The SS14T3G from ON Semiconductor is a high-performance Schottky Barrier Rectifier that is designed to meet a wide range of applications. Renowned for its low forward voltage drop and high current capability, this diode is optimized for efficiency and reliability. The SS14T3G is a surface mount device encapsulated in an SMB package, which allows for compact and efficient design layouts.
Key Features
- Low Power Loss: The SS14T3G boasts a low forward voltage drop, reducing power loss and improving efficiency, making it ideal for high-frequency applications.
- High Surge Capability: With its robust construction, the SS14T3G can handle high surge currents, providing reliable performance under stress conditions.
- High Current Capacity: This rectifier can support a high average rectified forward current, suitable for high-power applications.
- Temperature Range: It operates within a wide junction temperature range, ensuring stability and performance across various operating conditions.
- Environmental Friendly: The SS14T3G is Pb-free, halogen-free, and RoHS compliant, making it an environmentally responsible choice for electronic designs.
Applications
The versatility of the SS14T3G allows it to be used in a variety of applications. Some of the common use cases include:
- Power supply units
- DC-DC converters
- Automotive applications
- Free-wheeling diodes in power converters
- Reverse battery protection circuits
- LED lighting solutions
Technical Specifications
| Parameter |
Value |
| Package Type |
SMB |
| Peak Repetitive Reverse Voltage |
40 V |
| Average Rectified Forward Current |
1 A |
| Operating Junction Temperature Range |
-55°C to +150°C |
| Storage Temperature Range |
-65°C to +175°C |
The SS14T3G Schottky Barrier Rectifier from ON Semiconductor is a testament to the company's commitment to providing high-quality, efficient, and environmentally friendly components for the electronics industry. Its robust design and versatile application scope make it a go-to choice for engineers and designers looking to enhance their power management systems.