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TEKEPC

Build the passive infrastructure every connected system depends on.

TEKEPC engineers and delivers outside-plant fiber, building backbones, structured cabling, optical distribution, GPON, pathways, racks and lifecycle documentation as one coordinated passive infrastructure system.

Greenfield

Plan capacity before construction

Brownfield

Expand without losing control

Lifecycle

Document, test and maintain

Outside-plant fiber installation, telecommunications pathways, racks, optical distribution and structured cabling

More than cable installation

Passive infrastructure decisions made during planning affect network availability, security, maintainability, expansion cost and every connected operational system throughout the facility lifecycle.

Application

What systems, users, facilities and operational assets must be connected?

Architecture

Which topology, medium, spaces and distribution strategy best fit the project?

Capacity

What fiber count, pathway fill, rack space, power and growth allowance are required?

Lifecycle

How will the infrastructure be tested, identified, maintained, expanded and governed?

One coordinated passive-infrastructure scope

TEKEPC develops the infrastructure from the outside-plant route through the building entrance, backbone, telecommunications spaces, distribution hardware and final connected endpoint.

01

Outside-Plant Fiber Infrastructure

Duct banks, direct-buried routes, handholes, maintenance holes, aerial pathways, outdoor cabinets, splicing points and building entrances.

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02

Fiber-Optic Backbone Systems

Single-mode and multimode backbones connecting buildings, plants, control rooms, telecom spaces, remote assets and operational systems.

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03

Structured Copper Cabling

Category cabling, horizontal distribution, consolidation points, work-area connectivity, PoE readiness and administration.

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04

GPON & XGS-PON Infrastructure

Optical distribution networks, splitters, OLT and ONU infrastructure, fiber protection, testing and application-based architecture.

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05

Racks, Cabinets & Distribution Frames

Equipment racks, outdoor cabinets, ODFs, patch panels, cable managers, grounding, environmental requirements and equipment layouts.

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06

Pathways & Telecommunications Spaces

Telecommunications rooms, entrance facilities, conduits, trays, ladder racks, sleeves, clearances, capacity and future expansion.

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07

Splicing, Testing & Certification

Fusion splicing, OTDR testing, optical-loss testing, copper certification, polarity verification, traceability and acceptance records.

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08

Administration & Lifecycle Documentation

Labels, port schedules, fiber assignments, rack elevations, as-built drawings, test records, asset registers and lifecycle baselines.

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Problems this service is designed to solve

Infrastructure failures are often created long before cable is installed. TEKEPC addresses the design, coordination, constructability and lifecycle conditions that create those failures.

Insufficient capacity

Pathways, fiber counts, rack space or telecommunications rooms cannot support expansion.

Establish present and future demand, calculate capacity requirements and engineer pathways, spaces and distribution systems with practical growth allowance.

Disconnected project disciplines

Architectural, electrical, civil, security, automation and IT designs are developed independently.

Coordinate building entrances, pathways, grounding, equipment spaces, outdoor systems and connected applications through one integrated passive-infrastructure architecture.

Uncontrolled brownfield expansion

Years of additions have produced undocumented ports, congested pathways and uncertain fiber assignments.

Recover the installed baseline, test existing assets, identify reusable infrastructure and develop a controlled remediation and migration plan.

Testing without lifecycle value

Test reports exist, but they are not connected to labels, drawings, assets or future maintenance.

Create traceable test records linked to cable IDs, ports, routes, rack elevations, fiber assignments and final as-built documentation.

Technology selected before application

A copper, Ethernet, GPON or fiber solution is selected without evaluating operating requirements.

Compare architecture alternatives according to distance, bandwidth, resilience, cybersecurity, maintainability, environment and total lifecycle value.

From the site boundary to the connected device

The passive infrastructure is developed as a layered system. Each layer is engineered to support the next while preserving constructability, testability and lifecycle control.

01

Site & Outside Plant

Connect buildings, process areas and remote assets across the project site.

Route and topology development
Duct banks and conduits
Handholes and maintenance holes
Direct-buried and aerial systems
Outdoor cabinets and enclosures
Building entrance protection
02

Backbone Distribution

Provide the optical capacity and resiliency required between facilities and telecommunications spaces.

