i) Draw a counter set-up that follows the output sequence - 1, 2, 4, 8, 16, 32, 1, 2, 4, 8, 16, 32, 1, 2...... (hint: Use binary to decimal conversion from the output waveform, example - Q4Q3Q2Q1Q0 = 100002 = 1610). ii) What is the MOD number of the counter you designed in part (i)? iii) How would the output change if you had different clocks (different frequencies) connected to the clock input of each FlipFlop in the above counter? Explain briefly.

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Solve i) ii) and iii) only 
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i) Draw a counter set-up that follows the output sequence - 1, 2, 4, 8, 16, 32, 1, 2, 4, 8,
16, 32, 1, 2.....
(hint: Use binary to decimal conversion from the output waveform, example -
Q4Q3Q2Q1Q0 = 100002 = 1610).
ii) What is the MOD number of the counter you designed in part (i)?
iii) How would the output change if you had different clocks (different frequencies)
connected to the clock input of each FlipFlop in the above counter? Explain briefly.
iv) Draw a 5-bit Parallel In Parallel Out Register set-up.
v) How would you modify a PIPO Register such that it has two modes - Load 1 and Load
2 instead of the traditional Load and Shift mode
Transcribed Image Text:i) Draw a counter set-up that follows the output sequence - 1, 2, 4, 8, 16, 32, 1, 2, 4, 8, 16, 32, 1, 2..... (hint: Use binary to decimal conversion from the output waveform, example - Q4Q3Q2Q1Q0 = 100002 = 1610). ii) What is the MOD number of the counter you designed in part (i)? iii) How would the output change if you had different clocks (different frequencies) connected to the clock input of each FlipFlop in the above counter? Explain briefly. iv) Draw a 5-bit Parallel In Parallel Out Register set-up. v) How would you modify a PIPO Register such that it has two modes - Load 1 and Load 2 instead of the traditional Load and Shift mode
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