STG(B,D,F,P)5H60DF Datasheet by STMicroelectronics

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123
TO-220
TAB
12
3
TO-220FP
1
3
TAB
D PAK
2DPAK
1
3
2
TAB
C(2, TAB)
E(3) NG1E3C2T
G(1)
Features
High-speed switching
Tight parameter distribution
Safe paralleling
Low thermal resistance
Short-circuit rated
Ultrafast soft recovery antiparallel diode
Applications
Motor control
UPS, PFC
Description
These devices are IGBTs developed using an advanced proprietary trench gate field-
stop structure. These devices are part of the H series of IGBTs, which represents an
optimum compromise between conduction and switching losses to maximize the
efficiency of high switching frequency converters. Furthermore, a slightly positive
VCE(sat) temperature coefficient and very tight parameter distribution result in safer
paralleling operation.
Product status link
STGB5H60DF
STGD5H60DF
STGF5H60DF
STGP5H60DF
Trench gate field-stop 600 V, 5 A high speed H series IGBT
STGB5H60DF, STGD5H60DF
STGF5H60DF, STGP5H60DF
Datasheet
DS10745 - Rev 4 - September 2018
For further information contact your local STMicroelectronics sales office.
www.st.com
1Electrical ratings
Table 1. Absolute maximum ratings
Symbol Parameter
Value
Unit
D2PAK, TO-220 DPAK TO-220FP
VCES Collector-emitter voltage (VGE = 0) 600 V
IC
Continuous collector current at TC = 25 °C 10 10 (1)
A
Continuous collector current at TC = 100 °C 55 (1)
ICP (2) Pulsed collector current 20 20 (1) A
VGE Gate-emitter voltage ±20 V
IF
Continuous forward current TC = 25 °C 10 10 (1)
A
Continuous forward current at TC = 100 °C 55 (1)
IFP (2) Pulsed forward current 20 20 (1) A
VISO
Insulation withstand voltage (RMS) from all
three leads to external heat sink
(t = 1 s; Tc = 25 °C)
2500 V
PTOT Total dissipation at TC = 25 °C 88 83 24 W
TSTG Storage temperature range -55 to 150
°C
TJOperating junction temperature range -55 to 175
1. Limited by maximum junction temperature.
2. Pulse width limited by maximum junction temperature.
Table 2. Thermal data
Symbol Parameter
Value
Unit
D2PAK, TO-220 DPAK TO-220FP
RthJC Thermal resistance junction-case IGBT 1.7 1.8 6.2 °C/W
RthJC Thermal resistance junction-case diode 4 4.5 7 °C/W
RthJA Thermal resistance junction-ambient 62.5 100 62.5 °C/W
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical ratings
DS10745 - Rev 4 page 2/31
2Electrical characteristics
TC = 25 °C unless otherwise specified.
