Given that VBE = 0.7 V and using the values from the table: VCC (V) 10 BETA 156 Calculate the following: Part A.(DC Analysis) 1. IB 2. Ic 3. VCF R1 12kohms R2 4kohms RC 1075ohms RE 450ohms
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- GIVE DETAIL EXPLAIN PLEASE! with cicruit drawing.. Ans : Rth = 28 ohm Vth = 92 V.8. Determine the output voltage V, and the Zener diode current Iz for the circuit below. The Zener diode is IN5236B. }} a) E-21 V, R1=1 km2, and R2-2 km2 b) E-21 V, R1-2 k2, and R2-1 k E R₁ www R₂Q5)The full wave-controlled bridge rectifier has an ac input of 120 V rms at 50HZ and a 202 load resistor. For the delay angle is 400 the power absorbed by the load is equal to Ob. b. 48W Oc.c 744 W Oe. e. 673W Od. d. 477W
- In the circuit shown below. Let Vm=37 V and i,=21 mA and Voa -0.7 V: iD is C0.8 ko 3 ko Vmcos(wt)V For t = Os, the current in the diode equals: Oa. 2 mA Ob. 0 mA Oc. -2 mA Od. 4 mA Ift = T/4, then the current in the diode equals: Оа. 4.24 mA Оb. 3.39 mA Oc. 5.3 mA Od. 2.71 mADate 03175996 28) A battery of emif 4V and grternal. xesistance 2n s joined to a desistor of 8 2 calculate the terminal potential difference. What additional xesistance in sedies with 8-2 sesistor Would produce a texminal pd of 3.6V? Taacher's SignalureDesign a Zener diode voltage regulator with a suitable circuit diagram and to consider the voltage regulator is used to power a cell phone at 4.5 V from a lithium ion battery pack, which voltage may vary between 5 V and 7.8 V. The current in the phone will vary 10 mA (when standby mode) to 150 mA (when talking). Assume that the Zener diode current, Iz(min) is 10% of Iz(max).
- the source voltage is 240√2 sin (2 50t) V, R = 10 ohms, and L = 50 mH. Calculate i. the mean and rms values of the load voltage, Vo and Vrms the mean value of the load current, I. ii. iii. the current boundary conditions, namely lolz and I02 iv. the average freewheels diode current, hence average rectifier diode current V. the rms load current, hence load power and supply rms current the supply power factor. vi. iDI io Vs D₂ iD2 D₁ R + Vop3. A biased parallel clipper is connected to a squarewave 20VAC input.The biasing voltage of 5V has the same polarity with the Vo while the Si diode is connected in reverse and will conduct only during negative half cycle. In P3, what is the output voltage (Vo) during the positive half cycle? a. -4.3V b. 20V c. 4.3V d. -12.15VQuestion 4) A full wave controlled rectifier with ohmic load given in the figure below feeds a 10 Q load and the effective (rms) value of the source voltage is 110V and its frequency is 60 Hz. Accordingly requested below Find the circuit parameters: a) the peak voltage of the source, b) the peak current of the load, c) Average stress of the load, d) Average current of the load, e) The effective (rms) voltage of the load, f) Effective (rms) current of the load, SCR 1 SCR 2 is R g) Power of the load SCR 3 t* SCR 4
- Question # 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 35Question 2) A full-wave rectifier with ohmic load given in the figure below feeds a 75 Q load and the effective (rms) value of the source voltage is 220V, its frequency is 50 Hz. Accordingly, find the following desired circuit parameters: a) the peak voltage of the source, b) the peak current of the load, c) Average stress of the load, d) Average current of the load, e) The effective (rms) voltage of the load, f) Effective (rms) current of the load, g) Power of the load i D2 vs RVps = 10 V R = 0.1k02 ww -ovo R₁. Consider the Zener diode circuit shown in figure. The Zener diode voltage is Vz= 5.8V at Iz= 10mA and the Zener resistance is rz = 200. a) Find the output voltage for RL = 1k0 b) Find the change in the output voltage when the load resistance varies +ARL.