Overview
The LMR50410XDBVR is a high-efficiency, SIMPLE SWITCHER® synchronous buck converter produced by Texas Instruments. Designed for applications requiring a compact and reliable power solution, this model supports an input voltage range of 4V to 36V and delivers a continuous output current of up to 1A. Its advanced features and robust design make it suitable for a wide range of industrial, automotive, and consumer electronics applications.
Key Specifications
Parameter | Value | Unit | Notes |
---|---|---|---|
Input Voltage Range | 4 to 36 | V | |
Output Current | 1 | A | Continuous |
Switching Frequency | 1.1 | MHz | |
Package | SOT-23-6 | ||
Operating Temperature Range | -40 to 150 | °C |
Key Features
- Wide input voltage range (4V to 36V) for versatile applications.
- High efficiency with synchronous rectification.
- Compact SOT-23-6 package for space-constrained designs.
- Integrated protection features including thermal shutdown and overcurrent protection.
Applications
The LMR50410XDBVR is ideal for use in industrial automation, automotive electronics, and consumer electronics. Its ability to handle a wide input voltage range and deliver stable output makes it suitable for powering sensors, microcontrollers, and other low-power devices in demanding environments.
Q & A
What is the input voltage range of the LMR50410XDBVR?
The input voltage range is 4V to 36V.
What is the maximum output current?
The maximum continuous output current is 1A.
What package does the LMR50410XDBVR come in?
It is available in a SOT-23-6 package.
What is the switching frequency?
The switching frequency is 1.1MHz.
What are the key protection features?
It includes thermal shutdown and overcurrent protection.
Is this device suitable for automotive applications?
Yes, it is designed to meet the requirements of automotive electronics.
What is the operating temperature range?
The operating temperature range is -40°C to 150°C.
Can it be used in battery-powered systems?
Yes, its wide input voltage range and high efficiency make it suitable for battery-powered applications.
What is the typical efficiency of this converter?
Efficiency can reach up to 95%, depending on the operating conditions.
Does it require external compensation?
No, it has internal compensation, simplifying the design process.