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Número de pieza STGIF5CH60TS-E
Descripción IGBT
Fabricantes STMicroelectronics 
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STGIF5CH60TS-E
SLLIMM™ - 2nd series
IPM, 3-phase inverter, 5 A, 600 V IGBTs
Datasheet - preliminary data
Applications
3-phase inverters for motor drives
Home appliances such as washing machines,
refrigerators, air conditioners and sewing
machine
Features
IPM 5 A, 600 V 3-phase IGBT inverter bridge
including 2 control ICs for gate driving and
freewheeling diodes
3.3 V, 5 V TTL/CMOS inputs with hysteresis
Internal bootstrap diode
Under-voltage lockout of gate drivers
Smart shutdown function
Shutdown input/fault output
Separate open emitter outputs
Temperature sensor integrated
Comparator for fault protection
TGFS IGBTs
Very fast, soft recovery diodes
85 kNTC UL 1434 CA 4 recognized
Fully isolated package
Isolation rating of 1500 Vrms/min
SLLIMM UL 1557 recognition on going
Description
This second series of SLLIMM (small low-loss
intelligent molded module) provides a compact,
high performance AC motor drive in a simple,
rugged design. It combines new ST proprietary
control ICs (one LS and one HS driver) with the
improved trench gate field-stop IGBT, making it
ideal for 3-phase inverters systems such as home
appliances and air conditioners. SLLIMM™ is a
trademark of STMicroelectronics.
Order code
STGIF5CH60TS-E
Table 1. Device summary
Marking
Package
GIF5CH60TS-E
SDIP2F-26L
August 2014
DocID026577 Rev 2
This is preliminary information on a new product now in development or undergoing evaluation. Details are subject to
change without notice.
Packaging
Tube
1/22
www.st.com

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STGIF5CH60TS-E pdf
STGIF5CH60TS-E
2 Absolute maximum ratings
Absolute maximum ratings
(Tj= 25°C unless otherwise noted).
Symbol
Table 3. Inverter parts
Parameter
VCC Supply voltage between P-N, -U,-V
VCC(surge) Supply voltage surge between P-N, -U,-V
VCES Collector-emitter voltage each IGBT
IC Continuous collector current each IGBT
ICP Peak collector current each IGBT (less than 1ms)
PTOT Total dissipation at TC=25°C each IGBT
Value
450
500
600
5
10
-
Unit
V
V
V
A
A
W
Symbol
VCC
VBOOT
VOUT
VCIN
VIN
VSD/OD
IOD
VTSO
Table 4. Control parts
Parameter
Supply voltage between VCCH-GND, VCCL-GND
Bootstrap voltage
Output voltage between U, V, W and GND
Comparator input voltage
Logic input voltage applied between HINx, LINx and
GND
Open drain voltage
Open drain sink current
Temperature sensor output voltage
Min
-0.3
-0.3
VBOOT -
20
-0.3
-0.3
-0.3
-
-0.3
Max
20
620
VBOOT +
0.3
15
15
15
10
7
Unit
V
V
V
V
V
V
mA
V
Table 5. Total system
Symbol
Parameter
VISO
TJ
TC
Isolation withstand voltage applied between each pin and
heat sink plate (AC voltage, t = 60sec.)
Power chips operating junction temperature
Module case operation temperature
Value
1500
-40 to 150
-40 to 125
Unit
Vrms
°C
°C
DocID026577 Rev 2
5/22
22

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STGIF5CH60TS-E arduino
STGIF5CH60TS-E
4 Fault management
Fault management
The device integrates an open-drain output connected to SD Pin. As soon as a fault occurs
the open-drain is activated and LVGx outputs are forced low. Two types of fault can be
pointed out:
Overcurrent (OC) sensed by the internal comparator (see more detail in Section 4.2:
Smart shutdown function);
Undervoltage on supply voltage (VCC);
Each fault enables the SD open drain for a different time; refer to the following Table 10:
Fault timing.
Table 10. Fault timing
Symbol
Parameter
Event time
SD open-drain enable
time result
OC Over-current event
20 μs
20µs
20 μs
OC time
50 μs
50µs
UVLO
Under-voltage lock out
event
50µs
until the VCC_LS exceed the
VCC_LS UV turn ON threshold
UVLO time
Actually the device remains in a fault condition (SD at low logic level and LVGx outputs
disabled) for a time also depending on RC network connected to SD pin. The network
generate a time contribute that add up to the internal value.
Figure 4. Overcurrent timing (without contribution of RC network on SD)
DocID026577 Rev 2
*,3*)65
11/22
22

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