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PROSKY

Solutions

Solutions Engineered for Scale

Coordinated product ecosystems for the networks that carry critical traffic — from the first feeder cable to the last subscriber port.

CO / OLTSPLITTERSUBSCRIBERSFTTH PASSIVE PLANT — SCHEMATIC
01

FTTH Network Infrastructure

Operators extending fiber to the home must connect thousands of subscribers across feeder, distribution and drop layers while keeping per-home cost predictable. This solution covers the complete FTTH passive plant — from central-office termination through PLC split points to the subscriber terminal — with one coordinated product set.

  • Covers every network layer: feeder cable, distribution splitting, drop routes and subscriber termination
  • Supports centralized or cascaded PLC split architectures, typically 1:32 to 1:64 per OLT port
  • Outdoor loose-tube and ADSS cables serve duct, direct-buried and aerial feeder routes
  • PLC splitters housed in weather-protected distribution boxes form serviceable street-level split points
  • Field-installable SC/APC connectors and drop accessories shorten subscriber turn-up time
  • GPON OLT and XPON ONU options align the active layer with the passive plant end to end
  • Loss-budget planning across each split stage keeps links within typical GPON class limits
  • One coordinated catalogue simplifies the bill of materials and keeps per-home connection cost predictable
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ISP POPCABINETSSUBSCRIBERSISP ACCESS NETWORK — SCHEMATIC
02

ISP Deployment Solutions

Internet service providers must grow from hundreds to thousands of subscribers without re-engineering the plant at every stage. This solution structures the ISP access network — POP termination, feeder distribution and subscriber connection — so capacity is added by extension rather than replacement.

  • POP-to-subscriber architecture that scales by adding splitters and boxes, not by rebuilding routes
  • Rack- and wall-mount ODFs give the POP a clean, documented fiber termination point
  • Outdoor cables and PLC splitters carry capacity from the POP into each serving area
  • Field-serviceable distribution and terminal boxes simplify moves, adds and repairs
  • SC/APC and LC/UPC patch cords standardize connectivity between OLT, ODF and splice trays
  • GPON OLT and XPON ONU equipment options complete the optical access chain
  • Deployment guidance covers duct, aerial and facade routes common in ISP build-outs
  • Predictable per-home connection cost through a single supplier for the full access BOM
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OVERHEAD FIBER TRAYROW A — RACKS 01–05DATA CENTER INTERCONNECT — SCHEMATIC
03

Data Center Connectivity

Data centers concentrate thousands of fiber links into a few rows, where congestion, poor labeling and uncontrolled bend radius directly degrade availability. This solution structures cabinet, frame and patch-cord infrastructure so density stays manageable and every link remains documented and re-patchable.

  • Structured architecture across cabinet, ODF and patch-cord layers with defined slack and bend control
  • 42U network cabinets with cable-management provisions organize high-density rows
  • Rack-mount 24-port ODFs terminate backbone fiber with clear port mapping
  • LC/UPC duplex cords suit transceiver interfaces; SC/APC options cover carrier hand-offs
  • Connector classes selected for typical insertion-loss budgets on 10G to 100G links
  • Optical power meters and inspection tools support acceptance testing at turn-up
  • Deployment guidance covers airflow, routing separation and labeling schemes in live rooms
  • Documented, re-patchable links reduce mean time to repair on critical interconnect
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CORECAMPUS RING — 4 BUILDINGSENTERPRISE CAMPUS BACKBONE — SCHEMATIC
04

Enterprise Fiber Networks

Enterprise campuses need building-to-building backbones that outlive several generations of active equipment. This solution builds the campus optical layer on open standards — outdoor backbone cable, structured termination and documented patching — so upgrades replace electronics, not installed plant.

