ChipFind - документация

Электронный компонент: IRG4BC10KD

Скачать:  PDF   ZIP
www.docs.chipfind.ru
background image
Parameter
Max.
Units
V
CES
Collector-to-Emitter Voltage
600
V
I
C
@ T
C
= 25C
Continuous Collector Current
9.0
I
C
@ T
C
= 100C
Continuous Collector Current
5.0
I
CM
Pulsed Collector Current
Q
18
A
I
LM
Clamped Inductive Load Current
R
18
I
F
@ T
C
= 100C
Diode Continuous Forward Current
4.0
I
FM
Diode Maximum Forward Current
16
t
sc
Short Circuit Withstand Time
10
s
V
GE
Gate-to-Emitter Voltage
20
V
P
D
@ T
C
= 25C
Maximum Power Dissipation
38
P
D
@ T
C
= 100C
Maximum Power Dissipation
15
T
J
Operating Junction and
-55 to +150
T
STG
Storage Temperature Range
C
Soldering Temperature, for 10 sec.
300 (0.063 in. (1.6mm) from case)
Mounting Torque, 6-32 or M3 Screw.
10 lbfin (1.1 Nm)
IRG4BC10KD
INSULATED GATE BIPOLAR TRANSISTOR WITH
ULTRAFAST SOFT RECOVERY DIODE
Features
E
G
n-ch an nel
C
V
CES
= 600V
V
CE(on) typ.
= 2.39V
@V
GE
= 15V, I
C
= 5.0A
Short Circuit Rated
UltraFast IGBT
4/24/2000
Benefits
Parameter
Min.
Typ.
Max.
Units
R
JC
Junction-to-Case - IGBT
3.3
R
JC
Junction-to-Case - Diode
7.0
C/W
R
CS
Case-to-Sink, flat, greased surface
0.50
R
JA
Junction-to-Ambient, typical socket mount
80
Wt
Weight
2 (0.07)
g (oz)
Thermal Resistance
Absolute Maximum Ratings
W
TO-220AB
www.irf.com
1
PD -91734B
High short circuit rating optimized for motor control,
t
sc
=10s, @360V V
CE
(start), T
J
= 125C,
V
GE
= 15V
Combines low conduction losses with high
switching speed
Tighter parameter distribution and higher efficiency
than previous generations
IGBT co-packaged with HEXFRED
TM
ultrafast,
ultrasoft recovery antiparallel diodes
Latest generation 4 IGBTs offer highest power density
motor controls possible
HEXFRED
TM
diodes optimized for performance with IGBTs.
Minimized recovery characteristics reduce noise, EMI and
switching losses
background image
IRG4BC10KD
2
www.irf.com
Parameter
Min. Typ. Max. Units
Conditions
Q
g
Total Gate Charge (turn-on)
--
19
29
I
C
= 5.0A
Q
ge
Gate - Emitter Charge (turn-on)
--
2.9
4.3
nC
V
CC
= 400V
See Fig.8
Q
gc
Gate - Collector Charge (turn-on)
--
9.8
15
V
GE
= 15V
t
d(on)
Turn-On Delay Time
--
49
--
t
r
Rise Time
--
28
--
T
J
= 25C
t
d(off)
Turn-Off Delay Time
--
97
150
I
C
= 5.0A, V
CC
= 480V
t
f
Fall Time
--
140
210
V
GE
= 15V, R
G
= 100
E
on
Turn-On Switching Loss
--
0.25
--
Energy losses include "tail"
E
off
Turn-Off Switching Loss
--
0.14
--
mJ
and diode reverse recovery
E
ts
Total Switching Loss
--
0.39 0.48
See Fig. 9,10,14
t
sc
Short Circuit Withstand Time
10
--
--
s
V
CC
= 360V, T
J
= 125C
V
GE
= 15V, R
G
= 100
, V
CPK
< 500V
t
d(on)
Turn-On Delay Time
--
46
--
T
J
= 150C,
See Fig. 10,11,14
t
r
Rise Time
--
32
--
I
C
= 5.0A, V
CC
= 480V
t
d(off)
Turn-Off Delay Time
--
100
--
V
GE
= 15V, R
G
= 100
t
f
Fall Time
--
310
--
Energy losses include "tail"
E
ts
Total Switching Loss
--
0.56
--
mJ
and diode reverse recovery
L
E
Internal Emitter Inductance
--
7.5
--
nH
Measured 5mm from package
C
ies
Input Capacitance
--
220
--
V
GE
= 0V
C
oes
Output Capacitance
--
29
--
pF
V
CC
= 30V
See Fig. 7
C
res
Reverse Transfer Capacitance
--
7.5
--
= 1.0MHz
t
rr
Diode Reverse Recovery Time
--
28
42
ns
T
J
= 25C See Fig.
--
38
57
T
J
= 125C 14 I
F
= 4.0A
I
rr
Diode Peak Reverse Recovery Current
--
2.9
5.2
A
T
J
= 25C See Fig.
--
3.7
6.7
T
J
= 125C 15 V
R
= 200V
Q
rr
Diode Reverse Recovery Charge
--
40
60
nC
T
J
= 25C See Fig.
--
70
105
T
J
= 125C 16 di/dt = 200A/s
di
(rec)M
/dt
Diode Peak Rate of Fall of Recovery
--
280
--
A/s
T
J
= 25C See Fig.
