• Title/Summary/Keyword: Design and New Product Development

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Development of Electron Gun 'S-CXO'

  • Kwon, Yong-Geol;Kim, Deog-Ho;Lee, Yang-Je;Yun, Kwang-Jin;Yoon, Young-Jun
    • Journal of Information Display
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    • v.2 no.1
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    • pp.43-46
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    • 2001
  • To meet the demand of the display market for large, flat, high-resolution screen, the Super Common eXtended field Oval lens (S-CXO) has been developed with resolution improvement of 10% or more compared to a conventional electron gun. A new main lens structure is adopted, to enhance the effectiveness of aperture and the performance. The new main lens can be assembled using an existing assembly system

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The Solution Process of Successful Technology Commercialization - Focus on the Government Funded Enterprises - (성공적인 기술사업화를 위한 솔루션 프로세스 - 정부의 기술개발지원사업 참여기업을 대상으로 -)

  • Park, Jae-Sue;Park, Jung-Yong
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.17 no.7
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    • pp.1522-1530
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    • 2013
  • Technology commercialization or new product development (NPD) is the complete process of bringing a new product to market. This paper presents a framework for a technology firm to think about its commercialization strategy in an environment where the established firms have tight control over the government funded. Companies typically see new product development as the first stage in generating and commercializing new product within the overall strategic process of product life cycle management used to maintain or grow their market share. Market-oriented item will overcome the lack of capacity, and will ensure the success of SME.

Proposal of methodology for AI-based new product development: ambidexterity approach (인공지능 기반 신제품 개발 방법론 제안: 양손잡이(Ambidexterity) 접근)

  • Chung, Doohee
    • Journal of Technology Innovation
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    • v.29 no.4
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    • pp.161-196
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    • 2021
  • This study presents a new methodology for developing AI-based products. It identifies the distinctive attributes of AI innovation that are different from existing methods, and presents a product design process and methodology reflecting these attributes. This study emphasizes that AI product development should be oriented toward an ambidexterity approach. This study proposes a design process and specific development method for AI-based products that including steps such as technology push oriented idea generation with morphological approach, market pull oriented consumer requirements analysis, product design refinement, etc. In order to verify the practical applicability of this methodology, an AI-based car infotainment system development strategy is derived as a case study. 13 innovative ideas were generated by the morphological approach and expert review based on technological possibility, and a total of 6 quality requirements were derived as new product development strategies through the analysis of consumer requirements by combining Kano and TOPSIS. The methodology proposed in this research paper can be usefully utilized for companies to pioneer new markets through AI-based products or to expand the market by upgrading existing products or services.

Database and knowledge-base for supporting distributed intelligent product design

  • Nguyen Congdu;Ha Sungdo
    • Proceedings of the IEEK Conference
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    • summer
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    • pp.87-91
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    • 2004
  • This research presents distributed database and knowledge-base modeling approach for intelligent product design system. The product design information in this study is described by a collection of rules and design knowledge that are utilized according to the product development procedures. In this work, a network-based architecture has been developed to enable dispersed designers to simultaneously accomplish remote design tasks. A client/server communication diagram has also been proposed to facilitate consistent primary information modeling for multi-user access and reuse of designed results. An intelligent product design system has been studied with the concepts of distributed database and network-based architecture in order to support concurrent engineering design and automatic design part assembly. The system provides the capability of composing new designs from proper design elements stored in the database and knowledge-base. The distributed intelligent product design is applied to the design of an automobile part as an example.

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Development of Creative Design Coursework in Industrial Engineering - Focus on the Product Family Design (산업공학에서의 창의설계 교육 사례연구 - 제품가족디자인을 중심으로)

  • Kim, Tai-Oun;Yang, Seong-Min;Kim, Hee-Bok
    • Journal of Engineering Education Research
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    • v.9 no.3
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    • pp.49-61
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    • 2006
  • The objective of this study was to propose a new framework for the creative engineering in the product family design coursework. The idea of product family design is a good solution to fulfill customer's requirements and to respond quickly for the technology change. Mass customization based on product family and product platform is a new paradigm with variety and customization through flexibility and quick responsiveness. In this study, the subjects of product family, product platform, product family map, platform leveraging strategy, morphological matrix and module based product family design were reviewed and presented. A new idea generation scheme utilizing SCAMPER method was combined with the morphological matrix approach. For the effective product family and platform design, creative efforts and approaches were utilized and implemented in the coursework process. This will help students to develop creative thinking and approaches in the engineering problem solving.

