Voltage Rectifier and Voltage Regulation Circuits
Voltage Rectifier and Voltage Regulation Circuits (30 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
In this week’s lab, you will learn how to analyze, simulate, construct, and test diode circuits. After collection of the data, the results will be evaluated for accuracy.
Deliverables
This lab’s deliverables include the laboratory’s worksheet with its Cover Sheet (completed in the typed format shown within the worksheet), Observations/Measurements, and Questions sections.
The entire lab is worth 30 points. See worksheet and instruction documents for grading information.
Required Software
MultiSim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
.equella.ecollege.com/file/3c80a8d8-37f4-46a3-8a30-8e91f0d01de9/27/ECET220_W1_iLab.html#top”>Back to Top
Download the W1 LabInstructions and Worksheet and save them to your PC.
Note: Theseitems arefound in Doc Sharing.
STEP 2: Complete Lab Cover Sheet
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Report cover sheets must be completed for all labs. The key parts of these sheets include the following.
Objective: a one or two sentence explanation of the purpose of the lab.
Results: a statement of the final output, such as if the circuit and software worked properly.
Conclusions: conclusions based on the results—usually directly related to the purpose of the lab.
Observations/Measurements: All results from the lab must be recorded on the cover sheets. Turn in the cover sheets for grading and retain the remainder of the lab as worksheets.
STEP 3: Carry Out Instructions for Theoretical Analysis in Part III: Procedure
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Follow the instructions in Part A: Theoretical Analysis, and record all required measurements.
In this part, you will be predicting the characteristics of a parallel circuit using the various laws that we have discussed for the analysis. Make sure you go over the exercise problems embedded in the lecture to get a better understanding. Use proper units along with engineering notation to represent the electrical quantities.
See Part A: Theoretical Analysis in the lab’s instructions document.
STEP 4: Complete MultiSim Simulation Results in Part III: Procedure
.equella.ecollege.com/file/3c80a8d8-37f4-46a3-8a30-8e91f0d01de9/27/ECET220_W1_iLab.html#top”>Back to Top
Using MultiSim, perform the steps identified recording the required measurements.
In this part, you will be using technology to verify your predictions. You will be using MultiSim to simulate the given circuit. Record the required parameters as indicated by the meters and calculate the other quantities based on these measurements. Make sure to copy and paste the circuit from here into the Word document and let the page adjust to auto fit.
See Part B: MultiSim Simulation Results in the lab’s instructions document.
STEP 5: Complete Experimental Breadboard Results in Part III: Procedure
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Construct the circuit. Perform the steps identified by recording the required measurements.
See Part C: Experimental Breadboard Results in the lab’s instructions document.
STEP 6: Complete Results Analysis in Part III: Procedure
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Record the data collected from this experiment and determine the error percentages.
See Part D: Results Analysis in the lab’s instructions document.
STEP 7: Transfer Recorded Values to Observations/Measurements
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Copy the recorded results for Questions A, B, C, and D in Part III: Observations/Measurements section of the lab. This is the page immediately following the Cover Sheet in the worksheet.
STEP 8: Answer Questions Section
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Make sure to completely answer all of the questions in this lab’s worksheet.
STEP 9: Verify Completion of the Cover Sheet
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Type all required information onto the Cover Sheet section in the worksheet.
See Step 2: Complete the Lab Cover Sheet in the iLab Steps shown above on this page for specific information.
STEP 10: Submit Your Deliverables
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Submit only the worksheet with its Cover Sheet, Observations/Measurements, and Questions sections.
See the Syllabus section “Due Dates for Assignments & Exams” for due date information.
.equella.ecollege.com/file/3c80a8d8-37f4-46a3-8a30-8e91f0d01de9/27/ECET220_W1_iLab.html#top”>
ECET220 Electronic Circuits and Devices III
WEEK 2 ILAB
iLab 2 of 7: Bipolar Junction Transistor—Biasing (30 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
In this week’s lab, you will learn how to analyze, simulate, construct, and test bipolar junction transistor biasing circuits. After collection of the data, the results will be evaluated for accuracy.
