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      Innovation in complex assembled electronic products: An analysis of the evolution of television components

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      https://www.riss.kr/link?id=O107555926

      • 저자
      • 발행기관
      • 학술지명
      • 권호사항
      • 발행연도

        2021년

      • 작성언어

        -

      • Print ISSN

        0272-6963

      • Online ISSN

        1873-1317

      • 등재정보

        SSCI;SCIE;SCOPUS

      • 자료형태

        학술저널

      • 수록면

        680-703   [※수록면이 p5 이하이면, Review, Columns, Editor's Note, Abstract 등일 경우가 있습니다.]

      • 구독기관
        • 전북대학교 중앙도서관  
        • 성균관대학교 중앙학술정보관  
        • 부산대학교 중앙도서관  
        • 전남대학교 중앙도서관  
        • 제주대학교 중앙도서관  
        • 중앙대학교 서울캠퍼스 중앙도서관  
        • 인천대학교 학산도서관  
        • 숙명여자대학교 중앙도서관  
        • 서강대학교 로욜라중앙도서관  
        • 계명대학교 동산도서관  
        • 충남대학교 중앙도서관  
        • 한양대학교 백남학술정보관  
        • 이화여자대학교 중앙도서관  
        • 고려대학교 도서관  
      • ⓒ COPYRIGHT THE BRITISH LIBRARY BOARD: ALL RIGHT RESERVED
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      다국어 초록 (Multilingual Abstract)

      A complex assembled electronic product (CAEP), such as a modern television (TV), can be produced in a variety of design configurations using different combinations of software and hardware components that are arranged together in a hierarchy of techni...

      A complex assembled electronic product (CAEP), such as a modern television (TV), can be produced in a variety of design configurations using different combinations of software and hardware components that are arranged together in a hierarchy of technical subsystems within a defined product architecture. We examine the lifecycle of individual components that make up a CAEP to better understand why its dominant design configuration includes specific components from among the (often many) competing alternatives. The emergence of the dominant design configuration of a product has long‐term implications on the operational efficiency of a firm's product assembly line and its component selection strategy. We test hypotheses that explain both the inclusion of a component in the dominant design configuration of a CAEP, and its longevity to remain in the product market over the lifecycle of the CAEP using three key factors: (a) pleiotropy, or the number of functions supported by the component, (b) the nature of standards used by the component (open vs. closed), and (c) the source of innovation of the component (exogenous vs. endogenous to the industry). We empirically test our hypotheses using a longitudinal data set of 2830 TV models spanning 15 years (2002–2016). The results show that components that have higher pleiotropy and that are supported by open standards not only have a higher chance of being selected into the dominant design configuration of TV, but also remain in the TV market for a longer time. Specifically, every additional functionality associated with a component increases its likelihood of entering the dominant design configuration by approximately three times, and its longevity by about 2 years. Similarly, a component supported by an open standard is approximately four times more likely to be part of the dominant design configuration compared with a component supported by a closed standard, and it remains in the TV market for approximately an additional 2 years. In addition, components developed through endogenous innovation efforts were nearly five times more likely to enter the dominant design configuration of TV. Their longevity, however, was not significantly different from that of components sourced exogenously. Building on these results, we discuss the implications for product management of CAEP and for further research to examine innovation in CAEPs.

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