RG Vinº VDD=1.8 V HEM₁ Rs Given: VDD = 1.8 V, RG = 100 KQ, RS = 3 KQ, RL = 3 KQ, W/L = 5, VTO=0.60 V, KP = 250 μA/V², LAMBDA = 0.20 V-¹, VSB = 0 V. Determine the operating drain current of the circuit. C₁ HH ww 50 ΩΣ RL Vout
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- ier quesuon Will save this response. Quèstion 6 Power supply circuit is delivering 0.5 A and an average voltage 20 V to the load as shown in the circuit below. The ripple voltage of the half wave rectifier is 0.5 V and the diode is represented using constant voltage model. The smoothing capacitor value is equal to iL-DC =05A RL VLDC =20V 220V omsb 0.01 F 0.02 F 0.0167 F Hows b None of the above DEV ChpA half-wave rectifier is needed to supply 15-V dc to a load that draws an average current of 250 mA. The peak-to-peak ripple is required to be 0.2 V or less. What is the minimum value allowed for the smoothing capacitance?A clamper circuit has 20 Vp-p. 100Hz square wave input voltage. The circuit consists of silicon diode IN4001 and 3V battery as shown in Figure 1 C. 0.1 µF D R Vi(t) 50 k2 Vo(t) 3 V Figure 1 a) Find the output voltage for all input voltages values. b) Sketch the output waveform, Vo(t).
- Date 03175996 28) A battery of emif 4V and grternal. xesistance 2n s joined to a desistor of 8 2 calculate the terminal potential difference. What additional xesistance in sedies with 8-2 sesistor Would produce a texminal pd of 3.6V? Taacher's SignalureWhich of the following is a type of Metal Oxide Semiconductor Field Effect Transistor: O P channel JFET O None of them O N channel D- MOSFET in O N channel JFET A simple diode rectifier has 'ripples in the output wave which makes it unsuitable as a DC source. To overcome this one can use of a capacitor in series with a the load resistance. stion Select one: O True O FalseFor a diode connected NMOS, determine the required drain to source voltage (in V) to produce a drain current of 9.41 µA. Assume the following specifications for the NMOS: k = 6.91 µA/V2, W/L = 7, VTH = 0.9 V, LAMBDA = 0 V-1. Express your answer using 3 decimal places.
- VZENER at D1 is 9.3V with an IZENER of 4mA when active. D2 is a silicon diode and the transistor has a β = ∞ and VBE = 0.7V.What is VA? What is VOUT? What is the power dissipated by the diode D1?Q/A - In the bellow circuit, the Zener diode has Vz=20 volt, RL=16 Ohm, the voltage across the load stay at 20 Volt As Iz is maintained between 300mA and 3mA m. Find the value of series resistance R so that Eo remain 20v while input voltage Ei is free to vary between 24Volt to 30Volt. R IL 24-30 Iz Vz Eo wwww. RL3 A peak rectifier (peak tollower) Cir cuit is gian below. Vs is a GOH3 Sinuscidal Vollge with peak value Upz50V. 50V. The load resistance R= Sk . Find the Vallke of the capacitance C Such that the peak- to-peak ripple 2 volts. (idenl diede) Voltage Vr Vs
- For the circuit in the figure, let V input = 8V, Ri = 12ohms, RL = 10ohms, and VZ = 3.3V. Determine the voltages and currents of the resistors and the current of the zener diode.VDo Find I,, 12, and V, in the following circuit. Use diode constant voltage drop (CVD) model with V, = 0.5 V. Vị V Rị kN Vo VDi I2 R2 kN V2 V The circuit parameters are: VD, = 0.5 V, V, = 5, V2 = 0, R1 = 4, and R2 = 2 C. Value of /1: D. Value of /2: E. Value of Vo:8 UTM Figure B.1 shows a diode circuit and its DC load line analysis. Based on the SUT information obtained UT UT I kQ + VpQ- 3 UTM UTM Vs 3 500 2 UTM & UM TM &UTM UTM UTM &UTM 5 UTM Figure B.1 UTM & U UTM VD (V) 0.72 UTM i UTM UTM