Details

BUY TL084CPWR https://www.utsource.net/itm/p/12401331.html

Parameter Symbol Conditions Min Typ Max Unit
Supply Voltage Range VCC 卤15V to 卤18V -18 -15 -12 V
Input Offset Voltage VIO VCC = 卤15V -15 4 15 渭V
Input Bias Current IB VCC = 卤15V 20 80 140 nA
Input Offset Current IOS VCC = 卤15V -30 10 30 nA
Input Voltage Range VI VCC = 卤15V -13 -12 12 V
Output Voltage Swing VO VCC = 卤15V -13 -12 12 V
Slew Rate SR VCC = 卤15V 13 V/渭s
Large Signal Bandwidth fT VCC = 卤15V 3 4 5 MHz
Power Consumption Ptot VCC = 卤15V 20 mW
Operating Temperature Range TA -40 85 掳C

Instructions for Using TL084CPWR:

  1. Power Supply:

    • The TL084CPWR is designed to operate with a dual supply voltage range of 卤15V to 卤18V. Ensure that the power supply voltages are within this range to avoid damage to the device.
  2. Input Signals:

    • The input voltage range should be within -13V to +12V when operating at 卤15V supply. Exceeding these limits can cause distortion or damage.
    • The input bias current is typically around 80nA, and the input offset current is around 10nA. These values should be considered when designing input circuits to minimize errors.
  3. Output Signals:

    • The output voltage swing is typically 卤12V when operating at 卤15V supply. Ensure that the load impedance is appropriate to achieve the desired output swing.
  4. Slew Rate:

    • The slew rate is 13V/渭s, which means the op-amp can change its output voltage by 13V in one microsecond. This is important for high-frequency applications to avoid distortion.
  5. Bandwidth:

    • The large signal bandwidth is typically 4MHz. For applications requiring higher frequencies, consider the slew rate and ensure that the signal does not exceed the bandwidth limitations.
  6. Temperature Considerations:

    • The operating temperature range is from -40掳C to 85掳C. Ensure that the device operates within this range to maintain performance and reliability.
  7. Mounting and Handling:

    • Handle the TL084CPWR with care to avoid static damage. Use proper grounding techniques and ESD protection when handling the device.
    • Mount the device on a PCB with adequate heat dissipation if it will be operating at high power levels.
  8. Testing and Troubleshooting:

    • When testing the device, start with simple configurations like a unity gain buffer or a non-inverting amplifier to verify basic functionality.
    • If the device is not performing as expected, check the power supply, input signals, and load conditions. Also, verify that all connections are secure and correct.

By following these instructions, you can ensure optimal performance and reliability of the TL084CPWR in your circuit design.

(For reference only)

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