Product Overview: S1N-13-F from Diodes Incorporated
The S1N-13-F is a high-performance, surface-mount rectifier diode designed and manufactured by Diodes Incorporated. This component is part of Diodes Incorporated's extensive range of diodes tailored for efficient and reliable operation in a variety of electronic applications. The S1N-13-F is specifically engineered to offer a combination of low forward voltage drop and high surge current capability, making it an excellent choice for applications requiring efficient power and signal rectification.
Key Features
- High Current Capability: The S1N-13-F is capable of supporting a high average rectified forward current, ensuring suitability for high-load applications.
- Low Forward Voltage Drop: This diode provides a low forward voltage drop, which contributes to reduced power loss and improved system efficiency.
- High Surge Current Capability: With its ability to handle high surge currents, the S1N-13-F is well-suited for applications that experience momentary overloads.
- Surface-Mount Package: The device comes in a DO-214AC (SMA) package, which is ideal for compact designs requiring surface-mount technology.
- RoHS Compliant: The S1N-13-F meets RoHS standards, ensuring compliance with environmental regulations and restrictions on hazardous substances.
Applications
The S1N-13-F is versatile and can be used in a broad range of applications, including:
- Power supply units
- Automotive systems
- Consumer electronics
- Telecommunications equipment
- Industrial machinery
Specifications
| Parameter |
Value |
| Package Type |
DO-214AC (SMA) |
| Maximum Average Forward Rectified Current |
1.0A |
| Peak Forward Surge Current |
30A |
| Maximum Forward Voltage Drop |
1.1V at 1.0A |
| Operating Temperature Range |
-55°C to +150°C |
The S1N-13-F is a testament to Diodes Incorporated's commitment to providing high-quality, reliable components for the electronics industry. Its robust design and electrical characteristics make it an ideal choice for designers looking to enhance system performance while maintaining efficiency and reliability.