TLV2376 (2)

The TLV2376 is available from Texas Instruments at Xecor. Designed for precision and portable applications, the TLV2376 offers low noise (8 nV/√Hz), low offset voltage (40 µV typical), and a quiescent current of just 815 µA, making it highly efficient. Available in multiple package options, including VSSOP-8 and SOIC-8, it is ideal for applications in industries such as industrial automation, medical devices, and battery-powered systems. Whether used in sensor signal conditioning, portable instrumentation, or audio processing, this series ensures exceptional performance, reliability, and energy efficiency for demanding applications. Xecor is an authorized distributor for Texas Instruments. Please view our extensive selection of the TLV2376 series below.

Part Number Description Package Inventory Add To Bom
TLV2376IDGKR Op Amp Dual Precision Amplifier R-R I/O ±2.75V/5.5V 8-Pin VSSOP T/R VSSOP-8 5,552
TLV2376IDR Op Amp Dual Precision Amplifier R-R I/O ±2.75V/5.5V 8-Pin SOIC T/R 8-SOIC 4,581

Key Featrues

Low Noise Performance (8 nV/√Hz at 1 kHz): This feature ensures minimal signal distortion, making the TLVx376 family ideal for high-precision audio and sensor applications where maintaining signal integrity is critical. The low noise level enhances the overall accuracy and reliability of the system.
Rail-to-Rail Input and Output: This capability allows the operational amplifiers to handle signals that span the entire supply voltage range, maximizing dynamic range and flexibility in various applications. It is particularly beneficial in battery-powered devices where the full voltage range must be utilized efficiently.
Low Quiescent Current (815 µA typical): The low power consumption of the TLVx376 family extends battery life in portable and IoT devices, making it a suitable choice for energy-efficient designs without compromising performance.
Wide Supply Voltage Range (2.2 V to 5.5 V): This feature enables the operational amplifiers to operate effectively in both low-voltage and standard voltage environments, providing versatility for diverse applications, including those powered by unregulated batteries.
High Gain Bandwidth Product (5.5 MHz): The high bandwidth ensures fast signal processing and accurate amplification of high-frequency signals, making the TLVx376 family suitable for applications requiring rapid response times, such as communication systems and data acquisition.

Applications

Precision Portable Instrumentation: The TLVx376 family is ideal for precision portable instrumentation, such as handheld multimeters or portable medical devices. Its low noise (8 nV/√Hz) and low offset voltage (40 µV typical) ensure accurate signal amplification, while its low quiescent current (815 µA) and wide supply range (2.2 V to 5.5 V) make it suitable for battery-powered applications. Rail-to-rail input and output capabilities further enhance its performance in portable devices.
Sensor Signal Conditioning: The TLVx376 is well-suited for conditioning signals from sensors like thermocouples, RTDs, or pressure sensors in industrial and automotive applications. Its rail-to-rail input and output, combined with low noise and high CMRR (88 dB), ensure accurate amplification of small sensor signals. The 5.5 MHz bandwidth and fast slew rate (2 V/µs) enable rapid response to dynamic sensor inputs.
Audio Signal Processing: With its low noise (8 nV/√Hz) and low THD+N (0.0005%), the TLVx376 is an excellent choice for audio signal processing in portable audio devices, hearing aids, or microphone preamplifiers. Its rail-to-rail operation and low power consumption make it ideal for battery-powered audio applications, ensuring high-fidelity sound reproduction.
Battery-Powered IoT Devices: The TLVx376 is perfect for IoT devices that require precision amplification of sensor signals while operating on limited power. Its low quiescent current (815 µA) and wide supply range (2.2 V to 5.5 V) make it suitable for energy-efficient designs. Applications include environmental monitoring, wearable health devices, and smart home sensors, where accurate signal amplification is critical.

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