{"id":1779,"date":"2022-10-21T10:59:16","date_gmt":"2022-10-21T02:59:16","guid":{"rendered":"https:\/\/www.premlink.net\/?post_type=product&#038;p=1779"},"modified":"2026-03-25T11:22:15","modified_gmt":"2026-03-25T03:22:15","slug":"%d1%81%d0%b5%d0%b3%d0%bc%d0%b5%d0%bd%d1%82%d0%b8%d1%80%d1%83%d0%b5%d0%bc%d1%8b%d0%b9-%d1%83%d0%b7%d0%b5%d0%bb-pl3000a","status":"publish","type":"product","link":"https:\/\/www.premlink.net\/ru\/product\/pl3000a-segmentable-node\/","title":{"rendered":"\u041e\u043f\u0442\u0438\u0447\u0435\u0441\u043a\u0438\u0439 \u0441\u0435\u0433\u043c\u0435\u043d\u0442\u043d\u044b\u0439 \u0443\u0437\u0435\u043b PL3000A"},"content":{"rendered":"<h2>Product Overview<\/h2>\n<p>The PL3000A optical segmentable\u00a0 node is designed for fiber-deep HFC networks. It has two high-level RF output ports. Each high level RF output port can be divided into two low-level output ports.\u00a0 All attenuation and equalization modifications will be made with ordinary JXP type pads.<\/p>\n<p>PL3000A optical segmentable node&#8217;s reverse traffic can be mixed and routed using a DFB return transmitter module. Bi-directional TPs allow the operator to monitor and inject through a single TP connection. PL3000A optical segmentable node&#8217;s will be able to upgrade from a PL3100A amplifier to an optical node. This type of segmentable node will be field upgradeable from a forward-only to a forward-return path product.<br \/>\nPL3000A optical segmentable node&#8217;s is adaptable to unique network requirements due to the use of selectable optical connectors, strand mounting, and international frequency split.<\/p>\n<h2>Specifications<\/h2>\n<h3><em>Block Diagram<\/em><\/h3>\n<figure id=\"attachment_10064\" aria-describedby=\"caption-attachment-10064\" style=\"width: 781px\" class=\"wp-caption aligncenter\"><img fetchpriority=\"high\" decoding=\"async\" class=\" wp-image-10064\" src=\"https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/10\/PL3100A-NODE1.jpg\" alt=\"PL3000A Segmentable Node\" width=\"781\" height=\"410\" srcset=\"https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/10\/PL3100A-NODE1.jpg 880w, https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/10\/PL3100A-NODE1-500x263.jpg 500w, https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/10\/PL3100A-NODE1-800x420.jpg 800w, https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/10\/PL3100A-NODE1-300x158.jpg 300w, https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/10\/PL3100A-NODE1-768x403.jpg 768w\" sizes=\"(max-width: 781px) 100vw, 781px\" \/><figcaption id=\"caption-attachment-10064\" class=\"wp-caption-text\">PL3000A Segmentable Node<\/figcaption><\/figure>\n<h3><em>Forward\u00a0Optical Receiver Characteristics<\/em><\/h3>\n<table>\n<tbody>\n<tr>\n<td width=\"152\">Parameter<\/td>\n<td width=\"45\">Unit<\/td>\n<td width=\"181\">Value<\/td>\n<td width=\"225\">Remark<\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical wavelength<\/td>\n<td width=\"45\">nm<\/td>\n<td width=\"181\">1310<\/td>\n<td width=\"225\">1200 to 1610nm<\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical connector<\/td>\n<td width=\"45\">\/<\/td>\n<td width=\"181\">SC\/APC<\/p>\n<p>FC\/APC<\/td>\n<td width=\"225\">Configured at Factory<\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical Responsivity<\/td>\n<td width=\"45\">A\/W<\/td>\n<td width=\"181\">\u22650.85<\/td>\n<td width=\"225\">@1310nm<\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical