For the network shown in figure #3, use mesh-current analysis to determine the total active power dissipated. 100 Z30° V 60 ww ΔΩ 302 1292 50 792 m ww ww Figure #3 8Ω 100 260° V
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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.Set up a midpoint bias for a JFET with IDSS = 14 mA and VGS(off) = -10 V. Use a 24 V dc source as the supply voltage. Show the circuit and resistor values. Indicate the value of ID. Indicate the value of VGS. Indicate the value of VDS.For 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
- 4. For the circuit shown in the figure below find the following a. Write the name of the circuit....... b. Find the value of IB, IC and VCE c. Draw the DC load line d. Mark the operating point or Q-point [assume ß-200 and VBE=0.7V] RB 270 ΚΩ VBE + Vcc 15V Rc 2KQ VCEvcC R1 RC 68K 1.2K C2 HH Vịn C1 Q1 100µ 2N5089 100p vs C3 RL RE R2 13K SINE(0 10m 1k) 100p 750 16kGive the meaning of each acronym of solid state devices. Also sketch the schematic symbol for each device. SUS Shockley diode D-MOSFET JFET SCR DIAC THYRISTOR Device TRIAC 1. 3. 4. 6. 8. 10. 12. 14. Symbol 2. 5. 7. 9. 11. 13. 15. Meaning No entry
- A load is connected in the Full Bridge rectifier circuit (Four Diodes). Usedtransformer primary voltage value is 220 V (rms). The transformer winding ratio is 1:10.Using the 0.7 V model of the diode,Load Value: Student No. Last 1 digit ( will be selected as kΩ, LastThose whose number is "0" get "9")a) How many % of conduction does each diode branch stay on?b) Find the average values of the load voltage.c) Find the average values of the load current.d) Find the effective value of the load voltage.e) Find the effective value of the load current.maximum number of answer is 3 decimal places.Q3) A. A step down de chopper is connected to an R=52 and L=10 mH. The de supply voltage is 100 V. The chopper is switching at a frequency of 1 kHz with a duty cycle of 50%. Determine the load current, lo and the peak to peak ripple current as an absolute value and as percentage of de value.
- Electrical Engineering (b) For voltage divider configuration as shown in Figure Q1 (b), sketch the diagram of small signal equivalent circuit and determine the no load voltage gain, AVNL. + Vc R Rc Co Re V. Rez Z. Figure Q1 (b) NQ2/ For the Circuit shown below, Draw the DC load line and Determine the Q- point (take V BE = 0.7V B = 100) %3D Vcc = 30V RB 300K Rc = 2K IB B V CE IC E RE 1K IE|For the circuit shown in Figure B24 i. ii. Caleulate the Q point if the zero signal base current is 60 µA and a = 0.9 Draw the DC load line in the Graph B24 VCE R1 3 3K2 No Signal VBB Vc. 20 V Figure B24