Datasheet STGP3NC120HD Specification

Page 1
STGB3NC120HD
STGF3NC120HD, STGP3NC120HD
7 A, 1200 V very fast IGBT with ultrafast diode
Features
High voltage capability
High speed
Applications
Home appliance
Lighting
Description
This high voltage and very fast IGBT shows an excellent trade-off between low conduction losses and fast switching performance. It is designed in PowerMESH™ technology combined with high voltage ultrafast diode.
TAB
3
2
1
TO-220
TAB
TO-220FP
3
1
D²PAK

Figure 1. Internal schematic diagram

3
2
1

Table 1. Device summary

Order codes Marking Packages Packaging
STGB3NC120HDT4 GB3NC120HD D²PAK Tape and reel
STGF3NC120HD GF3NC120HD TO-220FP Tube
STGP3NC120HD GP3NC120HD TO-220 Tube
January 2011 Doc ID 11089 Rev 4 1/16
www.st.com
16
Page 2
Contents STGB3NC120HD, STGF3NC120HD, STGP3NC120HD
Contents
1 Electrical ratings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
2 Electrical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
2.1 Electrical characteristics (curves) . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
3 Test circuit . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
4 Package mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
5 Revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
2/16 Doc ID 11089 Rev 4
Page 3
STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Electrical ratings

1 Electrical ratings

Table 2. Absolute maximum ratings

Val ue
Symbol Parameter
TO-220FP TO-220/D²PAK
Unit
V
CES
I
C
I
C
I
CL
I
CP
V
I
I
FSM
P
TOT
V
ISO
T
1. Calculated according to the iterative formula:
Collector-emitter voltage (VGE = 0) 1200 V
(1)
Continuous collector current at TC = 25 °C 6 14 A
(1)
Continuous collector current at TC = 100 °C 3 7 A
(2)
Turn-off latching current 14 A
(3)
Pulsed collector current 20 A
Gate-emitter voltage ± 20 V
GE
Diode RMS forward current at TC = 25 °C 3 A
F
Surge non repetitive forward current
=10 ms sinusoidal
t
p
Total dissipation at TC = 25 °C 25 75 W
Insulation withstand voltage (RMS) from all three leads to external heat sink
Operating junction temperature -55 to 150 °C
J
ICTC()
-------------------------------------------------------------------------------------------------------=
R
thj c–
2500 V
T
V
CE sat()max()Tjmax()ICTC
jmax()TC
12 A
(),()×
2. V
3. Pulse width limited by maximum junction temperature and turn-off within RBSOA
clamp
= 80 % V
, Tj = 150 °C, RG = 10 Ω, VGE = 15 V
CES

Table 3. Thermal data

Val ue
Symbol Parameter
TO-220FP TO-220/D²PAK
R
R
thJC
thJA
Thermal resistance junction-case IGBT 5 1.65 °C/W
Thermal resistance junction-case (diode) 3.5 °C/W
Thermal resistance junction-ambient 62.5 °C/W
Doc ID 11089 Rev 4 3/16
Unit
Page 4
Electrical characteristics STGB3NC120HD, STGF3NC120HD, STGP3NC120HD

2 Electrical characteristics

TJ = 25 °C unless otherwise specified.

Table 4. Static electrical characteristics

Symbol Parameter Test conditions Min. Typ. Max. Unit
Collector-emitter
V
(BR)CES
breakdown voltage (VGE = 0)
IC = 1 mA 1200 V
V
CE(sat)
V
GE(th)
I
CES
I
GES
g
fs
1. Pulse duration: 300 µs, duty cycle 1.5%
Collector-emitter saturation voltage
Gate threshold voltage VCE= VGE, IC= 250µA 2 5 V
Collector cut-off current (VGE = 0)
Gate-emitter leakage current (V
(1)
Forward transconductance VCE = 25 V, IC= 3 A 4 S
CE
= 0)
= 15 V, IC= 3 A
V
GE
VGE= 15 V, IC= 3 A, TJ=125 °C
= 1200 V
V
CE
= 1200 V, TJ=125 °C
V
CE
VGE =± 20 V ± 100 nA
2.3
2.2
2.8 V
501µA

Table 5. Dynamic

Symbol Parameter Test conditions Min. Typ. Max. Unit
C
C
C
Q Q Q
Input capacitance
ies
Output capacitance
oes
Reverse transfer
res
capacitance
Total gate charge
g
Gate-emitter charge
ge
Gate-collector charge
gc
= 25 V, f = 1 MHz, VGE=0 -
V
CE
VCE = 960 V,
= 3 A,VGE=15 V
I
C
470
45
-
6
24
-
3
-
10
V
mA
pF pF pF
nC nC nC
4/16 Doc ID 11089 Rev 4
Page 5
STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Electrical characteristics

