• 제목/요약/키워드: Technological Cost

검색결과 463건 처리시간 0.023초

우주용 상용 PEM 소자의 적용 및 검증기술 동향 (Application and Verification Trend of COTS PEM Devices in Space Program)

  • 조영준;이창호;이춘우;황도순
    • 항공우주산업기술동향
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    • 제6권1호
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    • pp.65-73
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    • 2008
  • 위성시스템의 성능 및 무게, 비용 등의 요구조건이 높아지면서 시스템 설계를 위한 고성능,고효율의 전기전자부품이 요구되고 있다. 이런 요구를 충족하기 위하여NASA나 ESA에서 사용하고 있는 고 신뢰성과 안전성에 바탕을 둔 기존의 표준소자에 비해 신기술과 고성능으로 빠르게 업그레이드되고 있는 상용부품의 수요가 증가하고 있다. 특히 상용집적소자인 PEM은 많은 우주프로그램에서 사용되고 있고 그 영역을 넓히기 위한 연구가 계속되고 있다. 본 논문에서는 우주 프로그램에 사용하기 위한 상용PEM소자의 고려사항과 검증동향에 대해 소개하고자 한다.

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나로우주센터 표준시각 동기화장비 기술동향 (Technical Trend of Time Synchronization Equipment in Naro Space Center)

  • 한유수;최용태
    • 항공우주산업기술동향
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    • 제6권1호
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    • pp.116-123
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    • 2008
  • 발사임무와 관련한 각종 통제장비 및 추적장비들은 정해진 시간에 따른 기능 수행과 장비간 연동 데이터의 시간 동기화를 위하여 정확한 시간을 필요로 한다.표준시각 동기화를 위한 다양한 표준들이 있으며, 정확도와 구축비용 등을 고려하여 적합한 표준을 채택하여 사용할 수 있다. 또한 각 장비에서 수신한 표준시각을 유지하기 위하여 사용되는 오실레이터는 특성에 따라 다양한 종류가 있으며 요구되는 시간 정확도 및 성능에 따라서 사용되는 제품이 달라 질 수 있다. 본 논문에서는 각종 오실레이터의 특성과 표준시각 동기화에 일반적으로 사용되는 표준에 대해서 살펴보고 또한 현재 나로우주센터에 구축되어 있는 표준시각분배망에 대해서도 간략히 소개한다.

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자동차 브레이크용 고분자복합재료의 물리적 특성평가에 관한 연구 (A Study on the Evaluation of Physical Properties of Polymer-based Composite Materials for the Brake of the Automobile)

  • 손태관;김윤해;김봉식
    • Journal of Advanced Marine Engineering and Technology
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    • 제20권2호
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    • pp.75-75
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    • 1996
  • The rapid expansion for the auto-industry and the worldwide trend toward non-asbestos friction materials for brake lining force our industry to transfer into non-asbestos ones from asbestos-based friction materials. Furthermore, it is imperative for the friction materials to have technological excellence and lower production cost to be competitive in the world market. There is no known theoretical procedures to formulate friction materials. It, rather, depends on the trial and error process. Thus, it is quite clear how important it is to accumulate the know-how on the formulation and manufacturing the friction material. This study concerns the practical ways of conceptualizing the formulation and optimizing the manufacturing process. This study focused on the development of formulation for non-asbestos friction material as well as deriving the physical properties of the trial product to prove its validity and applicability. Elaboration of the formula and optimizing scheme of the manufacturing process to get better quality are also sought. Physical properties were obtained by constant velocity test dynamotest, hardness test and strength test. Differential scanning calorimeter was also used to analyze the thermal reactions of organic constituents, microstructures, bond effects, and degree of mixture.

자동차 브레이크용 고분자복합재료의 물리적 특성평가에 관한 연구 (A Study on the Evaluation of Physical Properties of Polymer-based Composite Materials for the Brake of the Automobile)

  • 손태관;김윤해;김봉식
    • Journal of Advanced Marine Engineering and Technology
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    • 제20권2호
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    • pp.7-14
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    • 1996
  • The rapid expansion for the auto-industry and the worldwide trend toward non-asbestos friction materials for brake lining force our industry to transfer into non-asbestos ones from asbestos-based friction materials. Furthermore, it is imperative for the friction materials to have technological excellence and lower production cost to be competitive in the world market. There is no known theoretical procedures to formulate friction materials. It, rather, depends on the trial and error process. Thus, it is quite clear how important it is to accumulate the know-how on the formulation and manufacturing the friction material. This study concerns the practical ways of conceptualizing the formulation and optimizing the manufacturing process. This study focused on the development of formulation for non-asbestos friction material as well as deriving the physical properties of the trial product to prove its validity and applicability. Elaboration of the formula and optimizing scheme of the manufacturing process to get better quality are also sought. Physical properties were obtained by constant velocity test dynamotest, hardness test and strength test. Differential scanning calorimeter was also used to analyze the thermal reactions of organic constituents, microstructures, bond effects, and degree of mixture.

