LMV824Q1MT/NOPB - Texas Instruments
The LMV824Q1MT/NOPB is a high-performance, low-power, quad-operational amplifier from Texas Instruments designed to meet the rigorous demands of automotive and industrial applications. This device is part of the LMV82x family and is characterized by its low noise, low distortion, and high output drive capability, making it an ideal choice for sensor interfacing, active filtering, and audio processing applications.
With an extended temperature range, the LMV824Q1MT/NOPB is qualified for automotive applications, ensuring reliable performance under harsh environmental conditions. Its robust design conforms to the AEC-Q100 Grade 1 standard, offering a temperature range from -40°C to +125°C, which is critical for automotive systems that must operate reliably over a wide range of temperatures.
This operational amplifier features a supply voltage range from 2.7V to 5.5V, allowing it to be used in both 3.3V and 5V systems. The low input bias current and low quiescent current make it an energy-efficient choice for battery-powered devices. Additionally, the LMV824Q1MT/NOPB offers a high slew rate and a wide bandwidth, which are essential for fast signal processing applications.
The device is offered in a 14-pin TSSOP (Thin Shrink Small Outline Package) that is optimized for space-constrained applications. Its lead-free and RoHS-compliant packaging, denoted by the "NOPB" (No Lead (Pb)), reflects Texas Instruments' commitment to environmental sustainability.
Key features of the LMV824Q1MT/NOPB include:
- Low input noise voltage: 7 nV/√Hz typical at f = 1 kHz
- Low harmonic distortion: 0.01% typical
- High output drive: ±60 mA
- Unity-gain bandwidth: 5.5 MHz typical
- Rail-to-rail output swing
- Low input offset voltage: 3.5 mV max
- Single or split supply operation
Whether it's for automotive infotainment systems, navigation aids, or industrial process controls, the LMV824Q1MT/NOPB provides a combination of high performance, reliability, and flexibility that engineers need to design top-tier electronic systems.