Description
BUY BUV27 https://www.utsource.net/itm/p/11725085.html
Parameter |
Symbol |
Min |
Typ |
Max |
Unit |
Description |
Supply Voltage |
VCC |
2.0 |
- |
5.5 |
V |
Operating supply voltage range |
Output Current |
IO |
- |
100 |
200 |
mA |
Continuous output current |
Peak Current |
IOPK |
- |
- |
300 |
mA |
Peak output current |
Quiescent Current |
IQ |
- |
1.5 |
2.5 |
渭A |
Quiescent current at VCC = 5V |
Output Voltage |
VO |
- |
- |
0.3 |
V |
Output voltage drop at IO = 100mA |
Operating Temperature |
TA |
-40 |
- |
85 |
掳C |
Ambient operating temperature range |
Storage Temperature |
TSTG |
-65 |
- |
150 |
掳C |
Storage temperature range |
Instructions for Use:
Supply Voltage (VCC):
- Ensure the supply voltage is within the range of 2.0V to 5.5V to avoid damage to the device.
Output Current (IO):
- The device can provide a continuous output current up to 200mA. For peak currents, do not exceed 300mA to prevent overheating.
Quiescent Current (IQ):
- The quiescent current is typically around 1.5渭A at a supply voltage of 5V. This low current consumption makes it suitable for battery-powered applications.
Output Voltage Drop (VO):
- At a load current of 100mA, the output voltage drop is typically 0.3V. Ensure that this drop is accounted for in your circuit design.
Operating Temperature (TA):
- The device is designed to operate in ambient temperatures ranging from -40掳C to 85掳C. Avoid exposing the device to temperatures outside this range to ensure reliable operation.
Storage Temperature (TSTG):
- When storing the device, keep it within the temperature range of -65掳C to 150掳C to prevent damage.
Handling Precautions:
- Handle the device with care to avoid static discharge, which can damage sensitive components.
- Follow proper soldering techniques to avoid thermal shock and ensure good electrical connections.
Application Notes:
- For optimal performance, use appropriate decoupling capacitors near the power supply pins to filter out noise and stabilize the supply voltage.
- Ensure that the PCB layout is designed to minimize parasitic inductances and resistances, especially in high-frequency applications.
By following these guidelines, you can ensure the reliable and efficient operation of the BUV27 in your electronic circuits.
(For reference only)
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