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  1. Digital Circuit ( OrCAD and PSPICE ) Q1 a) Design a single-digit decade counter that counts from 0 to 9 and repeats. The single-digit decade counter should be built by a cascaded synchronous binary counter (74LS163) and other basic logic gates. Simulate the complete counter circuit by OrCAD and PSPICE. Capture the circuit schematic and the.

  2. Question: Question 1 (1 point) Types of Simulation that OrCAD PSpice supports: Bias Transient All of the above O AC Sweep. Please help... Here’s the best way to solve it. Identify the types of simulation that the software supports from the given options. If you have any ….

  3. Communications questions and answers. Assignment analog electronics II Each group is tasked to design TWO MULTISTAGE AMPLIFIERS based on J-FET J2N3819 using ORCAD PSPICE SOFTWARE ONLY. The amplifier must meet the following specifications: 1. The amplifier needs to drive a load with impedance of 47 Ω by a signal with impedance of 1 kΩ.

  4. Electrical Engineering questions and answers. Input: A sinusoidal input with Vpp=100mV and a frequency of 100HzProject ReportCalculate the gain (Vo/Vin) of this circuit.Explain the working principle of the circuit.Explain the reason why we use the capacitor C1 and resistor R1 at the output.Analyze the circuit on ORCAD/PSPICE using ...

  5. Simulate the circuit and obtain its. Using PSpice or OrCAD software, design a Class A audio power amplifier with the following specifications: P0 = 4.5W, RL = 10Ω, Bandwidth = 25 Hz to 35 kHz (3dB point), use transistor 2N3019, β = 100, VBE = 0.7V, VCC = +12V [P0 = V0 2 / (2RL), RC ≈ 10RE] Show the circuit schematic diagram and component ...

  6. OrCAD PSpice simulates the amplifier circuit with MOSFET given in Figure 1. run it in the simulation program. (As the input signal, a sinusoidal 20mVpeak-50kHz Apply sign) With the help of probe, weir (drain), gate (gate) and source (source) Observe the change in voltage. According to these results, Vd/Vg voltage gain calculate. If possible ...

  7. 4) Use OrCAD/PSpice to find the voltage Vout for RL=100,1k and 10k by performing parametric sweep analysis. Figure 7. Voltage Divider Circuit You need to make following changes to simulate your circuit in PSpice: 1) First, change the value of the part (not the name!) to {RL} (use curly braces, name is arbitrary) 2) Go to Place => Part 3) Add ...

  8. Design your circuit using the Texas Instruments, “Designing Gain and Offset in Thirty Seconds” document, using Vref=1.667V, Rf=10K02. Do both the single op amp (Figure 2) as well as the dual op amp (Figure 3, use R1 from single op amp design). No need to do the filtering as in Section 7. Draw both schematics in OrCAD PSpice/LTSPice or ...

  9. 1. Introduction In this lab, we are going to design a more complicated combinational logic. The designed circuit will be simulated using the OrCAD capture and PSpice. 2. 4-bit adder/subtractor The function of the circuit can be described by the equation: Y JA + B, if M = 0; TAB, if M = 1.

  10. Advanced Physics. Advanced Physics questions and answers. 3. Figure 13 shows a direct current (DC) circuit designed with OrCAD PSpice. The circuit is used to investigate the Ohm's law in the DC sweep analysis. The current marker is placed at the left of the resistor R1. The result of the current versus swept voltage is shown in Figure 14.

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