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		<title>DC Ammeter Shunts &#8211; Temperature Rise</title>
		<link>http://cshunt.wordpress.com/2011/12/05/dc-ammeter-shunts-temperature-rise/</link>
		<comments>http://cshunt.wordpress.com/2011/12/05/dc-ammeter-shunts-temperature-rise/#comments</comments>
		<pubDate>Mon, 05 Dec 2011 19:13:21 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[DC Ammeter Shunts]]></category>
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		<description><![CDATA[Temperature Rise In many cases it is desirable to limit the temperature rise of a shunt for increased accuracy and stability or to protect other equipment near it. A satisfactory de-rating factor “K2” may be obtained from: K2 = 1 &#8211; t / 125 where &#8220;t&#8221; is the difference between the rated and the newly [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=17&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
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<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<hr />
<p align="justify"><strong>Temperature Rise</strong></p>
<p align="justify">In many cases it is desirable to limit the temperature rise of a shunt for increased accuracy and stability or to protect other equipment near it. A satisfactory de-rating factor “K2” may be obtained from:</p>
<p align="justify">K2 = 1 &#8211; t / 125</p>
<p align="justify">where &#8220;t&#8221; is the difference between the rated and the newly imposed rise limit.</p>
<p align="justify"><strong>Example:</strong></p>
<p align="justify">Suppose</p>
<p align="justify">100°C is 75 degrees above the ambient, so T = 75°C, and the rated rise A is 100°C.</p>
<p align="justify">Therefore:</p>
<p>      P<span style="font-size:xx-small;">out</span> = P<span style="font-size:xx-small;">max</span> x (1-75 / 100) = P<span style="font-size:xx-small;">max</span> x 0.25<br />
      P<span style="font-size:xx-small;">max</span> = 0.66 x P<span style="font-size:xx-small;">rated</span> = 0.66 x (150 x 0.05) = 4.95 watts<br />
      P<span style="font-size:xx-small;">out</span> for an ambient of 100°C is P<span style="font-size:xx-small;">out</span> = 4.95 x 0.25 = 1.23 watts,<br />
      60 Amps will be the maximum load.</p>
<hr />
<p style="text-align:left;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/jpg/logo.jpg" alt="CSI Logo" width="125" height="78" /></p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>DC Ammeter Shunts &#8211; Ambient</title>
		<link>http://cshunt.wordpress.com/2008/05/07/dc-ammeter-shunts-ambient/</link>
		<comments>http://cshunt.wordpress.com/2008/05/07/dc-ammeter-shunts-ambient/#comments</comments>
		<pubDate>Wed, 07 May 2008 15:07:45 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
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		<guid isPermaLink="false">http://cshunt.wordpress.com/?p=16</guid>
		<description><![CDATA[Ambient If the ambient temperature of the area in which the shunt is to operate exceeds the ambient Reference Test Conditions, a de-rating factor must be applied to prevent the manganin temperature from going above the safe limit of 125°C. The following formula may be used to find the de-rating power.       Pout = Pmax x [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=16&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
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<hr />
<p align="justify"><strong>Ambient</strong></p>
<p align="justify">If the ambient temperature of the area in which the shunt is to operate exceeds the ambient Reference Test Conditions, a de-rating factor must be applied to prevent the manganin temperature from going above the safe limit of 125°C. The following formula may be used to find the de-rating power.</p>
<p align="justify">      P<span style="font-size:xx-small;">out</span> = P<span style="font-size:xx-small;">max</span> x (1-T/A)<br />
P<span style="font-size:xx-small;">max</span> = P<span style="font-size:xx-small;">rated</span> x 0.66</p>
<p align="justify">where T is the difference between the rated and operating ambient temperatures, A is the rise allowed above the rated ambient and Pmax is the Pout at 25°C.</p>
<p align="justify"><strong>Example:</strong></p>
<p align="justify">If a 150 Amp 50 mV shunt is to operate in a 100°C ambient, what is the maximum load?</p>
<p align="justify">100°C is 75 degrees above the ambient, so T = 75°C, and the rated rise A is 100°C.</p>
<p align="justify">Therefore:</p>
<p>      P<span style="font-size:xx-small;">out</span> = P<span style="font-size:xx-small;">max</span> x (1-75 / 100) = P<span style="font-size:xx-small;">max</span> x 0.25<br />
P<span style="font-size:xx-small;">max</span> = 0.66 x P<span style="font-size:xx-small;">rated</span> = 0.66 x (150 x 0.05) = 4.95 watts<br />
P<span style="font-size:xx-small;">out</span> for an ambient of 100°C is P<span style="font-size:xx-small;">out</span> = 4.95 x 0.25 = 1.23 watts,<br />
60 Amps will be the maximum load.</p>
<hr />
<p style="text-align:left;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/jpg/logo.jpg" alt="CSI Logo" width="125" height="78" /></p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>DC Ammeter Shunts &#8211; Duty</title>
		<link>http://cshunt.wordpress.com/2008/04/28/dc-ammeter-shunts-duty/</link>
