We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for robot.
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robot Product List and Ranking from 890 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
This ranking is based on the number of page views on our site.

robot Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
This ranking is based on the number of page views on our site.

  1. 因幡電機産業 産機カンパニー Osaka//Trading company/Wholesale
  2. Kantum Ushikata Co., Ltd. Kanagawa//Optical Instruments
  3. null/null
  4. 4 ABB ロボティクス&ディスクリート・オートメーション事業本部 - 産業用ロボット関連製品 Tokyo//robot
  5. 5 ABBジャパン Tokyo//Industrial Electrical Equipment

robot Product ranking

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
This ranking is based on the number of page views on our site.

  1. 解説資料『工場・倉庫の清掃業務DXのすすめ』無料進呈中
  2. Transport Robot CarryBot 東朋テクノロジー
  3. Valet parking robot and vehicle transport robot (lateral movement and rotation type) Kantum Ushikata Co., Ltd.
  4. 4 An era where heavy labor is entrusted to robots! Automatic correction of "misalignment" with a camera. レステックス
  5. 5 "International Logistics Comprehensive Exhibition 2026" Exhibition Information 株式会社東京機械製作所/株式会社KKS

robot Product List

3391~3420 item / All 3765 items

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Assembly Robot Ibaraki Prefecture (Company P)

Two 125kg portable long-reach units! They can be synchronized for transportation with two robots.

We would like to introduce the delivery record of the assembly robot "Exterior Wall Crimping Device" requested by Ibaraki Prefecture (Company P). This product uses two work robots set on a framework jig to crimp using hydraulic pressure. Since the finished workpieces are large, they can be transported synchronously by the two robots. 【Record】 ■ Date: December 2017 ■ Client: Ibaraki Prefecture (Company P) ■ Equipment Name: Assembly Robot "Exterior Wall Crimping Device" *For more details, please refer to the PDF document or feel free to contact us.

  • Machinery and equipment installation/dismantling/relocation
  • robot

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Inspection Robot Shiga Prefecture (Company S)

You can find tilted beads by scanning with a 3D laser!

We would like to introduce the delivery record of the inspection robot "Bead Inspection, Extraction, and Supply Device" requested by S Company in Shiga Prefecture. This product is a device that identifies misaligned beads among over 300 beads within a mold, extracts them, and supplies them correctly. It can detect tilted beads by scanning with a 3D laser. 【Record】 ■ Date: August 2018 ■ Client: S Company, Shiga Prefecture ■ Equipment Name: Inspection Robot "Bead Inspection, Extraction, and Supply Device" *For more details, please refer to the PDF document or feel free to contact us.

  • Machinery and equipment installation/dismantling/relocation
  • robot

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Vendor bending robot Chiba Prefecture (Company I)

The robot can carry 165 kg! We will introduce the results of improved productivity by switching to a multi-joint robot.

We would like to introduce our achievements from the requests we have received so far. We implemented a "bending robot" at Company I in Chiba Prefecture. The old line was producing with two bending machines and two tower-type robots, but it was changed to one articulated robot. We were able to improve productivity by rearranging the layout of the bending robots. [Overview] ■ Location: Chiba Prefecture (Company I) ■ Equipment Name: Bending Robot *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • robot

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Parts alignment supply material handling robot Osaka Prefecture (Company C)

Supports various types of work! The robot can carry a payload of 1 kg.

We would like to introduce our achievements from the requests we have received so far. We have implemented a "Parts Alignment Supply Device" at Company C in Osaka Prefecture. This robot picks up workpieces flowing on a conveyor using visual tracking and aligns them onto trays. It can handle various types of workpieces with a double system of suction hands and chuck hands, and the robot has a lifting capacity of 1 kg. 【Overview】 ■ Installation Location: Osaka Prefecture (Company C) ■ Equipment Name: Parts Alignment Supply Device *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • robot

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Product packaging line robot Miyagi Prefecture (Company T)

The robot can carry 70 kg! Introducing our achievements in implementing a "product packaging line" at Company T in Miyagi Prefecture.

