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- According to the circuit given in the figure, VT=25mV, |VBE|=0.7V, R1=1487.51Kohm, R2= 7.42Kohm, R3= 6.71Kohm , R4= 2.87Kohm, VCC= 13.00V, VEE= 1.00V , VA=28.21V , Beta= 120.00 , Rs= 36.18ohm, Ry= 15.61Kohm Calculate the IC current, Ri, R0 and voltage gain(V0/V1) according to the source by performing a complete analysis. When performing your operations, 2 steps will be taken after the point. choose the closest one from the stylish ones according to the +/-10% margin of error. There is only 1 correct answer to the question.a. Find the total power supplied by the ideal source.b. Find the power dissipated and lost within thenonideal source.c. What is the power supplied by the source to thecircuit as modeled by the load resistance?d. Plot the terminal voltage and power supplied to thecircuit as a function of current.Repeat IT = 0, 5, 10, 20, 30 A.VS = 12 V RS = 0.3Subject : ELECTRONIC CIRCUIT ANALYSIS AND DEVICES Please give the DC ANALYSIS CIRCUIT and AC EQUIVALENT CIRCUIT of this problem before proceeding to find letter c. (Note : Neglect Vbe)
- Subject : ELECTRONIC CIRCUIT ANALYSIS AND DEVICES Please give the DC ANALYSIS circuit and AC EQUIVALENT CIRCUIT of this problem before proceeding to find letters a, and b. (Note : Neglect Vbe)For the Circuit shown, Let: VCC = 3.3V R1 = 85 kΩ RE = 500 Ω R2 = 35 k Ω RC = 4k Ω β = 150 Using approximation, determine the Q-point parameters: IBQ, ICQ, and VCEQ. Indicate the exact numerical values, following the given unit.For a particular thermocouple, if one junction is maintained at 0˚C (cold junction) and the other junction is used as a probe to measure the desired Celsius temperature t, the voltage generated in the circuit related to the temperature t as ϵ = r(a + bt). Further, for this thermocouple, when ϵ is, in millivolts, the two constants are a=0.25, b=-5.5x10^-4. (a) What are the units of a, b? (b) Determine the value of for each of the measured temperatures -100°C, 100°C,200°C, 300'C, 400°C and plot an Et-curve.
- Power Electronics. In the Buck-Boost DC-DC converter circuit:Welding voltage [40-80]VSwitching frequency (f) 25khzVoltage between load terminals 55VCapacitance value 470uFLoad current value [10-25]A Under these conditions, which is the lowest ripple (delta IL) amount of the current passing through the coil (L) in Amps for the lowest L inductance value that can keep the DC-DC converter in a continuous current state? A) 23.9803B) 118.75C) 84.3750D) 47.5E) 59.9507F) 33.75Helping tags: Electric Circuit Theory, Circuits, Electronics EngineeringHelp me answer the questions, the given is just the same. Will upvote, just pls show complete solutions and explain if necessary. Thanks!In the circuit given in the figure VT = 25mV, | VBE | = 0.7V, R1 = 712.91Kohm, R2 = 43.27Kohm, R3 = 2.29Kohm, R4 = 0.98Kohm, VCC = 10.00V, VEE = -4.00V, VA = 10.06V, Beta = 137.00, Rs = 38.43ohm, Ry Calculate the IC current according to = 16.55Kohm, Ri, R0 and the voltage gain (V0 / V1) according to the Source by full analysis When making your transactions, 2 steps will be taken after the point. Select the closest option according to +/- 10% margin of error. There is only one correct answer to the question.
- Find VL, IZ, and the Zener power dissipation as shown if R=1kΩ.In the circuit given in the figure, VT = 25mV, | VBE | = 0.7V, R1 = 1402.66Kohm, R2 = 32.67Kohm, R3 = 2.91Kohm, R4 = 1.25Kohm, VCC = 10.00V, VEE = -5.00V, VA = 25.00V, Since Beta = 208.00, Rs = 28.63ohm, Ry = 13.62Kohm, calculate the IC current, Ri, R0 and the voltage gain according to the Source (V0 / V1) by full analysis.The self-bias configuration drawn below has an operating point defined by VGSQ = -2.6 V and IDQ = 2.6 mA, with IDSS = 12 mA and VP = -8 V,with VDD=18 V, RD=3.5KὩ, Rs=1.2KὩ and RG=1.2MὩ an applied signal V i . The value of gos is given as 30 mS.a. Determine gm.b. Find rd.c. Find Zi.d. Calculate Zo with and without the effects of rd. Compare the results. e. Calculate Av with and without the effects of rd. Compare the results.