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June 2013 DocID023740 Rev 4 1/22
22
STGB20H60DF,
STGF20H60DF, STGP20H60DF
600 V, 20 A high speed
trench gate field-stop IGBT
Datasheet - production data
Figure 1. Internal schematic diagram
Features
• High speed switching
• Tight parameters distribution
• Safe paralleling
• Low thermal resistance
• Short-circuit rated
• Ultrafast soft recovery antiparallel diode
Applications
• Motor control
• UPS, PFC
Description
This device is an IGBT developed using an
advanced proprietary trench gate and field stop
structure. This IGBT series offers the optimum
compromise between conduction and switching
losses, maximizing the efficiency of very high
frequency converters. Furthermore, a positive
VCE(sat) temperature coefficient and very tight
parameter distribution result in easier paralleling
operation.
TO-220
D²PAK
1
2
3
TAB
1
3
TAB
TO-220FP
1
2
3
C (2, TAB)
E (3)
G (1)
Table 1. Device summary
Order codes Marking Packages Packaging
STGB20H60DF GB20H60DF D²PAK Tape and reel
STGF20H60DF GF20H60DF TO-220FP Tube
STGP20H60DF GP20H60DF TO-220 Tube
www.st.com
Contents STGB20H60DF, STGF20H60DF, STGP20H60DF
2/22 DocID023740 Rev 4
Contents
1 Electrical ratings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
2 Electrical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
2.1 Electrical characteristics (curves) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3 Test circuits . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
4 Package mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
5 Packaging mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
6 Revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21
DocID023740 Rev 4 3/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical ratings
1 Electrical ratings
Table 2. Absolute maximum ratings
Symbol Parameter
TO-220
D²PAK
TO-220FP Unit
VCES Collector-emitter voltage (VGE = 0) 600 V
IC
Continuous collector current at TC = 25 °C 40 40(1)
1. Limited by maximum junction temperature.
A
Continuous collector current at TC = 100 °C 20 20(1)
A
ICP
(2)
2. Pulse width limited by maximum junction temperature and turn-off within RBSOA.
Pulsed collector current 80 80(1)
A
VGE Gate-emitter voltage ±20 V
IF
Continuous forward current TC = 25 °C 40 40(1)
A
Continuous forward current at TC = 100 °C 20 20(1)
IFP
(2)
Pulsed forward current 80 80(1)
A
PTOT Total dissipation at TC = 25 °C 167 37 W
TSTG Storage temperature range - 55 to 150
°C
TJ Operating junction temperature - 55 to 175
Table 3. Thermal data
Symbol Parameter
TO-220
D²PAK
TO-220FP Unit
RthJC Thermal resistance junction-case IGBT 0.9 4 °C/W
RthJC Thermal resistance junction-case diode 2.5 5.6 °C/W
RthJA Thermal resistance junction-ambient 62.5 °C/W
Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF
4/22 DocID023740 Rev 4
2 Electrical characteristics
TJ = 25 °C unless otherwise specified.
Table 4. Static
Symbol Parameter Test conditions Min. Typ. Max. Unit
V(BR)CES
Collector-emitter
breakdown voltage
(VGE = 0)
IC = 2 mA 600 V
VCE(sat)
Collector-emitter saturation
voltage
VGE = 15 V, IC = 20 A 1.6 2.0
V
VGE = 15 V, IC = 20 A
TJ = 125 °C
1.75
VGE = 15 V, IC = 20 A
TJ = 175 °C
1.8
VGE(th) Gate threshold voltage VCE = VGE, IC = 1 mA 5.0 6.0 7.0 V
ICES
Collector cut-off current
(VGE = 0)
VCE = 600 V 25 μA
IGES
Gate-emitter leakage
current (VCE = 0)
VGE = ± 20 V 250 nA
Table 5. Dynamic
Symbol Parameter Test conditions Min. Typ. Max. Unit
Cies Input capacitance
VCE = 25 V, f = 1 MHz,
VGE = 0
- 2750 - pF
Coes Output capacitance - 110 - pF
Cres
Reverse transfer
capacitance
- 65 - pF
Qg Total gate charge
VCC = 400 V, IC = 20 A,
VGE = 15 V
- 115 - nC
Qge Gate-emitter charge - 22 - nC
Qgc Gate-collector charge - 45 - nC
DocID023740 Rev 4 5/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics
Table 6. Switching characteristics (inductive load)
Symbol Parameter Test conditions Min. Typ. Max. Unit
td(on) Turn-on delay time
VCE = 400 V, IC = 20 A,
RG = 10 Ω, VGE = 15 V
42.5 - ns
tr Current rise time 11.9 - ns
(di/dt)on Turn-on current slope 1345 - A/μs
td(on) Turn-on delay time
VCE = 400 V, IC = 20 A,
RG = 10 Ω, VGE = 15 V
TJ = 175 °C
42.5 - ns
tr Current rise time 13.4 ns
(di/dt)on Turn-on current slope 1180 A/μs
tr(Voff) Off voltage rise time
VCE = 400 V, IC = 20 A,
RG = 10 Ω, VGE = 15 V
20 - ns
td(off) Turn-off delay time 177 - ns
tf Current fall time 55 - ns
tr(Voff) Off voltage rise time VCE = 400 V, IC = 20 A,
RG = 10 Ω, VGE = 15 V
TJ = 175 °C
26 - ns
td(off) Turn-off delay time 173 - ns
tf Current fall time 86 - ns
tsc Short-circuit withstand time VCC ≤ 360 V, VGE = 15 V 3 5 - μs
Table 7. Switching energy (inductive load)
Symbol Parameter Test conditions Min. Typ. Max. Unit
Eon (1)
