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Process automation equipment - メーカー・企業5社の業務用製品ランキング | イプロスものづくり

更新日: 集計期間:Aug 12, 2026~Sep 08, 2026
※当サイトの各ページの閲覧回数を元に算出したランキングです。

Process automation equipmentのメーカー・企業ランキング

更新日: 集計期間:Aug 12, 2026~Sep 08, 2026
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. JUKI Tokyo//Industrial Electrical Equipment
  2. 日東電機工業 Osaka//others
  3. スリーエム ジャパン Tokyo//Other manufacturing
  4. 4 ワイ・エム・シー Fukuoka//Industrial Machinery
  5. 5 小川製作所 Okayama//Industrial Machinery

Process automation equipmentの製品ランキング

更新日: 集計期間:Aug 12, 2026~Sep 08, 2026
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. [Case Study of Automation Solutions in Post-Processing] High-Precision Insertion Work JUKI
  2. Automatic nib sharpening device for pen pens. 日東電機工業
  3. Case study of automation in component insertion process: Achieving a high-efficiency production system through improved area productivity. JUKI
  4. Guide to Automation of the Polishing Process スリーエム ジャパン
  5. 4 [Case Study of Automation Solution in Post-Process] Stabilization of Insertion Process JUKI

Process automation equipmentの製品一覧

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[Case Study of Automation Solutions in Post-Processing] High-Precision Insertion Work

By automating, we can quantify the know-how of skilled workers! Here are examples that have helped in the transfer of technology.

We would like to introduce a case where an automated solution for post-processing has achieved highly accurate insertion work. The customer's concerns included issues such as "the aging of skilled workers, which is essential for maintaining quality" and "a heavy reliance on the skills of experienced workers, making it difficult to pass on technology." After implementation, we received feedback such as "we were able to automate the techniques that relied on skilled workers, maintaining high insertion quality" and "automation allowed us to quantify the know-how of skilled workers, aiding in the transfer of technology." [Challenges] - The aging of skilled workers, which is essential for maintaining quality, is progressing. - There is a heavy reliance on the skills of experienced workers, making technology transfer difficult. - Due to significant variation in parts, automating the insertion process is challenging. - Many parts require manual labor due to small gaps between components, leading to the abandonment of automation. *For more details, please refer to the PDF document or feel free to contact us.*

  • Other industrial robots
  • Process automation equipment

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[Case Study of Automation Solution in Post-Process] Stabilization of Insertion Process

Selection of models with high production volume and frequently used parts! A case of efficient improvement.

We would like to introduce a case where the automation solution for the post-process has achieved stabilization of the insertion process. The customer's concerns included "unstable quality in the insertion process" and "large variations in the insertion process, requiring significant manpower and costs for stabilization." After implementation, we received feedback such as "It became possible to connect with the SMT process, allowing for 24-hour line operation" and "Quality stabilized due to automation of the insertion process, leading to increased productivity." [Challenges] ■ Unstable quality in the insertion process ■ Large variations in the insertion process, requiring significant manpower and costs for stabilization ■ Frequent turnover of workers, leading to recruitment and training costs ■ Frequent model changes, necessitating workers to handle a variety of products *For more details, please refer to the PDF document or feel free to contact us.

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  • Process automation equipment

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Case study of automation in component insertion process: Achieving a high-efficiency production system through improved area productivity.

Presenting a collection of case studies! Examples of achieving high production even in limited spaces.

We would like to introduce a case study on the automation of the insertion process by JUKI Corporation. We faced a situation where dedicated machines were required for different supply forms such as axial and radial, leading to a high occupancy rate of machines within the factory and making efficient use of space difficult. In response, we introduced the "JM Series," which can accommodate various component forms. With high versatility in a single machine, it can quickly adapt when components change, allowing for effective use of space within the factory. [Case Overview] ■ Background: Dedicated machines are required, leading to high machine occupancy on the floor. ■ Solution: Establishment of a highly efficient production system through process automation. ■ Effect: High versatility, accommodating various types of components, resulting in high area productivity. *For more details, please download the PDF or feel free to contact us.

  • Other assembly machines
  • Process automation equipment

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Service: "Supporting semiconductor processes"

Empowering our customers! Design and manufacturing of semiconductor backend processes and IT-related equipment.

YMC is a company that aims to be a "development and proposal-oriented" enterprise, walking alongside our customers. To realize our customers' vitality, we will assist you in achieving your goals thoroughly and at low cost, through repeated efforts. Our past implementation and collaborative development achievements include T/F (Trim Former) M/C, clean benches, automatic resealing M/C, range coating devices, high-speed unfilled removal M/C, laser marking M/C, tablet automatic air blow M/C, and tablet magazine automatic insertion M/C, among others. For more details, please contact us or refer to our catalog.