We would like to introduce the achievements we have made based on the requests we have received so far. We have implemented a "Product Packaging Line" for Company T in Miyagi Prefecture. The complete line includes cardboard forming → product loading (by operator) → sealing → weighing → product label attachment → palletizing → and wrapping to prevent load shifting. The robot has a payload capacity of 70 kg. 【Overview】 ■ Installation Location: Miyagi Prefecture (Company T) ■ Equipment Name: Product Packaging Line *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • robot

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Parts material handling supply retrieval robot Osaka Prefecture (Company R)

7kg portable! We will introduce our delivery record of robots that supply small parts to molding machines and retrieve finished products.

We would like to introduce our achievements to date. We have implemented an "Insert Molding Machine Supply and Extraction Device" at Company R in Osaka Prefecture. This device is a robot that supplies small parts to the molding machine and extracts the finished products. It is possible to check with a camera whether the alignment is within 1mm when supplying to the molding machine. The robot has a payload capacity of 7kg. This device has received a manufacturing subsidy. 【Overview】 ■ Installation Location: Osaka Prefecture (Company R) ■ Equipment Name: Insert Molding Machine Supply and Extraction Device *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • robot

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Material lining and adhesive application robot, Shiga Prefecture (Company T)

Kitchen backing robot! Silicone adhesive application operation.

We would like to introduce the achievements we have had with requests made to our company so far. We introduced a "kitchen back panel robot" to Company T in Shiga Prefecture. This device performed the following tasks with a single robot: capturing variety information from barcodes, detecting equipment misalignment with sensors, and applying silicone adhesive and curing agents. An automatic cutting device for the backing material was also integrated. The key point was controlling the amount of silicone adhesive applied. We controlled the application amount of silicone using torque control. It was a challenging project because the application amount varied with temperature. 【Overview】 ■ Installation location: Shiga Prefecture (Company T) ■ Equipment name: Back panel device

  • Articulated Robot
  • robot

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Mobile collaborative robot for material handling, loading and unloading to 5 processing machines.

AGV robot for material supply and finished product retrieval for 5 robotic drills! No safety fence! It will perform material handling by taking pallets from shelf 168 to the processing machine.

We have introduced the "AGV robot for material supply and finished product retrieval to five RoboDrills" at Company F, a resin processing manufacturer in Aichi Prefecture. The AGV robot here retrieves materials from over 100 shelves containing both materials and finished products, loads them onto the AGV robot, and then transports them to the processing machine for retrieval of finished products and supply of materials. The key point is that it can operate 24 hours a day. Please take a look at the introduction video of the AGV robot below! [Overview] ■ Installation location: Aichi Prefecture (Company F) ■ Equipment name: AGV Robot

  • Articulated Robot
  • robot

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[Data Presentation] Seven Steps to Integrated Production for Industrial Robot Manufacturers

We will provide a detailed introduction to the flow of robot manufacturing, which is a one-stop process from planning and design to installation, and cannot be imitated by other companies.

1. Consultation First, we will listen carefully to your consultation details and then visit the work site. 2. Proposal Our mechanical design experts will create conceptual drawings of the surrounding equipment, including robots, and provide you with a quote to realize them. 3. Testing and Experimentation (if necessary) In the case of a first-time scenario, we will definitely conduct tests or experiments. Depending on the situation, we may select and propose different materials or tools than those in the conceptual drawings. 4. Design Led by our president, who has knowledge in both electrical engineering and mechanical design, as well as experience as a selection and purchasing manager for robots at a major manufacturer, our team of knowledgeable and experienced design experts will create detailed design drawings using CAD. 5. Manufacturing We will package the completed robot and surrounding equipment in a way that allows for transport by truck, and then deliver and install them at your factory. 6. Teaching and Trial Operation We will create a unique program and, while operating the assembled robot, will teach it the movements required at your work site. 7. Installation and Operation Explanation We will carefully disassemble the robot and surrounding equipment, transport them to your factory, and install them. After that, we will conduct trial operations on-site for about one day and will be present for operation for one to two days.

  • Assembly robot
  • robot

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[First Public Release] Achieving Robot Joint Replacement at Customer Site!

We propose to reduce the time, labor, and costs of recovery work.

