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CGTech

EstablishmentJanuary 5, 2006
capital5000Ten thousand
number of employees18
addressTokyo/Toshima-ku/3rd Floor, Elgu Building, 1-5-3 Nishi-Ikebukuro
phone03-5911-4688
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last updated:Apr 24, 2025
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CNC simulation software Vericut CNC simulation software Vericut
Various features of Vericut Various features of Vericut
The appeal of Vericut as told by users. The appeal of Vericut as told by users.
The

The appeal of Vericut as told by users.

We will introduce case studies of users utilizing the CNC simulation software Vericut.

[Shipbuilding] Vericut Icam Post-Processor

Improving the efficiency and precision of CNC machining in shipbuilding.

In the shipbuilding industry, the precision and efficiency of CNC machining are crucial for the manufacturing of large structures. Particularly in the processing of hulls and large components, accurate NC programs capable of handling complex shapes and large sizes are required. Inaccurate code can lead to defective parts and increased manufacturing time. The Vericut Icam post-processor enables smooth integration with existing CAD systems and CNC machines, maximizing the efficiency and accuracy of the manufacturing process. This reduces cumbersome tasks and enhances productivity. 【Usage Scenarios】 - CNC machining of large hull components - Machining of complex-shaped parts - Utilization of multi-axis machining machines 【Effects of Implementation】 - Reduction of machining time - Decrease in defective products - Improvement in productivity

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Vericut Icam Post-Processor for Precision Machinery

Achieving high-speed CNC processing and improved precision.

In the precision machinery industry, there is a demand for high precision in products and a reduction in manufacturing lead times. Particularly in the machining of complex-shaped parts, the optimization of NC programs is essential for balancing quality and productivity. Inadequate NC programs can lead to increased machining time and a decrease in product accuracy. The Vericut Icam post-processor enables smooth integration with existing CAD systems and CNC machines, maximizing the efficiency and precision of the manufacturing process. This reduces cumbersome tasks and enhances productivity. 【Usage Scenarios】 - High-speed, high-precision machining of precision parts - Machining of complex-shaped parts - Small-batch production of various types 【Effects of Implementation】 - Reduction in machining time - Improvement in product accuracy - Reduction of in-process defects

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[For Robot Collaboration] Vericut Icam Post Processor

Optimize CNC processing and ensure smooth collaboration with robots.

In the robotics industry, efficient manufacturing through the collaboration of CNC machining and robots is required. Particularly in the processing of complex-shaped parts and in low-volume, high-variety production, the accuracy of CNC programs and smooth data integration with robots are crucial. Inadequate programming or data integration can lead to processing errors and delays in the workflow. The Vericut Icam post-processor enables seamless integration with existing CAD systems and CNC machines, maximizing the efficiency and accuracy of the manufacturing process. This reduces cumbersome tasks and enhances productivity. 【Usage Scenarios】 - Transporting and processing parts with robots - Data integration between CNC machines and robots - Automation of processes in low-volume, high-variety production 【Benefits of Implementation】 - Increased productivity through the collaboration of CNC machining and robots - Reduced processing time - Decreased errors

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Vericut Icam Post-Processor for 3D Printing

Streamline the post-processing steps after 3D printing to improve quality.

In the 3D printing industry, there is a demand for increased efficiency and quality improvement in the post-processing stage after printing. In particular, accurate code conversion and smooth data integration are crucial for the finishing of printed objects and collaboration with CNC machining. Inadequate data conversion can compromise product accuracy and lead to rework. The Vericut Icam post-processor optimizes the post-processing stage after 3D printing, maximizing the efficiency and precision of the manufacturing process. This reduces cumbersome tasks and enhances productivity. 【Usage Scenarios】 - Post-processing of products created with a 3D printer - Finishing processes through CNC machining - Integration between CAM systems and CNC machines 【Benefits of Implementation】 - Improved product accuracy through precise code conversion - Reduced process time through smooth data integration - Optimal machining tailored to the characteristics of CNC machines - Machining simulation using digital twins

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Lightweighting and Reliability Improvement with Vericut for Aerospace Applications

Vericut streamlines CNC machining in the aerospace industry and supports lightweight design.

In the aerospace industry, lightweight components and high reliability are required. In particular, improving machining accuracy is essential for enhancing aircraft fuel efficiency and ensuring safety. Even slight errors in CNC machining or tool damage can lead to a decline in component quality and increased costs. Vericut supports machining accuracy and lightweight design by simulating the entire CNC machining process. It derives the "correct" result in a single machining operation, reducing unnecessary material and rework. 【Use Cases】 - Manufacturing of aircraft components - Manufacturing of rocket components - Manufacturing of drone components 【Benefits of Implementation】 - Reduced machining time - Minimized material waste - Extended tool life - Stable supply of high-quality components

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Improving Machining Accuracy with Vericut for the Automotive Industry

Improving the quality and efficiency of automotive parts processing with CNC simulation.

