1 2: Assume that you have a fixed literal data = 25 (decimal) stored at location 1000 (decimal) in ry of a basic computer that we studied in this course. The master clock frequency of the basic is 1 MHz. Write a program to generate a waveform at the output with output being low for 100 onds and high for a certain delay calculated as follows. Get an input reading that may vary between 0 (decimal). Then subtract the fixed stored data (100) at location 1000 from the input. Divide the 3 (shift 3 times). Use the resulting number as the counter to generate the delay for the high cycle put. Keep doing this in an infinite loop.

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Question 2: Assume that you have a fixed literal data = 25 (decimal) stored at location 1000 (decimal) in
the memory of a basic computer that we studied in this course. The master clock frequency of the basic
computer is 1 MHz. Write a program to generate a waveform at the output with output being low for 100
microseconds and high for a certain delay calculated as follows. Get an input reading that may vary between
25 and 200 (decimal). Then subtract the fixed stored data (100) at location 1000 from the input. Divide the
result by 8 (shift 3 times). Use the resulting number as the counter to generate the delay for the high cycle
of the output. Keep doing this in an infinite loop.
Transcribed Image Text:Question 2: Assume that you have a fixed literal data = 25 (decimal) stored at location 1000 (decimal) in the memory of a basic computer that we studied in this course. The master clock frequency of the basic computer is 1 MHz. Write a program to generate a waveform at the output with output being low for 100 microseconds and high for a certain delay calculated as follows. Get an input reading that may vary between 25 and 200 (decimal). Then subtract the fixed stored data (100) at location 1000 from the input. Divide the result by 8 (shift 3 times). Use the resulting number as the counter to generate the delay for the high cycle of the output. Keep doing this in an infinite loop.
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