5.) Derive the truth table of a decimal-to-binary priority encoder. There are 10 inputs I, through I, and outputs A, through A, and V. Input I, has the highest priority.
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Q: Derive the truth table of an octal-to-binary priority encoder.
A: The solution is given below
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- Draw a symbol for a solid-state logic element AND.• The input to the Encoder is (1), _lines and the output is (2) _lines. • The input to the Decoder is (3). input lines and (4)_ output lines. The multiplexer has (5), output and (6). _inputs.please show work included 4. If a 6-bit binary number is used to represent an analog value in the range from -63 to 126, what is the accuracy of the system? In other words, if the binary number is incremented by one, how much change does it represent in the analog value?
- 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.An encoder a.Group of answer choices b.converts a binary code input to a single output c.Converts a singe input to a binary coded output d.Selects from many data sources e.Directs data to one of many data terminals1. What is the modulo of the circuit below? 2. Make a table of the count sequence. 3. A BCD counter can assume____discrete state. 4. A BCD counter can divide its input frequency by____. 5. A four-bit binary counter contains the number 0100. Nine inpulse occur. The new counter state is_____. 6. Design a 4-bit down counter.
- A combinational circuit that selects binary information from one of many input lines and directs it to a single output line is a multiplexer. a. an encoder. Ob. a decoder. C. a priority converter. none of the others. e.A combinational circuit that converts 2" binary input lines to n binary output lines is called none of the others. a. b. a decoder. an encoder. C. priority converter. a e. multiplexer.We want to design a digital circuit that converts Gray code (ABC) to Binary code (xyz). Set up a 8-to- 1 line multiplexer so that the output gives y as a function of ABC. "A" is given to the most significant bit of the control inputs of the multiplexer. "C" is given to the least significant bit of the control inputs of the multiplexer.
- Design a combinational circuit with the four inputs A,B.C, and D, and three outputs X, Y, and Z. When the binary input is odd number, the binary output is one lesser than the input. When the binary input is even number the binary output is one greate than the input. Implement the function using multiplexers with minimal input and select line.A multiplexer a. Selects where data should be sent b. Selects one out of several data input lines c. Has a single input and converts it to a binary output d. Has a binary input and converts it to a single outputnumbers. a) 101010101101 b) 1110100-0101110 c) 10110 10010 (Note: give the full 9-bit result) Give the sign-magnitude binary form. Use fewest bits possible to represent decimal numbers a) +1710 = b) -1710= c) -12410= = Perform the following computations on the given unsigned binary a) +1710 = b) -1710 = c) -12410 = Convert to two's-complement binary form.