We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for GNSS positioning system.
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GNSS positioning system Product List and Ranking from 5 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 01, 2025~Oct 28, 2025
This ranking is based on the number of page views on our site.

GNSS positioning system Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 01, 2025~Oct 28, 2025
This ranking is based on the number of page views on our site.

  1. bryka Kanagawa//Automobiles and Transportation Equipment
  2. 芝本産業 東京本社 Tokyo//Industrial Machinery
  3. 日本サンテック 東京本社、名古屋営業所、長野営業所から全国展開 Tokyo//Electronic Components and Semiconductors
  4. ジェノバ Tokyo//Information and Communications
  5. 5 ソフトバンク 本社 Tokyo//Information and Communications

GNSS positioning system Product ranking

Last Updated: Aggregation Period:Oct 01, 2025~Oct 28, 2025
This ranking is based on the number of page views on our site.

  1. GNSS/INS System for Autonomous Vehicles 'RT3000 v3' bryka
  2. Centimeter-level standalone high-precision GNSS positioning system 芝本産業 東京本社
  3. CLAS-compatible high-precision GNSS positioning system 日本サンテック 東京本社、名古屋営業所、長野営業所から全国展開
  4. Available for use from the day of purchase: CLAS-compatible high-precision GNSS positioning system. 日本サンテック 東京本社、名古屋営業所、長野営業所から全国展開
  5. 4 Quasi-Zenith Satellite System (QZSS) compatible high-precision GNSS positioning system *Receiver-only sales are also available. 日本サンテック 東京本社、名古屋営業所、長野営業所から全国展開

GNSS positioning system Product List

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Demonstration of Network-type GNSS Utilization through Buggy Surveying [Case Study Introduction]

The GNSS implementation is required for the efficiency of extensive construction management surveying, etc. It is effective for applying to sites where continuous operation was not possible with GPS alone.

Our company receives real-time data from electronic reference points provided by the Geospatial Information Authority of Japan at the Genoa Center, conducting analyses 24 hours a day, 365 days a year, and offering high-precision positioning correction data delivery services to our customers. We conducted real-time surveying experiments using a highly mobile buggy equipped with a GNSS positioning system, a receiver for the GNSS correction information being tested, as well as ultrasonic distance meters and inclinometers to correct for the vehicle's tilt and subsidence. **Results** - **Accuracy Verification by Measurement Speed** We changed the measurement speed on the same measurement line (40m) and conducted 5 round trips at each speed. The measurement results showed good accuracy of approximately ±30mm. - **Accuracy Verification by Changing Satellite Acquisition Conditions** We traveled in a 5m mesh within the same area (25m x 40m) and conducted surface measurements. For the supplemental satellite elevation angles, we conducted 3 patterns, and for the reference surface in this demonstration experiment, we adopted the average value of 3 surface measurements taken at an elevation angle of 5°. We also conducted measurements at elevation angles of 15° and 30° twice, and compared the results with the reference surface. The three data sets did not drop out, confirming their validity. *For more details, please refer to the PDF document or feel free to contact us.*

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GNSS/INS System for Autonomous Vehicles 'RT3000 v3'

Highly regarded worldwide for ground truth measurement!

The "RT3000 v3" is a high-performance GNSS/INS system for ADAS/autonomous vehicles that combines top-class GNSS positioning technology with a high-grade IMU. It demonstrates robust performance in various environments, achieving high-precision measurements. 【Application Areas】 ■ Vehicle dynamics testing ■ Path following by driving robots ■ Euro NCAP ADAS testing ■ NHTSA testing ■ Verification of autonomous vehicles *For more details, please download the PDF or feel free to contact us.

  • Company:bryka
  • Price:Other
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<Use Case> Essential 3D Surveying for BIM/CIM

Easily achieve high-precision surveying combined with LiDAR functionality.

In the construction industry, it has been decided to "principally apply BIM/CIM (Building Information Modeling/Construction Information Modeling) to all public works excluding small-scale projects by 2023." To realize BIM/CIM, three-dimensional data of the subject is essential. "Ichimill" is being utilized as a means to enhance the accuracy of this three-dimensional surveying. The method of achieving high-precision three-dimensional surveying by combining the LiDAR function and GNSS positioning information installed in smartphones and tablets has also been highlighted in the draft guidelines for construction management by the Ministry of Land, Infrastructure, Transport and Tourism, attracting attention. Furthermore, by combining it with drones, accurate surveying of even broader areas is possible, which is expected to lead to increased efficiency in surveying operations that have previously taken a long time. Reference: Draft Guidelines for Construction Management Using Three-Dimensional Measurement Technology / Ministry of Land, Infrastructure, Transport and Tourism https://www.mlit.go.jp/tec/constplan/content/001612930.pdf

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Centimeter-level standalone high-precision GNSS positioning system

"Making high-precision GNSS more accessible" We will achieve significant cost reduction and labor savings in outdoor positioning measurement.