The "JAKA Zu Series" is a collaborative robot that achieves remarkably low prices while maintaining high technology. Among them, what has been highly praised recently is that JAKA robots have succeeded in modularizing joint components, allowing customers (on-site actual machines) to perform joint replacement work. Typically, repair support is provided through on-site support or send-back services (manufacturer factory support), but by enabling local customers to handle joint replacements, it leads to reductions in equipment/maintenance budgets and shorter recovery times. The method for replacing joints has been made public by JAKA. Please be sure to watch the reference video at the URL below. https://www.jaka.com/en/online.html?lb=other&nd=all Site name: JAKA Academy Video name: How to replace a joint For more details, please download the catalog. Feel free to contact us with any inquiries.

  • Other industrial robots
  • robot

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Transportation Industry System "Car Raku Ver.7"

Supports various contract unit prices! A package software that allows for speedy information grasping and analysis.

"Car Enjoyment Ver.7" is a package software designed for transportation and logistics companies that allows for easy input and retrieval of information based on the driver. Customization of the system to fit operational needs is also possible. It manages not only expenses and sales performance for each vehicle but also repair history, and it includes features necessary for transportation operations, such as invoices, pro forma invoices, vehicle-specific income and expenditure performance reports, and fare inquiries. 【Features】 ■ Complete management of fare structures (unconfirmed fares/contract unit prices) ■ Management of vehicle expenses and payment for hired vehicles ■ Standard equipment for repair slip input ■ Abundant practical management materials *For more details, please refer to the external link page or feel free to contact us.

  • Other information systems
  • others
  • robot

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Carrot foreign matter removal device (equipped with HALCON DL) + Scara robot

Foreign objects (ceramics, stones) in the carrot will be automatically removed using vision tracking. Image processing is equipped with HALCON DL (deep learning)!

We are currently sorting out foreign objects (stones, ceramics) mixed in the cullet by human eyes and hands, but we will automate the removal using a combination of AI-equipped image processing, vision systems, and conveyor tracking functions with scalar robots. This will definitely lead to a reduction in labor shortages, fixed costs, and an improvement in the quality of the cullet. There are no identical shapes, colors, or sizes for the ceramics and stones mixed in the cullet, but the AI-equipped image processing can reliably distinguish between good products and foreign objects, allowing the robot to pick only the foreign objects. While human visual inspection alone reduces reliability, this automatic sorting machine can consistently remove foreign objects. There is no doubt that the quality of the cullet will improve!! *This technology can also be applied to the removal of foreign objects in food products, not just cullet!!

  • Automatic sorting machine
  • Other inspection equipment and devices
  • Glass
  • robot

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Polishing acrylic glass with a robot. Automatic pressure adjustment, high-quality finish!

Equipping industrial robots with human-like sensory perception (tactile sense) through high-speed automatic correction of contact force, automating polishing and grinding processes with the best quality! Dramatically improving management challenges and productivity.

FerRobotics Compliant Robot Technology GmbH has developed a UR+ model, ACF-K, using its proprietary ACT technology. It allows for easy setup on the teaching pendant with Universal Robots UR10, UR10e, and UR16e. The end effector (ACF) utilizing ACT technology automatically compensates for changes in the dimensions, curved shapes, and non-planarity of the workpiece by rapidly adjusting the stroke, ensuring consistent contact with the workpiece at the set force. This technology can increase the speed of the device or robot's trajectory, thereby enhancing processing speed and improving cycle time. Additionally, in robot polishing and grinding, the ACF controls the contact pressure through the stroke adjustments, eliminating the need to move the heavy robot arm for corrections, which further assists in improving processing speed. Furthermore, it automatically compensates for tool load changes due to gravity based on the robot's angle, maintaining uniform contact pressure from any angle and enabling a finish without processing inconsistencies.

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Skilled grinding technology for robots. Solving the 3K jobs and skilled labor inheritance issues!

Automation of the artisan's skills (polishing, grinding) and hazardous tasks, which have been given up until now, through high-speed autonomous control with contact force control. Dramatic improvements are expected from the end effector.

