STGD7NB60K [STMICROELECTRONICS]
N-CHANNEL 7A - 600V - TO-220/FP/DPAK/D2PAK PowerMESH⑩ IGBT; N沟道7A - 600V - TO- 220 / FP / DPAK / D2PAK PowerMESH⑩ IGBT型号: | STGD7NB60K |
厂家: | ST |
描述: | N-CHANNEL 7A - 600V - TO-220/FP/DPAK/D2PAK PowerMESH⑩ IGBT |
文件: | 总14页 (文件大小:712K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
STGP7NB60K-STGP7NB60KFP-STGD7NB60K
STGP7NB60KD-STGP7NB60KDFP-STGB7NB60KD
N-CHANNEL 7A - 600V - TO-220/FP/DPAK/D2PAK
PowerMESH™ IGBT
TYPE
V
I
C
CE(sat)
V
CES
(Typ) @125°C @125°C
STGP7NB60K
STGD7NB60K
STGP7NB60KFP
STGP7NB60KD
STGP7NB60KDFP 600 V
STGB7NB60KD 600 V
600 V
600 V
600 V
600 V
< 2 V
< 2 V
< 2 V
< 2 V
< 2 V
< 2 V
7 A
7 A
7 A
7 A
7 A
7 A
3
3
2
2
1
1
TO-220FP
TO-220
■
■
■
■
■
■
■
HIGH INPUT IMPEDANCE (VOLTAGE DRIVEN)
LOW ON-VOLTAGE DROP (V
LOW GATE CHARGE
)
cesat
3
3
HIGH CURRENT CAPABILITY
OFF LOSSES INCLUDE TAIL CURRENT
FREQUENCY OPERATION
1
1
2
DPAK
D PAK
SHORT CIRCUIT RATED
INTERNAL SCHEMATIC DIAGRAM
DESCRIPTION
Using the latest high voltage technology based on a
patented strip layout, STMicroelectronics has de-
signed an advanced family of IGBTs, the Power-
™
MESH IGBTs, with outstanding performances.
The suffix “K” identifies a family optimized for high
frequency motor control applications with short cir-
cuit withstand capability.
Std. Version
“D” Version
APPLICATIONS
■
HIGH FREQUENCY MOTOR CONTROLS
SMPS AND PFC IN BOTH HARD SWITCHING
AND RESONANT TOPOLOGIES
■
ORDERING INFORMATION
SALES TYPE
MARKING
GP7NB60K
PACKAGE
PACKAGING
TUBE
STGP7NB60K
STGD7NB60KT4
STGP7NB60KFP
STGP7NB60KD
STGP7NB60KDFP
STGB7NB60KDT4
TO-220
DPAK
GD7NB60K
TAPE & REEL
TUBE
GP7NB60KFP
GP7NB60KD
GP7NB60KDFP
GB7NB60KD
TO-220FP
TO-220
TUBE
TO-220FP
TUBE
2
TAPE & REEL
D PAK
June 2002
1/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
ABSOLUTE MAXIMUM RATINGS
Symbol
Parameter
Value
Unit
TO-220
TO-220FP
DPAK
2
D PAK
V
Collector-Emitter Voltage (V = 0)
600
20
V
V
CES
GS
V
Emitter-Collector Voltage
Gate-Emitter Voltage
ECR
V
±20
14
V
GE
I
Collector Current (continuous) at T = 25°C
14
7
14
7
A
C
C
I
C
Collector Current (continuous) at T = 125°C
7
A
C
I
( )
Collector Current (pulsed)
Forward Current
50
50
50
A
CM
I (1)
7
A
f
I
(1)
Forward Current Pulsed
56
A
fm
P
Total Dissipation at T = 25°C
95
0.64
--
30
90
0.64
--
W
W/°C
V
TOT
C
Derating Factor
0.28
2500
V
Insulation Withstand Voltage A.C.
