
Image source: Canva by Chris Putnam
Mastering Archaeological Precision with Eos GNSS Receivers
In the intricate world of archaeological exploration, precision is everything. That’s where Eos Positioning Systems steps in, a leader in the Global Navigation Satellite System (GNSS) field, offering top-notch GNSS receivers tailored specifically for the unique challenges of archaeological fieldwork. These devices are rapidly becoming the preferred choice for archaeology professionals, offering unparalleled accuracy in even the most remote and challenging terrains.
Precision is crucial in archaeological surveying, and Eos GNSS receivers excel by providing either:
Arrow 100 provides an impressive 30-60cm accuracy (even in remote regions without base stations or internet) right out of the box, using free SBAS signals that are delivered from a geostationary satellite.
Arrow Gold delivers 60mm in remote reaches via satellite-delivered corrections or 10mm-20mm using RTK with an available local RTK base station.
But it’s not just about precision – Eos GNSS receivers are built tough. Designed to endure harsh field conditions, these receivers are waterproof, dustproof (IP 67), and operate in extreme temperatures. Their robust and portable design ensures archaeologists can confidently explore challenging landscapes while maintaining the integrity of their data. To add to this, 4D Global offers a range of Eos-GNSS accessories, providing options for conducting your field mapping.
Excitement is building as 4D Global prepares to showcase Eos GNSS receivers at the AAA Australian Archaeological Association Annual Conference 2023. Attendees will have the unique opportunity to experience firsthand the precision, ruggedness, performance, and ease of use that Eos GNSS receivers bring to archaeological exploration. Although the Eos GNSS works seamlessly with Esri Field Software, it also works with most other field mapping and data capture software.
For a deeper dive into the transformative impact of Eos GNSS receivers, we invite you to read the blog article and explore the Arrow Case Study: Australian Cultural Heritage Management. This additional resource offers insights into how this GNSS technology is applied in the preservation and exploration of cultural heritage sites.