Table 6. Switching on/off (inductive load)

Symbol Parameter Test conditions Min. Typ. Max. Unit
t
d(on)
(di/dt)
t
d(on)
(di/dt)
t
r(Voff
t
d(off
t
r(Voff
t
d(off
Turn-on delay time
t
Current rise time
r
Turn-on current slope
on
Turn-on delay time
t
Current rise time
r
Turn-on current slope
on
)
Off voltage rise time
)
Turn-off delay time
t
Current fall time
f
)
Off voltage rise time
)
Turn-off delay time
t
Current fall time
f
= 800 V, IC = 3 A
V
CC
RG= 10 Ω, VGE= 15 V,
(see Figure 20)
VCC = 800 V, IC = 3 A RG= 10 Ω, VGE= 15 V,
= 125 °C (see Figure 20)
T
J
= 800 V, IC = 3 A
V
CC
= 10 Ω, VGE= 15 V,
R
G
(see Figure 20)
VCC = 800 V, IC = 3 A
= 10 Ω, VGE= 15 V,
R
G
TJ= 125 °C (see Figure 20)
15
-
3.5
880
­A/µs
14.5
-
4
770
­A/µs
72
-
118
-
250
132
-
210
-
470

Table 7. Switching energy (inductive load)

Symbol Parameter Test conditions Min. Typ. Max. Unit
(1)
Eon
E
off
E
Eon
E
off
E
1. Eon is the turn-on losses when a typical diode is used in the test circuit in figure 2. If the IGBT is offered in a package with a co-pack diode, the co-pack diode is used as external diode. IGBTs & Diode are at the same temperature (25 °C and 125 °C)
2. Turn-off losses include also the tail of the collector current
Turn-on switching losses
(2)
Turn-off switching losses Total switching losses
ts
(1)
Turn-on switching losses
(2)
Turn-off switching losses Total switching losses
ts
VCC = 800 V, IC = 3 A RG= 10 Ω, VGE= 15 V,
(see Figure 20)
= 800 V, IC = 3 A
V
CC
= 10 Ω, VGE= 15 V,
R
G
= 125 °C (see Figure 20)
T
J
236
-
290
-
526
360
-
620
-
980
ns ns
ns ns
ns ns ns
ns ns ns
µJ µJ µJ
µJ µJ µJ

Table 8. Collector-emitter diode

Symbol Parameter Test conditions Min. Typ. Max. Unit
1.6
V
t
Q
I
rrm
t
Q
I
rrm
Forward on-voltage
F
Reverse recovery time
rr
Reverse recovery charge
rr
Reverse recovery current
Reverse recovery time
rr
Reverse recovery charge
rr
Reverse recovery current
IF = 1.5 A
= 1.5 A, TJ = 125 °C
I
F
IF = 3 A, VR = 40 V, di/dt = 100 A/µs
(see Figure 23)
= 3 A, VR = 40 V,
I
F
TJ = 125 °C, di/dt = 100 A/µs
(see Figure 23)
-
-
-
Doc ID 11089 Rev 4 5/16
2.0 V
1.3
51 85
3.3
64
133
4.2
V
ns
nC
A
ns
nC
A
Page 6
Electrical characteristics STGB3NC120HD, STGF3NC120HD, STGP3NC120HD

2.1 Electrical characteristics (curves)

Figure 2. Output characteristics Figure 3. Transfer characteristics
Figure 4. Transconductance Figure 5. Collector-emitter on voltage vs.
temperature
Figure 6. Collector-emitter on voltage vs.
collector current
Figure 7. Normalized gate threshold voltage
6/16 Doc ID 11089 Rev 4
vs. temperature
Page 7
STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Electrical characteristics
Figure 8. Normalized breakdown voltage vs.

