Design for Modular Research of Automation Equipment

碩士 === 國立臺北科技大學 === 管理學院EMBA大上海專班 === 107 === The development of automation equipment in electronic manufacturing industry is usually designed by different designers according to the production requirements of various products. At present, the common designers in automation industry design different...

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Bibliographic Details
Main Authors: LEE, FENG-JUNG, 李豐榮
Other Authors: LIAO, SEN-KUEI
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/unzjmh
Description
Summary:碩士 === 國立臺北科技大學 === 管理學院EMBA大上海專班 === 107 === The development of automation equipment in electronic manufacturing industry is usually designed by different designers according to the production requirements of various products. At present, the common designers in automation industry design different automation equipment based on their personal experience. Although the function meets the demand, each design has been redesigned. It is not only inefficient but also possible to make mistakes again and again. There is no way to effectively reduce the cumulative cost. In addition, the current Intelligent Manufacturing (IM) implements the integration of hardware and system. With personal non-standard design, it is no longer suitable for the development of automation equipment in the electronic manufacturing industry. Therefore, it is very important to integrate the development experience of the designers to modularize the functions of the equipment, which is the key success factor for the future implementation of automation. This research is to collect the development experience of automation equipment in A company for many years and to do the research of module design optimization. By using the existing drawing software and through the redevelopment of the design system, the optimized drawing surface through module design is integrated into the system, so that the designer can call the common module from the system to design, so that the design of automation equipment will be more effective. Accurate, consistent and fast, cost can also be effectively controlled and reduced, and the hardware system of intelligent manufacturing can also be standardized. In this way, it can lay a foundation for the implementation of the hardware system of automated production in Company A. This research will collect and validate the optimal design of modules through case study in Company A and in-depth discussion with relevant designers, and establish a design system. After the introduction of modularization and design system, the automation equipment developed by Company A can improve the quality and reduce the cost, which provides the basis for the development of global production layout in the future.