return loss<\/td>\n<td width=\"45\">dB<\/td>\n<td width=\"181\">\u226540<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical operating range<\/td>\n<td width=\"45\">dBm<\/td>\n<td width=\"181\">-8dBm ~ +2<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical AGC range<\/td>\n<td width=\"45\">dBm<\/td>\n<td width=\"181\">-4dBm ~ +2<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Optical AGC control stability<\/td>\n<td width=\"45\">dB<\/td>\n<td width=\"181\">\u00b11.5<\/td>\n<td width=\"225\">@-40\u2103~+60\u2103.Output level is maintained and Flatness is \u00b10.75dB for normal optical input power levels<\/td>\n<\/tr>\n<tr>\n<td width=\"152\">Maximum Rx Input Power<\/td>\n<td width=\"45\">dBm<\/td>\n<td width=\"181\">+10<\/td>\n<td width=\"225\">Max level without damaging photo diode<\/td>\n<\/tr>\n<tr>\n<td width=\"152\">EIN<\/td>\n<td width=\"45\">pA\/rtHz<\/td>\n<td width=\"181\">\u22648<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<h3><em>Forward RF Characteristics<\/em><\/h3>\n<table>\n<tbody>\n<tr>\n<td width=\"151\"><strong><b>Parameter<\/b><\/strong><\/td>\n<td width=\"46\"><strong><b>Unit<\/b><\/strong><\/td>\n<td width=\"181\"><strong><b>Value<\/b><\/strong><\/td>\n<td width=\"225\"><strong><b>Remark<\/b><\/strong><\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Frequency Range<\/td>\n<td width=\"46\">MHz<\/td>\n<td width=\"181\">54\u00a0~ 1200<\/td>\n<td width=\"225\">Different split is available<\/td>\n<\/tr>\n<tr>\n<td rowspan=\"2\" width=\"151\">RF output level<\/td>\n<td width=\"46\">dBmV<\/td>\n<td width=\"181\">50<\/td>\n<td width=\"225\">2 ports\u00a0Version<\/td>\n<\/tr>\n<tr>\n<td width=\"46\">dBmV<\/td>\n<td width=\"181\">46.5<\/td>\n<td width=\"225\">4 ports\u00a0Version<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Internal Tilt<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">17\u00b11<\/td>\n<td width=\"225\">@1200MHz<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Flatness<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u00b10.75<\/td>\n<td width=\"225\">-40\u2103 ~ +60\u2103<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Output Return Loss<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u226516<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<tr>\n<td width=\"151\">RF Connector<\/td>\n<td width=\"46\">\/<\/td>\n<td width=\"181\">5\/8\u201d or PG11<\/td>\n<td width=\"225\">Exchangeable<\/td>\n<\/tr>\n<tr>\n<td rowspan=\"2\" width=\"151\">RF Output TP<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">-20\u00b11 (w\/jmpr)<\/td>\n<td rowspan=\"2\" width=\"225\">Relative to RF output port,\u00a0TP is F-female type connector<\/td>\n<\/tr>\n<tr>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">-16.5\u00b11(w\/spltr)<\/td>\n<\/tr>\n<tr>\n<td rowspan=\"2\" width=\"151\">Test Point Flatness<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u00b10.75<\/td>\n<td width=\"225\">2 ports\u00a0Version<\/td>\n<\/tr>\n<tr>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u00b11<\/td>\n<td width=\"225\">4 ports\u00a0Version<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Test Point Return Loss<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u226516<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Isolation(FWD\/REV)<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u226546<\/td>\n<td width=\"225\">In band, Local Injection input downstream RF and test at REV Input TPs.