The STPS30M100SR is a robust and efficient power Schottky rectifier designed by STMicroelectronics. This high-performance component is engineered to meet the demanding needs of high-frequency power supply and power management applications. The STPS30M100SR is characterized by its low forward voltage drop and negligible switching losses, making it an ideal choice for energy-sensitive circuits.
Key Features
- High Junction Temperature: With a maximum operating junction temperature of 175°C, the STPS30M100SR can reliably perform in high-temperature environments.
- Low Forward Voltage Drop: The device exhibits a very low forward voltage drop, which enhances overall system efficiency by reducing conduction losses.
- Dual Center Tap Configuration: The rectifier comes in a dual center tap configuration housed in an SMPC (TO-277A) package, offering compactness and ease of integration into various circuit designs.
- High Avalanche Capability: This component is capable of withstanding high surge currents, ensuring robust performance during transient conditions.
- AEC-Q101 Qualified: Suitable for automotive applications, the STPS30M100SR meets the stringent requirements of the AEC-Q101 standard for reliability and quality.
Applications
The STPS30M100SR is versatile and can be used in a wide range of applications, including:
- Switching power supplies
- Power converters and inverters
- Freewheeling diodes in motor control circuits
- Automotive applications requiring high reliability
- OR-ing diodes in redundant power systems
Technical Specifications
| Parameter |
Value |
| Repetitive Peak Reverse Voltage (VRRM) |
100V |
| Average Forward Current (IF(AV)) |
30A |
| Non-Repetitive Peak Forward Surge Current (IFSM) |
300A |
| Operating Junction Temperature (Tj) |
-40°C to +175°C |
In summary, the STPS30M100SR from STMicroelectronics is a high-quality, durable power Schottky rectifier that offers excellent performance for a variety of power applications. Its low forward voltage drop and high temperature resilience make it a top choice for designers looking to enhance the efficiency and reliability of their power systems.