Storage Temperature
ISO
T
stg
– 55 to 150
150
°C
T
Max. Operating Junction Temperature
j
(
) Pulse width limited by safe operating area
(1) For “D” version only
THERMAL DATA
TO-220
TO-220FP
DPAK
2
D PAK
Rthj-case
Rthj-amb
Rthc-h
Thermal Resistance Junction-case Max
1.32
4.17
1.4
°C/W
°C/W
°C/W
Thermal Resistance Junction-ambient Max
Thermal Resistance Case-heatsink Typ
62.5
100
0.5
ELECTRICAL CHARACTERISTICS (TCASE = 25 °C UNLESS OTHERWISE SPECIFIED)
MAIN PARAMETERS
Symbol
Parameter
Test Conditions
= 250 µA, V = 0
Min.
Typ.
Max.
Unit
V
Collector-Emitter Breakdown
Voltage
I
C
600
V
BR(CES)
GE
I
Collector cut-off
(V = 0)
GE
V
V
= Max Rating, T = 25 °C
50
500
µA
µA
CES
GES
CE
C
= Max Rating, T = 125 °C
CE
C
I
Gate-Emitter Leakage
V
GE
= ±20V , V = 0
±100
nA
CE
Current (V = 0)
CE
V
GE(th)
V
CE
= V , I = 250µA
Gate Threshold Voltage
5
7
V
GE
C
V
Collector-Emitter Saturation
Voltage
V
V
= 15V, I = 7 A
2.8
V
V
2.3
1.9
CE(sat)
GE
C
= 15V, I = 7 A, Tc =100°C
GE
C
2/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
SWITCHING PARAMETERS
Symbol
Parameter
Test Conditions
Min.
Typ.
Max.
Unit
g
fs
V
CE
= 25V, Ic = 7 A
Forward Transconductance
TBD
S
C
Input Capacitance
Output Capacitance
Reverse Transfer
Capacitance
V
CE
= 25V, f = 1 MHz, V = 0
495
77
13
pF
pF
pF
ies
GE
C
oes
C
res
Q
V
V
= 480V, I = 7 A,
= 15V
32.7
5.9
18.3
45
nC
nC
nC
Total Gate Charge
Gate-Emitter Charge
Gate-Collector Charge
g
CE
C
Q
ge
Q
gc
GE
tscw
Short Circuit Withstand Time
V
ce
= 0.5 V
, V =15V,
10
µs
BR(CES)
GE
Tc = 125°C , R = 10 Ω
G
t
Turn-on Delay Time
Rise Time
V
R
= 480 V, I = 7 A
15
6
ns
ns
d(on)
CC
C
t
r
= 10Ω, V = 15 V
G
GE
V
= 480 V, I = 7 A R =10Ω
= 15 V,Tc = 125°C
(di/dt)
Eon
Turn-on Current Slope
Turn-on Switching Losses
980
94
A/µs
µJ
CC
C
G
on
V
V
GE
t
Cross-over Time
Off Voltage Rise Time
Delay Time
Fall Time
Turn-off Switching Loss
= 480 V, I = 7 A,
85
20
75
100
85
235
ns
ns
ns
ns
µJ
c
cc
C
t (V
)
R
= 10 Ω , V = 15 V
GE GE
r
off
t (
)
Tc = 25 °C
d off
t
f
E
off
(**)
Total Switching Loss
µJ
E
ts
t
Cross-over Time
Off Voltage Rise Time
Delay Time
Fall Time
Turn-off Switching Loss
Total Switching Loss
V
R
= 480 V, I = 7 A,
ns
ns
ns
ns
µJ
c
cc
C
150
50
110
150
220
314
t (V
)
)
= 10 Ω , V = 15 V
r
off
GE
GE
t (
Tc = 125 °C
d off
t
f
E
(**)
off
E
µJ
ts
COLLECTOR-EMITTER DIODE (“D” VERSION)
Symbol
Parameter
Test Conditions
Min.
Typ.
Max.
