4:1 MUX by applying reduction

Pratham
Pratham Choreria
Created on Aug 25, 2021 0 0 2
4:1 MUX by applying reduction
100%

Integrated Circuits Used

Procedure

  1. Add IC 74LS153 into ICBase-2 (74LS153).
  2. Add IC 74LS04 into ICBase-1 (74LS04).
  3. Connect Pin-1 (Input) of ICBase-1 (74LS04) to Input-8.
  4. Connect GND Port to Pin-5 (Input) of ICBase-2 (74LS153).
  5. Connect Pin-8 (Ground) of ICBase-2 (74LS153) to GND Port.
  6. Connect Pin-20 (VCC) of ICBase-2 (74LS153) to VCC Port.
  7. Connect Output-0 to Pin-13 (Output) of ICBase-2 (74LS153).
  8. Connect Input-6 to Pin-18 (Input) of ICBase-2 (74LS153).
  9. Connect Pin-7 (Output) of ICBase-2 (74LS153) to Output-7.
  10. Connect Pin-2 (Output) of ICBase-1 (74LS04) to Pin-4 (Input) of ICBase-2 (74LS153).
  11. Connect Input-7 to Pin-2 (Input) of ICBase-2 (74LS153).
  12. Connect Input-8 to Pin-3 (Input) of ICBase-2 (74LS153).
  13. Connect GND Port to Pin-7 (Ground) of ICBase-1 (74LS04).
  14. Connect GND Port to Pin-1 (Input) of ICBase-2 (74LS153).
  15. Connect Input-9 to ICBase-2 (74LS153).
  16. Connect GND Port to ICBase-2 (74LS153).
  17. Connect VCC Port to ICBase-2 (74LS153).
  18. Connect Output-7 to ICBase-2 (74LS153).
  19. Connect Input-7 to ICBase-2 (74LS153).
  20. Connect VCC Port to Pin-20 (VCC) of ICBase-1 (74LS04).
  21. Connect VCC Port to Pin-6 (Input) of ICBase-2 (74LS153).