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BA5826FP

Specifications

SKU: 11247400

BUY BA5826FP https://www.utsource.net/itm/p/11247400.html

Parameter Symbol Min Typ Max Unit Conditions
Supply Voltage Vcc 4.5 - 5.5 V -
Output Current Iout - 100 150 mA Continuous, TA = 25°C
Peak Output Current Iout_peak - 300 - mA Pulse Width ≤ 10 ms, Duty Cycle ≤ 1%
Operating Temperature Topr -40 - 85 °C -
Storage Temperature Tstg -55 - 150 °C -
Thermal Resistance (Junction to Ambient) RθJA - 150 - °C/W -
Quiescent Current IQ - 1.5 3 mA Vcc = 5V, No Load
Shutdown Current ISD - 0.1 0.5 μA Vcc = 5V, Shutdown Mode
Output Voltage Drop Vsat 0.3 - 0.7 V Iout = 150mA, Vcc = 5V
Rise Time tr - 1.5 3 μs Vcc = 5V, RL = 10Ω
Fall Time tf - 1.5 3 μs Vcc = 5V, RL = 10Ω

Instructions for Use:

  1. Supply Voltage:

    • Ensure the supply voltage is within the range of 4.5V to 5.5V to avoid damage or improper operation.
  2. Output Current:

    • The device can continuously provide up to 150mA. For higher current pulses, ensure the pulse width and duty cycle do not exceed the specified limits.
  3. Temperature Considerations:

    • Operate the device within the temperature range of -40°C to 85°C for optimal performance. Store the device between -55°C and 150°C.
  4. Thermal Management:

    • The thermal resistance from the junction to ambient is 150°C/W. Ensure adequate heat dissipation to prevent overheating, especially under high load conditions.
  5. Quiescent and Shutdown Current:

    • The quiescent current is typically 1.5mA with a maximum of 3mA. In shutdown mode, the current consumption drops to a typical 0.1μA with a maximum of 0.5μA.
  6. Output Voltage Drop:

    • The output voltage drop across the device is between 0.3V and 0.7V at a load current of 150mA and a supply voltage of 5V.
  7. Rise and Fall Time:

    • The rise and fall times are both between 1.5μs and 3μs under standard conditions (Vcc = 5V, RL = 10Ω).

Additional Notes:

  • Always refer to the datasheet for the most accurate and detailed information.
  • Ensure proper PCB layout and component placement to minimize noise and interference.
  • Use appropriate decoupling capacitors near the power supply pins to stabilize the supply voltage.
(For reference only)

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