A Study on Securing Multiple Quality Requirements of New Product Using Screening Design with a Case Study (선별실험계획을 활용한 신제품의 다수품질특성 확보 방안 : 사례 연구를 중심으로)

  • Byun, Jai-Hyun;Lee, Ki-Chang;Suh, Pan Seok;Kwak, Kyung-Hwan;Jang, Sung Il
    • Journal of Korean Institute of Industrial Engineers
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    • v.43 no.2
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    • pp.127-134
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    • 2017
  • For product or process design and development, it is common to optimize multiple responses (characteristics) based on experimental data. To determine optimal conditions, we need to design the experiment, estimate a proper model for each response, and optimize the multiple responses simultaneously. There are several techniques and many research results on optimizing multiple responses simultaneously, when the experimental data are available. However, the experimental design issue for optimizing multiple responses has not been discussed yet. This paper proposes some idea on how to plan screening design when requirements for multiple performance characteristics are to be met in developing new products. A screening design procedure is developed for securing the requirements of multiple responses. Initial design factors are classified into three categories; specific, non-conflicting common, and conflicting common. After screening experiments, follow-up design region search method is suggested with respect to the most unsatisfied or important response, or overall desirability. A case study on a synthesis of melamine formaldehyde resin is presented to illustrate the procedure and to show the validity of the approach.

The Algorithm of Improvement of Production cost using Function based cost estimating (기능 분석에 따른 제품 원가 구조개선 알고리즘에 대한 연구)

  • Seo, Ji-Han;Lee, Jea-Myung;La, Seung-Hoon
    • Journal of the Korea Safety Management & Science
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    • v.12 no.4
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    • pp.207-213
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    • 2010
  • Now days, the marketing environment is rapidly changed. Therefore, a lot of companies try to reduce production cost. Especially, Design is a important activities in new product development. While the concepts of design for manufacturable and concurrent engineering have made significant advances in integrating the design function with other areas in the firm. There are still major gaps in timely and accurate costing information available to designers. Inappropriate design could result in high redesign cost and delay in product relation. The generation of design and improvement is a time-consuming and mentally exhaustion process. It involves combining design features to generate as many potential design as possible. As not all features combinations are feasible, decision-makers have to narrow down the potential solutions and subsequently select appropriate design for further development. This new study is composed of 3 steps aiming at the Low Cost Design of the product. The three steps are consisted that setting up the target Cost, estimating the current functional cost, the design of a unit's reviewing according to the priority of the difference between the target cost and the functional cost.

Design of Optimal Parameter using Genetic Algorithms (유전자알고리즘을 이용한 최적 파라미터의 설계)

  • 이대훈;박명규;김용범;김복만;박유석
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.20 no.41
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    • pp.15-23
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    • 1997
  • Because of various request of consummer and rapidly chang, a product change and new-production come out variously. To satisfy the condition, companies must develop the product of rapidity and good quality. But, a product design difficults to consider many parameters and increase the level of each parameter. In order to solve this problem, this paper studies out algorithms taken into account more parameters and increased the level of parameters using the Genetic Algorithms. Because this algorithm can search detailed and wide for the level of parameter, in case of new-product development, we can use it for designing parameters of new-product.

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PPR Information Managements for Manufacturing of Automotive Press Dies (자동차 금형 생산을 위한 PPR 정보 관리)

  • Kim, Gun-Yeon;Lee, In-Seok;Song, Myeong-Hwan;Noh, Sang-Do
    • Korean Journal of Computational Design and Engineering
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    • v.12 no.6
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    • pp.452-460
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    • 2007
  • To achieve rapid developments and cost savings in manufacturing industries including automotive die shops, new paradigm and its supporting systems of information managements through total product life cycle are needed for concurrent and collaborative engineering. For manufacturing of automotive press dies, integrated and efficient managements of PPR information including product, manufacturing process and resource are essential. In this paper, we introduce a PLM approach to achieve engineering collaborations in product development and production of automotive dies. To prove concepts and benefits of PPR information managements, we implement new business workflow and detail procedures, PPR information management system and other related applications. By PPR information managements in PLM, improvements in quality of engineering results and savings in time from design to production of dies are possible.

Experience Innovation and Business Strategy : Design for User Experience(UX) in New Product Development(NPD) (경험 혁신과 경영 전략 : 신제품 개발 과정에서의 사용자 경험 디자인(Design for User Experience))

  • Shin, Youngsoo;IM, Chaerin;Lee, Sunwha;Kim, Jinwoo
    • Journal of Information Technology Services
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    • v.14 no.2
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    • pp.231-251
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    • 2015
  • User Experience (UX) and Experience Innovation have been emphasized in the process of New Product Development (NPD). However, previous works which were conducted within the theme of UX mostly focused on the fragmentary aspects of user's experience in a specific usage-context only. For this reason, it is always hard to deal with questions on how to define the abstract concept of UX and how to apply this important keyword in actually NPD process both for satisfying potential users and for setting a market strategy. To address this issue, we focused on the fact that UX has an aspect of composition like pattern and structure. It means that we can understand the context of UX with clarifying characteristics of relations between user and experiential objects. Also, we referred to two sub-concepts of Complexity, Density and Centrality, as representative characteristics of relations in usage-context. Based on this theoretical background, we attempted to find UX design principles and concepts for NPD from the actual example cases of products and services in the real market. From these whole study process, we expect that our findings could have implications for academic and practical areas within the theme of Human-Centered Innovation.