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PDF STGIPN3H60AT Data sheet ( Hoja de datos )

Número de pieza STGIPN3H60AT
Descripción 3-phase IGBT inverter bridge
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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STGIPN3H60AT
SLLIMM™-nano (small low-loss intelligent molded module)
IPM, 3 A - 600 V 3-phase IGBT inverter bridge
Datasheet - production data
Applications
3-phase inverters for motor drives
Dish washers, refrigerator compressors,
heating systems, air-conditioning fans,
draining and recirculation pumps
Description
NDIP-26L
Features
IPM 3 A, 600 V, 3-phase IGBT inverter bridge
including control ICs for gate driving and
freewheeling diodes
Optimized for low electromagnetic interference
VCE(sat) negative temperature coefficient
3.3 V, 5 V, 15 V CMOS/TTL input comparators
with hysteresis an
d pull-down resistor
Undervoltage lockout
Internal bootstrap diode
Interlocking function
Optimized pinout for easy board layout
85 kNTC for temperature control (UL1434
CA 2 and 4)
This intelligent power module implements a
compact, high-performance AC motor drive in a
simple, rugged design. It is composed of six
IGBTs with freewheeling diodes and three half-
bridge HVICs for gate driving, providing low
electromagnetic interference (EMI) characteristics
with optimized switching speed. The package is
optimized for thermal performance and
compactness in built-in motor applications, or
other low power applications where assembly
space is limited. SLLIMM™ is a trademark of
STMicroelectronics.
Table 1. Device summary
Order code
Marking
Package
Packaging
STGIPN3H60AT
GIPN3H60AT
NDIP-26L
Tube
September 2014
This is information on a product in full production.
DocID026945 Rev 1
1/19
www.st.com

1 page




STGIPN3H60AT pdf
STGIPN3H60AT
Internal schematic diagram and pin configuration
Figure 2. Pin layout (top view)
(*) Dummy pin internally connected to P (positive DC input).
DocID026945 Rev 1
5/19
19

5 Page





STGIPN3H60AT arduino
STGIPN3H60AT
Electrical characteristics
3.1.1
NTC thermistor
Symbol
R25
R100
B
T
Table 11. NTC thermistor
Parameter
Test conditions
Resistance
T = 25 °C
Resistance
T = 100 °C
B-constant
Operating temperature
T = 25 °C to 100 °C
Min. Typ. Max. Unit.
85
5388
kΩ
Ω
4092
-25 125
K
°C
Equation 1: resistance variation vs. temperature
R(T)
=
R25
B
T-1--
e
2----91---8--
Where T are temperatures in Kelvins
Figure 6. NTC resistance vs. temperature
NTC [kΩ]
3.500
3.000
2.500
2.000
1.500
Max
1.000 Min
500 Typ
0
-40 -20 0 20 40 60 80 100 120 140 [°C]
GIPD17220131349FSR
DocID026945 Rev 1
11/19
19

11 Page







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