• 제목/요약/키워드: Next generation manufacturing

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차세대 제조 시스템(1) (Next Generation Manufacturing(NGM) (1))

  • 김선호;이후상
    • 한국정밀공학회지
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    • 제17권1호
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    • pp.11-20
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    • 2000
  • 본 글은 1999년 5월 CASA/SME Blue Book에 Jim Jordan 그리고 Fred Michel이 “Next Generation Manufacturing”라는 제목으로 게재한 자료를 편자의 의도에 따라 재편집한 것입니다. CASA(Computer and Automated Systems Association)는 SME(Society of Manufacturing Engineers)에서 활동하고 있는 하나의 분과로서 CIM Enterprise Wheel을 만들어 내 유명한 곳이기도 합니다. 저자는 본 글에서 앞으로 10여년 간 펼쳐질 차세대 제조 시스템에서는 지식경영이 가장 중요한 요소라고 정의하고 있습니다. 그리고 차세대 제조 시스템의 운영전략으로는 기업통합, 인간자원의 지적이용, 지식의 개발 및 유지, NGM 프로세스 장비 및 기술의 채용을 들고 있습니다.

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차세대 제조 시스템 (2) (Next Generation Manufacturing(NGM) (2))

  • 김선호;이후상
    • 한국정밀공학회지
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    • 제17권2호
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    • pp.7-14
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    • 2000
  • 본 글은 1999년 5월 CASA/SME Blue Book에 Jim Jordan 그리고 Fred Michel이 “Next Generation Manufacturing”라는 제목으로 게재한 자료를 편자의 의도에 따라 재편집한 것입니다. CASA(Computer and Automated Systems Association)는 SME(Society of Manufacturing Engineers)에서 활동하고 있는 하나의 분과로서 CIM Enterprise Wheel을 만들어 내 유명한 곳이기도 합니다. 저자는 본 괌에서 앞으로 10여 년 간 펼쳐질 차세대 제조 시스템에서는 지식의 경영이 가장 중요한 요소라고 정의하고 있습니다. 그리고 차세대 제조 시스템의 운영전략으로는 기업통합, 인간자원의 지적이용, 지식의 개발 및 유지, NGM 프로세스 장비 및 기술의 채용을 들고 있습니다. 차세대 제조 시스템(1)은 전월호에서 소재되었습니다.

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차세대 초고속 공기흡입식 추진기관 제작기술 (Manufacturing technology of Next Generation High-Speed Air-Breathing Engines)

  • 한풍규;오명환;김영수
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2008년도 제31회 추계학술대회논문집
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    • pp.435-436
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    • 2008
  • 차세대 초고속 공기흡입식 추진기관의 제작 소요 기술을 분류하였으며, 현대로템(주)에서 보유하고 있는 액체로켓엔진과 국내에 기확보되어 있는 가스터빈 및 항공기용 애프터버너의 제작기술을 차세대 초고속 공기흡입식 추진기관 제작에 적용 또는 응용이 가능한 지를 검토하였다.

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차세대 웨이퍼 생산시스템에서의 실시간 스케줄링 시스템 아키텍처 (A Real-Time Scheduling System Architecture in Next Generation Wafer Production System)

  • 이현;허선;박유진;이건우;조용주
    • 산업경영시스템학회지
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    • 제33권3호
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    • pp.184-191
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    • 2010
  • In the environment of 450mm wafers production known as the next-generation semiconductor production process, one of the most significant features is the full automation over the whole manufacturing processes involved. The full automation system for 450mm wafer production will minimize the human workers' involvement in the manufacturing process as much as possible. In addition, since the importance of an individual wafer processing increases noticeably, it is necessary to develop more robust scheduling systems in the whole manufacturing process than so ever. The scheduling systems for the next-generation semiconductor production processes also should be capable of monitoring individual wafers and collecting useful data on them in real time. Based on the information gathered from these processes, the system should finally have a real-time scheduling functions controlling whole the semiconductor manufacturing processes. In this study, preliminary investigations on the requirements and needed functions for constructing the real time scheduling system and transforming manufacturing environments for 300mm wafers to those of 400mm are conducted and through which the next generation semiconductor processes for efficient scheduling in a clustered production system architecture of the scheduler is proposed. Our scheduling architecture is composed of the modules for real-time scheduling, the clustered production type supporting, the optimal scheduling and so on. The specifications of modules to define the major required functions, capabilities, and the relationship between them are presented.

차세대 반도체 FAB의 동적 구조 설계를 위한 PC형 격자보 구조물의 동적 특성 평가 (A Dynamic Structural Design of PC type Sub-Structure for Next-Generation FAB based on Dynamic Test and Simulation)

  • 전종균;김강부;손성완;이홍기
    • 반도체디스플레이기술학회지
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    • 제3권4호
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    • pp.51-55
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    • 2004
  • In the design stage of high precision manufacturing/inspection FAB facilities, it is necessary to investigate the allowable vibration limits of high precision equipments and to study structural dynamic characteristics of C/R and Sub-structure in order to provide structural vibration criteria to satisfy these allowable limits. The goal of this study is to investigate the dynamic characteristics of PC-Type mock-up structures designed for next generation TFT-LCD FAB through experiments and analysis procedures. Therefore, in order to provide a proper dynamic structural design for high precision manufacturing/inspection work process, these allowable limits must be satisfied.

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An Integrative Framework of the Determinants for the Emergence of a Next-Generation Dominant Display

  • Yoon, Inhwan
    • Journal of Information Technology Applications and Management
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    • 제24권3호
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    • pp.107-123
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    • 2017
  • This study uses the concept of dominant design to identify the determinants for the emergence of a next-generation dominant electronic display. It employs multiple research methods with the participation of display experts, which combine case studies, an unstructured interview, and the Delphi method. The results show that based on technological innovation and market dominance, a next-generation dominant display is more likely to emerge as a result of technological competition between liquid crystal displays (LCDs) and organic light-emitting diodes (OLEDs). The findings emphasize that the importance of rapid technological innovation, including component and process innovations, and a competitive edge in manufacturing costs are important. The study sheds light on our understanding of dominance in an industry and market, and also provides strategic guidance for practitioners to establish a competitive strategy.

차세대 스마트도시 시설물의 플랫폼 정의와 디지털 체인 (Next Generation Smart-City Facility Platform and Digital Chain)

  • 양승원;김진웅;김성아
    • 한국BIM학회 논문집
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    • 제10권4호
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    • pp.11-21
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    • 2020
  • With increasing interest and research on smart cities, there is also an increasing number of studies on urban facilities that can be built within smart cities. According to these studies, smart cities' urban facilities are likely to become high value-added industries. However, the concept of smart city is not clear because it involves various fields. Therefore, in this study, the definition of Next-Generation(N.G) Smart City Facilities with Digital Twin and Digital Chain is carried out through a multidisciplinary approach. Based on this, Next-Generation Smart City Facilities will be divided into High Value-Added Products and Big Data Platforms. Subsequently, the definition of the Digital Chain containing the data flow of the entire process built through the construction of the Digital Twin proceeds. The definitions derived are applied to the Next-Generation Noise Barrier Tunnel to ensure that data is exchanged at the Digital Twin stage, and to review the proposed configuration of the Digital Chain and Data Flow in this study. The platform definition and Digital Chain of Next-Generation Smart City Facilities proposed in this study suggest that it can affect not only the aspects of data management that are currently in the spotlight, but also the manufacturing industry as a whole.