SN74F08N

SN74F08N


Specifications
SKU
12603555
Details

BUY SN74F08N https://www.utsource.net/itm/p/12603555.html

Parameter Symbol Min Typical Max Unit Conditions
Supply Voltage VCC 4.75 - 5.25 V -
Input Low Voltage VIL 0.0 - 0.8 V -
Input High Voltage VIH 2.0 - 5.25 V -
Output Low Voltage VOL 0.0 0.4 0.5 V IOL = 16 mA
Output High Voltage VOH 2.7 3.4 5.0 V IOH = -0.4 mA
Input Leakage Current IIL -1.0 - 1.0 渭A VCC = 5V, VI = 0V or VCC
Output Leakage Current IOL -50 - 50 渭A VCC = 5V, VO = 0V or VCC
Propagation Delay Time tpd - 15 - ns VCC = 5V, TA = 25掳C, VI = 0V to VCC
Power Dissipation PD - - 100 mW Per Package

Instructions for Using SN74F08N

  1. Power Supply:

    • Connect the VCC pin to a 5V power supply.
    • Connect the GND pin to ground.
  2. Input Connections:

    • Connect the input pins (1, 2, 4, 5, 9, 10) to your logic signals.
    • Ensure that the input voltages are within the specified range (0V to 5.25V).
  3. Output Connections:

    • Connect the output pins (3, 6, 8, 11) to your load or subsequent logic circuits.
    • Ensure that the output current does not exceed the maximum ratings (IOL = 16 mA, IOH = -0.4 mA).
  4. Propagation Delay:

    • The propagation delay time is typically 15 ns at 25掳C. This should be considered when designing timing-sensitive circuits.
  5. Power Dissipation:

    • The maximum power dissipation per package is 100 mW. Ensure adequate heat dissipation if operating near this limit.
  6. Handling:

    • Handle the device with care to avoid static damage.
    • Store in a dry environment to prevent moisture damage.
  7. Testing:

    • Test the device under typical conditions (VCC = 5V, TA = 25掳C) to ensure proper functionality.
    • Verify the input and output voltages using a multimeter.
  8. Layout Considerations:

    • Use short leads and proper grounding techniques to minimize noise and improve signal integrity.
    • Place decoupling capacitors (e.g., 0.1 渭F) close to the VCC and GND pins to filter out high-frequency noise.

By following these instructions, you can ensure reliable operation of the SN74F08N in your digital circuits.

(For reference only)

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