Ask Other Engineering Expert

Electronics Lab Assignment: AC Models

Introduction:

Lab is based on the AC models of a transistors. After the transistor has been biased with a Q-point near the middle of the load line, we can couple a small AC voltage into the base. This creates an AC collector voltage which is larger than the base voltage and hence this arrangement results in an amplifier with a voltage gain.

Review the following videos before getting started with this lab:

Watch the video: "Video 3: Fundamentals of breadboard"
Watch the video: "Video 4: Basic electrical components"
Watch the video: "Video 5: Simple resistive circuit with NI myDAQ"

Materials and Equipment:

• Hardware Parts (In the Toolbox):

o An NPN transistor: 2N3904
o Five resistors: Two - 1kΩ, 2kΩ, 10kΩ and 40kΩ
o Three Capacitors: 1μF, 100μF
o Jumper wires

Equipment:

• Software equipment:

o Multisim
o Virtual Instruments (in Multisim)
o Agilent Multimeter

• Hardware Equipment:

o Breadboard
o NI myDAQ Instrument device
o Screw Driver
o Screw Terminal connector
o USB Cable
o Multimeter with probes
o Function Generator, Oscilloscope, Multimeter from NI ELVISmx Intrument Launcher

Procedure:

This lab has to be implemented in hardware (using NI myDAQ) as well as Software (Multisim)

Part A:

1. Analyze the circuit or the amplifier shown in Figure 1. Determine the voltages VB, VE, VC, VBE and VCE. Using the beta value of 100, determine the gain of the amplifier (AV). (Include 20% tolerances for resistors and capacitors).

2. Construct the circuit shown in Figure 1 on the breadboard using the hardware parts.

3. Using the jumper wires, screw driver and screw terminal connector, connect the board to NI MyDAQ Instrument Device.

4. Using the function generator in NI ELVISmx Instrument Launcher, provide the voltage (Vin). Use channel AO0 pin on the NI myDAQ Instrument Device to provide this voltage. Make sure the frequency is 1 KHz frequency.

5. Using +15V pin out on the Instrument Device provide the supply voltage VCC.

6. Perform the DC Analysis by disconnecting the capacitors and measuring VB, VE, VC, IB, IE and IC.

7. Place the capacitors back and using pin AI0 on the NI myDAQ Instrument Device, measure the required voltages: VB, VE, VC, VBE, VCE.

8. Measure the currents: IC and IE using the Multimeter.

9. Use AI1 on the NI myDAQ Instrument Device to measure the load voltage VRL. Record the measurements and compare them with the calculated values in step 1.

10. Using the input voltage Vin, base voltage VB and load voltage VRL, determine the gain of the amplifier (AV).

958_Circuit-Amplifier .jpg
Figure 1

Part B:

1. Download the "Lab 6 troubleshooting" file and perform analysis for the circuits to locate the fault embedded in the circuit.

2. Step by step measure the key point's value with Agilent multimeter. Carefully analyze each measured value to locate the fault within the circuits. Fix the fault and with the corrected fault in the newly circuit, measure and record the new values.

Review questions:

1. Compare a calculated and measured values. Discuss whether the values are the same of different. If they are different, provide the reasoning.

2. Does the DC analysis confirm your calculations?

3. What is the gain of the amplifier? Does the gain obtained from analysis match the measured gain? If not, what is the problem and how would you fix it?

4. What is the role of capacitors in the AC analysis?

5. Did you find any clipping of the collector current? If so, how did you adjust the circuit to avoid clipping?

Deliverables:

1. DC and AC analysis of the circuit and all the calculations including gain of the amplifier from step 1.

2. Place your student ID card on the breadboard and take a picture of the circuit board and pin out on the NI myDAQ Instrument Device.

3. Take screenshots of the measurements obtained from function generator and Oscilloscope and Multimeter on the NI ELVISmx Instrument Launcher on your screen.

4. Screenshots of the measurements from DC analysis (without the capacitors). Screenshots of the measurements from AC analysis (with the capacitors). Screenshots of the input voltage Vin, base voltage VB and load voltage VRL.

