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<channel>
	<title>LC Connector &#8211; Fenxi Optoelectronics Technology</title>
	<atom:link href="https://www.fenxifiber.com/product-category/lc-connector/feed/" rel="self" type="application/rss+xml" />
	<link>https://www.fenxifiber.com</link>
	<description></description>
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	<url>https://www.fenxifiber.com/wp-content/uploads/2026/01/FENXI-LOGO-F-100x100.jpg</url>
	<title>LC Connector &#8211; Fenxi Optoelectronics Technology</title>
	<link>https://www.fenxifiber.com</link>
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	<item>
		<title>LC UPC 3.0mm Simplex Multimode Fiber Connector</title>
		<link>https://www.fenxifiber.com/product/lc-upc-3-0mm-simplex-multimode/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-3-0mm-simplex-multimode/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:19:09 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=916</guid>

					<description><![CDATA[<h3 data-start="226" data-end="290">Built for high-speed multimode links in tough environments</h3>
<p data-start="292" data-end="669">The <strong data-start="296" data-end="340">LC UPC 3.0mm Simplex Multimode connector</strong> is designed for <strong data-start="357" data-end="426">multimode fiber patch cords that need extra mechanical protection</strong>.<br data-start="427" data-end="430" />While 2.0mm cables are common in standard racks, the <strong data-start="483" data-end="499">3.0mm jacket</strong> provides <strong data-start="509" data-end="583">higher pull strength, better crush resistance, and longer service life</strong>, making it ideal for <strong data-start="605" data-end="668">busy data centers, industrial cabinets, and equipment rooms</strong>.</p>
<p data-start="671" data-end="838">With <strong data-start="676" data-end="701">UPC polished ferrules</strong> and <strong data-start="706" data-end="739">multimode fiber compatibility</strong>, this connector supports <strong data-start="765" data-end="812">high-speed short-reach optical transmission</strong> with excellent stability.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="845" data-end="889">Why choose 3.0mm for multimode jumpers</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="891" data-end="1145">
<thead data-start="891" data-end="944">
<tr data-start="891" data-end="944">
<th class="" data-start="891" data-end="908" data-col-size="sm">Cable Diameter</th>
<th class="" data-start="908" data-end="921" data-col-size="sm">Durability</th>
<th class="" data-start="921" data-end="944" data-col-size="sm">Typical Environment</th>
</tr>
</thead>
<tbody data-start="999" data-end="1145">
<tr data-start="999" data-end="1035">
<td data-start="999" data-end="1007" data-col-size="sm">0.9mm</td>
<td data-start="1007" data-end="1013" data-col-size="sm">Low</td>
<td data-start="1013" data-end="1035" data-col-size="sm">Pigtails, splicing</td>
</tr>
<tr data-start="1036" data-end="1077">
<td data-start="1036" data-end="1044" data-col-size="sm">2.0mm</td>
<td data-start="1044" data-end="1053" data-col-size="sm">Medium</td>
<td data-start="1053" data-end="1077" data-col-size="sm">Standard patch cords</td>
</tr>
<tr data-start="1078" data-end="1145">
<td data-start="1078" data-end="1090" data-col-size="sm"><strong data-start="1080" data-end="1089">3.0mm</strong></td>
<td data-start="1090" data-end="1101" data-col-size="sm"><strong data-start="1092" data-end="1100">High</strong></td>
<td data-start="1101" data-end="1145" data-col-size="sm"><strong data-start="1103" data-end="1143">High-traffic racks, industrial sites</strong></td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1147" data-end="1238">The <strong data-start="1151" data-end="1169">thicker jacket</strong> protects fibers from <strong data-start="1191" data-end="1237">bending, vibration, and accidental pulling</strong>.</p>
<hr data-start="1240" data-end="1243" />
<h3 data-start="1245" data-end="1280">Multimode optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1282" data-end="1653">
<thead data-start="1282" data-end="1311">
<tr data-start="1282" data-end="1311">
<th class="" data-start="1282" data-end="1294" data-col-size="sm">Parameter</th>
<th class="" data-start="1294" data-end="1311" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1341" data-end="1653">
<tr data-start="1341" data-end="1389">
<td data-start="1341" data-end="1354" data-col-size="sm">Fiber Type</td>
<td data-col-size="sm" data-start="1354" data-end="1389">Multimode OM2 / OM3 / OM4 / OM5</td>
</tr>
<tr data-start="1390" data-end="1440">
<td data-start="1390" data-end="1408" data-col-size="sm">Core / Cladding</td>
<td data-col-size="sm" data-start="1408" data-end="1440">50 / 125 µm or 62.5 / 125 µm</td>
</tr>
<tr data-start="1441" data-end="1462">
<td data-start="1441" data-end="1455" data-col-size="sm">Polish Type</td>
<td data-col-size="sm" data-start="1455" data-end="1462">UPC</td>
</tr>
<tr data-start="1463" data-end="1493">
<td data-start="1463" data-end="1480" data-col-size="sm">Insertion Loss</td>
<td data-start="1480" data-end="1493" data-col-size="sm">≤ 0.30 dB</td>
</tr>
<tr data-start="1494" data-end="1519">
<td data-start="1494" data-end="1508" data-col-size="sm">Return Loss</td>
<td data-col-size="sm" data-start="1508" data-end="1519">≥ 35 dB</td>
</tr>
<tr data-start="1520" data-end="1551">
<td data-start="1520" data-end="1534" data-col-size="sm">Wavelengths</td>
<td data-col-size="sm" data-start="1534" data-end="1551">850 / 1300 nm</td>
</tr>
<tr data-start="1552" data-end="1615">
<td data-start="1552" data-end="1575" data-col-size="sm">Supported Data Rates</td>
<td data-start="1575" data-end="1615" data-col-size="sm">10G / 25G / 40G / 100G (short reach)</td>
</tr>
<tr data-start="1616" data-end="1653">
<td data-start="1616" data-end="1629" data-col-size="sm">Durability</td>
<td data-start="1629" data-end="1653" data-col-size="sm">≥ 1000 mating cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1655" data-end="1733">These specs ensure <strong data-start="1674" data-end="1701">reliable signal quality</strong> even in demanding environments.</p>
<hr data-start="1735" data-end="1738" />
<h3 data-start="1740" data-end="1769">Mechanical construction</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1771" data-end="2073">
<thead data-start="1771" data-end="1798">
<tr data-start="1771" data-end="1798">
<th class="" data-start="1771" data-end="1781" data-col-size="sm">Feature</th>
<th class="" data-start="1781" data-end="1798" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1826" data-end="2073">
<tr data-start="1826" data-end="1857">
<td data-start="1826" data-end="1843" data-col-size="sm">Connector Type</td>
<td data-start="1843" data-end="1857" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1858" data-end="1884">
<td data-start="1858" data-end="1875" data-col-size="sm">Cable Diameter</td>
<td data-start="1875" data-end="1884" data-col-size="sm">3.0mm</td>
</tr>
<tr data-start="1885" data-end="1922">
<td data-start="1885" data-end="1895" data-col-size="sm">Ferrule</td>
<td data-start="1895" data-end="1922" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1923" data-end="1964">
<td data-start="1923" data-end="1930" data-col-size="sm">Boot</td>
<td data-start="1930" data-end="1964" data-col-size="sm">Long, reinforced strain relief</td>
</tr>
<tr data-start="1965" data-end="1999">
<td data-start="1965" data-end="1983" data-col-size="sm">Latching System</td>
<td data-start="1983" data-end="1999" data-col-size="sm">LC push-pull</td>
</tr>
<tr data-start="2000" data-end="2042">
<td data-start="2000" data-end="2024" data-col-size="sm">Operating Temperature</td>
<td data-start="2024" data-end="2042" data-col-size="sm">–40°C to +75°C</td>
</tr>
<tr data-start="2043" data-end="2073">
<td data-start="2043" data-end="2062" data-col-size="sm">Tensile Strength</td>
<td data-start="2062" data-end="2073" data-col-size="sm">≥ 120 N</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="2075" data-end="2195">The <strong data-start="2079" data-end="2115">reinforced boot and thick jacket</strong> prevent micro-bending and mechanical stress that can degrade multimode signals.</p>
<hr data-start="2197" data-end="2200" />
<h3 data-start="2202" data-end="2228">Typical applications</h3>
<p data-start="2230" data-end="2282">This LC multimode 3.0mm connector is widely used in:</p>
<ul data-start="2284" data-end="2480">
<li data-start="2284" data-end="2316">
<p data-start="2286" data-end="2316">Data center backbone jumpers</p>
</li>
<li data-start="2317" data-end="2353">
<p data-start="2319" data-end="2353">Switch-to-switch multimode links</p>
</li>
<li data-start="2354" data-end="2392">
<p data-start="2356" data-end="2392">Industrial Ethernet fiber networks</p>
</li>
<li data-start="2393" data-end="2425">
<p data-start="2395" data-end="2425">Equipment cabinets and racks</p>
</li>
<li data-start="2426" data-end="2450">
<p data-start="2428" data-end="2450">Multimode test cords</p>
</li>
<li data-start="2451" data-end="2480">
<p data-start="2453" data-end="2480">Fiber distribution frames</p>
</li>
</ul>
]]></content:encoded>
					
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			<slash:comments>0</slash:comments>
		
		
			</item>
		<item>
		<title>LC UPC 3.0mm Simplex Single-Mode Fiber Connector</title>
		<link>https://www.fenxifiber.com/product/lc-upc-3-0mm-simplex-singlemode/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-3-0mm-simplex-singlemode/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:18:08 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=914</guid>

					<description><![CDATA[<h3 data-start="210" data-end="277">Designed for rugged fiber links and outdoor-ready patch cords</h3>
<p data-start="279" data-end="588">The <strong data-start="283" data-end="329">LC UPC 3.0mm Simplex Single-Mode connector</strong> is built for <strong data-start="343" data-end="433">fiber patch cords that must survive pulling, bending and harsh installation conditions</strong>.<br data-start="434" data-end="437" />With its <strong data-start="446" data-end="496">thick 3.0mm jacket and long strain-relief boot</strong>, it provides <strong data-start="510" data-end="544">superior mechanical protection</strong> compared with standard 2.0mm LC connectors.</p>
<p data-start="590" data-end="768">This makes it ideal for <strong data-start="614" data-end="703">telecom cabinets, FTTH drop cables, outdoor enclosures, and industrial fiber networks</strong>, where cable durability is just as important as optical quality.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="775" data-end="821">Why 3.0mm is used for rugged fiber cords</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="823" data-end="1069">
<thead data-start="823" data-end="872">
<tr data-start="823" data-end="872">
<th class="" data-start="823" data-end="840" data-col-size="sm">Cable Diameter</th>
<th class="" data-start="840" data-end="857" data-col-size="sm">Strength Level</th>
<th class="" data-start="857" data-end="872" data-col-size="sm">Typical Use</th>
