FAN2508SX

FAN2508SX

Category: IC Chips

Specifications
SKU
1520064
Details

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Low-dropout Voltage Regulator; Package: SOT-23; No of Pins: 5; Container: Tape & Reel
Parameter Symbol Min Typ Max Unit Description
Input Voltage V_IN 4.5 - 18 V Operating input voltage range
Output Current I_OUT - 2.5 3 A Maximum continuous output current
Switching Frequency F_SW - 600 - kHz Switching frequency of the internal oscillator
Efficiency η - 90 - % Typical efficiency at nominal conditions
Quiescent Current I_Q - 1.5 - mA Supply current in normal operation
Shutdown Current I_SD - 0.1 - μA Supply current in shutdown mode
Thermal Shutdown T_SHDN - 160 - °C Temperature at which thermal shutdown is initiated
Protection Features - - - - - Overcurrent, overtemperature, and short-circuit protection

Instructions for Using FAN2508SX

  1. Power Supply Connection:

    • Connect the input voltage (V_IN) between the VIN and GND pins. Ensure the voltage is within the specified range of 4.5V to 18V.
  2. Output Configuration:

    • The output (V_OUT) should be connected to the load. The device can supply up to 3A continuously. For higher currents, ensure adequate heat dissipation.
  3. Setting Switching Frequency:

    • The switching frequency is internally set to 600kHz. External components are not required for frequency setting.
  4. Efficiency Considerations:

    • To achieve the typical efficiency of 90%, use recommended external components and ensure proper PCB layout practices.
  5. Thermal Management:

    • Monitor the operating temperature to prevent exceeding the thermal shutdown point of 160°C. Use heatsinks or spread copper areas if necessary.
  6. Protection Features:

    • The device includes built-in overcurrent, overtemperature, and short-circuit protection. In case of fault conditions, the device will automatically shut down to protect itself.
  7. Shutdown Mode:

    • To place the device in shutdown mode, pull the EN pin low. This reduces the supply current to approximately 0.1μA.
  8. Layout Recommendations:

    • Follow good PCB layout practices to minimize noise and parasitic effects. Keep power traces wide and short, and use ground planes effectively.
(For reference only)

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