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1. Draw an E-MOSFET showing the p and n regions. Then, explain the off -on action.
2. Describe how active-load switching works. Use circuit diagrams in your explanation.
3. Draw a CMOS inverter and explain the circuit action.
4. Some people say that MOS technology revolutionized the world of electronics. Why?
Using the data provided in Example 17.3 , determine the impedance of the PUT at the firing and valley points. Are the approximate open- and short-circuit states verified?
Figure 12.83 shows a 3:8 decoder [Lyon87]. How does the logical effort of each input compare to an ordinary decoder made of 3-input NORs? Does the decoder have any performance drawbacks?
a) Starting from an initial count of 0000, list the countingsequence after each shift until the count returns to 0000b) Beginning with an initial count of 00..0, what is the length ofthe count sequence of an n-bit Johnson counter
Assume that a fault occurs on the high-voltage side of transformer T2 in the power system shown in Figure P13-2. Make the assumption that the generator is operating at rated voltage, and that the power system is initially unloaded. Calcu..
Design a series RLC circuit that will have an impedance of 10 Ω at the resonant frequency of ω0 = 50 rad/s and a quality factor of 80. Find the bandwidth.
Waves and Strings: compute the tension in the top string (i.e. E string, lowest note) of a properly tuned guitar. You will likely need to spend a couple minutes on the internet to obtain length and any other important properties of the string.
Design a low pass filter with a single op amp, maximum gain of 40 dB, and a corner frequency of 60 Hz. Assume that the input signal has a maximum source resistance of 100 W and you want the error in the gain the pass band
A wave traveling in a lossless, nonmagnetic medium has an electric field amplitude of 24.56 V/m and an average power density of 2.4 W/m2. Determine the phase velocity of the wave.
Apply Mesh Analysis to calculate the current flowing through Resistor R2 in the below sketch:
Determine the transfer function of the second-order (2 poles) lowpass Butterworth filter with a 3 -dB cutoff frequency of 5 kHz. Design it using the Sallen-key Lowpass filter configuration, find all the values of the circuit element
Design a five-stage D/A converter that produces 1 A through the output 2R resistor when the input voltages (either 0 V or 1 V) correspond to the number 30 (decimal). That is, draw the circuit and indicate the values of all resistances.
Without actually computing the output noise power for flow graph #2, you should be able to determine which system has the largest total noise power at the output. Give a brief explanation of your answer.
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