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Demystifying Public RTK Networks
RTK, or Real-Time Kinematics, is a technology that offers unparalleled precision in positioning, typically accurate to within a couple of centimeters. This level of accuracy, often referred to as "survey-grade," has traditionally been reserved for specialized applications due to the high cost and complexity of the required equipment. Historically, users needed to set up and maintain their own base stations to utilize RTK. -
Bad Elf announces Point One Navigation, Inc. Polaris GNSS corrections available for Bad Elf Flex® Mini Extreme
Bad Elf, LLC and Point One Navigation, Inc. extend their relationship providing nationwide GNSS corrections services for the Bad Elf Flex® Mini Extreme -
Bad Elf Launches Flex® Mini High-Accuracy Bluetooth GNSS Receiver
Flex Mini provides geospatial professionals with an unmatched blend of location accuracy, reliability, deployability, usability, design, and value. -
Bad Elf Unveils Base/Rover Feature for Survey-Grade GNSS Accuracy Anywhere
The base/rover feature brings affordable centimeter-level accuracy to surveyors and geospatial professionals working anywhere in the world. Our solution consists of two Flex GNSS receivers and two UHF radios, allowing customers to perform high-accuracy field data collection in areas where traditional RTK corrections or cellular coverage is not available. -
Bad Elf Introduces Laser Offset Workflow for Use in Esri ArcGIS Field Maps
Bad Elf, LLC and Laser Tech (LTI), announce an integrated laser offset workflow for acquiring high-accuracy field data in GNSS-challenged environments. The new workflow integrates Bad Elf and LTI hardware in collaboration with ArcGIS technology from Esri, the global leader in location intelligence.
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A Cost Effective Method for Capturing High Accuracy Ground Control
A cost-effective method for high-accuracy data collection using a GNSS surveyor. -
Affordable High-Accuracy GPS for Education
Obtaining high quality geographic information systems (GIS) data depends on effective field data collection. Poor field collection wastes labor resources and ultimately undermines the value of your GIS database.
GPS receiver capabilities range from survey grade (centimeter level accuracy) to consumer grade (~5-meter level accuracy). Of course, this demands a cost-benefit tradeoff ranging from free to prohibitively expensive for most educational institutions. Between these two extremes lies mapping grade GPS, which delivers 1 meter accuracy.
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