Difference between revisions of "Lab 10 TF EIM"

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List the components below and show your instructor the output observed on the scope and sketch it below.
 
List the components below and show your instructor the output observed on the scope and sketch it below.
  
=Full-Wave Rectifier Bridge Circuit=
 
 
[[File:TF_EIM_Lab10_HW_RectifierBridge.png| 400 px]]
 
 
 
1.) Choose R in the above circuit so the low-pass filter breakpoint is less than 60 Hz.
 
 
2.) Measure the quantities below  using at least 4 different load resistors.
 
 
 
 
{| border="3"  cellpadding="20" cellspacing="0"
 
|<math>R_L</math> ||  <math>I_L</math> || <math>P_L</math> ||<math>V_D</math> ||<math>V_{ripple}</math>
 
|-
 
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|-
 
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|-
 
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|-
 
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|}
 
 
<math>P_L</math> = power dissipated by the load resistor (don't exceed resistor power rating)
 
 
<math>V_D</math> = output voltage
 
 
3.) Explain why the ripple amplitude increases as I_L increases.
 
  
 
[[Forest_Electronic_Instrumentation_and_Measurement]]
 
[[Forest_Electronic_Instrumentation_and_Measurement]]

Latest revision as of 20:22, 4 March 2011

Unregulated power supply


Use a transformer for the experiment.

here is a description of the transformer.

File:TF EIM 241 transformer.pdf

File:IN5230-B-T DataSheet.pdf

Half-Wave Rectifier Circuit

1.)Consider building circuit below.

TF EIM Lab10 HW Rectifier.png

Determine the components needed in order to make the output ripple have a [math]\Delta V[/math] less than 1 Volt.

List the components below and show your instructor the output observed on the scope and sketch it below.

Full-Wave Rectifier Circuit

TF EIM Lab10 FW Rectifier.png

Determine the components needed in order to make the above circuit's output ripple have a [math]\Delta V[/math] less than 0.5 Volt.

List the components below and show your instructor the output observed on the scope and sketch it below.


Forest_Electronic_Instrumentation_and_Measurement