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GNSS receiver Product List and Ranking from 16 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

GNSS receiver Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. ビズステーション 本社 Nagano//IT/Telecommunications
  2. カナデビア 機械事業本部 電子制御ビジネスユニット Osaka//Industrial Machinery
  3. NTジオテックス 本社、東北営業所、山梨営業所 Tokyo//Trading company/Wholesale
  4. 4 TI アサヒ 本社 Saitama//Industrial Electrical Equipment
  5. 5 マーケットリサーチセンター Tokyo//Service Industry

GNSS receiver Product ranking

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. RTK GNSS Receiver "RWP" ビズステーション 本社
  2. NetSurv RE-α カナデビア 機械事業本部 電子制御ビジネスユニット
  3. GNSS Receiver GX2 Series TI アサヒ 本社
  4. 4 [Research Material] Global Market for Surveying GNSS Receivers マーケットリサーチセンター
  5. 5 Mountain Forest Surveying System "Yamamori GPS" 晃洋設計測量

GNSS receiver Product List

1~30 item / All 39 items

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NetSurv RE-α

Operable on tablet devices! Supports L5 frequency band and Galileo satellites as options!

Equipped with GPS, GLONASS, QZSS, and Galileo reception capabilities! Compatible with the L5 frequency band of GPS and QZSS satellites! *Please contact us for information about options.

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Cohac∞ Series

Michibiki-compatible high-precision positioning solution Cohac∞ series

The "Chronosphere-L6" receiver is compatible with the centimeter-level positioning augmentation service (CLAS/MADOCA) of the Quasi-Zenith Satellite System "Michibiki." It achieves centimeter-level positioning across the entire Michibiki area (including Japan and the Asia-Oceania region) without the need for communication costs (no ground communication required). Additionally, it ensures accuracy and stability by supporting signals not only from "Michibiki" but also from GNSS systems worldwide.

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[Case Study] GNSS RTK Observation, Iwate University Faculty of Agriculture, Symbiotic Environment Course

We will introduce a case that demonstrates the effective observation work achieved through the synergy of mobility and high speed, resulting in good responsiveness.

We would like to introduce a case study of GNSS receiver G3100 RTK observations from the Coexistence Environment Course of the Faculty of Agriculture at Iwate University. (The current model is the GX2 series.) During the Great East Japan Earthquake on March 11, 2011, tsunamis surged in from both the Hirota Bay side and the Pacific Ocean side. Due to ground subsidence, seawater that flooded the reclaimed land could not be drained, and the Hirota Town area became an isolated island for several days. Investigating the subsidence situation became urgent for the restoration of agricultural land and reclaimed land. As a result, the efficiency of the investigation has been improved through RTK positioning using GNSS surveying equipment, with the PENTAX G3100, compatible with GLONASS and GPS, actively utilized on-site for RTK positioning. 【Case Overview】 ■Challenges - Aerial photography from above cannot accurately assess the amount of subsidence. - There are still many areas with a large amount of debris remaining, and the wide range of the survey area means that efficiency does not improve with leveling and total station surveys. ■Results - The compact and lightweight design, along with being cable-free, allows for excellent mobility and quick successive RTK positioning in a short time. - Data transmission from the reference station to the mobile station can be done stress-free with a high-speed wireless modem, allowing for focused observation work. *For more details, please refer to the PDF document or feel free to contact us.

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GNSS Receiver GX2 Series

The introduction of models with "photogrammetry functions" and "laser rangefinders" has expanded the scope of work for a single operator!

The PENTAX GNSS receiver "GX2 Series" offers three models tailored to different applications: "GX2-C," "GX2-L," and "GX2-A." All models are equipped with a downward-facing (for pile driving) camera, enhancing the efficiency of measurement and construction tasks! - GX2-C: Equipped with a downward-facing (for pile driving) camera and photogrammetry function. - GX2-L: Equipped with a downward-facing (for pile driving) camera and laser rangefinder usage image. - GX2-A: Common AR real-time downward-facing (for pile driving) camera across all three model types.

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3-frequency GNSS receiver Leica GPS1200+ rental

High-precision three-frequency GNSS receiver for receiving GLONASS satellites.

The GPS1200+ antenna can simultaneously receive signals from all satellites of GPS, GLONASS, Galileo, and Compass on 120 channels. The receiver is buoyant, resistant to drops and impacts, and can operate in harsh conditions such as rain, dust, sand, and snow.

