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Aerial photography

Coverage-Maximization and Cost-Efficient Solution

Cadastral surveying
Mining and aggregates
Topographical surveys
Urban planning
Construction surveying

Why would you choose drone for surveying, drone mapping, and drones for other similar tasks?

When it comes to land inspections, mapping, and drone surveying, accuracy and ease of use are key factors. Fieldwork requires many teams putting in long manhours, extending project timelines, and entailing higher costs. Leverage solutions that will cut costs and increase accuracy using professional drone technology for aerial photography.

FIXAR 007 aerial mapping systems have a working payload capacity of 2kg (4.4 lbs), with a spacious and easily adaptable payload bay. As a result, it is easy to set up an array of sensors to capture more data and higher quality images with fewer flights, saving time, labor, and money. 

Aerial Photography

The Solution: FIXAR 007

FIXAR 007 Outdoor is a vertical take-off and landing professional drone for aerial mapping that offers reliable autonomous flight with a range of up to 60 km (37.2 mi) at a cruise speed of 65-72 km/h (40-45 mph). The quick five-minute setup and high payload capacity make it perfect for aerial tasks.

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FIXAR Meets the Challenges of Aerial Photography

High-Quality Images

High-quality aerial surveying images at the required shooting scale. RTK* and PPK** technologies ensure accurate geo-tagging

Increased Productivity

Fixed-wing productivity and capability. Complete autonomy eliminates the need for operator assistance. Simply create a flight route and click ‘Start’.

Simple Operation

Ultimate ease of operation using intuitive xGroundControl Software. Special piloting    skills are not required. FIXAR provides basic training.

All-Terrain Take-Off and Landing

Built-in flight and navigation algorithms allow FIXAR fixed wing drone to take off, complete a flight, and land safely and reliably every time, even where geomagnetic anomalies exist.

Plug and Play Payload Modules Based on Real Job Tasks

Sony Alpha A6000

Effective Megapixels: 24.3

Sony a6000
Sony RX1 RM2

Effective Megapixels: 42.4

 

Sony RX1 RM2
Onboard GNSS receiver

Guarantee the exact coordinates of images
using  Post-Processing Kinematic (PPK) method.

Accuracy XYZ: 3-5 cm

GNSS Receiver
Foxtech Map-A7R II

Effective Megapixels: 42,4

 

Foxtech Map-A7R II

Plug and Play Payload Modules Based on Real Job Tasks

Sony Alpha A6000

Effective Megapixels: 24.3

Sony a6000
Sony RX1 RM2

Effective Megapixels: 42.4

 

Sony RX1 RM2
Onboard GNSS receiver

Guarantee the exact coordinates of images
using  Post-Processing Kinematic (PPK) method.

Accuracy XYZ: 3-5 cm

GNSS Receiver
Foxtech Map-A7R II

Effective Megapixels: 42,4

 

Foxtech Map-A7R II

High Quality Outputs from Every Single Mission

Orthomosaics of Mount Elbrus for cable car reconstruction
Orthomosaic Maps

Orthomosaics of Mount Elbrus for cable car reconstruction.

3D model of a mountainous area
3D Models

3D Tin model of a mountainous area.

Point cloud of a mountainous area
Point Cloud

Point cloud of a mountainous area.

DSM map
Digital Elevation Models (DSM/DTM)

Elevation model of the terrain of one of the slopes of Mount Elbrus.

Tiled 3D model of one of the slopes of Mount Elbrus
Tiled Models

Tiled 3D model of one of the slopes of Mount Elbrus.

Orthomosaics of Mount Elbrus for cable car reconstruction
Orthomosaic Maps

Orthomosaics of Mount Elbrus for cable car reconstruction.

3D Models

3D Tin model of a mountainous area.

Point Cloud

Point cloud of a mountainous area.

DSM map
Digital Elevation Models (DSM/DTM)

Elevation model of the terrain of one of the slopes of Mount Elbrus.

Tiled 3D model of one of the slopes of Mount Elbrus
Tiled Models

Tiled 3D model of one of the slopes of Mount Elbrus.

Compatible with Most Popular Post-Processing Software
bently logo
DroneDeploy logo
Metashape logo
PIX4D logo
RealityCapture logo

Post-processed Data Examples

After the aerial data is collected it is exported and processed with software to deliver desired data sets for further work. A 3D map is a common end result for aerial photography as it provides a realistic view of a location or an object. For many industries, such as the construction sector, a 3D map is as useful as a blueprint and inspection material. It is convenient and easy to visualize object plans on a 3D map and identify possible obstructions which may occur during construction.

Here are some examples of processed data sets from the mountainous region at an altitude range of 2,900-3,000m built on the Agisoft Metashape program.  Data captured with Foxtech Map-A7R II with 5cm/px precision.

Mountain map

Post processed drone data

What Partners Say About FIXAR 007 Drone

Stratavia Aerial Solutions logo

FIXAR’s patented aerodynamic design reduces the wear and tear of moving parts versus other VTOL aircrafts I’ve tried. The fully autonomous programming function is very valuable in areas where training is limited.  The short time that it takes to have a flight plan transferred to the aircraft and have the aircraft airborne is a huge plus, especially in projects where timing is critical.

Henk Boneschans
Managing Director, Stratavia Aerial Solutions

Explore OtherSolutions

FIXAR professional drones are paired with proprietary xGroundControl Software to deliver an elegant all-in-one UAV solution that is revolutionizing how technology is being used in various industries worldwide.