</tr>
</thead>
<tbody data-start="922" data-end="1069">
<tr data-start="922" data-end="965">
<td data-start="922" data-end="930" data-col-size="sm">0.9mm</td>
<td data-start="930" data-end="936" data-col-size="sm">Low</td>
<td data-col-size="sm" data-start="936" data-end="965">Pigtails &amp; internal fiber</td>
</tr>
<tr data-start="966" data-end="1005">
<td data-start="966" data-end="974" data-col-size="sm">2.0mm</td>
<td data-start="974" data-end="983" data-col-size="sm">Medium</td>
<td data-start="983" data-end="1005" data-col-size="sm">Indoor patch cords</td>
</tr>
<tr data-start="1006" data-end="1069">
<td data-start="1006" data-end="1018" data-col-size="sm"><strong data-start="1008" data-end="1017">3.0mm</strong></td>
<td data-start="1018" data-end="1029" data-col-size="sm"><strong data-start="1020" data-end="1028">High</strong></td>
<td data-start="1029" data-end="1069" data-col-size="sm"><strong data-start="1031" data-end="1067">Outdoor &amp; industrial patch cords</strong></td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1071" data-end="1161">The <strong data-start="1075" data-end="1091">3.0mm jacket</strong> protects the fiber from <strong data-start="1116" data-end="1160">crushing, vibration and repeated pulling</strong>.</p>
<hr data-start="1163" data-end="1166" />
<h3 data-start="1168" data-end="1193">Optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1195" data-end="1470">
<thead data-start="1195" data-end="1224">
<tr data-start="1195" data-end="1224">
<th class="" data-start="1195" data-end="1207" data-col-size="sm">Parameter</th>
<th class="" data-start="1207" data-end="1224" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1254" data-end="1470">
<tr data-start="1254" data-end="1291">
<td data-start="1254" data-end="1267" data-col-size="sm">Fiber Type</td>
<td data-start="1267" data-end="1291" data-col-size="sm">Single-mode 9/125 µm</td>
</tr>
<tr data-start="1292" data-end="1313">
<td data-start="1292" data-end="1306" data-col-size="sm">Polish Type</td>
<td data-start="1306" data-end="1313" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1314" data-end="1344">
<td data-start="1314" data-end="1331" data-col-size="sm">Insertion Loss</td>
<td data-start="1331" data-end="1344" data-col-size="sm">≤ 0.30 dB</td>
</tr>
<tr data-start="1345" data-end="1370">
<td data-start="1345" data-end="1359" data-col-size="sm">Return Loss</td>
<td data-start="1359" data-end="1370" data-col-size="sm">≥ 50 dB</td>
</tr>
<tr data-start="1371" data-end="1403">
<td data-start="1371" data-end="1385" data-col-size="sm">Wavelengths</td>
<td data-start="1385" data-end="1403" data-col-size="sm">1310 / 1550 nm</td>
</tr>
<tr data-start="1404" data-end="1432">
<td data-start="1404" data-end="1420" data-col-size="sm">Repeatability</td>
<td data-start="1420" data-end="1432" data-col-size="sm">≤ 0.1 dB</td>
</tr>
<tr data-start="1433" data-end="1470">
<td data-start="1433" data-end="1446" data-col-size="sm">Durability</td>
<td data-start="1446" data-end="1470" data-col-size="sm">≥ 1000 mating cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1472" data-end="1552">This ensures <strong data-start="1485" data-end="1510">stable signal quality</strong> for <strong data-start="1515" data-end="1551">FTTH, telecom and backbone links</strong>.</p>
<hr data-start="1554" data-end="1557" />
<h3 data-start="1559" data-end="1582">Mechanical design</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1584" data-end="1886">
<thead data-start="1584" data-end="1611">
<tr data-start="1584" data-end="1611">
<th class="" data-start="1584" data-end="1594" data-col-size="sm">Feature</th>
<th class="" data-start="1594" data-end="1611" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1639" data-end="1886">
<tr data-start="1639" data-end="1670">
<td data-start="1639" data-end="1656" data-col-size="sm">Connector Type</td>
<td data-start="1656" data-end="1670" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1671" data-end="1697">
<td data-start="1671" data-end="1688" data-col-size="sm">Cable Diameter</td>
<td data-col-size="sm" data-start="1688" data-end="1697">3.0mm</td>
</tr>
<tr data-start="1698" data-end="1735">
<td data-start="1698" data-end="1708" data-col-size="sm">Ferrule</td>
<td data-start="1708" data-end="1735" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1736" data-end="1777">
<td data-start="1736" data-end="1743" data-col-size="sm">Boot</td>
<td data-start="1743" data-end="1777" data-col-size="sm">Long, reinforced strain relief</td>
</tr>
<tr data-start="1778" data-end="1812">
<td data-start="1778" data-end="1796" data-col-size="sm">Latching System</td>
<td data-col-size="sm" data-start="1796" data-end="1812">LC push-pull</td>
</tr>
<tr data-start="1813" data-end="1855">
<td data-start="1813" data-end="1837" data-col-size="sm">Operating Temperature</td>
<td data-col-size="sm" data-start="1837" data-end="1855">–40°C to +75°C</td>
</tr>
<tr data-start="1856" data-end="1886">
<td data-start="1856" data-end="1875" data-col-size="sm">Tensile Strength</td>
<td data-col-size="sm" data-start="1875" data-end="1886">≥ 120 N</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1888" data-end="1983">The <strong data-start="1892" data-end="1922">long boot and thick jacket</strong> absorb stress and protect the fiber core from micro-bending.</p>
<hr data-start="1985" data-end="1988" />
<h3 data-start="1990" data-end="2016">Typical applications</h3>
<p data-start="2018" data-end="2060">This LC 3.0mm connector is widely used in:</p>
<ul data-start="2062" data-end="2247">
<li data-start="2062" data-end="2087">
<p data-start="2064" data-end="2087">FTTH drop patch cords</p>
</li>
<li data-start="2088" data-end="2116">
<p data-start="2090" data-end="2116">Outdoor fiber enclosures</p>
</li>
<li data-start="2117" data-end="2142">
<p data-start="2119" data-end="2142">Telecom base stations</p>
</li>
<li data-start="2143" data-end="2178">
<p data-start="2145" data-end="2178">Industrial Ethernet fiber links</p>
</li>
<li data-start="2179" data-end="2210">
<p data-start="2181" data-end="2210">Fiber distribution cabinets</p>
</li>
<li data-start="2211" data-end="2247">
<p data-start="2213" data-end="2247">Field test and maintenance cords</p>
</li>
</ul>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 2.0mm Simplex Multimode Fiber Connector</title>
		<link>https://www.fenxifiber.com/product/lc-upc-2-0mm-simplex-multimode/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-2-0mm-simplex-multimode/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:16:46 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=912</guid>

					<description><![CDATA[<h3 data-start="236" data-end="299">A reliable connector for high-speed multimode patch cords</h3>
<p data-start="301" data-end="640">The <strong data-start="305" data-end="349">LC UPC 2.0mm Simplex Multimode connector</strong> is designed for <strong data-start="366" data-end="397">multimode fiber patch cords</strong> used in <strong data-start="406" data-end="464">data centers, enterprise networks, and equipment rooms</strong>.<br data-start="465" data-end="468" />It combines the <strong data-start="484" data-end="510">compact LC form factor</strong> with a <strong data-start="518" data-end="542">durable 2.0mm jacket</strong>, providing both <strong data-start="559" data-end="605">optical precision and mechanical stability</strong> for daily plug-and-play operation.</p>
<p data-start="642" data-end="779">This connector is widely used to build <strong data-start="681" data-end="725">LC-LC, LC-SC and LC-FC multimode jumpers</strong> for <strong data-start="730" data-end="778">10G, 25G and short-reach 100G Ethernet links</strong>.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="786" data-end="839">Why 2.0mm is the standard for multimode jumpers</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="841" data-end="1021">
<thead data-start="841" data-end="877">
<tr data-start="841" data-end="877">
<th class="" data-start="841" data-end="854" data-col-size="sm">Cable Size</th>
<th class="" data-start="854" data-end="877" data-col-size="sm">Typical Application</th>
</tr>
</thead>
<tbody data-start="913" data-end="1021">
<tr data-start="913" data-end="943">
<td data-start="913" data-end="921" data-col-size="sm">0.9mm</td>
<td data-start="921" data-end="943" data-col-size="sm">Multimode pigtails</td>
</tr>
<tr data-start="944" data-end="985">
<td data-start="944" data-end="956" data-col-size="sm"><strong data-start="946" data-end="955">2.0mm</strong></td>
<td data-start="956" data-end="985" data-col-size="sm"><strong data-start="958" data-end="983">Multimode patch cords</strong></td>
</tr>
<tr data-start="986" data-end="1021">
<td data-start="986" data-end="994" data-col-size="sm">3.0mm</td>
<td data-col-size="sm" data-start="994" data-end="1021">Rugged or outdoor cords</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1023" data-end="1187">The <strong data-start="1027" data-end="1042">2.0mm cable</strong> provides the ideal balance between <strong data-start="1078" data-end="1114">flexibility and tensile strength</strong>, making it perfect for <strong data-start="1138" data-end="1186">rack-to-rack and device-to-panel connections</strong>.</p>
<hr data-start="1189" data-end="1192" />
<h3 data-start="1194" data-end="1229">Multimode optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1231" data-end="1570">
<thead data-start="1231" data-end="1260">
<tr data-start="1231" data-end="1260">
<th class="" data-start="1231" data-end="1243" data-col-size="sm">Parameter</th>
<th class="" data-start="1243" data-end="1260" data-col-size="md">Typical Value</th>
</tr>
</thead>
<tbody data-start="1290" data-end="1570">
<tr data-start="1290" data-end="1350">
<td data-start="1290" data-end="1303" data-col-size="sm">Fiber Type</td>
<td data-start="1303" data-end="1350" data-col-size="md">Multimode 50/125 µm (OM2 / OM3 / OM4 / OM5)</td>
</tr>
<tr data-start="1351" data-end="1372">
<td data-start="1351" data-end="1365" data-col-size="sm">Polish Type</td>
<td data-start="1365" data-end="1372" data-col-size="md">UPC</td>
</tr>
<tr data-start="1373" data-end="1403">
<td data-start="1373" data-end="1390" data-col-size="sm">Insertion Loss</td>
<td data-start="1390" data-end="1403" data-col-size="md">≤ 0.30 dB</td>
</tr>
<tr data-start="1404" data-end="1429">
<td data-start="1404" data-end="1418" data-col-size="sm">Return Loss</td>
<td data-start="1418" data-end="1429" data-col-size="md">≥ 35 dB</td>
</tr>
<tr data-start="1430" data-end="1474">
<td data-start="1430" data-end="1454" data-col-size="sm">Operating Wavelengths</td>
<td data-start="1454" data-end="1474" data-col-size="md">850 nm / 1300 nm</td>
</tr>
<tr data-start="1475" data-end="1538">
<td data-start="1475" data-end="1498" data-col-size="sm">Supported Data Rates</td>
<td data-start="1498" data-end="1538" data-col-size="md">10G / 25G / 40G / 100G (short reach)</td>
</tr>
<tr data-start="1539" data-end="1570">
<td data-start="1539" data-end="1553" data-col-size="sm">Mating Life</td>
