{"product_id":"12-core-multi-fiber-optic-breakout-patch-cable","title":"12-Core Multi-Fiber Optic Breakout Patch Cable","description":"\u003cdiv class=\"product-description-wrapper\" style=\"font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, Helvetica, Arial, sans-serif; color: #333333; line-height: 1.6; font-size: 15px;\"\u003e\n    \n    \u003cp\u003eModern data networks, complex enterprise facilities, and high-density industrial systems demand advanced infrastructure that simplifies heavy infrastructure pathways while maintaining premium structural integrity. The \u003cstrong\u003e12-Core Multi-Fiber Optic Breakout Patch Cable\u003c\/strong\u003e is specifically engineered to replace multiple individual duplex lines with a single, ultra-reliable structural trunk assembly. Housing twelve color-coded, sub-bundled optical strands under a ruggedized master protective jacket, this heavy-duty multi-fiber cable significantly cleans up installation routing inside high-volume server cabinets, horizontal trays, and vertical building risers.\u003c\/p\u003e\n    \n    \u003cp\u003eOptimized for enterprise network backbones, data center cross-connect arrays, telecommunications switching hubs, and localized optical distribution units, this high-performance breakout assembly guarantees seamless multi-channel routing, minimal cross-talk anomalies, and exceptional longevity across complex internal architectures.\u003c\/p\u003e\n\n    \u003ch3 style=\"font-size: 20px; color: #111111; margin-top: 25px; margin-bottom: 12px; border-bottom: 1px solid #e5e5e5; padding-bottom: 6px;\"\u003eHigh-Density Breakout Architecture and Mechanical Safety\u003c\/h3\u003e\n    \u003cp\u003eRunning separate patch cables across extensive horizontal bays or vertical conduits leads to congested pathways, uneven distribution stress, and high structural tracking risks. The multi-fiber breakout configuration solves this constraint by consolidating twelve separate optical lines into a single streamlined master run. Each individual internal strand is isolated inside its own structural sub-jacket layer, complete with dedicated aramid yarn synthetic structural reinforcement members. This internal framework allows the breakout tails to split out neatly at patch panels, connecting directly into individual transceivers or modular ports without needing external splice trays or custom protection boxes.\u003c\/p\u003e\n    \n    \u003cp\u003eTo withstand long physical deployment spans, the master assembly contains a central dielectric strength member that controls mechanical strain, preventing heavy installation pulling forces from reaching the internal glass elements. The thick outer structural casing is extruded using premium, flame-retardant materials designed to withstand structural compression and shearing forces. For field teams, infrastructure engineers, or installation specialists looking for heavy-duty fiber termination equipment or precision fusion splicers to manage multi-fiber lines on site, browse our comprehensive lineup of telecom machinery in the primary warehouse inventory.\u003c\/p\u003e\n\n    \u003ch3 style=\"font-size: 20px; color: #111111; margin-top: 25px; margin-bottom: 12px; border-bottom: 1px solid #e5e5e5; padding-bottom: 6px;\"\u003eOptical Glass Precision and Terminal Configuration Options\u003c\/h3\u003e\n    \u003cp\u003eThe core configuration relies on twelve premium, meticulously manufactured glass strands tailored to strict international performance standards. Available in singlemode OS2 arrays for long-distance optical routing or multimode OM3\/OM4 layouts for high-speed local data pipelines, this high-capacity patch jumper delivers optimized attenuation stability across all operational bandwidth regions. When deployed in singlemode setups at 1310nm and 1550nm, the system eliminates modal dispersion anomalies, maintaining clean signal returns across long campus distances and enterprise networks.\u003c\/p\u003e\n    \n    \u003cp\u003eThe breakout end-faces are terminated using heavy-duty, field-proven connectors like LC or SC variants, housed inside structural ceramic ferrules that prevent geometric alignment shifting over time. Every termination head undergoes an exhaustive Ultra Physical Contact (UPC) geometric finishing process. This polishing method removes microscopic anomalies, creating a highly polished, dome-shaped surface that maximizes direct physical glass-to-glass interface alignment.