Industrial "Ping Pong Ball Bulk Stacking Picking Robot System"
It is a FANUC industrial robot system that picks up ping pong balls using 3D vision.
It is a bulk picking robot system for industrial ping pong balls.
- Company:HCI
- Price:Other
Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.
46~60 item / All 252 items
It is a FANUC industrial robot system that picks up ping pong balls using 3D vision.
It is a bulk picking robot system for industrial ping pong balls.
This is an industrial robot system that performs rough wood carving using a KUKA robot with high rigidity.
It is an industrial wood carving processing robot system.
This is an industrial robot system manufactured by Yamaha Motor for low-cost screw fastening processing using a nut runner.
It is an industrial screw tightening processing robot system.
This is the world's first industrial robot system developed by Mitsubishi Electric that enables aligned winding, which has traditionally been considered difficult in the cable and wire industry.
It is an industrial cable automatic alignment and winding robot system.
This is the "ultimate smart factory"! It is an Omron industrial robot system that performs picking and assembly without human intervention.
It is an industrial demo cell line collaborative robot system.
This is an industrial robot system that performs the fitting of molded parts using Kawasaki Heavy Industries' Dualo. It excels in cost performance.
It is an industrial molding parts fitting collaborative robot system.
Introducing a robotic system that achieves automatic teaching self-correction according to work variability and automates the full inspection of welding beads. *Catalog available.
LinkWiz's software utilizes proprietary three-dimensional shape processing technology to achieve welding and inline full inspection tailored to the variations of workpieces, which was difficult for conventional industrial robots. It contributes to improving welding quality and maintaining and standardizing inspection levels. ★ 'L-ROBOT' This system automatically generates and corrects teaching without stopping the robot line. It automatically adjusts the teaching to match the subtle shape differences of the target workpieces, achieving zero processing defects. ★ 'L-QUALIFY' By integrating a 3D scanner and 'L-QUALIFY' into industrial robots, we have realized a robotic system that inspects the 3D shapes of workpieces. By digitizing the workpiece shapes, it enables inspections based on "data representation of shapes" rather than "human sensory" inspections. *For more details and features of the products, please download the PDF or contact us.
Digitalizing 'artisan skills'! A future-type robotic system that enables the transmission of techniques to robots.
"Narauno" is a polishing robot system that achieves mirror polishing through hybrid control using a 6-axis force sensor mounted on the robot. By maintaining a constant "holding force" and "holding direction" of the tool, it enables uniform mirror polishing even on wide flat surfaces and freeform surfaces, which are difficult for skilled workers. The robot trajectory program is automatically created using dedicated 3D/CAD/CAM for "Narauno." 【Features】 ■ Digitalization of the mirror polishing artisan ■ Suitable for mirror polishing of freeform surfaces ■ Improvement of the working environment through technology transfer ■ Stable quality ■ Standard equipped with robot automatic programming software *For more details, please refer to the PDF materials or feel free to contact us.
Achieve low costs! There is no need to engage experienced engineers in simple tasks!
The "Chemical Analysis Robot System" is a robot system that drops the chemical to be tested onto a wafer and conducts component analysis. By simply pressing the start button, the system performs the designated pretreatment unattended, conducts the analysis, and automatically handles post-processing such as result storage. 【Introduction to Implementation】 ■ Key Points and Lessons for Successful Implementation - Contributes not only to labor reduction and cost reduction but also to quality improvement. - Allows for flexible changes and additions to tasks that are difficult with dedicated machines. ■ Background of Implementation - In the field of chemical manufacturing, analysis work relied on manual labor. - Analysis work requires skilled workers due to its reliance on expertise, but it involves repetitive simple tasks that need to be performed around the clock, leading to high costs. ■ Effects of Implementation - Eliminates the need to engage experienced technicians in simple tasks, achieving cost reduction. - Increases uniformity of work, achieving homogenization of analysis data and safety, contributing to quality improvement. - Capable of operating 24/7 without breaks, thus improving productivity. *For more details, please refer to the PDF document or feel free to contact us.
