OP97FS

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LOW POWER, HIGH PRECISION OPERATIONAL AMPLIFIER

Parameter Symbol Min Typ Max Unit Conditions
Supply Voltage VCC 2.7 - 5.5 V -
Quiescent Current IQ - 10 - μA VCC = 5V
Input Offset Voltage VIO - 5 25 μV VCC = 5V
Input Bias Current IB - 0.5 2 nA VCC = 5V
Input Resistance RI - 10 - -
Common-Mode Rejection Ratio CMRR 80 - 120 dB VCC = 5V, f = 60Hz
Power Supply Rejection Ratio PSRR 80 - 120 dB VCC = 5V, f = 60Hz
Output Voltage Swing VOS - 0 1.5 V VCC = 5V, RL = 2kΩ
Slew Rate SR - 0.3 1 V/μs VCC = 5V
Bandwidth BW - 1 10 MHz VCC = 5V, G = 1

Instructions for Use:

  1. Supply Voltage:

    • The OP97FS operates with a supply voltage range of 2.7V to 5.5V. Ensure that the supply voltage is within this range to avoid damage to the device.
  2. Quiescent Current:

    • The typical quiescent current is 10 μA at 5V supply. This low current consumption makes the OP97FS suitable for battery-powered applications.
  3. Input Offset Voltage:

    • The input offset voltage is typically 5 μV and can range up to 25 μV. This parameter is crucial for precision applications.
  4. Input Bias Current:

    • The input bias current is very low, typically 0.5 nA, making the OP97FS ideal for high-impedance circuits.
  5. Input Resistance:

    • The input resistance is extremely high, typically 10 GΩ, which minimizes loading effects on the signal source.
  6. Common-Mode Rejection Ratio (CMRR):

    • The CMRR is between 80 dB and 120 dB at 60 Hz, indicating good rejection of common-mode signals.
  7. Power Supply Rejection Ratio (PSRR):

    • The PSRR is also between 80 dB and 120 dB at 60 Hz, ensuring that variations in the power supply have minimal effect on the output.
  8. Output Voltage Swing:

    • The output voltage swing can go from 0V to 1.5V below the supply voltage, depending on the load resistance.
  9. Slew Rate:

    • The slew rate is typically 0.3 V/μs, which limits the maximum rate of change of the output voltage.
  10. Bandwidth:

    • The bandwidth is typically 1 MHz at a gain of 1, suitable for a wide range of analog applications.

Additional Notes:

(For reference only)

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