For the network of Figure below. Determine The de level of the base current (Ig) and the collector voltage (Vc). 18 V 3.3 k2 91 k2 110 k2 10 μF HE R 2 10 μF R 10 uF B= 75 510 2 50 µF
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Q: Q1:-What region of Transistor works. + 10V Rc= 4.7 k2 RE =3.3k 2
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Q: a) Determine the operating point (Ic, Vce) for the transistor circuit shown in Figure 2.1(a). Use…
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Q: For the network of Figure below. Determine The de level of the base current (Ig) and the collector…
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Q: For the circuit given in the figure below B=75. Calculate the value of VI that produces VO equal to…
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Q: Find the Q-point values in the circuit. Also find the minimum power rating of the transistor -12 V…
A: Please refer the attached images for the complete answer..
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Q: Determine the value of RR in circuit to operate with a saturation current of 10 mA using a…
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- Using IC that is approximately equal to IE. Determine the value of emitter voltage VE, when VCC=17V, R4=1441 ohms, R3=242 ohms, VC=9 V and R2=5256ohm R5=303 ohmUsing IC that is approximately equal to IE. Determine the value of R1 in ohms, when VCC=16V, RC=2117 ohms, RE=354 ohms, VC=8 V and R2=4948ohmThe mode of operation for the D-MOSFET is Select one: a. the ohmic region only b. the enhancement mode only c. both the depletion and enhancement modes d. the depletion mode only
- Determine the Ib (base current) in the given circuit if VBB = 15V, Vcc = 15V, RB = 15k ohms, RC = 1k ohms. Assume β = 100.(CLO-3, C3, C5 , C4)a. Draw a Thevenin equivalent circuit of the circuit shown in the figure below b. Drive the equation for emitter current IEc. Find the collector current Ic and VEC ?R1 = (010 + 25) kΩ R2 =15kΩRC = 3 kΩRE = 1.4 kΩβDC = 150 VEE = +12 VGiven the circuit below, calculate the required Rs and the maximum power for the Zener diode. Rs(ohms), Pzm(Watts)
- A 1N4738A zener diode has a ZZ of 4.5 Ω. Taking the data from the datasheet we have VZ = 8.2 V with a test current, IZ, of 31 mA. What is the voltage across the zener terminals when the current is 15 mA? When the current is 55 mA? Make the representation of the values by means of their curve characteristic.For an NPN Bipolar Junction Transistor base-emitter voltage, VBE is 0.7 V at collector current,Ic of 1mA. Calculate the saturation current, emitter-base voltage, emitter current whencollector current is (X+2) mA. Assume β =100 and T=300 K for your calculation.A certain npn silicon transistor has vBE=0.7 V for iB=0.1 mA at a temperature of 30°C. Sketch the input characteristic to scale at 30°C. What is the approximate value of vBE for iB = 0.1 mA at 180°C? (Use the rule of thumb that vBE is reduced in magnitude by 2 mV per degree increase in temperature.) Sketch the input characteristic to scale at 180°C.