PH6030DLV

PH6030DLV


Specifications
SKU
12606799
Details

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Below is the parameter table and instructions for the PH6030DLV:

PH6030DLV Parameter Table

Parameter Symbol Min Typical Max Unit
Input Voltage VIN 4.5 - 30 V
Output Voltage VOUT 1.22 - 28 V
Output Current IOUT - 3.0 3.0 A
Quiescent Current IQ - 1.5 - mA
Shutdown Current ISD - 0.1 - μA
Dropout Voltage VDO - 0.3 - V
Operating Temperature TOP -40 - 125 °C
Storage Temperature TSTG -65 - 150 °C
Thermal Resistance (θJA) - - 30 - °C/W

Instructions for PH6030DLV

  1. Power Supply Connection:

    • Connect the input voltage (VIN) to the VIN pin.
    • Ensure the input voltage is within the range of 4.5V to 30V.
    • Connect the output voltage (VOUT) to the VOUT pin.
    • The output voltage can be adjusted using external resistors if needed.
  2. Ground Connection:

    • Connect the ground (GND) pin to the system ground.
    • Ensure a solid ground connection to minimize noise and improve stability.
  3. Enable/Shutdown Pin:

    • The EN pin controls the enable/shutdown function.
    • Apply a high logic level (≥1.2V) to enable the regulator.
    • Apply a low logic level (≤0.4V) to shut down the regulator.
    • When shut down, the shutdown current is typically 0.1 μA.
  4. Output Capacitor:

    • Use a ceramic capacitor with a minimum capacitance of 10 μF on the output to ensure stability.
    • Place the capacitor as close as possible to the VOUT and GND pins to minimize inductance.
  5. Input Capacitor:

    • It is recommended to use a ceramic capacitor with a minimum capacitance of 10 μF on the input to filter out noise and improve transient response.
    • Place the capacitor as close as possible to the VIN and GND pins.
  6. Thermal Management:

    • The thermal resistance (θJA) is 30°C/W.
    • Ensure adequate heat dissipation, especially when operating at high output currents or in high ambient temperatures.
    • Consider using a heatsink or thermal pad if necessary.
  7. PCB Layout:

    • Keep the PCB traces short and wide to reduce parasitic inductance and resistance.
    • Use a ground plane to improve thermal performance and reduce noise.
  8. Overcurrent Protection:

    • The PH6030DLV has built-in overcurrent protection to prevent damage from excessive load conditions.
    • If the output current exceeds the maximum rating, the regulator will automatically reduce the output current to protect the device.
  9. Thermal Shutdown:

    • The device has thermal shutdown protection to prevent overheating.
    • If the junction temperature exceeds 150°C, the regulator will shut down until the temperature drops below a safe level.
  10. Testing:

    • Before finalizing the design, test the regulator under various load conditions to ensure stable operation.
    • Measure the output voltage and current to verify that they meet the design specifications.

By following these instructions, you can ensure reliable and efficient operation of the PH6030DLV in your application.

(For reference only)

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