5. Screenshots of collector voltage (Vc) (if any clipping).

6. Tabulate the data from analysis and measurements to confirm the gain of the amplifier.

Attachment:- Lab-Report-Template.rar

Other Engineering, Engineering

  • Category:- Other Engineering
  • Reference No.:- M92575947
  • Price:- $75

Priced at Now at $75, Verified Solution

Have any Question?


Related Questions in Other Engineering

Register design a cpu register is simply a row of

Register design A CPU register is simply a row of flip-flops (i.e. SR, JK, T, etc) put side by side in an array to make the size of register required. For example, an 8 bit register has 8 flip-flops side by side for stor ...

A detailed review of spatial modulation and simulation

A Detailed Review of Spatial Modulation and Simulation Learning Outcomes a. Learn how to model mobile communication channels d. Discern knowledge development and directions on the recent advances in 4G to the research pr ...

Mine safety amp environmental engineering assignment -part

Mine Safety & Environmental Engineering Assignment - Part 1 - Questions 1. Occupational health and safety is the primary factor that needs to be considered in the mining industry. Discuss this statement. 2. Define the fo ...

Projectflow processing of liquor in a mineral refining

Project Flow Processing of Liquor in a Mineral Refining Plant The aim of this project is to design a flow processing system of liquor (slurry) in a mineral (aluminum) refining plant. Aluminum is manufactured in two phase ...

Learning outcomes evaluate multiuser communication and

Learning Outcomes Evaluate multiuser communication and resource sharing techniques; Apply the techniques of, and report on, digital communication applications using Matlab and hardware devices. Assignment Description The ...

Operations engineering assignment -please select only one

Operations Engineering Assignment - Please select only one of the following case studies for your assignment: CASE A. Tesla Motors Tesla is an innovative manufacturer that designs, assemble and sells fully electric vehic ...

Select a risk problem from the list below and prepare a

Select a risk problem from the list below and prepare a risk management plan in accordance with AS/NZS ISO 31000:2009. Please ensure that: - Establish the context clearly, in accordance with the Standard; - Define your s ...

Engineering materials term paper assignment -conduct a

ENGINEERING MATERIALS TERM PAPER ASSIGNMENT - Conduct a thorough literature search and write a 15-20 page technical review paper on the evolution of the engineering materials used in the manufacturing of any one of the f ...

Task 1using the lab kit design a circuit for the processor

Task 1: Using the lab kit, design a circuit for the processor to control the output of a connected 7-segment LED display device. You will be provided with a standard common anode 7-segment display of the type FND-507 (or ...

Control theory - lab reportsfor experiments 1 to 4 you must

Control Theory - Lab Reports For experiments 1 to 4 you must undertake the following: a) At the start of each section (including the pre-lab activities) there are a number learning outcomes. That is, what students should ...

  • 4,153,160 Questions Asked
  • 13,132 Experts
  • 2,558,936 Questions Answered

Ask Experts for help!!

Looking for Assignment Help?

Start excelling in your Courses, Get help with Assignment

Write us your full requirement for evaluation and you will receive response within 20 minutes turnaround time.

Ask Now Help with Problems, Get a Best Answer

Why might a bank avoid the use of interest rate swaps even

Why might a bank avoid the use of interest rate swaps, even when the institution is exposed to significant interest rate

Describe the difference between zero coupon bonds and

Describe the difference between zero coupon bonds and coupon bonds. Under what conditions will a coupon bond sell at a p

Compute the present value of an annuity of 880 per year

Compute the present value of an annuity of $ 880 per year for 16 years, given a discount rate of 6 percent per annum. As

Compute the present value of an 1150 payment made in ten

Compute the present value of an $1,150 payment made in ten years when the discount rate is 12 percent. (Do not round int

Compute the present value of an annuity of 699 per year

Compute the present value of an annuity of $ 699 per year for 19 years, given a discount rate of 6 percent per annum. As