SDA24N16TA - Diodes Incorporated
The SDA24N16TA is a robust and efficient N-channel enhancement mode Field Effect Transistor (FET) designed and manufactured by Diodes Incorporated. This high-performance MOSFET is engineered to deliver optimal power control and switching efficiencies, making it an ideal choice for a wide range of power management applications.
Key Features
- High Continuous Drain Current: The device supports a continuous drain current (ID) of 24A, allowing it to handle significant power levels in electronic circuits.
- Low On-Resistance: With a low RDS(on) of typically 16mΩ at VGS = 10V, the SDA24N16TA provides reduced conduction losses and improved power efficiency.
- High Voltage Capability: The transistor can withstand drain-source voltages (VDS) up to 160V, making it suitable for high-voltage applications.
- Fast Switching Speed: The device's fast switching characteristics ensure minimal transition losses and are well-suited for high-frequency operations.
- Thermal Management: The SDA24N16TA comes in a TO-252 (DPAK) package which offers excellent thermal dissipation properties, ensuring reliable operation even under high load conditions.
Applications
The versatility of the SDA24N16TA allows it to be used in various electronic applications including:
- DC-DC Converters
- Power Supply Units
- Motor Drives
- LED Lighting
- Automotive Electronics
- Telecommunication Infrastructure
Quality and Reliability
Diodes Incorporated is known for its commitment to quality, and the SDA24N16TA is no exception. It is designed to meet stringent industry standards, ensuring high reliability and performance consistency. The device is RoHS compliant, reflecting the company's dedication to environmental responsibility.
Technical Specifications
| Parameter |
Value |
| Drain-Source Voltage (VDS) |
160V |
| Continuous Drain Current (ID) |
24A |
| On-Resistance (RDS(on)) |
16mΩ |
| Package |
TO-252 (DPAK) |
Overall, the SDA24N16TA from Diodes Incorporated is a reliable and efficient solution for designers looking to improve power management in their electronic systems.