Details

BUY TL032AIP https://www.utsource.net/itm/p/12444330.html

Parameter Symbol Conditions Min Typ Max Unit
Supply Voltage VCC - 2.7 - 16 V
Input Voltage Range VI - 0 - VCC - 1.5 V
Output Voltage Swing VO No Load 0 - VCC - 2.0 V
Input Offset Voltage VOS - - 5 15 mV
Input Bias Current IB - - 40 100 nA
Slew Rate SR - - 0.5 1.0 V/渭s
Bandwidth fT - - 1.2 1.8 MHz
Power Consumption PD Quiescent - 0.9 1.5 mW
Common Mode Rejection Ratio CMRR - 80 - 100 dB
Supply Current IS - - 0.2 0.4 mA

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage (VCC) is within the range of 2.7V to 16V.
    • Connect the power supply to the VCC pin and ground to the GND pin.
  2. Input Signals:

    • The input voltage range should be between 0V and VCC - 1.5V.
    • Avoid applying voltages outside this range to prevent damage to the device.
  3. Output Configuration:

    • The output voltage swing can range from 0V to VCC - 2.0V under no load conditions.
    • For optimal performance, ensure the load resistance is appropriate for the expected output current.
  4. Biasing and Stability:

    • The input bias current is typically around 40nA, but can vary up to 100nA.
    • Use appropriate feedback resistors to maintain stability and accuracy.
  5. Slew Rate and Bandwidth:

    • The slew rate is typically 0.5V/渭s, with a maximum of 1.0V/渭s.
    • The bandwidth is typically 1.2MHz, with a maximum of 1.8MHz.
  6. Common Mode Rejection Ratio (CMRR):

    • The CMRR is typically 80dB, with a maximum of 100dB, ensuring good rejection of common mode signals.
  7. Power Consumption:

    • The quiescent power consumption is typically 0.9mW, with a maximum of 1.5mW.
    • The supply current is typically 0.2mA, with a maximum of 0.4mA.
  8. Handling Precautions:

    • Handle the device with care to avoid static discharge, which can damage sensitive components.
    • Store the device in a dry, cool environment to prevent moisture damage.

By following these parameters and instructions, you can ensure the TL032AIP operates efficiently and reliably in your circuit.

(For reference only)

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