Unit
V
Forward On-Voltage
I = 3.5 A
I = 3.5 A, Tc = 125 °C
f
1.9
1.4
1.15
V
V
f
f
t
Q
I = 7 A ,V = 35 V,
f R
Tc=125°C, di/dt = 100A/µs
rr
Reverse Recovery Time
Reverse Recovery Charge
Reverse Recovery Current
50
70
2.7
ns
nC
A
rr
I
rrm
Note: 1. Pulsed: Pulse duration = 300 µs, duty cycle 1.5 %.
2. Pulse width limited by max. junction temperature.
(**)Losses include Also the Tail (Jedec Standardization)
3/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
Transfer Characteristics
Output Characteristics
Transconductance
Gate Threshold vs Temperature
Collector-Emitter On Voltage vs Collector Current
4/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
Capacitance Variations
Normalized Breakdown Voltage vs Temperature
Total Switching Losses vs Gate Resistance
Gate Charge vs Gate-Emitter Voltage
Total Switching Losses vs Collector Current
Total Switching Losses vs Temperature
5/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
2
Thermal Impedance for DPAK
Thermal Impedance for TO-220/D PAK
Thermal Impedance for TO-220FP
Turn-Off SOA
6/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
Fig. 1: Gate Charge test Circuit Fig. 2: Test Circuit For Inductive Load Switching
7/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
TO-220 MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
4.40
1.23
2.40
TYP.
MAX.
4.60
1.32
2.72
MIN.
0.173
0.048
0.094
MAX.
0.181
0.051
0.107
A
C
D
D1
E
1.27
0.050
0.49
0.61
1.14
1.14
4.95
2.4
0.70
0.88
1.70
1.70
5.15
2.7
0.019
0.024
0.044
0.044
0.194
0.094
0.393
0.027
0.034
0.067
0.067
0.203
0.106
0.409
F
F1
F2
G
G1
H2
L2
L4
L5
L6
L7
L9
DIA.
10.0
10.40
16.4
0.645
13.0
2.65
15.25
6.2
14.0
2.95
15.75
6.6
0.511
0.104
0.600
0.244
0.137
0.147
0.551
0.116
0.620
0.260
0.154
0.151
3.5
3.93
3.85
3.75
L2
Dia.
L5
L9
L7
L6
L4
P011C
8/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
TO-220FP MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
4.4
TYP.
MAX.
4.6
2.7
2.75
0.7
1
MIN.
0.173
0.098
0.098
0.017
0.030
0.045
0.045
0.195
0.094
0.393
MAX.
0.181
0.106
0.108
0.027
0.039
0.067
0.067
0.204
0.106
0.409
A
B
2.5
D
2.5
E
0.45
0.75
1.15
1.15
4.95
2.4
F
F1
F2
G
1.7
1.7
5.2
2.7
10.4
G1
H
10
L2
L3
L4
L6
L7
Ø
16
0.630
28.6
9.8
15.9
9
30.6
10.6
16.4
9.3
1.126
0.385
0.626
0.354
0.118
1.204
0.417
0.645
0.366
0.126
3
3.2
L3
L6
L7
¯
1 2 3
L4
L2
9/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
TO-252 (DPAK) MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
2.20
0.90
0.03
0.64
5.20
0.45
0.48
6.00
6.40
4.40
9.35
TYP.
MAX.
2.40
1.10
0.23
0.90
5.40
0.60
0.60
6.20
6.60
4.60
10.10
MIN.
0.087
0.035
0.001
0.025
0.204
0.018
0.019
0.236
0.252
0.173
0.368
MAX.
0.094
0.043
0.009
0.035
0.213
0.024
0.024
0.244
0.260
0.181
0.398
A
A1
A2
B
B2
C
C2
D
E
G
H
L2
L4
V2
0.8
0.031
0.60
0o
1.00
8o
0.024
0o
0.039
0o
P032P_B
10/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
D2PAK MECHANICAL DATA
mm.
