01Greenfield Critical Infrastructure
Define communications, automation, security, facility and energy systems while the project can still benefit from coordinated architecture, pathways, spaces and construction planning.

TEKEPC begins with the operating environment, project stage, constraints and required outcome. We then determine the systems, architecture, technologies and delivery method needed to create a practical project.
The facility, project opportunity or required outcome is known, but the technical scope is not yet established.
Begin Here →02The application is defined and requires architecture, calculations, specifications and implementation planning.
Begin Here →03A specification or bid package requires technical evaluation, product selection, costing or supplier coordination.
Begin Here →04An operating system requires assessment, migration, phased execution, recommissioning or lifecycle support.
Begin Here →These applications demonstrate how TEKEPC combines communications, automation, security, facility systems and energy capabilities around one operating requirement. Each page develops the application further without repeating generic service content.
01Define communications, automation, security, facility and energy systems while the project can still benefit from coordinated architecture, pathways, spaces and construction planning.
02Recover the installed baseline, identify operational and lifecycle risks, and modernize active systems through controlled migration, testing and phased commissioning.
03Coordinate plant and distributed-asset requirements across SCADA, telemetry, instrumentation, communications, security, pumping and process-water operations.
04Develop resilient production, communications, control, security and facility-support systems for precise, high-availability and highly coordinated manufacturing environments.
05Engineer high-density connectivity, structured cabling, fiber distribution, security, monitoring and lifecycle-ready physical infrastructure for mission-critical facilities.
06Integrate process control, industrial communications, telemetry, field security, emergency communication, water systems and distributed operational assets.
The objective is not to force a preferred product into the project. The objective is to establish a defensible technical baseline and select the most suitable solution for the operating requirement.
Define the operating objective, performance requirement, stakeholders, constraints, risks and required business outcome.
Determine the necessary communications, automation, security, building, energy and operational-information disciplines.
Develop physical, logical and functional architecture appropriate to the site, installed base, availability requirement and future growth.
Evaluate products and manufacturers according to compatibility, maintainability, interoperability, cybersecurity, support and lifecycle value.
Define engineering packages, procurement strategy, construction sequence, migration controls, commissioning requirements and operational handover.
Application pages are organized by operating environment rather than by manufacturer. Each environment connects the client’s problem to relevant engineering capabilities, services, platforms and solution paths.
Applications requiring reliable communications, telemetry, cybersecurity and remote operational visibility across dispersed assets.
Connected and secure environments supporting movement, operations, public safety and geographically distributed facilities.
Applications combining network infrastructure, physical security, building controls, energy monitoring and multi-building connectivity.
Applications requiring coordinated automation, operational technology, communications, safety systems and lifecycle engineering.
A complete design package is not required. Even limited project information can help establish the correct next step.
New facility, expansion, operating site, modernization, tender or early-stage concept.
What must improve, become visible, become secure, become automated or become maintainable.
Drawings, specifications, photographs, asset lists, network diagrams, control narratives or tender files.
Schedule, budget, shutdown windows, existing standards, preferred vendors, site conditions or regulatory requirements.
Existing PLC, RTU, SCADA, network, fiber, security, BMS, energy and field-instrumentation assets.
Architecture, technology, product selection, modernization strategy, pricing, constructability or complete EPC delivery.
Describe the facility, operating challenge or desired outcome. TEKEPC will identify the closest application, relevant engineering disciplines and the most practical next step.