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Design Software - メーカー・企業67社の製品一覧とランキング | イプロスものづくり

更新日: 集計期間:Jan 14, 2026~Feb 10, 2026
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Design Softwareのメーカー・企業ランキング

更新日: 集計期間:Jan 14, 2026~Feb 10, 2026
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  1. i CAD - 機械設計向け3DCAD(3次元CAD)開発元 - Tokyo//CAD/CAM
  2. タツタ Osaka//Machine elements and parts
  3. アキュレイト 東京カスタマーセンター Tokyo//Ferrous/Non-ferrous metals
  4. 4 JBCC Tokyo//software
  5. 5 くいんと Tokyo//software

Design Softwareの製品ランキング

更新日: 集計期間:Jan 14, 2026~Feb 10, 2026
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  1. Caliper Brake BMK ASAHI Caliper / Asahi Seiko タツタ
  2. Spring selection and design software "Select Spring-kun" アキュレイト 東京カスタマーセンター
  3. PrintPro 2.0 JBCC
  4. 4 AVEVA P&ID AVEVA
  5. 4 [Case Study of 3D CAD Software for Mechanical Design] Mitsubishi Heavy Industries, Ltd. i CAD - 機械設計向け3DCAD(3次元CAD)開発元 -

Design Softwareの製品一覧

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WIRE CAM DX Introduction Case Study <Meito Panel Co., Ltd.>

Introducing a case where a system was built that allows beginners to perform wiring work in a short period of time, even without prior experience in electrical CAD!

Since its establishment in 1980, Meito Panel Co., Ltd., a "specialized manufacturer of panel production" that assembles control panels, distribution boards, and cubicles, has introduced 'WIRE CAM DX' to focus on the digitalization of panel assembly by implementing various innovations without sticking to traditional methods. Here are the effects of this implementation. ■ Reasons for adopting WIRE CAM DX We considered that by displaying work instructions on a monitor and having employees follow them, even those with little experience could perform wiring tasks, and that the transfer of skills from veteran employees to younger ones could be smoother. Thus, we aimed to create an environment where anyone could perform wiring tasks. ■ Effects after implementation - Significantly reduced the man-hours required to create manufacturing data, as the results of wiring design can be easily converted into Excel data. - Directly imported wire number data into the marking tube printer for printing processing. - Successfully reduced material waste by about 30-40% by producing wires for doors and other components in exact sizes. - Outsourced wires and ducts to improve efficiency. - Increased the number of personnel responsible for wiring. - Shortened wiring work from 80 hours to approximately 60 hours. - Unified wiring routes, leading to improved product quality.

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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.

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DesignWorks Schematic Editor for Windows ver.5

DesignWorks Schematic Editor for Windows ver.5

The logic circuit design software "DesignWorks SchematicEditor for Windows," known for its easy operation and high performance and reliability, has been upgraded to version 5.0. Version 5 includes significant improvements such as enhanced schematic editing features and the addition of powerful macro functions using JavaScript. - Added a powerful macro function utilizing JavaScript that can be used for all design data and operations. This can automate various tasks, generate devices, and be used for all purposes including design editing, analysis, and simulation. - Added a display panel feature using HTML that works in conjunction with the new macro function. - Added a command to attribute any collection of schematic elements such as frequently used symbol groups and title blocks. - Added a feature to automatically open specified libraries upon application startup. - Added a feature to display the entire schematic as a single element within the parts library for use. - Made it easier to call external applications. - Expanded the library (parts list). - Added other commands and features.

  • Other CAD
  • others
  • Design Software

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『Robotmaster V7』

Achieve a significant reduction in teaching time! Maximize the productivity of multi-joint robots.

"Robotmaster" is an offline teaching system that achieves an average reduction of over 70% in working time compared to online teaching. (This is the latest version.) It is capable of creating accurate machining paths based on imported CAD data. With packages tailored to specific applications, you can easily create the robot's motion paths. Additionally, it allows for diverse motion control through visual and intuitive operations. You can maximize the robot's posture and operating range with mouse operations alone. [Features] ■ Machining Path Creation - Contour Package (Contour & Cycle) - Welding Package (Welding & Touch Sensing) ■ Control of Robot Motion ■ Automatic Path Planning *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAD
  • 3D CAM
  • Other industrial robots
  • Design Software

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No more failures! What are the key points of 5-axis indexing machining?

Reduce machining time by 70% with Mastercam indexing! We are currently offering a free document featuring machining points!

