The truth table below is converted into an FSM. 2. p1 p0 n1 n0 0. 0. Inputs: b Outputs: z (P) (Q) b' g 10 e 01 (R) 1. 00 11 z= (M) Z = 0 z = (N) Z = 0 What is the transition condition (P)? Ex: a What is the transition condition (Q)? What is the next state (R)? What is the value of (M)? Ex: 0 or 1 What is the value of (N)?
The truth table below is converted into an FSM. 2. p1 p0 n1 n0 0. 0. Inputs: b Outputs: z (P) (Q) b' g 10 e 01 (R) 1. 00 11 z= (M) Z = 0 z = (N) Z = 0 What is the transition condition (P)? Ex: a What is the transition condition (Q)? What is the next state (R)? What is the value of (M)? Ex: 0 or 1 What is the value of (N)?
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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
Transcribed Image Text:The truth table below is converted into an FSM.
p1
p0
n1
n0
0.
0.
1
Inputs: b
Outputs: z
0.
0.
1
1
1
1
1
(P)
1
1
1
(Q)
f
b'
h
e
00
(R)
1
1
1
01
10
11
1
1
Z = (M)
Z = 0
Z = (N)
Z = 0
1
1
What is the transition condition (P)? Ex: a
What is the transition condition (Q)?
What is the next state (R)?
What is the value of (M)?
Ex: 0 or 1
What is the value of (N)?
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