Deliverables
This lab’s deliverables include the laboratory’s worksheet with its Cover Sheet (completed in the typed format shown within the worksheet), Observations/Measurements, and Questions sections.
The entire lab is worth 30 points. See worksheet and instruction documents for grading information.
Required Software
MultiSim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
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Download the W2 LabInstructions and Worksheet and save them to your PC.
Note: Theseitems arefound in Doc Sharing.
STEP 2: Lab Cover Sheet
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The report cover sheets must be completed for all labs. The key parts of these sheets include the following.
Objective: A one- or two-sentence explanation of the purpose of the lab.
Results: A statement of the final output, such as if the circuit/software worked properly.
Conclusions: Conclusions based on the results—usually directly related to the purpose of the lab.
Observations/Measurements: All results from the lab must be recorded on the cover sheets. Turn in the cover sheets for grading and retain the remainder of the lab as worksheets.
STEP 3: Carry Out Instructions for Theoretical Analysis in Part III: Procedure
.equella.ecollege.com/file/829a9be6-31db-4ae2-8822-ff7445e32f07/17/ECET220_W2_iLab.html#top”>Back to Top
Follow the instructions in Part A: Theoretical Analysis, and record all required measurements.
In this part, you will be predicting the characteristics of a parallel circuit using the various laws that we have discussed for the analysis. Make sure you go over the exercise problems embedded in the lecture to get a better understanding. Use proper units along with engineering notation to represent the electrical quantities.
See Part A: Theoretical Analysis in the lab’s Instructions document.
STEP 4: Complete MultiSim Simulation Results in Part III: Procedure
.equella.ecollege.com/file/829a9be6-31db-4ae2-8822-ff7445e32f07/17/ECET220_W2_iLab.html#top”>Back to Top
Using MultiSim, perform the steps identified recording the required measurements.
In this part, you will be using technology to verify your predictions. You will be using MultiSim to simulate the given circuit. Record the required parameters as indicated by the meters and calculate the other quantities based on these measurements. Make sure to copy and paste the circuit from here into the Word document and let the page adjust to auto fit.
See Part B: MultiSim Simulation Results in the lab’s Instructions document.
STEP 5: Complete Experimental Breadboard Results in Part III: Procedure
.equella.ecollege.com/file/829a9be6-31db-4ae2-8822-ff7445e32f07/17/ECET220_W2_iLab.html#top”>Back to Top
Construct the circuit. Perform the steps identified recording the required measurements.
See Part C: Experimental Breadboard Results in the lab’s Instructions document.
STEP 6: Complete Results Analysis in Part III: Procedure
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Record the data collected from this experiment. Determine the error percentages.
See Part D: Results Analysis in the lab’s Instructions document.
STEP 7: Transfer Recorded Values to Observations/Measurements
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Copy the recorded results for Questions A, B, C, and D in Part III: Observations/Measurements section of the lab. This is the page immediately following the Cover Sheet in the worksheet.
STEP 8: Answer Questions Section
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Make sure to completely answer all of the questions in this lab’s worksheet.
STEP 9: Verify Completion of the Cover Sheet
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Type all required information onto the Cover Sheet section in the worksheet.
See Step 2: Complete the Lab Cover Sheet, in the iLab steps shown above on this page for specific information.
STEP 10: Submit Your Deliverables
.equella.ecollege.com/file/829a9be6-31db-4ae2-8822-ff7445e32f07/17/ECET220_W2_iLab.html#top”>Back to Top
Submit only the worksheet with its Cover Sheet, Observations/Measurements, and Questions sections.
See the Syllabus section “Due Dates for Assignments & Exams” for due date information.
