Q4(25) k = 150 Vrm = [0.7] V. W₁ = 3µm, k = 50. Vrp = 10.85) V. L = Lp=0.5µm Find the minimum value of Wn to satisfy that Vo=0.2 V when Vi=5 V. 6V T2
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![Q4(25) k = 150 Vrm = [0.7] V. W₁ = 3µm, k = 50. Vrp = 10.85) V. L = Lp=0.5µm
Find the minimum value of Wn to satisfy that Vo=0.2 V when Vi=5 V.
6V
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- INCLUDE ALL THE DECIMALS.Question V.Full explain this question and text typing work only We should answer our question within 2 hours takes more time then we will reduce Rating Dont ignore this lineExplain what each component is in the design below: DD 7Ro PQ5 8Eo DD 9 So 10 - type of circuit? 1. 6. 2. 7. 3. 8. 4. 9. 5. 10. CO
- Given the range . Find the per scale value for each range based on the encircled basis only. (Follow the line of the black encircled basis) (wt solutions pls asap will rate helpful if perfect) Range Per scale value 0.1 0.5 2.5 10 50 250 1000Draw the small signal equivalent circuit of the following circuit. Note that C1 and C2 are large AC coupling capacitors. 5 VIO C1 RF Q1 C2 fem RL VoR +Vcc -Vcc C Vout R R a. Quantify how the resistors and the capacitor influence the output voltage of the circuit, Vout. What are the upper and lower limits of Vc? b. Howlong does it take for the capacitor to be charged from minimum to maximum voltage and vice versa?
- Q-4. When VGs of a JFET changes from -3.1 V to -3 V, the drain current changes from 1 mA to 1.3 mA. Then the value of trans-conductance is .Find the numerical value for R. for maximum power transfer for Ro. Find Pmax- 5 0 4 0 0.85 vA Ro 24 V 6 is +)Please continue and explain all symbols. Please draw a simple RLC series AC circuit. AvR In an RLC series AC circuit (Figure), the maximum applied voltage AV is related to the maximum voltages across the resistor (AVR), capacitor (AVC), and inductor (AVL) by Avc Av
- 6. What is the output voltage for the LM317 Circuit when R10 is set at 00 and at 5 KQ? a. 0 = b. 5 k= 35 V 7. Use ideal parts for D2 and the SCR. What is the voltage and waveform at H1 when the pot is at 0, 250, and 500 ? Draw the waveform a. 02= v wave form b. 250 = v wave form c. c. 500 = _v, wave form C3 U3 LM317 VIN VOUT ADJ C4 V1 120 V R9 500 R11 10 k R8 220 R10 D2 +V Out H1 C5 R12 100Q6. Figure Q6 shows a modulated waveform v(t) in microvolts as a function of time t in nanoseconds. 25 50 75 100 125 150 175 200 225 250 50 40 40 30 30 20 20 10 10 -10 -10 -20 -20 -30 -30 -40 -40 -50 -50 250 25 50 75 100 125 150 175 200 225 time/ns Figure Q6: Modulated waveform (a) Describe the modulation scheme. (b) What are the values of the carrier frequency and the modulation frequency? (c) What is the value of the modulation index? (d) What is the transmission efficiency (ratio of modulated to total power) in this example? (e) Sketch the spectrum of this modulated waveform indicating the relative magnitudes of the various spectral components. (f) The modulating wave in this example is substituted with a square wave of 50% duty cycle and of fundamental frequency 1.0 MHz. Sketch the absolute value of the spec- trum of the modulated waveform indicating the frequencies and relative magnitudes of the sideband components. (g) Demodulation of this type of signal is usually accomplished…I need a clear step by step answer please and explanation please on how to obtain the values of Th and Tl and Vl

