Input clock frequency of the counter circuit is 16394 MHz. How mnay flip flops required to obtain the 2 MHz clock frequency of the output of the counter? A) 16 B) 13 C) 10 D) 8
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- 4. Figure Q.4(a) shows a JK flip-flop with active-LOW preset (PRE) and clear (CLR) functions. PRE CLK CLR Figure Q.4(a) a. In your own words, explain what is meant by 'no change' and "toggle operations in JK flip-flop. b. Determine the output waveform Q relative to the clock signal if the input waveforms shown in Figure Q.4(b) are applied. Assume that Q starts LOW CLK K PRE CLR Figure Q.4(b)Q.6 Given a sequential circuit implemented using two JK flip-flop as in Figure Q.6a. Analyse the circuit by completing the timing waveform given in Figure Q.6b. QA QB Vcc SET SET J K CLR Q K CLR CLEAR Clk Figure Q.6a Clk CLEAR QA Qs Figure Q.6bDesign a 2-bit synchronous binary counter using T flip-flops. Include the state diagram, state table, state equation, flip-flop input function and logic diagram
- erfsdfdsdsffdsTask 1: Custom Sequence Counter Using JK Flip Flop, Design a counter circuit that cycles through the sequence: 0, 5, 4, 6, 1, 7, and repeats. Follow these steps: a) State Diagram: Draw a state diagram representing the sequence. Each state should be expressed as a binary number. b) State Table: Create a state table for the counter, detailing current states, next states, and outputs. c) Flip-Flop Input Equations: From the state table, derive the input equations for the flip- flops. Treat any unused states as don't-care conditions. d) Simplification using K-maps: Use Karnaugh maps to simplify the flip-flop input equations. Optionally, verify your simplifications using Multisim. e) Circuit Diagram: Draw the circuit diagram. Task 2: 3-bit Up/Down Counter Using Flip Flop of your choice, design a 3-bit counter that counts up or down based on an input signal X. The counter should behave as follows: Initial State: On powerup, the counter starts at 0. Count Up (X=1): Sequence progresses through…a) Build a falling edge triggered flip-flop circuit diagram
- I need a solution very quickly withinDetermine the Q waveform for the flip-flop as seen in the figure below. Assume that Q = 0 initially.In a simple copy machine, a stop signal, S, is to be generated to stop the machine operation and energize an indicator light whenever either of the following conditions exists: (1) there is no paper in the paper feeder tray; or (2) the two micro-switches in the paper path are activated, indicating a jam in the paper path. The presence of paper in the feeder tray is indicated by a HIGH at logic signal P. Each of the micro-switches produces a logic signal (Q and R) that goes HIGH whenever paper is passing over the switch to activate it. (3) Regardless the state of the previous two statements the stop signal is active if there is no internet connection to the machine or if the inside temperature sensor is active (This sensor is active if the inside temperature of the machine reaches a certain threshold temperature). Design and build the logic circuit to produce a HIGH at output signal S for the stated conditions.
- In a simple copy machine, a stop signal, S, is to be generated to stop the machine operation and energize an indicator light whenever either of the following conditions exists: (1) there is no paper in the paper feeder tray; or (2) the two micro-switches in the paper path are activated, indicating a jam in the paper path. The presence of paper in the feeder tray is indicated by a HIGH at logic signal P. Each of the micro-switches produces a logic signal (Q and R) that goes HIGH whenever paper is passing over the switch to activate it. Design and build the logic circuit to produce a HIGH at output signal S for the stated conditions, and implement it using the two-input NAND chip.Answer the question this picture.Topic: Binary Coded Decimal (BCD to Common Anode Seven-Segment Display Code Converter Can you design a code converter that converts a BCD to seven segment display using NOR gate ONLY. provide a schematic logic diagram. Even a photo of it will surely help me in my review. Thank you so much!!