We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Design support software.
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Design support software Product List and Ranking from 44 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

Design support software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

  1. アクアソフト Okayama//software
  2. オートフォームジャパン Tokyo//software
  3. null/null
  4. 4 SCSK デジタルエンジニアリング事業本部 Tokyo//software
  5. 5 ニューコム Saitama//software

Design support software Product ranking

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

  1. Material Design AI Platform Citrine Platform SCSK デジタルエンジニアリング事業本部
  2. Parts Configuration Management System "Production Innovation Bom-jin"
  3. Planetary Gear Design and Manufacturing Support Software PL_Design ジーボックス
  4. Electric Control Symbol Data Collection - e-Parts CAD Symbol Data ニューコム
  5. [Electric Craftsman NX Introduction Case] Impressed by the simple operability, data compatibility, and dedicated features. アクアソフト

Design support software Product List

31~60 item / All 129 items

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【Example】Shortened the delivery time for press molding dies to two-thirds!

By using simulation software, we can quickly deliver molds suitable for production to our customers.

This document explains the simplification of the design and build of press molding dies. It includes methods to reduce the delivery time of molds by up to two-thirds, the use of simulations to address the accumulating challenges of springback, and improvements in accuracy and reductions in model creation time through the optimization of trim lines. [Contents] - Reduction of mold delivery time by up to two-thirds - Use of simulations to tackle the accumulating challenges of springback - Improvement in accuracy and reduction in model creation time through trim line optimization *For more details, please refer to the PDF document or feel free to contact us.

  • Press Dies
  • Mold Design
  • Stress Analysis
  • Design support software

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[Case Study] Digital Workflow from Press Forming to Assembly

Introducing different approaches aimed at achieving assembly results in press forming engineering!

We will demonstrate, using practical examples, how considering the results of the hemming process in advance during the design of the press forming process can minimize the risk of costly redesigns by incorporating those results into the design. [Contents] - Press forming process considering hemming results - Comparison of individual part springback and subassembly springback - Results of process verification *For more details, please refer to the "Catalog Download." Feel free to contact us with any inquiries.

  • Software (middle, driver, security, etc.)
  • 3D CAD
  • simulator
  • Design support software

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[Utilization Guide] Robust input and information development in mold design and manufacturing processes.

Guidelines and standards for implementing the Robust Engineering Model (REM)!!

This demonstrates that simulation analysis also requires robustness, and introduces how to utilize "guidelines and standards" to achieve robust settings and operations, just as there are standards and specifications for mold design. [Contents] - Support for setting tasks - Prevention of setting omissions - Customization - Evaluation - etc. This is a contributed article to the technical information magazine "Mold Technology: IT Tool Utilization Guide" (Nikkankogyo Shimbun) September 2021 issue. *For more details, please check the "Catalog Download." Feel free to contact us as well.

  • Other CAD related software
  • Development support tools (ICE, emulators, debuggers, etc.)
  • Design support software

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Case Study on Springback Reduction Using AF-Sigma <Part 1>

Introduction to the application and optimization of springback suppression shapes on wall surfaces.

This article introduces a case study that systematically addresses springback reduction by combining AutoForm-Sigma with shape modification functions, focusing on ultra-high-strength structural members with a hat cross-section. In the first half of this article, we discuss the background and methods of the initiative, as well as the processing steps, including the initial case study on imparting and optimizing springback suppression shapes on wall surfaces. *For more detailed information, please refer to the related links. Feel free to contact us for further inquiries.*

  • Other CAD related software
  • Design support software

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[Customer Case] Achieving "One Shot" in Prototype Mold Production for Small Lots and Diverse Products

Achieved "one-shot trial" in about 70% of the total! Realized an average reduction of 4 days in construction time and a decrease in man-hours.

We would like to introduce a case study on the implementation of "AutoForm-Compensator" for correcting mold shapes based on the calculation results of springback. At Saitama Body Co., Ltd., which specializes in prototype production and parts manufacturing for four-wheeled and two-wheeled vehicles, the correction of anticipated springback has become a challenge in the production of molds for prototypes using high-strength steel sheets ranging from 590MPa to 1200MPa, which have been on the rise in recent years. Currently, after modeling in CAD, the correction for anticipated springback is incorporated into the mold model, which is modified and created based on simulation analysis results, all executed within AutoForm's simulation to reduce labor hours. [Case Overview] - The increase in high-strength and ultra-high-strength steel sheets has made the correction of anticipated springback a challenge. - The speed of correction is crucial for small-lot, diverse prototype molding. - A significant reduction in lead time and labor hours has been achieved with "one-shot trials" in about 70% of the presses. - Satisfaction with analysis speed, with expectations for further improvement in analysis accuracy. *For more detailed information about the case, please refer to the related links. Feel free to contact us for more details.