1. Energy losses include reverse recovery of the diode.
Turn-on switching losses
VCE = 400 V, IC = 20 A,
RG = 10 Ω, VGE = 15 V
- 209 - μJ
Eoff
(2)
2. Turn-off losses include also the tail of the collector current.
Turn-off switching losses - 261 - μJ
Ets Total switching losses - 470 - μJ
Eon (1)
Turn-on switching losses VCE = 400 V, IC = 20 A,
RG = 10 Ω, VGE = 15 V
TJ = 175 °C
- 480 - μJ
Eoff
(2) Turn-off switching losses - 416 - μJ
Ets Total switching losses - 896 - μJ
Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF
6/22 DocID023740 Rev 4
Table 8. Collector-emitter diode
Symbol Parameter Test conditions Min. Typ. Max. Unit
VF Forward on-voltage
IF = 20 A
IF = 20 A, TJ = 175 °C
-
1.8
1.3
2.2 V
V
trr Reverse recovery time
Vr = 60 V; IF = 20 A;
diF/dt = 100 A / μs
- 90 - ns
Qrr Reverse recovery charge 110 nC
Irrm Reverse recovery current 2.4 A
trr Reverse recovery time
Vr = 60 V; IF = 20 A;
diF/dt = 100 A / μs
TJ = 175 °C
- 180 - ns
Qrr Reverse recovery charge - 466 - nC
Irrm Reverse recovery current - 5.2 - A
DocID023740 Rev 4 7/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics
2.1 Electrical characteristics (curves)
Figure 2. Output characteristics (TJ = 25°C) Figure 3. Output characteristics (TJ = 175°C)
Figure 4. Transfer characteristics Figure 5. Normalized VGE(th) vs junction
temperature
9 V
IC
60
40
20
0
0 2 VCE(V)4
(A)
1 3
80
100
15 V 13 V
11 V
AM16287v1
9 V
7 V
15 V
IC
60
40
20
0
0 2 VCE(V)4
(A)
1 3
80
100
13 V
11 V
AM16288v1
25 °C
IC
60
40
20
0
7 9 VGE(V)11
(A)
8 10
80
100
175 °C
-40 °C
VCE= 5 V
AM16289v1
VCE= VGE
IC = 1 mA
VGE(th)
0.9
0.8
0.7
0.6
-75 25 TJ(°C)125
(norm)
-25 75
1
AM16292v1
Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF
8/22 DocID023740 Rev 4
Figure 6. Collector current vs. case temperature
for D²PAK and TO-220
Figure 7. Collector current vs. case temperature
for TO-220FP
Figure 8. Collector current vs. frequency for
D²PAK and TO-220
Figure 9. Collector current vs. frequency for
TO-220FP
Figure 10. Power dissipation vs. case
temperature for D²PAK and TO-220
Figure 11. Power dissipation vs. case
temperature for TO-220FP
IC
24
16
8
0
0 50 TC(°C)100
(A)
25 75
32
40
125
AM16282v1
IC
12
8
4
0
0 50 TC(°C)125
(A)
25 75
16
20
100
AM162821v1
IC
30
20
10
1 f(kHz)
(A)
Tc= 80°C
Rectangular current shape
(duty cycle= 0.5, VCC= 400 V
Rg = 10 Ω, VGE= 0/15V, TJ= 175°C
10
40
Tc= 100°C
50
60
AM162981V1
IC
8
4
0
1 f(kHz)
(A)
Tc= 80°C
Rectangular current shape
(duty cycle= 0.5, VCC= 400 V
Rg = 10 Ω, VGE= 0/15V, TJ= 175°C
10
12
Tc= 100°C
16
20
AM162982V1
Ptot
120
80
40
0
0 50 TC(°C)125
(W)
25 75
160
100 150
AM16281V1
Ptot
24
16
8
0
0 50 TC(°C)125
(W)
25 75
32
100
AM16284V1
DocID023740 Rev 4 9/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics
Figure 12. VCE(sat) vs. junction temperature Figure 13. VCE(sat) vs. collector current
Figure 14. Forward bias safe operating area for
D2
PAK and TO-220
Figure 15. Thermal impedance for D2
PAK and
TO-220
Figure 16. Forward bias safe operating area for
TO-220FP
Figure 17. Thermal impedance for TO-220FP
VCE(sat)
1.9
1.7
1.5
1.3
-75 25 TJ(°C)125
(V)
-25 75
2.1
2.3
IC= 40 A
VGE= 15 V
IC= 20 A
IC= 10 A
AM16290V1
VCE(sat)
2.2
1.8
1.4
1.0
0 20 IC(A)
(V)
10 30
VGE= 15 V
TJ = 175 °C
TJ = -40 °C
TJ = 25 °C
AM16291V1
(single pulse TC=25°C,
TJ<=175°C; VGE=15V)
IC
10
1
0.1
1 100 VCE(V)
(A)
10
1 ms
100 µs
VCE(sat)limit
AM16280V1
10
-5
10
-4
10
-3
10
-2
10
-1
tp(s)
10
-2
10
-1
K
0.2
0.05
0.02
0.01
0.1
Zth=k Rthj-c
δ=tp/τ
tp
τ