<td data-start="1553" data-end="1570" data-col-size="md">≥ 1000 cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1572" data-end="1668">These specifications ensure <strong data-start="1600" data-end="1633">stable, low-loss transmission</strong> for high-speed multimode networks.</p>
<hr data-start="1670" data-end="1673" />
<h3 data-start="1675" data-end="1708">Connector &amp; cable structure</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1710" data-end="2009">
<thead data-start="1710" data-end="1737">
<tr data-start="1710" data-end="1737">
<th class="" data-start="1710" data-end="1720" data-col-size="sm">Feature</th>
<th class="" data-start="1720" data-end="1737" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1765" data-end="2009">
<tr data-start="1765" data-end="1796">
<td data-start="1765" data-end="1782" data-col-size="sm">Connector Type</td>
<td data-col-size="sm" data-start="1782" data-end="1796">LC Simplex</td>
</tr>
<tr data-start="1797" data-end="1823">
<td data-start="1797" data-end="1814" data-col-size="sm">Cable Diameter</td>
<td data-col-size="sm" data-start="1814" data-end="1823">2.0mm</td>
</tr>
<tr data-start="1824" data-end="1861">
<td data-start="1824" data-end="1834" data-col-size="sm">Ferrule</td>
<td data-start="1834" data-end="1861" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1862" data-end="1900">
<td data-start="1862" data-end="1869" data-col-size="sm">Boot</td>
<td data-start="1869" data-end="1900" data-col-size="sm">Standard strain-relief boot</td>
</tr>
<tr data-start="1901" data-end="1935">
<td data-start="1901" data-end="1919" data-col-size="sm">Latching System</td>
<td data-start="1919" data-end="1935" data-col-size="sm">LC push-pull</td>
</tr>
<tr data-start="1936" data-end="1978">
<td data-start="1936" data-end="1960" data-col-size="sm">Operating Temperature</td>
<td data-start="1960" data-end="1978" data-col-size="sm">–40°C to +75°C</td>
</tr>
<tr data-start="1979" data-end="2009">
<td data-start="1979" data-end="1998" data-col-size="sm">Tensile Strength</td>
<td data-col-size="sm" data-start="1998" data-end="2009">≥ 100 N</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="2011" data-end="2115">The <strong data-start="2015" data-end="2045">reinforced jacket and boot</strong> protect the fiber from <strong data-start="2069" data-end="2114">bending and pulling during daily patching</strong>.</p>
<hr data-start="2117" data-end="2120" />
<h3 data-start="2122" data-end="2148">Typical applications</h3>
<p data-start="2150" data-end="2198">This LC multimode connector is commonly used in:</p>
<ul data-start="2200" data-end="2402">
<li data-start="2200" data-end="2227">
<p data-start="2202" data-end="2227">Data center patch cords</p>
</li>
<li data-start="2228" data-end="2275">
<p data-start="2230" data-end="2275">Switch-to-switch and switch-to-server links</p>
</li>
<li data-start="2276" data-end="2309">
<p data-start="2278" data-end="2309">Enterprise LAN &amp; SAN networks</p>
</li>
<li data-start="2310" data-end="2345">
<p data-start="2312" data-end="2345">Optical transceiver connections</p>
</li>
<li data-start="2346" data-end="2372">
<p data-start="2348" data-end="2372">Multimode test jumpers</p>
</li>
<li data-start="2373" data-end="2402">
<p data-start="2375" data-end="2402">Fiber distribution frames</p>
</li>
</ul>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 2.0mm Simplex Connector with Short Boot</title>
		<link>https://www.fenxifiber.com/product/lc-upc-2-0mm-simplex-with-short-boot/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-2-0mm-simplex-with-short-boot/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:15:23 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=910</guid>

					<description><![CDATA[<h3 data-start="216" data-end="277">Designed for tight spaces and high-density fiber panels</h3>
<p data-start="279" data-end="647">The <strong data-start="283" data-end="333">LC UPC 2.0mm Simplex connector with short boot</strong> is engineered for <strong data-start="352" data-end="435">fiber environments where space is limited but performance cannot be compromised</strong>.<br data-start="436" data-end="439" />By replacing the standard long strain-relief boot with a <strong data-start="496" data-end="518">compact short boot</strong>, this connector allows <strong data-start="542" data-end="584">easier routing and higher port density</strong> in <strong data-start="588" data-end="646">ODF racks, patch panels, switches, and optical modules</strong>.</p>
<p data-start="649" data-end="818">It maintains the same <strong data-start="671" data-end="721">optical performance and mechanical reliability</strong> as a standard LC UPC connector, while offering <strong data-start="769" data-end="817">better clearance behind adapters and modules</strong>.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="825" data-end="866">Why short-boot LC connectors matter</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="868" data-end="1100">
<thead data-start="868" data-end="907">
<tr data-start="868" data-end="907">
<th class="" data-start="868" data-end="880" data-col-size="sm">Boot Type</th>
<th class="" data-start="880" data-end="892" data-col-size="sm">Advantage</th>
<th class="" data-start="892" data-end="907" data-col-size="sm">Typical Use</th>
</tr>
</thead>
<tbody data-start="948" data-end="1100">
<tr data-start="948" data-end="1012">
<td data-start="948" data-end="964" data-col-size="sm">Standard boot</td>
<td data-start="964" data-end="989" data-col-size="sm">Better pull protection</td>
<td data-col-size="sm" data-start="989" data-end="1012">General patch cords</td>
</tr>
<tr data-start="1013" data-end="1100">
<td data-start="1013" data-end="1030" data-col-size="sm"><strong data-start="1015" data-end="1029">Short boot</strong></td>
<td data-start="1030" data-end="1064" data-col-size="sm"><strong data-start="1032" data-end="1063">Saves space, easier routing</strong></td>
<td data-col-size="sm" data-start="1064" data-end="1100"><strong data-start="1066" data-end="1098">High-density racks &amp; modules</strong></td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1102" data-end="1234">Short-boot designs are widely used in <strong data-start="1140" data-end="1177">data centers and telecom cabinets</strong> where hundreds of fibers are terminated in a small area.</p>
<hr data-start="1236" data-end="1239" />
<h3 data-start="1241" data-end="1269">Optical specifications</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1271" data-end="1517">
<thead data-start="1271" data-end="1300">
<tr data-start="1271" data-end="1300">
<th class="" data-start="1271" data-end="1283" data-col-size="sm">Parameter</th>
<th class="" data-start="1283" data-end="1300" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1330" data-end="1517">
<tr data-start="1330" data-end="1367">
<td data-start="1330" data-end="1343" data-col-size="sm">Fiber Type</td>
<td data-start="1343" data-end="1367" data-col-size="sm">Single-mode 9/125 µm</td>
</tr>
<tr data-start="1368" data-end="1389">
<td data-start="1368" data-end="1382" data-col-size="sm">Polish Type</td>
<td data-start="1382" data-end="1389" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1390" data-end="1420">
<td data-start="1390" data-end="1407" data-col-size="sm">Insertion Loss</td>
<td data-col-size="sm" data-start="1407" data-end="1420">≤ 0.30 dB</td>
</tr>
<tr data-start="1421" data-end="1446">
<td data-start="1421" data-end="1435" data-col-size="sm">Return Loss</td>
<td data-col-size="sm" data-start="1435" data-end="1446">≥ 50 dB</td>
</tr>
<tr data-start="1447" data-end="1479">
<td data-start="1447" data-end="1461" data-col-size="sm">Wavelengths</td>
<td data-start="1461" data-end="1479" data-col-size="sm">1310 / 1550 nm</td>
</tr>
<tr data-start="1480" data-end="1517">
<td data-start="1480" data-end="1493" data-col-size="sm">Durability</td>
<td data-start="1493" data-end="1517" data-col-size="sm">≥ 1000 mating cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1519" data-end="1611">These values ensure <strong data-start="1539" data-end="1569">stable signal transmission</strong> for <strong data-start="1574" data-end="1610">FTTH, telecom, and data networks</strong>.</p>
<hr data-start="1613" data-end="1616" />
<h3 data-start="1618" data-end="1641">Mechanical design</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1643" data-end="1947">
<thead data-start="1643" data-end="1670">
<tr data-start="1643" data-end="1670">
<th class="" data-start="1643" data-end="1653" data-col-size="sm">Feature</th>
<th class="" data-start="1653" data-end="1670" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1698" data-end="1947">
<tr data-start="1698" data-end="1729">
<td data-start="1698" data-end="1715" data-col-size="sm">Connector Type</td>
<td data-start="1715" data-end="1729" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1730" data-end="1756">
<td data-start="1730" data-end="1747" data-col-size="sm">Cable Diameter</td>
<td data-start="1747" data-end="1756" data-col-size="sm">2.0mm</td>
</tr>
<tr data-start="1757" data-end="1794">
<td data-start="1757" data-end="1767" data-col-size="sm">Ferrule</td>
<td data-start="1767" data-end="1794" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1795" data-end="1838">
<td data-start="1795" data-end="1802" data-col-size="sm">Boot</td>
<td data-start="1802" data-end="1838" data-col-size="sm">Short, low-profile strain relief</td>
</tr>
<tr data-start="1839" data-end="1873">
<td data-start="1839" data-end="1857" data-col-size="sm">Latching System</td>
<td data-start="1857" data-end="1873" data-col-size="sm">LC push-pull</td>
</tr>
<tr data-start="1874" data-end="1916">
<td data-start="1874" data-end="1898" data-col-size="sm">Operating Temperature</td>
<td data-start="1898" data-end="1916" data-col-size="sm">–40°C to +75°C</td>
</tr>
<tr data-start="1917" data-end="1947">
<td data-start="1917" data-end="1936" data-col-size="sm">Tensile Strength</td>
<td data-start="1936" data-end="1947" data-col-size="sm">≥ 100 N</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1949" data-end="2058">The <strong data-start="1953" data-end="1967">short boot</strong> allows the connector to fit comfortably in <strong data-start="2011" data-end="2057">crowded patch panels and transceiver cages</strong>.</p>
<hr data-start="2060" data-end="2063" />
<h3 data-start="2065" data-end="2091">Typical applications</h3>
<p data-start="2093" data-end="2121">This connector is ideal for:</p>
<ul data-start="2123" data-end="2315">
<li data-start="2123" data-end="2152">
<p data-start="2125" data-end="2152">High-density patch panels</p>
</li>
<li data-start="2153" data-end="2183">
<p data-start="2155" data-end="2183">Data center LC patch cords</p>
</li>
<li data-start="2184" data-end="2212">
<p data-start="2186" data-end="2212">FTTH distribution frames</p>
</li>
<li data-start="2213" data-end="2245">
<p data-start="2215" data-end="2245">Network switches and routers</p>
</li>
<li data-start="2246" data-end="2281">
<p data-start="2248" data-end="2281">Optical transceiver connections</p>
</li>
