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권순석,임기조 ( Soon Seok Kwon,Kee Joe Lim ) 충북대학교 산업과학기술연구소 1996 산업과학기술연구 논문집 Vol.10 No.1
Abstract_Roman Electroluminescence is a phenomenon of the light emission caused by the applied electrical field to phosphor. In a view point of device fabrication technology, two types of ELDs have been reported, that is, powder dispersion type ELD(P-ELD
홈이 파진 원판증발기를 가진 회전형 히트파이프에 대한 실험적 연구
권순석,장영석,유병욱,Kwon, S.S.,Jang, Y.S.,Yoo, B.W. 대한설비공학회 1993 설비공학 논문집 Vol.5 No.2
The heat transfer characteristics of the rotating heat pipe with a disc evaporator and a grooved condenser have been investigated by measuring temperature distributions of wall and vapor for various thermal inputs and revolutions per minute. The results showed that the heat transfer coefficients of all types are increased with thermal input and revolutions per minute. The heat transfer coefficient of evaporator with groove (pitch=2.5mm depth=1.5mm) is 25.8% higher than that of evaporator without groove at 500RPM, 150W.
전국 치기공과의 학기별 교육과정에 관한 연구 - 2001년 교육과정표를 대상으로 -
권순석,Kwon, Soon-Suk 대한치과기공학회 2002 대한치과기공학회지 Vol.23 No.2
The purpose of this study was to examine the 2001 curricula in 17 departments of dental technology across the nation in an attempt to find out the educational realities of the departments by term and school year and serve as a basis for the development of more advanced, efficient dental technology curriculum and common educational objectives. For that purpose, the 2001 curricula of the three-year dental laboratory technology departments were analyzed by school year and term to calculate the amount of required credit, the number of subjects, and the weekly classes for electives and major. The findings of this study could be listed as below: 1. The departments of dental laboratory technology nationwide investigated require students to get 120 to 135 credits in total. Out of the credits, 10 to 25 credits are assigned to the electives, and 106 to 11 8 credits are given to the major. 2. There are 50 to 68 subjects in the departments of dental technology. 5 to 16 subjects are the electives, and 41 to 59 are the major. 3. There are 150 to 196 classes per week, which consist of 10 to 30 ones for the electives and 137 to In for the major. 4. The curricula for the first semester of the first year are as follows: 1) 20 to 24 credits are required. 4 to 11 credits are alloted to the electives, and 9 to 19 credits are assigned to the major. 2) The number of subject is 9 to 13, which are composed of 2 to 7 for the electives and 4 to 9 for the major. 3) The weekly classes are 22 to 29. The classes for the electives range from 4 to 14 per week, and 10 to 20 classes a week are for the major. 5. The curricula for the second semester of the first year are as below: 1) There are 20 to 25 credits. 3 to 12 credits are assigned to the electives, and 12 to 19 credits are for the major. 2) The number of subject is 10 to 14, which consist of 2 to 6 for the electives and 6 to 10 for the major. 3) The weekly classes are 22 to 29. and 3 to 12 classes a week are for the electives, and 15 to 24 classes are for the major. 6. The curricula for the first semester of the second year are as below: 1) The number of credits ranges from 20 to 24. Only six colleges offer 2 credits for the electives and the major account for 18 to 24 ones. 2) There are 8 to 12 subjects. Only six colleges offer one or two electives, and 8 to 12 are the major. 3) The weekly classes are 23 to 33. Only six colleges offer 2 or 3 classes a week for the electives, and 21 to 33 classes are for the major. 7. The curricula for the second semester of the second year are as below: 1) The number of credits ranges from 19 to 24. Only two colleges offer 2 credits for the electives and the major account for 18 to 24 ones. 2) There are 7 to 12 subjects. Only two colleges offer one or two electives, and 8 to 12 are the major. 3) The weekly classes are 24 to 36. Only two colleges offer 2 classes a week for the electives, and 24 to 36 classes are for the major. 8. The curricula for the first semester Of the third year are as below: 1) There are 16 to 24 credits. Just a college assigns 2 credits to the electives, and 16 to 24 credits are given to the major. 2) The number of subject is 5 to 12. Only a college offers one elective for optional course, and 5 to 12 are the major. 3) The weekly classes range from 18 to 39. Just a college offer 2 classes a week for the electives, and 18 to 39 classes are for the major. 9. The curricula for the second semester of the third year are as below: 1) There are 16 to 23 credits. Just a college assigns 2 credits to the electives, and 16 to 23 credits are given to the major. 2) The number of subject is 5 to 12. Only a college offers one elective for optional course, and 5 to 12 are the major. 3) The weekly classes range from 18 to 39. Just a college offer 2 classes a week for the electives, and 18 to 39 classes are for the major.
권순석,Kwon, Soon-Seok 한국조명전기설비학회 2007 조명·전기설비학회논문지 Vol.21 No.2
본 연구에서는 절연층으로 둘러 쌓인 수은이 포함되지 않은 15[inch] 평판형광램프에 대하여 연구하였다. 적당한 주기, 펄스폭을 갖는 구형파가 인가되면 평판형램프는 안정되고 균일한 방전이 전면에 걸쳐 발생한다. 균일하고 안정된 방전 상태에서의 프리즘 시트 없이 최대휘도는 $10,330[cd/m^2]$를 얻었다. A 15[inch] diagonal mercury-free flat discharge lamp with insulated electrode has been developed as backlight for a LCD backlighting. When the drive voltage pulse conditions were set properly, a uniform and stable discharge extends over the entire volume. It was obtained luminance of $10,330[cd/m^2]$ without prism sheet in uniform and stable discharge.
훌륭한 휘도 균일도를 갖는 LCD 후면 광원용 평판 형광램프
권순석,윤길중,Kwon, Soon-Seok,Yoon, Geel-Joong 대한전자공학회 2000 電子工學會論文誌 IE (Industry electronics) Vol.37 No.1
본 논문은 가스의 방전 현상으로부터 발생되는 자외선을 이용하는 평판 형광 램프의 주파수 특성에 대하여 연구하였다. 램프는 절연층, 형광층, 가스층으로 구성된다. 램프의 특성에서 불꽃 전압과 휘도 균일 전압은 주파수의 증가에 따라 감소하였다. 이것은 가스 갭내에서의 공간 전하 효과로 설명이 가능하였다. FFL의 휘도는 700Vrms, 80 kHz의 구동 조건에서 2700cd/$m^2$ 을 얻었으며, 최대 휘도 효율은 5 lm/W를 보였다. In this paper, the frequency characteristics of flat fluorescent lamp(FFL) using ultraviolet generated from gas discharge are studied. The lamp is a simple structure with insulator layer, phosphor layer, and gas gap(1.1mm). The firing voltage and uniform voltage was decreased with increasing the frequency. It was considered that this tendency was resulted from the space charge effect due to Xe and Ar positive ions trapped in gas gap. Luminance in FFL using Xe as discharge gas was shown 2700 cd/$m^2$ in operation (700 Vrms, 80 kHz). Hence, the maximum luminous efficiency was 5 lm/W.