The TLC2252IDR is a high-performance, dual operational amplifier (op-amp) produced by Texas Instruments, renowned for its exceptional accuracy and low power consumption. This advanced rail-to-rail op-amp integrates Texas Instruments' innovative LinCMOS™ technology, delivering a powerful solution for a wide range of electronic applications, including medical, industrial, and consumer products.
Key Features:
- Low Power Consumption: The TLC2252IDR is designed to operate with very low power, making it ideal for battery-powered devices. It boasts a typical quiescent current of 210 µA per channel, which is significantly lower than that of conventional op-amps.
- High Output Drive Capability: Despite its low power usage, this op-amp can deliver a substantial output current, ensuring compatibility with a variety of loads.
- Rail-to-Rail Output: The device provides a rail-to-rail output swing, which maximizes the dynamic range and is particularly useful in single-supply operations.
- Wide Supply Range: The TLC2252IDR can be powered by a supply voltage ranging from 4.4 V to 16 V, allowing for flexible integration into different circuit designs.
- Low Input Offset Voltage: Precision applications benefit from the op-amp's low input offset voltage, which minimizes error and enhances overall system accuracy.
- Micro-Power Shutdown Mode: An optional feature that further reduces power consumption when the amplifier is not in active use.
Applications:
- Portable and battery-powered equipment
- Analog signal conditioning
- Sensor interfaces
- Medical instrumentation
- Active filters
- Data acquisition systems
The TLC2252IDR comes in a small-outline integrated circuit (SOIC) package, which is both space-efficient and suitable for automated assembly processes. Its performance characteristics make it a versatile choice for engineers who require a reliable op-amp that does not compromise on power efficiency or output capability. As with all Texas Instruments products, this op-amp is manufactured to high standards, ensuring both quality and reliability for critical applications.