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GNSS receiver HiPer SR rental

Civil engineering dedicated, compact, lightweight all-in-one GNSS receiver.

HiPer SR is a compact and lightweight all-in-one GNSS receiver specifically designed for civil engineering. It consolidates all necessary functions into a small and lightweight body weighing approximately 850g (40% reduction compared to conventional models). RTK observations can be conducted without cables. 【Features】 ○ Easy and simple surveying by one person → Allows for easy surveying without worrying about weather or time → A set of two receivers for fixed and mobile stations is available ○ Compact and lightweight all-in-one receiver → Consolidates all necessary functions into a small and lightweight body weighing approximately 850g (40% reduction compared to conventional models) → RTK observations can be conducted without cables ○ Robust body strong enough for harsh environments → Complies with dust and water resistance standards JIS protection grade IP67 → The body is made of shock-resistant magnesium alloy → Durability that allows it to be handled like a tool ○ LongLink data communication → RTK observations can be conducted using the built-in Bluetooth Class 1 in the receiver ○ Achieves continuous usage time of over 15 hours → Equipped with a long-lasting battery that easily handles a full day's work For more details, please contact us or download the catalog.

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Mountain Forest Surveying System "Yamamori GPS"

High-precision GNSS receiver measurement system

Yamamori GPS is an Android software for GPS surveying. It enables high-precision surveying when combined with an external dual-frequency RTK-GNSS receiver. You can verify extensions and areas on the device based on the observed results. Since it can display data such as forest compartment and land number on the background map, it can also be used for confirming your current location and conducting field surveys. Additionally, the observation results can be used to create drawings and field notebooks that comply with afforestation assistance projects through a separate drawing application. *For more details, please refer to the PDF materials or feel free to contact us.*

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FOG『iTraceRT-F402-E』

Designed for use in harsh environments! It can reduce the satellite's recapture time.

The "iTraceRT-F402-E" is a GNSS+IMU integrated unit equipped with a dual-frequency RTK GPS+GLONASS board, designed for use in harsh environments as a FOG (Fiber Optic Gyroscope). With the GNSS board supporting GPS/GLONASS, the satellite reacquisition time is further reduced. By performing RTK positioning using GPS+GLONASS, it enhances the satellite utilization aspect of INS positioning. Additionally, it supports a full 400Hz output, allowing real-time measurement results for position, velocity, angular velocity, and attitude to be output at a maximum of 400Hz. 【Features】 ■ Equipped with a GPS+GLONASS dual-frequency GNSS receiver board ■ Initial setup can be easily performed using GUI software ■ Data output update up to 400Hz (position, velocity, acceleration, attitude) ■ Supports CAN output from 100Hz to 1MBd (MEGABaud) (maximum) *For more details, please refer to the PDF documentation or feel free to contact us.

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Case Studies of Network RTK Utilization: "General Surveying"

Introducing examples of the use of "network RTK" in the general surveying field.

This document introduces examples of the use of a unique technology (JENOBA method) utilizing real-time data from electronic reference points in the field of general surveying with "network-type RTK." It includes numerous examples of applications, starting with "road ledger map revision work," as well as "centerline and longitudinal surveying of high-voltage power lines" and "topographic and reference point surveying along coastlines." 【Examples of Applications】 ■ Application examples related to road ledger map revision work (Pasco Corporation Kansai Division) ■ Development of a manual for reference point (star measurement point) surveying work using network-type RTK single point observation (Tondabayashi City, Osaka Prefecture; cooperation: Asahi Koyo Co., Ltd.) ■ Application examples of reference point (star measurement point) surveying using network-type RTK single point observation (Geotechnical Co., Ltd.) ■ Application examples of centerline and longitudinal surveying of high-voltage power lines using network-type RTK (Hidex Co., Ltd. and Wajima) ■ Application examples of network-type RTK in river surveying and leveling (reference point) (Kyushu Chuo Surveying Co., Ltd.) *For more details, please refer to the catalog or feel free to contact us.

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[Example] Third-class benchmark surveying using simultaneous observation method with two network-type RTK systems.

Simultaneous observation of two units using network RTK! Observation completed in just one and a half days!