"Mastercam" enables machining that was previously only possible with electrical discharge machining to be done with cutting. There is a twofold difference in processing time between 3-axis machining and indexing machining. This document focuses on introducing indexing machining. You can view it for free via PDF download. [Contents (excerpt)] ■ Machining process ■ Machining points - Gentle curves - Protrusions and fillets - Vertical walls - Grooves and fillets *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAD
  • Other CAM related software
  • Design Software

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Equipment Operation Monitoring System (From Visualization to Root Cause Analysis) Slide

"3 types (AirGRID, Signal Watcher, PLC) + customization for Just Fit! Operation monitor" Visualization to analysis

The operational monitors provided have the following features: (1) There are three types available, allowing for optimal selection. (2) Customization is easy, fitting perfectly to needs. They are created using the SCADA/HMI 'AVEVA Edge', which is characterized by being easy to use. 1. Three types of operational monitors: (1) AirGrid (Patlite) (2) Signal Watcher (Inaba Electric Industry) (3) PLC (Mitsubishi Electric, Omron, etc.) 2. Features of 'AVEVA Edge': (1) Easy operation for end users to develop and customize. Program-free (property settings). The integrated development environment, including communication environment settings, is highly rated for its usability. (2) Comprehensive functions necessary for operational management: Gantt chart display, graphic display (animation features), logic (high functionality achieved with simple scripts), alarm/event monitoring, abnormality email notifications, trends, graphs (stacked bar graphs + line graphs, etc.), reports, web/smartphone compatibility, easy DB connection... (3) Realization of cause analysis (palette diagram creation). 3. Integration from operational monitoring to overall monitoring.

  • Other security and surveillance systems
  • Design Software

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SMD component land/mask design software

SMD component land/mask design software

A new land mask design method for optimal implementation has been systematized based on the implementation know-how of Panasonic Factory Solutions Co., Ltd. FA Research Institute.

  • Other CAD
  • Process Control System
  • others
  • Design Software

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Mitarepo [45] Testing the capabilities of BobCAD-CAM's deburring path.

[Mitarepo] I want to automate the troublesome deburring process! What is the capability of BobCAD-CAM's deburring path? | System Create

"Mitarepo" is a series that introduces what can be done using various products with the concept of "I tried doing this!" We will deliver useful information each time from the wide range of product genres handled by System Create. The theme of Vol. 45 is "Testing the capabilities of the deburring tool path in BobCAD-CAM!" Recently, we will actually verify the capabilities of the newly added deburring tool path in "BobCAD-CAM 3AXIS Premium," which was introduced at Marsgo. This time, we collaborated with G-BEC Technology Co., Ltd. and used their dedicated deburring end mill to perform the deburring! We used aluminum for the workpiece. Assuming the processing of flat holes and tolerance holes, we will check the state of each burr and the processing time. "Can low-cost CAD/CAM really handle deburring?" "Will secondary burrs still appear in the end?" We will explain the capabilities of the BobCAD-CAM deburring tool, along with verification photos and comments from the technical staff. *You can download the materials from the button above.

  • 3D CAD
  • Other CAD related software
  • Milling machine
  • Design Software

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Structural optimization design software 'OPTISHAPE-TS'

We propose suitable forms that meet various requirements! For initial design plans and improvements to existing structures.

"OPTISHAPE-TS" is software that assists in the research, development, and design of automotive parts, electrical equipment, construction machinery, and more. With its topology optimization feature, it presents new design proposals that capture the essence of mechanics. It enhances design ideas from the results obtained, enabling early concepts and early designs. We promise to improve current processes through cost reduction and quality enhancement, leading to shortened development and manufacturing periods and reduced costs. 【Features】 ■ Proposes the ideal "shape of things" through structural optimization ■ Improves current processes through cost reduction and quality enhancement ■ Commits to reducing development and manufacturing periods and costs ■ Utilized in various scenarios, including initial design stages and improvements to existing shapes *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Design Software

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[Example] From the initial layout design of the lower arm to detailed design.

HiramekiWorks" is a structural optimization design software equipped with both "topology optimization functions" and "shape optimization functions.

Topology optimization is useful for the initial layout design of products due to its nature of creating holes in the model. On the other hand, shape optimization modifies the surface shape of the model, allowing for the evaluation of not only rigidity but also stress, making it beneficial for the detailed design of products. In this case, after performing topology optimization on the lower arm to determine the layout shape, shape optimization is conducted on the resulting solid model to obtain a detailed shape that meets rigidity and Mises stress constraints. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Design Software

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[Example] Topology optimization of a monitor arm designed with bilateral symmetry in mind.

HiramekiWorks" is a structural optimization design software that includes both "topology optimization functions" and "shape optimization functions.