		<comments>http://cshunt.wordpress.com/2008/04/28/dc-ammeter-shunts-duty/#comments</comments>
		<pubDate>Mon, 28 Apr 2008 18:28:34 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
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		<description><![CDATA[Duty For duty which is less than continuous, a shunt need not be rated as high as a straight calculation based on resistance and voltage or current would indicate. If, for instance the shunt is repeatedly energized for a short period (not to exceed 5 minutes)… a conservative rating may be obtained as follows:             K1 [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=15&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<p align="justify"><strong>Duty</strong></p>
<p align="justify">For duty which is less than continuous, a shunt need not be rated as high as a straight calculation based on resistance and voltage or current would indicate.</p>
<p align="justify">If, for instance the shunt is repeatedly energized for a short period (not to exceed 5 minutes)… a conservative rating may be obtained as follows:</p>
<p align="justify">            K1 = √D<br />
            P<span style="font-size:xx-small;">plus</span> = P<span style="font-size:xx-small;">max</span> / K1<br />
            P<span style="font-size:xx-small;">max</span> = P<span style="font-size:xx-small;">rated</span> x 0.66<br />
            P<span style="font-size:xx-small;">max</span> = maximum continous power<br />
            P<span style="font-size:xx-small;">rated</span> = catalog rated power<br />
            P<span style="font-size:xx-small;">plus</span> = maximum pulsating power</p>
<p align="justify">where D is the ratio of ON time to the total period.</p>
<p align="justify"><strong>Example:</strong></p>
<p align="justify">A 800 Amp 50mV shunt is energized for 15 seconds of each minute.</p>
<p align="justify">D = 15 /60 = 0.25 and K1 = √0.25 = 0.5 thus,<br />
P<span style="font-size:xx-small;">rated</span> = 800 x 0.05 = 40 watts<br />
P<span style="font-size:xx-small;">max</span> = P<span style="font-size:xx-small;">rated</span> x 0.66 = 40 x 0.66 = 26.4 watts<br />
P<span style="font-size:xx-small;">plus</span> = P<span style="font-size:xx-small;">max</span> / K1 = 26.40 / 0.5 = 52.8 watts</p>
<p align="justify">therefore this shunt can be loaded up to 1056 Amps.</p>
<p align="justify">For surge and pulse service a different approach must be used. In these cases it is necessary to provide enough thermal mass to absorb the energy to be dissipated and be sure that the construction of the shunt is adequate to accommodate the peak power. Therefore, it is recommended that a complete description of the pulse / surge wave shape or circuit constants and operating conditions be submitted to the CSI Engineering Department for the selection of a suitable shunt.</p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:postmaster@cshunt.com">postmaster@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>DC Ammeter Shunts &#8211; Design Considerations</title>
		<link>http://cshunt.wordpress.com/2008/04/21/dc-ammeter-shunts-design-considerations/</link>
		<comments>http://cshunt.wordpress.com/2008/04/21/dc-ammeter-shunts-design-considerations/#comments</comments>
		<pubDate>Mon, 21 Apr 2008 17:49:08 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[DC Ammeter Shunts]]></category>
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		<description><![CDATA[Design Considerations When trying to find the correct shunt rating to specify for a given application, there are four things to take into account: A) Duty – continuous, intermittent or surge B) Ambient – elevated temperature or high altitudes C) Temperature rise &#8211; normal or limited D) Environment – grouped, enclosed, forced air Or any [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=14&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<p align="justify"><strong>Design Considerations</strong></p>
<p align="justify">When trying to find the correct shunt rating to specify for a given application, there are four things to take into account:</p>
<p align="justify">A) Duty – continuous, intermittent or surge</p>
<p align="justify">B) Ambient – elevated temperature or high altitudes</p>
<p align="justify">C) Temperature rise &#8211; normal or limited</p>
<p align="justify">D) Environment – grouped, enclosed, forced air</p>
<p align="justify">Or any combination of A through D</p>
<p align="justify">Although each of these conditions will be considered separately, any combination of them may exist in a specific case. When this happens it will be necessary to use more than one of the A through D sections to arrive at the correct rating.</p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>DC Ammeter Shunts &#8211; Shunt Selection Guide</title>
		<link>http://cshunt.wordpress.com/2008/04/15/dc-ammeter-shunts-shunt-selection-guide/</link>
		<comments>http://cshunt.wordpress.com/2008/04/15/dc-ammeter-shunts-shunt-selection-guide/#comments</comments>
		<pubDate>Tue, 15 Apr 2008 18:40:12 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[DC Ammeter Shunts]]></category>
