• 제목/요약/키워드: Size specs

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Design Procedure for System in Package (SIP) Business

  • Kwon, Heung-Kyu
    • 한국마이크로전자및패키징학회:학술대회논문집
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    • 한국마이크로전자및패키징학회 2003년도 International Symposium
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    • pp.109-119
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    • 2003
  • o In order to start SIP Project .Marketing (& ASIC team) should present biz planning, schedule, device/SIP specs., in SIP TFT prior to request SIP development for package development project. .In order to prevent (PCB) revision, test, burn-in, & quality strategy should be fixed by SIP TFT (PE/Test, QA) prior to request for PKG development. .Target product price/cost, package/ test cost should be delivered and reviewed. o Minimum Information for PCB Design, Package Size, and Cost .(Required) package form factor: size, height, type (BGA, QFP), Pin count/pitch .(Estimated) each die size including scribe lane .(Estimated) pad inform. : count, pitch, configuration(in-line/staggered), (open) size .(Estimated) each device (I/O & Core) power (especially for DRAM embedded SIP) .SIP Block diagram, and net-list using excel sheet format o Why is the initial evaluation important\ulcorner .The higher logic power resulted in spec. over of DRAM Tjmax. This caused business drop longrightarrow Thermal simulation of some SIP product is essential in the beginning stage of SIP business planning (or design) stage. (i.e., DRAM embedded SIP) .When SIP is developed using discrete packages, the I/O driver Capa. of each device may be so high for SIP. Since I/O driver capa. was optimized to discrete package and set board environment, this resulted in severe noise problem in SIP. longrightarrow In this case, the electrical performance of product (including PKG) should have been considered (simulated) in the beginning stage of business planning (or design).

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동작가동성이 향상된 작업복 하의 개발을 위한 시판 제품의 착용감 및 여유량 평가 (Evaluation of Wearing Comfort and Ease of Working Pants for Improved Mobility)

  • 이효정;엄란이;이예진
    • 한국의류학회지
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    • 제41권4호
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    • pp.752-770
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    • 2017
  • This study provides a size specification and ease for the development of pants for working clothes in the construction industry according to season. We collected and measured the size specification of 4 types of Spring/Fall pants, 4 types of winter brushed bonding pants, and 4 types of winter padded pants. Subjective comfort evaluation and analysis of ease sensation were performed for all products on 12 subjects. The average size specifications for the pants according to seasons were as follows. Spring/Fall pants had 74.0/80.0cm waist size (relaxed/maximum stretched) and 104.0cm hip size. Winter brushed bonding pants had 76.0/83.4cm for waist size and 106.0cm for hip size. Winter padded pants had 71.5/84.0cm for waist size and 112.8cm for hip size. When designing a pattern by comparing product size specification and subject body size, the recommended ease is 0.2/7.2cm for waist size (relaxed, maximum stretched) and 13.6cm for hip size for Spring/Fall pants, and 0.2/6.2cm for waist size and 11.6cm for hip size of winter brushed bonding pants, and -5.3/7.2cm for waist size and 19.4cm for the hip size of winter padded pants.

학령후기 비만 남아의 체형 분석에 따른 plus-size 남자 아동복 상의 치수 규격 제안 (Upper Garment Sizing System for Obese School Boys Based on Somatotype Analysis)

