STGE50NC60WD datasheet pdf and Transistors - IGBTs - Modules product details from STMicroelectronics stock available on our website
SOT-23
STGE50NC60WD Datasheet
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Specifications
Name
Value
Type
Parameter
Mount
Chassis Mount, Panel, Screw
Mounting Type
Chassis Mount
Package / Case
SOT-227-4, miniBLOC
Number of Pins
4
Transistor Element Material
SILICON
Operating Temperature
-55°C~150°C TJ
Series
PowerMESH™
Part Status
Obsolete
Moisture Sensitivity Level (MSL)
Not Applicable
Number of Terminations
4
ECCN Code
EAR99
Subcategory
Insulated Gate BIP Transistors
Max Power Dissipation
260W
Terminal Position
UPPER
Terminal Form
UNSPECIFIED
Base Part Number
STGE50
Pin Count
4
Number of Elements
1
Configuration
Single
Power Dissipation
260W
Case Connection
ISOLATED
Transistor Application
POWER CONTROL
Rise Time
17ns
Polarity/Channel Type
N-CHANNEL
Input
Standard
Collector Emitter Voltage (VCEO)
600V
Max Collector Current
100A
Current - Collector Cutoff (Max)
500μA
Collector Emitter Breakdown Voltage
600V
Collector Emitter Saturation Voltage
2.5V
Input Capacitance
4.7nF
Turn On Time
69 ns
Vce(on) (Max) @ Vge, Ic
2.6V @ 15V, 40A
Turn Off Time-Nom (toff)
343 ns
NTC Thermistor
No
Gate-Emitter Voltage-Max
20V
Input Capacitance (Cies) @ Vce
4.7nF @ 25V
VCEsat-Max
2.6 V
Height
12.2mm
Length
38.2mm
Width
25.5mm
REACH SVHC
No SVHC
RoHS Status
ROHS3 Compliant
Lead Free
Lead Free
STGE50NC60WD Product Details
Description
The STGE50NC60WD is an ISOTOP Ultra fast switching PowerMESHTMN-channel 50A - 600V IGBT. STMicroelectronics has produced an innovative family of IGBTs, the PowerMESHTM IGBTs, with remarkable performance using the latest high voltage technology based on a proprietary strip topology. A family with the suffix "W" is designed for very high frequency applications.
Features
Low CRES/CIES ratio (no cross-conduction susceptibility
Very soft ultra fast recovery antiparallel diode
High current capability
High frequency operation
High efficiency and fast switching
Applications
UPS
Motor drivers
Welding
Very high frequency inverters
HF, SMPS and PFC in both hard switching and resonant topologies