LMV1088RL/NOPB

LMV1088RL/NOPB

Manufacturer No:

LMV1088RL/NOPB

Manufacturer:

Texas Instruments

Description:

IC AMP CLASS AB MONO 36DSBGA

Datasheet:

Datasheet

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LMV1088RL/NOPB Specifications

  • Type
    Parameter
  • Package / Case
    36-WFBGA, DSBGA
  • Supplier Device Package
    36-DSBGA (3.5x3.24)
  • Operating Temperature
    -40°C ~ 85°C (TA)
  • Mounting Type
    Surface Mount
  • Features
    Differential Inputs, I²C, Microphone, Mute
  • Voltage - Supply
    2.7V ~ 5.5V
  • Max Output Power x Channels @ Load
    -
  • Output Type
    1-Channel (Mono)
  • Type
    Class AB
  • Packaging
    Cut Tape (CT)
  • Packaging
    Tape & Reel (TR)
  • Product Status
    Not For New Designs
  • Series
    -
The LMV1088RL/NOPB is a low-power, low-voltage operational amplifier (op-amp) integrated circuit chip. Some of its advantages and application scenarios are as follows:Advantages: 1. Low power consumption: The LMV1088RL/NOPB is designed to operate at low power levels, making it suitable for battery-powered devices and applications where power efficiency is crucial. 2. Low voltage operation: It can operate at low supply voltages, typically ranging from 1.8V to 5.5V, making it compatible with a wide range of low-voltage systems. 3. Rail-to-rail input and output: The op-amp supports rail-to-rail input and output voltage ranges, allowing it to handle signals close to the supply voltage rails, maximizing the dynamic range and signal fidelity. 4. Low input offset voltage and low input bias current: These characteristics ensure accurate and precise signal amplification, making it suitable for applications that require high precision. 5. Small package size: The LMV1088RL/NOPB is available in small package options, such as SOT-23 and SC-70, making it suitable for space-constrained applications.Application scenarios: 1. Portable devices: The low power consumption and low voltage operation of the LMV1088RL/NOPB make it ideal for use in portable devices such as smartphones, tablets, portable media players, and wearable devices. 2. Sensor interfaces: The op-amp can be used in sensor interface circuits to amplify and condition signals from various sensors, such as temperature sensors, pressure sensors, and light sensors. 3. Battery-powered systems: The low power consumption and low voltage operation make it suitable for use in battery-powered systems, such as wireless sensor networks, remote monitoring systems, and IoT devices. 4. Audio amplification: The rail-to-rail input and output capability, along with low distortion characteristics, make it suitable for audio amplification applications, such as headphone amplifiers, portable audio devices, and audio signal conditioning circuits. 5. Precision measurement: The low input offset voltage and low input bias current characteristics make it suitable for precision measurement applications, such as data acquisition systems, instrumentation amplifiers, and medical devices.It is important to note that the specific advantages and application scenarios may vary depending on the requirements and specifications of the overall system design.