Table 3. Static
Symbol Parameter Test conditions Min. Typ. Max. Unit
V(BR)CES Collector-emitter breakdown voltage VGE = 0 V, IC = 2 mA 600 V
VCE(sat) Collector-emitter saturation voltage
VGE = 15 V, IC= 5 A 1.5 1.95
V
VGE = 15 V, IC = 5 A
TJ = 125 °C 1.6
VGE = 15 V, IC = 5 A
TJ = 175 °C 1.7
VGE(th) Gate threshold voltage VCE = VGE, IC = 250 μA 4.8 6.2 6.9 V
ICES Collector cut-off current
VCE = 600 V
VGE = 0 V 25 μA
IGES Gate-emitter leakage current
VGE = ±20 V
VCE = 0 V ±250 nA
Table 4. Dynamic
Symbol Parameter Test conditions Min. Typ. Max. Unit
Cies Input capacitance
VCE = 25 V, f = 1 MHz,
VGE = 0 V -
855
- pF
Coes Output capacitance 34
Cres Reverse transfer capacitance 19
QgTotal gate charge
VCC = 480 V, IC = 5 A,
VGE = 0 to 15 V -
43
- nC
Qge Gate-emitter charge 17.5
Qgc Gate-collector charge 6.5
Table 5. Switching characteristics (inductive load)
Symbol Parameter Test conditions Min. Typ. Max. Unit
td(on) Turn-on delay time
VCE = 400 V, IC = 5 A,
RG = 47 Ω, VGE = 15 V
-
30
-
ns
trCurrent rise time 10.8
(di/dt)on Turn-on current slope 370 A/μs
td(on) Turn-on delay time VCE = 400 V, IC = 5 A,
RG = 47 Ω, VGE = 15 V
TJ = 175 °C
28
ns
trCurrent rise time 11
(di/dt)on Turn-on current slope 363 A/μs
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics
DS10745 - Rev 4 page 3/31
Symbol Parameter Test conditions Min. Typ. Max. Unit
tr(Voff) Off voltage rise time
VCE = 400 V, IC = 5 A,
RG = 47 Ω, VGE = 15 V
-
29
- ns
td(off) Turn-off delay time 140
tfCurrent fall time 95
tr(Voff) Off voltage rise time VCE = 400 V, IC = 5 A,
RG = 47 Ω, VGE = 15 V
TJ = 175 °C
44
td(off) Turn-off delay time 146
tfCurrent fall time 134
tsc Short-circuit withstand time
VCC ≤ 360 V, VGE = 15 V,
RG = 47 Ω - 5 - μs
Table 6. Switching energy (inductive load)
Symbol Parameter Test conditions Min. Typ. Max. Unit
Eon (1) Turn-on switching energy
VCE = 400 V, IC = 5 A,
RG = 47 Ω, VGE = 15 V
-
56
- μJ
Eoff (2) Turn-off switching energy 78.5
Ets Total switching energy 134.5
Eon(1) Turn-on switching energy VCE = 400 V, IC = 5 A,
RG = 47 Ω, VGE = 15 V
TJ = 175 °C
87
Eoff (2) Turn-off switching energy 134
Ets Total switching energy 221
1. Including the reverse recovery of the diode.
2. Including the tail of the collector current.
Table 7. Collector-emitter diode
Symbol Parameter Test conditions Min. Typ. Max. Unit
VFForward on-voltage
IF = 5 A
-
2.1
- V
IF = 5 A, TJ = 175 °C 1.65
trr Reverse recovery time
VCC = 400 V; IF = 5 A;
diF/dt = 100 A / μs
-
134.5
-
ns
Qrr Reverse recovery charge 48 nC
Irrm Reverse recovery current 1.38 A
trr Reverse recovery time VCC = 400 V; IF = 5 A;
diF/dt = 100 A / μs
TJ = 175 °C
157 ns
Qrr Reverse recovery charge 165 nC
Irrm Reverse recovery current 2.4 A
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics
DS10745 - Rev 4 page 4/31
\Gansflsusilswmt 15V.T,sl75'C mammmaszwcm 15V,T,s175'c Isamwsaszsmv usamnsqsaazrrm
2.1 Electrical characteristics curves
Figure 1. Power dissipation vs case temperature for
D2PAK and TO-220
IGBT150515EI62PPDT
80
60
40
20
0