  • Other CAD related software
  • Design support software

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Case studies on efforts to improve analysis accuracy using reverse engineering techniques.

Introducing a case study on efforts to improve analysis accuracy using AutoForm-ProcessDesignerForCATIA.

In recent years, reverse engineering of molds has played an important role in product development and production processes. Molds significantly impact product quality, cost, and delivery time; however, much of the manufacturing process still relies on craftsmanship, and there are various challenges in the efficiency and digitalization of mold development. For example, there may be inconsistencies between molds that have been hand-finished on-site and mold development data, or even if one wants to verify defects or improvements of existing molds on 3D digital data, there may be no data that matches the actual product. Additionally, maintaining repeat molds can require excessive labor hours. This article introduces efficient mold reverse engineering methods and application examples utilizing our solutions. *For more details, please refer to the related links. Feel free to contact us for more information.

  • simulator
  • Design support software

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Production Management SPENCER

Comprehensive management of all plans and executions from procurement to production and logistics.

This is a web-based production management solution that encompasses essential production planning functions, production performance management functions, and cost management functions (optional), allowing for centralized management of all information related to production.

  • Production Management System
  • Design support software

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Virtual Space Experience System "ARCHITREND VR"

Residential presentations are shifting from "seeing" to "experiencing."

Using the VR system (head-mounted display), you can experience the plans created with "ARCHITREND ZERO" in a way that feels "as if you are standing right there," allowing you to immerse yourself in the vastness and height of the space. ---------------- ◎ Catalog data can be downloaded from the link below. ◎ VR experience events are being held nationwide. ▼ For applications and details, click here.

  • Other CAD related software
  • Virtual Reality Related
  • Design support software

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What are the 7 common challenges in the manufacturing industry? [Presentation of explanatory materials]

What should the ideal state be to improve issues? Introducing Autodesk's collection for the manufacturing industry.

This document introduces seven common challenges in the manufacturing industry. In addition to the ideal state for improving various issues such as design changes, understanding shapes, and ensuring information consistency between departments, it also includes specific improvement proposals. Additionally, we offer a lineup of Autodesk manufacturing collections such as "AutoCAD" and "Inventor Professional." We invite you to read it. [Contents] ■ Seven common challenges in the manufacturing industry ■ This is the ideal state for improving the seven challenges! ■ Improvements can be made with Autodesk manufacturing collections! *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAD related software
  • Design support software

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Save CPU time using HEXPRESS/ Hybrid [Case Study]

[Free Case Study Presentation] Introducing the case study of Honda R&D, which reduced CPU time and engineering time.

This is an introduction to a case study implemented at Honda R&D. Previously, various commercial mesh creation tools from other companies were used, but the quality of the viscous layer often diverged, leading to dissatisfaction. Therefore, we switched to our 'HEXPRESS/Hybrid'. As a result, not only were these issues resolved, but CPU time was reduced to one-third, and engineering time was shortened to 30 minutes per mesh. [Case Study] ■Challenges - The quality of the viscous layer often diverged, leading to dissatisfaction. - It was difficult to become proficient. ■Effects - CPU time was reduced to one-third. - Engineering time was shortened to 30 minutes per mesh. - Turnaround time was reduced. - It became possible to research many designs in a short time. *For more details, please refer to the PDF document or feel free to contact us.

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  • Other network tools
  • Design support software

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[Information] Japan Cadence NUMECA Sales Team Automatic Mesher

Generate and output a flat surface along the exterior of the cabin! Introduction to the AutoSeal feature of the automatic mesher by the Japan Cadence NUMECA sales team.

This document introduces the AutoSeal (automatic closing surface generation) feature of the Japan Cadence NUMECA sales team’s automatic mesher. It includes an overview of the "AutoSeal feature," "Automatic Closing Surface Generation: AutoSeal," and "How to Use," along with images. Please take a moment to read it. [Contents] ■ Overview of AutoSeal feature ■ Automatic Closing Surface Generation: AutoSeal ■ How to Use ■ Closing Process Example (Original Shape) ■ Closing Process Example (Automatically Generated Processing Surface) ■ Closing Process Example (After Filling Holes) *For more details, please refer to the PDF document or feel free to contact us.

  • Other network tools
  • Design support software

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Japan Cadence NUMECA Sales Team Automatic Mesher

Up to approximately 5 billion cells, supporting about 3000 parallel processes! Introduction of the distributed parallel function of the automatic mesher by the Japan Cadence NUMECA sales team.