We would like to introduce a case study conducted by Shinsoku Giken Co., Ltd. on "3rd Class Benchmark Survey using Network RTK with Simultaneous Observation of Two Units." From the new points of 55, it was a site that required 4 days with 10 receivers and 4 personnel for static observation as usual. In this case, due to difficulties in arranging equipment and personnel, we conducted simultaneous observation with two units using network RTK with the cooperation of Sokia Co., Ltd. 【Site Overview】 ■ Number of Points - Reference Points: 7 - New Points: 55 ■ Date and Time - 2 days - 17th (8:54 AM - 6:11 PM) *Number of observation vectors: 53 - 18th (9:05 AM - 2:25 PM) *Number of observation vectors: 30 ■ Equipment: 2 sets of Network RTK ■ Personnel: 2 people *For more details, please refer to the PDF document or feel free to contact us.

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[Example] Installation work for fourth-class reference points for land surveying.

Achieved approximately one-third time reduction compared to conventional methods! Utilizing network-based RTK!

We would like to introduce a case where M.T.Y. Synthetic Co., Ltd. utilized a network-type RTK for "the installation work of fourth-class reference points for land surveying." The site involved the installation of fourth-class reference points for land surveying. It was a flat area on a high ground, and there were no issues with satellite conditions or mobile phone communication. A total of 6 points were installed, achieving good results with an accuracy of within 1 cm. The operation went smoothly without any hindrances, and the work was completed in one day. 【Benefits and Effects】 ■ Achieved approximately one-third time reduction compared to conventional methods ■ Cost reduction ■ Shortened delivery time ■ Due to the reduction in on-site work time, we are now able to accept more jobs than before *For more details, please refer to the PDF document or feel free to contact us.

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GNSS receiver "GCX3"

High positioning performance and overwhelming mobility will change surveying work! Demonstrates stable performance even under harsh observation conditions.

The "GCX3" is a GNSS receiver compatible with all satellites. Equipped with a new multi-GNSS board, the number of receivable satellites and signals has significantly increased. In particular, the availability of BeiDou, which has a satellite count comparable to GPS, greatly enhances positioning performance and, consequently, work efficiency. Additionally, it has achieved a lightweight design of approximately 440g. All functions, including the antenna, receiver, memory, battery, and Bluetooth wireless, are integrated into a size smaller than a 500ml plastic bottle. 【Features】 ■ Compatible with all satellites ■ Ultra-compact and robust body ■ Supports hybrid survey systems ■ Equipped with second-generation POST2TM GNSS antenna ■ LongRange data communication *For more details, please refer to the PDF document or feel free to contact us.

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RTK GNSS Receiver "RWP"

Achieving ultra-high precision while thoroughly cutting costs! Active in agriculture, surveying, forestry, and research institutions in universities and government agencies.

The "RWP" is a two-frequency RTK centimeter-level receiver. Equipped with a 9-axis digital motion processor, it can achieve sub-meter level accuracy at a high rate even in standalone positioning. Additionally, this product integrates the receiver, antenna, ground plane, and power supply into one unit, allowing it to be directly mounted on surveying telescopic poles or vehicles. By consistently handling development, manufacturing, and sales, we have succeeded in reducing the price to one-tenth. 【Features】 ■ Accuracy comparable to surveying GNSS ■ Achieves ultra-low cost at one-tenth of market price ■ Standard equipped with various modules ■ Free dedicated Android app provided ■ Case with 5/8-11 inch female thread *For more details, please refer to the PDF document or feel free to contact us.

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Measurement and Survey

We have introduced numerous specialized technicians and surveying equipment that pursue "measurement"! We provide services that are "trustworthy and satisfying."

We would like to introduce our "Surveying and Research" services. Geospatial information has become an important infrastructure as the foundational information for national land and corporate management. Our company is constantly pursuing "measuring technology." We have introduced numerous specialized technicians who focus on "measuring" and new surveying equipment, promoting advancements and cost reductions to provide our customers with services that are "trustworthy and satisfactory." 【Service Details (Excerpt)】 <Main Services> ■ Control Point Surveying ■ Digital Terrain Surveying ■ Applied Surveying ■ Various Investigations ■ Land Registry Surveying *For more details, please refer to the PDF document or feel free to contact us.

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[Discontinued] GNSS Handheld [Trimble TDC150]

GNSS observations can be made in the mountains and forests! From survey-level to GIS applications, a full GNSS receiver integrated high-precision and high-functionality handheld device.