.equella.ecollege.com/file/829a9be6-31db-4ae2-8822-ff7445e32f07/17/ECET220_W2_iLab.html#top”>
ECET220 Electronic Circuits and Devices III
WEEK 3 ILAB
iLab 3 of 7: Bipolar Junction Transistor Amplifier Circuit Analysis (30 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
This week’s lab will apply the lecture material to an experiment on BJT amplifier circuits. You will be first analyzing the circuit predicting the circuit voltages and currents. Next, using MultiSim, you will simulate the circuit operation. Finally, you will be assembling the circuit on your proto board measuring the circuit voltages and currents.
Deliverables
This lab’s deliverables include the laboratory’s worksheet with its Cover Sheet (completed in the typed format shown within the worksheet), Observations/Measurements, and Questions sections.
The entire lab is worth 30 points. See worksheet and instruction documents for grading information.
Required Software
MultiSim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Download the W3 LabInstructions and Worksheet and save them to your PC.
Note: Theseitems arefound in Doc Sharing.
STEP 2: Lab Cover Sheet
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Report cover sheets must be completed for all labs. The key parts of these sheets include the following.
Objective: A one or two sentence explanation of the purpose of the lab.
Results: A statement of the final output, such as if the circuit and software worked properly.
Conclusions: Conclusions based on the results—usually directly related to the purpose of the lab.
Observations/Measurements: All results from the lab must be recorded on the cover sheets. Turn in the cover sheets for grading and retain the remainder of the lab as worksheets.
STEP 3: Carry Out Instructions for Theoretical Analysis in Part III: Procedure
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Follow the instructions in Part A: Theoretical Analysis, and record all required measurements.
In this part, you will be predicting the characteristics of a parallel circuit using the various laws that we have discussed for the analysis. Make sure you go over the exercise problems embedded in the lecture to get a better understanding. Use proper units along with engineering notation to represent the electrical quantities.
See Part A: Theoretical Analysis in the lab’s instructions document.
STEP 4: Complete MultiSim Simulation Results in Part III: Procedure
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Using MultiSim, perform the steps identified recording the required measurements.
In this part, you will be using technology to verify your predictions. You will be using MultiSim to simulate the given circuit. Record the required parameters as indicated by the meters and calculate the other quantities based on these measurements. Make sure to copy and paste the circuit from here into the Word document and let the page adjust to auto fit.
See Part B: MultiSim Simulation Results in the lab’s instructions document.
STEP 5: Complete Experimental Breadboard Results in Part III: Procedure
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Construct the circuit. Perform the steps identified by recording the required measurements.
See Part C: Experimental Breadboard Results in the lab’s instructions document.
STEP 6: Complete Results Analysis in Part III: Procedure
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Record the data collected from this experiment and determine the error percentages.
See Part D: Results Analysis in the lab’s instructions document.
STEP 7: Transfer Recorded Values to Observations/Measurements
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Copy the recorded results for Questions A, B, C, and D in Part III: Observations/Measurements section of the lab. This is the page immediately following the Cover Sheet in the worksheet.
STEP 8: Answer Questions Section
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Make sure to completely answer all of the questions in this lab’s worksheet.
STEP 9: Verify Completion of the Cover Sheet
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Type all required information onto the Cover Sheet section in the worksheet.
See Step 2: Complete the Lab Cover Sheet in the iLab Steps shown above on this page for specific information.
STEP 10: Submit Your Deliverables
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>Back to Top
Submit only the worksheet with its Cover Sheet, Observations/Measurements, and Questions sections.
See the Syllabus section “Due Dates for Assignments & Exams” for due date information.
.equella.ecollege.com/file/419a2d69-5622-40ee-92dd-b0f0ca3f0a8c/41/ECET220_W3_iLab.html#top”>
ECET220 Electronic Circuits and Devices III
WEEK 4 ILAB
iLab 4 of 7: Analysis of Field Effect Transistor Amplifiers (30 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
This week’s lab will apply the lecture material to an experiment on FET amplifier circuits. You will be first analyzing the circuit predicting the circuit voltages and currents. Next, using MultiSim, you will simulate the circuit operation. Finally, you will be assembling the circuit on your proto board measuring the circuit voltages and currents.
