Introductory Circuit Analysis (13th Edition)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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Transcribed Image Text:Design a 5 bits input logic circuit that can be output F to go active (High) under the
following conditions:
- All inputs are logic 1"
- An odd number of inputs are logic 1"
- Non of the inputs are logic 1"
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- Give the output signals for the circuit if the input signals are as indicated. A logic circuit with 4 gates and 3 inputs. The circuit will be read from the final output to the inputs. The final OR gate has two inputs, the gate has output S. The first input to the final OR gate is the output from an OR gate. The OR gate has two inputs. The first input to the OR gate is P. The second input to the OR gate is Q. The second input to the final OR gate is the output from a NOT gate. The NOT gate has one input. The first input to the NOT gate is the output from an AND gate. The AND gate has two inputs. The first input to the AND gate is Q. The second input to the AND gate is R. input signals: P = 0, Q = 0, R = 1 S =arrow_forwardDesign a logic circuit that controls the passage of a signal A according to the following requirements:1. Output X will equal the value of A ( 0 or 1)when control inputs B is low and C is high.2. X will remain HIGH for all other input combinations. A=MSB C=LSBarrow_forward1. Design a combinational logic circuit with three inputs A, B and C and one output X. When only one input is 1, output is 1. When none of input is 1, output is also 1. Otherwise, output is 0.arrow_forward
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