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FlightLab Roof
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FlightLab Roof

Dachaufmaß aus Drohnenbildern – vom Flug zur fertigen Fläche, vollständig offline.

• Dachflächen in der Schräge statt im Grundriss, Fenster und Kamine als Aussparung abgezogen
• Neigung in Grad und Prozent, Fallrichtung, Kantenlängen für First, Traufe, Grat und Kehle
• Läuft mit gewöhnlichen Kameradrohnen, auch unter 250 g – kein RTK, keine Passpunkte
• Export als OBJ, PLY, LAS, LAZ, E57, DXF und CSV, inklusive Standortdatei für PV*SOL
• Kauflizenz, dauerhaft, ein Arbeitsplatz – kein Abo, Freischaltung ohne Internet

14 Tage kostenlos testen, voller Funktionsumfang, ohne Anmeldung.

€490,00 EUR
Taxes included.

Gerätekennung

Steht im Programm unter „Lizenz" — dort gibt es einen Kopieren-Knopf. Sie können sie auch nachreichen.

Rücktrittsrecht

Die Software wird sofort bereitgestellt. Nach § 18 Abs 1 Z 11 FAGG entfällt das 14-tägige Rücktrittsrecht, sobald die Ausführung mit Ihrer ausdrücklichen Zustimmung beginnt. Ohne diese Zustimmung können Sie nicht fortfahren.

Roof measurements, outlines and a 3D model from drone photos. Fully offline, perpetual license.

You don't need an expensive survey drone

FlightLab Roof works with ordinary camera drones — including the light models under 250 grams. No RTK, no extra hardware, no ground control points. What the camera writes into the image file about position and orientation is all the software needs.

DJI Mini · Potensic Atom · and comparable camera drones with GPS

Download the free trial

14 days, full functionality. Compute, measure, export — nothing is locked. No sign-up, no email address, no payment details.

⎓ Download the trial

260 MB · Windows 10 or 11 (64-bit)

Tip for buying later: the device ID is shown in the program. Have it ready when you order and enter it in the field next to the product — the key then arrives by email automatically right after payment.

What you measure with it

  • Roof area on the slope — not the footprint. A roof at 30 degrees has about 15 % more area: on a 2,150 sq ft footprint that is a good 320 sq ft of extra covering.
  • Net area with cut-outs — trace skylights, chimneys and existing PV, and the software subtracts them. When you save, each cut-out counts toward the roof area whose outline it lies in — even if it was drawn on a different area. What you see is the figure you order.
  • Pitch in degrees and percent, plus the aspect — for laying out the PV system.
  • Edge lengths for ridge, eaves, hips and valleys, measured along the surface, not in plan.
  • Check your figures — re-measure an edge whose length you know. If it's off, you can calibrate the model with one click.
  • Meters or feet — the display and the exports switch between meters, international feet and US survey feet; the model itself is always computed in meters.
  • Pass the model on to PV planning, the sheet-metal shop or the structural engineer — OBJ with texture, PLY, LAS, LAZ or E57.
  • Fully offline — no cloud account, no telemetry, nothing about you or your projects leaves your PC. Activation works offline too. The program asks the outside world one thing only: whether a newer version exists — once at startup in the background, and when you click Check for updates in the “About FlightLab” window. Without internet it stays silent.
  • English and German — the interface and every export.

How it works

  1. Load the photos
  2. Measure
  3. Export dimensions, outlines and 3D models

After loading, you outline the roof on the overview image and confirm the selection. The program then asks once how precisely to compute, and computes point cloud, mesh and texture in one run.

How precisely should it compute?

Standard 1,600 pixels in the dense step — the normal case
High 2,800 pixels — the spacing of the measured points is halved, the dense steps take about twice as long
Maximum as large as your graphics card can handle, up to the full size of the photos — at a multiple of the computing time; on an 8 GB card with 50-megapixel photos that is 4,700 instead of 8,192 pixels, the full size would need more than 20 GB

Each card shows the expected point spacing and the duration for your project; the duration learns from the runs on your PC. Before starting, the program works out how much graphics memory the level needs — anything that does not fit your card does not start at all. You can recompute a finished project at a higher level any time from the “Point cloud” layer; saved measurements are re-evaluated on the new model.

The four measuring tools

Check/Calibrate Re-measure an edge of known length: deviation in the chosen unit and in percent — and, if you want, calibrate the model with one click
Distance Slope distance, horizontal distance, height difference and pitch in degrees and percent
Roof area Area on the slope and in plan, pitch, aspect, perimeter — with cut-outs for skylights, chimneys and existing PV
Polyline A line that lays itself onto the roof surface — ridge, eaves, hip, valley; it follows the computed 3D model (the mesh) with a point every 5 cm (2 inches), so narrow features like a firewall or a chimney come out as wide as they are

Above the tools you choose what a click snaps to: Mesh, Points or Free. Mesh hits the computed surface between the measured points — the default as soon as a mesh exists, because on a flat roof plane it averages out the noise of individual points. Points snaps to the nearest measured point — the right choice at eaves, ridge and hips, where the mesh rounds the edge. Free places the point where you click, even where nothing was measured. Next to every saved measurement there is a checkbox: checked, it stays in the view — areas hatched, distances and polylines as lines — with its name and main figure, for areas also the pitch, polylines with the name only. The label stays the same size at every zoom and moves out of the way when you place a cut-out under it; the checkbox is saved with the project. The figures are the same as in CSV and DXF.

