Part I Part II- Finding Transfer Functions 1) In the following circuit, find vo(t) Consider : R = 1 KQ, C= 1000 µF, vi(t) = 5 cos (4t) volts Va R Vi-w с 1 Vo 17 Ro ANS: Zc = -j 250 , applying CDR: Va= Vi (Zc/(R+ Zc)) Vo = Va= 1.212-76° volts; vo(t) = 1.21 cos (4 t - 76°) volts
Quantization and Resolution
Quantization is a methodology of carrying out signal modulation by the process of mapping input values from an infinitely long set of continuous values to a smaller set of finite values. Quantization forms the basic algorithm for lossy compression algorithms and represents a given analog signal into digital signals. In other words, these algorithms form the base of an analog-to-digital converter. Devices that process the algorithm of quantization are known as a quantizer. These devices aid in rounding off (approximation) the errors of an input function called the quantized value.
Probability of Error
This topic is widely taught in many undergraduate and postgraduate degree courses of:
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1) In the following circuit, find vo(t)
Consider : R = 1 KQ, C= 1000 µF, vi(t) = 5 cos (4t) volts
Va
R
Vi-w
C
Part II- Finding Transfer Functions
24
Vo
2) In the following circuit, find vo(t)
Ro
ANS: Zc-j 250 2, applying CDR: Va= Vi (Zc/(R+ Zc))
Vo = Va= 1.212-76° volts; vo(t) = 1.21 cos (4 t - 76°) volts
cos (5t) volts"
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We need to find out the output voltage for given circuit .
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