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UA741CP DIP8

Specifications

SKU: 9273900

BUY UA741CP DIP8 https://www.utsource.net/itm/p/9273900.html

Parameter Symbol Min Typical Max Unit Conditions
Supply Voltage VCC -15 0 +15 V
Input Offset Voltage VIO -1 0 +1 mV @ 25°C
Input Bias Current IB 80 500 500 nA @ 25°C
Input Offset Current IOS -20 0 +20 nA @ 25°C
Differential Input Voltage Range VID -13 0 +13 V @ 25°C, VCC = ±15V
Common-Mode Rejection Ratio CMRR 90 - - dB @ 1kHz, VCC = ±15V
Slew Rate SR - 0.5 - V/μs @ 25°C, VCC = ±15V
Output Voltage Swing VO -13 0 +13 V @ 25°C, VCC = ±15V, RL = 2kΩ
Bandwidth (Small Signal) fT - 1 - MHz @ 25°C, VCC = ±15V
Quiescent Current IQ - 0.8 - mA @ 25°C, VCC = ±15V

Instructions for Using the UA741CP DIP8:

  1. Power Supply:

    • Connect the positive supply voltage (VCC) to pin 7.
    • Connect the negative supply voltage (VEE) to pin 4.
    • Ensure the supply voltages are within the specified range (-15V to +15V).
  2. Input Configuration:

    • Connect the non-inverting input (pin 3) to the desired input signal.
    • Connect the inverting input (pin 2) to the feedback network or reference voltage.
  3. Output Configuration:

    • The output is available at pin 6.
    • Ensure the load resistance (RL) is appropriate to avoid overloading the op-amp.
  4. Grounding:

    • Connect the ground (GND) to pin 4 if using a single supply configuration.
    • For dual supply configurations, connect GND to the midpoint between VCC and VEE.
  5. Offset Nulling:

    • For precise applications, use the offset null pins (1 and 5) to adjust the input offset voltage.
    • Connect a potentiometer between pins 1 and 5, with the wiper connected to GND.
  6. Decoupling Capacitors:

    • Place a 0.1 μF ceramic capacitor between VCC and GND, and another between VEE and GND, close to the op-amp to reduce noise and improve stability.
  7. Operating Temperature:

    • The UA741CP is designed to operate within the temperature range of 0°C to 70°C.
  8. Storage and Handling:

    • Store the op-amp in a dry environment to prevent moisture damage.
    • Handle the device with care to avoid static discharge, which can damage the internal components.
  9. Testing:

    • Before integrating the op-amp into a circuit, test it with a simple gain stage to ensure it is functioning correctly.
  10. Safety:

    • Always follow proper electrical safety guidelines when working with circuits involving power supplies and op-amps.
(For reference only)

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