Topology optimization is a method that expresses the optimal shape based on the density distribution of materials while keeping the mesh of the analysis model fixed. Here, we perform topology optimization with "mirror symmetry" set for the monitor arm, seeking an optimal shape that is highly rigid and symmetrical under four different analysis conditions. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Other analyses
  • Contract Analysis
  • Design Software

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[Case Study] Shape optimization of link components considering interference with surrounding parts.

"HiramekiWorks" is a structural optimization design software that features both "topology optimization" and "shape optimization" functions.

In shape optimization, you can set a "designable area" as a manufacturing constraint. By using this feature, you can limit shape changes to ensure that they do not extend beyond the specified designable area. Additionally, even if the initial shape already extends beyond the area, you can modify the shape to fit within the designated area. Here, we will perform shape optimization for link components with a set "designable area," minimizing the volume while keeping the maximum displacement below the constraint value and within the bounds of the designable area. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Other analyses
  • Contract Analysis
  • Design Software

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Case Studies of Structural Optimization Design Software for Interference and Stress with Other Components

We will introduce examples aimed at stress reduction, weight reduction, and control of natural frequencies. Consideration of situations such as component interference is also included! Detailed explanations of the analysis models, optimization conditions, and discussions will be provided!

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'OPTISHAPE-TS'. We include examples of shape optimization for arms considering layout constraints due to part interference, as well as shape optimization case studies using stress constraints from multiple areas. From the analysis model to optimization conditions, results, and discussions, we provide detailed explanations using diagrams. Please feel free to download and take a look. [Featured Examples] ■ Shape optimization considering interference with other parts ■ Shape optimization considering stress ■ Shape optimization to improve natural frequencies ■ Stress reduction through optimization of fillet shapes *For more details, please refer to the PDF document or feel free to contact us! *For those who are not members of Ipros, you can also download the materials from the related links below (within our company site).

  • Structural Analysis
  • Design Software

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Case Studies on the Introduction of Structural Optimization Design Software for Initial Layout Design and Weight Reduction

Collection of case studies on initial layout design and structural optimization aimed at weight reduction and rigidity improvement.

This case study collection presents problem-solving examples using the SOLIDWORKS add-in structural optimization design software, HiramekiWorks. It provides detailed explanations from the analysis model to optimization conditions, results, and discussions. [Contents] ■ Shape optimization of table legs considering wall thickness A case study on examining a lightweight framework while considering generated stress and member thickness. ■ Initial layout design to detailed design of the lower arm A case study on examining a lightweight reinforcement layout. HiramekiWorks covers everything from layout examination to detailed design, achieving lightweight design through combined techniques. ■ Topology optimization of a monitor arm intended for symmetrical design Deriving the optimal framework while considering numerous load patterns. [Features of HiramekiWorks] ■ Easy optimization in a familiar environment ■ Responds to practical needs such as lightweight design and stress reduction under various conditions ■ Automatically generates solid models of optimization results ■ Easily generates STL data for 3D printing using the geometry editor *For more details, please refer to the PDF materials or feel free to contact us. *Materials can also be downloaded from the related links below (on our company website).

  • Structural Analysis
  • Design Software

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Structural Optimization Software: Case Studies on Problem Solving: Rigidity Improvement and Strength Enhancement

Attention those struggling with rigidity and strength improvements! We are offering a collection of case studies that include shape optimization considering interference with other components and various loading patterns.

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'HiramekiWorks.' We include topology optimization examples where "mirror symmetry" is set for a monitor arm, as well as shape optimization examples where "designable areas" are defined. From the analysis model to optimization conditions, results, and discussions, we provide detailed explanations using diagrams and tables. Please feel free to download and take a look. [Contents] ■ Case study on lightweight reinforcement layout ■ Shape optimization case considering interference with other components ■ Case study on optimal shapes considering multiple load patterns ■ Case study on deriving ideas for optimal skeletal structures ■ Case study on efficient design support for reinforcement ribs *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Design Software

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Structural Optimization Design Software: Case Studies on Problem Solving: Vibration Issues

A must-see for those troubled by vibration issues! We present a collection of case studies that include examples of tuning natural frequencies to measurement results and optimizing shapes to improve natural frequencies.

In this case study collection, we introduce problem-solving examples using the structural optimization software 'OPTISHAPE-TS'. We include analysis examples that apply non-parametric shape optimization functions, as well as cases of shape optimization for large-scale models utilizing parallelization. From the analysis model to the optimization conditions, results, and discussions, we provide detailed explanations using figures and tables. Please feel free to download and take a look. [Contents] ■ Shape optimization to match the natural frequencies with experimental measurement results ■ Shape optimization to improve natural frequencies *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Design Software

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Structural Optimization Design Software for Rotating Parts: Case Studies on Problem Solving: Lightweight Design

A must-see for those struggling with lightweight design! We are offering a collection of case studies summarizing examples of lightweighting rotating parts and shape optimization cases for multiple component arrangement patterns.