-50 0 50 100 150
P TOT
(W)
TC (°C)
VGE 15 V, Tj 175 °C
Figure 2. Collector current vs case temperature for
D2PAK, DPAK and TO-220
IGBT150515EI62PCCT
10
8
6
4
2
0
-50 0 50 100 150
IC
(A)
TC (°C)
VGE 15 V, Tj 175 °C
Figure 3. Power dissipation vs case temperature for DPAK
IGBT180515EI62DPDT
80
60
40
20
0
-50 0 50 100 150
P TOT
(W)
TC (°C)
VGE 15 V, Tj 175 °C
Figure 4. Collector current vs case temperature for DPAK
IGBT150515EI62PCCT
10
8
6
4
2
0
-50 0 50 100 150
IC
(A)
TC (°C)
VGE 15 V, Tj 175 °C
Figure 5. Power dissipation vs case temperature for
TO-220FP
IGBT180515EI62FPDT
25
20
15
10
5
0
-50 0 50 100 150
P TOT
(W)
TC (°C)
VGE 15 V, Tj 175 °C
Figure 6. Collector current vs case temperature for
TO-220FP
IGBT180515EI62FCCT
6
5
4
3
2
1
0
-50 0 50 100 150
I C
(A)
TC (°C)
VGE 15 V, Tj 175 °C
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics curves
DS10745 - Rev 4 page 5/31
TJ=175 °c 11:25 unto-c leansnmsmzpccs
Figure 7. Output characteristics (TJ = 25°C)
IGBT150515EI62POC25
16
12
8
4
001234
I C
(A)
V CE (V)
V GE =15 V 13 V
11 V
9 V
7 V
Figure 8. Output characteristics (TJ = 175°C)
IGBT150515EI62GOC175
16
12
8
4
001234
I C
(A)
VCE (V)
VGE = 15 V
13 V
11 V
9 V
7 V
Figure 9. VCE(sat) vs junction temperature
IGBT150515EI62PVCET
2.0
1.8
1.6
1.4
1.2
1.0
-50 0 50 100 150
V CE(sat)
(V)
T J (°C)
V GE = 15 V
I C = 10 A
I C = 5 A
I C = 2.5 A
Figure 10. VCE(sat) vs collector current
IGBT150515EI62PVCEC
2.8
2.4
2.0
1.6
1.2
0.80 4 8 12 16
VCE(sat)
(V)
IC (A)
VGE = 15 V Tj = 175 °C
Tj = 25 °C
Tj = -40 °C
Figure 11. Collector current vs switching frequency for
D2PAK, DPAK and TO-220
IGBT150515EI62PCCS
24
20
16
12
8
4
0
10 010 110 2
I C
(A)
f (kHz)
Rectangular current shape
(duty cycle=0.5, V CC =400 V RG =22 Ω,
V GE =0/15 V , T j =175 °C)
T C = 100 °C
T C = 80 °C
Figure 12. Collector current vs switching frequency for
TO-220FP
IGBT180515EI62FCCS
10
8
6
4
2
0
10 010 110 2
I C
(A)
f (kHz)
Rectangular current shape
(duty cycle=0.5, VCC =400 V,
RG =22 Ω, VGE =0/15 V, Tj =175°C)
T C = 80 °C
T C = 100 °C
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics curves
DS10745 - Rev 4 page 6/31
\GBY150515EISZPYCH Icansnmszmzwan
Figure 13. Forward bias safe operating area for D2PAK,
DPAK and TO-220
IGBT150515EI62PFSOA
10 1
10 0
10 -1
10 010 110 2
I C
(A)
V CE (V)
single pulse, T C = 25°C
T J = 175 °C, V GE = 15 V
t p =1 µs
t p =10 µs
t p =100 µs
t p =1 ms
Figure 14. Forward bias safe operating area for TO-220FP
IGBT180515EI62FFSOA
10 1
10 0
10 -1
10 010 110 2
I C
(A)
V CE (V)
t p =1 µs
t p =10 µs
t p =100 µs
t p =1 ms
single pulse, T C = 25°C
T J = 175 °C, V GE = 15 V
Figure 15. Transfer characteristics
IGBT150515EI62PTCH
16
12
8
4
05 6 7 8 9 10
I C
(A)
V GE (V)
V CE = 6 V
T J = 25 °C
T J = 175 °C
Figure 16. Diode VF vs forward current
IGBT150515EI62PDVF
3.5
3.0
2.5
2.0
1.5
1.0
0.5
0.00 4 8 12 16
V F
(V)
I F (A)
T j = -40 °C
T j = 25 °C
T j = 175 °C
Figure 17. Normalized VGE(th) vs junction temperature
IGBT180515EI62NVGE
1.1
1.0
0.9
0.8
0.7
0.6
-50 0 50 100 150
V GE(th)
(norm.)
