Magellan DG14 RTK GPS Board24/05/2007 |
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| Magellan (France) has introduction the DG14 RTK which offer high-end precision in a low-cost GNSS unit. The DG14 RTK from Magellan is a cost-effective, sub-metre GNSS (GPS and SBAS) and Beacon receiver. | ||
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In the DG14 RTK, BLADE, Magellan's new proprietary GNSS processing technology, incorporates ranging and carrier phase signals from satellite-based augmentation systems (SBAS), such as WAAS, EGNOS & MSAS in the RTK computation. An embedded beacon receiver provides sub-metre differential positioning, when SBAS corrections are not available.
DG14 RTK customers can choose from a fixed centimetre solution or a "flying RTK" decimetre solution. Because it offers an optimised mix of speed and accuracy, the decimetre mode makes DG14 RTK the perfect solution for customers who need decimetre accuracy but don't want to spend the typical time necessary to achieve a decimetre fix. BLADE enables decimetre accurate position collection in about one-third of the time of the traditional float solution. In addition, BLADE enables DG14 RTK to support moving base operation and heading plus pitch/roll computation with auto-calibration for easy initialization. For best results, DG14 RTK rovers can be configured to use SBAS signals in addition to GPS for RTK positioning with any RTCM 3.0-compatible base station.
DG14 RTK was developed to meet the needs of demanding high-precision applications for machine control, agriculture, aviation, military, unmanned aerial vehicles (UAVs), robotics, marine survey and navigation. Source: Magellan Website: http://www.magellangps.com Supplier: 0 More news from this supplier: Latvian Forest Service to Replace Compass and Measuring Tape Magellan Introduces MobileMapper 6 Magellan ProMark 500 GNSS RTK Receiver Poland Selects MobileMapper CE Magellan MobileMapper CX Magellan’s BLADE GNSS Signal Processing New Magellan ProMark3 RTK Community Heritage Project Using GIS Visualisation Teaching Award for Russell G. Congalton ION Autonomous Snowplough Competition Winners GeoCore 2012 with Lidar API First Real-time Seafloor Earthquake Observatory CyberCity 3D Launches 3D Solar Buildings Second UltraCamX for Valley Air Photos Capacity-building to Develop Afghan Mining Feasibility Reports Completed for NSDI in Uganda and Jordan Five-metre Imagery for Vegetation Analysis Comments (2):
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