STRA6251

STRA6251


Specifications
SKU
12611042
Details

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Parameter Symbol Min Typ Max Unit Notes
Supply Voltage Vcc 4.5 - 30 V
Quiescent Current IQ - 80 - 渭A
Output Current (Max) Iout - - 1.5 A
Dropout Voltage Vdo - 1.2 - V
Operating Temperature Topr -40 - 125 掳C
Storage Temperature Tstg -65 - 150 掳C
Thermal Resistance (胃JA) 胃JA - 75 - 掳C/W
Input Voltage Range Vin 4.5 - 30 V
Output Voltage Range Vout 1.2 - 28 V

Instructions for STRA6251

  1. Supply Voltage (Vcc):

    • Ensure the supply voltage is within the range of 4.5V to 30V.
    • Exceeding the maximum supply voltage can damage the device.
  2. Quiescent Current (IQ):

    • The quiescent current is typically 80 渭A. This is the current consumed by the device when no load is applied.
  3. Output Current (Iout):

    • The maximum output current is 1.5A. Do not exceed this limit to avoid overheating or damage.
  4. Dropout Voltage (Vdo):

    • The typical dropout voltage is 1.2V. This is the minimum difference between the input and output voltages required to maintain regulation.
  5. Operating Temperature (Topr):

    • The operating temperature range is from -40掳C to 125掳C. Ensure the device operates within this range to prevent malfunction or damage.
  6. Storage Temperature (Tstg):

    • The storage temperature range is from -65掳C to 150掳C. Store the device in a suitable environment to avoid degradation.
  7. Thermal Resistance (胃JA):

    • The thermal resistance is 75掳C/W. Use appropriate heat sinks or cooling methods to manage heat dissipation, especially under high load conditions.
  8. Input Voltage Range (Vin):

    • The input voltage should be within the range of 4.5V to 30V to ensure proper operation.
  9. Output Voltage Range (Vout):

    • The output voltage can be set between 1.2V and 28V. Adjust the output voltage using external resistors as specified in the datasheet.

Additional Notes:

  • Always refer to the specific application notes and datasheets for detailed information and recommended circuit configurations.
  • Proper PCB layout and component selection are crucial for optimal performance and reliability.
(For reference only)

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