We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for NC Processing Machine.
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NC Processing Machine Product List and Ranking from 15 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

NC Processing Machine Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

  1. 三晃工具 Gifu//Industrial Machinery
  2. ユニテックシステム Aichi//Other manufacturing
  3. 東洋鉄工所 Shizuoka//Industrial Machinery
  4. 4 シンクス Shizuoka//Industrial Machinery
  5. 5 フジ産業 Shizuoka//others

NC Processing Machine Product ranking

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

  1. Tabletop NC machining machine "Takumi-kun" ユニテックシステム
  2. Toyo Iron Works Co., Ltd. Company Profile 東洋鉄工所
  3. NC processing machine capable of machining acrylic and polycarbonate. シンクス
  4. 4 Fuji Sangyo Co., Ltd. Company Profile フジ産業
  5. 4 Case study on solving issues with NC machining: Elimination of reliance on skilled workers and individualization. 三晃工具

NC Processing Machine Product List

31~39 item / All 39 items

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Case study of problem-solving: Automation of complex position definition unique to long-length processing.

No need for coordinate specification in the meter-level work! Case study on utilizing the automatic coordinate definition feature of NC machining machines.

In the processing of long workpieces, defining the coordinates for machining positions over several meters becomes extremely complicated. In traditional NC programming, this complex coordinate calculation has been a major factor contributing to errors and increased work time. Our NC machining system is equipped with a parameter input function specifically designed for long workpiece processing. Operators only need to input intuitive information such as the distance from the end of the long material, pitch, and the number of holes, rather than complex absolute coordinates, and the system automatically defines the coordinates for all machining positions. This eliminates the complexity and errors in defining machining positions for long workpieces. *Please check the documentation for programming logic optimized for long workpiece processing.*

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Case study on solving problems with NC machining: Automation of jig alignment resetting.

Eliminate significant losses in setup time! A case study on the automation of jigs and zero-point adjustments using NC machining.

Every time a long workpiece is set, resetting the origin (zero point) of the NC machine and the position of the jig, and aligning it with the coordinates in the program, results in significant setup time loss. The more manual work involved, the higher the risk of errors occurring. Our NC machining machines are equipped with an automatic reference alignment function that understands the characteristics of long workpiece processing. By utilizing specific detection points, we minimize the fine adjustments of the jig position and the resetting of reference points that occur every time a workpiece is set, allowing the program to automatically apply offsets. This reduces setup time and achieves standardization and improved accuracy in operations. *The high-precision positioning technology that enables the automation of setup is explained in detail in this document.

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Case study on solving issues with NC machining: Elimination of reliance on skilled workers and individualization.

No CAD/CAM knowledge required! Case study on improving the operability of NC machining machines that anyone can use for stable processing.

One of the biggest challenges in the manufacturing site is the concentration of CAD/CAM knowledge and skills among skilled workers. As this personalization progresses, there is a constant risk that the entire production line will become a bottleneck during personnel transfers or vacations, leading to operational stagnation. The Zeros software embedded in our in-house developed NC has an intuitive operating system that does not require advanced knowledge of CAD/CAM. By simply inputting the necessary information for processing (dimensions, pitch, etc.) without being aware of complex G-code, data is generated, allowing new employees and those without CAD/CAM experience to create and modify processing programs in a short period, thus promoting multi-skilled workers on the shop floor. *Please refer to the materials for details on the approach of systematizing the skills of skilled workers and sharing knowledge.

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Case study on solving issues with NC machining: Prevention of processing defects due to operator errors.

Prevent damage to expensive materials! Case study on the introduction of data verification and safety confirmation functions on NC processing machines.