What comes out

Point cloud PLY, LAS, LAZ, E57
3D model OBJ, mesh PLY, textured OBJ with location file
Dimensions and outlines CSV, DXF

The CSV follows the selected language: separator, decimal mark and column headers suit English Excel as well as German. The textured OBJ is the format for PV planning. Alongside the model file, a location file is written so that the building sits in the right place in PV*SOL and the solar irradiation is computed for your site.

Roof or Reality?

If you need terrain models, classification into ground, vegetation and buildings, a comparison of two flights, volume calculation, orthophotos, or more than 500 photos in one 3D model, you need FlightLab Reality.

System requirements

Operating system Windows 10 or 11, 64-bit
Memory 16 GB, more doesn't hurt
Graphics card NVIDIA with CUDA, at least 8 GB of graphics memory (16 GB recommended), GeForce GTX 10xx or newer. Without an NVIDIA card the program does not compute — AMD and Intel graphics are not supported.
Storage SSD, about 1 GB per roof project
Internet not required — not even for activation

The program checks the graphics card and the compute core at startup and tells you whether they are sufficient.

License and activation

License type Purchase license, perpetual, one workstation
Subscription none
Trial 14 days, full functionality
Activation Enter the device ID in the field next to the product when you buy — the key arrives by email automatically right after payment. The ID is shown in the program. If you don't have it at hand when ordering, leave the field empty and send it to roof@flightlab.at afterwards; the key arrives the same way. It is applied offline, without internet.
Change of computer free once per year — for a defect, a new machine or any other reason. A short message with the new device ID to roof@flightlab.at, and the new key comes back.
Language English and German — inquiries in English are answered in English

The license covers one workstation and is tied to the device. If the computer breaks or is replaced, you get a new key free once per year — so the license stays bound to one workstation and does not keep wandering between several machines. The program transmits nothing about you and nothing from your projects — activation works offline too. The only outbound request is the check for a newer version: once at startup in the background and when you click Check for updates in the “About FlightLab” window; what is transmitted is the software's version number and what every internet request carries anyway. If a newer version exists, Update available appears at the top; Download saves the setup to your “Downloads” folder, the program checks its size and the publisher's signature, and Install now starts the setup, which installs over the existing version — projects, activation and settings are kept.


Drone Life Systems FlexCo · Unterfreundorf 17, A-4076 Unterfreundorf, Austria · Company register FN 624110i · VAT ID ATU80636956 · GISA 37719746
Security reports: security@flightlab.at

Systemvoraussetzungen:
Windows 10 oder 11, 64 Bit
16 GB Arbeitsspeicher, mehr schadet nicht
NVIDIA-Grafikkarte mit CUDA ab 6 GB – ohne läuft es ebenfalls, nur langsamer
SSD, rund 1 GB je Dachprojekt
Kein Internetzugang erforderlich, auch nicht zum Freischalten

Messwerkzeuge:
Prüfen/Kalibrieren – Kante mit bekanntem Maß nachmessen, Abweichung in Millimetern und Prozent, Modell auf Wunsch mit einem Klick kalibrieren
Strecke – Schrägstrecke, Horizontalstrecke, Höhenunterschied, Neigung in Grad und Prozent
Dachfläche – Fläche in der Schräge und im Grundriss, Neigung, Fallrichtung, Umfang, mit Aussparungen für Fenster, Kamine und Bestands-PV
Kontur – Linienzug auf der Dachfläche für First, Traufe, Grat und Kehle

Ausgabeformate:
Punktwolke: PLY, LAS, LAZ, E57
3D-Modell: OBJ, Netz-PLY, texturiertes OBJ samt Standortdatei für PV*SOL
Maße und Konturen: CSV, DXF
CSV-Trennzeichen, Dezimalzeichen und Spaltenköpfe folgen der eingestellten Sprache

Grenzen:
Bis 500 Aufnahmen je Projekt
Kein Geländemodell, keine Klassifizierung, kein Orthofoto, kein Befliegungsvergleich, keine Volumenberechnung – dafür FlightLab Reality
Lieferumfang:
Kauflizenz, dauerhaft, für einen Arbeitsplatz, ohne Ablaufdatum
Kein Abo, keine laufende Online-Prüfung
Freischaltung: Gerätekennung beim Kauf in das Feld beim Produkt eintragen — der Schlüssel kommt gleich nach der Zahlung automatisch per E-Mail. Die Kennung steht im Programm; wer sie beim Bestellen noch nicht zur Hand hat, reicht sie an roof@flightlab.at nach. Eingesetzt wird der Schlüssel offline, ohne Internet
14 Tage Testphase mit vollem Funktionsumfang, ohne Anmeldung und ohne Zahlungsdaten
Rechnerwechsel: einmal pro Jahr kostenlos — bei Defekt, Neugerät oder aus welchem Grund auch immer. Kurze Nachricht mit der neuen Gerätekennung an roof@flightlab.at, der neue Schlüssel kommt zurück
Deutsch- und englischsprachige Programmoberfläche und Ausgaben
Support per E-Mail — Anfragen auf Englisch werden auf Englisch beantwortet
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