We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Motion Controller.
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Motion Controller Product List and Ranking from 14 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Motion Controller Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. テクノ Saitama//Industrial Electrical Equipment
  2. コスモテックス Kanagawa//Electronic Components and Semiconductors
  3. プライムモーション Nagano//Industrial Electrical Equipment
  4. 4 ソーリンク Miyagi//Industrial Machinery
  5. 4 東阪電子機器 Osaka//Industrial Electrical Equipment

Motion Controller Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Product Introduction: PLC Motion Controller テクノ
  2. [Example] Roll Tension Control テクノ
  3. Pitch error correction function that adds pitch error values during drive for positioning. コスモテックス
  4. 4 Product Introduction: PC-Based Fine Motion テクノ
  5. 4 EtherCAT-compatible master "PXEP-CN" now supports Python. コスモテックス

Motion Controller Product List

46~60 item / All 95 items

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[Example] Quilting Machine (Embroidery and Sewing Control)

This is an example of implementation for industrial embroidery machines and sewing machine control.

We have utilized NC control and robot control functions in industrial knitting machines, embroidery machines, and sewing machines. This is a motion controller that can be directly connected to dedicated PC software and can be operated freely from dedicated software for knitting and embroidery machines. In particular, it processes vast amounts of operational data with its DNC function. It can also specifically handle stitch back and needle up/down control. For more details, please contact us.

  • controller
  • Textile Processing Machinery

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[Example] Control of Hole Drilling and Rigid Tapping

Case study of controlling a high-precision drilling and tapping machine.

This is an example of applying high-precision NC-equivalent motion technology to a dedicated processing machine. For more details, please contact us.

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[Example] Desktop Implementation Machine (Screw Tightening / Coating)

[Example] A tabletop implementation machine with a small motion and servo built into the body.

This is an example of controlling a precision machining machine on a table. It features easy operation with a tech language, motion accuracy equivalent to general-purpose NC, and uniform support for dispensing, screw tightening, riveting, drilling, and more. For more details, please contact us.

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  • Other mounting machines

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[Example] Servo Press / Molding Machine

Freely and accurately control position and torque.

Servo presses, injection molding, bending machines, and precision molding can have varying molding results depending on the accuracy of torque control, position control, and the precision of timing changes. At Fine Motion, we can switch between position commands and torque commands at a control cycle as short as 125 μsec. The operating program is also described in a very simple manner, making it an easy-to-handle controller. For more details, please contact us.

  • controller
  • Other processing machines
  • Injection Molding Machine

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[Case Study] In-house Production of Axial Rotation Type and Fryer Type Winding Machines

This is an example of controlling a winding machine characterized by precise contour control with our motion controller.

Winding requires very high precision. Fine wires are aligned and wound, but if the traverse pitch (the feed amount per rotation) does not match the winding diameter, gaps or lumps can occur. Furthermore, once misalignment happens during the winding process, the product cannot be completed. Additionally, since the unit cost of winding is low, it is necessary to increase productivity by winding at high speeds. [Challenges] - I want to easily program winding commands. By parameterizing the traverse width, pitch, total number of turns, spindle rotation speed (for low-speed and high-speed layers), spindle acceleration and deceleration, and timing corrections for reversals, I want to easily program the winding operation. Example: Error in bobbin shape: fine-tune the traverse width Change in wire diameter: fine-tune the pitch - I want to achieve sufficient winding precision. - I also want to easily perform tasks like soldering and cutting.

  • controller
  • Winding Machine

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[Case] Improvement of nozzle winding accuracy

Verification of High-Speed Nozzle Wrapping Accuracy and Improvement Trials

This is an example of a winding machine characterized by precise contour control. The theme is "Accuracy verification and improvement of high-speed nozzle winding," and the challenges are "quantitative analysis of the trajectory accuracy of nozzle winding," "efficient measurement of various patterns by changing speed and conditions," "optimal control considering the response of mechanisms and servo systems," and "ensuring stable operation at all times." For more details, please contact us.

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  • Winding Machine

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[Example] Precision Parts Processing Machine

Precision machining of watch parts

This is an example of processing clock components using a one-board type motion controller. For more details, please contact us.

  • controller
  • Other services

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Integration with LabVIEW

Collaboration between Fine Motion Controller and LabVIEW

You can easily use the fine motion controller with National Instruments' LabVIEW. LabVIEW's "design and analysis tools" work in conjunction with Techno's "fine motion." This is effective for research and development of new methods and sensing technologies. For more details, please contact us.

  • controller
  • Software (middle, driver, security, etc.)

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[Customization] Amplitude Correction Oscillation

By measuring and correcting the amplitude during operation, the reduction of amplitude from low speed to high speed is improved.

High-speed and high-precision reciprocating motion using the oscillation command (SWING) is useful for grinding, polishing, fine machining, cutting, and high-precision drilling. It operates in parallel with normal operation and can be controlled accurately by significantly improving amplitude reduction at high speeds through a unique amplitude correction function. For more details, please contact us.

