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10 Slice MOS Transistor KF9N50 JCS9N50FT TO-220F

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10 Slice MOS Transistor SBD10C150S TO-263

Original price was: $17.55.Current price is: $16.67.

The 10 Slice MOS Transistor SBD10C150S in a TO‑263 package from dlrk56 provides high current handling and stable operation for demanding industrial CMOS circuits. Its robust design ensures reliable power regulation and switching performance, making it ideal for power supplies, motor drivers, and other high‑load applications.

9999 in stock
SKU: CJ4SLHB0D8Y7 Category:
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Description

Product Overview

The 10 Slice MOS Transistor SBD10C150S is engineered to meet the rigorous demands of modern industrial electronics. Housed in a TO‑263 (D2PAK) package, this component delivers a high current rating while maintaining low on‑resistance, ensuring efficient power conversion and minimal heat generation. Manufactured by dlrk56, the transistor features a robust silicon substrate, a well‑designed layout for optimal thermal dissipation, and a reliable gate control structure that supports fast switching speeds. The device is rated for a maximum drain‑source voltage of 150 V, making it suitable for a wide range of applications, from power supplies to motor control circuits. Its 10‑slice architecture provides multiple parallel channels, which enhances current handling capability and improves redundancy, allowing the transistor to sustain high load currents without compromising performance.

Usage

Designed for industrial and scientific environments, the SBD10C150S excels in applications that require reliable high‑current switching and precise voltage regulation. Typical use cases include DC‑DC converters, SMPS (switch‑mode power supplies), motor driver modules, and automotive power management systems. The transistor’s low gate charge and fast transition times make it ideal for pulse‑width modulation (PWM) control, enabling efficient speed control of AC and DC motors. Additionally, its robust construction allows operation in harsh conditions, such as elevated temperatures and high‑vibration settings commonly found in manufacturing plants, robotics, and renewable energy installations. Engineers and system designers can integrate this component into board layouts that prioritize thermal performance, using the TO‑263 package’s large copper tab for effective heat sinking.

Why Choose Us

When selecting a MOS transistor for critical power applications, quality and reliability are paramount. dlrk56 has a proven track record of delivering semiconductor components that meet stringent industry standards. Each SBD10C150S unit undergoes comprehensive testing, including thermal cycling, electrical stress, and reliability assessments, to guarantee consistent performance throughout its lifespan. Our packaging process ensures that the transistor arrives securely sealed, protecting it from moisture and mechanical damage during transit. Moreover, we provide responsive technical support and a clear return policy, giving customers confidence that any issues will be addressed promptly. By choosing the 10 Slice MOS Transistor from dlrk56, you benefit from a component that combines high‑performance specifications with a commitment to quality assurance and customer satisfaction.

Key Features

  • High current capacity with 10 parallel slices for superior load handling.
  • Low on‑resistance reduces power loss and improves overall system efficiency.
  • Robust TO‑263 package provides excellent thermal dissipation for high‑temperature operation.
  • Fast switching speed enables precise PWM control for motor drives and converters.
  • Dedicated after‑sales support and warranty ensure reliable long‑term service.

FAQ

What is the maximum drain‑source voltage for the SBD10C150S?

The transistor is rated for a maximum VDS of 150 V, making it suitable for a variety of medium‑voltage power applications.

Can this MOS transistor be used in automotive environments?

Yes, the device’s robust construction and wide operating temperature range allow it to function reliably in automotive power modules and control units.

How does the 10‑slice architecture improve performance?

By distributing the current across ten parallel channels, the transistor reduces individual channel stress, enhances thermal performance, and provides redundancy that helps maintain operation if one slice experiences a fault.

What kind of heat‑sink is recommended for optimal thermal management?

For high‑current applications, a copper or aluminum heat‑sink with a thermal resistance of less than 5 °C/W is recommended. Proper mounting using thermal paste will further improve heat transfer from the TO‑263 tab to the sink.

Is the SBD10C150S compatible with standard PCB footprints?

Yes, the TO‑263 package follows industry‑standard dimensions, allowing easy integration into existing PCB designs without the need for custom footprints.

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