The STGW35HF60WD is a high-performance insulated gate bipolar transistor (IGBT) manufactured by STMicroelectronics. This IGBT combines advanced trench gate field-stop technology with a soft and fast recovery anti-parallel diode, making it an ideal choice for a wide range of high-efficiency applications.
With a maximum collector-emitter voltage of 600V and a continuous collector current of 35A at 25°C, the STGW35HF60WD is capable of handling high power levels. The device's power dissipation is managed efficiently due to its low on-voltage drop (VCE(sat)) and low switching losses.
One of the key features of the STGW35HF60WD is its short-circuit withstand time, which is rated at 10µs. This feature provides additional protection and reliability to the circuit by ensuring the device can handle momentary overloads without failure. The IGBT also boasts a high switching frequency, which allows for more compact and efficient designs by reducing the size of passive components.
The anti-parallel diode included with the IGBT is optimized for soft recovery. This minimizes electromagnetic interference (EMI) and reduces stress on the device during turn-off, contributing to the longevity and reliability of the component.
Designed for ease of use, the STGW35HF60WD comes in a TO-247 long leads package, which provides good thermal performance and is compatible with a wide range of heatsinks. This packaging, along with the IGBT's maximum junction temperature of 175°C, ensures stable performance even under extreme operating conditions.
Applications for the STGW35HF60WD are diverse and include motor drives, uninterruptible power supplies (UPS), solar inverters, welding equipment, and other high-performance power conversion systems. Its efficiency and robustness make it a preferred choice for designers looking to optimize their power systems for both performance and reliability.
Overall, the STGW35HF60WD from STMicroelectronics represents a state-of-the-art solution for power management and conversion in demanding industrial, commercial, and renewable energy applications.