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<document xmlns="http://cnx.rice.edu/cnxml" xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id6283072">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Instrumenting a Circuit Simulation in National Instruments Multisim</name>
<metadata xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">
  <md:version xmlns:bib="http://bibtexml.sf.net/">1.1</md:version>
  <md:created xmlns:bib="http://bibtexml.sf.net/">2006/07/28 14:07:01.601 GMT-5</md:created>
  <md:revised xmlns:bib="http://bibtexml.sf.net/">2006/08/03 11:56:43.267 GMT-5</md:revised>
  <md:authorlist xmlns:bib="http://bibtexml.sf.net/">
      <md:author xmlns:bib="http://bibtexml.sf.net/" id="Janell">
      <md:firstname xmlns:bib="http://bibtexml.sf.net/">Janell</md:firstname>
      
      <md:surname xmlns:bib="http://bibtexml.sf.net/">Rodriguez</md:surname>
      <md:email xmlns:bib="http://bibtexml.sf.net/">janellrodriguez@hotmail.com</md:email>
    </md:author>
      <md:author xmlns:bib="http://bibtexml.sf.net/" id="eluther">
      <md:firstname xmlns:bib="http://bibtexml.sf.net/">Erik</md:firstname>
      <md:othername xmlns:bib="http://bibtexml.sf.net/">B</md:othername>
      <md:surname xmlns:bib="http://bibtexml.sf.net/">Luther</md:surname>
      <md:email xmlns:bib="http://bibtexml.sf.net/">erik.luther@ni.com</md:email>
    </md:author>
  </md:authorlist>

  <md:maintainerlist xmlns:bib="http://bibtexml.sf.net/">
    <md:maintainer xmlns:bib="http://bibtexml.sf.net/" id="Janell">
      <md:firstname xmlns:bib="http://bibtexml.sf.net/">Janell</md:firstname>
      
      <md:surname xmlns:bib="http://bibtexml.sf.net/">Rodriguez</md:surname>
      <md:email xmlns:bib="http://bibtexml.sf.net/">janellrodriguez@hotmail.com</md:email>
    </md:maintainer>
    <md:maintainer xmlns:bib="http://bibtexml.sf.net/" id="eluther">
      <md:firstname xmlns:bib="http://bibtexml.sf.net/">Erik</md:firstname>
      <md:othername xmlns:bib="http://bibtexml.sf.net/">B</md:othername>
      <md:surname xmlns:bib="http://bibtexml.sf.net/">Luther</md:surname>
      <md:email xmlns:bib="http://bibtexml.sf.net/">erik.luther@ni.com</md:email>
    </md:maintainer>
  </md:maintainerlist>
  
  

  <md:abstract xmlns:bib="http://bibtexml.sf.net/">This module provides a brief introduction to instrumenting a circuit simulation in National Instruments Multisim.  Multisim is fully featured SPICE schematic capture and simulation tool used for circuit design, simulation, and in combination with Ultiboard for layout of custom PCBs.</md:abstract>
</metadata>
<content xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">
<section xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id8485872">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Instrumenting a Simulation in MultiSim</name>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9191120">Virtual instruments are components in Multisim
which model real-world bench-top instruments. Examples of virtual
instruments in Multisim include Oscilloscopes, Function Generators,
Network Analyzers, and Bode Plotters.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9406388">Virtual instruments provide designers with an
easy and intuitive method for interacting with their circuits as
they would in a testing or prototyping phase.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id6231894">In addition to the provided virtual
instruments, designers with familiar with National Instruments
LabVIEW can create their own custom instruments from scratch. For
example, one could create a custom noise generator to model
electromagnetic interference.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9092103">Custom virtual instruments written in NI
LabVIEW can also acquire real-world data and use the data to drive
simulations, and can send generated data to analog output hardware,
allowing simulated data to control real-world devices. The LabVIEW
development suite is required to create custom LabVIEW instruments,
but not necessary to run existing LabVIEW based instruments.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9304098">To place a virtual instrument, select the
desired instrument from the Instruments toolbar (Figure 1). To view
the front panel of the instrument, double-click on the instrument
icon. Make connections to the terminals of the instrument icon as
you would to any other component.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9366901">Multisim also provides designers with
simulated benchtop instruments. These are instruments such as the
Tektronix TDS 2024 Oscilloscope. They will look and operate exactly
according to the manufacturers’ user manuals.</para>
<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9110790"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic1.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Instruments Toolbar </caption></figure>