A GNSS-integrated handheld device that can be used easily and with high precision even in concealed environments. It is an ideal receiver for infrastructure management in forests and urban areas. The rugged casing equipped with Android OS is suitable for use in harsh environments. With four types of device configurations that offer precision from 1 cm to meters, you can choose the grade according to the required accuracy. Upgrading the accuracy temporarily or permanently is also possible with options. It supports satellite signals from GPS, Galileo, BeiDou, GLONASS, and QZSS, as well as various corrections such as SBAS, VRS, and RTK. It comes standard with a built-in camera and electronic bubble level, allowing for comprehensive operations with a single device. The battery, which can be charged via USB, lasts for 8 hours and is replaceable. 【Features】 - Capable of obtaining coordinates with an accuracy of 1 to 100 cm (diameter) even in forests, residential areas, and quarries. - Equipped with front and rear cameras, allowing for photography of measurement locations. - Ideal for infrastructure location information (manholes, gas pipes, water pipes, utility poles, steel poles, etc.). - On-site inspections of solar panels and wind power generation. - High-level GNSS reception performance in harsh environments like forests, maximizing positioning quality even under canopies. - The Dm compliant with water service providers has a vertical accuracy of 2 cm.

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[Discontinued] GNSS Receiver [Trimble R2 GNSS]

[Discontinued] Compact, robust, and high-precision GNSS receiver that can be flexibly integrated into workflows.

[Discontinued] The compact and rugged Trimble R2 GNSS receiver is an easy-to-use solution for GIS professionals and surveyors who require accurate data collection for various high-precision positioning applications, from mapping and locating underground utilities such as pipes and cables to inspecting roadside ditches. It can transmit high-precision location information in real-time to mobile devices via Bluetooth or USB. With selectable accuracy options ranging from sub-meter to centimeter and high versatility, it accommodates diverse surveying and GIS data collection workflows. - For GIS applications with sub-meter to centimeter accuracy - Easy data collection through pairing with smartphones and tablets - Supports efficient work with quick setup and simple operation - Supports various GNSS satellites and correction information - High-quality data acquisition with the 220-channel Trimble Maxwell 6 chip and cutting-edge GNSS technology After installing the Trimble GNSS STATUS (free app) on your smartphone or tablet, you can achieve high-precision location information simply by connecting via Bluetooth.

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GNSS receiver GNSS module "SP-100"

Multi-GNSS compatible! It is a GNSS receiver capable of simultaneously receiving all satellites.

The SP-100 is a module compatible with GPS, GLONASS, SBAS, QZSS, and Galileo satellites. It features multipath resistance and is compact due to its board-mounted design. Furthermore, performance can be enhanced through software updates. It is also compatible with future new satellites (such as Galileo and QZSS L1-SAIF). 【Features】 ○ Fast TTFF <1 second (outdoor, hot start) ○ Easy connection via serial TTL level I/F ○ Equipped with anti-jamming functionality ○ Equipped with multipath reduction functionality ○ Planned support for autonomous navigation For more details, please contact us or download the catalog.

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GNSS receiver

Miniature artificial satellites, CubeSats, etc., using small, lightweight GNSS receivers.

Provides ultra-small, lightweight GNSS receivers that can be used for ultra-small satellites such as CubeSats. Compatible with multi-constellation satellites.

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GNSS receiver Topcon GB-3 + GGD rental

Equipped with hybrid positioning technology! GNSS sensor that performs well in a wide range of fields.

The GB-3 is equipped with hybrid positioning technology that can receive GPS, GLONASS, and GALILEO (GNSS). By utilizing GNSS, the number of available satellites increases. This allows for stable accuracy and positioning even in areas with poor overhead visibility, thereby extending operational time and contributing to increased productivity. The GB-3 is also widely used as various sensors. Its compact body, which has been streamlined to include only the necessary functions, enables it to be mounted on various mobile platforms. It is particularly being used in IT civil engineering as a compaction management system, being installed on many vibratory rollers. For more details, please contact us or refer to the catalog.

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GNSS receiver GB-3+GGD rental

It is equipped with hybrid positioning technology that can receive GNSS.

The GB-3 is equipped with hybrid positioning technology that can receive GPS, GLONASS, and GALILEO (GNSS). By using GNSS in combination, the number of available satellites increases. This leads to stable accuracy and enables positioning even in areas with poor overhead visibility, thereby extending operational time and improving productivity. The GB-3 is also widely utilized as various sensors. Its compact body, which has been streamlined to include only the necessary functions, allows for installation on various mobile units. It is particularly being used in the field of IT civil engineering, where it is mounted on many vibratory rollers as a compaction management system. For more details, please contact us or refer to the catalog.

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GNSS receiver "OEM board"

Sales of OEM boards compatible with GNSS have been realized! Products from Javad GNSS incorporating next-generation signals.

