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China Suppliers Factory DSC40120P Silicon Carbide Schottky Rectifier - 40A, 1200V, Low VF High Efficiency

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IF40A
VRRM (Min)1200V
VF (Typ) @ 175℃1.593V
IR (Typ) @ 175℃40uA
TJ-55℃~+150℃
Minimum order quantity1000Pcs
Delivery time4-6 weeks
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, Introducing our high-performance product designed for reliability and efficiency—sourced from leading suppliers in China. This component showcases a forward current (IF) rating of 40A and a maximum reverse voltage (VRRM) of 1200V, making it ideal for various applications. At a temperature of 175℃, the typical forward voltage (VF) is measured at 1.593V, with a reverse leakage current (IR) of only 40uA, ensuring optimal operation, With an operating temperature range (TJ) of -55℃ to +150℃, this product is engineered to withstand extreme conditions. We cater to larger-scale requirements, with a minimum order quantity of 1000 pieces, ensuring you receive top-quality components directly from our factory. Our efficient delivery time of 4-6 weeks ensures that you can keep your projects on track without delay, Choose us for your sourcing needs and benefit from our commitment to quality and service. Partner with a trusted supplier from China for your electronic component requirements

    DSC40120P 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 circuits, etc.
    • Renewable energy: Photovoltaic inverters, energy storage systems.
    • Industry and data centers: Server power supplies, industrial motor drives, uninterruptible power supplies.
    • Harsh environments: Industrial, 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
    Q1: What are the primary benefits of using silicon carbide (SiC) in the DSC40120P?

    A: SiC materials provide high breakdown field strength and superior thermal conductivity, allowing for high voltage ratings, high-speed switching, and better performance at elevated temperatures compared to traditional silicon devices.

    Q2: How does zero reverse recovery current affect system performance?

    A: Zero reverse recovery current significantly reduces switching losses and electromagnetic interference (EMI), which improves overall energy conversion efficiency and simplifies thermal management.

    Q3: Can multiple DSC40120P devices be connected in parallel?

    A: Yes. The device features a positive temperature coefficient for its forward voltage drop, which naturally facilitates automatic current equalization when operating multiple units in parallel.

    Q4: Is the DSC40120P suitable for high-frequency applications?

    A: Absolutely. Its ultra-fast switching speed supports high-frequency operation, which helps in reducing the physical size and cost of passive components like inductors and transformers.

    Q5: What is the flammability rating of the molding compound?

    A: The molding compound used in DSC40120P meets the UL 94V-0 flammability rating, ensuring high safety and reliability standards.

    Q6: In which industries is this diode commonly applied?

    A: It is widely used in new energy vehicles (chargers, PFC circuits), renewable energy (PV inverters), data centers (server power supplies), and aerospace or industrial high-temperature environments.

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