<li data-start="2282" data-end="2315">
<p data-start="2284" data-end="2315">Test and monitoring equipment</p>
</li>
</ul>
<hr data-start="2317" data-end="2320" />
<h2 data-start="2322" data-end="2343">Professional Q&amp;A</h2>
<p data-start="2345" data-end="2513"><strong data-start="2345" data-end="2393">Q1: Does a short boot reduce cable strength?</strong><br data-start="2393" data-end="2396" />No. The short boot still provides <strong data-start="2430" data-end="2456">adequate strain relief</strong> for indoor patch cords while improving space efficiency.</p>
<hr data-start="2515" data-end="2518" />
<p data-start="2520" data-end="2649"><strong data-start="2520" data-end="2569">Q2: Can this be used in standard LC adapters?</strong><br data-start="2569" data-end="2572" />Yes. It is <strong data-start="2583" data-end="2603">fully compatible</strong> with all standard LC UPC adapters and panels.</p>
<hr data-start="2651" data-end="2654" />
<p data-start="2656" data-end="2838"><strong data-start="2656" data-end="2711">Q3: When should I choose a short-boot LC connector?</strong><br data-start="2711" data-end="2714" />When you are working with <strong data-start="2740" data-end="2792">crowded racks, fiber shelves, or compact devices</strong> where standard boots are difficult to manage.</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 2.0mm Simplex Single-Mode Connector</title>
		<link>https://www.fenxifiber.com/product/lc-upc-2-0mm-simplex-singlemode/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-2-0mm-simplex-singlemode/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:14:21 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=908</guid>

					<description><![CDATA[<h3 data-start="233" data-end="289">Designed for patch cords and distribution networks</h3>
<p data-start="291" data-end="490">The <strong data-start="295" data-end="341">LC UPC 2.0mm Simplex Single-Mode connector</strong> is built for <strong data-start="355" data-end="414">ready-to-use patch cords and access network fiber links</strong>, where <strong data-start="422" data-end="467">mechanical strength and optical stability</strong> are equally important.</p>
<p data-start="492" data-end="710">Unlike 0.9mm pigtail connectors that are spliced inside equipment, the <strong data-start="563" data-end="594">2.0mm jacketed LC connector</strong> is designed to be <strong data-start="613" data-end="658">handled, plugged and unplugged repeatedly</strong> in <strong data-start="662" data-end="709">ODF panels, wall outlets, switches and ONTs</strong>.</p>
<p data-start="712" data-end="865">With its <strong data-start="721" data-end="746">UPC polished end face</strong>, it delivers <strong data-start="760" data-end="812">low insertion loss and clean signal transmission</strong> for <strong data-start="817" data-end="864">telecom, FTTH and data network applications</strong>.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="872" data-end="922">Why 2.0mm is the standard for LC patch cords</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="924" data-end="1108">
<thead data-start="924" data-end="957">
<tr data-start="924" data-end="957">
<th class="" data-start="924" data-end="941" data-col-size="sm">Cable Diameter</th>
<th class="" data-start="941" data-end="957" data-col-size="sm">Typical Role</th>
</tr>
</thead>
<tbody data-start="992" data-end="1108">
<tr data-start="992" data-end="1028">
<td data-start="992" data-end="1000" data-col-size="sm">0.9mm</td>
<td data-start="1000" data-end="1028" data-col-size="sm">Pigtails, internal fiber</td>
</tr>
<tr data-start="1029" data-end="1073">
<td data-start="1029" data-end="1041" data-col-size="sm"><strong data-start="1031" data-end="1040">2.0mm</strong></td>
<td data-col-size="sm" data-start="1041" data-end="1073"><strong data-start="1043" data-end="1071">LC patch cords &amp; jumpers</strong></td>
</tr>
<tr data-start="1074" data-end="1108">
<td data-start="1074" data-end="1082" data-col-size="sm">3.0mm</td>
<td data-col-size="sm" data-start="1082" data-end="1108">Outdoor &amp; rugged cords</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1110" data-end="1241">The <strong data-start="1114" data-end="1129">2.0mm cable</strong> offers the best balance between <strong data-start="1162" data-end="1198">flexibility and tensile strength</strong>, making it ideal for indoor fiber routing.</p>
<hr data-start="1243" data-end="1246" />
<h3 data-start="1248" data-end="1273">Optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1275" data-end="1550">
<thead data-start="1275" data-end="1304">
<tr data-start="1275" data-end="1304">
<th class="" data-start="1275" data-end="1287" data-col-size="sm">Parameter</th>
<th class="" data-start="1287" data-end="1304" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1334" data-end="1550">
<tr data-start="1334" data-end="1371">
<td data-start="1334" data-end="1347" data-col-size="sm">Fiber Type</td>
<td data-start="1347" data-end="1371" data-col-size="sm">Single-mode 9/125 µm</td>
</tr>
<tr data-start="1372" data-end="1393">
<td data-start="1372" data-end="1386" data-col-size="sm">Polish Type</td>
<td data-start="1386" data-end="1393" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1394" data-end="1424">
<td data-start="1394" data-end="1411" data-col-size="sm">Insertion Loss</td>
<td data-start="1411" data-end="1424" data-col-size="sm">≤ 0.30 dB</td>
</tr>
<tr data-start="1425" data-end="1450">
<td data-start="1425" data-end="1439" data-col-size="sm">Return Loss</td>
<td data-start="1439" data-end="1450" data-col-size="sm">≥ 50 dB</td>
</tr>
<tr data-start="1451" data-end="1483">
<td data-start="1451" data-end="1465" data-col-size="sm">Wavelengths</td>
<td data-start="1465" data-end="1483" data-col-size="sm">1310 / 1550 nm</td>
</tr>
<tr data-start="1484" data-end="1512">
<td data-start="1484" data-end="1500" data-col-size="sm">Repeatability</td>
<td data-start="1500" data-end="1512" data-col-size="sm">≤ 0.1 dB</td>
</tr>
<tr data-start="1513" data-end="1550">
<td data-start="1513" data-end="1533" data-col-size="sm">Mating Durability</td>
<td data-start="1533" data-end="1550" data-col-size="sm">≥ 1000 cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1552" data-end="1633">This performance supports <strong data-start="1578" data-end="1632">FTTH, telecom backbone and data transmission links</strong>.</p>
<hr data-start="1635" data-end="1638" />
<h3 data-start="1640" data-end="1666">Mechanical structure</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1668" data-end="1967">
<thead data-start="1668" data-end="1695">
<tr data-start="1668" data-end="1695">
<th class="" data-start="1668" data-end="1678" data-col-size="sm">Feature</th>
<th class="" data-start="1678" data-end="1695" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1723" data-end="1967">
<tr data-start="1723" data-end="1754">
<td data-start="1723" data-end="1740" data-col-size="sm">Connector Type</td>
<td data-col-size="sm" data-start="1740" data-end="1754">LC Simplex</td>
</tr>
<tr data-start="1755" data-end="1781">
<td data-start="1755" data-end="1772" data-col-size="sm">Cable Diameter</td>
<td data-col-size="sm" data-start="1772" data-end="1781">2.0mm</td>
</tr>
<tr data-start="1782" data-end="1819">
<td data-start="1782" data-end="1792" data-col-size="sm">Ferrule</td>
<td data-col-size="sm" data-start="1792" data-end="1819">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1820" data-end="1858">
<td data-start="1820" data-end="1827" data-col-size="sm">Boot</td>
<td data-start="1827" data-end="1858" data-col-size="sm">Standard strain-relief boot</td>
</tr>
<tr data-start="1859" data-end="1893">
<td data-start="1859" data-end="1877" data-col-size="sm">Latching System</td>
<td data-col-size="sm" data-start="1877" data-end="1893">LC push-pull</td>
</tr>
<tr data-start="1894" data-end="1936">
<td data-start="1894" data-end="1918" data-col-size="sm">Operating Temperature</td>
<td data-start="1918" data-end="1936" data-col-size="sm">–40°C to +75°C</td>
</tr>
<tr data-start="1937" data-end="1967">
<td data-start="1937" data-end="1956" data-col-size="sm">Tensile Strength</td>
<td data-start="1956" data-end="1967" data-col-size="sm">≥ 100 N</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1969" data-end="2074">The <strong data-start="1973" data-end="2003">reinforced boot and jacket</strong> protect the fiber from <strong data-start="2027" data-end="2073">bending and pulling during daily operation</strong>.</p>
<hr data-start="2076" data-end="2079" />
<h3 data-start="2081" data-end="2107">Typical applications</h3>
<p data-start="2109" data-end="2155">This LC UPC 2.0mm connector is widely used in:</p>
<ul data-start="2157" data-end="2360">
<li data-start="2157" data-end="2188">
<p data-start="2159" data-end="2188">LC-LC and LC-SC patch cords</p>
</li>
<li data-start="2189" data-end="2216">
<p data-start="2191" data-end="2216">FTTH indoor fiber links</p>
</li>
<li data-start="2217" data-end="2254">
<p data-start="2219" data-end="2254">Optical distribution frames (ODF)</p>
</li>
<li data-start="2255" data-end="2287">
<p data-start="2257" data-end="2287">Network switches and routers</p>
</li>
<li data-start="2288" data-end="2327">
<p data-start="2290" data-end="2327">Data center single-mode connections</p>
</li>
<li data-start="2328" data-end="2360">
<p data-start="2330" data-end="2360">Test and measurement jumpers</p>
</li>
</ul>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 0.9mm Simplex Multimode Fiber Connector</title>
		<link>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:13:11 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=906</guid>

					<description><![CDATA[<h3 data-start="232" data-end="289">A compact solution for multimode pigtail assemblies</h3>
<p data-start="291" data-end="592">The <strong data-start="295" data-end="339">LC UPC 0.9mm Simplex Multimode connector</strong> is designed for <strong data-start="356" data-end="444">high-density fiber termination in data centers, telecom rooms, and optical equipment</strong>.<br data-start="445" data-end="448" />It is widely used for <strong data-start="470" data-end="518">multimode pigtails and internal fiber wiring</strong>, where space, stability, and repeatable optical performance are critical.</p>
<p data-start="594" data-end="777">With its <strong data-start="603" data-end="655">1.25mm ceramic ferrule and UPC polished end face</strong>, this connector ensures <strong data-start="680" data-end="746">consistent low insertion loss and reliable signal transmission</strong> for modern multimode networks.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="784" data-end="827">Optimized for multimode fiber systems</h3>
<p data-start="829" data-end="947">Multimode fiber is the standard choice for <strong data-start="872" data-end="913">short-reach, high-speed optical links</strong> in enterprise and cloud networks.</p>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="949" data-end="1148">
<thead data-start="949" data-end="1004">
<tr data-start="949" data-end="1004">
