SN74LS151 CHINA ORIGINAL

SN74LS151 CHINA ORIGINAL

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Parameter Description Value
Part Number Device Identifier SN74LS151
Manufacturer Original Manufacturer China Original
Function 8-to-1 Line Multiplexer with Enable Input
Supply Voltage (Vcc) Operating Voltage Range 4.75V to 5.25V
Input Voltage (VIH) High-Level Input Voltage 2.0V (Min), 5.25V (Max)
Input Voltage (VIL) Low-Level Input Voltage 0.8V (Max), 0V (Min)
Output Voltage (VOH) High-Level Output Voltage 2.4V (Min), 5.25V (Max)
Output Voltage (VOL) Low-Level Output Voltage 0.4V (Max), 0V (Min)
Input Current (IIH) High-Level Input Current -0.4mA (Max)
Input Current (IIL) Low-Level Input Current 0.4mA (Max)
Output Current (IOH) High-Level Output Current -0.4mA (Max)
Output Current (IOL) Low-Level Output Current 8mA (Max)
Propagation Delay (tpd) Time from Input Change to Output Change 18ns (Typical) at Vcc = 5V, TA = 25°C
Power Dissipation (PD) Maximum Power Dissipation 500mW
Operating Temperature (TA) Ambient Operating Temperature Range -55°C to 125°C
Storage Temperature (Tstg) Storage Temperature Range -65°C to 150°C
Package Enclosure Type DIP-16, SOP-16
Pins Number of Pins 16

Instructions for Use:

  1. Power Supply:

    • Connect Vcc to +5V and GND to 0V.
    • Ensure a stable power supply within the specified range to avoid damage.
  2. Enable Input (E):

    • Set E to LOW (0V) to enable the multiplexer.
    • Set E to HIGH (5V) to disable the multiplexer, which will set the output to HIGH impedance.
  3. Data Inputs (A0-A7):

    • Connect the data inputs A0 to A7 to the signals you want to multiplex.
    • Only one input is selected at a time based on the address lines.
  4. Address Inputs (S0-S2):

    • Use S0, S1, and S2 to select which of the 8 data inputs (A0-A7) is routed to the output.
    • The address lines are binary coded, where S0 is the least significant bit and S2 is the most significant bit.
  5. Output (Y):

    • The selected data input (based on S0-S2) appears at the output Y when E is LOW.
    • When E is HIGH, the output Y is in a high-impedance state.
  6. Grounding:

    • Ensure all ground connections are properly made to avoid noise and interference.
  7. Decoupling Capacitors:

    • Place a 0.1μF ceramic capacitor close to the Vcc and GND pins to filter out noise and provide stable operation.
  8. Handling:

    • Handle the IC with care to avoid static discharge, which can damage the device.
    • Follow proper soldering techniques to ensure reliable connections and prevent thermal damage.
  9. Testing:

    • Test the IC by applying known input signals and verifying the correct output using a logic analyzer or oscilloscope.
  10. Storage:

    • Store the IC in a dry, cool place away from direct sunlight and extreme temperatures to maintain its integrity.
(For reference only)

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