IRLR3110ZTRPBF Overview
The IRLR3110ZTRPBF is a high-performance N-channel MOSFET designed for demanding power management and switching applications. Its low RDS(on) and logic-level gate drive capability make it optimal for efficient load control and power conversion in industrial electronics. Engineered for robust performance in compact designs, this device supports high-speed switching and minimal conduction losses, delivering reliable operation in a broad range of environments. For further details, visit IC Manufacturer.
IRLR3110ZTRPBF Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Polarity | N-Channel |
| Maximum Drain-Source Voltage (VDS) | 100 V |
| Continuous Drain Current (ID) | ~12 A |
| RDS(on) (Max) | 0.047 ?? |
| Gate Threshold Voltage (VGS(th)) | 1.0 V ÿ 2.0 V |
| Gate-Source Voltage (VGS) | ?I20 V |
| Package / Case | DPAK/TO-252 |
| Mounting Type | Surface Mount |
| Operating Temperature Range | -55??C to +175??C |
IRLR3110ZTRPBF Key Features
- Logic-Level Drive: Allows direct interfacing with low-voltage control logic for simplified circuit design and reduced component count.
- Low On-Resistance: Minimizes conduction losses, making it highly efficient during operation, which is critical for power-sensitive applications.
- High Current Handling: Capable of supporting substantial continuous drain current, ensuring robust performance under heavy loads.
- Thermal Stability: Wide operating temperature range supports reliable operation in harsh industrial and automotive environments.
IRLR3110ZTRPBF Advantages vs Typical Alternatives
This N-channel MOSFET stands out due to its combination of low RDS(on), logic-level gate drive, and high current capability. Compared to standard alternatives, it offers improved efficiency and faster switching speed, which translates to reduced power losses and improved system reliability. The surface-mount DPAK package ensures easy integration and thermal management in compact designs.
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Typical Applications
- DC-DC Converters: Utilized in synchronous rectification and switching stages to improve efficiency and reduce heat in power supplies for industrial or telecom equipment.
- Motor Control: Suitable for low-voltage motor drivers in automation systems, providing fast switching and high current handling.
- Load Switching: Ideal for switching resistive or inductive loads in automotive and industrial control circuits.
- Battery Management Systems: Applied in protection and switching circuits to optimize battery life and ensure reliable power delivery.
IRLR3110ZTRPBF Brand Info
The IRLR3110ZTRPBF is part of a respected series of logic-level N-channel MOSFETs, engineered for superior efficiency and reliability in power management. Its robust design and proven package construction make it a preferred choice among engineers for applications requiring dependable switching and low conduction losses. The device supports surface-mount assembly, aligning with modern, high-density PCB layouts and automated manufacturing processes.
FAQ
What is the main benefit of the IRLR3110ZTRPBF’s logic-level gate drive?
The logic-level gate drive allows the MOSFET to be controlled directly by low-voltage logic circuits, such as microcontrollers or digital signal processors. This simplifies circuit design and reduces the need for additional gate driver components, saving board space and overall system cost.
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Is this MOSFET suitable for high-frequency switching applications?
Yes, the device??s low gate charge and fast switching characteristics make it well-suited for high-frequency switching. This is particularly valuable in power conversion and motor control circuits where efficiency and speed are critical.
What mounting options does the IRLR3110ZTRPBF support?
It is supplied in a DPAK/TO-252 package, optimized for surface-mount technology (SMT). This enables efficient automated PCB assembly and supports high-density circuit layouts in industrial and automotive electronics.
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How does the low RDS(on) value impact performance?
A low RDS(on) reduces voltage drop and power dissipation during conduction, leading to higher energy efficiency and less heat generation. This is essential for systems that require reliable operation and tight thermal management.
Can this MOSFET operate in harsh environments?
With an operating temperature range from -55??C to +175??C, the device is suitable for use in harsh industrial and automotive environments. Its robust construction ensures dependable performance under demanding thermal and electrical conditions.