In the automotive industry, there is a demand for high-quality parts and efficient manufacturing processes. Particularly for parts related to safety, high machining precision is essential. However, machining defects and tool breakage can lead to losses in time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process, deriving the "correct" result in a single operation. 【Usage Scenarios】 * Prototyping and mass production of automotive parts * 5-axis machining, complex machining, multi-surface machining * Quality control, process improvement 【Benefits of Implementation】 * Improved machining precision * Reduction of defective products * Cost reduction

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Improving Processing Safety with Vericut for Medical Devices

We will enhance the safety of CNC machining in medical device manufacturing with Vericut.

In the medical device industry, the safety and reliability of products are the top priorities. The precision of CNC machining directly affects the performance of medical devices and patient safety. Machining defects and tool breakage can lead to product defects and unexpected accidents. Vericut reduces these risks through CNC machining simulation. 【Usage Scenarios】 * CNC machining of medical device parts * Manufacturing of complex-shaped parts * Production of parts requiring high precision 【Benefits of Implementation】 * Improvement in machining accuracy * Reduction of tool breakage and collision risks * Enhanced product reliability

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Maximizing Mold Life with Vericut for Molds

Vericut achieves efficiency and quality improvement in mold processing.

In the mold industry, the lifespan of molds is a crucial factor directly linked to productivity and cost. Early wear or damage to molds can lead to production interruptions, increased repair costs, and a decline in the quality of the final product. Vericut aims to prevent these issues through CNC machining simulation and extend the lifespan of molds. 【Usage Scenarios】 * Verification of machinability during the mold design phase * Extension of tool life through optimization of NC programs * Prevention of mold damage through anomaly detection during machining 【Benefits of Implementation】 * Reduction of mold manufacturing costs * Improvement of production efficiency * Achievement of high-quality molds

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Efficiency Improvement of CNC Machining with Vericut for Machine Tools

Over 35 years of experience! Make CNC machining more efficient with Vericut.

In the machine tool industry, there is a constant demand for reducing processing time and minimizing defective products. Especially in today's world, where high-precision processing is required, the occurrence of processing errors can lead to significant losses. Vericut aims to ensure processing accuracy by simulating the entire CNC machining process, striving to derive the "correct" result in a single operation. 【Usage Scenarios】 * Multi-axis machining * Lathe and composite machine processing * Multi-surface machining 【Benefits of Implementation】 * Reduction in processing time * Decrease in defective products * Prevention of tool damage

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CNC Simulation by Vericut for Electronic Devices

Improve the reliability of CNC machining and accelerate the miniaturization of electronic devices.

In the electronics industry, there is a demand for miniaturization of products and high-precision processing. As components become more complex, the accuracy of processing has become a crucial factor that influences product performance. Processing defects can reduce product yield and lead to increased costs. Vericut supports the assurance of processing accuracy and the manufacturing of products according to design by simulating the entire CNC processing. 【Usage Scenarios】 * Precision machining of small electronic components * Manufacturing of complex-shaped parts through multi-axis processing * Processing verification during the prototyping stage 【Benefits of Implementation】 * Improvement in processing accuracy * Reduction in the number of prototypes * Cost reduction

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Improving Reliability with Vericut for the Energy Industry

Over 35 years of experience. Vericut streamlines CNC machining for energy-related companies.

In the energy industry, the durability of components used in harsh environments, such as plants and power generation equipment, is crucial. To withstand high loads and maintain stable performance over long periods, high precision in CNC machining is essential. Issues such as non-operational machines, damaged tools, costly collision troubles, discarded parts, prolonged test runs, and wasted materials can drain valuable time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process, leading to the "correct" result in a single operation. 【Application Scenarios】 * Machining of turbine blades * Machining of generator components * Machining of plant equipment parts 【Benefits of Implementation】 * Improved component durability through enhanced machining accuracy * Cost reduction by minimizing defective products * Shortened test run times

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CNC Simulation using Vericut for Defense Applications

High-precision simulation software that enhances the confidentiality of CNC processing.

In the defense industry, the machining of highly confidential components requires high precision and reliability. Especially for parts that use complex shapes or special materials, it is crucial to minimize the risk of machining errors and ensure consistent quality. Vericut addresses these challenges through CNC machining simulation. By faithfully reproducing G-code NC programs and conducting pre-validation of machining processes, it reduces the risk of confidential information leakage and enables the efficient production of high-quality products. 【Usage Scenarios】 * Machining of highly confidential components * Machining verification during the prototyping stage * Multi-axis machining and complex machining 【Benefits of Implementation】 * Reduction of machining errors * Protection of confidential information * Cost reduction

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CNC Simulation by Vericut for Watch Manufacturing

Achieve improved precision and reliability in CNC machining with Vericut.