T J (°C)
IC = 250 μA, VCE = VGE
Figure 18. Normalized V(BR)CES vs junction temperature
IGBT150515EI62NVBR
1.1
1.0
0.9
-50 0 50 100 150
V BR(CES)
(norm.)
T J (°C)
I C = 2 mA
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics curves
DS10745 - Rev 4 page 7/31
Figure 19. Capacitance variation
IGBT150515EI62PCVR
10 3
10 2
10 1
10 0
10 -1 10 010 110 2
C
(pF)
V CE (V)
C ies
C oes
C res
f = 1 MHz
Figure 20. Gate charge vs. gate-emitter voltage
IGBT150515EI62PGCGE
16
12
8
4
00 8 16 24 32 40
V GE
(V)
Q g (nC)
V CC =480 V, I C =5 A, I G =1 mA
Figure 21. Switching energy vs collector current
IGBT150515EI62PSLC
0.25
0.20
0.15
0.10
0.05
0.000 2 4 6 8 10
E
(mJ)
I C (A)
V CC = 400 V, R G = 47 Ω
V GE = 15 V, T j = 175 °C
E off
E on
Figure 22. Switching energy vs gate resistance
IGBT150515EI62PSLG
0.30
0.25
0.20
0.15
0.10
0.05
0.000 50 100 150 200 250 300
E
(mJ)
R G (Ω)
V CC = 400 V, I C = 5 A
V GE = 15 V, T j = 175 °C
E off
E on
Figure 23. Switching energy vs temperature
IGBT150515EI62PSLT
0.16
0.12
0.08
0.04
0.000 50 100 150
E
(mJ)
T J (°C)
E off
V CC = 400 V, I C = 5 A
R G = 47 Ω, V GE = 15 V
E on
Figure 24. Switching energy vs collector-emitter voltage
IGBT150515EI62PSLV
0.16
0.12
0.08
0.04
0.00
150 200 250 300 350 400 450
E
(mJ)
V CE (V)
I C = 5 A, R G = 47 Ω
V GE = 15 V, T j = 175 °C
E off
E on
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics curves
DS10745 - Rev 4 page 8/31
Figure 25. Short circuit time and current vs VGE
IGBT150515EI62PSCV
16
12
8
4
09 10 11 12 13 14 15
t SC
(µs)
V GE (V)
VCC 300 V
TJ 150 °C
t SC I SC
90
70
50
30
10
I SC
(A)
Figure 26. Switching times vs collector current
IGBT150515EI62PSTC
10 2
10 1
10 0
02468
t
(ns)
I C (A)
V CC = 400 V, V GE = 15 V
R G = 47 Ω, T j = 175 °C
t f
t d(off)
t r
t d(on)
Figure 27. Switching times vs gate resistance
IGBT150515EI62PSTR
102
101
100
0 50 100 150 200 250 300
t
(ns)
R G (Ω)
t rVCC = 400 V, VGE = 15V
I C = 5 A, Tj = 175 °C
t d(on)
t d(off)
t f
Figure 28. Reverse recovery current vs diode current
slope
IGBT150515EI62PRRC
10
8
6
4
2
00 200 400 600 800
I rrm
(A)
di/dt (A/µs)
V CC = 400 V, V GE = 15 V
I F = 5 A, T J = 175 °C
Figure 29. Reverse recovery time vs diode current slope
IGBT150515EI62PRRT
160
140
120
100
80
60
400 200 400 600 800
t rr
(ns)
di/dt (A/µs)
V CC = 400 V, V GE = 15 V
I F = 5 A, T J = 175 °C
Figure 30. Reverse recovery charge vs diode current
slope
IGBT150515EI62PRRQ
0.22
0.20
0.18
0.16
0.140 200 400 600 800
Q rr
(µC)
di/dt (A/µs)
V CC = 400 V, V GE = 15 V
I F = 5 A, T J = 175 °C
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics curves
DS10745 - Rev 4 page 9/31
IGET1 sosuszmm D 200 400 600 800 d\ K 10" am swm: rams: ‘0” 10’s 10" 103 ‘0’1 to"~,(s)
Figure 31. Reverse recovery energy vs diode current slope