<th class="" data-start="949" data-end="962" data-col-size="sm">Fiber Type</th>
<th class="" data-start="962" data-end="983" data-col-size="sm">Typical Wavelength</th>
<th class="" data-start="983" data-end="1004" data-col-size="md">Main Applications</th>
</tr>
</thead>
<tbody data-start="1058" data-end="1148">
<tr data-start="1058" data-end="1148">
<td data-start="1058" data-end="1081" data-col-size="sm">Multimode (50/125µm)</td>
<td data-col-size="sm" data-start="1081" data-end="1100">850 nm / 1300 nm</td>
<td data-col-size="md" data-start="1100" data-end="1148">Data centers, LAN, SAN, enterprise backbones</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1150" data-end="1225">The LC UPC 0.9mm connector supports <strong data-start="1186" data-end="1224">OM2, OM3, OM4 and OM5 fiber grades</strong>.</p>
<hr data-start="1227" data-end="1230" />
<h3 data-start="1232" data-end="1260">Optical specifications</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1262" data-end="1560">
<thead data-start="1262" data-end="1291">
<tr data-start="1262" data-end="1291">
<th class="" data-start="1262" data-end="1274" data-col-size="sm">Parameter</th>
<th class="" data-start="1274" data-end="1291" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1321" data-end="1560">
<tr data-start="1321" data-end="1372">
<td data-start="1321" data-end="1334" data-col-size="sm">Fiber Type</td>
<td data-start="1334" data-end="1372" data-col-size="sm">Multimode 50/125 µm or 62.5/125 µm</td>
</tr>
<tr data-start="1373" data-end="1394">
<td data-start="1373" data-end="1387" data-col-size="sm">Polish Type</td>
<td data-start="1387" data-end="1394" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1395" data-end="1425">
<td data-start="1395" data-end="1412" data-col-size="sm">Insertion Loss</td>
<td data-start="1412" data-end="1425" data-col-size="sm">≤ 0.30 dB</td>
</tr>
<tr data-start="1426" data-end="1451">
<td data-start="1426" data-end="1440" data-col-size="sm">Return Loss</td>
<td data-start="1440" data-end="1451" data-col-size="sm">≥ 35 dB</td>
</tr>
<tr data-start="1452" data-end="1493">
<td data-start="1452" data-end="1476" data-col-size="sm">Operating Wavelengths</td>
<td data-col-size="sm" data-start="1476" data-end="1493">850 / 1300 nm</td>
</tr>
<tr data-start="1494" data-end="1522">
<td data-start="1494" data-end="1510" data-col-size="sm">Repeatability</td>
<td data-col-size="sm" data-start="1510" data-end="1522">≤ 0.1 dB</td>
</tr>
<tr data-start="1523" data-end="1560">
<td data-start="1523" data-end="1543" data-col-size="sm">Mating Durability</td>
<td data-col-size="sm" data-start="1543" data-end="1560">≥ 1000 cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1562" data-end="1654">These values meet the requirements for <strong data-start="1601" data-end="1653">10G, 25G, 40G and short-reach 100G optical links</strong>.</p>
<hr data-start="1656" data-end="1659" />
<h3 data-start="1661" data-end="1684">Mechanical design</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1686" data-end="1937">
<thead data-start="1686" data-end="1713">
<tr data-start="1686" data-end="1713">
<th class="" data-start="1686" data-end="1696" data-col-size="sm">Feature</th>
<th class="" data-start="1696" data-end="1713" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1741" data-end="1937">
<tr data-start="1741" data-end="1772">
<td data-start="1741" data-end="1758" data-col-size="sm">Connector Type</td>
<td data-start="1758" data-end="1772" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1773" data-end="1799">
<td data-start="1773" data-end="1790" data-col-size="sm">Cable Diameter</td>
<td data-start="1790" data-end="1799" data-col-size="sm">0.9mm</td>
</tr>
<tr data-start="1800" data-end="1837">
<td data-start="1800" data-end="1810" data-col-size="sm">Ferrule</td>
<td data-start="1810" data-end="1837" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1838" data-end="1862">
<td data-start="1838" data-end="1846" data-col-size="sm">Latch</td>
<td data-start="1846" data-end="1862" data-col-size="sm">LC push-pull</td>
</tr>
<tr data-start="1863" data-end="1894">
<td data-start="1863" data-end="1870" data-col-size="sm">Boot</td>
<td data-start="1870" data-end="1894" data-col-size="sm">Compact pigtail boot</td>
</tr>
<tr data-start="1895" data-end="1937">
<td data-start="1895" data-end="1919" data-col-size="sm">Operating Temperature</td>
<td data-start="1919" data-end="1937" data-col-size="sm">–40°C to +75°C</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1939" data-end="2072">The <strong data-start="1943" data-end="1964">slim 0.9mm jacket</strong> makes this connector ideal for <strong data-start="1996" data-end="2039">fusion splicing and tight cable routing</strong> inside splice trays and modules.</p>
<hr data-start="2074" data-end="2077" />
<h3 data-start="2079" data-end="2105">Typical applications</h3>
<p data-start="2107" data-end="2142">This connector is commonly used in:</p>
<ul data-start="2144" data-end="2324">
<li data-start="2144" data-end="2172">
<p data-start="2146" data-end="2172">Multimode fiber pigtails</p>
</li>
<li data-start="2173" data-end="2201">
<p data-start="2175" data-end="2201">Data center patch panels</p>
</li>
<li data-start="2202" data-end="2233">
<p data-start="2204" data-end="2233">Optical transceiver modules</p>
</li>
<li data-start="2234" data-end="2267">
<p data-start="2236" data-end="2267">Enterprise LAN &amp; SAN networks</p>
</li>
<li data-start="2268" data-end="2297">
<p data-start="2270" data-end="2297">Fiber distribution frames</p>
</li>
<li data-start="2298" data-end="2324">
<p data-start="2300" data-end="2324">Optical testing cables</p>
</li>
</ul>
<hr data-start="2326" data-end="2329" />
<h2 data-start="2331" data-end="2352">Professional Q&amp;A</h2>
<p data-start="2354" data-end="2534"><strong data-start="2354" data-end="2416">Q1: Is this connector suitable for OM3, OM4 and OM5 fiber?</strong><br data-start="2416" data-end="2419" />Yes. The LC UPC 0.9mm multimode connector works with <strong data-start="2472" data-end="2505">all standard multimode grades</strong>, including OM3, OM4 and OM5.</p>
<hr data-start="2536" data-end="2539" />
<p data-start="2541" data-end="2719"><strong data-start="2541" data-end="2584">Q2: Can it be used to make patch cords?</strong><br data-start="2584" data-end="2587" />No. This connector is designed for <strong data-start="2622" data-end="2640">0.9mm pigtails</strong> and must be <strong data-start="2653" data-end="2697">fusion-spliced to a 2.0mm or 3.0mm cable</strong> to form a patch cord.</p>
<hr data-start="2721" data-end="2724" />
<p data-start="2726" data-end="2909"><strong data-start="2726" data-end="2787">Q3: What is the advantage of UPC polishing for multimode?</strong><br data-start="2787" data-end="2790" />UPC provides <strong data-start="2803" data-end="2844">low insertion loss and stable contact</strong>, which is ideal for <strong data-start="2865" data-end="2908">short-reach, high-speed multimode links</strong>.</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 0.9mm Simplex Multimode Connector (Aqua Green)</title>
		<link>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode-aqua-green/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode-aqua-green/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:12:00 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=904</guid>

					<description><![CDATA[<h3 data-start="206" data-end="262">Designed for OM3 enterprise &#38; data center networks</h3>
<p data-start="264" data-end="500">The <strong data-start="268" data-end="325">LC UPC 0.9mm Simplex Multimode connector (Aqua Green)</strong> is built for <strong data-start="339" data-end="370">OM3 multimode fiber systems</strong>, which remain one of the most widely deployed fiber types in <strong data-start="432" data-end="499">enterprise networks, cloud data centers, and building backbones</strong>.</p>
<p data-start="502" data-end="695">The <strong data-start="506" data-end="526">aqua green color</strong> is the global standard for <strong data-start="554" data-end="567">OM3 fiber</strong>, allowing technicians to quickly identify <strong data-start="610" data-end="643">10G, 40G and 100G-ready links</strong> during installation, troubleshooting, and upgrades.</p>
<p data-start="697" data-end="867">With its <strong data-start="706" data-end="757">compact LC form factor and UPC polished ferrule</strong>, this connector delivers <strong data-start="783" data-end="836">low-loss and highly stable multimode transmission</strong> in dense optical environments.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="874" data-end="920">Why OM3 still dominates enterprise fiber</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="922" data-end="1195">
<thead data-start="922" data-end="965">
<tr data-start="922" data-end="965">
<th class="" data-start="922" data-end="936" data-col-size="sm">Fiber Grade</th>
<th class="" data-start="936" data-end="944" data-col-size="sm">Color</th>
<th class="" data-start="944" data-end="965" data-col-size="sm">Typical Data Rate</th>
</tr>
</thead>
<tbody data-start="1009" data-end="1195">
<tr data-start="1009" data-end="1034">
<td data-start="1009" data-end="1015" data-col-size="sm">OM2</td>
<td data-start="1015" data-end="1024" data-col-size="sm">Orange</td>
<td data-start="1024" data-end="1034" data-col-size="sm">1G–10G</td>
</tr>
<tr data-start="1035" data-end="1092">
<td data-start="1035" data-end="1045" data-col-size="sm"><strong data-start="1037" data-end="1044">OM3</strong></td>
<td data-start="1045" data-end="1062" data-col-size="sm"><strong data-start="1047" data-end="1061">Aqua Green</strong></td>
<td data-start="1062" data-end="1092" data-col-size="sm"><strong data-start="1064" data-end="1090">10G–100G (short reach)</strong></td>
</tr>
<tr data-start="1093" data-end="1150">
<td data-start="1093" data-end="1099" data-col-size="sm">OM4</td>
<td data-col-size="sm" data-start="1099" data-end="1119">Rose-red / violet</td>
<td data-col-size="sm" data-start="1119" data-end="1150">Higher distance at 40G/100G</td>
</tr>
<tr data-start="1151" data-end="1195">
<td data-start="1151" data-end="1157" data-col-size="sm">OM5</td>
<td data-start="1157" data-end="1170" data-col-size="sm">Lime green</td>
<td data-col-size="sm" data-start="1170" data-end="1195">SWDM &amp; advanced links</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1197" data-end="1294">OM3 is widely used because it provides <strong data-start="1236" data-end="1277">excellent performance with lower cost</strong> than OM4 or OM5.</p>
<hr data-start="1296" data-end="1299" />
<h3 data-start="1301" data-end="1326">Optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1328" data-end="1632">
<thead data-start="1328" data-end="1357">
<tr data-start="1328" data-end="1357">
<th class="" data-start="1328" data-end="1340" data-col-size="sm">Parameter</th>
<th class="" data-start="1340" data-end="1357" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1387" data-end="1632">
<tr data-start="1387" data-end="1429">
<td data-start="1387" data-end="1400" data-col-size="sm">Fiber Type</td>
