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Civil design and permitting for point-to-point and point-to-multipoint wireless networks — specializing in solar-coupled deployments and redundant connectivity for rural communities.
Interactive Network View
A sample network topology showing how tower sites, base stations, and subscriber endpoints connect through P2P backhaul and P2MP access links. Click any node to explore the network architecture.
What We Design
From dedicated P2P backhaul links to community-scale P2MP networks — we design the civil infrastructure that supports modern wireless connectivity.
Engineering Deliverables
Complete civil engineering packages for tower installations — from site grading through construction-ready documents, all produced in AutoCAD Civil 3D.
Complete site plans for monopole, self-support, and guyed tower installations — including grading, access roads, equipment pads, fencing, and stormwater management.
Antenna mounting plans, equipment shelter placement, cable tray routing, and ice bridge details for wireless installations on towers, rooftops, and elevated structures.
Coordination with structural engineers for tower loading analysis, foundation design review, and mount engineering — ensuring all equipment loads are accounted for.
Site plan packages for municipal zoning approval, FAA notifications, FCC compliance documentation, and conditional use permit applications for tower installations.
Link budget documentation, path profile drawings, coverage prediction exhibits, and interference analysis support for P2P and P2MP network planning.
Power service design, telco demarc coordination, access road grading, and utility routing to tower compound — all produced in AutoCAD Civil 3D.
System-wide network diagrams showing P2P links, P2MP sectors, backhaul routing, failover paths, and interconnection points between tower sites.
Site plans integrating solar arrays, battery storage, and backup generator systems for off-grid or hybrid-powered tower sites in rural locations.
Rural Connectivity
Solar installations are expanding across rural America. We couple wireless infrastructure with solar sites to bring broadband, SCADA backhaul, and redundant connectivity to areas that need it most.
Leverage existing solar infrastructure to extend broadband and monitoring networks into underserved rural areas without building entirely new infrastructure.
P2MP networks with redundant backhaul ensure communities stay connected even when a single link goes down — critical for areas with limited connectivity options.
Solar-powered tower sites with battery backup can operate independently of the grid, enabling broadband deployment in the most remote locations.
A single P2MP base station can serve dozens of subscribers across miles, making it economically viable to bring broadband to low-density rural areas.
Engineering Tools
Plan your wireless link with real propagation models. Adjust frequency, distance, antenna parameters, and environment to calculate path loss, Fresnel zone clearance, and link viability — powered by the same models used in professional RF planning tools.
Coverage Planning
Visualize the coverage footprint of a base station across different environments. Select equipment, adjust tower height and power, and see how signal strength decreases with distance using Hata, COST-231, and free-space propagation models.
From initial path studies through construction-ready tower site plans — these are the deliverables that get your wireless network permitted, built, and connected.
Discuss Your ProjectWhether you're deploying P2P backhaul, building a P2MP network for rural broadband, or coupling wireless infrastructure with a solar installation — tell us about your project and we'll deliver a scope of work.
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