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PDF STGB15M65DF2 Data sheet ( Hoja de datos )

Número de pieza STGB15M65DF2
Descripción Trench gate field-stop IGBT
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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STGB15M65DF2
Trench gate field-stop IGBT M series, 650 V, 15 A low loss
Datasheet - production data
TAB
3
1
D2PAK
Figure 1: Internal schematic diagram
Features
6 µs of short-circuit withstand time
VCE(sat) = 1.55 V (typ.) @ IC = 15 A
Tight parameter distribution
Safer paralleling
Low thermal resistance
Soft and very fast recovery antiparallel diode
Applications
Motor control
UPS
PFC
Description
This device is an IGBT developed using an
advanced proprietary trench gate field-stop
structure. The device is part of the M series of
IGBTs, which represent an optimum compromise
in performance to maximize the efficiency of
inverter systems where low-loss and short-circuit
capability are essential. Furthermore, a positive
VCE(sat) temperature coefficient and tight
parameter distribution result in safer paralleling
operation.
Order code
STGB15M65DF2
Table 1: Device summary
Marking
Package
G15M65DF2
D²PAK
Packing
Tape and reel
November 2015
DocID025356 Rev 2
This is information on a product in full production.
1/19
www.st.com

1 page




STGB15M65DF2 pdf
STGB15M65DF2
Symbol
Electrical characteristics
Table 6: IGBT switching characteristics (inductive load)
Parameter
Test conditions
Min. Typ. Max. Unit
td(on)
tr
(di/dt)on
td(off)
tf
Eon(1)
Eoff(2)
Ets
td(on)
tr
(di/dt)on
td(off)
tf
Eon
Eoff
Ets
tsc
Turn-on delay time
Current rise time
Turn-on current slope
Turn-off-delay time
Current fall time
Turn-on switching losses
Turn-off switching losses
Total switching losses
Turn-on delay time
Current rise time
Turn-on current slope
Turn-off-delay time
Current fall time
Turn-on switching losses
Turn-off switching losses
Total switching losses
Short-circuit withstand
time
VCE = 400 V, IC = 15 A,
VGE = 15 V, RG = 12 Ω
(see Figure 29: " Test circuit
for inductive load switching" )
VCE = 400 V, IC = 15 A,
VGE = 15 V, RG = 12 Ω
TJ = 175 °C (see Figure 29: "
Test circuit for inductive load
switching" )
VCC 400 V, VGE = 15 V,
TJstart = 150 °C
24 - ns
7.8 - ns
1570 - A/µs
93 - ns
106 -
ns
0.09 - mJ
0.45 - mJ
0.54 - mJ
24.8 -
ns
9.2 - ns
1300 - A/µs
96 - ns
169 -
ns
0.22 - mJ
0.61 - mJ
0.83 - mJ
6 - µs
Notes:
(1)Energy losses include reverse recovery of the diode.
(2)Turn-off losses also include the tail of the collector current.
Table 7: Diode switching characteristics (inductive load)
Symbol
Parameter
Test conditions
Min. Typ. Max. Unit
trr
Qrr
Irrm
dIrr/dt
Err
trr
Qrr
Irrm
dIrr/dt
Err
Reverse recovery time
Reverse recovery charge
Reverse recovery current
Peak rate of fall of reverse
recovery current during tb
Reverse recovery energy
Reverse recovery time
Reverse recovery charge
Reverse recovery current
Peak rate of fall of reverse
recovery current during tb
Reverse recovery energy
IF = 15 A, VR = 400 V,
VGE = 15 V (see Figure 29: "
Test circuit for inductive load
switching") di/dt = 1000 A/µs
IF = 15 A, VR = 400 V,
VGE = 15 V TJ = 175 °C
(see Figure 29: " Test circuit
for inductive load switching")
di/dt = 1000 A/µs
- 142 -
- 525 -
- 13.4 -
ns
nC
A
- 790 - A/µs
- 64 -
- 241 -
- 1690 -
- 20 -
µJ
ns
nC
A
- 420 - A/µs
- 176 -
µJ
DocID025356 Rev 2
5/19

5 Page





STGB15M65DF2 arduino
STGB15M65DF2
Electrical characteristics
Figure 28: Thermal impedance for diode
DocID025356 Rev 2
11/19

11 Page







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