Difference between revisions of "Lab 5 TF EIM"
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#Measure the Gain <math>\equiv \frac{V_{out}}{V_{in}}</math> as a function of frequency. (20 pnts) | #Measure the Gain <math>\equiv \frac{V_{out}}{V_{in}}</math> as a function of frequency. (20 pnts) | ||
#Measure the Gain when an external resistance approximately equals to the inherent resistance of the rf choke <math>R_{L}</math>. (20 pnts) | #Measure the Gain when an external resistance approximately equals to the inherent resistance of the rf choke <math>R_{L}</math>. (20 pnts) | ||
− | #Compare the measured and theoretical values from the resonance frequency (<math>\omega_{L}</math>) and the Quality factor <math>Q \equiv 2 \pi \frac{W_S}{W_L} = 2 \pi \frac{\mbox{Energy Stored}}{\mbox{Energy Lost}}</math> value for each case; <math>W = \frac{1}{2} | + | #Compare the measured and theoretical values from the resonance frequency (<math>\omega_{L}</math>) and the Quality factor <math>Q \equiv 2 \pi \frac{W_S}{W_L} = 2 \pi \frac{\mbox{Energy Stored}}{\mbox{Energy Lost}}</math> value for each case; <math>W = \frac{1}{2}LI^2</math>. (10 pnts) |
==Questions== | ==Questions== |
Revision as of 04:50, 26 January 2011
LC Resonance circuits
The LC cicuit
- Design a parallel LC resonant circuit with a resonant frequency between 50-200 kHz. use = 10 - 100 .
- Construct the LC circuit using a non-polar capacitor
- Measure the Gain as a function of frequency. (20 pnts)
- Measure the Gain when an external resistance approximately equals to the inherent resistance of the rf choke . (20 pnts)
- Compare the measured and theoretical values from the resonance frequency ( ) and the Quality factor value for each case; . (10 pnts)
Questions
- If r=0, show that . (10 pnts)
- Show that at resonance . (10 pnts)
The LRC cicuit
- Design and construct a series LRC circuit.
- Measure and Graph the Gain as a function of the oscillating input voltage frequency. (20 pnts)
Questions
- What is the current at resonance? (5 pnts)
- What is the current as ? (5 pnts)