Description
BUY 74LVC1G14DBV https://www.utsource.net/itm/p/12611991.html
Parameter |
Symbol |
Conditions |
Min |
Typ |
Max |
Unit |
Input Voltage |
V_I |
|
0 |
|
3.6 |
V |
Output Voltage |
V_O |
|
0 |
|
3.6 |
V |
Supply Voltage |
V_CC |
|
1.65 |
|
3.6 |
V |
Input Leakage Current |
I_IL |
V_I = 0V |
-1 |
|
1 |
μA |
Output Leakage Current |
I_OL |
V_O = 0V |
-1 |
|
1 |
μA |
Propagation Delay Time |
t_PD |
V_CC = 3.3V, T_A = 25°C |
|
8 |
|
ns |
Power Dissipation |
P_D |
|
|
|
47 |
mW |
Instructions for Use:
Supply Voltage (V_CC):
- Ensure the supply voltage is within the range of 1.65V to 3.6V to prevent damage to the device.
Input Voltage (V_I):
- The input voltage should be between 0V and the supply voltage (V_CC). Exceeding these limits can cause malfunction or damage.
Output Voltage (V_O):
- The output voltage will be dependent on the logic state of the input and the supply voltage. It will typically be close to 0V for a low state and close to V_CC for a high state.
Propagation Delay (t_PD):
- For optimal performance, consider the propagation delay time when designing circuits. At 3.3V supply voltage, expect a typical delay of 8ns at room temperature.
Power Dissipation (P_D):
- Be mindful of power dissipation, especially in applications where multiple devices are used or in environments with limited heat dissipation capabilities. Do not exceed 47mW.
Handling:
- Handle with care to avoid electrostatic discharge (ESD) which can damage sensitive components. Use appropriate ESD protection measures during handling and installation.
Mounting:
- Ensure proper mounting orientation and connections as per the datasheet pin configuration to ensure reliable operation.
Environmental Considerations:
- Store and operate the device within recommended temperature and humidity ranges to maintain performance and reliability.
(For reference only)
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