The stack memory is addressed by a combination of the plus offset. The PUSH and POP instructions always transfer between segment -bit number the stack and a register or memory location in the 8086 microprocessors. For string instructions, DI always addresses data in the segment. The 8086 LOOP instruction decrements register for a 0 to decide if a jump occurs and tests it
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- Q. 1 There are different types of memories used in 8086 microprocessor one of them is called Stack. You are expected to investigate about it and answer the following questions related to it. i. What is stack memory? ii. What registers are associated with the stack in 8086? (including segment, pointer registers) iii. What is the use of stack? iv. Use any example which uses stack memory with appropriate instructions (PUSH, POP)Draw the figure for memory segments with 8086 microprocessor software model. Explain the logical address structure used for each segment (Explain which registers are used in logical address presentation of each segment; segment address : offset address). Give an example solution to find the physical address in a segment from the logical address for 8086 microprocessor.Given a 8-bit number at memory location 2050H. Write 8085 instruction to move the value stored at the following locations: Register B Accumulator 2052H Write a single program and show register and accumulator screenshot and also attach memory view. In sim8085 software.
- Q. 1 There are different types of memories used in 8086 microprocessor one of them is called Stack. You are expected to investigate about it and answer the following questions related to it. i. What is stack memory? ii. What registers are associated with the stack in 8086? (including segment, pointer registers) iii. What is the use of stack? iv. Use any example which uses stack memory with appropriate instructions (PUSH, POP) Answer you given me what book you used with name of book?Subject: MicroprocessorTopic: Output Devices When using the a basic 16x2 LCD in 4-bit mode, is it necessary to connect the R/W pin to the ground? Why?Describe any possible methods through which you can implement a RAM memory using logic gates?
- 6.) Select all the 8088 input signals that can cause the microprocessor to take an interrupt. a.) OSC b.) INTA c.) NMI d.) READY e.) INTR f.) IRQ 7.) Given the 8088 instruction "INT nn", how many possible types of interrupts are there for the 8088? a.) 2 b.) 4 c.) 8 d.) 256Design a serial adder using the following: Explain the operation briefly, list thestate table (must include present state, inputs, next state, output and flip-flopinputs) and draw the logic diagrama. Using D flip flop, shift registers and necessary logic gatesb. Using JK flip flop, shift registers and necessary logic gatesWe want to design a circuit to detect prime numbers.The input of the circuit is a 4-bit binary number and the output is a single bit and should show one when the number is prime and zero otherwise.B. Implement the circuit using a 4× 1 multiplexer and combinational logic gates.C. Implement the circuit using only one decoder and one OR gate. What is the size of the decoder you use?
- What is a transmission gate? Draw its circuit circuit diagram. How does it operate? What is the need for a transmission gate? What is it disadvantage?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.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.