Our company's "Centimeter-Level Standalone High-Precision GNSS Positioning System" is a system that can be utilized at a cost that is a fraction of traditional GNSS systems used for surveying purposes, such as RTK and VRS. Since it does not require communication with reference stations or electronic reference points, as long as there is a clear view of the sky, it is possible to use high-precision positioning data in real-time throughout Japan. Additionally, it is compatible with Ntrip-based VRS and RTK systems, allowing it to be used in the same manner as traditional high-precision GNSS devices by simply switching the app settings. If you have any questions, please feel free to contact us. 【Strengths of Our System】 ■ Can be used throughout Japan with standalone high-precision positioning ■ Significantly reduces costs compared to GNSS surveying equipment ■ Easy to use due to its simple functional configuration ■ Can adapt to traditional high-precision positioning methods *Please feel free to contact us.

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Available for use from the day of purchase: CLAS-compatible high-precision GNSS positioning system.

"Making high-precision GNSS more accessible" We will achieve significant cost reduction and labor savings in outdoor positioning measurements.

The "Centimeter-Level Standalone High-Precision GNSS Positioning System" is a system that can be utilized at a fraction of the cost compared to conventional GNSS used for surveying purposes, such as RTK and VRS. Since there is no need for communication with reference stations or electronic reference points, as long as there is a clear view of the sky, it is possible to use high-precision positioning data in real-time across all of Japan. Additionally, it is compatible with Ntrip-based VRS and RTK systems, allowing it to be used in the same manner as conventional high-precision GNSS equipment by simply switching the app settings. If you have any questions, please feel free to contact us. 【Strengths of Our System】 ■ Can be used throughout Japan with standalone high-precision positioning ■ Significantly lower cost compared to GNSS surveying equipment ■ Easy to use due to its simple functional configuration ■ Can adapt to conventional high-precision positioning methods *Please feel free to contact us.

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The usefulness of network-based multi-GNSS delivery under adverse conditions [Case Study]

Demonstrating the usefulness of multi-GNSS under adverse conditions where receiving satellites are likely to be limited.

In the verification of network-type RTK-GPS on the barge, it was difficult to obtain a FIX solution due to the influence of unloading arms and cranes as one approached the barge, making it unsuitable for precise guidance. This time, we compared the positioning accuracy of RTK positioning using network-type GNSS distribution with GPS only and examined the usefulness of multi-GNSS regarding the impact of surrounding structures. 【Results】 ■ Multi-GNSS consistently has more received satellites than GPS. Therefore, the impact on positioning accuracy due to satellite switching is minimal. ■ Distribution of positioning results for GPS and multi-GNSS when there are few obstructions. Multi-GNSS shows smaller dispersion and standard deviation in the horizontal plane (2D), resulting in higher positioning accuracy. ■ Distribution of positioning results for GPS and multi-GNSS when there are many obstructions. Multi-GNSS has greater dispersion and standard deviation in the horizontal plane (2D) compared to when there are few obstructions. While the positioning accuracy is slightly lower, it is still higher than the FLOAT of GPS only since RTK-FIX is achieved. *For more details, please refer to the PDF document or feel free to contact us.

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CLAS-compatible high-precision GNSS positioning system

"Making high-precision GNSS more accessible" We will achieve significant cost reduction and labor savings in outdoor positioning measurements.

The "Centimeter-Level Standalone High-Precision GNSS Positioning System" is a system that can be utilized at a fraction of the cost compared to traditional GNSS used for surveying purposes, such as RTK and VRS. Since it does not require communication with reference stations or electronic reference points, as long as there is a clear view of the sky, it is possible to use high-precision positioning data in real-time throughout Japan. Additionally, it is compatible with Ntrip-based VRS and RTK systems, allowing it to be used in the same manner as traditional high-precision GNSS equipment by simply switching the app settings. If you have any questions, please feel free to contact us. 【Strengths of Our System】 ■ Can be used throughout Japan with standalone high-precision positioning ■ Significantly lower cost compared to GNSS surveying equipment ■ Easy to use due to a simple functional configuration ■ Can be adapted to traditional high-precision positioning methods *Please feel free to contact us.

  • Distance measuring device

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Quasi-Zenith Satellite System (QZSS) compatible high-precision GNSS positioning system *Receiver-only sales are also available.

"Making high-precision GNSS more accessible" We will achieve significant cost reduction and labor-saving in outdoor positioning measurements. Featured on the Cabinet Office website.

The "Centimeter-Level Standalone High-Precision GNSS Positioning System" is a system that can be utilized at a fraction of the cost compared to traditional GNSS used for surveying purposes, such as RTK and VRS. Since there is no need for communication with reference stations or electronic reference points, as long as there is a clear view of the sky, it is possible to use high-precision positioning data in real-time throughout Japan. Additionally, it is compatible with Ntrip-based VRS and RTK systems, allowing it to be used in the same manner as traditional high-precision GNSS equipment by simply switching the app settings. If you have any questions, please feel free to contact us. 【Strengths of Our System】 ■ Can be used throughout Japan with standalone high-precision positioning ■ Significantly reduces costs compared to GNSS surveying equipment ■ Easy to use due to its simple functional configuration ■ Can be adapted to traditional high-precision positioning methods *Please feel free to contact us.

  • Distance measuring device

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