FerRobotics' Active Compliant Technology automatically corrects the "difference" in contact pressure (force) that occurs during polishing and grinding processes, which require skilled techniques, at high speed. This technology allows for consistent polishing/grinding at the set contact force, unaffected by variations in processing speed or gravitational load differences due to angles. With the end effector (ACF) utilizing ACT technology, it instantly and automatically compensates for changes in dimensional tolerances, curved shapes, and non-flat surfaces by rapidly adjusting the stroke, maintaining contact with the workpiece at the set force. This technology can increase the speed of the device or robot's trajectory, thereby enhancing processing speed and improving cycle times. Additionally, in robotic polishing and grinding, the ACF controls the contact pressure through the expansion and contraction of its stroke, eliminating the need to move the heavy robot arm for corrections, which further assists in improving processing speed. Furthermore, it automatically compensates for tool load variations caused by gravity due to the robot's angle, ensuring a consistent contact pressure from any angle and enabling a finish without processing inconsistencies.

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Simple Automatic Correction System

There is no need for data collection work on complex component dimensions!

We offer a "Simple Automatic Correction System" that predicts tool edge wear and performs automatic data input using G10 codes based on those values. During the initial setup of this system, we provide support and assistance free of charge. Please feel free to contact us if you have any requests. 【Benefits】 ■ Simplifies initial wear response during tool changes ■ Allows for stable parts with corrections applied for each machining operation ■ The wear prediction program (sub-pro registration method) can be adapted to any machine *For more details, please download the PDF or feel free to contact us.

  • Other cutting tools
  • Other services
  • robot

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The minimum configuration can be introduced at a price of 1 million yen! Collaborative robot FR10.

Make collaborative robots more accessible. Achieve automation of production lines, space savings, and cost reduction with collaborative robots under 1 million!

We handle the 'FAIRINO Robot' from FAIR Innovation Robot System. It is designed to automate processes on production lines, such as welding, palletizing, and picking. Automatic generation of teaching based on images captured by a camera (optional) is also possible. In the catalog available for download below, you can find the product lineup and series configuration of the robotic arms, specifications of the control box, teaching pendant, emergency stop switch box, as well as information on welding robots and bolt tightening robots. 【Features of FAIRINO】 ■ No safety fence required ■ No specialized knowledge needed ■ Operable via computer connection ■ Magnet installation possible ■ Domestic maintenance support *For more details, please refer to the PDF materials or feel free to contact us.

  • Transport and handling robots
  • robot

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AMATAMA Corporation

Next-generation humanoids and computing

In recent years, humanoids have garnered attention, and at AMATAMA, we are conducting research and development on the computing systems required for humanoids in order to implement the necessary functions for the next generation. In this exhibition, we will present our efforts through panel displays and explanations from our researchers.

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Unmanned Automated Transport Robot 'Σone100' [Equipped with Extended SLAM Functionality]

Achieve high-precision location identification! Easily adapt to changes in factory layout.

The "Σone100" is an unmanned automated transport robot equipped with an extended SLAM function and a multi-guidance system. By using a laser range sensor, it can create maps and achieve high-precision positioning based on them. Additionally, by adopting mecanum wheels, it can move in all directions and transport items over the shortest distance. 【Features】 ■ Extended SLAM function ■ Omnidirectional movement ■ Intelligent swarm control (optional) *For more details, please refer to the PDF document or feel free to contact us.

  • Transport and handling robots
  • robot

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Unmanned Automated Transport Robot 'Σone100' [Intelligent Swarm Control]

Equipped with intelligent group control functions! An essential item for advanced smart factories.

"Σone100" is a multi-guidance unmanned automated transport robot that can operate up to 20 AGVs, automatically determining and instructing the appropriate AGVs and routes. In production environments, PLCs are used to control production equipment, enabling the interconnection of this product with production equipment within the factory to achieve AGV autonomous operation. Additionally, it is possible to install various applications. Please feel free to contact us if you have any requests. 【Features】 ■ Extended SLAM functionality ■ Omnidirectional movement ■ Intelligent group control (optional) *For more details, please refer to the PDF materials or feel free to contact us.

  • Transport and handling robots
  • robot

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Unmanned Automated Transport Robot 'Σone100' [In Collaboration with Production Line]

Contributes to smart factory transformation with the ability to collaborate with production lines!

"Σone100" is a multi-guidance unmanned automated transport robot that connects with production equipment within the factory to achieve AGV autonomous driving inside the factory. By simply connecting to a dedicated cart, the motion performance of this product remains the same, while the maximum load capacity can be expanded. It demonstrates significant capabilities in parts supply for line changes, finished product transport, and changes in the installation position of the robot. [Features] ■ Expanded SLAM functionality ■ Omnidirectional movement ■ Intelligent group control (optional) *For more details, please refer to the PDF document or feel free to contact us.

