Osilloscope-XSC1 2 ELNC1224 activate Lab 2, Part A pauses vcc Xsci Ext Trig R1 R2 3 구 LED1 Time 12.774 s 12.774 s 0.000 s Channel_A 5.000 V 5.000 V 0.000 V Channel_B T1 + Reverse C1 5- T2 + R3 T2-T1 Save Ext. trigger O 1 Timebase Channel A Channel B Trigger Scale: 200 ms/Div X pos.(Div): 0 Scale: 2 V/Div Y pos.(Div): 0 Scale: 2 V/Div F2 AB Ext Edge: Level: 0 Y pos.(Div): 0 V Y/T Add B/A A/B AC 0 DC AC DC Single Normal Auto None
Osilloscope-XSC1 2 ELNC1224 activate Lab 2, Part A pauses vcc Xsci Ext Trig R1 R2 3 구 LED1 Time 12.774 s 12.774 s 0.000 s Channel_A 5.000 V 5.000 V 0.000 V Channel_B T1 + Reverse C1 5- T2 + R3 T2-T1 Save Ext. trigger O 1 Timebase Channel A Channel B Trigger Scale: 200 ms/Div X pos.(Div): 0 Scale: 2 V/Div Y pos.(Div): 0 Scale: 2 V/Div F2 AB Ext Edge: Level: 0 Y pos.(Div): 0 V Y/T Add B/A A/B AC 0 DC AC DC Single Normal Auto None
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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What can be the observations regarding frequency in this waveform? What is the frequency in this waveform? Explain how.
![S Lab 2_Part_A_vkaur_4434097 - Multisim - [Lab 2_Part_A_vkaur_4434097 *]
A Eile Edit View Place MCU Simulate Transfer Iools Reports Options Window Help
MISC Y F-
非
IL I A Interactive
3B -
Oscilloscope-XSC1
ELNC1224
<F5> activate
en.
Lab 2, Part A
<F6> pauses
VCC
XSC1
Ext Trig
R1
8
R2
3
구
LED1
Channel_A
5.000 V
Time
Channel_B
T1
Reverse
12.774 s
5-
T2
12.774 s
0.000 s
5.000 V
C1
R3
T2-T1
0.000 V
Save
Ext. trigger
Timebase
Channel A
Channel B
Trigger
Scale:
200 ms/Div
Scale:
2 V/Div
Scale:
2 V/Div
Edge:
В Ext
A
X pos.(Div): 0
Y pos.(Div): 0
Y pos.(Div):
Level:
V
Y/T Add B/A
A/B
AC
DC
AC
DC
Single Normal Auto None
bserve the output LED it should be flashing slowly. Stop the simulation. Place a Generic Oscilloscope from the side toolbar
hnect Channel 1 to the Annode side of the LED. Connect G to the GND svmbol provided. Set 2V/div and 200ms/div.
E Template-Description Lab 2_Part_A_vkaur_4434097
Lab 2_Part_A_vkaur_44. Tran: 14.031 s
11:41 PM
O Type here to search
OG ») ENG
w
-13°C
2022-01-20
目酮1-](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fadbbbd22-0a0d-4121-8917-48ab2510c0ed%2Ffc1b3f74-b141-4f62-8904-8493fbd8b0a2%2Fcecusk_processed.png&w=3840&q=75)
Transcribed Image Text:S Lab 2_Part_A_vkaur_4434097 - Multisim - [Lab 2_Part_A_vkaur_4434097 *]
A Eile Edit View Place MCU Simulate Transfer Iools Reports Options Window Help
MISC Y F-
非
IL I A Interactive
3B -
Oscilloscope-XSC1
ELNC1224
<F5> activate
en.
Lab 2, Part A
<F6> pauses
VCC
XSC1
Ext Trig
R1
8
R2
3
구
LED1
Channel_A
5.000 V
Time
Channel_B
T1
Reverse
12.774 s
5-
T2
12.774 s
0.000 s
5.000 V
C1
R3
T2-T1
0.000 V
Save
Ext. trigger
Timebase
Channel A
Channel B
Trigger
Scale:
200 ms/Div
Scale:
2 V/Div
Scale:
2 V/Div
Edge:
В Ext
A
X pos.(Div): 0
Y pos.(Div): 0
Y pos.(Div):
Level:
V
Y/T Add B/A
A/B
AC
DC
AC
DC
Single Normal Auto None
bserve the output LED it should be flashing slowly. Stop the simulation. Place a Generic Oscilloscope from the side toolbar
hnect Channel 1 to the Annode side of the LED. Connect G to the GND svmbol provided. Set 2V/div and 200ms/div.
E Template-Description Lab 2_Part_A_vkaur_4434097
Lab 2_Part_A_vkaur_44. Tran: 14.031 s
11:41 PM
O Type here to search
OG ») ENG
w
-13°C
2022-01-20
目酮1-
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