Consider the filtered rectifier shown in Figure 2. Because the resistor drains the capacitor in between the peaks of the voltage drive, the output voltage is not constant. The voltage variation, which is often sawtooth-like, is called the ripple. Estimate the fractional peak-to-peak ripple AV/V of the output as a function of R, C, and the frequency f of the input sine wave. Assume that f>> 1/(RC).

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Consider the filtered rectifier shown in Figure 2.
Because the resistor drains the capacitor in between the
peaks of the voltage drive, the output voltage is not
constant. The voltage variation, which is often
sawtooth-like, is called the ripple. Estimate the
fractional peak-to-peak ripple AV/V of the output as a
function of R, C, and the frequency f of the input sine
wave. Assume that ƒ » 1/(RC).
Vin
R
HH
Figure 2: Filtered Rectifier
Vout
C
Transcribed Image Text:Consider the filtered rectifier shown in Figure 2. Because the resistor drains the capacitor in between the peaks of the voltage drive, the output voltage is not constant. The voltage variation, which is often sawtooth-like, is called the ripple. Estimate the fractional peak-to-peak ripple AV/V of the output as a function of R, C, and the frequency f of the input sine wave. Assume that ƒ » 1/(RC). Vin R HH Figure 2: Filtered Rectifier Vout C
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