During t
b
--
235
--
T
J
= 125C 17
Parameter
Min. Typ. Max. Units
Conditions
V
(BR)CES
Collector-to-Emitter Breakdown Voltage
600
--
--
V
V
GE
= 0V, I
C
= 250A
V
(BR)CES
/
T
J
Temperature Coeff. of Breakdown Voltage
--
0.58
--
V/C
V
GE
= 0V, I
C
= 1.0mA
V
CE(on)
Collector-to-Emitter Saturation Voltage
--
2.39 2.62
I
C
= 5.0A
V
GE
= 15V
--
3.25
--
V
I
C
= 9.0A
See Fig. 2, 5
--
2.63
--
I
C
= 5.0A, T
J
= 150C
V
GE(th)
Gate Threshold Voltage
3.0
--
6.5
V
CE
= V
GE
, I
C
= 250A
V
GE(th)
/
T
J
Temperature Coeff. of Threshold Voltage
--
-11
--
mV/C V
CE
= V
GE
, I
C
= 250A
g
fe
Forward Transconductance ,,
1.2
1.8
--
S
V
CE
= 50V, I
C
= 5.0A
I
CES
Zero Gate Voltage Collector Current
--
--
250
A
V
GE
= 0V, V
CE
= 600V
--
--
1000
V
GE
= 0V, V
CE
= 600V, T
J
= 150C
V
FM
Diode Forward Voltage Drop
--
1.5
1.8
V
I
C
= 4.0A
See Fig. 13
--
1.4
1.7
I
C
= 4.0A, T
J
= 150C
I
GES
Gate-to-Emitter Leakage Current
--
--
100
nA
V
GE
= 20V
Switching Characteristics @ T
J
= 25C (unless otherwise specified)
Electrical Characteristics @ T
J
= 25C (unless otherwise specified)
ns
ns
background image
IRG4BC10KD
www.irf.com
3
0.1
1
10
100
0.0
1.0
2.0
3.0
4.0
5.0
6.0
f, Frequency (KHz)
LOAD CURRENT (A)
Fig. 1 - Typical Load Current vs. Frequency
(Load Current = I
RMS
of fundamental)
For both:
D uty cy cle : 5 0 %
T = 12 5 C
T = 90 C
G a te d rive a s sp e cifie d
s in k
J
P ow e r Dis sip ation = W
6 0% of rate d
volta ge
I
Id e a l d io d e s
S q u a re w a v e :
9.2
Fig. 2 - Typical Output Characteristics
Fig. 3 - Typical Transfer Characteristics
1
10
100
1.0
2.0
3.0
4.0
5.0
6.0
7.0
V , Collector-to-Emitter Voltage (V)
I , Collector Current (A)
CE
C
V = 15V
20s PULSE WIDTH
GE
T = 25 C
J
T = 150 C
J
1
10
100
5
10
15
20
V , Gate-to-Emitter Voltage (V)
I , Collector-to-Emitter Current (A)
GE
C
V = 50V
5s PULSE WIDTH
CC
T = 25 C
J
T = 150 C
J
background image
IRG4BC10KD
4
www.irf.com
Fig. 6 - Maximum Effective Transient Thermal Impedance, Junction-to-Case
Fig. 5 - Typical Collector-to-Emitter Voltage
vs. Junction Temperature
Fig. 4 - Maximum Collector Current vs. Case
Temperature
-60 -40 -20
0
20
40
60
80 100 120 140 160
1.0
2.0
3.0
4.0
5.0
T , Junction Temperature ( C)
V , Collector-to-Emitter Voltage(V)
J
CE
V = 15V
80 us PULSE WIDTH
GE
I = A
10
C
I = A
5
C
I = A
2.5
C
0.01
0.1
1
10
0.00001
0.0001
0.001
0.01
0.1
1
Notes:
1. Duty factor D = t / t
2. Peak T = P
x Z
+ T
1
2
J
DM
thJC
C
P
t
t
DM
1
2
t , Rectangular Pulse Duration (sec)
Thermal Response (Z )
1
thJC
0.01
0.02
0.05
0.10
0.20
D = 0.50
SINGLE PULSE
(THERMAL RESPONSE)
25
50
75
100
125
150
0
2
4
6
8
10
T , Case Temperature ( C)
Maximum DC Collector Current(A)
C
background image
IRG4BC10KD
www.irf.com
5
-60 -40 -20
0
20
40
60
80 100 120 140 160
0.1
1
10
T , Junction Temperature ( C )
Total Switching Losses (mJ)
J
R = Ohm
V = 15V
V = 480V
G
GE
CC
I = A
10
C
I = A
5
C
I = A
2.5
C
Fig. 7 - Typical Capacitance vs.
Collector-to-Emitter Voltage
Fig. 8 - Typical Gate Charge vs.
Gate-to-Emitter Voltage
Fig. 9 - Typical Switching Losses vs. Gate
Resistance
Fig. 10 - Typical Switching Losses vs.
Junction Temperature
50
0
20
40
60
80
100
0.30
0.32
0.34
0.36
0.38
0.40
R , Gate Resistance
Total Switching Losses (mJ)
G
V = 480V
V = 15V
T = 25 C
I = 5.0A
CC
GE
J
C
(
)
1
10
100
0
100
200
300
400
V , Collector-to-Emitter Voltage (V)
C, Capacitance (pF)
CE
V
C
C
C
=
=
=
=
0V,
C
C
C
f = 1MHz
+ C
+ C
C SHORTED
GE
ies
ge
gc ,
ce
res
gc
oes
ce
gc
Cies
Coes
Cres
0
4
8
12
16
20
0
4
8
12
16
20
Q , Total Gate Charge (nC)
V , Gate-to-Emitter Voltage (V)
G
GE
V
= 400V
I
= 5.0A
CC
C