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- In the circuit given in the figure | VBE | Since = 0.7V, R1 = 2.66Kohm, R2 = 11.73Kohm, RC = 0.79Kohm, RE = 2.36Kohm, VCC = 14.00V, Beta = 115.00, calculate the IC current 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.Q2 In the circuit as shown below. Determine the (ripple factor) and sketch vp(out) for the filtered bridge rectifier with a load as indicated. 2 : 1 D3 D1 120Vp-p f= 50HZ + Output V1 V2 D2 D4 1uf R1=2kHow many pn junctions are there in a BJT? two O three O four O five
- 24. A step up chopper has load voltage of 600V and is sup- plied from a constant de source of 150V. If the OFF time of the chopper is 40 µs and desired output voltage is 300V find ON time of the chopper? (A) 5 µsec (C) 30 µsec (B) 10 μsec (D) 40 µsecA Capacitor filter is used at the output across the load in order to minimize the ripple factor of the output voltage. The expressions of the average output voltage Vpc and the output AC component VAc are given below. If R = 1k2 and the single phase bridge rectifier supplied from a 120V - 50 Hz sinusoidal source, then the capacitor value that will maintain the amount of the output ripples to less than 4% would be equal to: VDC = Vm(4FRC – 1)/4ƒRC) VAC = Vm/(4/2ƒRC) Select one: O a. 63.39uF O b. 33.2uF O c. 93.39UF O d. 126.2uF TOSHIBAquations. 3. What are the advantages and disadvantages of a dual slope ADC? a blecL mation
- Mention at :- least three Duestion practicalapPplication. nihere Techniques ASk, FSK and PSK are usedQuestion # 2 For the STC given I-V panel curve Rshunt is 415.405 Q, Rseries is 0.221 N). It is required to draw the panel equivalent circuit and to a) Calculate the series resistance consumed power at Pmax b) Deduce the shunt current and shunt consumed power at Pmax. c) Calculate the diode current and the diode consumed power at Pmax. d)Estimate the light source power at Pmax. I-V curve at STC 8 5 3 10 15 20 25 30 35In the circuit given in the figure | VBE | = 0.7V, R1 = 17.07Kohm, R2 = 64.82Kohm, RC = 1.49Kohm, RE = 4.46Kohm, VCC = -11.00V, Beta = 125.00, calculate the IC current 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. vcc RE C1 R2 Q1 c2 RC R1
- FAIRCHILD Discrete POWER & Signal Technologies SEMICONDUCTOR ru 1N4001 - 1N4007 Features • Low torward voltage drop. 10 a14 * High aurge eurrent cepablity. 0.160 4.06) DO 41 COLOR BAND DGNOTEs CAT-Cos 1.0 Ampere General Purpose Rectifiers Absolute Maximum Ratings T-26*Cuness atnerwioe rated Symbol Parameter Value Units Average Recttied Current 1.0 375" lead length a TA - 75°C Tsargei Peak Forward Surge Current 8.3 ms single halr-sine-wave Superimposed on rated load JEDEC method) 30 A Pa Total Device Dissipetion 2.5 20 Derste above 25°C Ra Tag Thermal Resistence, Junction to Amblent 5D Storage Temperature Range 55 to +175 -55 to +150 Operating Junetion Temperature PC "These rarings are imithg valuee above whien the serviceatity or any semiconductor device may te impaired. Electrical Characteristics T-20'Cunieas ofherwise roted Parameter Device Units 4001 4002 4003 4004 4005 4006 4007 Peak Repetitive Reverse Vellage Maximum RME votage DC Reverse Voltage Maximum Reverse Current @ rated VR…The characteristic of the UJT exhibits the following values: n = 0.575, RB1 = 10 k-ohms, Vv = 1.3 V, Iv =20mA, Ip=15UA. 125V B2 B, Determine the following: a. Determine the R82 (in kilo-ohms) of the UJT b. Determine the maximum value range of R (in kilo-ohms) that will ensure proper turn-on and turn-off of the UJT c. Determine the minimum value range of R (in kilo-ohms) that will ensure proper turn-on and turn-off of the UJTFor the given BJT circuit, determine the operating point and plot the DC load line showing the Ic(sat) and Vce(max). 16 V 510 k2 Ing Ico 1.8kQ2 VC Vcto B-120