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LMH0041SQX/NOPB

Specifications

SKU: 4624378

BUY LMH0041SQX/NOPB https://www.utsource.net/itm/p/4624378.html
IC DESERIALIZER SDI LVDS 48WQFN
Parameter Symbol Min Typical Max Unit Notes
Supply Voltage Vcc 2.7 - 5.5 V Operating supply voltage range
Output Voltage Range Vout 0 - Vcc V Differential output voltage
Bandwidth (Small Signal) f-3dB - 6000 - MHz Small signal bandwidth
Slew Rate SR - 3500 - V/μs Differential output slew rate
Output Current (Source) Iout+ - 50 100 mA Maximum differential output current
Output Current (Sink) Iout- - 50 100 mA Maximum differential output current
Input Differential Range Vid - 1.4 - V Maximum differential input voltage
Input Common-Mode Range Vicm -0.3 - Vcc+0.3 V Input common-mode voltage range
Power Dissipation Pd - - 800 mW Maximum power dissipation
Operating Temperature Toper -40 - 125 °C Operating temperature range
Storage Temperature Tstg -65 - 150 °C Storage temperature range

Instructions for Use:

  1. Power Supply:

    • Ensure the supply voltage (Vcc) is within the specified range of 2.7V to 5.5V.
    • Use a stable power source to avoid voltage fluctuations that can affect performance.
  2. Input Signals:

    • The input differential voltage (Vid) should not exceed 1.4V to prevent damage or distortion.
    • The input common-mode voltage (Vicm) must be within the range of -0.3V to Vcc + 0.3V.
  3. Output Configuration:

    • The differential output voltage (Vout) can range from 0V to the supply voltage (Vcc).
    • Ensure the load impedance is appropriate for the output current capabilities (50mA typical, 100mA maximum).
  4. Thermal Management:

    • The device can dissipate up to 800mW of power. Ensure adequate heat sinking if operating near the maximum power dissipation.
    • Operate the device within the specified temperature range (-40°C to 125°C) to ensure reliable performance.
  5. Storage:

    • Store the device in a dry environment within the storage temperature range (-65°C to 150°C) to prevent damage.
  6. Handling:

    • Handle the device with care to avoid static discharge, which can damage sensitive components.
    • Follow proper soldering techniques and use recommended temperatures to avoid thermal stress during assembly.
(For reference only)

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