<\/td>\n<\/tr>\n<tr>\n<td rowspan=\"2\" width=\"151\">Distortion Test\u00a0Condition: RF output<\/td>\n<td width=\"46\">dBmV<\/td>\n<td width=\"181\">50<\/td>\n<td width=\"225\">2 ports\u00a0version<\/td>\n<\/tr>\n<tr>\n<td width=\"46\">dBmV<\/td>\n<td width=\"181\">46.5<\/td>\n<td width=\"225\">4 ports\u00a0version<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Distortion Test Condition: Tilt<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">17\u00b11<\/td>\n<td width=\"225\">@1200MHz<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">CTB<\/td>\n<td width=\"46\">dBc<\/td>\n<td width=\"181\">67<\/td>\n<td rowspan=\"2\" width=\"225\">59NTS, COIP -3dBm, OMI 3.25%,\u00a0110dBuV@550MHz, w\/o fiber spool<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">CSO<\/td>\n<td width=\"46\">dBc<\/td>\n<td width=\"181\">65<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Cross Modulation<\/td>\n<td width=\"46\">dBc<\/td>\n<td width=\"181\">62<\/td>\n<td width=\"225\">59NTS+QAM, COIP -3dBm, OMI 3.25%,\u00a0110dBuV@550MHz, w\/o fiber spool<\/td>\n<\/tr>\n<tr>\n<td width=\"151\">Noise Figure<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">\u00a3\u00a09<\/td>\n<td width=\"225\"><\/td>\n<\/tr>\n<tr>\n<td width=\"151\">HUM<\/td>\n<td width=\"46\">dB<\/td>\n<td width=\"181\">65<\/td>\n<td width=\"225\">@10A<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<h3><em>Return RF Characteristics<\/em><\/h3>\n<table>\n<tbody>\n<tr>\n<td width=\"150\"><strong><b>Parameter<\/b><\/strong><\/td>\n<td width=\"47\"><strong><b>Unit<\/b><\/strong><\/td>\n<td width=\"182\"><strong><b>Value<\/b><\/strong><\/td>\n<td width=\"224\"><strong><b>Remark<\/b><\/strong><\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Frequency Range<\/td>\n<td width=\"47\">MHz<\/td>\n<td width=\"182\">5 ~ 42<\/td>\n<td width=\"224\">Different split is available<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Gain<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">23<\/td>\n<td width=\"224\">Without 3-state switch<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Flatness Reverse<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">\u00b10.75<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Internal Reverse Tilt<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">0<\/td>\n<td width=\"224\">\u00b10.5dB<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Noise Figure<\/td>\n<td width=\"47\"><\/td>\n<td width=\"182\">\u00a3\u00a010dB<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td rowspan=\"2\" width=\"150\">Input Test Point<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">-20\u00a0(w\/jumper)<\/td>\n<td rowspan=\"2\" width=\"224\">Relative to RF input port, \u00b11dB margin,<\/p>\n<p>TP is F-female type connector<\/td>\n<\/tr>\n<tr>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">-23.5 (w\/splitter)<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">TP Flatness<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">\u00b11.0<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Reverse Return Loss<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">\u226516<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"150\">HUM<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">65<\/td>\n<td width=\"224\">@10A, Using the Matrix method<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Operating input Level Range<\/td>\n<td width=\"47\">dBmV<\/td>\n<td