Design a circuit that will multiply BCD ( Binary Coded Deciamal code) numbers which are between 0-9 with 10 (ten). Use an inverting output (4-10) Decoder. (Note: if input is 3 in BCD, output must be 3x10=30 in BCD)
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Design a circuit that will multiply BCD ( Binary Coded Deciamal code) numbers which are between 0-9 with 10 (ten). Use an inverting output (4-10) Decoder.
(Note: if input is 3 in BCD, output must be 3x10=30 in BCD)
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- Design a circuit using a Multiplexer, (((USING A MULTIPLEXER NOT A DECODER))) that has two inputs X, and S, where X represents an 8-bit BCD number,S is a sign bit. The circuit has one output Y, which is the Binary representation of thesigned-magnitude BCD number. A negative output is represented in the Binary 2’scomplement form.Design a circuit that uses 4-bit full adders and AND gates. Given two 8-bit signed 2s-complement numbers A and B and a binary input signal M, your circuit should produce an 8-bit signed 2s-complement result R, as follows: if (M == 0) R = A; else R = A + B + 1;Identify the state diagram operation and find its output sequence for the following input sequence X=0101-1100-101-0000 the circuit accepts input bits from LSB to MSB
- Design a circuit with a 4-bit BCD input A, B, C, D that produces an output W, X, Y, Z that is equal to the input + 3 in binary. For example, 9 (1001) + 3 (0011) = 12 (1100). The outputs for invalid BCD codes are don’t-cares. Write the truth table and the Karnaugh maps used to simplify the Boolean expression!Design the simplest circuit that has three inputs, a, b, and c, which returns an output value of 1 whenever g and b are complements of each other or b and c are complements of each other, otherwise the output is 0. Realize the circuit using 4input , 3output PALdesign an odd-parity circuit. This is a circuit that has three inputs and one output. The circuit outputs a 1 if and only if even number (0 or 2) of its inputs are a 1. Otherwise, the circuit outputs a 0. Thus, the sum of the number of 1 bits in the input and the output is always an odd number.
- Design a combinational circuit that detects an error in the representation of a decimal digit in BCD. In other words, the output is equal to 1 when the input contains any one of the six unused bit combinations in the BCD code. Using NAND Gates only. start with truth table.It is desired to design a circuit to multiply the signed 3-bit number A with the signed 3-bit number B. How many bits should be the output of this circuit to be designed?Design a combinational circuit that accepts a 4-bit number and generates abinary number output that approximates the square root of the number. Forexample, if the square root is 3.5 or larger, give a result of 4. If the squareroot is <3.5 and >= 2.5, give a result of 3. Use K-maps to simplify the circuit.Draw the circuit.
- Draw a circuit diagram of 4 bit full adder and full subtractor.Create a 1-bit adder circuit. It has three 1-bit inputs: a, b, and carry_in, and two 1-but outputs: result and carry_out. Has the following gates: AND, OR, NOT gatesDesign a combinational circuit with three inputs, x , y , and z , and three outputs, A, B, and C . When the binary input is 0, 1, 2, or 3, the binary output is two greater than the input. When the binary input is 4, 5, 6, or 7, the binary output is two less than the input.