Question

7) (a) Draw a circuit of a high pass RL filter b) Derive the expression for...

7)

(a) Draw a circuit of a high pass RL filter

b) Derive the expression for V_o/V_i of a high pass RL filter

(c) Use the equation you derived in (b) to determine the gain when

(i) the frequency is very low

(ii) R = X_L

(iii) the frequency is very high

(d) Use the equation you derived in (b) to determine the phase angle when

(i) the frequency is very low

(ii) R = X_L

(iii) the frequency is very high

(e) Use your results in (c) to sketch the frequency response of the RL low pass filter

(f) Use your results in (c) to sketch the phase response of the RL low pass filter

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
What is the relationship between the poles of a high pass and low pass filter and...
What is the relationship between the poles of a high pass and low pass filter and the cut off frequency? How do I design a circuit that gives a specific cut off? for instance, an active high pass first order filter with a cut off frequency of 100khz?
The RC and RL circuit combinations we studied today are vital within electronics because they can...
The RC and RL circuit combinations we studied today are vital within electronics because they can be used to create “High-pass” and “Low-pass” filters. Do a bit of research on these two types of circuits and explain how your groups results relate to these important pieces of technology. Specifically, how does the behavior of Z as a function of frequency allow these RC or RL circuits to filter out either high frequency or low frequency noise?
Design and draw a simple electrical circuit (a combination of a low-pass and a high-pass filter...
Design and draw a simple electrical circuit (a combination of a low-pass and a high-pass filter circuits) that will act as a bandpass filter for frequencies between 0.1 and 100 rad/s. Generate the magnitude Bode plot on matlab!!! Please do the matlab! thank you!
When determining the function of a circuit (high-pass, low-pass, band-pass and band-reject) how do we use...
When determining the function of a circuit (high-pass, low-pass, band-pass and band-reject) how do we use frequency at 0 and finite frequency to determine the circuits function only given the circuit? I'm given a circuit and want to determine whether it's a high-pass, low-pass, band-pass or band-reject - all passive filters. I know I have to determine whether there is an open, closed, or short circuit at the inductor or capacitor (or both) but don't know how to determine these....
Second order circuit as a band pass filter. 1. Consider a series RLC circuit of your...
Second order circuit as a band pass filter. 1. Consider a series RLC circuit of your choice with AC source. Find the resonance conditions (resonant frequency, quality factor cut-off frequencies and bandwidth. Simulate(multisim) the resonance condition by experimenting with AC signal of several different frequencies and comparing the output amplitudes. You need to show graphs of simulation with several different frequencies. Demonstrate that the simulation results confirm the calculated resonance effect. Make a band pass filter from circuit in (1)....
Please show steps. Thank you Design an identical cascade unit gain active RC low pass filter...
Please show steps. Thank you Design an identical cascade unit gain active RC low pass filter of order 4. The cut frequency for the filter is 800Hz. Use 1.0uF capacitors. a) Draw the circuit and calculate the values of R. b) Express the transfer function of the filter H(s). c) Plot the Bode diagram of the frequency response of the filter. d) Estimate the output voltage if the filter is excited with an input voltage vi(t) = sin(15000t) e) What...
A common use of capacitors as a reactive component is in a low-pass or high-pass filter,...
A common use of capacitors as a reactive component is in a low-pass or high-pass filter, both of which contain a resistor and a capacitor. A low-pass filter is one that passes through signals with frequencies lower than a particular cutoff frequency and causes attenuation in signals of higher frequency. A high-pass filter is one that passes through signals with frequencies higher than a certain cutoff and causes lower frequencies to attenuate, giving the two configurations their names. The cutoff...
Design an active-RC low pass second order Butterworth filter for a cutoff frequency of 1 kHz,...
Design an active-RC low pass second order Butterworth filter for a cutoff frequency of 1 kHz, and a pass band gain of 2 V/V. Use a 741 Op Amp. If using Table I, use a capacitor value of 0.1 μF for C and C1, otherwise you may use any capacitors available in the lab. If applicable, make an excel worksheet showing the calculations required for the above design.  Choose appropriate real resistor values for the designed circuit and simulate this circuit...
Design a passive RC high pass filter with a cutoff frequency of 470 Hz using a...
Design a passive RC high pass filter with a cutoff frequency of 470 Hz using a 270 pF capacitor. What is the value of the resistor? Express your answer with the appropriate units. What is the transfer function of the filter? Express your answer in terms of the variables R, C, and s. If the filter is loaded with a resistor whose value is the same as the resistor in part B, what is the transfer function of this loaded...
Question : Design the low and high pass filter for the signal, x(t) = 10 sin...
Question : Design the low and high pass filter for the signal, x(t) = 10 sin (10 t) + 1 sin (1000 t) by MATLAB Is below answer right? at ?High pass , 5row shouldn't this change from sin(100*t) ? sin(1000*t) x = 10*sin(10*t) + 1*sin(100*t); ?   x = 10*sin(10*t) + 1*sin(1000*t); ??? ..................................................................................................................................................... ?Low pass clc; rng default Fs=2000; t=linspace(0,1,Fs); x=10*sin(10*t)+sin(1000*t)%given signal n=0.5*randn(size(t));%noise x1=x+n; fc=150; Wn=(2/Fs)*fc; b=fir1(20,Wn,'low',kaiser(21,3)); %fvtool(b,1,’Fs’,Fs) y=filter(b,1,x1); plot(t,x1,t,y) xlim([0 0.1]) xlabel('Time (s) ') ylabel('Amplitude') legend('Original Signal','Filtered Data')...