width=\"182\">20<\/td>\n<td width=\"224\">Typica, 6 CHs bonding<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<h3><em>Return Optical Transmitter Characteristics<\/em><\/h3>\n<table>\n<tbody>\n<tr>\n<td width=\"150\"><strong><b>Parameter<\/b><\/strong><\/td>\n<td width=\"47\"><strong><b>Unit<\/b><\/strong><\/td>\n<td width=\"182\"><strong><b>Value<\/b><\/strong><\/td>\n<td width=\"224\"><strong><b>Remark<\/b><\/strong><\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Optical Output Power<\/td>\n<td width=\"47\">dBm<\/td>\n<td width=\"182\">3<\/td>\n<td width=\"224\">DFB laser<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Optical Wavelength<\/td>\n<td width=\"47\">nm<\/td>\n<td width=\"182\">1470~1610<\/td>\n<td width=\"224\">CWDM<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">RF Drive Level<\/td>\n<td width=\"47\">dBmV<\/td>\n<td width=\"182\">5~20<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Optical Connector<\/td>\n<td width=\"47\">\/<\/td>\n<td width=\"182\">SC\/APC<\/td>\n<td width=\"224\">FC\/APC optional<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">NPR<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">25@30dB<\/td>\n<td width=\"224\">1550nm CWDM<\/td>\n<\/tr>\n<tr>\n<td width=\"150\">Test Point<\/td>\n<td width=\"47\">dB<\/td>\n<td width=\"182\">-20<\/td>\n<td width=\"224\">20dBmV@10%OMI<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>&nbsp;<\/p>\n<h3><em>General Characteristics<\/em><\/h3>\n<table>\n<tbody>\n<tr>\n<td width=\"149\"><strong><b>Parameter<\/b><\/strong><\/td>\n<td width=\"49\"><strong><b>Unit<\/b><\/strong><\/td>\n<td width=\"181\"><strong><b>Value<\/b><\/strong><\/td>\n<td width=\"224\"><strong><b>Remark<\/b><\/strong><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Working\u00a0Temperature<\/td>\n<td width=\"49\">\u2103<\/td>\n<td width=\"181\">-40 ~ +60<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Storage Temperature<\/td>\n<td width=\"49\">\u2103<\/td>\n<td width=\"181\">-40 ~ +85<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Output Ports<\/td>\n<td width=\"49\">\/<\/td>\n<td width=\"181\">2 or 4<\/td>\n<td width=\"224\">with splitter<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Surge<\/td>\n<td width=\"49\">kV<\/td>\n<td width=\"181\">\u00b16<\/td>\n<td width=\"224\">IEEE C62.41, 1.2\/50uS Combination Wave<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Forward\u00a0Equalizers<\/td>\n<td width=\"49\">\/<\/td>\n<td width=\"181\">Plug-in(with JXP ATT)<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Return\u00a0Equalizers<\/td>\n<td width=\"49\">\/<\/td>\n<td width=\"181\">Plug-in(with JXP ATT)<\/td>\n<td width=\"224\">Will be built based on different frequency split<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Thermal Compensation<\/td>\n<td width=\"49\">\/<\/td>\n<td width=\"181\">Yes<\/td>\n<td width=\"224\">Built on board<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">AC Input Voltage<\/td>\n<td width=\"49\">VAC<\/td>\n<td width=\"181\">40 to 90<\/td>\n<td width=\"224\">Line Powered<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Efficiency<\/td>\n<td width=\"49\">%<\/td>\n<td width=\"181\">&gt;80<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Power Consumption<\/td>\n<td width=\"49\">W<\/td>\n<td width=\"181\">\u226435<\/td>\n<td width=\"224\">With Rx &amp; Tx\u00a0module<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Power Passing<\/td>\n<td width=\"49\">A<\/td>\n<td width=\"181\">10 or 15\u00a0exchangeable<\/td>\n<td width=\"224\">15A or 20A for 2 Hours@60\u00b0C no degradation is required for 10A or 15A respectively.