Single pulse
δ=0.5
ZthTO2T_B
IC
10
1
0.1
1 100 VCE(V)
(A)
10
1 ms
100 µs
1 µs
(single pulse TC=25°C,
TJ<=175°C; VGE=15V)
VCE(sat)limit
AM16283V1
Zth=k Rthj-c
δ=tp/τ
tp
τ
10
-5
10
-4
10
-3
10
-2
10
-1
tp(s)
10
-3
10
-1
K
0.2
0.05
0.02
0.01
0.1
Single pulse
δ=0.5
ZthTOF2T_B
10
-2
10
Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF
10/22 DocID023740 Rev 4
Figure 18. Diode VF vs. forward current Figure 19. Gate charge vs. gate-emitter voltage
Figure 20. Capacitance variations vs. VCE Figure 21. Switching losses vs. gate resistance
Figure 22. Switching losses vs. collector
current
Figure 23. Switching losses vs. temperature
VF
1.9
1.5
1.1
10 50 IF(A)
(V)
30
TJ= -40 °C
20 40
2.3
TJ= 25 °C
TJ= 175 °C
AM16293V1
VGE
8
4
0
0 Qg(nC)
(V)
80
VCC= 400 V
IC= 20 A
40 120
12
16
AM16294V1
C
1000
100
10
0.1 VCE(V)
(pF)
10
Coes
1
Cies
Cres
AM16295V1
E
550
450
350
0 RG(Ω)
(µJ)
20
EOFF
10
EON
30 40
650
750
VCC= 400 V, VGE = 15V,
IC = 20 A, TJ = 175°C
AM16296V1
E
600
400
200
10 IC(A)
(µJ)
20
EOFF
EON
30
800
1000
VCC= 400 V, VGE = 15V,
Rg = 10 Ω, TJ = 175°C
AM162961V1
E
400
300
200
25 TJ(°C)
(µJ)
75
EOFF
EON
125
VCC= 400 V, VGE = 15V,
Rg = 10 Ω, IC = 20 A
AM16297V1
DocID023740 Rev 4 11/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics
Figure 24. Short-circuit time and current vs. VGE
tsc
12
8
4
10 VGE(V)
(µs)
11
tsc
Isc
12
VCC= 360 V, Rg = 10 Ω
13 14
16
Isc
(A)
50
150
250
350
AM16298V1
Test circuits STGB20H60DF, STGF20H60DF, STGP20H60DF
12/22 DocID023740 Rev 4
3 Test circuits
Figure 25. Test circuit for inductive load
switching
Figure 26. Gate charge test circuit
Figure 27. Switching waveform Figure 28. Diode recovery time waveform
AM01504v1 AM01505v1
AM01506v1
90%
10%
90%
10%
VG
VCE
IC
Td(on)
Ton
Tr(Ion)
Td(off)
Toff
Tf
Tr(Voff)
Tcross
90%
10%
AM01507v1
IRRM
IF
di/dt
trr
ta tb
Qrr
IRRM
t
VF
dv/dt
DocID023740 Rev 4 13/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Package mechanical data
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. TO-220FP mechanical data
Dim.
mm
Min. Typ. Max.
A 4.4 4.6
B 2.5 2.7
D 2.5 2.75
E 0.45 0.7
F 0.75 1
F1 1.15 1.70
F2 1.15 1.70
G 4.95 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
Package mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF
14/22 DocID023740 Rev 4
Figure 29. TO-220FP drawing
7012510_Rev_K_B
DocID023740 Rev 4 15/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Package mechanical data
Table 10. TO-220 type A mechanical data
Dim.
mm
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
E 10 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
L 13 14
L1 3.50 3.93
L20 16.40
L30 28.90
∅P 3.75 3.85
Q 2.65 2.95
Package mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF
16/22 DocID023740 Rev 4
Figure 30. TO-220 type A drawing
DocID023740 Rev 4 17/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Package mechanical data
Table 11. D²PAK mechanical data
Dim.
mm
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
e 2.54
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
R 0.4
V2 0° 8°
Package mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF
18/22 DocID023740 Rev 4
Figure 31. D²PAK drawing
Figure 32. D²PAK footprint(a)
a. All dimension are in millimeters
0079457_T
16.90
12.20
9.75
3.50
5.08
1.60
Footprint
DocID023740 Rev 4 19/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Packaging mechanical data
5 Packaging mechanical data
Table 12. D²PAK tape and reel mechanical data
Tape Reel
Dim.
mm
Dim.
mm
Min. Max. Min. Max.
