Silicon Carbide Schottky Rectifier DSC30120P - 30A 1200V - China Suppliers and Factory Direct Best Price
DSC30120P takes advantage of the high breakdown field strength and high thermal conductivity of silicon carbide materials to achieve high voltage rating, nearly zero reverse recovery current, high-speed switching performance, and higher operating junction temperature. It has become one of the key components for improving energy conversion efficiency. Its forward voltage drop has a positive temperature coefficient, which is conducive to automatic current equalization when multiple devices are connected in parallel. It supports high-frequency operation and can reduce the volume of passive components such as inductors and transformers in the system.
Applications
Features
- High frequency operation
- Ultra fast switching speed
- Zero reverse recovery current
- High Junction temperature
- Low leakage current
- High reliability
- RoHS product
Mechanical Data
Frequently Asked Questions
DSC30120P utilizes Silicon Carbide (SiC) materials, which offer high breakdown field strength and high thermal conductivity. This allows the device to achieve a high voltage rating, nearly zero reverse recovery current, and high-speed switching performance.
Yes. Its forward voltage drop features a positive temperature coefficient. This characteristic is highly beneficial for automatic current equalization when multiple DSC30120P devices are connected in parallel.
By supporting high-frequency operations, DSC30120P allows system designers to reduce the physical volume and footprint of passive components, such as inductors and transformers, within the power system.
The molding compound meets the UL 94V-0 flammability rating and is RoHS-compliant. The terminals consist of tin-plated leads that are solderable in accordance with J-STD-002 and JESD22-B102 standards.
Yes, it is designed for high reliability and high junction temperatures, making it suitable for harsh environments such as industrial and mining, aerospace, and other high-temperature application scenarios.

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