D78C10AGF

D78C10AGF


Specifications
SKU
12611408
Details

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Parameter Symbol Min Typ Max Unit Description
Input Voltage VI 2.7 - 5.5 V Operating input voltage range
Output Voltage VO 1.0 - 1.0 V Fixed output voltage
Output Current IO - 10 - A Maximum continuous output current
Quiescent Current IQ - 3 - mA Quiescent current at nominal conditions
Dropout Voltage VD - 0.4 - V Dropout voltage at full load
Load Regulation - - 1 - % Change in output voltage with load
Line Regulation - - 0.2 - % Change in output voltage with input
Ripple Rejection - 60 - 80 dB Attenuation of input ripple
Operating Temperature Toper -40 - 125 掳C Operating temperature range
Storage Temperature Tstg -65 - 150 掳C Storage temperature range
Thermal Resistance 胃JA - 20 - 掳C/W Junction to ambient thermal resistance

Instructions for Use:

  1. Input Voltage (VI): Ensure the input voltage is within the specified range of 2.7V to 5.5V. Exceeding this range can damage the device.
  2. Output Voltage (VO): The D78C10AGF provides a fixed output voltage of 1.0V. This cannot be adjusted.
  3. Output Current (IO): The maximum continuous output current is 10A. Do not exceed this limit to avoid overheating or damage.
  4. Quiescent Current (IQ): The quiescent current is typically 3mA. This is the current drawn by the regulator when there is no load.
  5. Dropout Voltage (VD): The dropout voltage is typically 0.4V. Ensure that the input voltage is at least 0.4V higher than the output voltage to maintain regulation.
  6. Load Regulation: The output voltage may change by up to 1% with changes in load.
  7. Line Regulation: The output voltage may change by up to 0.2% with changes in input voltage.
  8. Ripple Rejection: The regulator can attenuate input ripple by 60 to 80dB.
  9. Operating Temperature (Toper): The device operates reliably between -40掳C and 125掳C.
  10. Storage Temperature (Tstg): Store the device between -65掳C and 150掳C.
  11. Thermal Management: Ensure proper heat dissipation to keep the junction temperature within safe limits. The thermal resistance from junction to ambient is typically 20掳C/W.

Additional Notes:

  • Always use appropriate decoupling capacitors on both the input and output sides to ensure stable operation.
  • For high current applications, consider using a heatsink to manage thermal dissipation effectively.
(For reference only)

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