rfMAP · Use cases

What teams plan with rfMAP

Every workflow here starts from a real RF decision, not a data feature. 5G cells reach 300 to 500m and die on line-of-sight, so planning teams can no longer plan on 2D. rfMAP gives you authentic 3D geodata for the three decisions that gate a rollout.

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Why these three

RF decisions, not data features

Operators do not buy geodata, they make rollout decisions. 4G let teams plan on 2D street centerlines. 5G does not: cells reach only 300 to 500m, and line-of-sight is blocked by buildings and trees. The decisions that used to be safe on a flat map now need 3D buildings, vegetation heights and clutter to be right.

rfMAP is built for those decisions. Each workflow below begins with the question a planning team is actually asking, then shows the 3D data that answers it. Pick the decision you are making.

The three workflows

Three decisions rfMAP answers

  1. 01

    Plan and densify 5G on 3D, not 2D centerlines

    5G cells reach 300 to 500m and die on line-of-sight, so site placement and densification cannot be planned on flat 2D. Plan on 3D buildings, vegetation heights and clutter to place cells where they actually cover.

    5G rollout
  2. 02

    Qualify fixed wireless access on line-of-sight, from your desk

    Fixed wireless access lives and dies on line-of-sight. With 3D buildings and vegetation heights, you can run line-of-sight and Fresnel analysis on the desk and qualify serviceability before anyone drives to site.

    Fixed wireless
  3. 03

    Replace site visits with desk-grade 3D data

    Physical site surveys eat rollout budget and timeline. Sub-meter 3D buildings, terrain and clutter move much of that analysis to the desk, so teams send crews only where the data cannot decide.

    Survey reduction

One dataset under every decision

All three workflows read from the same authentic 3D layer stack: 3D buildings with footprints and rooftops, 3D vegetation with height attributes, 4D bridges, DTM, DSM/Clutter Height, 2D linear vectors and clutter across up to 35 land-use classes.

It is vendor-neutral and built in output formats your RF planning tools, drive-test equipment and GIS tools already speak, so the same data serves 5G, fixed wireless and survey reduction without re-formatting.

3 planning workflows

One 3D basemap, three rollout decisions.

5G densification, fixed wireless line-of-sight and survey reduction all resolve on the same authentic 3D data, read straight off the map your RF tools already speak.

Proven at scale

The 3D dataset behind India's 5G

These workflows are not a pilot. Lepton's 3D dataset underpins the overwhelming majority of 5G deployment in India, and the same authentic geodata has been mapped across 128 countries and 3150 cities for RF planning teams, network OEMs and tower companies.

>95% of India 5G deployment runs through the Lepton 3D dataset
3150 cities mapped, across 128 countries
35 land-use clutter classes in the layer stack
Trusted by >95% of India 5G deployment runs through the Lepton 3D dataset
  • Airtel
  • Reliance Jio
  • Vodafone Idea
  • Ericsson
  • Nokia
  • American Tower
Get started

Plan your next rollout on 3D, on your own area of interest.

Bring a city or a target footprint. We will walk through rfMAP layers for the RF decision you are making, with our team.

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