IGBT150515EI62PRRE
44
40
36
32
280 200 400 600 800
E rr
(mJ)
di/dt (A/µs)
V CC = 400 V, V GE = 15 V
I F = 5 A, T J = 175 °C
Figure 32. Thermal impedance for D2PAK, DPAK and TO-220 IGBT
10 10 10 10 10 tp(s)
-5 -4 -3 -2 -1
10-2
10-1
K
0.2
0.05
0.02
0.01
0.1
Zth=k Rthj-c
δ=tp/t
tp
t
Single pulse
δ=0.5
ZthTO2T_B
Figure 33. Thermal impedance for D2PAK, DPAK and TO-220 diode
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Electrical characteristics curves
DS10745 - Rev 4 page 10/31
v, =2ov=vWAX W, IG:CONSY Va 47 n t n IDUnF Va 40 am AMMSD‘N!
3Test circuits
Figure 34. Test circuit for inductive load switching
A A
C
E
G
B
R
G
+
-
G
C3.3
µF 1000
µF
L=100 µH
V
CC
E
D.U.T
B
AM01504v1
Figure 35. Gate charge test circuit
AM01505v1
k
k
k
k
k
k
Figure 36. Switching waveform
AM01506v1
90%
10%
90%
10%
VG
VCE
IC
Td(on)
Ton
Tr(Ion)
Td(off)
Toff
Tf
Tr(Voff)
Tcross
90%
10%
Figure 37. Diode reverse recovery waveform
25
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Test circuits
DS10745 - Rev 4 page 11/31
4Package information
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.
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Package information
DS10745 - Rev 4 page 12/31
j]. \ E c2+ .E/2_ LI fl D H 7 — 4E T L ’ L2 : . J! b a.9..- ‘ b2 6 JL SEA 77N6 PLANE COPLANAR/TY A 7 THERMAL PAD —> \ R \ GAUGE PLANE V2
4.1 D²PAK (TO-263) type A package information
Figure 38. D²PAK (TO-263) type A package outline
0079457_25
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
D²PAK (TO-263) type A package information
DS10745 - Rev 4 page 13/31
Table 8. D²PAK (TO-263) type A package 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 7.75 8.00
D2 1.10 1.30 1.50
E 10.00 10.40
E1 8.30 8.50 8.70
E2 6.85 7.05 7.25
e 2.54
e1 4.88 5.28
H 15.00 15.85
J1 2.49 2.69
L 2.29 2.79
L1 1.27 1.40
L2 1.30 1.75
R 0.40
V2 0°
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
D²PAK (TO-263) type A package information
DS10745 - Rev 4 page 14/31
76.9 .7722 4» 3.5 9.75
Figure 39. D²PAK (TO-263) recommended footprint (dimensions are in mm)
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
D²PAK (TO-263) type A package information
DS10745 - Rev 4 page 15/31
Ia mm; (umulmwe In‘erante on law +1702 mm m D 32 OOO®®OOO®OO A F w 5' O G) G) )9 ® 3 Fm mad‘ine ref, only M, P‘ m Indudmgdlafland rad" (omenmz Mound an —> Immmmmeed Q § § 9 Q 9 9 9 9 9 l l l w ‘ ‘ A I I I I I I ’ aenqu IadIus usenlmmmofleed AMOBBSZVI
4.2 D²PAK packing information
Figure 40. D²PAK tape outline
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
D²PAK packing information
DS10745 - Rev 4 page 16/31
Fun radius; ,—_\_‘_l_/’ 40mm 7“ access al s‘ot
Figure 41. D²PAK reel outline
A
D
B
Full radius
Tape slot
in core for
tape start
2.5mm min.width
G measured
at hub
C
N
40mm min.
