PD57006

PD57006


Specifications
SKU
12604257
Details

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Parameter Symbol Min Typical Max Unit
Input Voltage V_IN 4.5 - 28 V
Output Voltage V_OUT 1.2 - 5.5 V
Output Current I_OUT - 3 6 A
Efficiency - 92 - %
Switching Frequency f_SW - 600 - kHz
Quiescent Current I_Q - 30 - 渭A
Shutdown Current I_SD - 1 - 渭A
Operating Temperature T_OP -40 - 125 掳C
Storage Temperature T_STG -40 - 150 掳C
Package - - SOT-23 - -

Instructions for Use:

  1. Input Voltage (V_IN):

    • Ensure the input voltage is within the range of 4.5V to 28V. Exceeding this range can damage the device.
  2. Output Voltage (V_OUT):

    • Set the output voltage using the feedback resistor network. The typical output voltage range is from 1.2V to 5.5V.
  3. Output Current (I_OUT):

    • The device can deliver up to 6A of output current. For continuous operation, it is recommended to stay below 3A to ensure optimal performance and longevity.
  4. Efficiency (畏):

    • The typical efficiency is around 92%. Ensure proper heat dissipation to maintain this efficiency level.
  5. Switching Frequency (f_SW):

    • The switching frequency is fixed at 600kHz. This helps in minimizing the size of external components like inductors and capacitors.
  6. Quiescent Current (I_Q):

    • The quiescent current is typically 30渭A. This low current consumption is beneficial for battery-powered applications.
  7. Shutdown Current (I_SD):

    • When the device is in shutdown mode, the current consumption drops to approximately 1渭A.
  8. Operating Temperature (T_OP):

    • The operating temperature range is from -40掳C to 125掳C. Ensure that the ambient temperature does not exceed these limits.
  9. Storage Temperature (T_STG):

    • The storage temperature range is from -40掳C to 150掳C. Store the device in a dry and cool environment to prevent damage.
  10. Package:

    • The PD57006 is available in a SOT-23 package. Ensure proper handling and soldering techniques to avoid damage during assembly.

Additional Notes:

  • Thermal Management: Use a heatsink or thermal pad if the device will be operating at high output currents or in high-temperature environments.
  • PCB Layout: Follow recommended PCB layout guidelines to minimize noise and improve stability.
  • Capacitors and Inductors: Select high-quality, low ESR capacitors and inductors to ensure stable operation and efficient power delivery.
(For reference only)

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