A 100 mV full scale dual slope integrating type DVM has a reference voltage of 10 mV and conversion time of 50 ms. For an input of 5 mV, the conversion time is
Q: Find the transfer function, G(s) = VL(s) / Vi(s), for the following network
A: Solution: Given circuit:
Q: Example 7.1 A two-conductor single-phase line operates at 50 Hz. The diameter of conductor is 20 mm…
A: It is given that: f=50 Hzμr=50D=3 md=20 mmr=0.01 mr'=0.7788r=0.7788×0.01=7.788×10-3 m
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Q: Forestalling and “Coming-to-That” are essentially the same method for handling resistance. True…
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A: Given: GsHs=1s+1s+2
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A: The given MOSFET circuit diagram is shown below, Here,k=4mA/V2.VT=-3.1 V.ID=4.5 mA.VGS=-1.6 V.
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Q: Calculate inverse following signals. Fourier transforms of the (Ramp filter) X(jw) -1- 1 w
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Q: For the circuit shown find the impedance phase angle Z (in degrees) i= 0.02 sin(157t+40) 17 2517…
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Q: 2. A wye connected three phase 1,000 kva, 2,300 volt alternator is short circuited and operated at…
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Q: Problem2. Find i(t) in the following circuit. 24 V + 252 e using differential equations!!! 552 1/3 F…
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Q: why is the current equal to that?
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Q: 2. What is the value of the capacitance if a Capacitor has accumulated 300 uC of charge and 2.5 V?
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Q: What is the maximum resistance which can be made using five resistors each of 1/5 Q?
A: It is given that: R=15 Ω
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Q: ) Prove the following identity using algebraic manipulation: A'B' + A'B + AB = A' + B
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Q: 5. A 3-phase 60 MVA, 13.8 kV, 3600 rpm, 60 Hz grid connected generator with a synchronous reactance…
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Q: Problem 3 Find the Norton equivalent circuit for the circuit below at the terminal a-b.
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Q: Problem 1 Find the input-output differential equation relating the input signal f(t) to the output…
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Q: 6. Calculate I, in the circuit of Fig. 24 V Το Το www 20 Ω 40 Ω 10 Q2 20 Ω www Μ 60 Ω 50 Ω
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Q: vị(t)u(t) + R L eeeee C + vo(t) See the dynamic RLC circuit shown above. It has a time dependent…
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Q: 1. For the following circuit find the value of the current Ip, and the voltage V +8V 1.2kQ 4.7 k Si…
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Q: Determine Rout (in k) for the figure if k = 0.3x10-3 V₁0 H 10 ΜΩ +16 V • 2.2 ΚΩ HH o V₂ VGS(Th) = 3…
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Q: 4. For the following circuit find the value of Vo1.V02.1 1kQ 20 V 0,47 ΚΩ Si
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Q: 4. For the following circuit sketch the output of v
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Q: C. Draw the power spectrum of the complex wave in (a). Amplitude Frequency
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Q: 3. For the following circuit find the value of I, and V +16 V Si • 4,7 ΚΩ -4V Si
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Q. C time.
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- Subject:Electronics Engineering How JFET has been constructed? Explain the principle of operation of JFET at different values of VGS and VDSNOTE: FOR ALL CIRCUITS SHOWN IN THIS QUIZ ASSUME THAT: β= 100 (for all transistors) ; Early voltage equal to infinity. 1.- In the circuit of figure Nº A, the secondary voltage Vs is 15 volts rms with a frequency of 60 Hz, R equal to 100 Ohms and C equal to 1000 microfarads. The diodes are silicon (Vd = 0.7 volts) and the Zener diode is 15 volts. Determine:a) The magnitude of the ripple voltage at Cb) The Magnitude of the Peak Inverse Voltage (PIV) for D1 and D2Explain why Permanent Virtual Circuits (PVCs) behave like a dedicated-circuit network. Explain In Detail
- Explain dual slope ADC and successive approximation ADC with neat block diagram and compare the two approachesFor the JFET shown in Figure, Determine the minimum value of VDD required to put the device in the constant-current region of operation when VGS = 0 V. where VGS(off) = - 4 and IDSS = 42mASubject:Electronics Engineering What is pinch off voltage in JFET? Define pinch off voltage with respect to different characteristics of an n-channel JFET. Is the drain current affected by VP? Justify your answer.
- With a neat diagram ,explain about the working of Dual Slope ADC.Please don't copy from other websites. Discuss the process involved in realising the epitaxial growth, masking and etching for the fabrication of integrated circuits.a) Compare metallic foil vs semiconductor strain gauges (construction, advantages and disadvantages). b) Consider a Wheatstone bridge circuit (Figure 1) that has all resistances equal to 250 ?. The resistance R1 is a strain gauge that cannot sustain a power dissipation of more than 0.25 W. What is the maximum applied voltage that can be used for this bridge circuit? At this level of bridge excitation, what is the bridge sensitivity?
- Subject:Electronics Engineering With a neat circuit diagram, explain the Voltage Divider Bias circuit using approximate analysis. Also derive the equation of stability (S) for Voltage Divider Bias circuit.A ) The dual slope method, it’s the popular method for converting an analog voltage into a digital value.Explaine that in details.Create a schematic diagram for building an AC-DC power supply that uses a complete bridge rectifier, filter capacitors, and regulators and has a selectable output voltage. Keep in mind: When a load is attached, the power supply must be able to deliver at least 500mA of output current.