<td data-start="1400" data-end="1429" data-col-size="sm">Multimode OM3 (50/125 µm)</td>
</tr>
<tr data-start="1430" data-end="1451">
<td data-start="1430" data-end="1444" data-col-size="sm">Polish Type</td>
<td data-col-size="sm" data-start="1444" data-end="1451">UPC</td>
</tr>
<tr data-start="1452" data-end="1482">
<td data-start="1452" data-end="1469" data-col-size="sm">Insertion Loss</td>
<td data-col-size="sm" data-start="1469" data-end="1482">≤ 0.30 dB</td>
</tr>
<tr data-start="1483" data-end="1508">
<td data-start="1483" data-end="1497" data-col-size="sm">Return Loss</td>
<td data-start="1497" data-end="1508" data-col-size="sm">≥ 35 dB</td>
</tr>
<tr data-start="1509" data-end="1543">
<td data-start="1509" data-end="1523" data-col-size="sm">Wavelengths</td>
<td data-start="1523" data-end="1543" data-col-size="sm">850 nm / 1300 nm</td>
</tr>
<tr data-start="1544" data-end="1594">
<td data-start="1544" data-end="1562" data-col-size="sm">Modal Bandwidth</td>
<td data-col-size="sm" data-start="1562" data-end="1594">Optimized for high-speed LAN</td>
</tr>
<tr data-start="1595" data-end="1632">
<td data-start="1595" data-end="1608" data-col-size="sm">Durability</td>
<td data-start="1608" data-end="1632" data-col-size="sm">≥ 1000 mating cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1634" data-end="1710">This performance easily supports <strong data-start="1667" data-end="1709">10G, 40G and short-reach 100G Ethernet</strong>.</p>
<hr data-start="1712" data-end="1715" />
<h3 data-start="1717" data-end="1742">Connector structure</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1744" data-end="2018">
<thead data-start="1744" data-end="1771">
<tr data-start="1744" data-end="1771">
<th class="" data-start="1744" data-end="1754" data-col-size="sm">Feature</th>
<th class="" data-start="1754" data-end="1771" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1799" data-end="2018">
<tr data-start="1799" data-end="1830">
<td data-start="1799" data-end="1816" data-col-size="sm">Connector Type</td>
<td data-start="1816" data-end="1830" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1831" data-end="1857">
<td data-start="1831" data-end="1848" data-col-size="sm">Cable Diameter</td>
<td data-start="1848" data-end="1857" data-col-size="sm">0.9mm</td>
</tr>
<tr data-start="1858" data-end="1895">
<td data-start="1858" data-end="1868" data-col-size="sm">Ferrule</td>
<td data-start="1868" data-end="1895" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1896" data-end="1937">
<td data-start="1896" data-end="1912" data-col-size="sm">Housing Color</td>
<td data-start="1912" data-end="1937" data-col-size="sm">Aqua Green (OM3 code)</td>
</tr>
<tr data-start="1938" data-end="1975">
<td data-start="1938" data-end="1959" data-col-size="sm">Latching Mechanism</td>
<td data-col-size="sm" data-start="1959" data-end="1975">LC push-pull</td>
</tr>
<tr data-start="1976" data-end="2018">
<td data-start="1976" data-end="2000" data-col-size="sm">Operating Temperature</td>
<td data-col-size="sm" data-start="2000" data-end="2018">–40°C to +75°C</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="2020" data-end="2132">The <strong data-start="2024" data-end="2040">0.9mm design</strong> allows easy routing inside <strong data-start="2068" data-end="2131">fiber trays, optical modules, and high-density patch panels</strong>.</p>
<hr data-start="2134" data-end="2137" />
<h3 data-start="2139" data-end="2165">Typical applications</h3>
<p data-start="2167" data-end="2207">This LC OM3 connector is widely used in:</p>
<ul data-start="2209" data-end="2390">
<li data-start="2209" data-end="2237">
<p data-start="2211" data-end="2237">Multimode fiber pigtails</p>
</li>
<li data-start="2238" data-end="2266">
<p data-start="2240" data-end="2266">Data center patch panels</p>
</li>
<li data-start="2267" data-end="2304">
<p data-start="2269" data-end="2304">Optical transceivers (SFP+, QSFP)</p>
</li>
<li data-start="2305" data-end="2337">
<p data-start="2307" data-end="2337">Enterprise LAN &amp; SAN systems</p>
</li>
<li data-start="2338" data-end="2360">
<p data-start="2340" data-end="2360">Optical test leads</p>
</li>
<li data-start="2361" data-end="2390">
<p data-start="2363" data-end="2390">Equipment internal wiring</p>
</li>
</ul>
<hr data-start="2392" data-end="2395" />
<h2 data-start="2397" data-end="2418">Professional Q&amp;A</h2>
<p data-start="2420" data-end="2571"><strong data-start="2420" data-end="2458">Q1: What does aqua green indicate?</strong><br data-start="2458" data-end="2461" />Aqua green is the <strong data-start="2479" data-end="2526">international color for OM3 multimode fiber</strong>, used for <strong data-start="2537" data-end="2570">10G to 100G short-reach links</strong>.</p>
<hr data-start="2573" data-end="2576" />
<p data-start="2578" data-end="2754"><strong data-start="2578" data-end="2631">Q2: Can OM3 LC connectors be used in OM4 systems?</strong><br data-start="2631" data-end="2634" />Yes. OM3 connectors are <strong data-start="2658" data-end="2678">fully compatible</strong> with OM4 fiber; OM4 simply offers <strong data-start="2713" data-end="2753">longer distance and higher bandwidth</strong>.</p>
<hr data-start="2756" data-end="2759" />
<p data-start="2761" data-end="2914"><strong data-start="2761" data-end="2800">Q3: Why use 0.9mm instead of 2.0mm?</strong><br data-start="2800" data-end="2803" />0.9mm connectors are used for <strong data-start="2833" data-end="2872">pigtails and internal fiber routing</strong>, while 2.0mm is used for <strong data-start="2898" data-end="2913">patch cords</strong>.</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 0.9mm Simplex Multimode Connector (Rose-Red)</title>
		<link>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode-rose-red/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode-rose-red/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:10:46 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=902</guid>

					<description><![CDATA[<h3 data-start="233" data-end="289">Optimized for modern high-speed multimode networks</h3>
<p data-start="291" data-end="494">The <strong data-start="295" data-end="350">LC UPC 0.9mm Simplex Multimode connector (Rose-Red)</strong> is designed for <strong data-start="367" data-end="410">next-generation multimode fiber systems</strong>, where <strong data-start="418" data-end="480">high bandwidth, low loss, and instant fiber identification</strong> are critical.</p>
<p data-start="496" data-end="827">In today’s data centers, rose-red (also called violet or magenta in some standards) is commonly used for <strong data-start="601" data-end="632">OM4 and OM5 multimode fiber</strong>, which supports <strong data-start="649" data-end="694">40G, 100G and beyond over short distances</strong>.<br data-start="695" data-end="698" />This makes the connector especially suitable for <strong data-start="747" data-end="826">high-density switches, optical transceivers, and MPO-LC breakout assemblies</strong>.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="834" data-end="891">Why 0.9mm is used for high-speed multimode pigtails</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="893" data-end="1080">
<thead data-start="893" data-end="922">
<tr data-start="893" data-end="922">
<th class="" data-start="893" data-end="906" data-col-size="sm">Cable Size</th>
<th class="" data-start="906" data-end="922" data-col-size="sm">Typical Role</th>
</tr>
</thead>
<tbody data-start="953" data-end="1080">
<tr data-start="953" data-end="1005">
<td data-start="953" data-end="965" data-col-size="sm"><strong data-start="955" data-end="964">0.9mm</strong></td>
<td data-start="965" data-end="1005" data-col-size="sm">Splice-in pigtails &amp; optical modules</td>
</tr>
<tr data-start="1006" data-end="1039">
<td data-start="1006" data-end="1014" data-col-size="sm">2.0mm</td>
<td data-start="1014" data-end="1039" data-col-size="sm">Multimode patch cords</td>
</tr>
<tr data-start="1040" data-end="1080">
<td data-start="1040" data-end="1048" data-col-size="sm">3.0mm</td>
<td data-start="1048" data-end="1080" data-col-size="sm">Heavy-duty multimode jumpers</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1082" data-end="1212">The <strong data-start="1086" data-end="1107">slim 0.9mm jacket</strong> allows easy routing inside <strong data-start="1135" data-end="1183">QSFP, SFP, patch panels and splice cassettes</strong>, without crowding or stress.</p>
<hr data-start="1214" data-end="1217" />
<h3 data-start="1219" data-end="1254">Multimode optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1256" data-end="1565">
<thead data-start="1256" data-end="1285">
<tr data-start="1256" data-end="1285">
<th class="" data-start="1256" data-end="1268" data-col-size="sm">Parameter</th>
<th class="" data-start="1268" data-end="1285" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1315" data-end="1565">
<tr data-start="1315" data-end="1357">
<td data-start="1315" data-end="1328" data-col-size="sm">Fiber Type</td>
<td data-col-size="sm" data-start="1328" data-end="1357">Multimode OM3 / OM4 / OM5</td>
</tr>
<tr data-start="1358" data-end="1391">
<td data-start="1358" data-end="1376" data-col-size="sm">Core / Cladding</td>
<td data-start="1376" data-end="1391" data-col-size="sm">50 / 125 µm</td>
</tr>
<tr data-start="1392" data-end="1413">
<td data-start="1392" data-end="1406" data-col-size="sm">Polish Type</td>
<td data-start="1406" data-end="1413" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1414" data-end="1444">
<td data-start="1414" data-end="1431" data-col-size="sm">Insertion Loss</td>
<td data-start="1431" data-end="1444" data-col-size="sm">≤ 0.30 dB</td>
</tr>
<tr data-start="1445" data-end="1470">
<td data-start="1445" data-end="1459" data-col-size="sm">Return Loss</td>
<td data-start="1459" data-end="1470" data-col-size="sm">≥ 35 dB</td>
</tr>
<tr data-start="1471" data-end="1505">
<td data-start="1471" data-end="1485" data-col-size="sm">Wavelengths</td>
<td data-col-size="sm" data-start="1485" data-end="1505">850 nm / 1300 nm</td>
</tr>
<tr data-start="1506" data-end="1565">
<td data-start="1506" data-end="1525" data-col-size="sm">Supported Speeds</td>
<td data-col-size="sm" data-start="1525" data-end="1565">10G / 25G / 40G / 100G (short reach)</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1567" data-end="1674">These values meet the requirements of <strong data-start="1605" data-end="1673">high-speed Ethernet, Fibre Channel and data-center interconnects</strong>.</p>
<hr data-start="1676" data-end="1679" />
<h3 data-start="1681" data-end="1711">Connector &amp; color coding</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1713" data-end="2032">
<thead data-start="1713" data-end="1738">
<tr data-start="1713" data-end="1738">
<th class="" data-start="1713" data-end="1723" data-col-size="sm">Feature</th>
<th class="" data-start="1723" data-end="1738" data-col-size="sm">Description</th>
</tr>
</thead>
<tbody data-start="1764" data-end="2032">
<tr data-start="1764" data-end="1795">
