SL71051

SL71051


Specifications
SKU
12542718
Details

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Parameter Symbol Min Typical Max Unit Description
Supply Voltage Vcc 2.0 - 5.5 V Operating supply voltage range
Input Voltage Range Vin 0.0 - 5.5 V Range of input voltages that can be measured
Output Current Iout - 100 300 μA Maximum output current
Quiescent Current Iq - 1.0 2.0 μA Current consumed by the device under no load condition
Conversion Time tconv - 200 400 μs Time required to complete one conversion
Temperature Range Temp -40 - 85 °C Operating temperature range
Resolution Res - 12 - bits Number of bits of resolution for the ADC
Accuracy Acc - ±0.5 - % FSR Accuracy of the measurement relative to full-scale range
Power Consumption Pwr - 500 1000 μW Total power consumption of the device
Input Impedance Zin - 10 - Input impedance of the device
Output Impedance Zout - 100 - Ω Output impedance of the device

Instructions:

  1. Power Supply:

    • Connect the supply voltage (Vcc) between 2.0V and 5.5V to the Vcc pin.
    • Ensure the ground (GND) is properly connected.
  2. Input Connection:

    • Connect the input signal to the Vin pin. The input voltage should be within the range of 0.0V to 5.5V.
    • Ensure the input impedance is considered to avoid loading the source.
  3. Output Configuration:

    • The output current (Iout) can range from 0 to 300 μA. Ensure the load resistance is appropriate to avoid exceeding the maximum output current.
    • The output impedance is 100 Ω, which may affect the accuracy of the measurement if not accounted for.
  4. Conversion Control:

    • Initiate a conversion by setting the appropriate control signals.
    • The typical conversion time is 200 μs, but it can take up to 400 μs.
  5. Temperature Considerations:

    • The device operates reliably between -40°C and 85°C. Avoid operating outside this range to prevent damage or reduced performance.
  6. Accuracy and Resolution:

    • The device has a 12-bit resolution, providing high precision measurements.
    • The accuracy is ±0.5% of the full-scale range (FSR).
  7. Power Management:

    • The quiescent current is typically 1.0 μA, making the device suitable for low-power applications.
    • The total power consumption is typically 500 μW, with a maximum of 1000 μW.
  8. Handling and Storage:

    • 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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