\u003c\/p\u003e\n    \n    \u003cp\u003eThis results in exceptionally low channel loss statistics (typical insertion loss ≤ 0.25dB) and high structural return loss capabilities (typical singlemode ≥ 50dB), protecting sensitive transceiver systems from performance-degrading back-reflections. For enterprise teams mapping complex distribution configurations or updating permanent multi-channel fiber setups, consult our high-performance distribution frameworks to review professional optical management platforms.\u003c\/p\u003e\n\n    \u003ch3 style=\"font-size: 20px; color: #111111; margin-top: 25px; margin-bottom: 15px; border-bottom: 1px solid #e5e5e5; padding-bottom: 6px;\"\u003eKey Technical Specifications\u003c\/h3\u003e\n    \u003ctable style=\"width: 100%; border-collapse: collapse; margin-bottom: 25px; font-size: 14px;\"\u003e\n        \u003ctbody\u003e\n            \u003ctr style=\"background-color: #f9f9f9;\"\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold; width: 35%;\"\u003eCable Assembly Type\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003e12-Core Multi-Fiber Breakout Patch Cable\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eStrand Configuration\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003e12 Individual Strands (Color-Coded Sub-Bundles)\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr style=\"background-color: #f9f9f9;\"\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eAvailable Core Types\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003eSinglemode OS2 (9\/125µm) \/ Multimode OM3 or OM4 (50\/125µm)\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eTermination Interfaces\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003eLC\/UPC, SC\/UPC, or Custom Multi-Terminal Arrays\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr style=\"background-color: #f9f9f9;\"\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eInsertion \/ Return Loss\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003e≤ 0.25dB Max \/ ≥ 50dB (Singlemode UPC Polish Variant)\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eStructural Strength Member\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003eCentral Dielectric Member with Internal Aramid Yarn Layers\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr style=\"background-color: #f9f9f9;\"\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eJacket Standard Options\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003eLSZH (Low Smoke Zero Halogen) or Commercial Grade PVC\u003c\/td\u003e\n            \u003c\/tr\u003e\n            \u003ctr\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5; font-weight: bold;\"\u003eOperational Temperature\u003c\/td\u003e\n                \u003ctd style=\"padding: 10px; border: 1px solid #e5e5e5;\"\u003e-20°C to +70°C\u003c\/td\u003e\n            \u003c\/tr\u003e\n        \u003c\/tbody\u003e\n    \u003c\/table\u003e\n\n    \u003ch3 style=\"font-size: 20px; color: #111111; margin-top: 25px; margin-bottom: 12px; border-bottom: 1px solid #e5e5e5; padding-bottom: 6px;\"\u003eDeployment and Maintenance Protocols\u003c\/h3\u003e\n    \u003col style=\"padding-left: 20px; margin-bottom: 25px;\"\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\n\u003cstrong\u003eObserve Pulling Eye Standards:\u003c\/strong\u003e During complex conduit routing, always pull the assembly using a pre-installed pulling eye secured to the central strength member or outer jacket structure. Never pull by the individual breakout tails, as this can degrade connection interfaces and stretch internal glass elements.\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\n\u003cstrong\u003eMaintain Bend Radius Standards:\u003c\/strong\u003e Ensure the breakout transition junction (the protective molding where the individual sub-cables exit the master jacket) is kept completely flat and strain-free. Do not bend the master trunk below a 20x outer diameter radius during active installation runs.\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\n\u003cstrong\u003eRigorous Ferrule Cleaning Routines:\u003c\/strong\u003e Managing twelve distinct channels increases the risk of dust contamination. Clean each connection ferrule using a professional mechanical click-cleaner prior to insertion. For network teams launching high-capacity backbones, verify all connections using specialized optical validation gear.