NCP1013AP133G

NCP1013AP133G


Specifications
SKU
12594796
Details

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Parameter Symbol Min Typ Max Unit Conditions
Input Voltage VIN 2.7 - 5.5 V -
Output Voltage VOUT - 3.3 - V Fixed
Output Current IOUT - - 150 mA Continuous
Quiescent Current IQ - 18 - μA VIN = 5V, VOUT = 3.3V
Dropout Voltage VDROPOUT - 200 - mV IOUT = 150mA
Load Regulation - - 1 - % IOUT: 0 to 150mA
Line Regulation - - 0.1 - %/V VIN: 2.7 to 5.5V
PSRR (Power Supply Rejection Ratio) - - 60 - dB f = 1kHz
Thermal Shutdown TSD - - 160 °C -
Operating Temperature TOPR -40 - 85 °C -
Storage Temperature TSTG -65 - 150 °C -

Instructions for Use:

  1. Input Voltage Range: Ensure the input voltage is within the range of 2.7V to 5.5V to avoid damage or improper operation.
  2. Output Voltage: The NCP1013AP133G provides a fixed output voltage of 3.3V. No external components are required to set this voltage.
  3. Output Current: The device can provide up to 150mA of continuous output current. Exceeding this limit may cause thermal shutdown.
  4. Quiescent Current: The quiescent current is typically 18μA at 5V input and 3.3V output.
  5. Dropout Voltage: The dropout voltage is typically 200mV at full load (150mA). This means the input voltage should be at least 3.5V to maintain regulation.
  6. Load Regulation: The load regulation is 1%, meaning the output voltage will vary by 1% over the load range from 0 to 150mA.
  7. Line Regulation: The line regulation is 0.1%/V, indicating the output voltage will change by 0.1% for each volt change in the input voltage.
  8. PSRR (Power Supply Rejection Ratio): The device has a PSRR of 60dB at 1kHz, which helps in filtering out noise from the input supply.
  9. Thermal Shutdown: The device will shut down if the temperature exceeds 160°C to prevent damage.
  10. Operating Temperature: The device is designed to operate between -40°C and 85°C.
  11. Storage Temperature: The device can be stored between -65°C and 150°C without damage.

Layout Considerations:

  • Place the input and output capacitors as close as possible to the device to minimize parasitic inductance and improve stability.
  • Use low ESR (Equivalent Series Resistance) capacitors for both input and output to ensure optimal performance.
  • Ensure adequate heat sinking if operating near the maximum output current to prevent thermal shutdown.
(For reference only)

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