Das MicroStrain 3DM-RTK liefert einfach zu verwendende Echtzeit-Kinematik-Korrekturdaten (RTK), die vom 3DM-GQ7-GNSS/INS genutzt werden können. Es bietet die Einfachheit einer Mobilfunkverbindung zu unserem SensorCloud RTK-Basisstationsnetzwerk und ersetzt damit herkömmliche funkbasierte Stationen. Mit RTK-Korrekturen kann das 3DM-GQ7-GNSS/INS eine Positionsgenauigkeit im Zentimeterbereich erreichen. Da keine Basisstationsinfrastruktur benötigt wird, ist 3DM-RTK die schnellste und effizienteste Lösung für die Markteinführung.
Der 3DM-GQ7-GNSS/INS-Sensor liefert in Kombination mit dem 3DM-RTK-Modem genaue Positions-, Geschwindigkeits- und Lagebestimmungen mit einer Frequenz von 1 kHz. Diese branchenführende Leistung umfasst eine Genauigkeit von weniger als 2 cm, eine Geschwindigkeitsgenauigkeit von 0,05 m/s, eine Nick- und Rollgenauigkeit von 0,1 Grad und eine Kursgenauigkeit von 0,25 mit einem Dual-Antennen-GNSS.
Verbessert die Positionsgenauigkeit von RTK-fähigen GNSS/INS-Systemen, wie z. B. dem 3DM-GQ7-GNSS/INS, auf 1 cm + 1 ppm
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| MicroStrain - Product Data - 3DM RTK | Datenblätter | English |
| 4 Ways to RTK - One Pager | Einkaufsführer | English |
| RTK Assembly Drawing | Technische Zeichnung | English |
Certificates and Approvals
| 3DM-RTK Declaration of Conformity (EU) | Konformitätserklärung | English |
| 3DM-RTK Declaration of Conformity (UK) | Konformitätserklärung | English |
| 3DM-RTK CAD File | CAD-Dateien (STEP) |
| Type | Inertial Navigation (INS) |
| Performance Grade | High Performance Grade |
| Inputs/Outputs | 4xGPIO |
| Weight | 46 g |
| Weight | 1.811 oz |
| Size | 65.1 mm x 47.1 mm x 14.2 mm |
| Size | 2.56 in x 1.85 in x 0.56 in |
| Power Consumption | 1 W |
| Input Voltage | 5 V to 16V |
| Minimum Operating Temperature | -40 °C |
| Maximum Operating Temperature | 85 °C |
| Minimum Operating Temperature | -40 °F |
| Maximum Operating Temperature | 185 °F |
| MTBF | 389237 h |
| Ingress Protection Rating | Not Rated |
| Mounting Style | Screw Down |
InertialConnect is the latest software solution for MicroStrain inertial sensors. With InertialConnect, you can easily configure your sensors, adjust parameters, upgrade firmware, and deploy preconfigured parameter files. You can also verify sensor outputs with intuitive visualizations, including times eries data, position data, and statuses.
InertialConnect is compatible with both PC desktop and Linux operating systems, making it your go-to solution for precision and efficiency in inertial sensor management.
SensorConnect is the next generation in desktop sensing software.
From configuration of nodes and starting networks, to collecting and analyzing data in real-time, SensorConnect provides a modern, powerful experience with our Wireless, Inertial, and Displacement products.
Using our intelligent data collection and graphing algorithms, you are able to visualize massive amounts of data instantly, and then zoom in on points of interest just as fast.
Built in MathEngine functionality allows for both real-time and post-processed math, such as generating FFTs, averages, RMS, etc.
SensorCloud is a unique sensor data storage, visualization, and remote management platform that leverages powerful Cloud computing technologies to provide excellent data scalability, rapid visualization, and user programmable analysis.
MicroStrain sensors can instantly upload their data to SensorCloud via an ethernet-connected WSDA-2000. Once uploaded, your data is securely stored in the Cloud and can be accessed from anywhere, or downloaded for offline use.
Configurable alerts can be set to help notify you of real-time event in your data.
MathEngine allows you to perform analytics on your data, all in the Cloud. Pre-built functions are available for ease of use, while IPython Notebooks allow advanced users to write custom scripts to be run on their data once, or on a schedule.
SensorCloud RTK is a multi-continent, IP-based RTK cloud network that delivers centimeter-level position accuracy from day one without complex setup, featuring network coverage across the U.S., Europe and beyond.
When paired with compatible MicroStrain navigation systems, it offers seamless scalability from development to production with professional technical support throughout.
The MicroStrain Communication Library (MSCL) is our open-sourced API that simplifies writing code to interact with our sensors. MIP SDK is a lightweight C/C++ library for interacting with MicroStrain G and C-series products via baremetal and resource constrained microcontrollers.
Both APIs are readily available and fully-documented on GitHub, featuring valuable tools such as full documentation, example code, and a quick start guide.