access hole
at slot location
T
AM06038v1
Table 9. 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 quantity 1000
P2 1.9 2.1 Bulk quantity 1000
R 50
T 0.25 0.35
W 23.7 24.3
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
D²PAK packing information
DS10745 - Rev 4 page 17/31
L2 b4 SEA TING PLANE c2 THERMAL PAD A1 2X) GAUGE P ; E
4.3 DPAK (TO-252) type A2 package information
Figure 42. DPAK (TO-252) type A2 package outline
0068772_type-A2_rev25
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DPAK (TO-252) type A2 package information
DS10745 - Rev 4 page 18/31
Table 10. DPAK (TO-252) type A2 mechanical data
Dim.
mm
Min. Typ. Max.
A 2.20 2.40
A1 0.90 1.10
A2 0.03 0.23
b 0.64 0.90
b4 5.20 5.40
c 0.45 0.60
c2 0.48 0.60
D 6.00 6.20
D1 4.95 5.10 5.25
E 6.40 6.60
E1 5.10 5.20 5.30
e 2.159 2.286 2.413
e1 4.445 4.572 4.699
H 9.35 10.10
L 1.00 1.50
L1 2.60 2.80 3.00
L2 0.65 0.80 0.95
L4 0.60 1.00
R 0.20
V2 0°
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DPAK (TO-252) type A2 package information
DS10745 - Rev 4 page 19/31
El c2 Na. b4 (L1)
4.4 DPAK (TO-252) type C2 package information
Figure 43. DPAK (TO-252) type C2 package outline
0068772_C2_25
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DPAK (TO-252) type C2 package information
DS10745 - Rev 4 page 20/31
Table 11. DPAK (TO-252) type C2 mechanical data
Dim.
mm
Min. Typ. Max.
A 2.20 2.30 2.38
A1 0.90 1.01 1.10
A2 0.00 0.10
b 0.72 0.85
b4 5.13 5.33 5.46
c 0.47 0.60
c2 0.47 0.60
D 6.00 6.10 6.20
D1 5.10 5.60
E 6.50 6.60 6.70
E1 5.20 5.50
e 2.186 2.286 2.386
H 9.80 10.10 10.40
L 1.40 1.50 1.70
L1 2.90 REF
L2 0.90 1.25
L3 0.51 BSC
L4 0.60 0.80 1.00
L6 1.80 BSC
θ1 5°
θ2 5°
V2 0°
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DPAK (TO-252) type C2 package information
DS10745 - Rev 4 page 21/31
O®OO ‘ 4 5? E 4K o o 0 $1 (5 o o ? [gm 0 ® * ‘ ( ' w \ Wk 3 8 iMEéHIMEHiM ¢¢¢¢¢¢¢¢¢¢¢¢¢ n
4.5 DPAK (TO-252) packing information
Figure 44. DPAK (TO-252) tape outline
P1
A0 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
B1
For machine ref. only
including draft and
radii concentric around B0
AM08852v1
Top cover
tape
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DPAK (TO-252) packing information
DS10745 - Rev 4 page 22/31
Fun radius; ,—_\_‘_l_/ 40mm 7“ access al s‘ot
Figure 45. DPAK (TO-252) reel outline
A
D
B
Full radius
Tape slot
in core for
tape start
2.5mm min.width
G measured
at hub
C
N
40mm min.
access hole
at slot location
T
AM06038v1
Table 12. DPAK (TO-252) tape and reel mechanical data
Tape Reel
Dim.
mm
Dim.
mm
Min. Max. Min. Max.
