Analysis software CAD navigation system "NASFA"
Close linkage between LSI fault analysis observation/repair equipment and design CAD data.
A domestic CAD navigation system has been developed that can quickly and accurately identify defect locations.
更新日: 集計期間:Jan 07, 2026~Feb 03, 2026
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更新日: 集計期間:Jan 07, 2026~Feb 03, 2026
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更新日: 集計期間:Jan 07, 2026~Feb 03, 2026
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Close linkage between LSI fault analysis observation/repair equipment and design CAD data.
A domestic CAD navigation system has been developed that can quickly and accurately identify defect locations.
Load forest map information and calculate the current position using the position detection sensor!
We would like to introduce the "OWL-AR Navigation System" that we handle. Based on the forest map information (forest resource data) obtained from OWL, we create management plans. Even in forests where GPS accuracy is low or GPS signals cannot be received, we use AR (augmented reality) technology to quickly navigate to the target trees based on the spatial relationships of standing trees. This is a system that displays various information on smart glasses. 【Features】 ■ Acquisition and updating of current location ■ AR display of standing tree information ■ Route search and AR navigation *For more details, please download the PDF or feel free to contact us.
A system that serves as the surgeon’s 'eyes' to dramatically improve surgical accuracy and safety
Jaw and maxillofacial surgeries require precise alignment of the skull and jawbones, which demands highly accurate support tools. Existing surgical navigation systems (NS) are optical, and while they can display, for example, the name of the area being imaged by an endoscopic camera, they are not suitable for alignment during surgery. On the other hand, there is existing technology for magnetic NS for brain imaging, and it is applied on the premise of obtaining highly accurate CT images. However, in the dental field, issues arise, such as unclear CT images when metal prostheses are present, and difficulty in obtaining CT images during surgery. This invention provides a magnetic surgical NS that can overcome these limitations. 【 Key Features 】 ・Linked to preoperative planning: Target fixture position and orientation can be set on a 3D bone model generated from CT or digital scan data ・Outstanding usability: Real-time tracking, 3D coordinate axes for both target and actual positions, guidance for aligning multiple bone segments ・High accuracy: Overlap-based visualization allows intuitive alignment with submillimeter precision (within 1 mm) (Ref. 1) ・Clear surgical view: Magnetic system avoids light obstruction, with a compact design that doesn’t interfere with the procedure
-Transforming all drivers into eco-driving experts-
This is MHS LOGIC! The eco-drive navigation system MHS-03DT reduces CO2 emissions through scientific eco-driving and realizes green logistics. By analyzing road gradients and cargo weight, it accurately captures the constantly changing driving environment and calculates the vehicle's driving performance in real-time. It considers all factors, such as how much extra power is being used compared to the necessary driving force for the current driving conditions and fuel efficiency simulations for driving in a higher gear, to derive the optimal eco-driving strategy for the vehicle and assist the driver with audio and visual cues.
Fault analysis and observation equipment! Introduction of the new CAD navigation system.
"AZSA-AR/HS" is a new CAD navigation system that can quickly and accurately identify defect locations. It enables the confirmation of underlying wiring by overlaying electron microscope images with CAD data, improving throughput for processing time. Additionally, it allows for easy operation on Windows and facilitates the sharing of information, such as potential failure locations, between devices. 【Features】 ■ Direct input and display of large-scale data is possible ■ Compatible with GDSII and OASIS formats ■ Can link with various devices ■ Capable of cross-sectional and 3D displays ■ Works in conjunction with electron microscopes and various analysis devices *For more details, please refer to the PDF materials or feel free to contact us.
Optimal for high-efficiency and effective use of leftover materials and scraps.
A programming system that effectively utilizes leftover materials and scraps linked with a CCD camera and KAP system.
High performance and lightweight design at 78g! Excellent cost performance RTK industrial package.
The new 3DM-GQ7 GNSS/INS is an all-in-one navigation solution with centimeter-level positioning accuracy. It is equipped with various correction sensors for harsh environments and situations, and it demonstrates stable and excellent performance through a newly developed dual antenna and the latest RTK-compatible INS, based on years of experience and proprietary algorithms. It features a dual multi-band GNSS receiver, low noise and low drift MEMS inertial sensors, and a robust adaptive Kalman filter, delivering performance that sets it apart from others in its class.
Improve course management efficiency with a GPS golf cart operation management and navigation system!
"CARTNAVI" is an advanced golf cart navigation system suitable for streamlining golf club operations and increasing revenue. Equipped with a voice call function to the operations room, it enables smooth communication with players. It can quickly respond to incidents such as lightning prevention alerts, forgotten clubs, and unauthorized area intrusions. Additionally, there is no need for auxiliary equipment like walkie-talkies. Furthermore, score input and screen operations are simple touch panel operations, allowing players to focus on their game. [Features] ■ No need for walkie-talkies ■ Equipped with voice call function ■ Easy touch panel operation for score input and aggregation *For more details, please refer to the PDF document or feel free to contact us.
Global Market for Computer-Assisted Surgery (CAS) Solutions: Surgical Navigation Systems, Surgical Robots, Others, Hospitals, etc.
This research report (Global Computer Assisted Surgical (CAS) Solution Market) investigates and analyzes the current state and future outlook of the global market for computer-assisted surgery (CAS) solutions over the next five years. It includes information on the overview of the global computer-assisted surgery (CAS) solution market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type for computer-assisted surgery (CAS) solutions include surgical navigation systems, surgical robots, and others, while the segments by application include hospitals, clinics, and others. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size for computer-assisted surgery (CAS) solutions. It also includes the market share of major companies in the computer-assisted surgery (CAS) solutions sector, product and business overviews, sales performance, and more.