<td data-start="1764" data-end="1781" data-col-size="sm">Connector Type</td>
<td data-start="1781" data-end="1795" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1796" data-end="1822">
<td data-start="1796" data-end="1813" data-col-size="sm">Cable Diameter</td>
<td data-start="1813" data-end="1822" data-col-size="sm">0.9mm</td>
</tr>
<tr data-start="1823" data-end="1860">
<td data-start="1823" data-end="1833" data-col-size="sm">Ferrule</td>
<td data-start="1833" data-end="1860" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1861" data-end="1916">
<td data-start="1861" data-end="1877" data-col-size="sm">Housing Color</td>
<td data-start="1877" data-end="1916" data-col-size="sm">Rose-Red (OM4 / OM5 identification)</td>
</tr>
<tr data-start="1917" data-end="1951">
<td data-start="1917" data-end="1935" data-col-size="sm">Latching System</td>
<td data-start="1935" data-end="1951" data-col-size="sm">LC push-pull</td>
</tr>
<tr data-start="1952" data-end="1994">
<td data-start="1952" data-end="1976" data-col-size="sm">Operating Temperature</td>
<td data-col-size="sm" data-start="1976" data-end="1994">–40°C to +75°C</td>
</tr>
<tr data-start="1995" data-end="2032">
<td data-start="1995" data-end="2008" data-col-size="sm">Durability</td>
<td data-col-size="sm" data-start="2008" data-end="2032">≥ 1000 mating cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="2034" data-end="2156">The <strong data-start="2038" data-end="2058">rose-red housing</strong> allows technicians to <strong data-start="2081" data-end="2134">instantly identify high-bandwidth multimode links</strong> in mixed-fiber racks.</p>
<hr data-start="2158" data-end="2161" />
<h3 data-start="2163" data-end="2189">Typical applications</h3>
<p data-start="2191" data-end="2224">This connector is widely used in:</p>
<ul data-start="2226" data-end="2433">
<li data-start="2226" data-end="2258">
<p data-start="2228" data-end="2258">OM4 / OM5 multimode pigtails</p>
</li>
<li data-start="2259" data-end="2298">
<p data-start="2261" data-end="2298">High-speed data center patch panels</p>
</li>
<li data-start="2299" data-end="2329">
<p data-start="2301" data-end="2329">QSFP &amp; SFP optical modules</p>
</li>
<li data-start="2330" data-end="2360">
<p data-start="2332" data-end="2360">MPO-LC breakout assemblies</p>
</li>
<li data-start="2361" data-end="2394">
<p data-start="2363" data-end="2394">Enterprise LAN &amp; SAN networks</p>
</li>
<li data-start="2395" data-end="2433">
<p data-start="2397" data-end="2433">Optical test and measurement leads</p>
</li>
</ul>
<hr data-start="2435" data-end="2438" />
<h2 data-start="2440" data-end="2461">Professional Q&amp;A</h2>
<p data-start="2463" data-end="2651"><strong data-start="2463" data-end="2505">Q1: What does rose-red color indicate?</strong><br data-start="2505" data-end="2508" />Rose-red is commonly used for <strong data-start="2538" data-end="2569">OM4 and OM5 multimode fiber</strong>, which supports <strong data-start="2586" data-end="2628">higher bandwidth and faster data rates</strong> than standard OM2/OM3.</p>
<hr data-start="2653" data-end="2656" />
<p data-start="2658" data-end="2813"><strong data-start="2658" data-end="2701">Q2: Can this be used for 100G Ethernet?</strong><br data-start="2701" data-end="2704" />Yes. When used with <strong data-start="2724" data-end="2744">OM4 or OM5 fiber</strong>, this connector supports <strong data-start="2770" data-end="2796">100G short-reach links</strong> in data centers.</p>
<hr data-start="2815" data-end="2818" />
<p data-start="2820" data-end="3002"><strong data-start="2820" data-end="2882">Q3: Can rose-red multimode connect to lake-blue multimode?</strong><br data-start="2882" data-end="2885" />Yes, as long as both are <strong data-start="2910" data-end="2930">multimode LC UPC</strong>. The color only indicates <strong data-start="2957" data-end="2972">fiber grade</strong>, not connector compatibility.</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 0.9mm Simplex Multimode Connector (Lake Blue)</title>
		<link>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode-lake-blue/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-multimode-lake-blue/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:09:50 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=900</guid>

					<description><![CDATA[<h3 data-start="195" data-end="248">Built for short-reach, high-speed optical links</h3>
<p data-start="250" data-end="468">The <strong data-start="254" data-end="310">LC UPC 0.9mm Simplex Multimode connector (Lake Blue)</strong> is engineered for <strong data-start="329" data-end="369">high-density multimode fiber systems</strong>, where <strong data-start="377" data-end="454">fast data transmission, easy identification, and compact cable management</strong> are required.</p>
<p data-start="470" data-end="804">Using <strong data-start="476" data-end="513">multimode fiber and UPC polishing</strong>, this connector is widely used in <strong data-start="548" data-end="628">data centers, enterprise networks, optical modules, and LAN fiber assemblies</strong>.<br data-start="629" data-end="632" />The <strong data-start="636" data-end="655">lake blue color</strong> follows international fiber color coding, allowing technicians to instantly recognize <strong data-start="742" data-end="767">multimode connections</strong> during installation and maintenance.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="811" data-end="860">Why 0.9mm is perfect for multimode pigtails</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="862" data-end="1062">
<thead data-start="862" data-end="899">
<tr data-start="862" data-end="899">
<th class="" data-start="862" data-end="879" data-col-size="sm">Cable Diameter</th>
<th class="" data-start="879" data-end="899" data-col-size="sm">Typical Function</th>
</tr>
</thead>
<tbody data-start="938" data-end="1062">
<tr data-start="938" data-end="991">
<td data-start="938" data-end="950" data-col-size="sm"><strong data-start="940" data-end="949">0.9mm</strong></td>
<td data-start="950" data-end="991" data-col-size="sm">Multimode pigtails &amp; internal modules</td>
</tr>
<tr data-start="992" data-end="1025">
<td data-start="992" data-end="1000" data-col-size="sm">2.0mm</td>
<td data-start="1000" data-end="1025" data-col-size="sm">Multimode patch cords</td>
</tr>
<tr data-start="1026" data-end="1062">
<td data-start="1026" data-end="1034" data-col-size="sm">3.0mm</td>
<td data-start="1034" data-end="1062" data-col-size="sm">Rugged multimode jumpers</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1064" data-end="1193">The <strong data-start="1068" data-end="1089">slim 0.9mm jacket</strong> is ideal for <strong data-start="1103" data-end="1192">fusion splicing and tight routing inside patch panels, transceivers, and splice trays</strong>.</p>
<hr data-start="1195" data-end="1198" />
<h3 data-start="1200" data-end="1240">Optical specifications (Multimode)</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1242" data-end="1557">
<thead data-start="1242" data-end="1271">
<tr data-start="1242" data-end="1271">
<th class="" data-start="1242" data-end="1254" data-col-size="sm">Parameter</th>
<th class="" data-start="1254" data-end="1271" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1301" data-end="1557">
<tr data-start="1301" data-end="1354">
<td data-start="1301" data-end="1314" data-col-size="sm">Fiber Type</td>
<td data-start="1314" data-end="1354" data-col-size="sm">Multimode (50/125 µm or 62.5/125 µm)</td>
</tr>
<tr data-start="1355" data-end="1376">
<td data-start="1355" data-end="1369" data-col-size="sm">Polish Type</td>
<td data-start="1369" data-end="1376" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1377" data-end="1407">
<td data-start="1377" data-end="1394" data-col-size="sm">Insertion Loss</td>
<td data-start="1394" data-end="1407" data-col-size="sm">≤ 0.30 dB</td>
</tr>
<tr data-start="1408" data-end="1433">
<td data-start="1408" data-end="1422" data-col-size="sm">Return Loss</td>
<td data-start="1422" data-end="1433" data-col-size="sm">≥ 35 dB</td>
</tr>
<tr data-start="1434" data-end="1468">
<td data-start="1434" data-end="1448" data-col-size="sm">Wavelengths</td>
<td data-start="1448" data-end="1468" data-col-size="sm">850 nm / 1300 nm</td>
</tr>
<tr data-start="1469" data-end="1525">
<td data-start="1469" data-end="1487" data-col-size="sm">Modal Bandwidth</td>
<td data-start="1487" data-end="1525" data-col-size="sm">Optimized for high-speed LAN links</td>
</tr>
<tr data-start="1526" data-end="1557">
<td data-start="1526" data-end="1540" data-col-size="sm">Mating Life</td>
<td data-start="1540" data-end="1557" data-col-size="sm">≥ 1000 cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1559" data-end="1659">This performance supports <strong data-start="1585" data-end="1637">10G, 25G, 40G and short-reach 100G optical links</strong> over multimode fiber.</p>
<hr data-start="1661" data-end="1664" />
<h3 data-start="1666" data-end="1694">Connector construction</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1696" data-end="1961">
<thead data-start="1696" data-end="1723">
<tr data-start="1696" data-end="1723">
<th class="" data-start="1696" data-end="1706" data-col-size="sm">Feature</th>
<th class="" data-start="1706" data-end="1723" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1751" data-end="1961">
<tr data-start="1751" data-end="1782">
<td data-start="1751" data-end="1768" data-col-size="sm">Connector Type</td>
<td data-start="1768" data-end="1782" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1783" data-end="1805">
<td data-start="1783" data-end="1796" data-col-size="sm">Cable Size</td>
<td data-start="1796" data-end="1805" data-col-size="sm">0.9mm</td>
</tr>
<tr data-start="1806" data-end="1843">
<td data-start="1806" data-end="1816" data-col-size="sm">Ferrule</td>
<td data-start="1816" data-end="1843" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1844" data-end="1887">
<td data-start="1844" data-end="1857" data-col-size="sm">Boot Color</td>
<td data-start="1857" data-end="1887" data-col-size="sm">Lake Blue (multimode code)</td>
</tr>
<tr data-start="1888" data-end="1918">
<td data-start="1888" data-end="1896" data-col-size="sm">Latch</td>
<td data-start="1896" data-end="1918" data-col-size="sm">LC push-pull latch</td>
</tr>
<tr data-start="1919" data-end="1961">
<td data-start="1919" data-end="1943" data-col-size="sm">Operating Temperature</td>
<td data-start="1943" data-end="1961" data-col-size="sm">–40°C to +75°C</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1963" data-end="2077">The <strong data-start="1967" data-end="1988">lake blue housing</strong> ensures <strong data-start="1997" data-end="2028">quick visual identification</strong> in mixed single-mode and multimode environments.</p>
<hr data-start="2079" data-end="2082" />
<h3 data-start="2084" data-end="2110">Typical applications</h3>
<p data-start="2112" data-end="2160">This LC multimode connector is commonly used in:</p>
<ul data-start="2162" data-end="2334">
<li data-start="2162" data-end="2190">