We would like to introduce our "OEM Board." This product is a simple unit that integrates everything, including a receiver, antenna, battery, transceiver system, MENS, multiple antenna terminals for attitude control systems, and Bluetooth functionality for wireless communication with PDAs. The 219-channel LSI engine is fully compatible with additional functionalities such as Europe's Galileo, Japan's QZSS, and China's Compass. 【Features】 ■ A simple unit that integrates everything ■ High-precision surveying analysis software and advanced GIS software will also be released simultaneously ■ The 219-channel LSI engine is fully compatible with additional functionalities such as Europe's Galileo, Japan's QZSS, and China's Compass *For more details, please refer to the PDF materials or feel free to contact us.

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GNSS receiver "PolaRx5"

Introducing a GNSS receiver for reference stations that supports multi-frequency with 544 channels!

The "PolaRx5" is a high-precision multi-GNSS receiver for base stations, equipped with 544 channels and compatible with GPS, GLONASS, Galileo, QZSS, BeiDou, IRNSS, and SBAS. Thanks to its unique tracking technology, it continuously detects scintillation, radio interference, multipath, and other environmental factors, eliminating adverse effects to achieve a low S/N ratio and demonstrate excellent positioning performance. 【Features】 ■ Equipped with 544 channels ■ Achieves high-precision positioning with a low S/N ratio ■ Includes a unique radio interference monitoring function ■ User-friendly web interface and data logging tools ■ A robust housing with excellent durability and a wide range of interfaces *For more details, please refer to the PDF document or feel free to contact us.

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Two cameras! GNSS receiver 'vRTK' equipped with AR measurement and installation accuracy of 2cm.

[CSPI-EXPO Construction and Surveying Productivity Improvement Exhibition] Visual RTK GNSS receiver equipped with two cameras!

Hi-Target vRTK is a visual RTK GNSS receiver equipped with two cameras. It enables measurement in areas that cannot be accessed directly through photogrammetry. Furthermore, the camera on the bottom of the receiver allows for more efficient layout work. Experience productive operations with the dramatically evolved vRTK. ■ Image Positioning The receiver is equipped with a 5Mpixel CCD sensor on its side. Coordinates can be obtained by capturing images from a distance in locations that users cannot observe directly. ■ 3D Modeling It is also possible to export captured images and text-format arm information for processing with SfM software. When combined with images taken by UAVs, it is possible to obtain a more detailed model. ■ Enhanced AR Layout Function The receiver is equipped with a 2Mpixel CCD sensor on its bottom. AR layout with an accuracy of 2 cm is possible. *For more details, please refer to the PDF document or feel free to contact us.

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Case Studies of Network RTK Utilization: "Land and House Surveyor Services"

Introducing examples of the use of "network-type RTK" in the field of land and building surveying.

This document introduces examples of the use of a unique technology (JENOBA method) utilizing real-time data from electronic reference points in the field of land and house surveying with "network-based RTK." It includes examples of applications such as "initiatives for registration surveying," "boundary determination surveying," and "integration with land and house surveying." Compared to traditional static surveying, it demonstrates significant reductions in working time. 【Examples Included】 ■ Initiatives for network-based RTK registration surveying (Kumamoto Prefecture Land and House Surveyors Association) ■ Application of network-based RTK in boundary determination surveying (Land and House Surveyor Yoichi Suzuki Office) ■ Case of integration between land and house surveying and network-based RTK (Omura GPS Research Group) *For more details, please refer to the catalog or feel free to contact us.

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Case Studies on the Use of Network RTK: "Verification/Academic"

Introduction of verification and case studies of "network-type RTK" in academic fields.

This document introduces the verification and academic application examples of a unique technology (JENOBA method) that utilizes real-time data from electronic reference points in the "network-type RTK." It includes examples such as "experimental verification of static surveying using network-type static and electronic reference points" and applications in "surveying investigations of large ancient tombs." It has been demonstrated that preliminary surveys do not require significant time or cost, allowing for immediate surveying work with preparations made the day before, showcasing benefits not only in general surveying but also in archaeological investigations. 【Published Examples】 ■ Experimental verification of static surveying using network-type static and electronic reference points (Urban Design Engineering Department, Osaka Institute of Technology, Surveying and Geotechnical Research Laboratory) ■ Application example of network-type RTK in the surveying investigation of large ancient tombs (Archaeology Research Laboratory, Okayama University) *For more details, please refer to the catalog or feel free to contact us.

