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- For Fixed Bias Configuration Solve for Ib, Ic and le. Atleast 2 decimal place. Be mindful of units. Assume Ic is not equal to le. ... 4 RC 15002 RB VCC 20V 90A/A 100k2 Ib=Blank 1 HA Ic=Blank 2mA le=Blank 3 mA Blank 1 Add your answer Blank 2 Add your answer Blank 3 Add your answerExe: The single-phase bridge rectifier has an RL Load and an ac source, with R = 10Ω andL = 10mH. The peak value of the source is Vm = 100V at 60 Hz. The expressions of voltage andcurrent outputs are:(a) Determine v0(t) and i0(t) with two ac terms (n=2 and 4)(b) Determine the power absorbed by the load.FACTS: AC-DC converters take the AC power from wall outlets and convert it to unregulated DC. These power supplies include transformers that change the voltage of the AC that comes through wall outlets, rectifiers to save it from AC to DC and a filter that removes noise from the peaks and troths of the AC power waves.The DC-to-AC Converters are used to charge the batteries in the vehicles. These circuits are mainly used for driving low-power AC motors and are used in a solar power system. The DC to AC converters can be used in dc transmission lines for transmitting power to loads. QUESTION: What do you think is the main reason why we have AC power in our outlets instead of DC power? Explain your answer.
- Using LTSpice, simulate the following circuits and the provide the required information. Provide your observation for each item. 1. Simulate the resistor cube circuit illustrated in Figure 11 to determine the resistance between terminals A to B. validate your simulation result using hand calculation. Figure 11. Resistor Cube Circuit 2. Perform transient circuit simulation for an RC (R=1k, C=1uF) circuit shown in Figure 12 to determine the corresponding output voltage (and current) vs a unit step response input signal. R Vb Figure 12 RC Circuit 3. Create and simulate a hierarchical symbol for an 8-bit, 5V, 200usec digital patterm generator circuit (digital counter) that can be used to validate various digital circuits. Use rise and fall times of 0.1nsec and time delay of 0. Your output should replicate the signals shown in Figure 13 below:aloulated m O1 the value you Up = A cos wt +1o Calaulate maarli)-min(i) =? Use constant voltage drop mad. Don7 to write units. . - 3.7V forgetDetermine the Q-point for the circuit. Find maximum peak value of base current for linear operation. Assume Boc = 200. ... week 12-2.jpg Rc 330 Ω RB Vcc 20 V 47 kN V BB 10 V IBQ = Blank 1 uA ICQ = Blank 2 mA %3D VCEQ = Blank 3 V
- An alternating voltage, given by v = 100 sin 314t is connected to a full-wave rectifier. The average value will be _________. 31.8 volts 63.7 volts 70.7 volts 50 volts A sinusoidal current has a rms value of 3 amperes, its maximum value will be ______. 3.46 amp 2.1213 amp 0.866 amp 4.2426 amp A sine wave has a maximum value of 20 volts; its value at 135° is _________. 15V 5V 10V 14.14Ve+ VBB = 12Y. 50k VE RBB- 5Kd 7= 0.6 ATEM F 50052 Ip= 1OUA. GND DETERMINE: A) RB1 B) RB2 C) Vp D) VR2, DURING THE CHARGING PHASE E) VR2, DURING THE DISCHARGING PHASE.vcC 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 16k
- The AC V-meter in the figure is designed to measure the RMS valueof the input sinusoidal voltage u(t). The diodes are assumed to beideal; M is a moving-coil type measuring unit with Ri=2k (internalresistance) and im=100A (current for full-scale deflection).a) Draw the current through M in scale and calculate R1 for anominal voltage of 100V.b) The class of the measuring unit is given as 0.5. Calculate themaximum acceptable tolerance for the resistors (all of thesame tolerance), if the V-m is required to be of the class 1.5 max.we Q2/ what Ms meant by Pulsse Moduletim? why need PM ?Q1) The fully controlled three-phase bridge rectifier is powered by a 50 Hz and 230 V (phase voltage) source. The line inductance of each phase source is 4 mH.The load consists of E = 400 V and R=10 series with a large inductance; So that the load current is constant and equal to 20A .lt is desirable to calculate: A) Angle of fire delay b) Angle of overlap