The dual-frequency RTK-4671-MH receiver is a compact, cost-effective and high-precision GNSS RTK board designed for applications requiring centimeter level positioning accuracy. It supports multiple constellations, including GPS, GLONASS, BeiDou, GALILEO, QZSS and SBAS to improve the
continuity and reliability of RTK solution even in the harsh environment. This board can be setup either in rover mode or in base station mode.
Versatile, compact, smart, low power and high update rate, LOCOSYS RTK-4671-MH meets the requirement of most location-based applications.
LOCOSYS RTK-4671-MHPD is a dual-frequency, dual-antenna receiver targeting for precision agriculture, drones, and slow-moving vehicles. This receiver provides fast precise heading and RTK position. It supports multiple constellations, including GPS, GLONASS, BeiDou, GALILEO, QZSS and SBAS to improve the continuity and reliability of precise heading and RTK position even in the harsh environment. Besides, it features powerful compatibility with other GNSS receivers in the market by flexible interfaces, smart hardware design and popular log/command formats.
Versatile, compact, smart, low power and high update rate, LOCOSYS RTK-4671-MHPD meets the requirement of most location-based applications.
LOCOSYS unveiled RTK Dongle (Product name is RTK-4P) which is able to receive L1 / L2 frequency and equipped with a multi-frequency Helix antenna,
The positioning accuracy specification is "cm level" which is directly connected to the Smart Phone's USB Type-C and allow the smart phone to be immediately upgraded and aimed to high-precision (RTK) applications which can be used for geographic mapping、earth-rock surveying、agricultural surveying、cadastral surveying and other purposes.
The RTK-M200 is the category solution in the LOCOSYS RTK (Real Time Kinematics) product family. The RTK-M200 act as a reference station in a RTK setup. The system combine the centimeter level RTM dual band (L1+L5) GNSS module and 4G LTE modem module. A Mobile RTK correction signal is transmitted via cellular network. This provides repeatable accuracy even in hilly terrain or in scattered fields.