Design a logic circuit that takes a 4-bit Gray codeinput from an optical encoder and determines if theinput value is a multiple of 3.
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Design a logic circuit that takes a 4-bit Gray code
input from an optical encoder and determines if the
input value is a multiple of 3.
Step by step
Solved in 3 steps with 4 images
- 1) If the sum of the 2-bit "AB" numbers and the 2-bit "CD" numbers is not odd, the logic circuit (logic circuit) that outputs "0", if odd, outputs "1", using the Karnaugh Method and according to SOP (minterms) Design and draw the circuit. Leave the circuit as derived from Karnaugh, ie do not simplify any further.Design a 4-bit BCD to Gray Code Converter by using Programmable Array logic.a) Design a single-digit decade counter that counts from 0 to 9 and repeats. The single-digit decade counter should be built by a cascaded synchronous binary counter (74LS163) and other basic logic gates. Simulate the complete counter circuit by OrCAD and PSPICE. Capture the circuit schematic and the simulated waveform. (Define the simulation timings for at least one full counting cycle from 0 to 9 and back to 0.) (Hint: Use the DigClock input from the SOURCE as shown below and setup the CLK ONTIME and OFFTIME accordingly for the clock source.) 1/6 Pat DigClock Part List OFFTIME = SuS DSTM1 ONTIME = DELAY= STARTVAL = 0 OPPVAL = 1 Sus EUK FleStim AC Lbrajes Design Cache b) Read the specification of 74LS47 (BCD-to-7-Segment Decoder shown in Appendix) to see how the logic IC operates to drive a 7-segment LED display. Draw the circuit connection of the decade counter in (a) and the decoder to display the count value on the 7-segment LED display. Further explain why common anode…
- parity generator design, construct and test a circuit that generates an even parity bit ffrom four messages bits . use XOR gates. adding one more XOR gate, expand the circuit so that it generates an odd parity bit also.Create the logic circuit of a 2x4 decoder (using truth table, kmap, bool equation and logic ckt). Convert the gate circuit into MOSFET circuit by converting gate by gate in MOSFET.7. Draw the circuit diagram of a 3-bit by 3-bit array multiplier using 1-bit full adder units and basic logic gate. Show where its critical path is in your design.
- a) Design a single-digit decade counter that counts from 0 to 9 and repeats. The single-digit decade counter should be built by a cascaded synchronous binary counter (74LS163) and other basic logic gates. Simulate thecomplete counter circuit by OrCAD and PSPICE. Capture the circuit schematic and the simulated waveform.(Define the simulation timings for at least one full counting cycle from 0 to 9 and back to 0.)(Hint: Use the DigClock input from the SOURCE as shown below and setup the CLK ONTIME and OFFTIME accordingly for the clock source.)5- Determine an alternative method for implement the full-adder. Hint: Write the expressions of the circuit and simplify using icarnaugh map.Then implement using AND-OR gates. 6- Design a logic cct using NAND gate and convert BCD code to Excess-3code.Use three MSI circuits,construct a binary parallel adder to add 12 bit binary numbers. Label all carries between the MSI circuit.
- We need to implement digital logic function Y = A(B + C(D + E)). a) Design a CMOS logic gate to implement. b) Design a TTL logic gate to implement.Which of the following is an important feature of the sum-of-products form of expressions? • The delay times are greatly reduced over other forms. • The maximum number of gates that any signal must pass through is reduced by a factor of two. • No signal must pass through more than 2 gates (not including inverters). • All logic circuits are reduced to nothing more than simple AND and OR gates.We want to design a circuit to detect prime numbers.The input of the circuit is a 4-bit binary number and the output is a single bit and should show one when the number is prime and zero otherwise.B. Implement the circuit using a 4× 1 multiplexer and combinational logic gates.C. Implement the circuit using only one decoder and one OR gate. What is the size of the decoder you use?