QUESTION 5 A ROM chip with 16 internal address lines will have this number of address pins: Cannot be determined. 16 10 8 QUESTION 6 System designers use Variable error detection for RAM. Checksum Parity Null QUESTION 7 Find the organization for an EPROM with 13 address lines and 8 data lines. O 13 x 8 8 x 13 8K x 8 8 x 8к QUESTION 8 The number of address lines on a 64MX4 chip is: 256M 64M 64 26 20

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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QUESTION 5
A ROM chip with 16 internal address lines will have this number of address pins:
O Cannot be determined.
16
10
O 8
QUESTION 6
System designers use
error detection for RAM.
Variable
Checksum
Parity
O Null
QUESTION 7
Find the organization for an EPROM with 13 address lines and 8 data lines.
O 13 x 8
8 x 13
8K x 8
8 x 8K
QUESTION 8
The number of address lines on a 64M×4 chip is:
O 256M
64M
64
26
20
Transcribed Image Text:QUESTION 5 A ROM chip with 16 internal address lines will have this number of address pins: O Cannot be determined. 16 10 O 8 QUESTION 6 System designers use error detection for RAM. Variable Checksum Parity O Null QUESTION 7 Find the organization for an EPROM with 13 address lines and 8 data lines. O 13 x 8 8 x 13 8K x 8 8 x 8K QUESTION 8 The number of address lines on a 64M×4 chip is: O 256M 64M 64 26 20
QUESTION 1
A series of bytes are added together with the appropriate checksum byte and the result is 4Co.
O The memory is good.
The memory is corrupted.
Cannot tell if the memory is good or not.
There is an error in the calculation.
QUESTION 2
The access time of semiconductor memory is measured in
milliseconds
microseconds
nanoseconds
O picoseconds
QUESTION 3
Calculate the checksum byte for the following bytes: 5AH, 6FH, 48H, 15H, 97H.
BD
1BD
43
200
QUESTION 4
Calculate the checksum byte for the following bytes: 39H, 4CH, 86H, 17H, 03H.
DB
125
25
O 200
Transcribed Image Text:QUESTION 1 A series of bytes are added together with the appropriate checksum byte and the result is 4Co. O The memory is good. The memory is corrupted. Cannot tell if the memory is good or not. There is an error in the calculation. QUESTION 2 The access time of semiconductor memory is measured in milliseconds microseconds nanoseconds O picoseconds QUESTION 3 Calculate the checksum byte for the following bytes: 5AH, 6FH, 48H, 15H, 97H. BD 1BD 43 200 QUESTION 4 Calculate the checksum byte for the following bytes: 39H, 4CH, 86H, 17H, 03H. DB 125 25 O 200
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