IRLR2705TRPBF Overview
The IRLR2705TRPBF is an N-channel MOSFET designed for high-efficiency switching and power management applications. Its low on-resistance and logic-level gate drive capability make it suitable for a variety of industrial and commercial uses where space, thermal management, and energy efficiency are critical. This device??s robust design supports reliable operation even under demanding load conditions. For professionals seeking dependable MOSFET solutions, the IRLR2705TRPBF offers an excellent combination of performance and versatility. Learn more at IC Manufacturer.
IRLR2705TRPBF Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 55V |
| Continuous Drain Current (ID) | 24A |
| RDS(on) (Max) | 0.045?? @ 10V |
| Gate-Source Voltage (VGS) | ?I16V |
| Power Dissipation (PD) | 2.5W |
| Package Type | TO-252 (DPAK) |
| Operating Temperature Range | -55??C to +175??C |
IRLR2705TRPBF Key Features
- Low RDS(on) ensures minimal conduction losses, improving overall circuit efficiency and reducing power dissipation.
- Logic-level gate drive capability allows direct interfacing with low-voltage microcontrollers, simplifying system design and reducing component count.
- High current handling (24A continuous) supports demanding load requirements in compact layouts, enabling higher power density.
- Robust package and thermal performance enhance reliability in harsh environments and industrial-grade systems.
IRLR2705TRPBF Advantages vs Typical Alternatives
This device stands out due to its low on-resistance and logic-level gate drive, which enable highly efficient switching and compatibility with standard logic signals. Engineers benefit from reduced power loss, improved thermal management, and simplified circuit integration, making it a superior choice for energy-conscious designs and high-reliability industrial applications.
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Typical Applications
- DC-DC converters and switching regulators, where low RDS(on) and high current capacity improve efficiency and thermal management in power supplies for industrial and telecom equipment.
- Motor control circuits, enabling precise switching and reliable operation in automotive, robotics, and industrial automation systems.
- Load switching in battery-powered equipment, supporting extended runtime and compact design by minimizing conduction losses.
- General-purpose switching applications requiring robust N-channel MOSFETs with logic-level drive compatibility and high reliability.
IRLR2705TRPBF Brand Info
The IRLR2705TRPBF is part of a reputable product line known for delivering reliable N-channel MOSFET solutions. Specifically engineered for efficiency and versatility, this device meets the needs of engineers designing for demanding power management and switching environments. Its robust construction and proven performance have made it a trusted choice in both industrial and commercial sectors.
FAQ
What is the maximum continuous drain current supported by this MOSFET?
The IRLR2705TRPBF supports a maximum continuous drain current of 24A, making it suitable for high-current switching and power management tasks in a range of industrial and commercial applications.
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Can this device be driven directly from logic-level outputs?
Yes, this MOSFET features a logic-level gate drive, allowing direct control from low-voltage logic circuits such as microcontrollers and FPGAs. This simplifies system design and improves integration.
What package type is used for this component?
This product utilizes the TO-252 (DPAK) surface-mount package, providing a compact footprint and efficient thermal performance for high-density PCB layouts.
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What is the typical application range for the IRLR2705TRPBF?
This device is used in DC-DC converters, motor drivers, load switches, and other general-purpose switching applications where efficient, high-current N-channel MOSFETs are required.
What is the safe operating temperature range for this MOSFET?
The IRLR2705TRPBF is rated for operation between -55??C and +175??C, supporting reliable performance in both extreme cold and high-temperature industrial environments.





