Design a counter circuit that has 2 inputs X and Y, and one output Z by using “one-hot-state” encoding. Don’t draw the circuit diagram. When X=1, the circuit counts up or down based on the value of Y; when X=0, the circuit remains in its previous state regardless of the value of Y. When Y=1, the circuit changes states upwards in the order given below and continues this way in a loop. When Y=0, the circuit changes states downwards in reverse order and continues this way in a loop. When the circuit counts upwards, the Z output is 1. The Count order===>>0,1,3,2
Design a counter circuit that has 2 inputs X and Y, and one output Z by using “one-hot-state” encoding. Don’t draw the circuit diagram. When X=1, the circuit counts up or down based on the value of Y; when X=0, the circuit remains in its previous state regardless of the value of Y. When Y=1, the circuit changes states upwards in the order given below and continues this way in a loop. When Y=0, the circuit changes states downwards in reverse order and continues this way in a loop. When the circuit counts upwards, the Z output is 1. The Count order===>>0,1,3,2
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Question
Design a counter circuit that has 2 inputs X and Y, and one output Z by using “one-hot-state” encoding. Don’t draw the circuit diagram.
When X=1, the circuit counts up or down based on the value of Y; when X=0, the circuit
remains in its previous state regardless of the value of Y. When Y=1, the circuit changes states
upwards in the order given below and continues this way in a loop. When Y=0, the circuit
changes states downwards in reverse order and continues this way in a loop. When the circuit
counts upwards, the Z output is 1.
The Count order===>>0,1,3,2
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