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Feeding Strategies to Produce High Quality Pork - Review -

  • Bosj, P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권2호
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    • pp.271-281
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    • 1999
  • The cost of production of high quality pork is compensated by high returns, but constraints by the market are increasing. A few opportunities to maintain and improve pork quality by dietary means are presented. The healthy value of pork is a prerequisite. A careful control of suppliers and preservation of feeds are essential to protect pork against presence of contaminants from the feed. The feeding level and some dietary components modify the partition of the dietary energy into different pig tissues and chemical components of pork, affecting the hygienic and nutritional value, tenderness and taste. It is difficult to transfer a nutrient from the diet to pork, if the requirements. for growth are satisfied. Fatty acids and Vitamin E are the most studied exceptions. There is some evidence that iron and selenium contents can be affected too. Varying the content of a nutrient frequently changes sensorial and technological properties of pork. The addition of oils improves the acidic profile of depot fats, but the effect on phospholipid composition is not well studied and negative effects on oxidability and consistency of meat products are observed. Vitamin E can improve many healthy and sensorial characteristics, but its effect is clearer when the meat is stressed or manipulated.

공동기술개발 프로젝트의 성패요인: 우리나라 전자부품 중소기업 분석 (Key Success Factors for Collaborative Technology Development Projects: The Case of Small & Medium Firms in the Korean Electronics Parts Industry)

  • 이광희;김영배
    • 기술혁신연구
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    • 제6권2호
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    • pp.122-158
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    • 1998
  • This study empirically examined different patterns of collaborative R&D project with their key success factors(KSFs), using data from 82 projects in the Korean electronic parts industry. The patterns of R&D collaboration were categorized into 4 types by two criteria development motive(technology Push/market pull) and Project initiator (focal firm/partner). The bivariate relationships revealed that project characteristics (technological complexity, market uncertainty), management characteristics (participation in project formulation), problem solving characteristics(problem solving performance of the focal firm, users active role in problem solving, active role of university or research institute in problem solving) and success rates appear to be different among four types of collaboration. Each type of collaborative R&D projects also had different KSFs. The KSFs of type 1 (technology Push and focal firm initiation), for instance, include the strategic importance of the project, focal firms share of cost, active role of university or research institute in problem solving, while those of type 4(market pull and customer initiation) cover reliability of partner relationship, a time at partners involvement, information sharing. The findings suggest that the different contingencies brought different patterns and KSFs of collaborative R&D project, since different information, resources, and partners roles were needed to successfully implement the projects according to development motive and project initiator Finally, managerial, policy, and theoretical implications for the collaborative R&D activities in the Korean electronics parts industry were discussed, based on empirical results of this study.

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형질전환 식물세포배양을 이용한 바이오의약품 생산 (Production of biopharmaceuticals in transgenic plant cell suspension cultures)

  • 권준영;전수환;이혜란;한지연;김동일
    • Journal of Plant Biotechnology
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    • 제36권4호
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    • pp.309-319
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    • 2009
  • Transgenic plant cell cultures for the production of biopharmaceuticals including monoclonal antibodies, recombinant proteins have been regarded as an alternative platform in addition to traditional microbial fermentation and mammalian cell cultures. Plant-made pharmaceuticals (PMPs) have several advantages such as safety, cost-effectiveness, scalability and possibility of complex post-translational modifications. Increasing demand for the quantity and diversity of pharmaceutical proteins may accelerate the industrialization of PMP technology. Up to date, there is no plant-made recombinant protein approved by USFDA (Food and Drug Administration) for human therapeutic uses due to the technological bottlenecks of low expression level and slight differences in glycosylation. Regarding expression levels, it is possible to improve the productivity by using stronger promoter and optimizing culture processes. In terms of glycosylation, humanization has been attempted in many ways to reduce immune responses and to enhance the efficacy as well as stability. In this review article, all these respects of transgenic plant cell cultures were summarized. In addition, we also discuss the general characteristics of plant cell suspension cultures related with bioreactor design and operation to achieve high productivity in large scale which could be a key to successful commercialization of PMPs.