<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Water &amp;\u00a0Dust Resistance<\/td>\n<td width=\"49\">\/<\/td>\n<td width=\"181\">IP68<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Housing Dimensions<\/td>\n<td width=\"49\">mm<\/td>\n<td width=\"181\">333*208*136<\/td>\n<td width=\"224\">Strand outdoor housing<\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Packaging\u00a0Carton<\/td>\n<td width=\"49\">mm<\/td>\n<td width=\"181\">370*270*220<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<tr>\n<td width=\"149\">Weight<\/td>\n<td width=\"49\"><\/td>\n<td width=\"181\">6.2Kg<\/td>\n<td width=\"224\"><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>Welcome to enquiry our PL3000A optical segmentable node.<\/p>\n<div class=\"premlink-pro-tech-highlight\" style=\"background: #fcfcfc; padding: 25px; border: 1px solid #e0e0e0; border-left: 6px solid #F9811C; margin-top: 35px; border-radius: 4px;\">\n<h2 style=\"font-size: 22px; margin-top: 0; color: #333;\">PL3000A: High-Output Optical Segmentable Node for Fiber-Deep HFC<\/h2>\n<p style=\"color: #666; font-style: italic;\">The high-density, field-upgradeable segmentable node designed for bi-directional 1.2GHz broadband networks.<\/p>\n<ul style=\"line-height: 1.9; color: #444; font-size: 15px;\">\n<li><strong>Advanced Segmentation:<\/strong> Support for <strong>forward and return path segmentation<\/strong>, allowing operators to increase bandwidth capacity without laying new fiber.<\/li>\n<li><strong>High RF Output Performance:<\/strong> Delivers <strong>110dB\u00b5V output level<\/strong> (2-port version) using premium GaAs technology for superior linearity.<\/li>\n<li><strong>1.2GHz Future-Proofing:<\/strong> Extended frequency range up to <strong>1218MHz<\/strong>, making it fully compatible with DOCSIS 3.1 and future network upgrades.<\/li>\n<li><strong>Field-Upgradeable Design:<\/strong> Easily converts from a standard amplifier to an <strong>optical segmentable node<\/strong>, supporting modular DFB return transmitters.<\/li>\n<li><strong>Industrial Ruggedness:<\/strong> Encased in an <strong>IP68-rated strand-mount housing<\/strong> with \u00b16kV surge protection for reliable outdoor operation in extreme climates.<\/li>\n<\/ul>\n<\/div>\n<div class=\"premlink-product-faq\" style=\"margin-top: 45px; border-top: 2px solid #eee; padding-top: 30px;\">\n<h2 style=\"font-size: 24px; color: #222; margin-bottom: 25px;\">Technical FAQ: PL3000A Segmentable Node<\/h2>\n<div class=\"faq-item\" style=\"margin-bottom: 25px;\">\n<h3 style=\"font-size: 18px; color: #f9811c; margin-bottom: 10px;\">Q1: What are the benefits of using a segmentable node in HFC networks?<\/h3>\n<p style=\"color: #444; line-height: 1.6;\"><strong>A:<\/strong> A <strong>segmentable node<\/strong> like the PL3000A allows you to split a single optical node into multiple independent RF segments. This effectively reduces the &#8220;service group&#8221; size, increasing the available per-user bandwidth for high-speed data and VOD services without extensive re-cabling.<\/p>\n<\/div>\n<div class=\"faq-item\" style=\"margin-bottom: 25px;\">\n<h3 style=\"font-size: 18px; color: #f9811c; margin-bottom: 10px;\">Q2: Does the PL3000A support bi-directional traffic monitoring?