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LTC2301CMS#PBF

Specifications

SKU: 11569428

BUY LTC2301CMS#PBF https://www.utsource.net/itm/p/11569428.html
IC ADC 12BIT SAR 12MSOP
Parameter Symbol Min Typ Max Unit
Supply Voltage VCC 4.75 - 5.25 V
Analog Input Voltage Range VIN 0 - VCC - 1.2 V
Conversion Time tCONV - 6.9 - μs
Throughput Rate fS - 145 - kSPS
Differential Nonlinearity DNL -1 - +1 LSB
Integral Nonlinearity INL -2 - +2 LSB
Signal-to-Noise Ratio SNR - 88 - dB
Total Harmonic Distortion THD - -105 - dB
Power Consumption PCON - 20 - mW
Operating Temperature Range TOP -40 - 125 °C

Instructions for Using LTC2301CMS#PBF

  1. Power Supply:

    • Ensure the supply voltage (VCC) is within the range of 4.75V to 5.25V.
    • Use a stable power supply to avoid noise and fluctuations.
  2. Analog Input:

    • The analog input voltage (VIN) should be between 0V and VCC - 1.2V.
    • Avoid exceeding the input voltage range to prevent damage to the ADC.
  3. Conversion:

    • The conversion time is typically 6.9 μs.
    • The throughput rate is up to 145 kSPS (kilo samples per second).
  4. Linearity:

    • The differential nonlinearity (DNL) is ±1 LSB.
    • The integral nonlinearity (INL) is ±2 LSB.
    • These parameters ensure accurate and consistent conversions.
  5. Signal Quality:

    • The signal-to-noise ratio (SNR) is 88 dB, indicating a high level of signal purity.
    • The total harmonic distortion (THD) is -105 dB, which is very low, ensuring minimal distortion in the signal.
  6. Power Consumption:

    • The typical power consumption is 20 mW, making it suitable for power-sensitive applications.
  7. Temperature:

    • The operating temperature range is from -40°C to 125°C.
    • Ensure the device is used within this range to maintain performance and reliability.
  8. Handling:

    • Handle the device with care to avoid static discharge, which can damage sensitive components.
    • Follow proper soldering techniques and use appropriate tools to mount the device on a PCB.
  9. Testing:

    • Before deploying the device in a final application, test it under various conditions to ensure it meets the required specifications.
    • Use a known reference signal to verify the accuracy and linearity of the ADC.
(For reference only)

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