The position can be subtly changed due to thermal expansion, allowing for easy adjustments to molds and processes!
The "Hot Forging Robot System" is a robotic system composed of a heating furnace, a melting furnace, and a heat treatment furnace handling system. [Introduction to Implementation] ■ Key Points and Lessons for Successful Implementation - Having a long-standing relationship with a forging manufacturer allowed for a deeper understanding of automation in forging, contributing to the robotization. ■ Background of Implementation - Work in hot forging involves harsh environments such as high temperatures, vibrations, and dust, leading to low willingness to work and a high demand for automation and robotization. ■ Effects of Implementation - Automating dangerous and harsh tasks improves the working environment. - Simultaneously achieves efficiency in operations. - Human variability factors are eliminated, resulting in stabilized quality. *For more details, please refer to the PDF document or feel free to contact us.
Robots are effective for streamlining production and improving quality.
When introducing a robot system for the first time, there are many concerns such as: 1. not knowing where to consult, 2. whether our production can be automated with robots, 3. how much it will actually cost, and 4. whether we can effectively utilize it. However, large companies are increasingly adopting robots and advancing efficiency, widening the gap with small and medium-sized enterprises. Our company is working day and night to provide optimal robot systems for small and medium-sized enterprises. For more details, please contact us or refer to our catalog.
It is possible to build a large robot system with high cost performance.
Are you giving up on the idea of automation because your products are large and cannot be robotized? Or have you ever faced difficulties due to the lack of a company that can handle everything in one go? Our company has extensive experience in planning, designing, and manufacturing large machinery. Additionally, we can handle various types of robots, allowing us to combine them with large equipment to create cost-effective large robot systems. For more details, please contact us or take a look at our catalog.
Automating deburring by robots with skilled operators, achieving labor savings and stable quality!
This is a gear transportation and deburring automation robot system that combines a 20kg portable 6-axis robot and an in-and-out system made by Nitto Seiko, along with a new type of 3kg portable wing slicer robot and deburring tool. Previously, deburring of gears was done manually by skilled workers, but with the introduction of this system, the actions of skilled workers are replicated by robots, achieving labor reduction and stabilization of deburring quality. 【Implementation Effects】 - Number of people: 2 ⇒ 1 - Other effects: Improvement in quality, replacement/support for strenuous tasks *For more details, please refer to the catalog or feel free to contact us.
Automation of work transportation, loading, and cleaning in the machining process for machine parts using a robotic system has been achieved. Successful in reducing manpower and preventing accidents!
By combining the 350kg payload 6-axis robot and the 50kg payload 6-axis robot from Nittokyo with a transport system, we have achieved the automation of transporting, loading, and cleaning large machining parts for machine tools. Previously, the transportation, loading, and cleaning of workpieces to the machining machines were done manually by workers or with crane transport. However, with the introduction of this robotic system, we have seen significant benefits such as labor reduction, elimination of cranes leading to increased production efficiency, and prevention of accidents during transport. 【Implementation Effects】 - Number of people: 2 ⇒ 1 - Production volume: 4 pieces (per day) ⇒ 9 pieces (per day) - Other effects: Accident prevention (heavy load transport) *For more details, please refer to the catalog or feel free to contact us.
Automate the picking and alignment of fine parts for optical units, replacing the tasks of skilled workers with robots!
The introduction of a new 3kg portable wing slicer type (scara type) robot manufactured by Nittokyo has achieved the automation of picking and aligning fine parts to be incorporated into optical components, significantly reducing the burden on workers. Previously, skilled workers manually picked fine parts from trays using tweezers to align them, but with the introduction of the robot, we have successfully automated the picking and aligning processes. 【Implementation Effects】 - Number of workers: 2 people ⇒ 1.5 people - Production volume: 300 pieces/day ⇒ 400 pieces/day - Other effects: Automation of skilled tasks Replacement/support for arduous tasks (meticulous work) *For more details, please refer to the catalog or feel free to contact us.