OS2 and multimode fiber
Fiber counts and spare capacity
Redundant and diverse routing
Campus and industrial backbones
Splicing and transition points
Optical-loss budgeting
03

Telecommunications Spaces

Create organized, maintainable and environmentally suitable equipment and distribution locations.

Entrance facilities
Main equipment rooms
Telecommunications rooms
Racks and cabinets
ODFs and patch panels
Grounding and bonding
04

Horizontal & Access Distribution

Extend connectivity from the distribution system to users, systems and operational endpoints.

Category copper cabling
Fiber-to-the-zone
GPON and XGS-PON
Consolidation points
PoE-connected systems
Industrial field connectivity
05

Testing & Lifecycle Baseline

Verify performance and deliver a controlled information baseline for future operation.

OTDR and optical-loss testing
Copper certification
Polarity and continuity checks
Labels and administration
As-built drawings
Asset and port schedules

Application-based architecture selection

TEKEPC does not automatically prescribe copper, active Ethernet, GPON or another preferred technology. The architecture is selected according to how the infrastructure must perform and be operated.

Decision factor
Structured copper
Active Ethernet + fiber
GPON / XGS-PON
Typical use
Local device and user connectivity
High-bandwidth switched networks
Long-distance distributed access
Distance
Limited horizontal channel
Extended through optical backbone
Long optical reach through split architecture
Field footprint
Telecommunications rooms and patching
Active switches and powered cabinets
Passive splitters with centralized OLT
Power requirement
At endpoint and active network layer
At each switching location
Reduced power in passive distribution
Best decision basis
Density, PoE and local connectivity
Bandwidth, segmentation and resilience
Distance, scale and centralized operations

Final architecture depends on bandwidth, distance, topology, redundancy, environmental conditions, cybersecurity, connected applications, maintenance capability and the owner’s standards.

Delivered through the complete EPC lifecycle

TEKEPC can support a specific technical package or coordinate the infrastructure from early application definition through construction, acceptance and operational handover.

01

Assess

Review applications, sites, existing pathways, telecommunications spaces, installed assets and project constraints.

02

Engineer

Develop architecture, routes, capacities, layouts, details, schedules, specifications and testing requirements.

03

Procure

Evaluate compliant cable, connectivity, racks, cabinets, pathways and optical-distribution components.

04

Construct

Install pathways, pull cable, splice fiber, terminate connectivity, label assets and coordinate site execution.

05

Validate

Test, certify, inspect, correct deficiencies, document the installed system and establish the handover baseline.

Typical engineering and project deliverables

Deliverables are adapted to the project phase, owner standards and procurement strategy. They may support concept development, tendering, construction or final operational handover.

Engineering

Basis of design
Telecommunications architecture
Fiber topology diagrams
Route and pathway drawings
Room and rack layouts
Cable and termination schedules

Procurement

Equipment and material specifications
Bills of materials
Technical bid evaluations
Product-compliance reviews
Shop-drawing and submittal reviews
Supplier-interface coordination

Construction

Installation work packages
Splicing and termination plans
Label and administration scheme
Inspection and quality records
Testing and deficiency tracking
Commissioning procedures

Handover

OTDR and loss-test reports
Copper certification reports
As-built drawings
Fiber and port assignments
Rack elevations
Asset and lifecycle records

Information that helps us begin

A complete design is not required. Early drawings, photographs, equipment lists or operating requirements can be enough to establish the correct engineering next step.

Project context

Facility type and location
Greenfield, expansion or brownfield
Project phase and schedule
Owner and consultant standards

Connected applications

IT and enterprise connectivity
Automation and operational technology
Security, video and access control
Building, fire and energy systems

Available documents

Site plans and floor plans
Existing network diagrams
Rack and room photographs
Cable, port or fiber schedules

Known constraints

Distance and pathway conditions
Shutdown and migration windows
Environmental requirements
Budget, phasing and future growth

Build the passive infrastructure around the application—not around a product list.

Share the facility, connected systems, project stage and required outcome. TEKEPC will identify the architecture, engineering scope and delivery path required for a maintainable infrastructure baseline.