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ECAD DCX Implementation Case Study <Nakasaku Co., Ltd.>

Introducing examples of successful work style reforms achieved through the efficiency and standardization of electrical design!

We would like to introduce the issues that were challenges at Nakazaku Co., Ltd., an industrial machinery manufacturer, and the points and effects that were resolved through the introduction of the electrical design CAD 'ECAD DCX.' ■ Background of Introduction - In 2020, amid the uncertainty caused by the COVID-19 pandemic, management instructed each department to "set important medium-term initiatives for their own department and establish goals and action plans." - There were significant differences in work and technical proficiency among members, leading to a concentration of work on a few individuals, which resulted in long working hours becoming a problem. ■ Reasons for Adopting ECAD DCX - ECAD DCX was adopted as a new electrical CAD because it has abundant design support functions and its operability is similar to the previously used ECAD dio, allowing for a smooth implementation. ■ Effects After Introduction - Automatic checks for missing components and consistency between drawings eliminated inquiries from control panel manufacturers, significantly reducing overtime hours. - Using the cabinet collaboration function completely eliminated mistakes, making the arrangement of cabinets much easier. - By standardizing the parts master and operational rules, designers could focus on creating drawings, and the maintenance of the parts master was also managed smoothly.

  • Other CAD

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ECAD DCX Implementation Case Study <Meiden Corporation>

Reduced design man-hours by approximately 50% through the resolution of discrepancies in drawings and automatic generation of parts lists.

Since its establishment in 1975, Meiden Co., Ltd. has developed by leveraging its strength in providing a consistent response from precision sheet metal processing to painting and assembly. We would like to introduce the points and effects of solving the challenges of inspection and parts list creation through the introduction of "ECAD DCX." ■ Background of the Introduction - Resolution of inconsistencies between circuit diagrams, outline drawings, and parts lists - The desire to spend more time on core design tasks - Establishment of a system to automatically create parts lists by extracting component information from drawings ■ Reasons for Adopting ECAD DCX - Real-time error notifications from ECAD DCX allow for corrections during the design phase - Circuit symbols and outline symbols can be registered in the parts master, resolving contradictions between circuit diagrams and outline drawings - Changes in drawings are reflected in related areas ■ Effects After Implementation - Parts list creation, which used to take a full day, can now be completed with the push of a button, reducing the labor involved in design tasks by 50%. - Optimization of delivery times and costs through the utilization of ECAD-Cabista collaboration - Standardization of design ensures consistent quality regardless of who performs the design - Significant improvement in design accuracy, creating an environment where focus can be placed on essential tasks.

  • Other CAD

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ECAD DCX Implementation Case Study <Mitsuba Manufacturing Co., Ltd.>

Introducing a case where the transition from ECAD dio to ECAD DCX was completed within six months, along with the establishment of an operational system that improved productivity and reduced workload!

We will introduce the challenges faced by Mitsuba Seisakusho Co., Ltd., a manufacturer of extrusion molding machines and wire coating devices, and the points and effects that were resolved through the introduction of the electrical design CAD 'ECAD DCX.' ■ Background of Introduction - Designed about 150 control panels for in-house products such as rubber extruders and wire coating devices annually. - There was a need to improve the efficiency and labor-saving of design work and enhance quality. - A situation arose where flexible and speedy responses to specification changes were required. ■ Reasons for Adopting ECAD DCX - Although CAD for the machines and devices in use was considered, ECAD DCX was adopted for its rich specialized functions, inheriting the operability of the previously used ECAD dio in electrical design, as well as its actual usability, parts management functions, and integration with sheet metal processing machines. - It was determined that a rapid establishment of the design environment was necessary for improving the quality, reliability, and cost performance of in-house products, and startup support services were also utilized. ■ Effects After Introduction - The rich features that enhance efficiency and prevent mistakes have improved the productivity and quality of design. - Standardization of drawings and reduction of maintenance man-hours have been achieved. - Various functions, such as creating parts lists, have been utilized, reducing the workload of designers.

  • Other CAD

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ECAD DCX Implementation Case Study <Takashima Engineering Co., Ltd.>

We will introduce examples of business efficiency improvements from design to procurement and manufacturing, as well as adaptations to changes during times of material shortages!