A0 10.5 10.7 A 330
B0 15.7 15.9 B 1.5
D 1.5 1.6 C 12.8 13.2
D1 1.59 1.61 D 20.2
E 1.65 1.85 G 24.4 26.4
F 11.4 11.6 N 100
K0 4.8 5.0 T 30.4
P0 3.9 4.1
P1 11.9 12.1 Base qty 1000
P2 1.9 2.1 Bulk qty 1000
R 50
T 0.25 0.35
W 23.7 24.3
Packaging mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF
20/22 DocID023740 Rev 4
Figure 33. Tape
Figure 34. Reel
P1A0 D1
P0
F
W
E
D
B0
K0
T
User direction of feed
P2
10 pitches cumulative
tolerance on tape +/- 0.2 mm
User direction of feed
R
Bending radius
Top cover
tape
AM08852v2
A
D
B
Full radius G measured at hub
C
N
REEL DIMENSIONS
40mm min.
Access hole
At sl ot location
T
Tape slot
in core for
tape start 25 mm min.
width
AM08851v2
DocID023740 Rev 4 21/22
STGB20H60DF, STGF20H60DF, STGP20H60DF Revision history
6 Revision history
Table 13. Document revision history
Date Revision Changes
03-Oct-2012 1 Initial release.
18-Mar-2013 2
Added new order code STGF20H60DF, mechanical data Table 9 and
Figure 29 on page 14.
Added Chapter 2.1: Electrical characteristics (curves).
22-Mar-2013 3 Document status promoted from preliminary to production data.
03-Jun-2013 4
Updated PTOT in Table 2: Absolute maximum ratings, RthJC in
Table 3: Thermal data and Figure 10: Power dissipation vs. case
temperature for D²PAK and TO-220.
Updated Section 4: Package mechanical data for TO-220.
STGB20H60DF, STGF20H60DF, STGP20H60DF
22/22 DocID023740 Rev 4
Please Read Carefully:
Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the
right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any
time, without notice.
All ST products are sold pursuant to ST’s terms and conditions of sale.
Purchasers are solely responsible for the choice, selection and use of the ST products and services described herein, and ST assumes no
liability whatsoever relating to the choice, selection or use of the ST products and services described herein.
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted under this document. If any part of this
document refers to any third party products or services it shall not be deemed a license grant by ST for the use of such third party products
or services, or any intellectual property contained therein or considered as a warranty covering the use in any manner whatsoever of such
third party products or services or any intellectual property contained therein.
UNLESS OTHERWISE SET FORTH IN ST’S TERMS AND CONDITIONS OF SALE ST DISCLAIMS ANY EXPRESS OR IMPLIED
WARRANTY WITH RESPECT TO THE USE AND/OR SALE OF ST PRODUCTS INCLUDING WITHOUT LIMITATION IMPLIED
WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE (AND THEIR EQUIVALENTS UNDER THE LAWS
OF ANY JURISDICTION), OR INFRINGEMENT OF ANY PATENT, COPYRIGHT OR OTHER INTELLECTUAL PROPERTY RIGHT.
ST PRODUCTS ARE NOT AUTHORIZED FOR USE IN WEAPONS. NOR ARE ST PRODUCTS DESIGNED OR AUTHORIZED FOR USE
IN: (A) SAFETY CRITICAL APPLICATIONS SUCH AS LIFE SUPPORTING, ACTIVE IMPLANTED DEVICES OR SYSTEMS WITH
PRODUCT FUNCTIONAL SAFETY REQUIREMENTS; (B) AERONAUTIC APPLICATIONS; (C) AUTOMOTIVE APPLICATIONS OR
ENVIRONMENTS, AND/OR (D) AEROSPACE APPLICATIONS OR ENVIRONMENTS. WHERE ST PRODUCTS ARE NOT DESIGNED
FOR SUCH USE, THE PURCHASER SHALL USE PRODUCTS AT PURCHASER’S SOLE RISK, EVEN IF ST HAS BEEN INFORMED IN
WRITING OF SUCH USAGE, UNLESS A PRODUCT IS EXPRESSLY DESIGNATED BY ST AS BEING INTENDED FOR “AUTOMOTIVE,
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PRODUCTS FORMALLY ESCC, QML OR JAN QUALIFIED ARE DEEMED SUITABLE FOR USE IN AEROSPACE BY THE
CORRESPONDING GOVERNMENTAL AGENCY.
Resale of ST products with provisions different from the statements and/or technical features set forth in this document shall immediately void
any warranty granted by ST for the ST product or service described herein and shall not create or extend in any manner whatsoever, any
liability of ST.
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Information in this document supersedes and replaces all information previously supplied.
