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Robot Product List and Ranking from 73 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Nov 19, 2025~Dec 16, 2025
This ranking is based on the number of page views on our site.

Robot Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Nov 19, 2025~Dec 16, 2025
This ranking is based on the number of page views on our site.

  1. 福島県 次世代産業課 Fukushima//others
  2. 田辺工業株式会社 Tokyo//Industrial Machinery
  3. 古賀機械製作所 Osaka//Industrial Machinery
  4. 4 新興技術研究所 Tokyo//Industrial Machinery
  5. 5 メイコー 本社 産業システム機器部 SRシステムグループ Kanagawa//Industrial Machinery

Robot Product ranking

Last Updated: Aggregation Period:Nov 19, 2025~Dec 16, 2025
This ranking is based on the number of page views on our site.

  1. AI Powder Weighing Robot 田辺工業株式会社
  2. Automated transfer device "Hako Bed" 古賀機械製作所
  3. Mechatronics Line Type Training Model 'MM3000-PM' 新興技術研究所
  4. 4 The quality of back fillet is unrelated to the amount of solder. メイコー 本社 産業システム機器部 SRシステムグループ
  5. 5 Food-grade adhesive pads [compatible with metal detectors] exhibited at JAPAN PACK! ピアブ・ジャパン

Robot Product List

106~120 item / All 142 items

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Robot system manufacturing services

For industrial robot systems, leave it to our one-stop company!

Our company offers a comprehensive range of services from proposal, planning, design, production, to launch in the field of robot system manufacturing. Mechanical design, electrical hardware design, PLC programming & touch panel screen design, and robot program design are all handled by specialized engineers in-house, enabling us to design industrial robot systems that meet specific needs. Additionally, we also handle collaborative robots that can work alongside humans without safety fences. 【Main Products】 ■ Robot systems and labor-saving devices ■ Various inspection devices ■ PLC software ■ Robot programs *For more details, please download the PDF or feel free to contact us.

  • Inspection robot
  • Articulated Robot
  • Other industrial robots

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The quality of back fillet is unrelated to the amount of solder.

Focusing on the 'optimal timing'! Also able to handle back fillets for through holes without any issues.

In industry common sense, it is considered better to increase the amount of solder to secure the back fillet of through holes. However, in our view, the amount of solder is not the issue; rather, it is necessary to create a condition where solder can easily flow into the through holes as a prerequisite. Specifically, it is essential to quickly introduce flux into the through holes before flowing the solder, and if this is not done, no matter how much solder is supplied later, an appropriate back fillet cannot be formed. If the importance of flux is overlooked, one may conclude that "the amount of solder is not adequate (insufficient)." Our robots focus on the "optimal timing" to make the most of the flux, allowing for proper handling of back fillets in through holes without any issues. *For more details, please refer to the PDF materials or feel free to contact us.*

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[Meiko Theory 3] V-slit is not recommended as a countermeasure against solder balls.

The reasons for occurrence are diverse! A stable supply speed is achieved through the supply of wire solder.

In the industry, it is commonly understood that methods such as V-slit processing, hole drilling, and preheating for wire solder are effective for reducing solder balls, and these are actively proposed to users. However, in our view, the above measures cannot completely eliminate solder balls and may significantly impair the soldering process itself, so we do not make such proposals. The reasons for the occurrence of solder balls are diverse, and one example of the generation principle is that solder can scatter and form solder balls due to the explosive phenomenon of moisture-absorbing impurities present in the flux components. One of the causes of the flux explosion phenomenon is the rapid temperature rise of wire solder due to the high temperature of the soldering iron tip. Therefore, by using a double motor for the supply of wire solder, we have achieved a stable supply speed, resulting in certain success in preventing the explosion phenomenon. *For more details, please refer to the PDF document or feel free to contact us.*

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[Must-see for those struggling with robot miniaturization] Motors for robots #robot

Contributing to the miniaturization of robots! A compact gear is built into the motor. It can deliver high torque while maintaining the same motor size. #MiniatureRobot

For those struggling with the miniaturization of robots, we present a new proposal from Coreless Motor Co., Ltd. The geared motor "GMH Series" is a lightweight, compact, and highly efficient geared motor that incorporates a small planetary gear within a coreless structure. In traditional motors, the motor and gear head are separate, making the geared motor larger and complicating the miniaturization and weight reduction of the system. The significant difference comes from utilizing the coreless structure's key feature, the "hollow structure." By integrating the gears into this hollow section, we have made it possible to save space for the entire system. Additionally, placing the gears inside the motor contributes to the quietness of the geared motor. **Features** - Lightweight and compact with powerful performance due to the special coreless structure - Suitable for small applications requiring high-speed rotation - Excellent quietness due to the built-in small planetary gears - Adjustable to desired rotation speed and torque - Achieves miniaturization of the geared motor by placing small gears inside the motor - Customizable motor production by adjusting the gear ratio - Options available for encoders and brakes

  • sub1(差替え用).png
  • カットモデル3-1 スクショ.PNG
  • カットモデル2-2 スクショ.PNG
  • GSH80_1.jpg
  • GSH80_3.jpg
  • GSH80_4.jpg
  • GSH80_5.jpg
  • GSH80_6.jpg
  • VESTA_6.jpg
  • DC Motor

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[Automated Machinery Business] Track Record of Introducing Various Machining Processes

Introduction of deburring machines using press tapping machines and multi-joint robots!

We would like to introduce our achievements in implementing our products in various machining processes. For users of electrical control components, we have introduced a "press tapping machine" in collaboration with a high-speed precision press manufacturer. For users of automotive parts processing, we have introduced a "deburring machine" using a multi-joint robot. 【Delivery Achievements】 ■ Press tapping machine in collaboration with a high-speed precision press manufacturer ■ Deburring machine using a multi-joint robot *For more details, please refer to the PDF document or feel free to contact us.

  • Other machine elements

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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

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Introduction of Exhibiting Companies at Robot Festa Fukushima 2025

Tech Academy Koriyama, Department of Intelligent Information Design

Demonstration and hands-on experience with robots produced at our school.

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Introduction of Exhibiting Companies at Robot Festa Fukushima 2025

Nihon University College of Engineering

Introduction to robot-related research activities at Nihon University College of Engineering.

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