\u003c\/li\u003e\n    \u003c\/ol\u003e\n\n    \u003ch3 style=\"font-size: 20px; color: #111111; margin-top: 25px; margin-bottom: 12px; border-bottom: 1px solid #e5e5e5; padding-bottom: 6px;\"\u003eRelated Fiber Optic Assets \u0026amp; Collections\u003c\/h3\u003e\n    \u003cp\u003eTo scale out your full architectural network setup or cross-compare with other high-precision termination variants, please explore our alternative setups and hardware solutions below:\u003c\/p\u003e\n    \u003cul style=\"padding-left: 20px; margin-bottom: 25px;\"\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\u003ca href=\"https:\/\/g052apyxprvg6fq4-67418882304.shopifypreview.com\/products_preview?preview_key=5c0c5c957b08586848aadd7ed850dcd6\" style=\"color: #0066cc; text-decoration: none; font-weight: bold;\"\u003eView Multimode Duplex Deployment Specifications (Variant Option 1)\u003c\/a\u003e\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\u003ca href=\"https:\/\/g052apyxprvg6fq4-67418882304.shopifypreview.com\/products_preview?preview_key=03a8c58a1cea33c4cc37b08f215ecf16\" style=\"color: #0066cc; text-decoration: none; font-weight: bold;\"\u003eCheck High-Density Optical Interconnect Profiles (Variant Option 2)\u003c\/a\u003e\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\u003ca href=\"https:\/\/g052apyxprvg6fq4-67418882304.shopifypreview.com\/products_preview?preview_key=b8d258db5827c5f1e60a1ff4ccfbb45d\" style=\"color: #0066cc; text-decoration: none; font-weight: bold;\"\u003eShop Dynamic Fiber Distribution Management Modules (Variant Option 3)\u003c\/a\u003e\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\u003ca href=\"https:\/\/g052apyxprvg6fq4-67418882304.shopifypreview.com\/products_preview?preview_key=1f0de7548b838704f4bb8e187ff5c84a\" style=\"color: #0066cc; text-decoration: none; font-weight: bold;\"\u003eView Advanced Mode-Conditioning Structural Assets (Variant Option 4)\u003c\/a\u003e\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\u003ca href=\"https:\/\/g052apyxprvg6fq4-67418882304.shopifypreview.com\/products_preview?preview_key=93634bac500187019b725f0fa1b354bd\" style=\"color: #0066cc; text-decoration: none; font-weight: bold;\"\u003eBrowse Heavy-Duty Industrial Armored Component Networks (Variant Option 5)\u003c\/a\u003e\u003c\/li\u003e\n        \u003cli style=\"margin-bottom: 8px;\"\u003e\u003ca href=\"https:\/\/g052apyxprvg6fq4-67418882304.shopifypreview.com\/products_preview?preview_key=afbbe0f7fe190c7a543781a87bca3e89\" style=\"color: #0066cc; text-decoration: none; font-weight: bold;\"\u003eExplore Modular High-Capacity Distribution Systems (Variant Option 6)\u003c\/a\u003e\u003c\/li\u003e\n    \u003c\/ul\u003e\n\n    \u003ch3 style=\"font-size: 20px; color: #111111; margin-top: 25px; margin-bottom: 12px; border-bottom: 1px solid #e5e5e5; padding-bottom: 6px;\"\u003eFrequently Asked Questions (FAQ)\u003c\/h3\u003e\n    \n    \u003cdiv style=\"margin-bottom: 15px;\"\u003e\n        \u003cp style=\"font-weight: bold; margin-bottom: 4px; color: #111111;\"\u003eQ: What is the main structural advantage of using a 12-core breakout cable over standard duplex cords?\u003c\/p\u003e\n        \u003cp style=\"margin-top: 0; margin-bottom: 10px;\"\u003eA: A 12-core breakout cable consolidates twelve individual fiber lines into a single master protective jacket. This eliminates cable clutter, improves airflow within server enclosures, and protects individual strands via a central strength member, simplifying cable management.\u003c\/p\u003e\n    \u003c\/div\u003e\n    \n    \u003cdiv style=\"margin-bottom: 15px;\"\u003e\n        \u003cp style=\"font-weight: bold; margin-bottom: 4px; color: #111111;\"\u003eQ: Are the internal strands individual or ribbonized within the breakout configuration?\u003c\/p\u003e\n        \u003cp style=\"margin-top: 0; margin-bottom: 10px;\"\u003eA: The internal fibers are configured as individual sub-bundled strands, each protected by its own sub-jacket layer and aramid reinforcement yarn. This allows each leg to function independently, splitting out to separate ports without needing external breakout kits.\u003c\/p\u003e\n    \u003c\/div\u003e\n    \n    \u003cdiv style=\"margin-bottom: 15px;\"\u003e\n        \u003cp style=\"font-weight: bold; margin-bottom: 4px; color: #111111;\"\u003eQ: Can I order this 12-core breakout cable with mixed singlemode and multimode fibers inside?\u003c\/p\u003e\n        \u003cp style=\"margin-top: 0; margin-bottom: 10px;\"\u003eA: Standard configurations require matching fiber types across all twelve strands—either all singlemode OS2 or all multimode OM3\/OM4—to avoid optical core mismatches. For custom hybrid structural distributions, connect with our support team to explore engineering possibilities.\u003c\/p\u003e\n    \u003c\/div\u003e\n\n\u003c\/div\u003e","brand":"SUPER FLASH","offers":[{"title":"Default Title","offer_id":49032972763392,"sku":null,"price":0.0,"currency_code":"AED","in_stock":true}],"url":"https:\/\/superflash.ae\/products\/12-core-multi-fiber-optic-breakout-patch-cable","provider":"Super Flash General Trading LLC","version":"1.0","type":"link"}