TYP
inch
TYP.
DIM.
MIN.
4.4
MAX.
4.6
MIN.
0.173
0.098
0.001
0.027
0.044
0.017
0.048
0.352
MAX.
0.181
0.106
0.009
0.036
0.067
0.023
0.053
0.368
A
A1
A2
B
2.49
0.03
0.7
2.69
0.23
0.93
1.7
B2
C
1.14
0.45
1.23
8.95
0.6
C2
D
1.36
9.35
D1
E
8
0.315
0.334
10
10.4
0.393
E1
G
8.5
4.88
15
5.28
15.85
1.4
0.192
0.590
0.050
0.055
0.094
0.208
0.625
0.055
0.068
0.126
L
L2
L3
M
1.27
1.4
1.75
3.2
2.4
R
0.4
0.015
V2
0º
8º
3
11/14
1
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
DPAK FOOTPRINT
TUBE SHIPMENT (no suffix)*
All dimensions
are in millimeters
All dimensions are in millimeters
TAPE AND REEL SHIPMENT (suffix ”T4”)*
REEL MECHANICAL DATA
mm
MIN. MAX. MIN. MAX.
330 12.992
inch
DIM.
A
B
C
D
G
N
T
1.5
12.8
20.2
16.4
50
0.059
13.2 0.504 0.520
0.795
18.4 0.645 0.724
1.968
22.4
0.881
BASE QTY
BULK QTY
2500
TAPE MECHANICAL DATA
2500
mm
MIN. MAX. MIN. MAX.
6.8 0.267 0.275
10.4 10.6 0.409 0.417
12.1 0.476
inch
DIM.
A0
B0
B1
D
7
1.5
1.5
1.6 0.059 0.063
0.059
D1
E
1.65 1.85 0.065 0.073
7.4 7.6 0.291 0.299
2.55 2.75 0.100 0.108
F
K0
P0
P1
P2
R
3.9
7.9
1.9
40
4.1 0.153 0.161
8.1 0.311 0.319
2.1 0.075 0.082
1.574
W
15.7
16.3 0.618 0.641
* on sales type
12/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
D2PAK FOOTPRINT
TUBE SHIPMENT (no suffix)*
TAPE AND REEL SHIPMENT (suffix ”T4”)*
REEL MECHANICAL DATA
mm
MIN. MAX. MIN. MAX.
330 12.992
inch
DIM.
A
B
C
D
G
N
T
1.5
12.8
20.2
24.4
100
0.059
13.2 0.504 0.520
0795
26.4 0.960 1.039
3.937
30.4
1.197
BASE QTY
BULK QTY
1000
TAPE MECHANICAL DATA
1000
mm
inch
DIM.
MIN. MAX. MIN. MAX.
A0
B0
D
10.5
15.7
1.5
10.7 0.413 0.421
15.9 0.618 0.626
1.6 0.059 0.063
1.61 0.062 0.063
1.85 0.065 0.073
11.6 0.449 0.456
5.0 0.189 0.197
4.1 0.153 0.161
12.1 0.468 0.476
2.1 0.075 0.082
1.574
D1
E
1.59
1.65
11.4
4.8
F
K0
P0
P1
P2
R
3.9
11.9
1.9
50
T
0.25
23.7
0.35 0.0098 0.0137
24.3 0.933 0.956
W
* on sales
13/14
STGP7NB60K/STGP7NB60KFP/STGD7NB60K/STGP7NB60KD/STGB7NB60KD/STGP7NB60KDFP
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the
consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from
its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications
mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information
previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or
systems without express written approval of STMicroelectronics.
© The ST logo is a registered trademark of STMicroelectronics
© 2002 STMicroelectronics - Printed in Italy - All Rights Reserved
STMicroelectronics GROUP OF COMPANIES
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Singapore - Spain - Sweden - Switzerland - United Kingdom - United States.
© http://www.st.com
14/14
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