Question: Question : 4-bit asynchronous counter : To design and implement a 4-bit asynchronous counter. Objective Tools : Multisim Procedure : (a) Design a 4-bit asynchronous

Question : 4-bit asynchronous counter : To design and implement a 4-bit asynchronous counter. Objective Tools : Multisim Procedure : (a) Design a 4-bit asynchronous counter using any flip flop of your choice. (6) Obtain the input clock waveform and the output waveforms at each of the flip flop (Q1, Q2. Q: and Q4). Use input clock frequency 1.6 KHz. (c) What is the frequency of the waveform at Q ? (d) Comment on the relationship between the input clock frequency and the frequency of the waveform at Q4 (e) What are the other applications of the asynchronous counter? | Results: Discussion: Conclusion: Question : 4-bit asynchronous counter : To design and implement a 4-bit asynchronous counter. Objective Tools : Multisim Procedure : (a) Design a 4-bit asynchronous counter using any flip flop of your choice. (6) Obtain the input clock waveform and the output waveforms at each of the flip flop (Q1, Q2. Q: and Q4). Use input clock frequency 1.6 KHz. (c) What is the frequency of the waveform at Q ? (d) Comment on the relationship between the input clock frequency and the frequency of the waveform at Q4 (e) What are the other applications of the asynchronous counter? | Results: Discussion: Conclusion
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