參數(shù)資料
型號(hào): APT50GN60B
廠商: Advanced Power Technology Ltd.
英文描述: IGBT
中文描述: IGBT的
文件頁數(shù): 2/6頁
文件大小: 302K
代理商: APT50GN60B
0
APT50GN60B(G)
1
Repetitive Rating: Pulse width limited by maximum junction temperature.
2
For Combi devices, I
ces
includes both IGBT and FRED leakages
3
See MIL-STD-750 Method 3471.
4
E
is the clamped inductive turn-on energy of the IGBT only, without the effect of a commutating diode reverse recovery current
adding to the IGBT turn-on loss. Tested in inductive switching test circuit shown in figure 21, but with a Silicon Carbide diode.
5
E
is the clamped inductive turn-on energy that includes a commutating diode reverse recovery current in the IGBT turn-on switching
loss. (See Figures 21, 22.)
6
E
off
is the clamped inductive turn-off energy measured in accordance with JEDEC standard JESD24-1. (See Figures 21, 23.)
7 R
G
is external gate resistance, not including R
G(int)
nor gate driver impedance. (MIC4452)
8 Continuous current limited by package lead temperature.
APT Reserves the right to change, without notice, the specifications and information contained herein.
THERMAL AND MECHANICAL CHARACTERISTICS
UNIT
°C/W
gm
MIN
TYP
MAX
.41
N/A
5.9
Characteristic
Junction to Case
(IGBT)
Junction to Case
(DIODE)
Package Weight
Symbol
R
θ
JC
R
θ
JC
W
T
DYNAMIC CHARACTERISTICS
Symbol
C
ies
C
oes
C
res
V
GEP
Q
g
Q
ge
Q
gc
SSOA
SCSOA
t
d(on)
t
r
t
d(off)
t
f
E
on1
E
on2
E
off
t
d(on)
t
r
t
d(off)
t
f
E
on1
E
on2
E
off
Test Conditions
Capacitance
V
GE
= 0V, V
CE
= 25V
f = 1 MHz
Gate Charge
V
GE
= 15V
V
CE
= 300V
I
C
= 50A
T
J
= 175°C, R
G
= 4.3
7
,
V
GE
=
15V, L = 100μH,V
CE
= 600V
V
CC
= 360V, V
GE
= 15V,
T
J
= 150°C, R
G
= 4.3
7
Inductive Switching (25°C)
V
CC
= 400V
V
GE
= 15V
I
C
= 50A
R
G
= 4.3
7
T
J
= +25°C
Inductive Switching (125°C)
V
CC
= 400V
V
GE
= 15V
I
C
= 50A
R
G
= 4.3
7
T
J
= +125°C
Characteristic
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
Gate-to-Emitter Plateau Voltage
Total Gate Charge
3
Gate-Emitter Charge
Gate-Collector ("Miller") Charge
Switching Safe Operating Area
Short Circuit Safe Operating Area
Turn-on Delay Time
Current Rise Time
Turn-off Delay Time
Current Fall Time
Turn-on Switching Energy
4
Turn-on Switching Energy (Diode)
5
Turn-off Switching Energy
6
Turn-on Delay Time
Current Rise Time
Turn-off Delay Time
Current Fall Time
Turn-on Switching Energy
4
4
Turn-on Switching Energy (Diode)
5
5
Turn-off Switching Energy
6
6
MIN
TYP
MAX
3200
125
100
9.0
325
25
175
150
6
20
25
230
100
1185
1275
1565
20
25
260
140
1205
1850
2125
UNIT
pF
V
nC
A
μ
s
ns
μ
J
ns
μ
J
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