In the watch manufacturing industry, high precision and reliability are required in the processing of precision parts. Especially for watch components that require complex shapes and fine machining, even slight errors can greatly affect the quality of the product. Tool damage and processing defects in CNC machining not only lead to increased costs but can also harm the brand image. Vericut ensures processing accuracy by simulating the entire CNC machining process, deriving the "correct" result in a single operation. 【Usage Scenarios】 - Machining of precise gears and cases - Machining of complex-shaped components - Utilization of multi-axis machining machines 【Benefits of Implementation】 - Improvement in processing accuracy - Reduction of tool damage and processing defects - Cost reduction - Stabilization of quality

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Yield Improvement with Vericut for Semiconductors

Improving semiconductor manufacturing yield with CNC simulation.

In the semiconductor manufacturing industry, there is a demand for the efficient production of high-quality products. In particular, high-precision processing is essential, as even slight errors can significantly affect yield. Issues in CNC machining, such as tool breakage, processing defects, and material waste, are major factors contributing to yield reduction. Vericut ensures processing accuracy by simulating the entire CNC machining process, preventing these problems before they occur. 【Usage Scenarios】 * CNC machining processes in semiconductor manufacturing * Processing verification during the prototyping stage * Optimization of NC programs before mass production 【Benefits of Implementation】 * Improved yield through reduced processing defects * Extended tool life * Reduced material waste * Shortened test run times

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Automotive Industry NC Program Optimization Solution Force

Vericut Force optimizes NC programs and reduces machining time.

In the automotive industry, there is always a demand for increased productivity and reduced lead times. Particularly in parts processing, the efficiency of NC programs is crucial. Inadequate NC programs can lead to increased processing times, reduced tool life, and higher costs. Vericut Force quickly and easily optimizes NC programs, significantly shortening processing times. 【Usage Scenarios】 - Reduction of processing time in the prototyping and mass production of automotive parts - Cost reduction through the efficiency of NC programs - Extension of tool life 【Effects of Implementation】 - Shortened processing times - Extended tool life - Cost reduction through the optimization of NC programs

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Aerospace-oriented NC program optimization by Force

Vericut Force optimizes NC programs in the aerospace field.

In the aerospace industry, there is a demand for high-quality parts and a reduction in manufacturing costs. Particularly in the machining of parts with complex shapes, the optimization of NC programs is crucial. Inadequate NC programs can lead to increased machining time, reduced tool life, and a decline in part quality. Vericut Force optimizes NC programs, supporting reduced machining time, improved tool life, and the production of high-quality parts. 【Usage Scenarios】 * High-precision machining of aerospace parts * Machining of complex-shaped parts * Multi-axis machining 【Benefits of Implementation】 * Reduction in machining time * Extension of tool life * Achievement of high-quality part manufacturing

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Optimization of Tool Life by Force for Molds

Extend tool life in mold processing with Vericut Force.

In the mold industry, high-precision machining and the longevity of tools are required simultaneously. Early wear and damage to tools can lead to decreased productivity and increased costs, making proper tool management essential. Vericut Force contributes to extending tool life by optimizing NC programs and reducing the load on tools. 【Usage Scenarios】 - Maximizing tool life in mold machining - Achieving high-precision mold machining - Reducing machining time 【Benefits of Implementation】 - Reduced frequency of tool changes - Increased productivity - Cost reduction

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Optimization of Micromachining by Force for Medical Devices

Optimizing NC programs for precision machining of medical devices with Vericut Force.

In the medical device industry, the precision of micro-machining is crucial for ensuring product quality and safety. Particularly for precision components such as implants and surgical instruments, there is a demand for reduced machining time and improved tool life. Inadequate NC programming can lead to machining defects and premature tool wear, potentially resulting in increased costs. Vericut Force addresses these challenges by optimizing NC programs and improving machining time and tool life. 【Application Scenarios】 - Micro-machining of medical device components - Implant manufacturing - Surgical instrument manufacturing 【Benefits of Implementation】 - Reduced machining time - Extended tool life - Improved machining accuracy

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NC Program Optimization Solution for Machine Tools Force

Vericut Force optimizes NC programs and reduces machining time.

