LM7321MF/NOPB

LM7321MF/NOPB


Specifications
SKU
12608193
Details

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Parameter Symbol Min Typical Max Unit
Supply Voltage Vcc 2.7 - 5.5 V
Operating Temperature Ta -40 - 85 掳C
Input Offset Voltage Vos - 1.5 - mV
Input Bias Current Ib - 50 - nA
Input Voltage Range Vcm 0 - Vcc-1.2 V
Output Voltage Swing Vo 0 - Vcc-1.5 V
Slew Rate SR - 0.3 - V/渭s
Bandwidth (Small Signal) f-3dB - 1.2 - MHz
Quiescent Current Iq - 220 - 渭A
Common Mode Rejection Ratio CMRR - 90 - dB
Power Supply Rejection Ratio PSRR - 96 - dB

Instructions for Use:

  1. Supply Voltage:

    • The LM7321MF/NOPB operates within a supply voltage range of 2.7V to 5.5V. Ensure that the power supply is stable and within this range to avoid damage or erratic behavior.
  2. Operating Temperature:

    • The device is designed to operate in temperatures ranging from -40掳C to 85掳C. Avoid exposing the device to temperatures outside this range to prevent performance degradation or failure.
  3. Input Signals:

    • The input voltage range should be between 0V and Vcc - 1.2V. Exceeding these limits can cause damage to the device.
    • The input bias current is typically 50nA, so ensure that the source impedance is appropriate to minimize errors.
  4. Output Configuration:

    • The output voltage swing is from 0V to Vcc - 1.5V. This should be considered when designing the load circuit to ensure proper signal levels.
  5. Slew Rate:

    • The typical slew rate is 0.3V/渭s. This is important for applications requiring fast signal transitions.
  6. Bandwidth:

    • The small-signal bandwidth is typically 1.2MHz. This is crucial for high-frequency applications.
  7. Quiescent Current:

    • The quiescent current is typically 220渭A. This is important for low-power applications.
  8. Common Mode Rejection Ratio (CMRR):

    • The CMRR is typically 90dB, indicating good rejection of common-mode signals.
  9. Power Supply Rejection Ratio (PSRR):

    • The PSRR is typically 96dB, indicating strong rejection of power supply noise.
  10. Handling Precautions:

    • Handle the device with care to avoid static discharge, which can damage the internal components.
    • Follow proper PCB layout guidelines to ensure optimal performance and reliability.
  11. Storage:

    • Store the device in a dry, cool environment to prevent moisture damage and ensure long-term reliability.
  12. Testing:

    • Before integrating the device into a final design, perform thorough testing under various conditions to ensure it meets the required specifications.
(For reference only)

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