2. You are to design an astable Multivibrator (clock source) using a 555 timer IC with the following specifications: frequency = 100 kHz, and duty cycle = 75%. Use a capacitor that is twice the minimum required for the IC. a) b) c) d) Determine the period, T, and then the values of t, and t, based on the frequency and duty cycle. What is the capacitance (C) based on the 2x the minimum for the IC? Calculate the value of R, using the design equation below and your values of t, and C. Calculate the value for R, using the second design equation. XSCi Vcc 5V Et Te R1 Frequency = 1/T; Duty Cycle = (t /T) 100% T= ti +t ve CLOCK R2 $ For Design: t: = 0.693-R2-C ; t= 0.693(R: + R2)-C R: 2 1ka, C2 500pF, R1 + R2 s 6.6MQ THE U3 555 TIMER RATED TRI CON

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2.
You are to design an astable Multivibrator (clock source) using a 555 timer IC with the following specifications:
frequency = 100 kHz, and duty cycle = 75%. Use a capacitor that is twice the minimum required for the IC.
Determine the period, T, and then the values oft, and t, based on the frequency and duty cycle.
What is the capacitance (C) based on the 2x the minimum for the IC?
Calculate the value of R, using the design equation below and your values of t, and C.
Calculate the value for R, using the second design equation.
Xsci
Vcc
Ext Teg
R1S
T= ti +t
Frequency = 1/T;
Duty Cycle = (t /T) 100%
CLOCK
R2 $
13
OUT
For Design:
ti = 0.693-R2-C;t = 0.693(R: + R:)-C
R: 2 1ka, C2 500pF, R: + R2 s 6.6M2
TH U3
555 TIMER_RATED
TRI
CON
GND
Transcribed Image Text:2. You are to design an astable Multivibrator (clock source) using a 555 timer IC with the following specifications: frequency = 100 kHz, and duty cycle = 75%. Use a capacitor that is twice the minimum required for the IC. Determine the period, T, and then the values oft, and t, based on the frequency and duty cycle. What is the capacitance (C) based on the 2x the minimum for the IC? Calculate the value of R, using the design equation below and your values of t, and C. Calculate the value for R, using the second design equation. Xsci Vcc Ext Teg R1S T= ti +t Frequency = 1/T; Duty Cycle = (t /T) 100% CLOCK R2 $ 13 OUT For Design: ti = 0.693-R2-C;t = 0.693(R: + R:)-C R: 2 1ka, C2 500pF, R: + R2 s 6.6M2 TH U3 555 TIMER_RATED TRI CON GND
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