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Analysis of Synchronous Sequential Circuits
Chapter 8 11/29/2018 A. Berrached
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Synchronous Sequential Circuits
X1 Z1 Combinational Circuit X2 . .. Zm . .. Xn Y1 Flip Flops . .. . .. Yr Clock 11/29/2018 A. Berrached
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Synchronous Sequential Circuits
Zi = fi(X1, X2, …,Xn, Y1, Y2, …,Yr, ) Yi = gi(X1, X2, …,Xn, Y1, Y2, …,Yr, ) 11/29/2018 A. Berrached
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Synchronous Sequential Circuits
1. Derive the output equations 2. Derive the F/Fs input equations 3. Derive the next state equations 4. Derive the CKT's State Transition Table State table give a complete description of circuits behavior 5. State diagram 6. Get timing diagrams 11/29/2018 A. Berrached
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Example 1 11/29/2018 A. Berrached
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Example1 Cont. Step 1: Z = AX' + BX' Step 2: DA = AX + BX DB = A'X
Step 3: D F/F characteristic eq. Q(t+1) = D ==> A(t+1) = AX + BX B(t+1) = A'X 11/29/2018 A. Berrached
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Example Cont. Step 4: State Transition Table 11/29/2018 A. Berrached
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Timing Diagram Assume Input Sequence: 11/29/2018 A. Berrached
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Example 2 11/29/2018 A. Berrached
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Example2: Analysis Preliminary: inputs: X outputs: Z
State Variables: A & B Note: Moore circuit (1) output equations: Z = AB' (2) Flip Flop Input Equations: JA = B KA = BX' JB = X' KB = AX' + A'X 11/29/2018 A. Berrached
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State Transition Table
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Traffic Light Controller
You are to design a traffic light controller to control an intersection. The intersection consists of two streets, one running north-south (called NS) and the other running east-west (called EW). The circuit has to control one traffic lights on the NS street, one traffic light on the EW street. Each of the traffic signals consists of a red, yellow, and green light. Each of the traffic signals cycles through red, green, yellow, and back to red. When one traffic signal is green or yellow, the other is red. When one traffic light is red, the other is greed or yellow. To simplify the design and shorten the experimentation time, we will set the green, yellow, and red time periods to 4, 1, and 5 seconds, respectively. 11/29/2018 A. Berrached
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