NJW1112V-TE1

NJW1112V-TE1

Category: IC Chips

Specifications
Details

BUY NJW1112V-TE1 https://www.utsource.net/itm/p/12591932.html

Parameter Symbol Conditions Min Typ Max Unit
Input Voltage VIN Operating Range 2.7 - 5.5 V
Output Voltage VOUT Fixed - 3.3 - V
Quiescent Current IQ VIN = 5V - 1.8 - μA
Dropout Voltage VDROPOUT IOUT = 100mA - 300 - mV
Load Regulation δVL IOUT=1mA to 100mA - 0.2 - %
Line Regulation δVL VIN=2.7V to 5.5V - 0.1 - %
Output Current IOUT Continuous - 150 - mA
PSRR (Power Supply Rejection Ratio) PSRR f = 1kHz - 60 - dB

Instructions for NJW1112V-TE1

  1. Input Voltage (VIN):

    • Ensure the input voltage is within the operating range of 2.7V to 5.5V.
  2. Output Voltage (VOUT):

    • The device provides a fixed output voltage of 3.3V. No external components are required for voltage setting.
  3. Quiescent Current:

    • The quiescent current is typically 1.8μA at an input voltage of 5V, indicating low power consumption suitable for battery-operated devices.
  4. Dropout Voltage:

    • The dropout voltage is typically 300mV when the output current is 100mA, allowing efficient operation even with low input-to-output voltage differences.
  5. Load Regulation:

    • The load regulation is typically 0.2% from 1mA to 100mA output current, ensuring stable output voltage under varying load conditions.
  6. Line Regulation:

    • The line regulation is typically 0.1% over the input voltage range of 2.7V to 5.5V, maintaining output stability despite input voltage fluctuations.
  7. Output Current:

    • The device can provide up to 150mA continuous output current, suitable for various low-power applications.
  8. PSRR (Power Supply Rejection Ratio):

    • At 1kHz, the PSRR is 60dB, effectively rejecting noise and ripple from the input supply.
  9. Thermal Considerations:

    • Ensure adequate heat dissipation if operating near maximum output current or in high ambient temperatures.
  10. Layout Recommendations:

    • Place the input and output capacitors close to the regulator to minimize noise and improve transient response.
    • Use bypass capacitors as recommended by the manufacturer for optimal performance.
(For reference only)

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