금속 보강재를 이용한 에폭시 수지형의 특성 향상 및 적용에 관한 연구 (A Study on Characteristics Improvement of Epoxy Resin Mold Using Metal Fillers and Its Application)

  • 정성일;임용관;김경래;정해도
    • 한국정밀공학회지
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    • 제20권4호
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    • pp.165-173
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    • 2003
  • As the cycling time of new products have become more and more short in recent years, the demand for lowering the cost and reducing the production time becomes stronger. In order for the demand, the rapid prototyping and rapid tooling technology have been used. It has been widely known that RP technology has advantages with fabricating 3-D object having a complicated geometric shape. RP products, however, have a limitation with applying to the real die and mold because soft materials such as resin, paper and wax has been mostly used in RP technology. So in this paper, the RP products have been copied to semi-metallic soft tools using the mixture of metal fillers and epoxy resin. In order to evaluate the effect of the fillers on the characteristics of semi-metallic soft tools, three fillers are used including commercial aluminum powder, cast iron powder recycled by machining chips, and aluminum short fiber made by self-excited vibration technique. Besides, in the case of aluminum powder, the change of characteristics of semi-metallic soft tools is also tested according to the volume fraction of the powder.

금속염을 이용한 염료감응 태양전지의 고체전해질의 전기화학적 특성 (Electrochemical properties of metal salts polymer electrolyte for DSSC)

  • ;;구할본
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.55.1-55.1
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    • 2011
  • Dye-sensitized solar cell(DSSC) have been considered one of the promising alternatives to conventional solar cells, because of their low cost, easy fabrication and relatively high energy conversion efficiency. However, although the cell offers reasonable efficiency at least 11%, the use of a liquid electrolyte placed technological challenges for achieving the desired durability and operational stability of the cell. In order to prevent or reduce electrolyte leakage considerable efforts have been made, such as p-type semiconductor or organic hole-transport material that better mechanical properties and simple fabrication processes. In this work, we synthesized solid-state electrolyte containing LiI and KI metal salt with starting materials of poly ethylene oxide to substitute liquid electrolyte enhance the ionic conductivity and solar conversion efficiency. Li+ leads to faster diffusion and higher efficiency and K+ leading to higher ionic conductivity. The efficiency of poly ethylene oxide/LiI system electrolyte is 1.47% and poly ethylene oxide/potassium electrolyte is 1.21%. An efficiency of 3.24% is achieved using solid-state electrolyte containing LiI and KI concentrations. The increased solar conversion efficiency is attributed to decreased crystallinity in the polymer that leads to enhanced charge transfer.

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Low Cost, Large Area Nanopatterning via Directed Self-Assembly

  • 김상욱
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.24-25
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    • 2011
  • Molecular self-assembly has several advantages over other nanofabrication methods. Molecular building blocks ensure ultrafine pattern precision, parallel structure formation allows for mass production and a variety of three-dimensional structures are available for fabricating complex structures. Nevertheless, the molecular interaction for self-assembly generally relies on weak forces such as van der Waals force, hydrogen bonding, or hydrophobic interaction. Due to the weak interaction, the structure formation is usually slow and the degree of ordering is low in a self-assembled structure. To promote self-assembly, directed assembly methods employing prepatterned substrates or external fields have been developed and gathered a great deal of technological attention as a next generation nanofabrication process. In this presentation a variety of directed assembly methods for soft nanomaterials including block copolymers, peptides and carbon nanomaterials will be introduced. Block copolymers are representative self-assembling materials extensively utilized in nanofabrication. In contrast to colloid assembly or anodized metal oxides, various shapes of nanostructures, including lines or interconnected networks, can be generated with a precise tunability over their shape and size. Applying prepatterned substrates$^{1,2}$ or introducing thickness modulation$^3$ to block copolymer thin films allowed for the control over the orientational and positional orderings of self-assembled structures. The nanofabrication processes for metals, semiconductors$^4$, carbon nanotubes$^{5,6}$, and graphene$^{6,7}$ templating block copolymer self-assembly will be presented.

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