The REG101NA-2.5/250G4 is a high-performance, low-dropout voltage regulator from Texas Instruments, designed to deliver a fixed output of 2.5 volts with a maximum current of 250 mA. This regulator is part of the REG101 family, known for its small size, low noise, and high accuracy, making it an ideal choice for a wide range of applications, including battery-powered devices, portable electronics, and precision instrumentation.
Key Features
- Low Dropout: The regulator features a low dropout voltage, which ensures efficient operation even when the input voltage is very close to the output voltage, thereby maximizing battery life in portable applications.
- High Accuracy: With a high level of output voltage accuracy, the REG101NA-2.5/250G4 provides reliable and consistent performance, which is crucial for sensitive electronic devices.
- Low Noise: This voltage regulator is designed with low-noise output, which makes it suitable for noise-sensitive circuits such as RF applications and audio devices.
- Thermal Protection: The built-in thermal protection feature safeguards the device against overheating, ensuring long-term reliability and safety.
- Wide Operating Temperature Range: The device is capable of operating over a broad temperature range, making it versatile for various environmental conditions.
Applications
The REG101NA-2.5/250G4 is well-suited for a variety of applications that require a stable and precise voltage source. Its low noise and high accuracy make it particularly useful in:
- Portable, battery-operated devices
- Wireless communication systems
- Medical equipment
- Audio and video equipment
- Analog and digital sensor systems
- Precision instrumentation
Product Specifications
| Parameter |
Value |
| Output Voltage |
2.5V |
| Maximum Output Current |
250mA |
| Dropout Voltage |
Low |
| Noise Level |
Low |
| Operating Temperature Range |
Wide |
With its robust feature set, the REG101NA-2.5/250G4 from Texas Instruments is an optimal solution for designers looking to enhance the performance and reliability of their power-sensitive applications.