Description
BUY 74HC11A https://www.utsource.net/itm/p/1767469.html
| Parameter |
Symbol |
Min |
Typ |
Max |
Unit |
Conditions |
| Supply Voltage |
VCC |
2.0 |
- |
6.0 |
V |
|
| Input Low Voltage |
VIL |
- |
0.8 |
1.5 |
V |
VCC = 4.5V to 5.5V |
| Input High Voltage |
VIH |
3.5 |
4.0 |
- |
V |
VCC = 4.5V to 5.5V |
| Output Low Voltage |
VOL |
- |
0.1 |
0.4 |
V |
IOL = 4mA |
| Output High Voltage |
VOH |
4.6 |
4.9 |
- |
V |
IOH = -0.4mA |
| Input Leakage Current |
IIL |
- |
- |
1.0 |
μA |
VCC = 4.5V to 5.5V |
| Output Sink Current |
IOL |
8 |
- |
25 |
mA |
VCC = 4.5V to 5.5V |
| Output Source Current |
IOH |
- |
- |
-4 |
mA |
VCC = 4.5V to 5.5V |
| Propagation Delay |
tpd |
- |
12 |
22 |
ns |
VCC = 4.5V to 5.5V |
| Power Dissipation |
Ptot |
- |
- |
100 |
mW |
Per Package |
Instructions for Using 74HC11A
Power Supply:
- Connect VCC (pin 14) to your power supply, typically between 2.0V and 6.0V.
- Connect GND (pin 7) to ground.
Input Connections:
- The 74HC11A is a triple 3-input AND gate. Each gate has three input pins (A, B, C).
- Connect your input signals to the appropriate input pins.
- Ensure that the input voltages are within the specified range to avoid damage or incorrect operation.
Output Connections:
- The output of each AND gate is available on the corresponding output pin.
- The output can drive up to 25mA sink current and -4mA source current.
- Connect the output to the next stage of your circuit or to a load.
Propagation Delay:
- The propagation delay is the time it takes for a change in the input to affect the output. For the 74HC11A, this is typically around 12ns at 5V.
Power Dissipation:
- Ensure that the total power dissipation does not exceed 100mW per package to prevent overheating.
Handling:
- The 74HC11A is sensitive to static electricity. Use proper ESD precautions when handling the IC.
- Avoid soldering the IC directly to the board; use a socket if possible to facilitate replacement.
Storage:
- Store the IC in a dry, cool place away from direct sunlight and moisture to ensure long-term reliability.
By following these instructions, you can ensure reliable and efficient operation of the 74HC11A in your circuits.
(For reference only)
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