AD8211YRJZ-RL7

AD8211YRJZ-RL7

Category: Transistors

Specifications
SKU
11548488
Details

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Parameter Description Min Typical Max Unit
Supply Voltage (VDD) Operating supply voltage 4.5 - 36 V
Quiescent Current Supply current with no load - 1.2 - mA
Input Voltage Range Range of input voltages that can be applied to the inputs 0 - VDD - 1.2 V
Common-Mode Rejection Ratio (CMRR) Ability to reject common-mode signals 80 - - dB
Differential Input Voltage Maximum differential voltage that can be applied to the inputs 卤100 - - mV
Output Voltage Swing Output voltage range relative to ground 0.1 - VDD - 1.2 V
Bandwidth Frequency at which the gain drops to -3dB - 80 - kHz
Gain Error Deviation from ideal gain - 卤0.5 - %
Temperature Range Operating temperature range -40 - 125 掳C
Package Type Physical package type - SOIC-8 - -

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage (VDD) is within the specified range of 4.5V to 36V.
    • Connect the VDD pin to the positive supply and GND pin to the ground.
  2. Input Connection:

    • Apply the differential input signal to the IN+ and IN- pins.
    • Ensure the differential input voltage does not exceed 卤100mV.
    • The common-mode input voltage should be within the range of 0V to VDD - 1.2V.
  3. Output Configuration:

    • Connect the output pin (OUT) to the load or next stage of the circuit.
    • The output voltage swing is from 0.1V to VDD - 1.2V.
  4. Temperature Considerations:

    • Operate the device within the temperature range of -40掳C to 125掳C to ensure reliable performance.
  5. Gain and Accuracy:

    • The device has a fixed gain, and the gain error is typically 卤0.5%. Ensure this is within acceptable limits for your application.
  6. PCB Layout:

    • Place the device close to the signal source to minimize noise pickup.
    • Use decoupling capacitors (e.g., 0.1渭F) between VDD and GND to filter out supply noise.
  7. Storage and Handling:

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

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