  • Open-standards backbone architecture that carries successive Ethernet generations without re-cabling
  • Outdoor loose-tube and ADSS cables link buildings across duct or aerial routes
  • Wall- and rack-mount ODFs terminate the backbone in each building's communications room
  • 9U wall cabinets serve floor closets; 42U cabinets anchor the main equipment room
  • LC and SC connector families cover switch uplinks and carrier demarcation alike
  • Acceptance testing with optical power meters documents every backbone link at handover
  • Deployment guidance addresses pathway sharing, grounding and fire-stopping at building entries
  • Single-catalogue BOM simplifies procurement across multi-building projects
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EXCHANGEDPDPDPSTREET CABINETSTELECOM OUTSIDE PLANT — SCHEMATIC
05

Telecom Distribution Systems

Telecom operators run distribution plant from the exchange to neighborhoods where environment, capacity and serviceability differ by segment. This solution matches each segment — exchange termination, outside-plant routes and street-level distribution — with the appropriate cable, frame and enclosure class.

  • Segment-by-segment architecture from exchange ODF to street-level distribution points
  • High-count loose-tube cables for trunk routes; ADSS spans for pole lines
  • Exchange-side distribution frames keep large fiber counts terminated, labeled and auditable
  • Weather-protected distribution boxes bring managed access points into the field
  • PLC splitters position capacity where subscriber take-up actually develops
  • Standardized SC/APC patch cords connect exchange equipment to the distribution frame
  • Deployment guidance covers duct occupancy, splice-point planning and route documentation
  • Field-serviceable enclosures shorten repair windows on live routes
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ONE BACKBONE — AP · SENSORS · BMSRISERSMART BUILDING RISER — SCHEMATIC
06

Smart Building Connectivity

Modern buildings converge internet, CCTV, access control and building management onto shared infrastructure, straining separate copper systems. This solution carries all services over one optical backbone — riser distribution, floor-level terminal boxes and ONU endpoints — reducing pathway congestion and simplifying long-term operation.

  • One converged optical backbone replaces parallel copper systems in risers and corridors
  • Riser-to-floor architecture: central equipment room, floor distribution, room-level termination
  • Compact terminal boxes give each floor a managed fiber access point
  • XPON ONUs deliver gigabit-class endpoints for tenants and building systems
  • Wall-mount 9U cabinets house floor electronics in a minimal footprint
  • Patch cords and field-installable connectors simplify in-building terminations
  • Deployment guidance covers riser pathways, bend-radius protection and service segregation
  • Scales from single towers to mixed-use complexes without re-cabling
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CIVIC CORESITE ASITE BAUDITABLE, LONG-LIFE PLANTGOVERNMENT NETWORK — SCHEMATIC
07

Government Infrastructure

Public-sector networks are specified for decades of service, strict documentation and open, vendor-neutral standards. This solution assembles the passive optical layer for government and municipal projects — long-life cable plant, auditable termination frames and documented testing — designed to align with ITU-T and IEC practice.

  • Vendor-neutral architecture on open ITU-T- and IEC-aligned interfaces avoids lock-in
  • Outdoor cable classes for duct, buried and aerial public rights-of-way
  • High-capacity distribution frames keep every fiber terminated, labeled and auditable
  • Distribution boxes extend managed access points to remote public sites
  • Network cabinets house equipment at municipal and campus nodes
  • Acceptance testing with optical power meters produces a documented handover record
  • Deployment guidance supports phased tenders and multi-contractor coordination
  • A uniform catalogue simplifies spares, maintenance contracts and future extensions
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PLANT HALLPROCESS AREACONTROLEMI-IMMUNE FIBER RUNSINDUSTRIAL OPTICAL LINKS — SCHEMATIC
08

Industrial Communication Networks

Plants and logistics sites run control and monitoring traffic across long distances, electrical noise and harsh conditions where copper fails first. This solution builds interference-immune optical links between process areas, control rooms and remote buildings, with enclosures and termination hardware selected for industrial environments.

  • EMI-immune optical links replace distance- and noise-limited copper runs
  • Site-wide architecture: control-room termination, backbone routes, area distribution points
  • Rugged outdoor cables for cable-tray, duct and catenary routes across the site
  • Sealed distribution boxes provide protected access points in process areas
  • Network cabinets organize termination and electronics in control and switch rooms
  • Fusion splicer kits and optical power meters equip in-house maintenance teams
  • Deployment guidance covers segregation from power, mechanical protection and grounding
  • Long optical spans connect remote gatehouses, tank farms and warehouses without repeaters
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