STGYA50M120DF3 Overview
The STGYA50M120DF3 is a high-performance IGBT module designed for industrial power electronics applications requiring efficient switching and robust thermal management. Featuring a 1200 V blocking voltage and 50 A continuous current rating, this module is optimized for inverter circuits, motor drives, and power conversion systems. Its compact footprint combined with low switching losses enables enhanced system reliability and energy efficiency. Engineered for demanding environments, it supports high-frequency operation with a durable package construction, making it a versatile choice for engineers and sourcing specialists seeking proven semiconductor solutions. For further details, visit IC Manufacturer.
STGYA50M120DF3 Technical Specifications
| Parameter | Value |
|---|---|
| Collector-Emitter Voltage (V_CES) | 1200 V |
| Continuous Collector Current (I_C) | 50 A |
| Gate-Emitter Voltage (V_GES) | ??20 V |
| Maximum Junction Temperature (T_j max) | 150 ??C |
| DC Current Gain (h_FE) | ?? 15 (typical) |
| Module Isolation Voltage | 2500 V AC (1 min) |
| Switching Frequency Capability | Up to 20 kHz |
| Package Type | Dual in-line IGBT Module |
STGYA50M120DF3 Key Features
- High voltage blocking capability: Supports up to 1200 V, enabling use in medium-voltage industrial applications with enhanced reliability.
- Robust current handling: Rated for 50 A continuous current, ensuring stable performance under heavy load conditions.
- Efficient switching characteristics: Designed to minimize switching losses, improving overall system efficiency and thermal management.
- Wide operating temperature range: Supports junction temperatures up to 150 ??C, suitable for harsh industrial environments with elevated thermal stress.
Typical Applications
- Industrial motor drives requiring efficient power switching and thermal stability to maintain performance during prolonged operation.
- Power inverters for renewable energy systems, providing reliable switching for photovoltaic and wind turbine converters.
- Uninterruptible Power Supplies (UPS) that benefit from low switching losses and high current capacity to ensure continuous power delivery.
- General purpose power conversion circuits in factory automation and process control demanding robust and compact semiconductor modules.
STGYA50M120DF3 Advantages vs Typical Alternatives
This module delivers superior performance through a combination of high blocking voltage and substantial current rating, enabling integration into demanding industrial systems. Its low switching losses and high temperature tolerance improve efficiency and reliability compared to typical IGBT modules. The robust package design ensures better electrical isolation and mechanical stability, making it advantageous for applications requiring durability and consistent operation under thermal and electrical stress.
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STGYA50M120DF3 Brand Info
The STGYA50M120DF3 is manufactured by STMicroelectronics, a global leader in semiconductor technologies. STMicroelectronics specializes in power semiconductor devices optimized for industrial, automotive, and consumer applications. The module benefits from ST??s extensive experience in IGBT technology, providing high-quality, reliable components that meet stringent performance standards. ST??s commitment to innovation and quality ensures this module supports advanced power electronic systems with enhanced efficiency and durability.
FAQ
What is the maximum operating temperature for this IGBT module?
The maximum junction temperature is specified at 150 ??C, allowing the module to operate reliably in high-temperature industrial environments without performance degradation.
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Can this module be used in renewable energy inverter applications?
Yes, with its 1200 V blocking voltage and 50 A current rating, it is well-suited for inverter circuits in photovoltaic and wind power systems, offering efficient switching and robust performance.
What type of package does the STGYA50M120DF3 use?
This device comes in a dual in-line IGBT module package, which provides excellent thermal dissipation and electrical isolation, facilitating easier integration into power electronic assemblies.