  • 박순지
    • 대한가정학회지
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    • 제46권9호
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    • pp.99-112
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    • 2008
  • The increasing rate of obesity in school aged children has become a conspicuous social phenomenon in Korea. This has been linked to greater economic growth, increasingly westernized dietary habits, and a consumer driven society. Given that obesity can lead to social exclusion or unfavorable attention by other students in a school setting, the design of plus-size garments have become important for effective appearance management skills. This research aimed to establish a somatotype database for obese school boys, aged 10 to 12, in order to develop a sizing system for plus-size upper garments. In order to measure somatotype of average and obese school boys, five categories were recorded; height, obesity, length of trunk, thickness of neck and chest. For obese boys, subcutaneous fat thickness and position of B.P/shoulder point factors were recorded. Obesity factor was subdivided into overall and specific ones, and while the deviation of obese body types was severe compared to the average type. Obese body type showed significantly higher measurements in width, girth, thickness. This is linked to the fact that the frequency ratio of obesity increases with age. Stature and chest were chosen as control dimensions for boys' wear. As crosstabulation of stature(5cm interval) and chest girth(2, 3 and 4cm), and stature(5cm interval)/chest girth(3cm interval) sizing system showed, the most effective cover ratio and adaptability to the data distribution $25{\sim}75$ quartile. Based on the findings, 10 sizes were formulated for average body type, while 18 sizes were formulated for obese type, whose size cover ratios were 48% and 62.9%, respectively. The primary ranges of stature were $145cm{\sim}150cm$, while those of chest girth were $79{\sim}82cm$. Each size was declared as "chest-somatotype{A(average)/O(obesity)-stature". This study proposed a plus-size upper garment sizing systems for obese boys, accompanied with reference measurements for suit, casual wear and underwear. The finding showed that the two systems were totally separate and not overlapping, meaning that plus-size sizing system is essential for obese school boys. The obesity type system had more size and wider range specs.

UML을 활용한 컴포넌트 기반의 GIS 개발방법론에 관한 연구 (A Study on the Component-based GIS Development Methodology using UML)

  • 박태옥;김계현
    • 한국공간정보시스템학회 논문지
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    • 제3권2호
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    • pp.21-43
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    • 2001
  • 오늘날 GIS 영역을 포함하는 정보시스템 개발 환경은 소프트웨어의 복잡성 및 다양성 그리고 분산처리 및 네트워크 컴퓨팅 등의 측면에서 과거에 비해 현저하게 변화되었다. 이에 신속하게 대응하기 위하여 소프트웨어 개발 패러다임에 변화가 일어나고 있으며 객체지향기술에 바탕을 둔 컴포넌트 기반 개발이 대세로 자리잡고 있다. GIS 개발에서도 국내외적으로 관련 표준 지침을 만들어 컴포넌트에 기반한 개발을 독려하고, 앞으로 컴포넌트 기술의 적용이 증가하는 추세이다. 이러한 추세에 부응하여 GIS를 위한 컴포넌트 기반개발 방법론의 필요성이 대두되나 아직 연구가 충분히 이루어지지 못하는 실정이다. 본 연구는 UML을 활용한 컴포넌트 기반의 GIS 개발 방법론(ATOM Advanced Technology Of Methodology for GIS)의 프로세스의 제안과 함께 사례연구를 통하여 이의 적용가능성을 확인하는 것이다. ATOM은 컴포넌트 개발 그 자체를 지원할 뿐만 아니라 식별된 컴포넌트와 기존 재사용 가능한 컴포넌트에 바탕을 둔 소프트웨어 개발 생명주기 전체 단계를 지원하는 전사적인 GIS 구축 방법론이다. ATOM은 생명 주기 각 단계에 대한 주요 활동과 각각의 활동을 수행하기 위한 작업들을 정의하였다. 또한 작업간 입력물과 출력물을 제시하고, 각종 문서화를 위한 표준 양식과 항목을 제시하며 작업들의 성공적 수행을 위한 상세한 지침을 제시하여 최대한 방법론의 이해를 돕고자 하였다. 무엇보다도 ATOM의 가장 중요한 특징은 단순한 기능과 최소의 크기, 최대의 재사용을 위한 컴포넌트 추출에 목적을 두고 GIS 도메인의 여러 특징을 고려한 GIS를 위한 컴포넌트 기반의 개발방법론이라 할 수 있다. ATOM의 사례 적용은 재사용 및 상호운용성이 뛰어난 컴포넌트의 추출과 함께 보다 체계적이고 구체적인 개발 가이드 라인을 제공하여 응용GIS 구축의 생산성 및 품질 향상에 기여할 뿐만 아니라 우리의 최종목표인 GIS 소프트웨어 자동 생산에도 크게 기여할 것으로 사료된다.

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