A0 6.8 7 A 330
B0 10.4 10.6 B 1.5
B1 12.1 C 12.8 13.2
D 1.5 1.6 D 20.2
D1 1.5 G 16.4 18.4
E 1.65 1.85 N 50
F 7.4 7.6 T 22.4
K0 2.55 2.75
P0 3.9 4.1 Base qty. 2500
P1 7.9 8.1 Bulk qty. 2500
P2 1.9 2.1
R 40
T 0.25 0.35
W 15.7 16.3
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DPAK (TO-252) packing information
DS10745 - Rev 4 page 23/31
L7 *3, L6 .31— «i6 L2 L4 L3
4.6 TO-220FP package information
Figure 46. TO-220FP package outline
7012510_Rev_12_B
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
TO-220FP package information
DS10745 - Rev 4 page 24/31
Table 13. TO-220FP package 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
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
TO-220FP package information
DS10745 - Rev 4 page 25/31
aP 5 F 0”— ° J, J __ D l__ L. L20 P Q g Ltl b1(X3)——| L‘ J1 L + f 12 (x5) sL—l
4.7 TO-220 type A package information
Figure 47. TO-220 type A package outline
0015988_typeA_Rev_21
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
TO-220 type A package information
DS10745 - Rev 4 page 26/31
Table 14. TO-220 type A package mechanical data
Dim.
mm
Min. Typ. Max.
A 4.40 4.60
b 0.61 0.88
b1 1.14 1.55
c 0.48 0.70
D 15.25 15.75
D1 1.27
E 10.00 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 13.00 14.00
L1 3.50 3.93
L20 16.40
L30 28.90
øP 3.75 3.85
Q 2.65 2.95
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
TO-220 type A package information
DS10745 - Rev 4 page 27/31
5Ordering information
Table 15. Order codes
Order code Marking Package Packing
STGB5H60DF GB5H60DF D2PAK Tape and reel
STGD5H60DF GD5H60DF DPAK
STGF5H60DF GF5H60DF TO-220FP
Tube
STGP5H60DF GP5H60DF TO-220
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Ordering information
DS10745 - Rev 4 page 28/31
Revision history
Table 16. Document revision history
Date Version Changes
28-Nov-2014 1 Initial release.
23-Feb-2015 2 Updated Section 2: Electrical characteristics and Section 4: Package information.
Minor text changes.
18-May-2015 3
Text and formatting changes throughout document
In Section 1: Electrical ratings:
- updated Table 2 and Table 3
In Section 2: Electrical characteristics:
- updated Table 4, Table 5, Table 6, Table 7 and Table 8
Added Section 2.1: Electrical characteristics (curves)
Updated Section 4.2: DPAK package information
Document status promoted from “preliminary data” to “production data”
18-Sep-2018 4
Removed maturity status indication from cover page.
Updated Section 4 Package information.
Minor text changes.
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DS10745 - Rev 4 page 29/31
Contents
1Electrical ratings ..................................................................2
2Electrical characteristics...........................................................3
2.1 Electrical characteristics curves ..................................................5
3Test circuits ......................................................................11
4Package information..............................................................12
4.1 D²PAK (TO-263) type A package information ......................................12
4.2 D²PAK packing information .....................................................15
4.3 DPAK (TO-252) type A2 package information ......................................17
4.4 DPAK (TO-252) type C2 package information ......................................19
4.5 DPAK (TO-252) packing information..............................................21
4.6 TO-220FP package information .................................................23
4.7 TO-220 type A package information ..............................................25
5Ordering information .............................................................28
Revision history .......................................................................29
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
Contents
DS10745 - Rev 4 page 30/31
IMPORTANT NOTICE – PLEASE READ CAREFULLY
STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST
products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST
products are sold pursuant to ST’s terms and conditions of sale in place at the time of order acknowledgement.
Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of
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Information in this document supersedes and replaces information previously supplied in any prior versions of this document.
© 2018 STMicroelectronics – All rights reserved
STGB5H60DF, STGD5H60DF, STGF5H60DF, STGP5H60DF
DS10745 - Rev 4 page 31/31

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