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Original IGBT STGF20H60DF GF20H60DF 20H60 600V 20A TO-220F New STMicroelectronics

  • 1. This is information on a product in full production. June 2013 DocID023740 Rev 4 1/22 22 STGB20H60DF, STGF20H60DF, STGP20H60DF 600 V, 20 A high speed trench gate field-stop IGBT Datasheet - production data Figure 1. Internal schematic diagram Features • High speed switching • Tight parameters distribution • Safe paralleling • Low thermal resistance • Short-circuit rated • Ultrafast soft recovery antiparallel diode Applications • Motor control • UPS, PFC Description This device is an IGBT developed using an advanced proprietary trench gate and field stop structure. This IGBT series offers the optimum compromise between conduction and switching losses, maximizing the efficiency of very high frequency converters. Furthermore, a positive VCE(sat) temperature coefficient and very tight parameter distribution result in easier paralleling operation. TO-220 D²PAK 1 2 3 TAB 1 3 TAB TO-220FP 1 2 3 C (2, TAB) E (3) G (1) Table 1. Device summary Order codes Marking Packages Packaging STGB20H60DF GB20H60DF D²PAK Tape and reel STGF20H60DF GF20H60DF TO-220FP Tube STGP20H60DF GP20H60DF TO-220 Tube www.st.com
  • 2. Contents STGB20H60DF, STGF20H60DF, STGP20H60DF 2/22 DocID023740 Rev 4 Contents 1 Electrical ratings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3 2 Electrical characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 2.1 Electrical characteristics (curves) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7 3 Test circuits . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12 4 Package mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 5 Packaging mechanical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19 6 Revision history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21
  • 3. DocID023740 Rev 4 3/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical ratings 1 Electrical ratings Table 2. Absolute maximum ratings Symbol Parameter TO-220 D²PAK TO-220FP Unit VCES Collector-emitter voltage (VGE = 0) 600 V IC Continuous collector current at TC = 25 °C 40 40(1) 1. Limited by maximum junction temperature. A Continuous collector current at TC = 100 °C 20 20(1) A ICP (2) 2. Pulse width limited by maximum junction temperature and turn-off within RBSOA. Pulsed collector current 80 80(1) A VGE Gate-emitter voltage ±20 V IF Continuous forward current TC = 25 °C 40 40(1) A Continuous forward current at TC = 100 °C 20 20(1) IFP (2) Pulsed forward current 80 80(1) A PTOT Total dissipation at TC = 25 °C 167 37 W TSTG Storage temperature range - 55 to 150 °C TJ Operating junction temperature - 55 to 175 Table 3. Thermal data Symbol Parameter TO-220 D²PAK TO-220FP Unit RthJC Thermal resistance junction-case IGBT 0.9 4 °C/W RthJC Thermal resistance junction-case diode 2.5 5.6 °C/W RthJA Thermal resistance junction-ambient 62.5 °C/W
  • 4. Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF 4/22 DocID023740 Rev 4 2 Electrical characteristics TJ = 25 °C unless otherwise specified. Table 4. Static Symbol Parameter Test conditions Min. Typ. Max. Unit V(BR)CES Collector-emitter breakdown voltage (VGE = 0) IC = 2 mA 600 V VCE(sat) Collector-emitter saturation voltage VGE = 15 V, IC = 20 A 1.6 2.0 V VGE = 15 V, IC = 20 A TJ = 125 °C 1.75 VGE = 15 V, IC = 20 A TJ = 175 °C 1.8 VGE(th) Gate threshold voltage VCE = VGE, IC = 1 mA 5.0 6.0 7.0 V ICES Collector cut-off current (VGE = 0) VCE = 600 V 25 μA IGES Gate-emitter leakage current (VCE = 0) VGE = ± 20 V 250 nA Table 5. Dynamic Symbol Parameter Test conditions Min. Typ. Max. Unit Cies Input capacitance VCE = 25 V, f = 1 MHz, VGE = 0 - 2750 - pF Coes Output capacitance - 110 - pF Cres Reverse transfer capacitance - 65 - pF Qg Total gate charge VCC = 400 V, IC = 20 A, VGE = 15 V - 115 - nC Qge Gate-emitter charge - 22 - nC Qgc Gate-collector charge - 45 - nC