Deliverables
This lab’s deliverables include the laboratory’s worksheet with its Cover Sheet (completed in the typed format shown within the worksheet), Observations/Measurements, and Questions sections. The entire lab is worth 30 points. See worksheet and instruction documents for grading information.
Required Software
Multisim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Download the W4 LabInstructions and Worksheet and save them to your PC. Note: Theseitems arefound in Doc Sharing.
STEP 2: Lab Cover Sheet
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Report cover sheets must be completed for all labs. The key parts of these sheets include the following.
Objective: A one or two sentence explanation of the purpose of the lab.
Results: A statement of the final output, such as if the circuit and software worked properly.
Conclusions: Conclusions based on the results—usually directly related to the purpose of the lab.
Observations/Measurements: All results from the lab must be recorded on the cover sheets. Turn in the cover sheets for grading and retain the remainder of the lab as worksheets.
STEP 3: Carry Out Instructions for Theoretical Analysis in Part III: Procedure
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Follow the instructions in Part A: Theoretical Analysis, and record all required measurements.
In this part, you will be predicting the characteristics of a parallel circuit using the various laws that we have discussed for the analysis. Make sure you go over the exercise problems embedded in the lecture to get a better understanding. Use proper units along with engineering notation to represent the electrical quantities.
See Part A: Theoretical Analysis in the lab’s instructions document.
STEP 4: Complete MultiSim Simulation Results in Part III: Procedure
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Using MultiSim, perform the steps identified by recording the required measurements.
In this part, you will be using technology to verify your predictions. You will be using MultiSim to simulate the given circuit. Record the required parameters as indicated by the meters and calculate the other quantities based on these measurements. Make sure to copy and paste the circuit from here into the Word document and let the page adjust to auto fit.
See Part B: MultiSim Simulation Results in the lab’s instructions document.
STEP 5: Complete Experimental Breadboard Results in Part III: Procedure
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Construct the circuit. Perform the steps identified by recording the required measurements.
See Part C: Experimental Breadboard Results in the lab’s instructions document.
STEP 6: Complete Results Analysis in Part III: Procedure
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Record the data collected from this experiment and determine the error percentages.
See Part D: Results Analysis in the lab’s instructions document.
STEP 7: Transfer Recorded Values to Observations/Measurements
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Copy the recorded results for Questions A, B, C, and D in Part III: Observations/Measurements section of the lab. This is the page immediately following the Cover Sheet in the worksheet.
STEP 8: Answer Questions Section
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Make sure to completely answer all of the questions in this lab’s worksheet.
STEP 9: Verify Completion of the Cover Sheet
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Type all required information onto the Cover Sheet section in the worksheet.
See Step 2: Complete the lab Cover Sheet in the iLab Steps shown above on this page for specific information.
STEP 10: Submit Your Deliverables
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>Back to Top
Submit only the worksheet with its Cover Sheet, Observations/Measurements, and Questions sections.
See the Syllabzs section “Due Dates for Assignments & Exams” for due date information.
.equella.ecollege.com/file/69c91913-503b-4ee1-9a9c-49c27396814a/37/ECET220_W4_iLab.html#top”>
ECET220 Electronic Circuits and Devices III
WEEK 5 ILAB
iLab 5 of 7: Inverting and Noninverting Op-Amps (30 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
This week’s lab will apply the lecture material to an experiment on inverting and noninverting op-amp circuits. You will be first analyze the circuit predicting the circuit voltages and currents. Next, using MultiSim, you will simulate the circuit operation. Finally, you will be assembling the circuit on your breadboard measuring the circuit voltages and currents.
Deliverables
This lab’s deliverables include the laboratory’s worksheet with its Cover Sheet (completed in the typed format shown within the worksheet), Observations/Measurements, and Questions sections. The entire lab is worth 30 points. See worksheet and instruction documents for grading information.
