3. A positive clamper is shown in figure 5. +24 V 10 μF RL Vin OV- Vout 10k -24 V Figure 5 Show all the calculations. Sketch a fully and correctly labelled output waveform. Use the sketch in figure 6.
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- B5B. Square wave input 1. Set R = 470 O (for the circuit in Figure 5 - 3 (a)) or R = 22 kO (for the circuit in Figure 5 - 3 (b). Calculate a, w., and wd 2. Plot or sketch the output voltage due to a square wave input with a frequency of 400 Hz and amplitude of 4 V. 0000 R. L. Vin (TUL Vout Vin (TL, C Vout (a) (b) Figure 5 - 3 Circuits with square wave input 13 6 tv X 3D 5Figure shows the simple schematic of the diode circuit and the negative square wave input. What will be the output voltage value after the tenth revolution?Vi = 18V c1= 1 microF C2=47 microF (you can approximate by accepting C2 big c1 The answer is one of 3.83V, 3.33V, 3.56V, 2.76V and 1.78V.
- No plagarism please! Correct and detailed answer will be Upvoted else downvotedThe closed transition contactor is energized only on transfer from star to delta. How is this accomplished?Kalan süre 0:1 Q4. By using Table, determine VECQ and IEQ. Transistor Si and B-40. Last Vcc VEE Re Rc Digit of VEE (V) (V) (kO) (ko) Student No 50 RB -10 6. 75 6. Rc Vcc O a. VECQ=11.42 V and lEQ=8.79 mA
- O zener diode The rms ripple voltage is 20mV for a 15V dc output. The percentage ripple factor will be O 0.13% O 1.30% O 0.07% O 0.01% hpA certain regulator has a percent load regulation of 1%. a) What is the unloaded output voltage if the full load output is 20 V? b) Determine the output waveform. 120 Vrms ooooo ellle A B R surge W 10 Q2 C 100 uF RL 3.3 ΚΩVs is a 20 V peak-to-peak, 250Hz (that is 4 mS time period) triangular wave in the circuit below. Select the correct output voltage wave signal info(VO). (Use ideal diode model). Vs ww 1 ΚΩ O The Output voltage clips at +10V O The output voltage clips at -10V O None of the above ID 10 V- + Vo O The output voltage signal is same as input signal when input goes above +10V
- arm D 01 (1-0) 02) EA w ELL arm B 03 (1-0) 047 D 2 For a 4 Quadrant DC to DC converter (figure above): E - 100 V. with a duty cycle D-0.4. Determine the value of the output voltage EL from A to B 40 V with A being positive with respect to B 20 V with A being positive with respect to B 20 V with A being negative with respect to B 40 V with A being negative with respect to BA Capacitor filter is used at the output across the load to minimize the ripple factor of the output voltage. If R = 20 02 and the single- phase bridge rectifier is supplied from a 120V - 60 Hz sinusoidal source. Find the capacitor value in millifarads that will maintain the amount of the output ripples to less than 5% 艹 Ce = m₂ 0 mF RL%4. (d) the eedba Calculate the oscillator frequency. Determine the necessary value of R₂ in Figure 16-57 so that the circuit will oscillate. Neglect the forward resistance of the zener diodes. (Hint: The total gain of the circuit must be 3 when the zener diodes are conducting.) Explain the purpose of R3 in Figure 16-57. R₁ 100 kQ R2 www ww-l R$ 1.0 ΚΩ D₁ t 6.8 V 6.8 V R3 www 47 kQ enfren D₂ www ‡ www. C₁ 0.015 F R$ WWW 1.0 kn C₂ 0.015 F V₁