This document introduces the distributed parallel functionality of the Japan Cadence NUMECA sales team's automatic mesher. It includes sections such as "Overview of Distributed Parallel Functionality," "Automatic Mesher: Distributed Parallel Functionality (Overview of Domain Division)," and "Examples of Automatic Mesher Applications: Distributed Parallel Functionality," all illustrated with images. We encourage you to read it. [Contents] ■ Overview of Distributed Parallel Functionality ■ Automatic Mesher: Distributed Parallel Functionality (Overview of Domain Division) ■ Examples of Automatic Mesher Applications: Distributed Parallel Functionality *For more details, please refer to the PDF document or feel free to contact us.

  • Other network tools
  • Design support software

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[Webinar] Improve productivity with the new version of OMNIS!

Webinar on June 23, 2021 (Wednesday) at 11 PM! There will be an opportunity to ask questions to experts.

Please try the new version of OMNIS, which features a new particle solver, mesh generation using the S2V method, and over 100 other new functionalities. In the live webinar, you will have the opportunity to experience the power of this software and ask questions to experts. [Content of this webinar] ■OMNIS/Hexpress ■OMNIS/AutoGrid ■OMNIS/Turbo ■OMNIS/Open ■OMNIS/Mpacts It also includes many other features. *For more details, please refer to the related link page or feel free to contact us.

  • Technical Seminar
  • Design support software

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High-frequency/High-speed transmission design support software

Extracting S-parameter data from the measurement data of the entire mounting fixture is easy!

"In Situ De-embedding (ISD)" is software that allows for the de-embedding of measurement data from the entire fixture containing the device under test, enabling the extraction of S-parameter data for the device under test with very simple operations. Additionally, during the de-embedding process, the S-parameters are corrected in the time domain, resulting in outcomes that satisfy passivity and causality. 【Features】 ■ Compared to other methods such as the general TRL method, it allows for the easy and accurate extraction of data for the device under test. ■ It can be used for high-frequency components such as capacitors, inductors, resistors, filters, ICs, multi-terminal components like differential devices and high-speed transmission connectors, as well as high-frequency elements measured on-wafer, all of which are evaluated using S-parameters. *For more details, please download the PDF or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Other measurement, recording and measuring instruments
  • Design support software

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Microscope Image System "TeraSynth"

Introducing a viewer that synthesizes and displays multiple image files in real-time.

"TeraSynth" is a microscope image system that allows for the display and processing of ultra-high-resolution images through the synthesis of multiple images. It synthesizes and displays multiple image files in real-time, enabling the display of ultra-high pixel images that were previously unattainable. In addition to "ultra-high-precision image display," the basic system is equipped with features such as "layer overlay display" and "automatic alignment function." 【Features】 ■ Overwhelming data display range - Capable of displaying over 30cm x 30cm at a precision of 1 pixel = 1 micron - Capable of displaying over 30m x 30m at a precision of 1 pixel = 0.1 millimeter ■ Overwhelming large-scale high precision (capable of displaying over 90 billion pixels) ■ Overwhelming display speed *For more details, please refer to the PDF document or feel free to contact us.

  • Image Processing Software
  • Design support software

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[Expert Explanation] What is Production Management?

A detailed explanation of the differences with project management and what needs to be done!

Production management is an important task aimed at optimizing "Quality, Cost, and Delivery (QCD)" in the manufacturing industry to achieve efficient production. In this article, from the perspective of a professional holding the qualification of a technical engineer (in the field of management engineering), we will explain the basics of production management and how to apply it in practice in an easy-to-understand manner for beginners. Production management is a systematic activity to optimize QCD (Quality, Cost, Delivery) through planning, management, and improvement in a company's manufacturing processes. These three elements (Quality, Cost, Delivery) are also referred to as the "three elements of production management." *For detailed content of the article, please refer to the link below.*

  • Other core systems
  • Design support software

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ECAD Implementation Case Study <Aiden Co., Ltd.>

Achieving innovation through IWS (I-DEN Wiring Solution) with wiring measurement functionality.

In the past, manufacturing sites used boards with nail wiring for wiring measurement and processed electrical wires. Additionally, wiring information was created on-site from drawings, and experienced workers were essential for the tasks. Moreover, when mistakes in the drawings were found on-site, it led to rework after correcting the drawings, significantly impacting delivery times. However, after the introduction of this product, verification of drawings, measurement, and consideration of wiring routes can now be done in advance on a PC, eliminating mistakes on-site. What surprised us after the implementation was that even workers who joined this year could perform wiring for control panels without being able to interpret circuit diagrams. The combination of this product and the Wiring Monitor (a monitor equipped with touch functionality) has proven that anyone can perform tasks in a short time while ensuring a certain level of quality. 【Implementation Effects】 ○ Reduced mistakes on-site and achieved shorter delivery times ○ Non-skilled workers can perform wiring for control panels while ensuring a certain level of quality *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAD
  • Design support software

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[Technical Document] Preventing Knowledge Loss: Knowledge Transfer in the Automotive/Aerospace Industry

Recent electrical design tools focus on processes and can systematically address issues related to the accumulation and inheritance of knowledge.