Required Software
MultiSim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Download the W5 LabInstructions and Worksheet and save them to your PC.
Note: Theseitems arefound in Doc Sharing.
STEP 2: Lab Cover Sheet
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Report cover sheets must be completed for all labs. The key parts of these sheets include the following.
Objective: A one or two sentence explanation of the purpose of the lab.
Results: A statement of the final output, such as if the circuit and software worked properly.
Conclusions: Conclusions based on the results—usually directly related to the purpose of the lab.
Observations/Measurements: All results from the lab must be recorded on the cover sheets. Turn in the cover sheets for grading and retain the remainder of the lab as worksheets.
STEP 3: Carry Out Instructions for Theoretical Analysis in Part III: Procedure
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Follow the instructions in Part A: Theoretical Analysis, and record all required measurements.
In this part, you will be predicting the characteristics of a parallel circuit using the various laws that we have discussed for the analysis. Make sure you go over the exercise problems embedded in the lecture to get a better understanding. Use proper units along with engineering notation to represent the electrical quantities.
See Part A: Theoretical Analysis in the lab’s instructions document.
STEP 4: Complete MultiSim Simulation Results in Part III: Procedure
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Using MultiSim, perform the steps identified recording the required measurements.
In this part, you will be using technology to verify your predictions. You will be using MultiSim to simulate the given circuit. Record the required parameters as indicated by the meters and calculate the other quantities based on these measurements. Make sure to copy and paste the circuit from here into the Word document and let the page adjust to auto fit.
See Part B: MultiSim Simulation Results in the lab’s instructions document.
STEP 5: Complete Experimental Breadboard Results in Part III: Procedure
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Construct the circuit. Perform the steps identified by recording the required measurements.
See Part C: Experimental Breadboard Results in the lab’s instructions document.
STEP 6: Complete Results Analysis in Part III: Procedure
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Record the data collected from this experiment and determine the error percentages.
See Part D: Results Analysis in the lab’s instructions document.
STEP 7: Transfer Recorded Values to Observations/Measurements
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Copy the recorded results for Questions A, B, C, and D in Part III: Observations/Measurements section of the lab. This is the page immediately following the Cover Sheet in the worksheet.
STEP 8: Answer Questions Section
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Make sure to completely answer all of the questions in this lab’s worksheet.
STEP 9: Verify Completion of the Cover Sheet
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Type all required information onto the Cover Sheet section in the worksheet.
See Step 2: Complete the Lab Cover Sheet in the iLab Steps shown above on this page for specific information.
STEP 10: Submit Your Deliverables
.equella.ecollege.com/file/76daaa05-9624-42b5-b7df-d43cfe5b74cf/40/ECET220_W5_iLab.html#top”>Back to Top
Submit only the worksheet with its Cover Sheet, Observations/Measurements, and Questions sections.
See the Syllabus section “Due Dates for Assignments & Exams” for due date information.
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ECET220 Electronic Circuits and Devices III
WEEK 6 ILAB
iLab 6 of 7: Operational Amplifier Circuits and Applications (30 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
This week’s lab will demonstrate the operations of an inverting summing amplifier, a noninverting summing amplifier, and an instrumental amplifier.
Deliverables
This lab’s deliverables include the laboratory’s worksheet with its Cover Sheet (completed in the typed format shown within the worksheet), Observations/Measurements, and Questions sections. The entire lab is worth 30 points. See worksheet and instruction documents for grading information.
Required Software
Multisim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
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STEP 2: Lab Cover Sheet
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Report cover sheets must be completed for all labs. The key parts of these sheets include the following.
Objective: A one or two sentence explanation of the purpose of the lab.
Results: A statement of the final output, such as if the circuit and software worked properly.
Conclusions: Conclusions based on the results—usually directly related to the purpose of the lab.
Observations/Measurements: All results from the lab must be recorded on the cover sheets. Turn in the cover sheets for grading and retain the remainder of the lab as worksheets.
