Both displays feature an Android-based operating system and enhanced processing power for controlling and executing in-field work. The Trimble GFX-1060 and GFX-1260 next-generation displays for precision agriculture applications enable farmers to complete in-field operations quickly and efficiently while also mapping and monitoring field information in real time with precision. F631 delivers centimeter-level accuracy with virtually instantaneous initialization times and robustness in challenging environments. With multiple connectivity options, the F631 allows for RTK corrections to be received over radio, cell modem, Wi-Fi, Bluetooth, or serial connection. With Athena, F631 provides state-of-the-art RTK performance when receiving corrections from a static base station or network RTK correction system. The F631 GNSS receiver is powered by Hemisphere GNSS’ Athena RTK technology. The F631 GNSS receiver is powered by SureFix RTK technology, which offers a real-time dual-solution point verification. Users will see the benefit of seamlessly performing data collection and layout, all in one easy-to-use application, the company says. Contractors can use the Futtura system to localize sites, check grade, configure base stations, set stakes and calculate volumes of material removed. SiteMetrix is user friendly, easy to understand and portable. It includes the SiteMetrix Grade and the multi-frequency, multi-GNSS F631 RTK base and rover. The universal construction site supervisor system is designed to help contractors manage all their job site activities. All models have time stability of 4.5 ns (1 sigma) and are equipped with multipath mitigation to minimize degradation of performance in urban areas.įuruno Electric Co., Firmware Update GT-90 supports L1 and provides a 1 PPS high stability output. GT-9001 supports L1 and delivers high-stability 1PPS and programmable clocks on three channels. The outputs can be set to 10 MHz, 2.048 MHz and 19.2 MHz, reducing time to market and saving costs through reduced component needs. GT-100 supports concurrent L1 and L5 reception and delivers three outputs including 1 pulse per second (1 PPS) synchronized with UTC as well as user-programmable frequencies. Each suits different applications based on supported frequency bands and output signals. The three modules deliver nanosecond precision for 5G mobile systems, radio communications systems, smart power grids and grandmaster clocks. The interface is also used to connect to the Multi-Platform Vehicle Test Set (MPVTS).Modules GT-100, GT-9001 and GT-90 are time-synchronization GNSS receiver modules compatible with all GNSS systems. This interface is used to load initialization parameters and flight information into the IFC. It also communicates to the Ground Support Equipment (GSE) via an EIA RS-422 serial umbilical interface. It gathers heading, pitch angle, roll angle, pitch rate, roll rate, and yaw rate. The IFC Message Processor also communicates with the attitude sensor package (ASP) via EIA RS-485 at a 100 Hz rate. The IFC also transmits downlink telemetry information (UAV performance information) to the ground control station. It receives uplink commands from the ground control station and outputs control signals to the UAV. The IFC communicates with a Command Data Link Transponder via EIA RS-485 serial interfaces. This includes recovery to stable flight conditions, while performing commanded maneuvers, and control for escape maneuvers of individual drones under all flight conditions. The IFC provides autonomous control functions to assure safe operation of the aircraft in the event of command datalink loss. These two functions are performed by a single high performance PowerPC processor. The IFC Message Processor contains the datalink encode/decode and autopilot functions. The IFC supports multiple high performance maneuvers, such as barrel rolls, high G turns, and low altitude operation. The IFC accepts commands from a ground control system (such as GRDCS, SNTC, or TTCS), inputs current vehicle operating parameters from onboard sensors, and outputs control signals to the vehicle for flight control. The Integrated Flight Controller (IFC) controls the entire flight functionality and maneuverability of the BQM-167 subsonic aerial target platform.
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