ON Semiconductor LM7301SN1T1G Product Overview
The LM7301SN1T1G is a high-performance, low-power operational amplifier (op-amp) designed and manufactured by ON Semiconductor. This precision op-amp offers a perfect balance between low voltage operation and speed, making it an excellent choice for a wide range of applications. The LM7301SN1T1G is part of ON Semiconductor's commitment to providing energy-efficient devices without compromising on performance.
Key Features
- Low Supply Voltage: The device operates at a supply voltage range of 2.7V to 12V, making it suitable for battery-powered applications and portable devices.
- High Slew Rate: With a slew rate of 2.5 V/µs, the LM7301SN1T1G provides fast response times, which is ideal for fast signal processing applications.
- Low Input Offset Voltage: The op-amp has a typical input offset voltage of 3.5 mV, ensuring high accuracy in amplification and signal conditioning tasks.
- Rail-to-Rail Output: The device offers rail-to-rail output swing, which maximizes the dynamic range when operating from low supply voltages.
- Low Quiescent Current: It features a low quiescent current of 0.6 mA, contributing to the overall energy efficiency of the system it is used in.
Applications
The LM7301SN1T1G is versatile enough to be used in a variety of applications, including:
- Sensor interfaces
- Portable and battery-powered equipment
- Analog filters
- Data acquisition systems
- Audio electronics
- Active filtering
Package and Quality
This op-amp is available in a 5-pin TSOP package, which is designed for space-saving on the PCB and is suitable for high-density mounting. ON Semiconductor ensures that the LM7301SN1T1G meets rigorous quality standards, providing reliability and performance for critical applications.
In summary, the LM7301SN1T1G from ON Semiconductor is a reliable and efficient solution for designers looking for an op-amp that offers low voltage operation, high-speed performance, and energy efficiency. Its features and benefits make it an ideal choice for a multitude of electronic applications.