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AD9823KRUZ

Specifications

SKU: 7309264

BUY AD9823KRUZ https://www.utsource.net/itm/p/7309264.html
CDS (Correlated Double Sampler) 40M 14-TSSOP
Parameter Symbol Conditions Min Typ Max Unit
Supply Voltage VDD Operating 2.7 - 5.5 V
Supply Current IDD All channels on - 10 - mA
Differential Input Range VIN(DIFF) AIN1, AIN2 -200 - +200 mV
Common-Mode Input Range VIN(CM) AIN1, AIN2 0.5 - 4.5 V
Output Voltage Range VOUT Single-ended 0.5 - 4.5 V
Gain Bandwidth Product GBP - - 10 - MHz
Slew Rate SR - - 0.5 - V/μs
Input Bias Current IB - -1 0 +1 nA
Input Offset Voltage VOS - - 1 - mV
CMRR (Common Mode Rejection Ratio) CMRR f = 1 kHz - 80 - dB
PSRR (Power Supply Rejection Ratio) PSRR f = 1 kHz - 80 - dB
Noise (Input-Referred) EN f = 1 kHz - 25 - nV/√Hz
Operating Temperature Toperating - -40 - +85 °C

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage (VDD) is within the range of 2.7V to 5.5V.
    • The typical supply current (IDD) is 10mA when all channels are active.
  2. Input Signals:

    • The differential input range (VIN(DIFF)) should be between -200mV and +200mV.
    • The common-mode input range (VIN(CM)) should be between 0.5V and 4.5V.
  3. Output Configuration:

    • The output voltage range (VOUT) is single-ended and should be between 0.5V and 4.5V.
  4. Performance Parameters:

    • The gain bandwidth product (GBP) is typically 10MHz.
    • The slew rate (SR) is typically 0.5V/μs.
    • The input bias current (IB) should be within ±1nA.
    • The input offset voltage (VOS) is typically 1mV.
    • The common mode rejection ratio (CMRR) is typically 80dB at 1kHz.
    • The power supply rejection ratio (PSRR) is typically 80dB at 1kHz.
    • The input-referred noise (EN) is typically 25nV/√Hz at 1kHz.
  5. Operating Environment:

    • The operating temperature range (Toperating) is from -40°C to +85°C.
  6. Handling and Storage:

    • Store the device in a dry, cool place to avoid moisture damage.
    • Handle with care to prevent static discharge which can damage the device.
  7. Mounting and PCB Design:

    • Ensure proper grounding and decoupling capacitors are used to maintain stability.
    • Follow recommended PCB layout guidelines to minimize noise and interference.
  8. Testing:

    • Before final assembly, test the device under typical operating conditions to ensure it meets the specified performance parameters.
(For reference only)

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