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Silicon Carbide Schottky Rectifier DSC30120P - 30A, 1200V - China Suppliers & Factory Direct Shipping

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IF30A
VRRM (Min)1200V
VF (Typ) @ 175℃1.59V
IR (Typ) @ 175℃30uA
TJ-55℃~+150℃
Minimum order quantity1000Pcs
Delivery time4-6 weeks
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Explore our high-quality semiconductor product, ideal for various industrial applications. With a current rating of 30A and a minimum reverse voltage (VRRM) of 1200V, it meets the demanding requirements of modern electrical systems. Our forward voltage (VF) at 175℃ is 1.59V, ensuring efficient operation, while the typical reverse leakage current (IR) is just 30uA at the same temperature, highlighting the reliability of our design. The allowed operating temperature range is from -55℃ to +150℃, suitable for diverse environments.

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As a leading supplier based in China, we pride ourselves on manufacturing durable, high-performance electronic components. Our factory ensures that all products, including this one, are produced under stringent quality control standards. Please note the minimum order quantity is 1000 pieces, and we guarantee delivery within 4-6 weeks. Partner with us to meet your production needs and benefit from our excellent service and competitive pricing.

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    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

    New Energy Vehicles

    On-board chargers, charging piles, power factor correction (PFC) circuits, etc.

    Renewable Energy

    Photovoltaic (PV) inverters, energy storage systems (ESS).

    Industry & Data Centers

    Server power supplies, industrial motor drives, uninterruptible power supplies (UPS).

    Harsh Environments

    Industrial and mining, aerospace, and other high-temperature application scenarios.

    Features

    • High frequency operation
    • Ultra fast switching speed
    • Zero reverse recovery current
    • High Junction temperature
    • Low leakage current
    • High reliability
    • RoHS product

    Mechanical Data

    • Molding compound meets UL 94V-0 flammability rating, RoHS-compliant
    • Terminals: Tin plated leads, solderable per J-STD-002 and JESD22-B102
    • Polarity: As marked on body

    Frequently Asked Questions

    What are the primary benefits of using Silicon Carbide (SiC) in the DSC30120P?

    By utilizing silicon carbide materials, the DSC30120P achieves a high breakdown field strength and high thermal conductivity. This allows the device to offer a high voltage rating, nearly zero reverse recovery current, high-speed switching performance, and a higher operating junction temperature, ultimately improving energy conversion efficiency.

    How does the DSC30120P perform when multiple units are connected in parallel?

    The forward voltage drop of the DSC30120P features a positive temperature coefficient. This specific characteristic is highly beneficial for automatic current equalization, ensuring safe and balanced operation when multiple devices are connected in parallel.

    In which industries and applications is the DSC30120P commonly used?

    It is widely used in new energy vehicles (on-board chargers, charging piles, PFC circuits), renewable energy (photovoltaic inverters, energy storage systems), industrial and data centers (server power supplies, motor drives, UPS), and other harsh environments like mining and aerospace.

    What are the key mechanical and environmental standards met by this device?

    The DSC30120P features a molding compound that meets the UL 94V-0 flammability rating. The device is fully RoHS-compliant, and its tin-plated leads are solderable in accordance with J-STD-002 and JESD22-B102 standards.

    How does high-frequency operation affect system design?

    Support for high-frequency operation allows the system to utilize smaller passive components, effectively reducing the overall volume and weight of inductors and transformers within the system design.

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