  • Other semiconductor manufacturing equipment
  • Process automation equipment

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Automatic nib sharpening device for pen pens.

The primary goal is the automation of the grinding process! Fully automated equipment for grinding, quality inspection, and sorting from manual labor.

The "Automatic Grinding Device for Brush Pen Tips" is a machine that performs grinding, quality inspection, and type sorting automatically, eliminating the need for manual labor. The molded workpieces are fed in the appropriate quantity by hand and aligned in a consistent direction using a parts feeder. After that, they are transferred to the workpiece rotation unit of the grinding rotary table via the workpiece insertion unit for grinding. The grinding rotary table is moved to the inspection position, and while rotating the workpiece, image inspection is conducted, followed by type sorting of the workpiece using an actuator. The primary goal is to automate the grinding process, utilizing a high-precision reduction gear servo motor to replicate skilled techniques on the workpieces set on the rotary table. 【Features】 ■ External dimensions: Length 1200 mm, Width 800 mm, Height 1750 mm *For more details, please refer to the PDF document or feel free to contact us.

  • Other machine elements
  • Wafer processing/polishing equipment
  • Process automation equipment

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Guide to Automation of the Polishing Process

A detailed explanation of the reasons for tackling grinding process automation and 'points to consider' will be provided. *Materials will be presented.

The automation of the polishing process has many advantages, including increased productivity, improved worker safety, stabilized processing quality, and reduced total costs. We will explain "options for polishing process automation," "reasons to pursue polishing process automation," "points to consider," and "tips for polishing process automation." For more detailed information or specific inquiries related to improving and automating the polishing process, please feel free to contact us. ★ You can currently download the "Guide to Polishing Process Automation" from the PDF button below. [Contents] ■ Options for polishing process automation ■ Reasons to pursue polishing process automation ■ Points to consider ■ Tips for polishing process automation ■ Industry terminology related to automation ■ 3M polishing material solutions * For more details, please refer to the PDF document or feel free to contact us.

  • Other abrasives
  • Process automation equipment

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Presentation of case studies! We will introduce a collection of 8 examples of automation in the parts insertion process!

Various examples of improving production efficiency, stabilizing quality, and reducing costs through engineering improvements are included!

This document introduces case studies of automation implementation in the insertion process conducted by JUKI Corporation. It includes examples of transforming to a high-precision insertion process and achieving a stable production system through process stabilization. It is a valuable resource, so please take a moment to read it. 【Featured Case Studies (Excerpt)】 ■ Transformation to a high-precision insertion process ■ Achieving a high-efficiency production system through process improvement ■ Quality enhancement through variability improvement ■ Quality enhancement through traceability *For more details, please download the PDF or feel free to contact us.

  • Other assembly machines
  • Other processing machines
  • Other mounting machines
  • Process automation equipment

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Case study of automation in component insertion processes: Improving production efficiency and shortening delivery times with high-precision insertion processes.

Presenting a collection of case studies! Automating the component insertion process to improve production efficiency and shorten delivery times.

We would like to introduce a case study on the automation of the insertion process by JUKI Corporation. In the component insertion process, advanced technology and experience are required, making skilled workers play a crucial role. However, with the aging of skilled workers, maintaining technical expertise on-site has become one of the challenges. To address this issue, we introduced the "JM100." By combining the skills cultivated by skilled workers with automation, we established a highly precise insertion process. [Case Overview] ■ Background: A process where high-precision mounting is difficult ■ Solution: Automation of the technology that relied on skilled workers ■ Effect: Improvement in production efficiency and reduction in delivery time *For more details, please download the PDF or feel free to contact us.

  • Other assembly machines
  • Process automation equipment

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Key Points of Coating Process Automation

Introducing specific points and examples related to the automation of coating processes!

The coating process plays an important role in the manufacturing industry. By automating the coating process, many benefits can be achieved, such as improved production efficiency, uniform quality, and ensured safety. This article introduces specific points and examples regarding the automation of the coating process. There are several challenges associated with manual coating processes. - Variability in quality: Manual work requires measures to address quality variability due to the skill of the worker. - Low efficiency: Manual work is time-consuming and tends to result in low production efficiency. - Safety issues: Solvents and paints are often harmful to the human body, which can threaten the safety of workers. *For more detailed information, please refer to the related links. Feel free to contact us for more details.

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