<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9456382">A single circuit can have multiple instruments
attached to it, including (for most tiers) multiple instances of
the same instrument. In addition, each circuit window can have its
own set of instruments. Each instance of any instrument is
configured and connected independently.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9249263">An overview of the more common instruments is
included in this section. For more detailed information on how to
use each instrument, consult the Multisim User Guide or
helpfile.</para>
<section xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9460167">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Multimeter</name>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id8618695">Use the multimeter to measure AC or DC voltage
or current, and resistance or decibel loss between two nodes in a
circuit. The multimeter is auto-ranging, so a measurement range
does not need to be specified. Its internal resistance and current
are preset to near-ideal values, which can be changed.</para>
<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id6235199"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic2.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Multimeter Schematic Symbol </caption></figure>

<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id8942440"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic3.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Multimeter Front Panel </caption></figure>

</section>
<section xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9453408">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Function Generator</name>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9453416">The function generator is a voltage source
that supplies sine, triangular or square waves. It provides a
convenient and realistic way to supply stimulus signals to a
circuit. The waveform can be changed and its frequency, amplitude,
duty cycle and DC offset can be controlled. The function
generator's frequency range is great enough to produce conventional
AC as well as audio- and radio-frequency signals.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9453427">The function generator has three terminals
through which waveforms can be applied to a circuit. The common
center terminal provides a reference level for the signal.</para>
<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id8942751"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic4.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Function Generator Schematic Symbol </caption></figure>

<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9444217"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic5.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Function Generator Front Panel </caption></figure>

</section>
<section xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9221035">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Oscilloscopes</name>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9221042">Multisim includes several varieties of
oscilloscopes. All of the scopes can be controlled like real-world
oscilloscopes. Horizontal timing and vertical voltages parameters
can be adjusted. Triggering levels, and types are also selectable.
Data from the Multisim-exclusive oscilloscopes is available in the
Grapher after the interactive simulation has completed by selecting
View/Grapher.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9221053">Multisim provides the following
oscilloscopes:</para>
<list xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="bulleted" id="id9443990">
<item xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">2-Channel.</item>
<item xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">4-Channel.</item>
<item xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Agilent 54622D Mixed Signal Oscilloscope.</item>
<item xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Tektronix TDS 2024 Four Channel Digital Storage
Oscilloscope.</item>
</list>
<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9444019"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic6.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Oscilloscope Schematic Symbol </caption></figure>

<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9401837"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic7.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Oscilloscope Front Panel </caption></figure>

<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9351809"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic8.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Tektronix Oscilloscope Schematic Diagram </caption></figure>

<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9268827"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic9.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Tektronix Oscilloscope Front Panel </caption></figure>

</section>
<section xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9451698">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Bode Plotter</name>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9324175">The bode plotter displays the relative phase
or magnitude response of an input and output signal. This is
especially useful when characterizing the bandwidth of filter
circuits.</para>
<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9324186"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic10.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Function Generator Schematic Symbol </caption></figure>

<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9145329"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic11.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Bode Plotter Front Panel </caption></figure>

</section>
<section xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9149259">
<name xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/">Spectrum Analyzer</name>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9149265">The spectrum analyzer is used to measure
amplitude versus frequency. This instrument is capable of measuring
a signal's power and frequency components, and helps determine the
existence of harmonics in the signal.</para>
<para xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="id9242915">The spectrum analyzer displays its
measurements in the frequency domain rather than the time domain.
Usually the reference frame in signal analysis is time. In that
case, an oscilloscope is used to show the instantaneous value as a
function of time. Sometimes a sine waveform is expected but the
signal, rather than being a pure sinusoidal, has a harmonic on it.
As a result, it is not possible to measure the waveform's level. If
the same signal is displayed on a spectrum analyzer, its amplitude
is displayed, along with its frequency components, that is, its
fundamental frequency and any harmonics it may contain.</para>
<figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="element-947"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic12.png"/>
	<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Spectrum Analyzer Schematic Symbol </caption>
</figure><figure xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" id="element-96"><media xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/" type="image/png" src="Graphic13.png"/>
<caption xmlns:md="http://cnx.rice.edu/mdml/0.4" xmlns:bib="http://bibtexml.sf.net/"> Spectrum Analyzer Front Panel </caption></figure>
</section>
</section>
</content>
</document>
