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DJI Zenmuse P1 Full-Frame Photogrammetry Drone Camera for Aerial Surveying and Mapping
DJI Zenmuse P1 Full-Frame Photogrammetry Drone Camera for Aerial Surveying and Mapping

DJI Zenmuse P1 Full-Frame Photogrammetry Drone Camera for Aerial Surveying and Mapping

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Product Highlights

  • 45 MP Full-frame CMOS sensor
  • Mechanical Global Shutter
  • Capable of covering up to 300 hectares per flight at 3cm GSD
  • Capable of 3 cm Horizontal; 5 cm Vertical accuracies without GCP’s

If you’ve used the DJI Matrice 300 RTK, you’re used to the cutting-edge AI and 15 km transmission system that make it one of the most powerful drones in the commercial drone industry. The DJI Matrice 300 comes with a multiple payload system that allows you to attach whichever payload best meets your needs. With the release of the new Zenmuse P1, DJI has just released the perfect payload to help with aerial surveying and aerial photogrammetry.

The DJI Zenmuse P1 is a full frame (35.9x24 mm) sensor camera that is exclusively compatible with the M300. Not only is this DJI’s largest image sensor with the highest resolution ever, but it also allows for interchangeable prime lenses. These lenses can shoot 45 megapixel aerial imagery, and the camera itself is integrated onto a 3-axis gimbal. If you’re looking for centimeter-level accurate data and the ability to cover large areas in just one flight, you can’t do any better than the new Zenmuse P1.


Applications


The Zenmuse P1 can be used with the DJI Matrice 300 RTK for any number of aerial surveying and aerial photogrammetry missions. From surveying construction sites to managing natural resources, the Zenmuse P1 can create a variety of 2D and 3D models that help give you the data you need in a form that you can easily understand.

Topographic Mapping

The DJI Matrice 300 RTK can collect accurate, geo-tagged data with the Zenmuse P1 to quickly survey land and create detailed 2D and 3D topographic maps. The full frame sensor helps capture data that meet the 1:500 scale accuracy requirements without the use of GCPs. Thanks to the photogrammetry software of the Zenmuse P1, you can quickly process this data and create actionable topographic maps with minimal post-processing time.

Cadastral Surveying

Data collection becomes even more efficient with the DJI Zenmuse P1, allowing you to quickly create reality models that include plots and attachments. Performing cadastral surveys is an important part of establishing property boundaries, and accuracy is an absolute requirement. The Zenmuse P1 and the full frame sensor aid in cadastral surveying by allowing you to quickly create centimeter-level accurate 3D reality models.


Architecture, Engineering, and Construction Surveying

Architecture, engineering, and construction all require you to perform accurate aerial surveying in order to map large work sites. With the DJI Zenmuse P1, you can use 2D maps and 3D models to help your team optimize project planning and designs, ensuring that your project goes off without a hitch. The 3D modeling software also allows you to stay fully informed on the progress of your site, helping you manage the full project lifecycle and allocate resources appropriately.

Natural Resource Management

Natural resources typically span large areas of land, necessitating a drone solution to perform large-scale, detailed aerial surveying of that land. The accurate 2D maps and 3D models of the Zenmuse P1 can help with forest and water resource management by allowing you to map forests and around surface water in order to classify water bodies and estimate water coverage. The DJI 300 Matrice RTK with the Zenmuse P1 is the perfect tool to measure, classify, or determine the ownership of water bodies and forests.


Geological Investigation And Disaster Site Modeling

Drones are a powerful tool for investigating certain hazard sites from a safe distance, giving you the information you need while allowing you to remain safely out of harm’s way. The Zenmuse P1 can be used to safely obtain precise aerial data of both geological hazard sites as well as disaster sites. The centimeter-level accuracy and real-time overviews are major tools in helping public safety teams make strategic choices in large, disaster-struck regions. This allows public safety officers to coordinate their responses while eliminating the guesswork and allowing them to act with assurance.

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