  • 5. DocID023740 Rev 4 5/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics Table 6. Switching characteristics (inductive load) Symbol Parameter Test conditions Min. Typ. Max. Unit td(on) Turn-on delay time VCE = 400 V, IC = 20 A, RG = 10 Ω, VGE = 15 V 42.5 - ns tr Current rise time 11.9 - ns (di/dt)on Turn-on current slope 1345 - A/μs td(on) Turn-on delay time VCE = 400 V, IC = 20 A, RG = 10 Ω, VGE = 15 V TJ = 175 °C 42.5 - ns tr Current rise time 13.4 ns (di/dt)on Turn-on current slope 1180 A/μs tr(Voff) Off voltage rise time VCE = 400 V, IC = 20 A, RG = 10 Ω, VGE = 15 V 20 - ns td(off) Turn-off delay time 177 - ns tf Current fall time 55 - ns tr(Voff) Off voltage rise time VCE = 400 V, IC = 20 A, RG = 10 Ω, VGE = 15 V TJ = 175 °C 26 - ns td(off) Turn-off delay time 173 - ns tf Current fall time 86 - ns tsc Short-circuit withstand time VCC ≤ 360 V, VGE = 15 V 3 5 - μs Table 7. Switching energy (inductive load) Symbol Parameter Test conditions Min. Typ. Max. Unit Eon (1) 1. Energy losses include reverse recovery of the diode. Turn-on switching losses VCE = 400 V, IC = 20 A, RG = 10 Ω, VGE = 15 V - 209 - μJ Eoff (2) 2. Turn-off losses include also the tail of the collector current. Turn-off switching losses - 261 - μJ Ets Total switching losses - 470 - μJ Eon (1) Turn-on switching losses VCE = 400 V, IC = 20 A, RG = 10 Ω, VGE = 15 V TJ = 175 °C - 480 - μJ Eoff (2) Turn-off switching losses - 416 - μJ Ets Total switching losses - 896 - μJ
  • 6. Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF 6/22 DocID023740 Rev 4 Table 8. Collector-emitter diode Symbol Parameter Test conditions Min. Typ. Max. Unit VF Forward on-voltage IF = 20 A IF = 20 A, TJ = 175 °C - 1.8 1.3 2.2 V V trr Reverse recovery time Vr = 60 V; IF = 20 A; diF/dt = 100 A / μs - 90 - ns Qrr Reverse recovery charge 110 nC Irrm Reverse recovery current 2.4 A trr Reverse recovery time Vr = 60 V; IF = 20 A; diF/dt = 100 A / μs TJ = 175 °C - 180 - ns Qrr Reverse recovery charge - 466 - nC Irrm Reverse recovery current - 5.2 - A
  • 7. DocID023740 Rev 4 7/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics 2.1 Electrical characteristics (curves) Figure 2. Output characteristics (TJ = 25°C) Figure 3. Output characteristics (TJ = 175°C) Figure 4. Transfer characteristics Figure 5. Normalized VGE(th) vs junction temperature 9 V IC 60 40 20 0 0 2 VCE(V)4 (A) 1 3 80 100 15 V 13 V 11 V AM16287v1 9 V 7 V 15 V IC 60 40 20 0 0 2 VCE(V)4 (A) 1 3 80 100 13 V 11 V AM16288v1 25 °C IC 60 40 20 0 7 9 VGE(V)11 (A) 8 10 80 100 175 °C -40 °C VCE= 5 V AM16289v1 VCE= VGE IC = 1 mA VGE(th) 0.9 0.8 0.7 0.6 -75 25 TJ(°C)125 (norm) -25 75 1 AM16292v1
  • 8. Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF 8/22 DocID023740 Rev 4 Figure 6. Collector current vs. case temperature for D²PAK and TO-220 Figure 7. Collector current vs. case temperature for TO-220FP Figure 8. Collector current vs. frequency for D²PAK and TO-220 Figure 9. Collector current vs. frequency for TO-220FP Figure 10. Power dissipation vs. case temperature for D²PAK and TO-220 Figure 11. Power dissipation vs. case temperature for TO-220FP IC 24 16 8 0 0 50 TC(°C)100 (A) 25 75 32 40 125 AM16282v1 IC 12 8 4 0 0 50 TC(°C)125 (A) 25 75 16 20 100 AM162821v1 IC 30 20 10 1 f(kHz) (A) Tc= 80°C Rectangular current shape (duty cycle= 0.5, VCC= 400 V Rg = 10 Ω, VGE= 0/15V, TJ= 175°C 10 40 Tc= 100°C 50 60 AM162981V1 IC 8 4 0 1 f(kHz) (A) Tc= 80°C Rectangular current shape (duty cycle= 0.5, VCC= 400 V Rg = 10 Ω, VGE= 0/15V, TJ= 175°C 10 12 Tc= 100°C 16 20 AM162982V1 Ptot 120 80 40 0 0 50 TC(°C)125 (W) 25 75 160 100 150 AM16281V1 Ptot 24 16 8 0 0 50 TC(°C)125 (W) 25 75 32 100 AM16284V1
  • 9. DocID023740 Rev 4 9/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics Figure 12. VCE(sat) vs. junction temperature Figure 13. VCE(sat) vs. collector current Figure 14. Forward bias safe operating area for D2 PAK and TO-220 Figure 15. Thermal impedance for D2 PAK and TO-220 Figure 16. Forward bias safe operating area for TO-220FP Figure 17. Thermal impedance for TO-220FP VCE(sat) 1.9 1.7 1.5 1.3 -75 25 TJ(°C)125 (V) -25 75 2.1 2.3 IC= 40 A VGE= 15 V IC= 20 A IC= 10 A AM16290V1 VCE(sat) 2.2 1.8 1.4 1.0 0 20 IC(A) (V) 10 30 VGE= 15 V TJ = 175 °C TJ = -40 °C TJ = 25 °C AM16291V1 (single pulse TC=25°C, TJ<=175°C; VGE=15V) IC 10 1 0.1 1 100 VCE(V) (A) 10 1 ms 100 µs VCE(sat)limit AM16280V1 10 -5 10 -4 10 -3 10 -2 10 -1 tp(s) 10 -2 10 -1 K 0.2 0.05 0.02 0.01 0.1 Zth=k Rthj-c δ=tp/τ tp τ Single pulse δ=0.5 ZthTO2T_B IC 10 1 0.1 1 100 VCE(V) (A) 10 1 ms 100 µs 1 µs (single pulse TC=25°C, TJ<=175°C; VGE=15V) VCE(sat)limit AM16283V1 Zth=k Rthj-c δ=tp/τ tp τ 10 -5 10 -4 10 -3 10 -2 10 -1 tp(s) 10 -3 10 -1 K 0.2 0.05 0.02 0.01 0.1 Single pulse δ=0.5 ZthTOF2T_B 10 -2 10
