APIC-D06

APIC-D06


Specifications
SKU
12613847
Details

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Parameter Description Value
Part Number Unique identifier for the component APIC-D06
Type Type of component Power Supply Controller
Input Voltage Range Range of input voltages the device can handle 4.5V to 28V
Output Voltage Range Range of output voltages the device can provide 0.8V to 5.5V
Maximum Output Current Maximum current the device can supply 6A
Switching Frequency Frequency at which the internal switch operates 300kHz to 2MHz
Quiescent Current Current consumed by the device when no load is applied 100渭A (typ)
Shutdown Current Current consumed by the device in shutdown mode 1渭A (max)
Operating Temperature Range Temperature range in which the device can operate reliably -40掳C to +125掳C
Package Type Physical package of the component SOIC-8
Pin Count Number of pins on the package 8
Protection Features Built-in protection mechanisms Overcurrent, Overvoltage, Thermal Shutdown

Instructions for Use

  1. Power Supply Connection:

    • Connect the input voltage to the VIN pin.
    • Ensure the input voltage is within the specified range (4.5V to 28V).
  2. Output Configuration:

    • Set the desired output voltage using external resistors connected to the FB (Feedback) pin.
    • The output voltage can be calculated using the formula: ( V_ = V_ times left(1 + fracright) ), where ( V_ = 0.8V ).
  3. Inductor Selection:

    • Choose an inductor that matches the switching frequency and output current requirements.
    • Refer to the datasheet for recommended inductor values.
  4. Capacitor Selection:

    • Use a low ESR (Equivalent Series Resistance) capacitor for the input and output to ensure stability.
    • Typical values for input capacitance are 10渭F to 100渭F, and for output capacitance, 10渭F to 22渭F.
  5. Thermal Management:

    • Ensure adequate heat dissipation, especially when operating at high currents or temperatures.
    • Use a heatsink if necessary.
  6. Enable/Disable Function:

    • Connect the EN (Enable) pin to VCC to enable the device.
    • Pull the EN pin to GND to disable the device and reduce power consumption.
  7. Protection Circuits:

    • The device includes overcurrent, overvoltage, and thermal shutdown protections.
    • These features will automatically shut down the device if any of these conditions are detected.
  8. Layout Considerations:

    • Place the input and output capacitors as close as possible to the device to minimize parasitic inductance.
    • Keep the traces for high-current paths short and wide to reduce resistance and inductance.
  9. Testing:

    • Before finalizing the design, test the circuit under various load conditions to ensure stable operation.
    • Verify that the output voltage remains within the desired range and that the device does not overheat.
(For reference only)

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