STGW39NC60VD Overview
The STGW39NC60VD is a high-performance 600 V IGBT module designed for demanding industrial power electronics applications. It integrates advanced insulated-gate bipolar transistor (IGBT) technology with fast recovery diodes, providing robust switching capabilities and improved efficiency. Its rugged design supports high current ratings and offers excellent thermal performance, making it suitable for use in inverters, motor drives, and power supplies. This module ensures reliable operation under harsh conditions, enabling engineers to optimize system performance with reduced power losses. For more detailed information, visit IC Manufacturer.
STGW39NC60VD Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector-Emitter Voltage (V_CES) | 600 | V |
| Collector Current (I_C) | 39 | A |
| Gate-Emitter Voltage (V_GE) | ??20 | V |
| Surge Collector Current (I_CM) | 130 | A |
| Power Dissipation (P_tot) | 360 | W |
| Operating Junction Temperature (T_j) | -40 to 150 | ??C |
| Package Type | IGBT Module | – |
| Turn-off Time (t_off) | 0.1 | ??s |
STGW39NC60VD Key Features
- High Current Capacity: Supports up to 39 A continuous collector current, enabling efficient handling of heavy loads in industrial systems.
- 600 V Blocking Voltage: Suitable for medium-voltage applications, ensuring device robustness in demanding power environments.
- Fast Switching Performance: Low turn-off time reduces switching losses, contributing to higher overall system efficiency.
- Integrated Freewheeling Diode: Enhances circuit protection and simplifies design by providing built-in reverse recovery capability.
Typical Applications
- Industrial motor drives requiring efficient power conversion and high reliability for continuous operation in harsh environments.
- Inverter circuits in renewable energy systems such as solar or wind power, benefiting from low switching losses and high voltage capacity.
- Uninterruptible power supplies (UPS) where fast switching and thermal stability are critical for maintaining power quality.
- Welding equipment and induction heating devices that demand robust and efficient power semiconductor modules.
STGW39NC60VD Advantages vs Typical Alternatives
This IGBT module delivers superior performance with a high blocking voltage and continuous current rating, enabling more compact and reliable designs. Its fast switching capability reduces power losses compared to standard alternatives, enhancing energy efficiency. The integrated diode improves system integration and reduces component count. Overall, this module offers enhanced thermal management and robustness, making it a preferred choice for demanding industrial power electronics applications.
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STGW39NC60VD Brand Info
The STGW39NC60VD is manufactured by STMicroelectronics, a global leader in semiconductor solutions for industrial and consumer electronics. STMicroelectronics is renowned for its innovation in power semiconductor technologies, offering a broad portfolio of IGBTs and power modules designed to meet stringent industrial standards. This product benefits from ST??s expertise in delivering reliable, high-performance components that support energy-efficient designs and advanced motor control systems.
FAQ
What is the maximum operating voltage of the STGW39NC60VD?
The device supports a maximum collector-emitter voltage of 600 V, making it suitable for medium-voltage industrial applications such as motor drives and inverters.
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What continuous current can the module handle during operation?
The module can continuously handle up to 39 A of collector current, allowing it to support high-power loads in various industrial environments without compromising reliability.
How does the integrated diode benefit the overall system?
The built-in freewheeling diode provides fast reverse recovery, which reduces switching losses and improves efficiency. It also simplifies circuit design by eliminating the need for an external diode.
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What are the thermal limits of this IGBT module?
The operating junction temperature range is from -40 ??C to 150 ??C, enabling the module to function reliably under a wide range of thermal conditions commonly encountered in industrial