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Basic performance: Accuracy of continuous path operation

The precise continuity of micro interpolation is the essence of motion control!

Continuous path motion is a fundamental performance requirement for motion controllers, and in precision motion control, it is a crucial point that can be considered its essence. It can be rephrased as the accurate continuity of multi-axis interpolation. Accurate continuous interpolation means "no positional error; the trajectory is precise" and "no velocity error; the speed and time are as specified." Fine and high-precision movements consist of a series of very small vectors. In processes such as machining, polishing, and winding, it is necessary to accurately maintain a large number of small interpolations continuously. The operation (processing) time T for one interpolation is determined by the feed speed F and the interpolation length L, where T = L/F. There is a limit to how small this time can be, beyond which the motion controller's control cannot keep up. This is why the minimum time for accurately continuous processing of small interpolations serves as a performance indicator for motion controllers. Techno's motion controllers can achieve continuous interpolation with a control cycle as short as 125 μsec. Accurate speed and smooth continuity are directly linked to the precision of operations and processing, significantly impacting work quality. For more details, please contact us.

  • controller

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Product Introduction: PC-Based Fine Motion

High-performance motion controller that leverages overwhelming CPU power.

A general-purpose PC becomes a high-performance motion controller. With INtime, which is a Real-Time Operating System (RTOS), reliability and stability are ensured. Under the high-performance CPU of the PC, in addition to motion control and soft PLC, it is also possible to build proprietary control software, making it ideal for more advanced applications. Furthermore, it can simultaneously control a variety of machines such as precision machining, semiconductor manufacturing, high-speed assembly, robotics, molding, servo presses, and laser processing.

  • controller

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初めてのモーションコントローラ

モーションコントローラが必要とされる理由やモーション制御についても解説します!

「モーションコントローラ」を直訳すると、「動きを制御するもの」 となります。具体的には、サーボ駆動による様々な産業装置を制御する コントローラのことです。位置決めコントローラとの違いはモーション 制御ができるかの違いです。 装置メーカ様は通常、お持ちのノウハウと知恵を活かしてより高い生産性を 追求し、それを備えた「売れるマシン」を作るため、日々時間を費やされて いると思います。 しかし、CPUやソフト技術は、時代の流れとともに著しく進歩していくもの。 装置メーカ様がすべてのソフトを自社開発されるのは、かなりの負担と なることでしょう。 ※記事の詳細内容は、関連リンクより閲覧いただけます。  詳しくは、お気軽にお問い合わせください。

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Motion Controller "PLMC"

It is a product that connects the world of PLCs and the world of motion controllers!

The "PLMC" is a motion controller designed for PLC users, allowing easy access to motion functions from PLCs. It can easily control not only simple positioning but also assembly, processing, robotics, and complex machines. Additionally, since this product is an independent motion controller, it allows for the use of motion functions freely from the ladder or without relying on the ladder. 【Features】 ■ Supports multi-axis and multi-series ■ Precise control is possible with rich motion functions even without a ladder program ■ Compatible with general-purpose ladders, making expansion with I/O, networks, etc., easy ■ Collaboration between PC/PLC and PLMC ■ Wide range of options and adaptability for horizontal deployment of technology *For more details, please refer to the related links or feel free to contact us.

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Motion controller demo unit rental

All necessary motors, input/output, and operating programs are included!

We offer free rental of a system for practicing and demonstrating motion controllers. With the demo unit, you can easily experience a full range of motion control functions simply by operating the PC according to the provided text. In about half a day of use, you can understand fine motion multi-axis control, making it a system considerate of beginners. 【Features】 ■ Easy to use ■ Complete text materials ■ Complete data ■ A system designed with beginners in mind, allowing for safe operation ■ All operations can be performed on a desktop PC, providing comfort without needing to choose a specific location for the experience *For more details, please refer to the related links or feel free to contact us.

  • Rental/lease

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[Case Study] Precision Automatic Grinding Machine Capable of Reflecting Processing Know-How

We will introduce a case where machines can be operated directly from a dedicated software that is directly connected to our in-house polishing database!

We would like to introduce a case where our one-board motion controller "SLM4000" was implemented, allowing for effective utilization of our company's know-how. The customer was controlling with a general-purpose NC, but found it difficult to express their uniqueness and was dissatisfied. There was a need to consolidate their precision grinding processing know-how into proprietary software (created with Visual Basic) and connect it directly to the NC, but they had given up due to limitations in the existing NC's capabilities. With the introduction of our product, they were able to operate and control with their own software, achieve basic performance equivalent to general-purpose NC, and realize unique functions that differentiate them from competitors. [Challenges] ■ Direct connection to the company's grinding database ■ Ability to operate and control with proprietary software ■ Achieving basic performance and accuracy equivalent to general-purpose NC ■ Utilizing unique functions to differentiate from competitors *For more details, please refer to the related links or feel free to contact us.

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