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- (b) Consider a voice signal from a analog telephone which needs to be digitized. Explain the steps involved in the conversion of analog to digital signal. If suppose the sampled analog values are 1V, 2V, 3.5V and 4.5V, use a 2 bit quantizer to digitize these values. Assume the range of sampled analog values from 0V to 5V. Provide the digitized values of this signal and draw the digital signal.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.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 that takes 3-bit pattern as input and outputs binary code of bit position of the first 1' in the pattern reading from MSB (2nd position) to LSB (0th position).An additional output variable V is required along with binary code to indicate that the binary code is valid or note i.e., if the input pattern is '000' then the output V should be '0' to indicate that the binary code is not indicating the bit position of first 1' and we don't care about the binary code if V = 0. Design the required circuit using dual 4x1 MUXS and minimum additional logic.Available resources along with dual 4x1 MUXS are NOT gates, 2-input(AND, OR, NAND, NOR) gates.What is the value of the 8 digital bits that are represented as in the figure above if (Hint: the first bit is 1): a. The signal is encoded as NRZ-L: b. The signal is encoded as NRZ-I:An information or message signal represented as voltages or currents with finite set of known possible values is called as; O a. Analog signal O b. Discrete variable O c. Continuous variable O d. Information source
- An information or message signal represented as voltages or currents with infinite number of possible values is called as; a. Modulated signal O b. Digital signal O c. Discrete signal O d. Continuous VariableCHAPTER THREE-SIGNAL CONVERSION & PROCESSING DEPARTMENT OF ELECTRICAL ENGINEERING- COLLEGE OF ENGINEERING- UNIVERSITY OF MISAN 26 Home Work If the enable pulse frequency in Figure below were halved, determine the binary numbers represented by the resulting digital output sequence for 6 pulses. Is any information lost? 8 7 5 Analog input 4 voltage 3 %3D 3D 1 1. hnnnnnnnnnnn Enable pulses 1 2 3 4 5 6 7 8 9 10 11 12Write VHDL code for a modulo-13 counter (counting sequence is 010, 110, …. 1210). The counter has the following features: a synchronous Active High Reset a value R can be loaded into the counter, using the signal Ld (Load) The signal Ld is active High Draw the schematic of your counter, showing the inputs and outputs. Show the number of bits for R, Q (output of the counter), Ld.
- homework of digital signal processingThe figure below shows a multiplexer where S, and S, are the select lines. I, to I, are the input data lines, EN is the enable line, and F(P, Q, R) is the output. F is EN R F MUX R 12 13 S, So P QArrange the chronological order of the elements and its function to Digital Communication by writing the numbers 1 to 10 in both column A and column B. A Elements Channel Decoder Channel Encoder Digital Demodulator LICHTE SE Digital Modulator Input Transducer Channel Output Signal Output Transducer Source Source Decoder Source Encoder B A ndeseng Function After detecting the sequence, it does some error corrections. A It can be an analog signal. It compresses the data into minimum number of bits. It converts the signal into the original physical form, which was at the input of the transmitter. It does the coding for error correction. It allows the analog signal to transmit from the transmitter end to the receiver end. It produced after the whole process. It takes a physical input and converts it to an electrical signal. The received signal is demodulated as well as converted again from analog to digital.notni erli lo ini arli lo voeber edirsin.sm The resultant signal is once again…