The TL431BVDMR2G is a three-terminal adjustable shunt regulator with a guaranteed thermal stability over applicable temperature ranges. Manufactured by ON Semiconductor, this device exhibits a wide operating voltage range while maintaining excellent stability and low dynamic output impedance, making it ideal for a variety of applications.
Key Features
- Voltage Reference: The device provides a reference voltage range from 2.495 V to 36 V with ±0.5% initial accuracy.
- Programmable Output: Users can set the output voltage with two external resistors, offering flexibility for different applications.
- Low Dynamic Output Impedance: The output impedance of 0.2Ω (typical) ensures stable voltage regulation against load variations.
- Temperature Compensated: The TL431BVDMR2G is temperature compensated, ensuring reliable operation over a temperature range of -40°C to +85°C.
- Surface-Mount Package: It comes in a small SOT-23 surface-mount package, which is ideal for space-constrained applications.
Applications
The versatility of the TL431BVDMR2G allows it to be used in a wide array of applications, including:
- Power supplies
- Voltage monitoring
- Adjustable current sources
- Battery chargers
- Switching power supplies
Quality and Reliability
ON Semiconductor is renowned for its commitment to quality and reliability. The TL431BVDMR2G is no exception, as it is designed to meet stringent requirements, ensuring consistent performance and longevity in your application.
Environmental Compliance
The TL431BVDMR2G is a RoHS-compliant product, adhering to environmental standards by avoiding the use of hazardous substances in its construction. This commitment to environmental responsibility makes it a suitable choice for eco-conscious designs.
Ordering Information
For ordering, the TL431BVDMR2G comes in tape and reel packaging, facilitating efficient assembly processes for high-volume production. ON Semiconductor provides full support for design-in processes, ensuring that integrating this shunt regulator into your design is as seamless as possible.