Current
—
—
±100
nA
VGE = ±20V
Switching Characteristics @ TJ = 25°C (unless otherwise specified)
Parameter
Min.
Typ. Max. Units
Ref.Fig
Qg
Total Gate Charge (turn-on)
—
50
75
IC = 24A
24
Qge
Gate-to-Emitter Charge (turn-on)
—
13
20
nC VGE = 15V
CT1
Qgc
Gate-to-Collector Charge (turn-on)
—
21
31
VCC = 400V
Eon
Turn-On Switching Loss
—
115
201
IC = 24A, VCC = 400V, VGE = 15V
CT4
Eoff
Turn-Off Switching Loss
—
600
700
µJ
RG = 10Ω, L = 200µH, LS = 150nH, TJ = 25°C
Etotal
Total Switching Loss
—
715
901
Energy losses include tail & diode reverse recovery
td(on)
Turn-On delay time
—
41
53
IC = 24A, VCC = 400V, VGE = 15V
CT4
tr
Rise time
—
22
31
ns
RG = 10Ω, L = 200µH, LS = 150nH, TJ = 25°C
td(off)
Turn-Off delay time
—
104
115
tf
Fall time
—
29
41
Eon
Turn-On Switching Loss
—
420
—
IC = 24A, VCC = 400V, VGE=15V
13, 15
Eoff
Turn-Off Switching Loss
—
840
—
µJ
RG=10Ω, L=100µH, LS=150nH, TJ = 175°C eÃ
CT4
Etotal
Total Switching Loss
—
1260
—
Energy losses include tail & diode reverse recovery
WF1, WF2
td(on)
Turn-On delay time
—
40
—
IC = 24A, VCC = 400V, VGE = 15V
14, 16
tr
Rise time
—
24
—
ns
RG = 10Ω, L = 200µH, LS = 150nH
CT4
td(off)
Turn-Off delay time
—
125
—
TJ = 175°C
WF1
tf
Fall time
—
39
—
WF2
Cies
Input Capacitance
—
1490
—
pF
VGE = 0V
23
Coes
Output Capacitance
—
129
—
VCC = 30V
Cres
Reverse Transfer Capacitance
—
45
—
f = 1.0Mhz
TJ = 175°C, IC = 96A
4
RBSOA
Reverse Bias Safe Operating Area
FULL SQUARE
VCC = 480V, Vp =600V
CT2
Rg = 10
Ω, VGE = +15V to 0V
SCSOA
Short Circuit Safe Operating Area
5
—
—
µs
VCC = 400V, Vp =600V
22, CT3
Rg = 10
Ω, VGE = +15V to 0V
WF4
Erec
Reverse Recovery Energy of the Diode
—
621
—
µJ
TJ = 175°C
17, 18, 19
trr
Diode Reverse Recovery Time
—
89
—
ns
VCC = 400V, IF = 24A
20, 21
Irr
Peak Reverse Recovery Current
—
37
—
A
VGE = 15V, Rg = 10Ω, L =200µH, Ls = 150nH
WF3
Conditions



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