STGW30H60DFB Overview
The STGW30H60DFB is a high-performance IGBT module designed for industrial power electronics applications requiring robust switching and efficient energy management. Featuring a 30 A current rating and 600 V voltage capability, this device supports medium-power inverter designs with enhanced thermal stability and low conduction losses. Its dual IGBT configuration and integrated freewheeling diodes ensure reliable operation in demanding motor drive, renewable energy, and power supply systems. The compact, rugged design optimizes integration while maintaining excellent electrical and thermal characteristics. The STGW30H60DFB is provided by IC Manufacturer, a trusted source of semiconductor solutions for industrial applications.
STGW30H60DFB Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector-Emitter Voltage (V_CES) | 600 | V |
| Collector Current (I_C) | 30 | A |
| Gate-Emitter Voltage (V_GES) | ??20 | V |
| Power Dissipation (P_tot) | 200 | W |
| Operating Junction Temperature (T_j) | -40 to 150 | ??C |
| Turn-Off Loss (E_off) | Typical 50 | mJ |
| Collector-Emitter Saturation Voltage (V_CE(sat)) | 1.7 | V (typical) |
| Isolation Voltage | 2500 | V (RMS) |
STGW30H60DFB Key Features
- High voltage blocking capability: Rated at 600 V, it supports medium-voltage inverter applications with robust insulation to withstand voltage spikes.
- 30 A continuous collector current: Enables efficient conduction for medium-power motor drives and power conversion systems.
- Low switching and conduction losses: Improves overall system efficiency and reduces thermal management requirements.
- Integrated freewheeling diodes: Simplifies circuit design by providing built-in reverse current paths, enhancing reliability and reducing component count.
Typical Applications
- Industrial motor drives requiring efficient and reliable power switching for speed and torque control in three-phase AC motors.
- Renewable energy inverters converting DC power from solar panels or wind turbines into AC power for grid connection or local use.
- Uninterruptible power supplies (UPS) demanding fast and dependable switching to maintain clean power output during outages.
- Power factor correction circuits that optimize energy use and reduce harmonic distortion in industrial electrical systems.
STGW30H60DFB Advantages vs Typical Alternatives
This IGBT module offers superior thermal stability and lower switching losses compared to typical alternatives in the 600 V, 30 A class. Its integrated freewheeling diodes reduce external component needs, streamlining system design and improving reliability. Additionally, the robust isolation voltage rating enhances safety in industrial environments, making it an optimal choice for engineers seeking efficient, compact, and reliable power modules.
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STGW30H60DFB Brand Info
The STGW30H60DFB is manufactured by STMicroelectronics, a global leader in semiconductor technologies. STMicroelectronics specializes in power semiconductor devices, including IGBT modules designed for industrial, automotive, and consumer applications. This product reflects ST??s commitment to delivering high-quality, innovative solutions that address efficiency, reliability, and thermal management challenges in modern power electronics systems.
FAQ
What is the maximum operating temperature for this IGBT module?
The device can operate safely within a junction temperature range from -40??C up to 150??C, allowing it to function reliably in various industrial environments with demanding thermal conditions.
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Does this module include integrated diodes, and what is their purpose?
Yes, the module incorporates integrated freewheeling diodes, which provide reverse current paths during switching events. This integration simplifies the circuit and improves overall system reliability by protecting the IGBT from voltage spikes.
What are the typical switching losses associated with this module?
The typical turn-off energy loss (E_off) is approximately 50 millijoules, which contributes to efficient switching performance and reduced heat generation






