We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for soft.
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soft Product List and Ranking from 2343 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

soft Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. キングジム Tokyo//others
  2. B7 Tokyo//software
  3. スカイロジック Shizuoka//software
  4. 4 ウェーブフロント 本社 Kanagawa//software
  5. 5 null/null

soft Product ranking

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. Label software for Tepra PRO 'Tepra Creator (SPC10)' キングジム
  2. Free distribution of the survey report "Current Status of Digitalization in Manufacturing Industry: Reality Survey 2025" is ongoing. ハイパーギア
  3. Accelerating Next-Generation Polymer Design: Digital Chemistry Platform シュレーディンガー
  4. 4 No more crying over inventory counts! The reality of inventory management that troubles the field [Free explanatory materials provided]. 兼松
  5. 5 Robot simulation software "FRSim" テクノ

soft Product List

46~60 item / All 10082 items

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3D CAD data conversion software "spGate"

This is a 3D CAD data conversion software equipped with features such as data conversion, bug fixes, simplification, and lightweighting, which strongly supports manufacturing sites.

\Equipped with diverse CAD data conversion and defect correction features/ spGate supports all standard formats of 3D CAD data. Since all necessary formats are included, there are no additional costs. It is a cost-effective data conversion tool. ■ 3D Multi-Data Translator ■ PDQ Verification Function ■ Correction (Healing) Function

  • Other CAD related software

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Case study of IoT implementation at a machine tool parts manufacturing company [Nasca Neo Linka]

Send NC programs directly from the computer to the machine tools! Centrally manage NC programs within the factory and reuse programs created in the past!

Nazca Neo Linka is a visualization system for factories that enables remote operation monitoring of production equipment and performance aggregation and analysis. It allows for communication operation and data management of NC programs for connected machine tools. [Nazca Neo Linka Case Study: Daiya Seiki Co., Ltd.] Daiya Seiki operates a production style that handles small quantities of a wide variety of products, accepting orders from just one piece. The challenge for improving productivity was how to shorten setup time. The introduction of Nazca Neo Linka solved this! - NC programs created on a computer can now be saved directly to the company's file server and sent directly to NC machine tools. - An internal operation was established to ensure that "programs created must be stored." - Programs created in the past can now be reused, significantly reducing creation time. - Technical interns from overseas can use it smoothly with simple lectures. *For more details, please refer to the PDF materials or feel free to contact us.

  • Internal Control and Operational Management

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Case Study of IoT Implementation at a Precision Sheet Metal Processing Company: [Nasca Neo Link]

Input work hours and output on a tablet! Real-time sharing of progress across the entire factory is now possible! Furthermore, it reduces errors from handwritten entries and achieves paperless operations.

Nazca Neo Linka is a visualization system for factories that enables remote operation monitoring of production equipment, as well as performance aggregation and analysis. [Nazca Neo Linka Case Study: Totsuka Co., Ltd.] At Totsuka, the site was unable to grasp the overall order status of the factory, and the president had to check the progress of each process with the respective personnel. To visualize the overall order status and the progress of each process, they decided to implement IoT. The introduction of Nazca Neo Linka solved the issues! - When order details are registered, that information is displayed as a list in the planning table. - Tablets were distributed to the personnel, allowing them to input their working hours and output. - The order status, delivery dates, and progress can now be shared in real-time. - There is no longer a need to create work instructions on paper. *For more details, please refer to the PDF document or feel free to contact us.

  • Internal Control and Operational Management

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Plastic molding flow analysis software [Moldex3D]

We provide technology that reduces trial and error through complete 3D simulation visualization technology!

Moldex3D, a complete 3D resin flow analysis software, simulates the behavior inside molds during the plastic molding process on a computer, aiming to proactively identify and prevent various potential issues that may arise during the process. 【Features】 ■ Large-scale and high-speed analysis using the finite volume method for high-precision 3D analysis In traditional finite element methods (FEM), computation time increases geometrically with the number of elements, whereas in the finite volume method (FVM), it increases linearly, making it overwhelmingly advantageous as the number of elements increases. ■ High-precision 3D analysis By accurately solving the Navier-Stokes equations based on non-Newtonian fluids and considering the effects of inertia and gravity, it can handle complex phenomena such as runner balance and jetting. Unsteady cooling analysis and vent analysis are also supported as standard features. ■ High-performance computing capabilities By efficiently utilizing multi-core, multi-CPU, and multi-PC clusters, it achieves high computation speeds. It supports: - Flow analysis - Pressure holding analysis - Cooling analysis - Stress analysis - Warpage analysis - Structural analysis integration For detailed features, please refer to the catalog.