  • 10. Electrical characteristics STGB20H60DF, STGF20H60DF, STGP20H60DF 10/22 DocID023740 Rev 4 Figure 18. Diode VF vs. forward current Figure 19. Gate charge vs. gate-emitter voltage Figure 20. Capacitance variations vs. VCE Figure 21. Switching losses vs. gate resistance Figure 22. Switching losses vs. collector current Figure 23. Switching losses vs. temperature VF 1.9 1.5 1.1 10 50 IF(A) (V) 30 TJ= -40 °C 20 40 2.3 TJ= 25 °C TJ= 175 °C AM16293V1 VGE 8 4 0 0 Qg(nC) (V) 80 VCC= 400 V IC= 20 A 40 120 12 16 AM16294V1 C 1000 100 10 0.1 VCE(V) (pF) 10 Coes 1 Cies Cres AM16295V1 E 550 450 350 0 RG(Ω) (µJ) 20 EOFF 10 EON 30 40 650 750 VCC= 400 V, VGE = 15V, IC = 20 A, TJ = 175°C AM16296V1 E 600 400 200 10 IC(A) (µJ) 20 EOFF EON 30 800 1000 VCC= 400 V, VGE = 15V, Rg = 10 Ω, TJ = 175°C AM162961V1 E 400 300 200 25 TJ(°C) (µJ) 75 EOFF EON 125 VCC= 400 V, VGE = 15V, Rg = 10 Ω, IC = 20 A AM16297V1
  • 11. DocID023740 Rev 4 11/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Electrical characteristics Figure 24. Short-circuit time and current vs. VGE tsc 12 8 4 10 VGE(V) (µs) 11 tsc Isc 12 VCC= 360 V, Rg = 10 Ω 13 14 16 Isc (A) 50 150 250 350 AM16298V1
  • 12. Test circuits STGB20H60DF, STGF20H60DF, STGP20H60DF 12/22 DocID023740 Rev 4 3 Test circuits Figure 25. Test circuit for inductive load switching Figure 26. Gate charge test circuit Figure 27. Switching waveform Figure 28. Diode recovery time waveform AM01504v1 AM01505v1 AM01506v1 90% 10% 90% 10% VG VCE IC Td(on) Ton Tr(Ion) Td(off) Toff Tf Tr(Voff) Tcross 90% 10% AM01507v1 IRRM IF di/dt trr ta tb Qrr IRRM t VF dv/dt
  • 13. DocID023740 Rev 4 13/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Package mechanical data 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. TO-220FP mechanical data Dim. mm Min. Typ. Max. A 4.4 4.6 B 2.5 2.7 D 2.5 2.75 E 0.45 0.7 F 0.75 1 F1 1.15 1.70 F2 1.15 1.70 G 4.95 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
  • 14. Package mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF 14/22 DocID023740 Rev 4 Figure 29. TO-220FP drawing 7012510_Rev_K_B
  • 15. DocID023740 Rev 4 15/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Package mechanical data Table 10. TO-220 type A mechanical data Dim. mm 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 E 10 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 L 13 14 L1 3.50 3.93 L20 16.40 L30 28.90 ∅P 3.75 3.85 Q 2.65 2.95
  • 16. Package mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF 16/22 DocID023740 Rev 4 Figure 30. TO-220 type A drawing
  • 17. DocID023740 Rev 4 17/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Package mechanical data Table 11. D²PAK mechanical data Dim. mm 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 e 2.54 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 R 0.4 V2 0° 8°
  • 18. Package mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF 18/22 DocID023740 Rev 4 Figure 31. D²PAK drawing Figure 32. D²PAK footprint(a) a. All dimension are in millimeters 0079457_T 16.90 12.20 9.75 3.50 5.08 1.60 Footprint
  • 19. DocID023740 Rev 4 19/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Packaging mechanical data 5 Packaging mechanical data Table 12. D²PAK tape and reel mechanical data Tape Reel Dim. mm Dim. mm Min. Max. Min. Max. A0 10.5 10.7 A 330 B0 15.7 15.9 B 1.5 D 1.5 1.6 C 12.8 13.2 D1 1.59 1.61 D 20.2 E 1.65 1.85 G 24.4 26.4 F 11.4 11.6 N 100 K0 4.8 5.0 T 30.4 P0 3.9 4.1 P1 11.9 12.1 Base qty 1000 P2 1.9 2.1 Bulk qty 1000 R 50 T 0.25 0.35 W 23.7 24.3
