Details
BUY BA6238A https://www.utsource.net/itm/p/12543058.html
Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
---|---|---|---|---|---|---|
Supply Voltage | VCC | 4.5 | 5 | 5.5 | V | |
Output Voltage (VOUT1) | VOUT1 | No Load | 3.3 | V | ||
Output Voltage (VOUT2) | VOUT2 | No Load | 2.5 | V | ||
Quiescent Current | IQ | VCC = 5V | 1 | mA | ||
Dropout Voltage | VD | IOUT = 100mA | 0.3 | V | ||
Load Regulation | IOUT = 0 to 100mA | 0.1 | % | |||
Line Regulation | VCC = 4.5 to 5.5V | 0.1 | % | |||
Ripple Rejection | f = 120Hz | 60 | dB | |||
Operating Temperature | Toper | -40 | 85 | °C | ||
Storage Temperature | Tstg | -65 | 150 | °C |
Instructions for BA6238A:
Power Supply Connection:
- Connect the supply voltage (VCC) between 4.5V and 5.5V to the input pin.
- Ensure a stable power supply to avoid fluctuations that can affect performance.
Output Connections:
- VOUT1 provides a regulated 3.3V output under no-load conditions.
- VOUT2 provides a regulated 2.5V output under no-load conditions.
- Use appropriate capacitors at the output to stabilize the voltages.
Quiescent Current:
- The quiescent current is typically 1mA, which should be considered in low-power applications.
Dropout Voltage:
- Operates efficiently with a dropout voltage of 0.3V at an output current of 100mA.
Regulation:
- Both load and line regulation are specified at 0.1%, ensuring stable output voltages over varying loads and input voltages.
Ripple Rejection:
- Provides good ripple rejection of 60dB at 120Hz, minimizing noise on the output.
Temperature Considerations:
- Operate within the temperature range of -40°C to 85°C for optimal performance.
- Store the device between -65°C and 150°C.
Capacitor Recommendations:
- For stability, use ceramic capacitors with low ESR values.
- Typical values are 1μF at the input and 1μF at each output.
PCB Layout:
- Keep the layout compact and minimize trace lengths to reduce noise and improve efficiency.
- Place bypass capacitors as close as possible to the IC pins.
Handling Precautions:
- Handle the component with care to avoid damage from electrostatic discharge (ESD).
- Follow standard precautions when soldering to prevent thermal damage.
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