Build, and test the oscillator: 1. Use R = 7.2 KQ, C = 1.0 nF, and C2 = 0.1 μF. 2. Calculate the frequency of the oscillator using Eqs. T = tc + td.and tc = td = 0.693 RC 3. Measure the frequency and duty cycle of the output waveform. Vcc charge R w U Reset 4 Discharge 7 Threshold 6 Trigger C₂ 2 Control 8 Voc Open RST' R a 10 3 Q' 1 Ground Out Figure 3: A square wave generator based on 555-timer.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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Build, and test the oscillator:
1. Use R = 7.2 KQ, C = 1.0 nF, and C2 = 0.1 μF.
2. Calculate the frequency of the oscillator using Eqs. T = tc + td.and tc = td = 0.693 RC
3. Measure the frequency and duty cycle of the output waveform.
Vcc
charge
R
w
U
Reset
4
Discharge
7
Threshold
6
Trigger
C₂
2
Control
8 Voc
Open
RST'
R
a
10
3
Q'
1
Ground
Out
Figure 3: A square wave generator based on 555-timer.
Transcribed Image Text:Build, and test the oscillator: 1. Use R = 7.2 KQ, C = 1.0 nF, and C2 = 0.1 μF. 2. Calculate the frequency of the oscillator using Eqs. T = tc + td.and tc = td = 0.693 RC 3. Measure the frequency and duty cycle of the output waveform. Vcc charge R w U Reset 4 Discharge 7 Threshold 6 Trigger C₂ 2 Control 8 Voc Open RST' R a 10 3 Q' 1 Ground Out Figure 3: A square wave generator based on 555-timer.
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