STEP 3: Carry Out Instructions for Theoretical Analysis in Part III: Procedure
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Follow the instructions in Part A: Theoretical Analysis, and record all required measurements.
In this part, you will be predicting the characteristics of a parallel circuit using the various laws that we have discussed for the analysis. Make sure you go over the exercise problems embedded in the lecture to get a better understanding. Use proper units along with engineering notation to represent the electrical quantities.
See Part A: Theoretical Analysis in the lab’s instructions document.
STEP 4: Complete MultiSim Simulation Results in Part III: Procedure
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Using MultiSim, perform the steps identified recording the required measurements.
In this part, you will be using technology to verify your predictions. You will be using MultiSim to simulate the given circuit. Record the required parameters as indicated by the meters and calculate the other quantities based on these measurements. Make sure to copy and paste the circuit from here into the Word document and let the page adjust to auto fit.
See Part B: MultiSim Simulation Results in the lab’s instructions document.
STEP 5: Complete Experimental Breadboard Results in Part III: Procedure
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Construct the circuit. Perform the steps identified by recording the required measurements.
See Part C: Experimental Breadboard Results in the lab’s instructions document.
STEP 6: Complete Results Analysis in Part III: Procedure
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Record the data collected from this experiment and determine the error percentages.
See Part D: Results Analysis in the lab’s instructions document.
STEP 7: Transfer Recorded Values to Observations/Measurements
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Copy the recorded results for Questions A, B, C, and D in Part III: Observations/Measurements section of the lab. This is the page immediately following the Cover Sheet in the worksheet.
STEP 8: Answer Questions Section
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Make sure to completely answer all of the questions in this lab’s worksheet.
STEP 9: Verify Completion of the Cover Sheet
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Type all required information onto the Cover Sheet section in the worksheet.
See Step 2: Complete the Lab Cover Sheet in the iLab Steps shown above on this page for specific information.
STEP 10: Submit Your Deliverables
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Submit only the worksheet with its Cover Sheet, Observations/Measurements, and Questions sections.
See the Syllabus section “Due Dates for Assignments & Exams” for due date information.
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ECET220 Electronic Circuits and Devices III
WEEK 7 ILAB
iLab 7 of 7: Lab Project: Active Filter Design (40 points)
Note! Submit your assignment to the Dropbox, located at the top of this page. (See the Syllabus section “Due Dates for Assignments & Exams” for due dates.)
iLAB OVERVIEW
Scenario/Summary
The purpose of this lab project is to design and analyze a Sallen-Key low-pass filter with a single op amp and two RC circuits based on the specifications provided.
You will design and analyze a Sallen-Key low-pass filter with a single op amp and two RC circuits. The filter should feature a ?40 dB/decade roll-off rate, follow the steps provided in the lab instructions, and write a report.
Deliverables
This lab’s deliverables include the laboratory’s template following guildelines listed in the Instructions and Report template.
The entire lab is worth 40 points. See instruction’s document for grading information.
Required Software
MultiSim Software
Access the software at .devry.edu/”>https://lab.devry.edu.
Steps: 1, 2, and 3
iLAB STEPS
STEP 1: Download the Lab
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Download the W7 Lab Instructions and Worksheet and save them to your PC.
Note: These items are found in Doc Sharing.
STEP 2: Formal Lab Report Guidelines
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The report must contain the following key parts.
Title Page
Table of Contents
Table of Illustrations
Project Specification
Description of Operation
Documentation of Software Simulation and Hardware Implementation
Appendices (data sheets, reference, material, etc.)
References
STEP 3: Carry Out Instructions in the Lab Instructions
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Pay careful attention to details on the report’s requirements and the formal lab report guidelines.
STEP 9: Complete All Key Sections Listed in the Report Template
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Type all required information onto the sections within the Report template.
STEP 10: Submit Your Deliverables
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Submit only the Report Template with its report.
See the Syllabus section “Due Dates for Assignments & Exams” for due date information.
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