TPS60402DBVTG4

TPS60402DBVTG4


Specifications
Details

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Parameter Symbol Conditions Min Typ Max Unit
Input Voltage VIN Operating 1.8 5.5 V
Output Voltage VOUT Fixed 3.3 V
Output Current IOUT Continuous 200 mA
Quiescent Current IQ No load, VIN = 3.3V 70 渭A
Efficiency VIN = 3.3V, IOUT = 50mA 90 %
Shutdown Current ISD VIN = 3.3V 0.1 渭A
Operating Temperature TOPR Junction -40 85 掳C

Instructions for TPS60402DBVTG4:

  1. Input Voltage (VIN):

    • Ensure the input voltage is within the operating range of 1.8V to 5.5V.
  2. Output Voltage (VOUT):

    • The output voltage is fixed at 3.3V. No external components are required for setting this voltage.
  3. Output Current (IOUT):

    • The device can provide up to a continuous output current of 200mA. Ensure your load does not exceed this limit to avoid damage or overheating.
  4. Quiescent Current (IQ):

    • At no load and with an input voltage of 3.3V, the quiescent current is typically 70渭A. This helps in minimizing power consumption during standby conditions.
  5. Efficiency (畏):

    • For optimal efficiency, operate the device under conditions where the input voltage is close to 3.3V and the output current is around 50mA, achieving approximately 90% efficiency.
  6. Shutdown Current (ISD):

    • When the device is in shutdown mode, the current draw from the input supply is reduced to about 0.1渭A, which is useful for battery-operated applications.
  7. Operating Temperature (TOPR):

    • Ensure that the junction temperature remains within the operational range of -40掳C to +85掳C. Proper heat dissipation may be necessary depending on the application environment.
  8. Application Notes:

    • Always refer to the datasheet for detailed application circuits, PCB layout guidelines, and other critical design considerations.
    • Use appropriate bypass capacitors near the input and output pins to ensure stability and reduce noise.
  9. Handling Precautions:

    • Handle the device with care to avoid electrostatic discharge (ESD) damage. Follow standard ESD precautions when handling sensitive electronic components.
(For reference only)

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