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  • Thermo-fluid analysis
  • Resin mold

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Extrusion molding analysis software HASL

Extrusion molding analysis software developed by HASL Inc. (Hyper Advanced Simulation Laboratory)

We mainly offer the following seven products: 1. 3D Thermal Flow Analysis Program for Extrusion Molding - Flowsimutator3D 2. Software for Single Screw Analysis - Single Screw Simulator 3. Software for Twin Screw Extruder Analysis - Twin Screw Simulator 4. Thermal Flow Analysis Software for Flat Die - Flat Simulator 5. Thermal Flow Analysis Software for Spiral Die - Spiral Simulator 6. Advanced Blow Molding/Thermoforming Simulator - Hyper Blow 7. Polymer Simulator - NAPLES

  • simulator
  • Other analyses

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GO2designer

CAD for CAM programming of GO2cam

GO2designer is a new CAD for CAM programming. It helps with preparations before CAM programming, such as reading CAD data, drafting, printing, and designing clamp fixtures.

  • 2D CAM
  • 3D CAD

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I want to understand the movement of the resin inside the mold.

Task: "I want to understand the movement of resin inside the mold."

Injection molding is performed within a closed mold throughout the entire process from resin filling to cooling. As a result, it is said to be very difficult to identify the factors causing defects in the molded products. In some cases, the know-how of experienced technicians on-site can be utilized to improve defects, but because this know-how is a black box, sharing information becomes challenging. For example, when significant warping occurs in a product, various potential causes can be cited, such as whether it is due to the fibers of the reinforcing material or temperature differences. However, determining the cause and making improvements based solely on the molded product is considered difficult without incurring substantial human and time costs. Therefore, visualizing the interior of the mold has become necessary for improving productivity, reducing costs, and developing high-value-added products.

  • simulator

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I want to avoid quality defects and accidents caused by mistakes in NC data.

Issue: "I want to avoid quality defects and accidents caused by errors in NC data."

When visiting processing sites, I often hear the following challenges: - There are concerns about CAM and manually written NC programs. - There have been experiences of machine interference. - There have been experiences of damaging clamps and tools. - There have been experiences of reprocessing due to accuracy issues. - There are problems with communication between design and the site. Avoiding machine interference and tool damage is a significant challenge at any processing site.

  • simulator

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I want to enable newcomers to create processing programs in a short period of time.

Task: "I want to enable newcomers to create processing programs in a short period of time."

The manufacturing industry is currently facing various challenges. One of the challenges is the aging workforce. With the retirement of veteran employees, it becomes difficult to maintain the quality of work when the skills and know-how developed over many years are lost. Additionally, there is the reality that there is not enough time to invest in training new employees.

  • 3D CAD
  • 3D CAM

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It is not possible to divide the mold for complex model shapes like an engine block.

Issue: "It is not possible to divide the mold for complex model shapes like an engine block."

Once the mold shaping data is prepared, the work of mold splitting begins. Various systems are equipped with different functions to separate the core and cavity. For example, there are functions for gradient angle analysis to detect undercut areas, as well as features that automatically create parting lines and parting surfaces. Cimatron also comes standard with corresponding analysis functions and the ability to create parting surfaces in its model design application. However, for models with complex shapes, mold splitting requires very challenging work, and even highly skilled operators cannot easily achieve the separation.

  • 3D CAD
  • 3D CAM

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Designing molds is possible even with incomplete data! CAD for molds 【Cimatron】

Not afraid of incomplete data! Even in a mixed environment of solid and surface data, mold design continues without interruption, increasing efficiency. A hybrid CAD that enables shorter delivery times.