<\/h3>\n<p style=\"color: #444; line-height: 1.6;\"><strong>A:<\/strong> Yes. It features <strong>bi-directional Test Points (TPs)<\/strong>, enabling operators to monitor and inject signals through a single connection point. This drastically simplifies field maintenance and network balancing for <strong>return path traffic<\/strong>.<\/p>\n<\/div>\n<div class=\"faq-item\" style=\"margin-bottom: 25px;\">\n<h3 style=\"font-size: 18px; color: #f9811c; margin-bottom: 10px;\">Q3: How is the output level managed across different temperatures?<\/h3>\n<p style=\"color: #444; line-height: 1.6;\"><strong>A:<\/strong> The PL3000A is equipped with <strong>Thermal Compensation<\/strong> on-board and supports both <strong>MGC and AGC modes<\/strong>. This ensures the 110dB\u00b5V output level remains stable within \u00b11.5dB even during extreme outdoor temperature fluctuations from -40\u2103 to +60\u2103.<\/p>\n<\/div>\n<div class=\"faq-item\" style=\"margin-bottom: 25px;\">\n<h3 style=\"font-size: 18px; color: #f9811c; margin-bottom: 10px;\">Q4: Can this node be upgraded from an existing amplifier?<\/h3>\n<p style=\"color: #444; line-height: 1.6;\"><strong>A:<\/strong> Absolutely. Our modular architecture allows for a seamless <strong>field upgrade<\/strong> from a PL3100A amplifier to a full-featured optical node by adding receiver and transmitter modules, protecting your initial infrastructure investment.<\/p>\n<\/div>\n<\/div>\n<p><script type=\"application\/ld+json\">\n[{\n  \"@context\": \"https:\/\/schema.org\/\",\n  \"@type\": \"Product\",\n  \"@id\": \"https:\/\/www.premlink.net\/product\/pl3000a-segmentable-node\/#richSnippet\",\n  \"name\": \"PL3000A Optical Segmentable Node (1.2GHz)\",\n  \"image\": \"https:\/\/www.premlink.net\/wp-content\/uploads\/2022\/09\/PL3000A-Segmentable-Node.jpg\",\n  \"description\": \"Premium 1.2GHz optical segmentable node for fiber-deep HFC networks. Features 110dBuV output, GaAs technology, and IP68 outdoor housing. 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capacity for cable modem users.\"\n      }\n    },\n    {\n      \"@type\": \"Question\",\n      \"name\": \"Is the PL3000A weather-proof?\",\n      \"acceptedAnswer\": {\n        \"@type\": \"Answer\",\n        \"text\": \"Yes, it features an IP68-rated outdoor housing and \u00b16kV surge protection, designed for strand-mount installation in harsh environments.\"\n      }\n    }\n  ]\n}]\n<\/script><\/p>\n<div class=\"premlink-selection-guide\" style=\"margin-top: 50px; padding: 20px; background-color: #fff9f4; border: 2px dashed #F9811C; border-radius: 12px; display: flex; align-items: center; gap: 20px;\">\n<div class=\"guide-icon\" style=\"flex-shrink: 0; background: #F9811C; width: 50px; height: 50px; border-radius: 50%; display: flex; align-items: center; justify-content: center; color: white; font-size: 24px; font-weight: bold;\">!<\/div>\n<div class=\"guide-content\">\n<h4 style=\"margin: 0 0 8px 0; color: #333; font-size: 18px; font-weight: bold;\">Planning a 10G-PON Migration?<\/h4>\n<p style=\"margin: 0; color: #555; line-height: 1.5; font-size: 15px;\">If your network is transitioning from HFC to FTTH, check our<br \/>\n<a style=\"color: #f9811c; text-decoration: underline; font-weight: bold;\" href=\"https:\/\/www.premlink.net\/product\/xgspon-edfa\/\">High-Power XGSPON EDFA Series<\/a><br \/>\nto combine CATV overlay with 10G-PON data on a single fiber link.