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Collection of Case Studies on Network RTK Utilization: "Other Application Examples"

Introducing other application examples of "network-type RTK."

This document introduces application examples of the "network-type RTK" that employs a unique technology (JENOBA method) utilizing real-time data from electronic reference points. It includes applications such as "measurement using the Mitsubishi Mobile Mapping System (MMS) high-precision mobile measurement device," as well as examples from the "unmanned rice planting machine system" and the "snow removal support system." 【Published Examples】 ■ Measurement case using the Mitsubishi Mobile Mapping System (MMS) high-precision mobile measurement device (Toyonaka City, Osaka Prefecture) ■ Example of network-type RTK utilization in the unmanned rice planting machine system (National Agriculture and Food Research Organization) ■ Application of network-type RTK in the snow removal support system (Tateyama Route Snow Removal Association) *For more details, please refer to the catalog or feel free to contact us.

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Collection of Case Studies on Network RTK Utilization: "GNSS Demonstration Experiment"

Introducing examples of the use of "network-type RTK" in GNSS demonstration experiments.

This document introduces case studies from a GNSS demonstration experiment utilizing a unique technology (JENOBA method) based on real-time data from electronic reference points, specifically in the context of "network-type RTK." It includes information on the "multi-GNSS demonstration experiment," as well as the usefulness of "buggy surveying" and "network-type multi-GNSS delivery under adverse conditions." The high utility of multi-GNSS has been confirmed for further efficiency in extensive construction management surveying, especially under adverse conditions where the number of receiving satellites is often limited. 【Published Case Studies】 ■ Multi-GNSS Demonstration Experiment [Hokkaido Region] (Iwasaki Co., Ltd.) ■ Demonstration of Network-type GNSS Utilization through Buggy Surveying (Positioning Satellite Technology Co., Ltd.) ■ Demonstration Experiment on the Usefulness of Network-type Multi-GNSS Delivery under Adverse Conditions (Senar and Burns Co., Ltd.) *For more details, please refer to the catalog or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • others
  • GNSS receiver

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[Example] Construction of a Surveying Work Manual

Utilizing the single-point observation method of network RTK-GPS surveying in the field of geodetic surveying as public surveying!

We would like to introduce a case study by the City of Tondabayashi, Osaka Prefecture (in cooperation with Asahi Koyo Co., Ltd.) regarding the "Construction of a Surveying Work Manual," utilizing reference points (star measurement points) through network-type RTK single-point observation. To conduct third and fourth-class reference point surveys, which form the backbone of construction surveying, as public surveys, it is necessary to use higher-level national reference points or public reference points as known points. However, in areas where the density is not sufficiently developed for efficient use, there can be an excessive financial burden. As a result, these surveying works may not be applied to the Geospatial Information Authority of Japan as public surveys, and the surveying results have rarely been utilized beyond the specific construction projects. 【Solution】 - Developed a single-point observation method using network-type RTK-GPS in collaboration with Asahi Koyo Co., Ltd. in the field of geodetic surveying. - Received advice from the Geospatial Information Authority of Japan based on the application under Article 16 of the Public Survey Work Regulations. - Utilized the single-point observation method of network-type RTK-GPS surveying as public surveying in the field of geodetic surveying. *For more details, please refer to the PDF document or feel free to contact us.

  • Other network tools
  • Other measurement, recording and measuring instruments
  • GNSS receiver

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[Example] Benchmark Survey Using Network RTK Single Point Observation

Conducting surveying based on the manual for surveying reference points (star measurement points) using single-point observation with RTK-GPS!

We would like to introduce a case study by Geotechnical Co., Ltd. utilizing network-type RTK single-point observation in "benchmark surveying." The site had 7 new points and 2 reference points. Based on the distances between these points, it was estimated that surveying using a total station would take about 5 days. Therefore, surveying was conducted according to the "Manual for Benchmark (Star Point) Surveying Using RTK-GPS Single-Point Observation." The survey using star points was completed in 2 days (effectively 1 hour) of observation. 【Solution】 ■ Conducted surveying according to the "Manual for Benchmark (Star Point) Surveying Using RTK-GPS Single-Point Observation" ■ Pre-planned the observation ■ Focused on the time frame from 2 PM to 6 PM when both the number and arrangement of satellites were favorable *For more details, please refer to the PDF document or feel free to contact us.

  • Other network tools
  • Other measurement, recording and measuring instruments
  • GNSS receiver

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