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Bad Elf combines its Flex GNSS receivers with GEODNET’s RTK network to deliver affordable, survey-grade accuracy for government, utility, infrastructure, and field
teams.
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Propeller uses GEODNET correction streams to extend coverage, improve positioning accuracy, and build more reliable geospatial workflows across construction, mining, and waste-management sites.
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Nine Ten Drones relies on GEODNET’s decentralized RTK network to provide reliable, centimeter level positioning for enterprise drone mapping, inspection, and LiDAR operations.
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DroneDeploy and GEODNET are making centimeter-level drone mapping easier and more accessible by reducing the cost, complexity, and infrastructure required for high-accuracy data
capture.
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Xona is developing a resilient, low Earth orbit positioning service, with GEODNET stations providing monitoring, corrections, and ground-network support for its Pulsar signal.
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VERDE.AI’s R-1000 robotic mower combines GEODNET RTK corrections with onboard visual odometry to deliver wire-free, self-guided lawn care
with centimeter-level
accuracy.
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Boson Motors uses GEODNET RTK to guide its electric LX40 utility vehicle through agricultural operations with accurate, autonomous, and globally scalable
positioning.
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Quectel combines its GNSS modules with GEODNET’s decentralized corrections infrastructure to provide consistent, centimeter-level positioning across connected-device deployments.
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MeshMap fuses LiDAR, AI, and GEODNET RTK corrections to create geographically anchored 3D maps for augmented
reality, digital twins, and
robotic autonomy.
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TrueNav uses GEODNET corrections to provide a more affordable and flexible RTK alternative for agriculture, construction, surveying, and heavy-equipment operations.
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