  • Transport and handling robots
  • robot

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Security-oriented autonomous mobile robot software '@mobi'

Efficiency in patrol security! Achieving safe and secure security with autonomous mobile robots!

In the security industry, issues such as labor shortages and the burden of patrolling during nighttime and inclement weather are significant challenges. In particular, patrolling in extensive areas or dangerous locations places a heavy burden on security personnel and carries the risk of accidents. By equipping autonomous mobile robots with '@mobi', these challenges can be addressed, enabling efficient and safe patrolling security. 【Usage Scenarios】 * Indoor patrolling in factories, warehouses, and commercial facilities * Outdoor patrolling in parking lots, parks, and outdoor facilities * Patrolling during nighttime and inclement weather 【Benefits of Implementation】 * Achieving 24/7 patrolling security * Reducing labor costs * Ensuring the safety of security personnel in dangerous locations * Improving efficiency through optimized patrolling routes

  • IPROS4488769667967728534.png
  • Software (middle, driver, security, etc.)
  • robot

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[Agriculture] @mobi 2.6

Streamlining harvesting operations with autonomous mobile robots!

In the agricultural sector, labor shortages and the need for increased efficiency are significant challenges. In particular, harvesting is heavily influenced by weather conditions and is physically demanding, leading to a growing demand for automation. @mobi 2.6 contributes to the efficiency of harvesting operations by being mounted on autonomous mobile robots. 【Usage Scenarios】 - Transporting harvested goods - Moving within the fields - Coordination among multiple robots 【Benefits of Implementation】 - Reduction in work time - Decrease in labor costs - Alleviation of work burden

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[For Medical Institutions] @mobi 2.6

Efficiently streamlining disinfection tasks in medical settings with autonomous mobile robots!

In medical institutions, thorough disinfection work is required to reduce the risk of hospital-acquired infections. Particularly, as the labor shortage becomes more severe, improving the efficiency of disinfection work is an important issue. Autonomous mobile robots can reduce infection risks and improve operational efficiency by disinfecting specific areas without human intervention. @mobi 2.6 was developed to address this challenge. 【Usage Scenarios】 - Disinfection of patient rooms, operating rooms, and examination rooms - Disinfection of shared spaces such as corridors and waiting rooms - Disinfection during times with fewer people, such as at night or early in the morning 【Effects of Implementation】 - Reduction in labor costs due to improved efficiency of disinfection work - Ensuring safety for patients and staff by reducing infection risks - Standardization of the quality of disinfection work - Alleviation of the burden of cleaning tasks

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Introducing the latest features for warehouses @mobi

Efficiently streamline picking operations with autonomous mobile robots!

In the warehouse industry, improving the efficiency of picking operations and reducing labor costs have become important challenges. There is a demand for addressing labor shortages, increasing the burden on workers, and reducing errors. @mobi 2.6 supports the automation of picking operations by being equipped with autonomous mobile robots. 【Usage Scenarios】 - Product transportation within the warehouse - Automatic movement to picking stations - Integration with inventory management systems 【Benefits of Implementation】 - Reduction in work time - Decrease in labor costs - Reduction in operational errors

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Introduction of the latest features for entertainment facilities @mobi

Autonomous mobile robots streamline guidance services in entertainment facilities!

In entertainment facilities, guidance services require smooth navigation and information provision for visitors. In particular, providing directions within a large facility and event information are crucial factors that influence customer satisfaction. However, human-guided assistance has its limitations, and congestion can occur during peak times, potentially diminishing visitor satisfaction. The @mobi 2.6, when equipped on autonomous mobile robots, allows for free movement within the facility, enabling accurate information provision and smooth guidance. 【Usage Scenarios】 - Directional guidance in theme parks and amusement parks - Guidance for exhibits in exhibition halls - Floor guidance in commercial facilities 【Benefits of Implementation】 - Reduction in labor costs through the efficiency of guidance services - Improvement in customer satisfaction - Timely provision of the latest information

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【For Security】@mobi-SLAM

Supports autonomous movement and anomaly detection at security sites with high-precision 3D SLAM.

