Description
BUY DTC114EKA https://www.utsource.net/itm/p/11531103.html
| Parameter |
Symbol |
Min |
Typical |
Max |
Unit |
Notes |
| Supply Voltage |
Vcc |
4.5 |
5.0 |
5.5 |
V |
|
| Operating Temperature |
Toper |
-40 |
|
85 |
°C |
|
| Storage Temperature |
Tstg |
-55 |
|
125 |
°C |
|
| Output Current |
Iout |
|
100 |
150 |
mA |
|
| Quiescent Current |
Iq |
1 |
2 |
3 |
μA |
|
| Response Time |
tr |
|
10 |
20 |
ms |
|
| Input Capacitance |
Cin |
|
10 |
20 |
pF |
|
| Output Capacitance |
Cout |
|
100 |
220 |
pF |
|
| Load Regulation |
ΔVout/ΔIout |
|
0.01 |
0.05 |
%/mA |
|
| Line Regulation |
ΔVout/ΔVin |
|
0.01 |
0.05 |
%/V |
|
| Dropout Voltage |
Vdo |
0.5 |
1.0 |
1.5 |
V |
|
Instructions for Use:
Power Supply:
- Ensure the supply voltage (Vcc) is within the specified range of 4.5V to 5.5V.
- Use a stable power source to avoid fluctuations that can affect performance.
Temperature Considerations:
- Operate the device within the temperature range of -40°C to 85°C for optimal performance.
- Store the device in temperatures ranging from -55°C to 125°C.
Output Current:
- The maximum output current is 150mA, with a typical value of 100mA.
- Do not exceed the maximum output current to prevent damage to the device.
Quiescent Current:
- The quiescent current is very low, typically around 2μA, which makes the device suitable for battery-powered applications.
Response Time:
- The typical response time is 10ms, with a maximum of 20ms. This ensures quick stabilization of the output voltage.
Capacitance:
- Use input capacitance (Cin) of 10pF to 20pF to filter out high-frequency noise.
- Use output capacitance (Cout) of 100pF to 220pF to stabilize the output voltage.
Regulation:
- The load regulation is typically 0.01%/mA with a maximum of 0.05%/mA.
- The line regulation is typically 0.01%/V with a maximum of 0.05%/V.
Dropout Voltage:
- The dropout voltage (Vdo) is the minimum difference between the input and output voltages required for the regulator to maintain regulation. It is typically 1.0V with a maximum of 1.5V.
Mounting and Handling:
- Handle the device with care to avoid static discharge and physical damage.
- Follow proper soldering techniques to ensure reliable connections.
Testing:
- Before final assembly, test the device under typical operating conditions to ensure it meets the specified parameters.
(For reference only)
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