<\/p>\n<\/div>\n<\/div>\n","protected":false},"excerpt":{"rendered":"<p><strong>\u041e\u0441\u043d\u043e\u0432\u043d\u044b\u0435 \u0445\u0430\u0440\u0430\u043a\u0442\u0435\u0440\u0438\u0441\u0442\u0438\u043a\u0438<\/strong><br \/>\n\u041f\u043e\u043b\u043e\u0441\u0430 \u043f\u0440\u043e\u043f\u0443\u0441\u043a\u0430\u043d\u0438\u044f \u0434\u043e 1 \u0413\u0413\u0446<br \/>\n\u0422\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u044f GaAs \u0432 \u0434\u0435\u0439\u0441\u0442\u0432\u0438\u0438<br \/>\n\u0420\u0435\u0436\u0438\u043c\u044b MGC \u0438 AGC<br \/>\n\u0412\u044b\u0445\u043e\u0434\u043d\u043e\u0439 \u0443\u0440\u043e\u0432\u0435\u043d\u044c 110 \u0434\u0411\u043c\u043a\u0412 (\u0432\u0435\u0440\u0441\u0438\u044f \u0441 2 \u043f\u043e\u0440\u0442\u0430\u043c\u0438)<br \/>\n\u0417\u0430\u0449\u0438\u0442\u0430 \u043e\u0442 \u044d\u043b\u0435\u043a\u0442\u0440\u043e\u0441\u0442\u0430\u0442\u0438\u0447\u0435\u0441\u043a\u043e\u0433\u043e \u0440\u0430\u0437\u0440\u044f\u0434\u0430 \u0438 \u043f\u0435\u0440\u0435\u043d\u0430\u043f\u0440\u044f\u0436\u0435\u043d\u0438\u044f<br \/>\n\u041a\u043e\u044d\u0444\u0444\u0438\u0446\u0438\u0435\u043d\u0442 \u043e\u0442\u0440\u0430\u0436\u0435\u043d\u0438\u044f 24 \u0434\u0411 (2 \u043f\u043e\u0440\u0442\u0430)<\/p>\n<p><strong>\u0412\u0440\u0435\u043c\u044f \u0432\u044b\u043f\u043e\u043b\u043d\u0435\u043d\u0438\u044f<br \/>\n<\/strong>\u0421\u0442\u0430\u043d\u0434\u0430\u0440\u0442\u043d\u043e\u0435 \u0432\u0440\u0435\u043c\u044f \u0432\u044b\u043f\u043e\u043b\u043d\u0435\u043d\u0438\u044f \u0437\u0430\u043a\u0430\u0437\u0430 \u0443\u043a\u0430\u0437\u0430\u043d\u043e \u043d\u0438\u0436\u0435; \u0434\u043b\u044f \u0441\u0440\u043e\u0447\u043d\u044b\u0445 \u0437\u0430\u043a\u0430\u0437\u043e\u0432 \u043e\u043d\u043e \u043f\u043e\u0434\u043b\u0435\u0436\u0438\u0442 \u043e\u0431\u0441\u0443\u0436\u0434\u0435\u043d\u0438\u044e.<\/p>\n<table>\n<tbody>\n<tr>\n<td>\u041a\u043e\u043b\u0438\u0447\u0435\u0441\u0442\u0432\u043e (PCS)<\/td>\n<td>100<\/td>\n<td>1K<\/td>\n<td>&gt; 1K<\/td>\n<\/tr>\n<tr>\n<td>\u0412\u0440\u0435\u043c\u044f \u0432\u044b\u043f\u043e\u043b\u043d\u0435\u043d\u0438\u044f (\u0434\u043d\u0438)<\/td>\n<td>15<\/td>\n<td>35<\/td>\n<td>\u041f\u0440\u0435\u0434\u0441\u0442\u043e\u0438\u0442 \u0441\u043e\u0433\u043b\u0430\u0441\u043e\u0432\u0430\u0442\u044c<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p><strong>\u041f\u043e\u043a\u0443\u043f\u043a\u0430 \u043e\u0431\u0440\u0430\u0437\u0446\u043e\u0432<br \/>\n<\/strong>MOQ: 1pcs<\/p>\n<p><strong>\u041d\u0430\u0441\u0442\u0440\u043e\u0439\u043a\u0430\u00a0<\/strong><br \/>\n\u0418\u043d\u0434\u0438\u0432\u0438\u0434\u0443\u0430\u043b\u044c\u043d\u044b\u0439 \u043b\u043e\u0433\u043e\u0442\u0438\u043f \/ \u044d\u0442\u0438\u043a\u0435\u0442\u043a\u0438<br \/>\nMOQ: 1pcs<\/p>","protected":false},"featured_media":2992,"comment_status":"closed","ping_status":"closed","template":"","meta":{"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"default","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","ast-disable-related-posts":"","theme-transparent-header-meta":"default","adv-header-id-meta":"","stick-header-meta":"default","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"set","ast-page-background-enabled":"default","ast-page-background-meta":{"desktop":{"background-color":"var(--ast-global-color-4)","background-image":"","background-repeat":"repeat","background-position":"center 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