Figure 10. Capacitance variations Figure 11. Switching losses vs. temperature

temperature
Figure 9. Gate charge vs. gate-source
voltage
Figure 12. Switching losses vs. gate
resistance
Doc ID 11089 Rev 4 7/16
Figure 13. Switching losses vs. collector
current
Page 8
Electrical characteristics STGB3NC120HD, STGF3NC120HD, STGP3NC120HD
Figure 14. Collector-emitter diode

Figure 16. Power losses @ IC = 2 A Figure 17. Thermal impedance for TO-220

characteristics

Figure 15. Power losses @ IC = 3 A

K
δ=0.5
0.2
ZTH_TO-220
0.1
-1
10
0.05
0.02
0.01
single pulse
-2
10
-5
10

Figure 18. Turn-off SOA Figure 19. Thermal impedance for TO-220FP

K
δ=0.5
-4
10
-3
10
-2
10
Zth_TO-220FP
-1
10
tp(s)
0.2
0.1
-1
10
0.05
0.02
10
10
10
-2
-3
-5
0.01
Single pulse
-4
10
10
-3
Zth=k*Rthj-c
δ=tp/τ
tp
-2
10
τ
-1
(s)
t
p
10
8/16 Doc ID 11089 Rev 4
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STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Test circuit

3 Test circuit

Figure 20. Test circuit for inductive load
switching

Figure 21. Gate charge test circuit

AM01504v1 AM01505v1

Figure 22. Switching waveform Figure 23. Diode recovery time waveform

Qrr
IRRM
VCE
90%
G
V
10%
90%
Tcross
Tr(Voff)
10%
90%
IC
Td(on)
Tr(Ion)
Ton
Td(off)
10%
Tf
Toff
di/dt
IF
t
rr
ta
tb
IRRM
t
V
F
dv/dt
AM01506v1
AM01507v1
Doc ID 11089 Rev 4 9/16
Page 10
Package mechanical data STGB3NC120HD, STGF3NC120HD, STGP3NC120HD

4 Package mechanical data

In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK
®
packages, depending on their level of environmental compliance. ECOPACK® specifications, grade definitions and product status are available at: www.st.com. ECOPACK is an ST trademark.
Table 9. D²PAK (TO-263) mechanical data
mm
Dim.
Min. Typ. Max.
A 4.40 4.60
A1 0.03 0.23
b 0.70 0.93
b2 1.14 1.70
c 0.45 0.60
c2 1.23 1.36
D 8.95 9.35
D1 7.50
E 10 10.40
E1 8.50
e2.54
e1 4.88 5.28
H 15 15.85
J1 2.49 2.69
L 2.29 2.79
L1 1.27 1.40
L2 1.30 1.75
R0.4
V2
10/16 Doc ID 11089 Rev 4
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STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Package mechanical data
D²PAK (TO-263) drawing
0079457_R
Doc ID 11089 Rev 4 11/16
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Package mechanical data STGB3NC120HD, STGF3NC120HD, STGP3NC120HD

Table 10. TO-220FP mechanical data

mm
Dim.
Min. Typ. Max.
A4.4 4.6
B2.5 2.7
D 2.5 2.75
E0.45 0.7
F0.75 1
F1 1.15 1.70
F2 1.15 1.70
G4.95 5.2
G1 2.4 2.7
H 10 10.4
L2 16
L3 28.6 30.6
L4 9.8 10.6
L5 2.9 3.6
L6 15.9 16.4
L7 9 9.3
Dia 3 3.2

Figure 24. TO-220FP drawing

L7
A
B
Dia
L6
H
D
L5
F2
F1
E
F
G
G1
L2
L3
12/16 Doc ID 11089 Rev 4
L4
7012510_Rev_K
Page 13
STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Package mechanical data

Table 11. TO-220 type A mechanical data

mm
Dim.
Min. Typ. Max.
A 4.40 4.60
b 0.61 0.88
b1 1.14 1.70
c 0.48 0.70
D 15.25 15.75
D1 1.27
E10 10.40
e 2.40 2.70
e1 4.95 5.15
F 1.23 1.32
H1 6.20 6.60
J1 2.40 2.72
L13 14
L1 3.50 3.93
L20 16.40
L30 28.90
P 3.75 3.85
Q 2.65 2.95
Doc ID 11089 Rev 4 13/16
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Package mechanical data STGB3NC120HD, STGF3NC120HD, STGP3NC120HD
TO-220 type A drawing
14/16 Doc ID 11089 Rev 4
0015988_typeA_Rev_S
Page 15
STGB3NC120HD, STGF3NC120HD, STGP3NC120HD Revision history

5 Revision history

Table 12. Document revision history

Date Revision Changes
13-Dec-2004 1 First release.
21-Jan-2005 2 Modified Figure 18: Turn-off SOA.
03-May-2010 3 Added new package, mechanical data: TO-220.
25-Jan-2011 4 Added new package, mechanical data: D²PAK.
Doc ID 11089 Rev 4 15/16
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STGB3NC120HD, STGF3NC120HD, STGP3NC120HD
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16/16 Doc ID 11089 Rev 4
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