In the machine tool industry, there is a constant demand for reducing machining time and improving tool life. Optimizing NC programs addresses these challenges and contributes to increased productivity. Vericut Force achieves a reduction in machining time and an extension of tool life by analyzing cutting conditions and optimizing NC programs. 【Usage Scenarios】 * Reduction of machining time through the efficiency of NC programs * Cost reduction through extended tool life * Improvement in the quality of machining 【Effects of Implementation】 * Significant savings in cycle time * Enhanced performance of cutting tools * Prevention of undesirable cutting conditions such as overloads

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NC Program Optimization Solution for Semiconductor Manufacturing Force

Vericut Force optimizes NC programs and contributes to improved yield.

In the semiconductor manufacturing industry, there is a constant demand for improvements in product quality and production efficiency. Particularly in the machining of complex-shaped parts, the optimization of NC programs becomes a crucial factor that affects yield. Inappropriate NC programs can lead to machining defects and tool damage, ultimately resulting in a decrease in yield. Vericut Force contributes to yield improvement by quickly and easily optimizing NC programs and reducing machining time. [Usage Scenarios] - Machining of complex-shaped parts in semiconductor manufacturing - Reduction of machining time through NC program optimization - Cost reduction through extended tool life [Effects of Implementation] - Reduction of machining time - Extension of tool life - Improvement of yield

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Precision Equipment NC Program Optimization Solution Force

Improve the quality and efficiency of precision machining with Vericut Force.

In the precision machinery industry, high product quality is essential. Optimizing NC programs is important for enhancing machining accuracy and reducing the occurrence of defective products. Vericut Force contributes to quality improvement by physically analyzing NC programs and deriving optimal cutting conditions. [Usage Scenarios] - High-precision parts machining - Machining of complex shapes - Manufacturing of products with high quality requirements [Effects of Implementation] - Improvement in machining accuracy - Reduction of defective products - Assurance of stable quality

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NC Program Optimization Solution for the Energy Industry

Vericut Force optimizes NC programs and contributes to cost reduction.

In the energy industry, there is always a demand for reducing manufacturing costs. Particularly in the production of power generation equipment and related components, shortening processing time directly leads to cost reduction. Optimizing NC programs significantly contributes to cost savings by reducing processing time and extending tool life. Vericut Force quickly and easily optimizes NC programs to meet the cost reduction needs of the energy industry. 【Usage Scenarios】 - Manufacturing of power generation turbine blades - Machining of components for energy-related equipment - Maintenance of plant equipment 【Benefits of Implementation】 - Reduction in processing time - Extension of tool life - Reduction in manufacturing costs - Streamlining of NC programs

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Robot-oriented NC program optimization solution Force

Vericut Force is an NC program optimization solution that optimizes robot movements.

In the robotics industry, precise movements and efficient operations are required. Especially for robots that perform complex movements and precise tasks, optimizing NC programs is essential for improving performance and reducing costs. Inappropriate programming can lead to delays in operation and damage to tools. The NC program optimization solution, Force, analyzes cutting conditions and optimizes NC programs to streamline robot operations. 【Application Scenarios】 - Parts processing by robots - Robot motion simulation - Reduction of robot cycle time 【Benefits of Implementation】 - Reduction in processing time - Extension of tool life - Improvement in robot performance

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Shipbuilding NC Program Optimization Solution Force

Vericut Force optimizes NC programs and reduces machining time.

In the shipbuilding industry, there is a demand for reduced processing time and improved tool life in the manufacturing of large structures. As the size of structures increases, the efficiency of NC programs becomes essential for cost reduction and productivity improvement. Inadequate NC programs can lead to increased processing time, premature tool wear, and even machine failures. Vericut Force addresses these challenges by optimizing NC programs, shortening processing time, and extending tool life. 【Usage Scenarios】 - Processing of large hull components - Machining of complex-shaped parts - Multi-axis machining 【Benefits of Implementation】 - Reduced processing time - Extended tool life - Cost reduction - Improved productivity

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Railway NC Program Optimization Solution Force

Vericut Force optimizes NC programs and contributes to improved durability.

In the railway industry, extending the lifespan of vehicle components and ensuring safety are crucial. Components that can withstand harsh operating environments require high machining precision and durability. Optimizing NC programs is essential to meet these demands. Vericut Force achieves reduced machining time, extended tool life, and improved component quality by optimizing NC programs. 【Usage Scenarios】 - Manufacturing of railway vehicle components - Machining of components requiring high precision - Situations where tool life needs to be extended 【Benefits of Implementation】 - Reduced machining time - Extended tool life - Improved component quality

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  • 首都圏最大級の工業技術・製品の総合見本市 テクニカルショウヨコハマ2026 第47回 工業技術見本市 時代をひらく新たな技術 2026年2/4(水)・5(木)・6(金) 10:00-17:00 来場者募集中
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