Skip to main content

Tersus Released Precis-BX316R GNSS PPK Board




Tersus Released Precis-BX316R GNSS PPK Board

Tersus GNSS Inc. (“Tersus”), a leading GNSS manufacturing company released its brand new GNSS PPK Board, the Precis-BX316R to the market. 

Precis-BX316R is a GNSS Post-Processing Kinematic (PPK) board for accurate positioning. It supports raw measurement output from two antennas: GPS L1/L2, GLONASS G1/G2 and BDS B1/B2 from primary antenna and GPS L1/L2 from the second. The SD card on-board (up to 32G) makes it convenient for users to collect data for post processing. Working with GNSS antennas, it can output stable measurement in challenging conditions.
Precis-BX316R GNSS PPK Board (GPS L1L2/GLONASS G1G2/B B1B2 & Dual Antennas)


Integrated with versatile interfaces and connectors, Precis-BX316R aims at facilitating the applications, such as precision navigation, precision agriculture, surveying and UAV and enforcing effective GNSS data management. 


More details:


About Tersus GNSS

Tersus GNSS provides real-time, centimeter-level accurate and cost efficient Global Navigation Satellite System (GNSS) positioning solutions. Designed for easy and rapid integration, our GNSS product lines, the Precis GNSS RTK boards and receivers, offer high-precision capability as well as flexible interfaces for a variety of applications, such as unmanned aerial vehicle (UAVs), surveying, mapping, precision agriculture, crop health monitoring, agricultural remote sensing, lane-level navigation, construction engineering, and deformation monitoring, etc. 


Comments

Popular posts from this blog

Tersus Geomatics Office - Static Surveying - Data Processing

Tersus Geomatics Office is integrated office software to manage and process data for NeoRTK, the RTK survey receiver. It is laid out with visualized toolbars and logical icons to easily handle GNSS data processing, baseline processing and network adjustment, etc. It is the software set to import, update and analyze data effectively.  Watch the video to know how to do data processing after static surveying data collection with NeoRTK.  Learn more, click here .  Inquiry, click here . 

What is CORS network? How to connect to CORS network with external Bluetooth module and mobile phone?

A CORS is a Continuously Operating Reference Station. The CORS is an appealing way to do RTK due to its convenience and large coverage area. While Tersus Precis-BX305 currently does not support build-in NTRIP client feature. An alternative way to connect CORS network is employing external Bluetooth module and a cellphone. Here is a detailed procedure about how to connect to CORS Network with Precis-BX305 board.  Demonstration of connecting Precis BX305 to CORS Network Hardware & Software Requirement Precis-BX305 GNSS antenna GNSS antenna cable  External Bluetooth module Bluetooth cable Cell phone (android system) 5V DC charger Software required Ntrip client (free android apps)    Connect to CORS Network Please follow below steps.  Connect GNSS antenna to Precis-BX305. Connect external Bluetooth module to either COM1 or COM2 of the board Connect to power supplier and plug in/turn on the power Turn on the Bluetooth of the mobile phone and scan and pai

What is the principle of GNSS positioning?

Satellite based positioning relies on measuring distance between satellite and receivers. With known satellite position and measured distance between satellite and receiver, the coordinate of receiver can be calculated. However, the electromagnetic signals emitted by satellites are perturbed by atmosphere and clock errors, which degrade GNSS positioning accuracy. There are two types of positioning mode, one is point position and the other is relative position (see Fig 1). Point positioning includes standard point positioning (SPP) and precise point positioning (PPP). Their major difference is whether use the carrier phase observation. Relative positioning also includes two types: DGPS and RTK. Their difference is the latter one uses carrier phase observation as well. Relative positioning cancels most error sources in distance measurement by making difference between two receivers, so it is more simple and reliable, but it only measures relative position. In practice, the coordinate of