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		<description><![CDATA[Shunt Selection Guide Definition: Instrument Shunt is a particular type of resistor designed to be connected in parallel with the measuring device to extend the current range beyond some particular value for which the instrument is already complete. Any shunt by definition is a resistor and will generate heat with the passage of current. Shunt [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=13&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<p align="justify"><strong>Shunt Selection Guide</strong></p>
<p align="justify"><b>Definition:</b> Instrument Shunt is a particular type of resistor designed to be connected in parallel with the measuring device to extend the current range beyond some particular value for which the instrument is already complete.</p>
<p align="justify">Any shunt by definition is a resistor and will generate heat with the passage of current. Shunt ratings are established by finding the power required to achieve a specified manganin temperature rise in free air at certain predetermined conditions.</p>
<p align="justify">When operating conditions are significantly different from the rating conditions, the shunt should be de-rated or up-dated accordingly to keep the manganin temperature within reasonable limits in order to prevent premature failure, reduced reliability, reduced rated accuracy or causing permanent change in resistance.</p>
<p align="justify">CSI’s standard shunts are rated to meet IEEE Standard Requirements for Direct Current Instrument Shunt. IEEE 6.2 Current Ratings:</p>
<p align="justify">Selection of ratings should be based on operation at a normal current of 2/3 the rated value.</p>
<p align="justify">Ratings are based on mountings in accordance with Reference Test Conditions:</p>
<p align="justify">•	<b>Reference Temperature:</b> 25° C (± 2° C)</p>
<p>•	<b>Position:</b> Current terminals and resistance blades, vertical, allowing free air circulation</p>
<p>•	<b>Connections:</b> Tightly bolted to current bus using all terminal slots and specified depth of blade insertion – or tightly bolted to lugs with cables of proper cross-section</p>
<p align="justify">Since a shunt is essentially part of a bus-bar assembly, it depends on the structure to conduct away a major portion of the heat generated within the shunt and then to radiate this heat. It is important, therefore, that these connecting buses be of ample size and properly attached to the shunt.</p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>DC Ammeter Shunts &#8211; General Information</title>
		<link>http://cshunt.wordpress.com/2008/04/09/dc-ammeter-shunts-general-information/</link>
		<comments>http://cshunt.wordpress.com/2008/04/09/dc-ammeter-shunts-general-information/#comments</comments>
		<pubDate>Wed, 09 Apr 2008 15:50:45 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[DC Ammeter Shunts]]></category>
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		<description><![CDATA[General Information CSI shunts are designed for use with 50 or 100 millivolt measuring instruments, calibrated in terms of the ampere ratings of the shunt. The accuracy of our shunts is better than ± ¼% of the rated value and the temperature coefficient is ±0.000015. It is important that the resistance be constant under different [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=12&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<p align="justify"><strong>General Information</strong></p>
<p align="justify">CSI shunts are designed for use with 50 or 100 millivolt measuring instruments, calibrated in terms of the ampere ratings of the shunt. The accuracy of our shunts is better than ± ¼% of the rated value and the temperature coefficient is ±0.000015.</p>
<p align="justify">It is important that the resistance be constant under different temperature conditions. It is usually assumed that the maximum temperature will be about 80° C and the usual range is 40° &#8211; 60° C.</p>
<p align="justify"><strong>For continuous operation, it is recommended that shunts are not run at more than two-thirds (⅔) the rated current under normal conditions of use as per IEEE standards.</strong></p>
<p align="justify">If the shunt is used in an AC or pulse current environment make sure that the highest pulse current does not exceed the recommended two-thirds, the rated current for continuous operation. In this case the average millivolt reading using an RMS meter will be proportional with the duty cycle of the AC current.</p>
<p align="justify"><strong>Installation</strong></p>
<p align="justify">By definition, a shunt is a resistor, and will generate heat with passage of current. Because of this, the resistance blades of the shunt should be mounted in a vertical position to promote free convectional flow of air. Where this mounting position is impractical and in installations where the shunt is in a confined location forced air cooling should be provided.</p>
<p align="justify"><em><strong>Under no condition should the manganin shunt strip be allowed to surpass 145° C, as this will cause a permanent change in resistance.</strong></em></p>
<p align="justify">Shunts should be installed to protect them from damage by thermal expansion forces in the connecting bus bars or by short circuit forces. It should be recognized that shunts are inherently weaker than their current connections and that special flexibility may be needed at times.</p>