In processing sites that handle expensive materials like long materials, operator mistakes or data entry errors can directly lead to significant losses in the form of material damage or machine damage. The more manual programming and coordinate setting involved, the higher the risk of human error. Our NC system provides a function to thoroughly verify and simulate data on the NC machine side before processing begins. Through our unique programming logic, it detects impossible values or coordinate specifications in advance and warns the operator. This significantly reduces the risk of damage to expensive materials due to data errors, creating an environment where long material processing can be entrusted with peace of mind. *You can view details of the safety features that prevent processing defects and the effects of implementation in the provided materials.*

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Case study of solving problems with NC machining: Elimination of waste in trial cutting and verification.

Improved data confidence! A case where trial cutting and verification work became unnecessary with NC machining.

General-purpose NC programs often leave uncertainty about whether the output data will function correctly on NC machines due to issues with post-processor adjustments and compatibility across different models. As a result, "trial cutting," which consumes time and materials, has become essential. Our NC system is fully integrated with our proprietary programming software and in-house developed NC, ensuring that the output data is always optimized for NC machining. This guarantees data integrity and eliminates the need for extensive trial cutting or verification work. We provide the "confidence" to transition to actual processing on-site, reducing verification time to zero. *Please refer to the materials for the mechanism of data linkage that achieves reliability without the need for trial cutting.

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Case study on solving issues with NC machining: Elimination and centralization of data management complexity.

No more confusion about which data is new! A case study on centralized management of data supply to NC processing machines.

In traditional file-based data management, even for the same part's machining data, numerous files exist with different versions and revisions due to design changes and fine adjustments, making it cumbersome to find new data on-site. Our NC system centrally manages machining data in a database and restricts data provision to the site via two-dimensional codes. This system ensures that only the latest version of the data is loaded onto the NC machining machines on-site. It frees users from complex file management and completely eliminates the time spent searching for data or checking versions. *The system and benefits of the database integration that revolutionizes data management are explained in detail in this document.*

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Case study of solving issues with NC machining: Stabilization of network collaboration.

Resolving troubles during data transfer! Examples of stable network collaboration between NC machining machines and PCs.

The transfer of NC programs via the network tends to be unstable due to various factors such as security restrictions, network delays, and poor cable connections. Failures or delays in data transfer are significant stress factors that can interrupt on-site work. Our NC solution employs a unique architecture with high compatibility with IT systems. In addition to wired LAN connections, we provide physically stable data link methods such as two-dimensional code integration, minimizing the risks associated with network dependency. This enables the rapid and reliable transfer of large volumes of processing data to NC machining machines. *We have materials introducing a stable data integration system that is resilient to network troubles.

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Case study of solving problems with NC machining: Resolving compatibility issues between different machine types.

A platform case that eliminates barriers between NC manufacturers! Standardizing data operations for NC machining machines.

When operating multiple NC machining machines from different vendors, post-processing for CAD/CAM tailored to each model and conversion tasks to different data formats constantly arise, significantly reducing operational efficiency. Our NC machines are developed in-house, using our proprietary programming software (Zeros) as a common platform. The data output from this software is guaranteed to be compatible across all models and generations of our NC machining machines. This completely eliminates conversion and adjustment tasks in data operations between different models, achieving standardized data management. *Details of our strategy to eliminate data format barriers and establish a unified platform are explained in the accompanying materials.

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Case study on solving issues with NC machining: Automation of repetitive processing and improvement of efficiency.

Elimination of repetitive manual input for the same hole pitch! Dramatic improvement in efficiency with the pattern function of NC machining.

In the processing of long materials, there are many repetitive, standardized tasks such as drilling and cutting at regular intervals. Nevertheless, traditional programming methods still require manual adjustment and input of parameters, even for simple repetitive tasks. Our NC system offers a "pattern repetition function" specifically designed for long material processing. Once the initial pitch and number of repetitions are defined, the system automatically programs all remaining processing positions. This completely eliminates the need to manually input the same hole pitch or processing pattern each time, dramatically improving the programming efficiency of NC machines in repetitive processing. *We provide documentation introducing efficient programming features that free you from repetitive tasks.

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