In the security industry, extensive area monitoring and rapid detection of abnormal situations are required. Especially in nighttime, adverse weather conditions, or places with poor visibility, advanced technology is necessary for monitoring. Traditional surveillance systems are prone to blind spots, increasing the risk of missing abnormalities. @mobi-SLAM prevents self-position loss and creates high-precision maps, enabling efficient patrolling by autonomous mobile robots. This reduces the burden on security personnel and contributes to building a safer environment. 【Use Cases】 - Facility security during nighttime or adverse weather - Patrolling within warehouses and factories - Remote monitoring in hazardous areas - Integration with abnormal detection systems 【Benefits of Implementation】 - Establishment of a 24/7 monitoring system - Reduction of labor costs - Rapid response in case of abnormalities - Improvement in monitoring accuracy

  • Software (middle, driver, security, etc.)
  • Other embedded systems (software and hardware)
  • Embedded system design service
  • robot

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アグリ・ファームソリューションビジネス

独自技術で環境データを解析!スマート農業を実現します

当社は、持続可能社会に向けた『アグリ・ファームソリューション』で 新しい農業ビジネスをご提案しております。 ハウス内の様々なデータを収集・管理し、生育のための適切な制御を実現。 生産現場の省力化の実現と適切な生育環境を創造します。 工業部門で培ったノウハウを活かし、農業・畜産業の自動化や省力化による 生産性向上に取り組み、循環型社会の実現に大きく貢献いたします。 ご要望の際は、お気軽にご相談ください。 【ソリューション例】 ■AI摘み取りロボット ■自動潅水システム ■6次産業ビジネス ※詳しくはPDFをダウンロードして頂くか、お気軽にお問合せください。

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[Case Studies of Various Paints] For Musical Instrument Manufacturers

After introducing the automated painting system using robots, our customer's production efficiency has improved!

We would like to introduce a case study from a musical instrument manufacturer. We received a request from a customer who wanted to improve production costs in light of the update of their robot and automatic painting machine. In response, we proposed a new type of painting robot, a rotary atomizing automatic painting machine, and software that allows for offline teaching. The ultra-high-speed rotation of the painting robot resulted in the atomization of the paint, which improved coating efficiency and smoothness, leading to a reduction in the defect rate of the paint film. [Case Overview] ■ Installation Site: Musical Instrument Manufacturer ■ Installed Products: Painting Robot, Bell-Type Automatic Painting Machine for Robots, System, etc. ■ Results: Improved coating efficiency and smoothness, leading to a reduction in the defect rate of the paint film. *For more details, please refer to the related links or feel free to contact us.

  • Painting Machine
  • Other industrial robots
  • robot

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Surgical Robot Market Size and Forecast (2021-2031)

It is predicted to grow from 10.25 billion US dollars in 2023 to 28.54 billion US dollars by 2031.

The Insight Partners has announced a new research report on the global surgical robot market. According to the latest research report titled "Surgical Robot Market Forecast until 2031 - Global Analysis - By Type, Application, Material, End User, and Region," the market is expected to grow from USD 10.25 billion in 2023 to USD 28.54 billion by 2031, recording a CAGR of 13.7% from 2023 to 2031. A significant factor driving the growth of the surgical robot market is the rapid increase in the number of surgical procedures and the rising prevalence of chronic diseases. However, the high costs associated with robotic surgeries and the installation of surgical robots are hindering market growth. The incorporation of AI-based features into surgical robots is expected to bring new trends to the surgical robot market in the coming years. This report provides a detailed analysis of the global surgical robot market. It analyzes the market by type, application, material, end user, and region, and also discusses the strategies and challenges of key market players in detail.

  • Other industrial robots
  • robot

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Now recruiting sales agents for service robots.

Due to a surge in inquiries, we are seeking additional sales agents.

Now recruiting sales agents - Excellent products - Providing high-quality and stable products by innovatively utilizing AI technology - Competitive pricing - Market-competitive pricing - Ongoing support - Full support for agents - Market growth - Abundant growth opportunities by offering products that match customer needs - Education and training - Providing continuous education and training for agents

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  • Other industrial robots
  • robot

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