Design the circuit to decode binary state 5, and binary state 3 for a 3- bit synchronous binary counter.
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- 4. Design a circuit that has 'n' bit binary code output with '2n' input lines.b) When converting a binary to BCD, if the number is less than 1010, the BCD number will be the same. But, if the number is greater than 1001, an extra bit will be generated and BCD = Binary + 01 10. This can be done by using the binary to BCD convertion algorithm. You are required to determine the BCD equivalent for binary 111110110 using the algorithm mentioned.Question 3: a) Design a circuit which will add a 4-bit binary number to a 5-bit binary number. Use five full adders. Assume negative numbers are represented in 2's complement. (Hint: How do you make a 4-bit binary number into a 5-bit binary number, without making a negative number positive or a positive number negative?) b) A half adder is a circuit that adds two bits to give a sum and a carry. Give the truth table for a half adder, and design the circuit using only two gates. Then design a circuit which will find the 2's complement of a 4-bit binary number. Use four half adders and any additional gates. (Hint: Recall that one way to find the 2's complement of a binary number is to complement all bits, and then add 1.)
- a) Design Binary Ripple Counter using D-flipflop. b) Design asynchronous 4-bit UP-Down counter.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.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…
- 5) below is the accuracy table showing the output values for two separate binary number entries (W and Y) with a length of two bits. Get the simplest form of output functions with the Karnaugh diagram. Draw a logic diagram of the circuit that performs the function of these functions.Describe in detail which functions a, b and C perform for 2-bit binary numbers in the input.a. Design a 6-bit binary weighted ladder with V₂ = 5 V, R=1 kQ and R, = 5 kQ, a determine i. what will be the Vout if the binary is 101010? ii. what will be the Vout if the binary is 010011?Use three MSI circuits,construct a binary parallel adder to add 12 bit binary numbers. Label all carries between the MSI circuit.
- S Display will be designed for a thermometer. The display will show that degree for minimum temperature and 99 degrees for maximum temperature. According to this; a) What is the number of bits that will be needed in the binary code to express the temperature? b) What are the binary, octal and hexadecimal equivalents of 95 degrees? () What is the BCD representation of 95 degrees? d) What is the hex equivalent of this temperature when it shows 111 degrees octal? e) If the thermometer showed a temperature between -99 and +99 degrees, how many bits would we need?QUESTION 3 a) One of Medium Scale Integrated (MSI) circuit application is to compare between two input binary quantities and generates outputs to indicate which one has the greater, equal, or lower magnitude. Design the circuit to compare between two 2-bit inputs, you may choose only one output. Justify your design. b) Design an encoder to perform number conversion between two different numbering systems.A circuit in Figure Q.2a compares 2-bit binary numbers, P and Q represented by PiPo and QiQo respectively. Note that Po and Qo are LSB. (a) Determine under which condition Z will be '1'. (b) Redesign the circuit using active-high 4-to-16 decoder and a logic gate. Z P1 Q1 Figure 2a Po Qo D