(6) Find the Thévenin resistance of this circuit. 502 102 10V 2002
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- Please find Ic and Vce.3. Based on an old quiz problem related to half-wave rectifièr design. You may need your design if we have cold weather this winter. for charging your 12 VDC car battery. You are to design a battery eharger for safe operation in a damp garage environment to use RI Current Ling Resor R1 TXI Fuse 12 Vot Car Bater Metal Case Design specifications include: (a) Input is a 110rms VAC. (Vp=110x v2) at 60 Hz from a three wire service that meets the National Electrical Code. (b) Output is a nominal 12 volts VDC at the cathode of the diode. (c) Specify a resistor, R, to limit the maximum battery charging current to 10 amperes into the 12 volt car battery assuming the battery is completely dead (0 volts) when you first connect the charger. A not uncommon occurrence over the last two weeks of sub-zero temperatures. (d) There is no ripple voltage design specification. Explain why this is unnecessary in this application. (e) The battery charger case is metal. (f) Assume a diode with VF= 0.7 V (g)…Rather than use transistors your friend W. Too wants to use diodes to implement logic gates. He shows you the circuit he designed shown in figure 5. If A and B can swing all the way from 0 V to VDD, does the circuit implement a logic gate? If so what gate is it and what is its static discipline? Assume the diode is modeled by an ideal diode with a series resistance RD V. DD R₁ L ΟΥ AO Bo Figure 5: Diode Based Logic Gate
- Given the following circuit: Assuming D1 is ON and D2 is OFF, with Vs1 = 10.7 V, Vs2 = 2 V, R₂ = 1.5 k2, R₂ = 7.5 kn, then the current going through R₂ is equal to: Use the CVD model for the diode, with VD= 0.7 V. s1 Hill R₁ a. 0.001111 A b. 0 A c. 0.001189 A d. 0.001333 A e. 0.888889 A D₁ R₂ D₂ filt + I V₁2 s2Derive the current equations for the circuit shown below, using the labels as shown.Note that rz here is a model of the parasitic imperfection of the Zener diode.a) IL = ?b) II = ?c) IZ = ?d) What impact does rz have on VL?Shown in the figure is a schematic of a power electronics circuit. a) Identify the power semiconductor devices included in the circuit b) sketch their symbol with terminal identification c) explain the function of power semiconductor devices included in the circuit 120kn 240 V 60 Hz 2N2574 ODeg 1.0kn ECG6412 :100nF
- Q3. Draw the output voltage waveform for each circuit including the voltage values. (Ideal model) 2.2 k2 +30 V V. OV -30 V +5 V +50 V 47 3.3 kn -5 V -50 V D 2:1 +100 V -- IN4001 R. V ov 10 k2 -100 V IN4001 Q4. For the following bridge rectifier circuit, draw the output voltage waveform across the load (RL) showing the maximum value. Calculate the following: The average value of the output voltage across the load (RL). a. b. The rms value of the output voltage across the load (RL). c. The average load current. d. The rms value of the load current. (Use constant voltage drop model for the Silicon diode) 5:1 D, o Vrms DA 10 KNA Zener diode with an arbitrary Zener voltage is used to build the circuit below. Calculate:(a) The current I_z(b) The voltage V_out(c) The power absorbed by the Zener diode ASSUME ARBITRARY VALUES FOR ALL OR PLUG IN VALUES U CAN USE AS AN EXAMPLE.Draw and label a voltage divider that generates0.5V from an input of 1.5V. Then draw and label a current divider that generates 1.25A from an input of1.0A. Pleaseclearlydefine/label the value of all variables (e.g. resistances). If a solution does not exist, then simply state so.
- Use your reasoning logic to determine which diodes are on and which might be off in the following circuit, assuming the diode drops are 0.7 V. A. VA B. VB C(ID1) D(ID2) E(ID3)After replacing R5 with diode IN4007 (switch K3 to diode side) .What conclusion can you draw from analysis of this step ?VCC V1 D2 .tran 10 QTLP690C R8 1k Q4 2N2222 R6 1k vout Q2 2N2222 R2 470 R4 56k C2 47μ VCC C1 47μ Astable Multivibrator R3 56k w R1 470 Q1 2N2222 R5 1k D1 QTLP690C R7 1k Q3 2N2222 How many states does this circuit have? Draw a circuit diagram showing each state.