The MR856G is a high-performance fast recovery rectifier designed by ON Semiconductor, a leader in energy-efficient innovations. This rectifier is specifically engineered to cater to applications requiring rapid switching and low power loss. With its fast recovery time, the MR856G is an ideal choice for power supplies, converters, and freewheeling diodes in a variety of electronic devices.
Key Features
- Fast Recovery Time: The MR856G boasts a swift recovery time, which is essential for high-efficiency power management and reducing switching losses in circuits.
- High Current Capability: This rectifier can handle a substantial forward current, making it suitable for high current applications without compromising performance.
- High Surge Capacity: It is designed to withstand high surge currents, ensuring durability and reliability under stressful conditions such as power surges.
- Low Forward Voltage Drop: The MR856G features a low forward voltage drop, contributing to its overall efficiency by minimizing power loss during conduction.
- Versatile Operating Temperature Range: With an operating temperature range that accommodates various environments, this rectifier maintains performance across a broad spectrum of temperatures.
Applications
The MR856G is versatile and can be used in multiple applications, including:
- Switching power supplies
- Power converters
- Motor controllers
- Automotive environments
- Consumer electronics
Product Specifications
| Parameter |
Value |
| Package Type |
DO-201 |
| Peak Repetitive Reverse Voltage |
600 V |
| Average Rectified Forward Current |
3 A |
| Non-Repetitive Peak Forward Surge Current |
400 A |
| Operating Junction Temperature Range |
-65 to 175 °C |
ON Semiconductor's MR856G fast recovery rectifier is a reliable and efficient solution for modern electronic applications where fast switching and minimal power loss are essential. Its robust design and superior electrical characteristics make it a preferred choice for engineers and designers looking to enhance system performance.