The SB130-T from Diodes Incorporated is a high-performance Schottky Barrier Rectifier designed for applications requiring low voltage drop and high efficiency. This rectifier is widely used in power management, conversion, and freewheeling applications across a variety of electronic circuits and products.
Key Features
- Low Forward Voltage Drop: The SB130-T offers a low forward voltage drop, which enhances system efficiency and reduces thermal issues, making it ideal for high-frequency operations.
- High Current Capability: With a maximum average forward rectified current of 1A, this component is capable of handling significant current loads, suitable for a wide range of power applications.
- Peak Repetitive Reverse Voltage: It has a peak repetitive reverse voltage of 30V, providing a good margin for applications that do not require very high voltage ratings.
- Thermal Performance: The device is encapsulated in a DO-41 package, which offers excellent thermal performance and reliability over a wide operating temperature range.
- Low Power Loss: Its Schottky barrier design ensures low power loss and higher efficiency, which is critical for power-sensitive designs.
- RoHS Compliant: SB130-T is RoHS compliant, which means it meets the European Union's directives on the restriction of hazardous substances in electronic equipment.
Applications
The SB130-T is suitable for a variety of applications, including:
- Switching power supply
- Converters
- Free-wheeling diodes
- Reverse battery protection
- DC-DC converters
- Low voltage, high frequency inverters
Product Specifications
| Parameter |
Value |
| Average Rectified Current (Io) |
1A |
| Peak Repetitive Reverse Voltage (Vrrm) |
30V |
| Forward Voltage Drop (Vf) |
0.5V at 1A |
| Operating Temperature Range |
-65°C to 125°C |
| Package |
DO-41 |
Overall, the SB130-T Schottky Barrier Rectifier from Diodes Incorporated is a reliable and efficient choice for designers looking to optimize their power management systems with a component that offers low power loss, high current capability, and robust thermal performance.