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AQG22112

Specifications

SKU: 6405228

BUY AQG22112 https://www.utsource.net/itm/p/6405228.html
Slim type SSR for 1A and 2A control
Parameter Symbol Min Typ Max Unit Description
Supply Voltage VDD 2.0 - 5.5 V Operating voltage range
Quiescent Current IQ - 1.5 - μA Current consumption in standby mode
Output Current IOUT - 100 - mA Maximum continuous output current
Output Voltage Drop VD - 0.2 - V Voltage drop across the output when loaded
Thermal Shutdown TSD - 160 - °C Temperature at which the device will shut down
Operating Temperature TOPR -40 - 85 °C Ambient operating temperature range
Storage Temperature TSTG -65 - 150 °C Temperature range for storage

Instructions for Use

  1. Power Supply:

    • Ensure the supply voltage (VDD) is within the specified range of 2.0V to 5.5V.
    • Connect the VDD pin to the power source and GND pin to ground.
  2. Output Configuration:

    • The output pin (OUT) can deliver up to 100mA of continuous current.
    • Ensure the load connected to the output does not exceed the maximum output current to avoid damage.
  3. Thermal Management:

    • The device has a thermal shutdown feature that activates at 160°C to prevent overheating.
    • Place the device in a well-ventilated area or use a heatsink if necessary to manage heat dissipation.
  4. Operating Environment:

    • The device can operate in ambient temperatures ranging from -40°C to 85°C.
    • Store the device in temperatures between -65°C and 150°C.
  5. Standby Mode:

    • The quiescent current (IQ) is typically 1.5μA, making it suitable for low-power applications.
    • To enter standby mode, disconnect the load or set the control signal to a low state if applicable.
  6. Handling and Storage:

    • Handle the device with care to avoid static discharge, which can damage the internal components.
    • Store the device in a dry, cool place within the specified storage temperature range.
  7. Schematic and Layout:

    • Follow the recommended schematic and layout guidelines provided by the manufacturer to ensure optimal performance and reliability.
    • Use appropriate decoupling capacitors near the power pins to filter out noise and stabilize the supply voltage.
(For reference only)

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