DMN2041LSD-13 - N-Channel MOSFET by Diodes Incorporated
The DMN2041LSD-13 is a high-performance N-Channel MOSFET designed and manufactured by Diodes Incorporated, a leading company in the semiconductor market. This MOSFET is part of their extensive range of power management devices, known for their reliability and efficiency. The DMN2041LSD-13 is designed to handle high-density power and signal management applications across a wide range of industries.
Key Features
- Low On-Resistance: The device features a low on-resistance (RDS(on)), which ensures minimal power loss and better efficiency during operation.
- High Continuous Drain Current: With a high continuous drain current (ID), the DMN2041LSD-13 can handle significant current loads, making it suitable for demanding applications.
- High-Speed Switching: The MOSFET is designed for high-speed switching applications, which is crucial for modern electronic devices that require quick response times.
- Power-Saving: The device's low threshold voltage helps in reducing the overall power consumption, making it an excellent choice for battery-powered applications.
- Thermal Management: It comes in a PowerDI®3333-8 package, which provides superior thermal performance and a compact footprint for space-constrained applications.
Applications
The DMN2041LSD-13 is suitable for a variety of applications, including:
- Power management in portable and battery-powered devices
- DC-DC converters
- Load switches
- Motor control circuits
- Computing and networking systems
Specifications
| Parameter |
Value |
| Drain-Source Voltage (VDS) |
20V |
| Continuous Drain Current (ID) |
6.5A |
| Power Dissipation (PD) |
1.25W |
| On-Resistance (RDS(on)) |
Typically 20 mΩ at VGS = 4.5V |
| Operating Temperature Range |
-55°C to +150°C |
Overall, the DMN2041LSD-13 from Diodes Incorporated is a versatile and efficient solution for a wide range of electronic applications where high performance and power efficiency are required. Its robust package, combined with its high-speed switching capabilities, make it a reliable choice for designers and engineers looking to optimize their power management systems.