<p data-start="2164" data-end="2190">Data center patch panels</p>
</li>
<li data-start="2191" data-end="2213">
<p data-start="2193" data-end="2213">Multimode pigtails</p>
</li>
<li data-start="2214" data-end="2245">
<p data-start="2216" data-end="2245">Optical transceiver modules</p>
</li>
<li data-start="2246" data-end="2281">
<p data-start="2248" data-end="2281">LAN &amp; enterprise fiber networks</p>
</li>
<li data-start="2282" data-end="2304">
<p data-start="2284" data-end="2304">Optical test cords</p>
</li>
<li data-start="2305" data-end="2334">
<p data-start="2307" data-end="2334">Equipment internal wiring</p>
</li>
</ul>
<hr data-start="2336" data-end="2339" />
<h2 data-start="2341" data-end="2362">Professional Q&amp;A</h2>
<p data-start="2364" data-end="2517"><strong data-start="2364" data-end="2403">Q1: Why is the connector lake blue?</strong><br data-start="2403" data-end="2406" />Lake blue is the <strong data-start="2423" data-end="2461">standard color for multimode fiber</strong>, helping prevent mixing with yellow single-mode cables.</p>
<hr data-start="2519" data-end="2522" />
<p data-start="2524" data-end="2668"><strong data-start="2524" data-end="2572">Q2: Can LC multimode connect to single-mode?</strong><br data-start="2572" data-end="2575" />No. Multimode and single-mode fibers have <strong data-start="2617" data-end="2641">different core sizes</strong> and must not be connected.</p>
<hr data-start="2670" data-end="2673" />
<p data-start="2675" data-end="2844"><strong data-start="2675" data-end="2722">Q3: Is UPC polishing correct for multimode?</strong><br data-start="2722" data-end="2725" />Yes. <strong data-start="2730" data-end="2771">UPC is standard for multimode systems</strong> and provides stable insertion loss for short-reach, high-speed networks.</p>
]]></content:encoded>
					
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			</item>
		<item>
		<title>LC UPC 0.9mm Simplex Single-Mode Connector</title>
		<link>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-singlemode/</link>
					<comments>https://www.fenxifiber.com/product/lc-upc-0-9mm-simplex-singlemode/#respond</comments>
		
		<dc:creator><![CDATA[Fenxi]]></dc:creator>
		<pubDate>Wed, 04 Feb 2026 03:08:46 +0000</pubDate>
				<guid isPermaLink="false">https://www.fenxifiber.com/?post_type=product&#038;p=898</guid>

					<description><![CDATA[<h3 data-start="220" data-end="271">Designed for clean, precise fiber termination</h3>
<p data-start="273" data-end="582">The <strong data-start="277" data-end="323">LC UPC 0.9mm Simplex Single-Mode connector</strong> is optimized for <strong data-start="341" data-end="429">factory-made pigtails, internal equipment wiring, and high-precision optical modules</strong>.<br data-start="430" data-end="433" />Unlike 2.0mm and 3.0mm jacketed connectors used for patch cords, the <strong data-start="502" data-end="581">0.9mm version is built for direct fusion splicing and compact fiber routing</strong>.</p>
<p data-start="584" data-end="786">With a <strong data-start="591" data-end="616">UPC polished end face</strong> and a <strong data-start="623" data-end="649">1.25mm ceramic ferrule</strong>, it delivers <strong data-start="663" data-end="708">stable insertion loss and low reflectance</strong>, making it ideal for <strong data-start="730" data-end="785">ODF trays, optical modules, and distribution frames</strong>.</p>]]></description>
										<content:encoded><![CDATA[<h3 data-start="793" data-end="829">Why 0.9mm is used for pigtails</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="831" data-end="1007">
<thead data-start="831" data-end="856">
<tr data-start="831" data-end="856">
<th class="" data-start="831" data-end="844" data-col-size="sm">Cable Size</th>
<th class="" data-start="844" data-end="856" data-col-size="md">Function</th>
</tr>
</thead>
<tbody data-start="883" data-end="1007">
<tr data-start="883" data-end="941">
<td data-start="883" data-end="895" data-col-size="sm"><strong data-start="885" data-end="894">0.9mm</strong></td>
<td data-col-size="md" data-start="895" data-end="941">Fusion-spliced pigtails &amp; internal routing</td>
</tr>
<tr data-start="942" data-end="965">
<td data-start="942" data-end="950" data-col-size="sm">2.0mm</td>
<td data-col-size="md" data-start="950" data-end="965">Patch cords</td>
</tr>
<tr data-start="966" data-end="1007">
<td data-start="966" data-end="974" data-col-size="sm">3.0mm</td>
<td data-col-size="md" data-start="974" data-end="1007">Outdoor &amp; high-strength cords</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1009" data-end="1157">The <strong data-start="1013" data-end="1034">thin 0.9mm jacket</strong> allows the fiber to be <strong data-start="1058" data-end="1115">neatly stored inside splice trays and fiber cassettes</strong>, while still protecting the coated fiber.</p>
<hr data-start="1159" data-end="1162" />
<h3 data-start="1164" data-end="1189">Optical performance</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1191" data-end="1484">
<thead data-start="1191" data-end="1220">
<tr data-start="1191" data-end="1220">
<th class="" data-start="1191" data-end="1203" data-col-size="sm">Parameter</th>
<th class="" data-start="1203" data-end="1220" data-col-size="sm">Typical Value</th>
</tr>
</thead>
<tbody data-start="1250" data-end="1484">
<tr data-start="1250" data-end="1287">
<td data-start="1250" data-end="1263" data-col-size="sm">Fiber Type</td>
<td data-start="1263" data-end="1287" data-col-size="sm">Single-mode 9/125 µm</td>
</tr>
<tr data-start="1288" data-end="1309">
<td data-start="1288" data-end="1302" data-col-size="sm">Polish Type</td>
<td data-start="1302" data-end="1309" data-col-size="sm">UPC</td>
</tr>
<tr data-start="1310" data-end="1340">
<td data-start="1310" data-end="1327" data-col-size="sm">Insertion Loss</td>
<td data-col-size="sm" data-start="1327" data-end="1340">≤ 0.25 dB</td>
</tr>
<tr data-start="1341" data-end="1366">
<td data-start="1341" data-end="1355" data-col-size="sm">Return Loss</td>
<td data-col-size="sm" data-start="1355" data-end="1366">≥ 50 dB</td>
</tr>
<tr data-start="1367" data-end="1408">
<td data-start="1367" data-end="1390" data-col-size="sm">Operating Wavelength</td>
<td data-col-size="sm" data-start="1390" data-end="1408">1310 / 1550 nm</td>
</tr>
<tr data-start="1409" data-end="1446">
<td data-start="1409" data-end="1429" data-col-size="sm">End-face Geometry</td>
<td data-col-size="sm" data-start="1429" data-end="1446">IEC compliant</td>
</tr>
<tr data-start="1447" data-end="1484">
<td data-start="1447" data-end="1467" data-col-size="sm">Mating Durability</td>
<td data-col-size="sm" data-start="1467" data-end="1484">≥ 1000 cycles</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1486" data-end="1582">UPC polishing ensures <strong data-start="1508" data-end="1538">stable signal transmission</strong> for most <strong data-start="1548" data-end="1581">telecom and data applications</strong>.</p>
<hr data-start="1584" data-end="1587" />
<h3 data-start="1589" data-end="1615">Mechanical structure</h3>
<div class="TyagGW_tableContainer">
<div class="group TyagGW_tableWrapper flex flex-col-reverse w-fit" tabindex="-1">
<table class="w-fit min-w-(--thread-content-width)" data-start="1617" data-end="1857">
<thead data-start="1617" data-end="1641">
<tr data-start="1617" data-end="1641">
<th class="" data-start="1617" data-end="1624" data-col-size="sm">Item</th>
<th class="" data-start="1624" data-end="1641" data-col-size="sm">Specification</th>
</tr>
</thead>
<tbody data-start="1667" data-end="1857">
<tr data-start="1667" data-end="1698">
<td data-start="1667" data-end="1684" data-col-size="sm">Connector Type</td>
<td data-start="1684" data-end="1698" data-col-size="sm">LC Simplex</td>
</tr>
<tr data-start="1699" data-end="1725">
<td data-start="1699" data-end="1716" data-col-size="sm">Cable Diameter</td>
<td data-start="1716" data-end="1725" data-col-size="sm">0.9mm</td>
</tr>
<tr data-start="1726" data-end="1763">
<td data-start="1726" data-end="1736" data-col-size="sm">Ferrule</td>
<td data-start="1736" data-end="1763" data-col-size="sm">1.25mm zirconia ceramic</td>
</tr>
<tr data-start="1764" data-end="1793">
<td data-start="1764" data-end="1771" data-col-size="sm">Boot</td>
<td data-start="1771" data-end="1793" data-col-size="sm">Short pigtail boot</td>
</tr>
<tr data-start="1794" data-end="1818">
<td data-start="1794" data-end="1802" data-col-size="sm">Latch</td>
<td data-start="1802" data-end="1818" data-col-size="sm">LC push-pull</td>
</tr>
<tr data-start="1819" data-end="1857">
<td data-start="1819" data-end="1839" data-col-size="sm">Temperature Range</td>
<td data-start="1839" data-end="1857" data-col-size="sm">–40°C to +75°C</td>
</tr>
</tbody>
</table>
</div>
</div>
<p data-start="1859" data-end="1968">The <strong data-start="1863" data-end="1884">short boot design</strong> allows the connector to fit easily into <strong data-start="1925" data-end="1967">splice trays and compact fiber modules</strong>.</p>
<hr data-start="1970" data-end="1973" />
<h3 data-start="1975" data-end="2001">Typical applications</h3>
<p data-start="2003" data-end="2036">This connector is widely used in:</p>
<ul data-start="2038" data-end="2202">
<li data-start="2038" data-end="2062">
<p data-start="2040" data-end="2062">Fiber optic pigtails</p>
</li>
<li data-start="2063" data-end="2094">
<p data-start="2065" data-end="2094">ODF and distribution frames</p>
</li>
<li data-start="2095" data-end="2131">
<p data-start="2097" data-end="2131">Fiber cassettes and splice trays</p>
</li>
<li data-start="2132" data-end="2168">
<p data-start="2134" data-end="2168">Optical transceivers and modules</p>
</li>
<li data-start="2169" data-end="2202">
<p data-start="2171" data-end="2202">FTTH central office equipment</p>
</li>
</ul>
<hr data-start="2204" data-end="2207" />
<h2 data-start="2209" data-end="2230">Professional Q&amp;A</h2>
<p data-start="2232" data-end="2397"><strong data-start="2232" data-end="2285">Q1: Can LC UPC 0.9mm be used to make patch cords?</strong><br data-start="2285" data-end="2288" />No. 0.9mm connectors are designed for <strong data-start="2326" data-end="2338">pigtails</strong> and must be spliced to thicker cables to form patch cords.</p>
<hr data-start="2399" data-end="2402" />
<p data-start="2404" data-end="2593"><strong data-start="2404" data-end="2452">Q2: When should I choose UPC instead of APC?</strong><br data-start="2452" data-end="2455" />UPC is used in <strong data-start="2470" data-end="2507">general telecom and data networks</strong>. APC is required for <strong data-start="2529" data-end="2553">PON and CATV systems</strong> where reflection must be extremely low.</p>
<hr data-start="2595" data-end="2598" />
<p data-start="2600" data-end="2738"><strong data-start="2600" data-end="2654">Q3: Is this connector compatible with LC adapters?</strong><br data-start="2654" data-end="2657" />Yes. It mates perfectly with <strong data-start="2686" data-end="2714">standard LC UPC adapters</strong> and LC UPC patch cords.</p>
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