  • 20. Packaging mechanical data STGB20H60DF, STGF20H60DF, STGP20H60DF 20/22 DocID023740 Rev 4 Figure 33. Tape Figure 34. Reel P1A0 D1 P0 F W E D B0 K0 T User direction of feed P2 10 pitches cumulative tolerance on tape +/- 0.2 mm User direction of feed R Bending radius Top cover tape AM08852v2 A D B Full radius G measured at hub C N REEL DIMENSIONS 40mm min. Access hole At sl ot location T Tape slot in core for tape start 25 mm min. width AM08851v2
  • 21. DocID023740 Rev 4 21/22 STGB20H60DF, STGF20H60DF, STGP20H60DF Revision history 6 Revision history Table 13. Document revision history Date Revision Changes 03-Oct-2012 1 Initial release. 18-Mar-2013 2 Added new order code STGF20H60DF, mechanical data Table 9 and Figure 29 on page 14. Added Chapter 2.1: Electrical characteristics (curves). 22-Mar-2013 3 Document status promoted from preliminary to production data. 03-Jun-2013 4 Updated PTOT in Table 2: Absolute maximum ratings, RthJC in Table 3: Thermal data and Figure 10: Power dissipation vs. case temperature for D²PAK and TO-220. Updated Section 4: Package mechanical data for TO-220.
  • 22. STGB20H60DF, STGF20H60DF, STGP20H60DF 22/22 DocID023740 Rev 4 Please Read Carefully: Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notice. All ST products are sold pursuant to ST’s terms and conditions of sale. Purchasers are solely responsible for the choice, selection and use of the ST products and services described herein, and ST assumes no liability whatsoever relating to the choice, selection or use of the ST products and services described herein. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted under this document. If any part of this document refers to any third party products or services it shall not be deemed a license grant by ST for the use of such third party products or services, or any intellectual property contained therein or considered as a warranty covering the use in any manner whatsoever of such third party products or services or any intellectual property contained therein. UNLESS OTHERWISE SET FORTH IN ST’S TERMS AND CONDITIONS OF SALE ST DISCLAIMS ANY EXPRESS OR IMPLIED WARRANTY WITH RESPECT TO THE USE AND/OR SALE OF ST PRODUCTS INCLUDING WITHOUT LIMITATION IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE (AND THEIR EQUIVALENTS UNDER THE LAWS OF ANY JURISDICTION), OR INFRINGEMENT OF ANY PATENT, COPYRIGHT OR OTHER INTELLECTUAL PROPERTY RIGHT. ST PRODUCTS ARE NOT AUTHORIZED FOR USE IN WEAPONS. NOR ARE ST PRODUCTS DESIGNED OR AUTHORIZED FOR USE IN: (A) SAFETY CRITICAL APPLICATIONS SUCH AS LIFE SUPPORTING, ACTIVE IMPLANTED DEVICES OR SYSTEMS WITH PRODUCT FUNCTIONAL SAFETY REQUIREMENTS; (B) AERONAUTIC APPLICATIONS; (C) AUTOMOTIVE APPLICATIONS OR ENVIRONMENTS, AND/OR (D) AEROSPACE APPLICATIONS OR ENVIRONMENTS. WHERE ST PRODUCTS ARE NOT DESIGNED FOR SUCH USE, THE PURCHASER SHALL USE PRODUCTS AT PURCHASER’S SOLE RISK, EVEN IF ST HAS BEEN INFORMED IN WRITING OF SUCH USAGE, UNLESS A PRODUCT IS EXPRESSLY DESIGNATED BY ST AS BEING INTENDED FOR “AUTOMOTIVE, AUTOMOTIVE SAFETY OR MEDICAL” INDUSTRY DOMAINS ACCORDING TO ST PRODUCT DESIGN SPECIFICATIONS. PRODUCTS FORMALLY ESCC, QML OR JAN QUALIFIED ARE DEEMED SUITABLE FOR USE IN AEROSPACE BY THE CORRESPONDING GOVERNMENTAL AGENCY. Resale of ST products with provisions different from the statements and/or technical features set forth in this document shall immediately void any warranty granted by ST for the ST product or service described herein and shall not create or extend in any manner whatsoever, any liability of ST. ST and the ST logo are trademarks or registered trademarks of ST in various countries. Information in this document supersedes and replaces all information previously supplied. The ST logo is a registered trademark of STMicroelectronics. All other names are the property of their respective owners. © 2013 STMicroelectronics - All rights reserved STMicroelectronics group of companies Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan - Malaysia - Malta - Morocco - Philippines - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States of America www.st.com