b) Analyze the following circuit as shown in Figure 7. [9] JO Q0 J PR Q J1 Q1 J PR Q Ck Ck K CI Qba K CE Q QO I JK-pet QT KO K1 I JK-pet CLK D Figure 7 i. Derive Boolean expression for the J0, KO, J1,...


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b) Analyze the following circuit as shown in Figure 7. [9]<br>JO<br>Q0<br>J PR Q<br>J1<br>Q1<br>J PR Q<br>Ck<br>Ck<br>K CI Qba<br>K CE Q<br>QO<br>I JK-pet<br>QT<br>KO<br>K1<br>I JK-pet<br>CLK D<br>Figure 7<br>i. Derive Boolean expression for the J0, KO, J1, K1 and output Y.<br>ii. Use Method 2 to produce the next state and flip flop transition table. Use the following Table 3<br>header.<br>Table 3<br>Input<br>Present State<br>Next State<br>JK FF Transition<br>Output<br>X<br>Q1<br>QO<br>Ql+<br>Q0+<br>J1<br>K1<br>JO<br>KO<br>Y<br>iii. Draw a complete state diagram for the circuit shown.<br>

Extracted text: b) Analyze the following circuit as shown in Figure 7. [9] JO Q0 J PR Q J1 Q1 J PR Q Ck Ck K CI Qba K CE Q QO I JK-pet QT KO K1 I JK-pet CLK D Figure 7 i. Derive Boolean expression for the J0, KO, J1, K1 and output Y. ii. Use Method 2 to produce the next state and flip flop transition table. Use the following Table 3 header. Table 3 Input Present State Next State JK FF Transition Output X Q1 QO Ql+ Q0+ J1 K1 JO KO Y iii. Draw a complete state diagram for the circuit shown.

Jun 05, 2022
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