2SK932-24-TB-E - ON Semiconductor
The 2SK932-24-TB-E is a high-performance MOSFET designed and manufactured by ON Semiconductor, a leader in the semiconductor industry. This N-Channel MOSFET is a testament to ON Semiconductor's commitment to providing energy-efficient and power management solutions for a wide range of applications. The device is well-suited for use in power switching circuits, motor control systems, and other high-speed switching applications.
Key Features:
- Low On-Resistance: The 2SK932-24-TB-E features a low on-resistance, which helps in reducing power loss and improving efficiency in electronic circuits. This characteristic is particularly important for applications where power conservation is critical.
- High-Speed Switching: This MOSFET is capable of high-speed switching, making it an ideal choice for modern electronic applications that require rapid switching capabilities, such as power supplies and DC-DC converters.
- High Breakdown Voltage: With a high breakdown voltage, the 2SK932-24-TB-E can handle higher voltages without breaking down, which is essential for applications that operate at high voltages.
- Enhanced Durability: The device is designed for reliability and durability, which ensures a long operational life even under harsh conditions.
Applications:
- Power Management Systems
- DC/DC Converters
- Motor Control Circuits
- Switching Regulators
- Load Switches
- Power Amplifiers
Product Specifications:
| Parameter |
Value |
| Configuration |
Single |
| Channel Mode |
Enhancement |
| Channel Type |
N-Channel |
| Drain-Source Breakdown Voltage |
240 V |
| Continuous Drain Current |
ID |
| Power Dissipation |
PD |
| Operating Temperature Range |
-55°C to +150°C |
The 2SK932-24-TB-E from ON Semiconductor is a robust and reliable component that offers excellent performance for a variety of electronic applications. With its superior efficiency and high-speed switching capabilities, it stands out as a preferred choice for engineers and designers looking to optimize their power management systems.