Cimatron can flexibly handle various shapes such as solids, surfaces, and wire elements. It also widely supports advanced surface features required in industries like automotive. It allows for continuous work without filling gaps, is strong in freeform surfaces, and can flexibly design even with large assembly data, with the ability to use that information in CAM. Features appreciated by customers: ◆ Shortened delivery times as mold design can proceed even with incomplete data! Solidification of received data is not mandatory. Additionally, if there are gaps in the loaded data, work can still progress, which users have found to be "efficient." * Please be sure to watch the video. * The video is not of the latest version, so if you would like to see it in the latest version or have any questions regarding the latest version, please feel free to contact us. ◆ Efficiently edit progressed work while retaining parametric design data! It can load wireframe, point cloud, and mesh data into the design environment, meeting a wide range of requests in mold and prototype design.

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  • Other CAD
  • Other CAM related software
  • Press Dies

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CIMATRON Case Study Collection for Press and Plastic Molds【Document】

Boost efficiency with 3D mold design! Smooth startup with dedicated support!

This document presents case studies of the implementation of the CAD/CAM system "CIMATRON" for mold and prototype manufacturing in mold press manufacturers and plastic mold manufacturers. It introduces examples where effective utilization of 3D press design has achieved a 50% reduction in construction time, as well as cases where design errors were significantly reduced even with complex shapes. The document details challenges, our support, and the effects of implementation, making it easy to reference when considering adoption. [Contents] ■ Kyowa Kogyo Co., Ltd. 【Independent mold press manufacturer】 ■ Creative Technology Co., Ltd. 【Plastic mold manufacturer】 ■ Maruichi Co., Ltd. 【Comprehensive water system and parts manufacturer】 ■ Toyoei Kogyo Co., Ltd. 【Plastic mold manufacturer】 ■ Akebono Co., Ltd. 【Plastic mold manufacturer】 ■ Kuroda Seisakusho Co., Ltd. 【Plastic mold manufacturer】 *For more details, please refer to the PDF document or feel free to contact us.

  • 3D CAD
  • 3D CAM
  • Other molds

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[CIMATRON Case Study] Plastic Mold Manufacturer

Even with complex shapes, design errors are significantly reduced!

We would like to introduce a case study of the implementation of "CIMATRON" at a plastic mold manufacturer. Due to the recent trend of lightweighting in the automotive industry, the company needed to perform advanced mold design to control the temperature and flow of water circulating inside the mold to maintain the internal set temperature. After the implementation, they significantly reduced mistakes such as modeling errors and forgetting to trim, and by automating the creation of electrode machining drawings and discharge forms, they eliminated over 50% of drawings and instructions. This allowed them to shorten the design process by 30%. 【Case Overview】 ■Challenges - There was a need to further pursue lightweighting of automotive parts. ■Support and Implementation Effects - Standardization of design operations alongside the introduction of 3D design. - 30% reduction in the design process and elimination of over 50% of drawings and instructions. *For more details, please refer to the PDF document or feel free to contact us.

  • Plastic Mould

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[Case Study] Comprehensive Water Management System and Parts Manufacturer

Reduce the design man-hours for freeform surface shapes!

We would like to introduce a case study of the implementation of "CIMATRON" at a comprehensive water system and parts manufacturing company. The company was facing challenges in handling solid and surface data in the design of curved shapes using 3D CAD, which was time-consuming. After the implementation, designing curved shapes became easier, leading to a reduction in man-hours, and converting DXF drawings to 3D became simpler, making detailed modifications easier. 【Case Overview】 ■Challenges - The design of freeform surfaces was time-consuming, causing issues in product development. ■Support and Implementation Effects - Satisfied with the clear training and support for software information. - Designing curved shapes became easier, resulting in reduced man-hours. *For more details, please refer to the PDF document or feel free to contact us.

  • 3D CAD
  • 3D CAM

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[Case Study] Plastic Mold Manufacturer

Achieve 3D mold design with mold design and improve efficiency by 20%!

We would like to introduce a case study of the implementation of "CIMATRON" at a plastic mold manufacturer. The company was using the predecessor system "φSTATION," but as the demand for 3D shapes increased, the need for 3D mold design arose. They also had some aspects of the current system that they liked, which made the transition challenging. After the implementation, they were able to perform mold design within three months, and overall efficiency, including electrode design, improved by an average of 20%. 【Case Overview】 ■Challenges - Recognized the necessity for 3D mold design due to changes in work ■Support and Implementation Effects - Mastered operations in almost three months, enabling mold design - The flow of mold design changed, achieving an average efficiency increase of 20% *For more details, please refer to the PDF document or feel free to contact us.

  • 3D CAD

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