The D MOSFET has a physical channel between the drain and the source. O True O False
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- What is the area of the pn junction formed by either the source or the drain?Design the power supply using diode components. This power supply sholud have 2 outputs. 12Vdc and 5Vdc. Input 240 Vac Supply i. Draw the circuit diagram ii. Bill of material/components that will be used iii. Teh output waveform for each stageIn the circuit shown below. Determine the following a. Vs (at the secondary) b. Vout (across RL) c. Vrip (ripple votage) d. VDC e. PIV (Peak Inverse Voltage) 10:1 Output 115 V mis 60 Hz RL 2.2 k) D, 50μF- All diodes are IN4001. Tund AlMannai EENG261 Page 5/11
- 1. Pinch-off voltage Vp for an FET is the drain voltage at which: a. Drain current becomes zero b. All free charges get removed from the channel c. Significant drain current starts flowing d. Avalanche breakdown takes place4. (2,5) For the circuit in Figure 01: (a) Determine VOUT at IZK and at Izm. (b) Calculate the value ofR that should be used. (c) Determine the minimum value of RL that can be used. Obs. The IN4744A zener used in the regulator circuit of Figure 01 is a 15 V diode The datasheet gives the following information: Vz = 15 V @ Iz = 17 mA, IzK = 0.25 mA, and Zz = 14 Q. (resistência de corpo). R VOUT + VIN IN4744A RL 24 VFor the voltage-divider bias network of Figure 1: a. Determine re. b. Calculate Zi and Zo. c. Find Av. d. Repeat parts (b) and (c) with ro = 25 k.
- The average or dc value of a full-wave rectified voltage with a peak value of 75V is a. 53Vdc b. 37.5Vdc c. 47.7Vdc d. none of theseExcept for FinFET and GaaFET discussed in the lecture, there are many new designs of FET. Please do a detailed study on any of them. In less than 200 words, state the advantages of it over the traditionalDetermine the minimum and the maximum input voltages that can be regulated by the Zener diode shown in figure 5. From data sheet the Zener diode has the following values: Vz=9.5 V at IZ1=65 mA, IzK =5.5 mA, PDmaxN)=1.25 W, and Z, = 15 N . R Vout 650 Q Vin 4 Vz Figure 5