<p align="justify">Where possible all shunts should be connected in the grounded side of the line. Portable type shunts, with an insulating base, when used on circuits above 750 volts should be mounted in the grounded side of the circuit.</p>
<p align="justify">Where more than one bus bar is to be connected to each end of a single terminal shunt, these bars should be distributed as equally as possible on each side of the shunt terminals.</p>
<p align="justify"><strong>Leads</strong></p>
<p align="justify">In some applications it is not feasible to mount the shunt close enough to the instrument to permit the use of the standard lead lengths. If longer lead lengths are necessary, the additional drop in the leads must be taken into consideration when ordering analog instruments.</p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>The Big Name in DC Ammeter Shunts</title>
		<link>http://cshunt.wordpress.com/2008/04/08/the-big-name-in-dc-ammeter-shunts/</link>
		<comments>http://cshunt.wordpress.com/2008/04/08/the-big-name-in-dc-ammeter-shunts/#comments</comments>
		<pubDate>Tue, 08 Apr 2008 15:15:54 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[About CSI]]></category>
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		<guid isPermaLink="false">http://cshunt.wordpress.com/?p=11</guid>
		<description><![CDATA[The Big Name in DC Ammeter Shunts Since 1972 CSI has built a solid reputation based on high quality reliable products and superior customer service. We offer the broadest selection of DC Ammeter Shunts including specials not available from any other source. CSI’s selection of standard shunts provides diversity in size, type and configuration to [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=11&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<hr />
<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<hr />
<p align="justify"><strong>The Big Name in DC Ammeter Shunts</strong></p>
<p align="justify">Since 1972 CSI has built a solid reputation based on high quality reliable products and superior customer service. We offer the broadest selection of DC Ammeter Shunts including specials not available from any other source.</p>
<p align="justify">CSI’s selection of standard shunts provides diversity in size, type and configuration to meet most customer applications. When a custom shunt is required, our engineering and production personnel work closely with you to provide the best possible solution that is cost effective and supplied on time.</p>
<p align="justify">CSI is committed to being the preferred supplier to our customers by satisfying their expectations for Quality, Service and value. This is the philosophy that motivates our entire team – a team on which you are an integral member.</p>
<p align="justify"><strong>You can depend on us!</strong></p>
<hr />
<p style="text-align:left;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/jpg/logo.jpg" alt="CSI Logo" width="125" height="78" /></p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>CSI Quality Systems</title>
		<link>http://cshunt.wordpress.com/2008/04/07/csi-quality-systems/</link>
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		<pubDate>Mon, 07 Apr 2008 17:58:17 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[About CSI]]></category>
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		<guid isPermaLink="false">http://cshunt.wordpress.com/?p=10</guid>
		<description><![CDATA[CSI Quality System The CSI Quality Culture is built on a foundation of each employee&#8217;s personal commitment to quality in the performance of their work. Our product quality and our productivity improvements are a direct result of this personal commitment to achieving high standards of quality, efficiency and service to our customer in all that [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=10&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<hr />
<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<hr />
<p align="justify"><strong>CSI Quality System</strong></p>
<p align="justify">The CSI Quality Culture is built on a foundation of each employee&#8217;s personal commitment to quality in the performance of their work. Our product quality and our productivity improvements are a direct result of this personal commitment to achieving high standards of quality, efficiency and service to our customer in all that we do. It is through our collective efforts, working together in an atmosphere of teamwork and attention to these fundamental goals.</p>
<p align="justify"><strong>Maufacturing and Quality Control</strong></p>
<p align="justify">Our business focus at CSI is to develop and manage unique process technologies with a commitment to the conservative productabilty of high performance, high quality shunt products which provide technical solutions for our customer.</p>
<p align="justify">The Quality Control System in effect at CSI is defined by our Quality Manual and is based on the requirements of ISO-9001 and Mil-I-45208. The CSI Quality Control System has been approved in surveys by military and aerospace systems consumers.</p>
<p align="justify">This system is designed to achieve maximum control of product in order to assure that all manufactured parts meet necessary specifications and standards set forth by our customer&#8217;s contracts. Customer satisfaction and defect prevention are considered primary objectives of this system.</p>
<hr />