At Takashima Engineering Co., Ltd., a manufacturer of control panels/distribution boards, we will introduce the challenges faced until now and the points and effects that could be resolved through the introduction of the electrical design CAD 'ECAD DCX.' ■ Background of Introduction - The drawing methods were dependent on individuals due to individual design rules, leading to inconsistencies in the drawings. - When arranging hole-processing cabinets with Nitto Kohki's Cabista, it was necessary to create hole processing drawings again for ordering. - Since the arrangement of parts and processing data was done manually, it led to extra work and input errors or incorrect orders. ■ Reasons for Adopting ECAD DCX - The collaboration with Nitto Kohki's Cabista, which is integrated into the ECAD series, supported the introduction of ECAD DCX to improve collaboration and operational efficiency from design to subsequent processes. ■ Effects After Introduction - The construction and standardization of the parts master allowed for the sharing and accumulation of know-how, turning it into an asset. - Collaboration with Nitto Kohki's Cabista reduced man-hours and shortened the time until ordering. - Since parts lists and processing data can be output from the drawings, manual input work has been reduced, significantly decreasing the chances of incorrect orders. - Even when substituting with different parts due to material shortages, changes to related areas are automatically reflected in bulk, reducing the effort and mistakes in corrections.

  • Other CAD

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ECAD DCX Implementation Case Study <Nihon Eidenki Co., Ltd.>

Introducing a case where transitioning from general-purpose CAD has improved drawing quality and productivity, while also reducing stress for the staff!

We would like to introduce the issues that were challenges at Nichei Electric Co., Ltd., a manufacturer of control panels/distribution boards, and the points and effects that were resolved through the introduction of the electrical design CAD 'ECAD DCX.' ■ Background of Introduction - The previous general-purpose CAD required transcription to 100 pages = 100 files, resulting in a significant amount of work beyond design. - Although an add-on software for electrical design for general-purpose CAD was introduced, it was difficult to register the vast amount of component data on our own, leading to a lack of operational success. - Picking components from paper drawings took a whole day of work and resulted in many mistakes. ■ Reasons for Adopting ECAD DCX - After hearing from other companies at a seminar about how they achieved efficiency in panel manufacturing using ECAD, we decided to introduce ECAD DCX to reduce design workload, prevent mistakes, and enhance overall operational efficiency through production collaboration. ■ Effects After Introduction - We can now perform transcription, modifications, PDF output, and printing all at once, significantly reducing the workload outside of design. - The automatic creation of various reports has greatly reduced the workload and mistakes in component procurement. - With user-oriented support services for implementation, we were able to start using the system smoothly, improving drawing quality and productivity while reducing stress for the staff.

  • Other CAD

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Electric design dedicated CAD solution 'ECAD DCX 2025'

ECAD DCX 2025 Released An electrical design CAD solution equipped with a wealth of features for electrical design, including control panels and power distribution boards.

The electrical design CAD "ECAD DCX" is a database-type CAD software dedicated to electrical design that not only enables electrical design but also integrates with manufacturing support systems, purchasing systems, and production management systems, combining design information and component information. 【Features】 ■ Real-time information updates and error detection ■ Automatic creation of reports such as bill of materials, terminal block tables, and wiring tables from drawing data ■ Ability to upload created hole processing drawings to "Cabista," making cabinet arrangements easier ■ Search for necessary components from the cloud-based component catalog database 'ECAD Library' and register them in your own master ■ Design data is linked with purchasing systems and production management systems. The "ECAD series" has supported the design of control panels and power distribution panels in Japan for approximately 40 years. The cumulative implementation record exceeds 29,000 licenses, promoting business reform utilizing data from design, procurement, and manufacturing. *For more details, please download the materials below. Feel free to contact us with any inquiries.

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  • 2D CAD Electrical
  • Other CAD related software

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[Example] Cluster Machine Analysis of Large-Scale Models

You can analyze large-scale models quickly and at low cost!!!

◆◆Publication Content◆◆ ○Analysis of large-scale models using cluster machines   (Simcenter Nastran SOL101 SOL103) ○Keywords: Cluster machines, parallel computing, large-scale models         Train vehicles, distributed memory parallel processing ○Case Overview ●For other features and details, please refer to the catalog.

  • Other analyses

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