Recently, many companies are facing significant challenges related to knowledge transfer due to issues such as an aging workforce, increasing product complexity, stricter regulations on design verification, shortened design periods, and the reduction in the size of design teams. Traditional software design tools focus primarily on creating drawings and have little functionality for knowledge accumulation. In contrast, recent electrical design tools emphasize processes and can systematically address issues related to knowledge accumulation and transfer. [Contents] - Knowledge transfer - Maximizing data flow while minimizing data input - Reusing designs - Building processes that do not require expert skills - Automation *For more details, please request materials or view the PDF data from the download section.

  • Embedded system design service
  • Design support software

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Thermal design support tool 'FloTHERM' Joule heating analysis function

High-precision analysis considering the effects of wire miniaturization and increased current flow on Joule heating!

"FloTHERM" is a thermal design support tool specifically for electronic devices. The product's "Joule heating analysis function" allows for high-precision thermal fluid analysis that takes into account the effects of Joule heating due to miniaturization of wiring and increased current flow. It is also possible to perform analysis using the heat density from "HyperLynx PI." [Features] ■ High-precision thermal fluid analysis considering the effects of Joule heating ■ Setting current boundary conditions for source components to calculate current density ■ Analysis using the heat density from "HyperLynx PI" *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Development support tools (ICE, emulators, debuggers, etc.)
  • simulator
  • Other analyses
  • Design support software

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About the concentration analysis function of the thermal design support tool 'FloTHERM'

Achieve passive scalar analysis with concentration analysis functionality! Enables fluid flow tracking and condensation prediction!

"FloTHERM" is a thermal design support tool specifically for electronic devices. By using the product's "concentration analysis function" and setting the properties of the object indicating concentration to be the same as the default fluid, it is possible to perform analysis of passive scalars, which are scalar fields that do not affect the flow. By setting a concentration generation area at the intake, it is possible to predict condensation by analyzing the flow tracking of the fluid passing through the area and the movement of water vapor as concentration. 【Features】 ■ Capable of passive scalar analysis ■ Flow tracking of the fluid is possible ■ Condensation prediction is possible *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Development support tools (ICE, emulators, debuggers, etc.)
  • simulator
  • Other analyses
  • Design support software

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Essential for 3D CAD design! Achieving a common interpretation worldwide through geometric tolerances.

Zero ambiguity in drawings. A common language that conveys design intent 100%.

The major advantage of Geometric Dimensioning and Tolerancing (GD&T) is that it completely clarifies design intent, which is difficult to express with traditional dimensional tolerances, and eliminates any discrepancies in interpretation at the manufacturing and inspection sites. In GD&T, datum planes (reference shapes) are clearly established, and by specifying positional tolerances and orientation tolerances relative to them, the tolerance zones directly related to the functionality of the parts can be concretely defined. For example, an instruction that regulates the position of a hole based on datum A and B with a tolerance zone of $\phi 0.2$ standardizes the basis for manufacturing and measurement globally. This contributes significantly to achieving the goal of "producing cheaply, quickly, and accurately," while keeping manufacturing costs down and ensuring stable design quality regardless of where production takes place. The effect is maximized by combining it with the Model-Based Definition (MBD) approach, which directly adds GD&T to 3D CAD models. Please refer to the materials for detailed examples of correct geometric tolerance illustrations and their impact on global manufacturing quality. *For more details, please download the PDF or feel free to contact us.*

  • 3D CAD
  • Design support software

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The risk of improper application of geometric tolerances! The causes of increased costs associated with 3D CAD data.

Lack of knowledge in geometric tolerances leads to scrap, rework, and unnecessary expenses.