<p style="text-align:left;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/jpg/logo.jpg" alt="CSI Logo" width="125" height="78" /></p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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		<title>About Canadian Shunt Industries</title>
		<link>http://cshunt.wordpress.com/2008/04/02/about/</link>
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		<pubDate>Wed, 02 Apr 2008 19:34:50 +0000</pubDate>
		<dc:creator>cshunt</dc:creator>
				<category><![CDATA[About CSI]]></category>
		<category><![CDATA[100% RoHS Compliant]]></category>
		<category><![CDATA[DC Ammeter Shunts]]></category>
		<category><![CDATA[Disconnects]]></category>
		<category><![CDATA[ISO 9001]]></category>
		<category><![CDATA[Isolation Knife Switches]]></category>
		<category><![CDATA[Shunts]]></category>
		<category><![CDATA[Switches]]></category>
		<category><![CDATA[Telecom Power Fused Disconnects]]></category>

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		<description><![CDATA[Welcome To Our Valued Customers and Visitors For over thirty years, Canadian Shunt Industries has been supplying North American industry with the widest selection of DC Ammeter Shunts available anywhere. Over the years we have broadened our product line significantly while remaining focused on what we do best, shunts. We now offer three hundred standard [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=cshunt.wordpress.com&amp;blog=3343679&amp;post=9&amp;subd=cshunt&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<hr />
<p style="text-align:center;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/png/signature/signature.png" alt="CSI Logo" width="349" height="99" /></p>
<hr />
<p align="justify"><strong>Welcome To Our Valued Customers and Visitors</strong></p>
<p align="justify">For over thirty years, Canadian Shunt Industries has been supplying North American industry with the widest selection of DC Ammeter Shunts available anywhere. Over the years we have broadened our product line significantly while remaining focused on what we do best, shunts. We now offer three hundred standard models and a large variety of customized shunts.</p>
<p align="justify">Today, our product line includes DC Ammeter Shunts, Telecom Power Fused Disconnects and Isolation Knife Switches designed and manufactured to ISO quality standards. Our technical staff stands ready to provide prototypes and custom-design products to meet your exact requirements.</p>
<p align="justify">To assist engineers in their design and specification process, our catalog drawings are available on disk for CAD environments.</p>
<p align="justify">We take great pride in the ability of our people to meet all your needs and look forward to being of service to you, our valued customers.</p>
<p align="justify">Canadian Shunt Industries Inc. was founded in 1972 and currently employs highly skilled and trained staff, working in various administration, engineering and manufacturing career positions. It is due to the dedication and professionalism of our efficient office staff, innovative engineers and journeymen machinists, that CSI Inc. has become a global leader in designing, manufacturing and supplying the world with the largest selection of DC Ammeter Shunts. Many of our staff have been with us since our inception in 1972 and deserve a great deal of recognition and gratitude for the success of Canadian Shunt Industries.</p>
<p align="justify">The manufacturing plant and corporate offices are located in Markham, Ontario, Canada. The plant size is over 16,000 square feet.</p>
<p align="justify">CSI Inc. manufactures the world&#8217;s largest selection of DC Ammeter Shunts with a range from 1 Ampere to 50,000 Ampere. We also design Shunts to meet your specific needs and applications. Our product line includes Telecom Power &#8211; Fused Disconnects ranging form 3 to 1200 Ampere and Knife Switches &#8211; Isolation type ranging from 30 Ampere to 15,000 Ampere.</p>
<p align="justify">We are currently working under NISC &#8211; NRC standards and safety agency approvals UL and CSA where applicable.</p>
<p align="justify">Global Markets serviced.</p>
<p align="justify">Our products are primarily used in Telecommunication Power plants, Diesel Electric Locomotives, AC or DC Drive Systems, Electric Vehicles, Metal Finishing Equipment, Battery Chargers and DC Power Supplies.</p>
<p align="justify">Our reputation and successes are directly resultant from providing our customers with excellent customer service, high quality products at cost effective prices and on time delivery.</p>
<p align="justify">New product development is an on going process at Canadian Shunt Industries, allowing us to find better solutions for tomorrow&#8217;s challenges.</p>
<hr />
<p style="text-align:left;" align="justify"><img style="vertical-align:top;border:0;margin:0;" src="http://www.cshunt.com/jpg/logo.jpg" alt="CSI Logo" width="125" height="78" /></p>
<p align="justify">Canadian Shunt Industries Inc.<br />
80 Bullock Drive, Unit 1<br />
Markham, ON L3P 3P7<br />
Canada</p>
<p>1.800.433.5604<br />
T 905.294.5274<br />
F 905.294.5096</p>
<p align="justify"><a href="mailto:csi@cshunt.com">CSI@cshunt.com</a></p>
<p align="justify"><a href="http://www.cshunt.com">Canadian Shunt Industries Inc.</a></p>
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