In this case study collection, we introduce problem-solving examples using the structural optimization software 'OPTISHAPE-TS'. We include examples that consider manufacturing requirements for motorcycle road wheels, as well as cases of shape optimization that take multiple mechanical conditions into account by using and switching between several reduced models. From the analysis models to the optimization conditions, results, and discussions, we provide detailed explanations using figures and tables. Please feel free to download and take a look. [Contents] ■ Lightweight design of rotating parts considering rigidity and manufacturing requirements ■ Shape optimization considering rigidity in multiple component layout patterns ■ Shape optimization considering interference with other components ■ Shape optimization considering stress ■ Shape optimization to improve natural frequencies ■ Stress reduction through optimization of fillet shapes *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Design Software

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High-frequency heating coil design software

High-frequency heating coil design software

It is ideal for the design and manufacturing sites of high-frequency heating, quenching, and annealing.

  • Magnetic field analysis/electromagnetic wave analysis
  • Other metal materials
  • others
  • Design Software

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3D MRI shield room design software "μ-MRI"

Designing MRI rooms in hospitals and clinics. Simple operation for 3D output of 5 gauss lines.

"μ-MRI" is software that allows even those without knowledge of three-dimensional electromagnetic field analysis to easily design MRI shield rooms in hospitals and clinics. By selecting an MRI from Philips, GE, Siemens, or Canon with a strength of 1.5/3.0T and simply inputting the dimensions of the shield room layout and the number of shield panels, precise calculations using the finite element method can be executed. It displays the 1 to 5 Gauss lines in three dimensions, allowing for the confirmation and adjustment of leakage magnetic fields from any angle. It is used by medical architecture and shield room design and construction companies. 【Features】 ■ Settings for room contours, shield materials and quantities, ceiling, floor, window, and door conditions ■ With just the calculation execution button, it goes from model construction to calculation execution and result display ■ Options for purchase, rental, and contract analysis are available Additionally, - We also provide consulting, analysis, and development services. *In addition to regular introductory seminars, we are currently offering on-site demonstrations and free benchmark trials. For more details, please feel free to contact us via the "Contact Form." *Introduction video for the three-dimensional MRI shield room design software "μ-MRI": https://youtu.be/8gkPwg5MPZM

  • Other environmental equipment
  • Design Software

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Structural Optimization Design Software 'OPTISHAPE-TS'

Proposing a structure that meets various requirements, with a lightweight design, strong structure, and excellent vibration characteristics!!!

OPTISHAPE-TS is a Japanese software that was born as the world's first commercial phase optimization software and has continued to evolve by incorporating the latest optimization technologies for over 25 years. It can achieve weight reduction, strength enhancement, and control of vibration characteristics while meeting various constraints such as design and manufacturing requirements. 【Features】 - Built-in various finite element solvers necessary for structural optimization - Equipped with various optimization functions tailored to applications - Unique non-parametric shape optimization using a force method allows for drastic shapes - Optimization calculations accelerated through parallel processing 【Functions】 - Optimization functions - Topology optimization - Non-parametric shape optimization - Level set method shape optimization - Finite element analysis functions - Static elastic analysis - Eigenvalue vibration analysis - Steady-state heat conduction-static elastic coupled analysis - Frequency response analysis - Eigenvalue buckling analysis - Structural-acoustic coupled analysis For more detailed information, please refer to the catalog or contact us directly.

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『XVL Studio WR』

Providing new solutions for cable design and wiring operations! No complex operations required, easy to use.

"XVL Studio WR" is an original XVL Studio package from Zuken that enables 3D cable wiring in conjunction with circuit connection information. By creating an XVL of the mechanical assembly to be wired from 3D CAD and reflecting the connection information from the circuit CAD (E3.series) on top of it, wiring design can be performed. Additionally, the designed cable wiring data can be utilized in wiring length lists and manufacturing instructions. 【Features】 ■ Utilizes existing circuit diagram CAD and 3D CAD data ■ No special preparation required, easy to operate ■ Intuitive and simple wiring operations ■ Usable by those without experience in 3D CAD ■ Flexible operation that is not limited to specific departments such as electrical design, mechanical design, and production technology ■ Wide range of applications from design front-loading to the creation of manufacturing instructions *For more details, please refer to the PDF materials or feel free to contact us.

  • Other industrial robots
  • 3D CAD
  • Other CAD
  • Design Software

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