Please show on the clock signal how the binary code follows: 0000, 0001, 0010, ...

Electric Motor Control
10th Edition
ISBN:9781133702818
Author:Herman
Publisher:Herman
Chapter22: Sequence Control
Section: Chapter Questions
Problem 6SQ: Draw a symbol for a solid-state logic element AND.
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Please show on the clock signal how the binary code follows: 0000, 0001, 0010, ...

74163 Binary Counter: The 74163 IC is a binary counter which can provide digital inputs to the summing
amplifier. The 74163 IC counts in binary from 0000 to 1111 (zero to fifteen), the count is at outputs QA through
QD where QA is the LSB (Least Significant Bit) = furthest to the right bit of binary number. When a positive to
negative transition voltage is connected to the CLK input and the CLEAR input is connected to +5V, the outputs
will increment one in binary. For example, if outputs equal 1011 (eleven) before positive to negative transition
is applied, outputs equal 1100 (twelve) after positive to negative transition occurs. If the CLEAR input is
connected to ground, outputs QD through QA will equal zero regardless of what the CLK input equals.
+54
clocke Dol
MSB D₂
D₂
RIPPLE
CARRY
OUTPUT
D3
h6 hs h4
116
LSB Da
PCC
1
CLEAR
CLK
2
QA
A
0
3
0
13
74163
Digital Channel Menu
↓
QB QC QD ENT
4
S
B C D ENP
DATA INPUTS
~~~~
ENABLE
T
MC0-X 2022A, MY58100518 Thu Aug 11 06 52/23 2022
1
2
11 10
LOADO
Channel
DO
6
GND
8
|7
ENABLE
P
Clear
Clock
H
+54
0.0s
1
2
9
7
Question 2. Mark the clock signal and show the binary counting in the oscilloscope screenshot available for the
output of the circuit above.
Turn on
07-D0
10
8
74163
16
11
12
13
14
2.000/ Stop
wum
QD
Qc
QB
Q₁
LSB
D₂
Thresholds
$1
DC
DC
7.06V
KEYSIGHT
TECHNOLOGIES
Acquisition
Normal
6.25MSa/s
:0.1 μF
Channels
Freq[D.):
+Duty(Do):
#
10.0:1
10.0:1
Measurements #
1.0000kHz
50.02%
Do 6.25MSa/s
Bus
Transcribed Image Text:74163 Binary Counter: The 74163 IC is a binary counter which can provide digital inputs to the summing amplifier. The 74163 IC counts in binary from 0000 to 1111 (zero to fifteen), the count is at outputs QA through QD where QA is the LSB (Least Significant Bit) = furthest to the right bit of binary number. When a positive to negative transition voltage is connected to the CLK input and the CLEAR input is connected to +5V, the outputs will increment one in binary. For example, if outputs equal 1011 (eleven) before positive to negative transition is applied, outputs equal 1100 (twelve) after positive to negative transition occurs. If the CLEAR input is connected to ground, outputs QD through QA will equal zero regardless of what the CLK input equals. +54 clocke Dol MSB D₂ D₂ RIPPLE CARRY OUTPUT D3 h6 hs h4 116 LSB Da PCC 1 CLEAR CLK 2 QA A 0 3 0 13 74163 Digital Channel Menu ↓ QB QC QD ENT 4 S B C D ENP DATA INPUTS ~~~~ ENABLE T MC0-X 2022A, MY58100518 Thu Aug 11 06 52/23 2022 1 2 11 10 LOADO Channel DO 6 GND 8 |7 ENABLE P Clear Clock H +54 0.0s 1 2 9 7 Question 2. Mark the clock signal and show the binary counting in the oscilloscope screenshot available for the output of the circuit above. Turn on 07-D0 10 8 74163 16 11 12 13 14 2.000/ Stop wum QD Qc QB Q₁ LSB D₂ Thresholds $1 DC DC 7.06V KEYSIGHT TECHNOLOGIES Acquisition Normal 6.25MSa/s :0.1 μF Channels Freq[D.): +Duty(Do): # 10.0:1 10.0:1 Measurements # 1.0000kHz 50.02% Do 6.25MSa/s Bus
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