Geometric Dimensioning and Tolerancing (GD&T) is a powerful tool, but if applied incorrectly, it can lead to inefficiencies that outweigh its benefits. The difficulty designers face in maintaining knowledge of advanced GD&T principles and standards is a backdrop to this issue. Improper application of GD&T can create errors and misunderstandings in drawings and 3D models, ultimately increasing manufacturing costs. Additionally, repeated discussions over GD&T applications and increased review cycles and revisions can lead to decreased productivity and efficiency. Furthermore, mistakes in tolerances directly result in unnecessary expenses such as scrap, rework, changes, confusion, and downtime. The GD&T Advisor helps prevent these risks and enables the proper application of GD&T to increase tolerances and reduce part manufacturing costs. Let’s verify the risks of GD&T misapplication lurking in your design process with specific examples from the materials. *For more details, please download the PDF or feel free to contact us.*

  • 3D CAD
  • Design support software

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Thorough Comparison of GD&T Advisor Basic and Advanced

For utilizing existing assets and assembly tolerance design, Advanced is the only choice.

The Creo GD&T Advisor Extension includes a Basic version with fundamental features such as guided creation of GD&T and standard validation, as well as an Advanced version that offers more advanced functionalities. A major feature of the Advanced version is the ability to reuse and evaluate existing Annotations created in standard Creo. This allows for the smooth integration of past design assets into an MBD environment and provides guidance for modifications to meet specified standards. Additionally, it includes support for assemblies (available from Creo 8.0 onwards), enabling it to handle complex tasks such as tolerance design between parts and assembly tolerance design, not just individual components. For companies involved in large-scale MBD implementation or complex product design, the features of the Advanced version are essential. To determine the version that best suits your design assets and future MBD strategy, please refer to the feature comparison chart in the materials provided. *For more details, please download the PDF or feel free to contact us.*

  • 3D CAD
  • Design support software

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[Case Study] Sega Corporation

All time for 'fun'! Halve the time for creating harness diagrams.

Sega Corporation, which develops, produces, and sells prize games, video games, and arcade game machines, has introduced our "E3.series." Before the introduction, there were issues such as rework due to manual transcription errors and missed checks. With the introduction of "E3.series," all drawings are centrally managed, and the connections between drawings maintain consistency, which is expected to significantly reduce the frequency of transcription and checking. [Challenges Before Introduction] - Spending 2 hours on the task of drawing one type of harness diagram (2 prototypes + production drawings) - Rework occurring due to manual transcription errors and missed checks - Lacking time to think of technical proposals to make "more interesting games" due to being overwhelmed with work *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAD
  • Design support software

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[Free Web Seminar] Integrated Database Type Electric CAD

We are holding a webinar for electrical designers on the software "E3.series"! We will introduce demonstrations of basic and latest features, as well as operational examples.

We will hold a webinar introducing the software "E3.series" for electrical control and electrical design. The content is primarily aimed at electrical designers involved in wiring design for electronic devices. In electrical design and cable design, issues such as increased man-hours due to manual data entry between various drawings, ensuring consistency, and rework due to mistakes have become significant challenges. With E3.series, design data is managed in a centralized database, allowing real-time linking of design information across multiple drawings, such as "wiring diagrams" and "cable production drawings," ensuring consistency at all times. Additionally, by utilizing a parts library, semi-automation of drawing transcription tasks and automatic output of reports enable the efficient creation of high-quality design data. The webinar will include demonstrations of basic and latest features using actual equipment, as well as case studies of operations, so please be sure to register. Target Audience: - Those who have not yet implemented E3.series - Electrical designers involved in wiring design for electronic devices *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAD
  • Design support software

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Electric Control Symbol Data Collection - e-Parts CAD Symbol Data

Outline symbols for electrical control equipment manufacturers, electrical symbols: Includes electrical diagram symbols according to JIS standards, JSIA standards, and IO diagram templates!

The E-Parts CAD symbol data is an all-in-one collection of symbol data for electrical and control design. It includes electrical symbols compliant with JIS C 0617, JSIA 118, and JIS B 6015, IO diagram templates (Mitsubishi Electric/Omron/Keyence), and outline symbols: front view, side view, and internal view, totaling approximately 47,000 items.

  • 2D CAD Electrical
  • Design support software

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"Ordinary Building" Option Features [Explained in Video]

A comprehensive explanation from basic data to the creation of shapes, areas, site plans, and building drawings!

"Creating a Product Specification Document" is an optional feature of WingneoINFINITY Ver.5. This video explains the entire process from the basic data of ordinary buildings (building registration) to the creation of shape, area, site, and building drawings. The main components include basic building information, shape input, area calculation, setting up atriums, using raster for the site, drawing conditions for location maps, aligning the building with the site, and creating building drawings, among various other functions. [Video Introduction (Excerpt)] - Starting from creating a new site to launching the building - Creating a new ordinary building - Inputting building shape - Calculating building area - Inputting the shape of the second floor, creating an atrium, creating ancillary buildings *For more details, please refer to the PDF document or feel free to contact us.

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