• Title/Summary/Keyword: 전자 렌즈

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Sub-micron패턴 형성을 위한 축대칭 이온광학계의 성능해석

  • Lee, Jong-Hyeon;Jang, Won-Ik;Yu, Hyeong-Jun
    • ETRI Journal
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    • v.11 no.1
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    • pp.75-88
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    • 1989
  • 액체금속 이온원에서 추출된 이온빔을 웨이퍼 위에 접속하기 위한 이온광학계에 있어서 축대칭 판형 전극의 전위분포를 계산하는 해석적인 방법을 제시하였다. 이 방법은 이온궤적, 수차 및 이온빔 직경등의 광학 특성을 보다 빠르게 계산할 수 있는 computer code의 개발에 이용되었다. 계산된 광학특성은 Burghard의 결과와 잘 일치하였으며, 기존의 Orloff.lens,Kurihara lens의 aperture 직경을 변화시켜 색수차를 줄이면 이온빔의 직경이 20% 정도 감소되었다. 또한 두개의 렌즈로 이루어진 이온광학계에 대한 전산모사를 통하여 일반적으로 collimated mode가 crossovered mode에 비해 작은 빔직경을 가지며, 5KeV, 50keV의 빔에너지에서 각각 Orloff lens/Orloff-reversed lens, Kurihara lens/Orloff-reversed lens로 조합된 경우가 빔직경의 관점에서 유리함을 알 수 있었다.

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차세대 3차원 실사 그래픽스 기술의 국제특허 동향 및 전망 분석

  • Seo, Yeong-Ho
    • Broadcasting and Media Magazine
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    • v.26 no.1
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    • pp.38-49
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    • 2021
  • 최근 차세대 온라인 및 오프라인 실시간 3차원 실사 및 애니메이션 서비스를 위한 시스템 및 요소 기술 분야의 기술 개발 필요성이 대두됨에 따라 정부 차원의 다양한 기초/원천 R&D로부터 서비스, 사업화 및 상용화를 추진 중에 있다. 여기에는 게임, 체험, 테마파크, 플랫폼, 다면영상, 유통 등의 넓은 분야로 확장이 진행 중이다. 특히, 초실감의 혼합현실 구현을 위해, 실사로 처리 가능한 3D 컨텐츠 제작 및 통신 기술이 핵심 기술로 대두되고 있으며, 국내 환경을 살펴보면 삼성전자, SK텔레콤 등이 관련 서비스를 준비 중에 있으나, 미국의 경우는 MICROSOFT, Google 등이 홀로 렌즈 등을 이용한 혼합현실 기술을 일부 상용화하고 있는 것으로 보고되고 있다. 따라서 본 고에서는 3D 실사 그래픽스 기반의 컨텐츠 제작을 위한 객체인식 기술(AA), 동적 애니메이션 생성 및 처리 기술(AB), 동적 애니메이션 압축 및 전송 기술(AC) 관련 국제적 특허 동향을 분석하고 이를 바탕으로 향후 관련 분야의 시장을 전망하고자 한다.

Fabrication of Spherical Microlens Array Using Needle Coating for Light Extraction of OLEDs (니들 코팅을 이용한 OLED 광 추출용 구형 마이크로렌즈 어레이 제작)

  • Kim, Juan;Shin, Youngkyun;Kim, Gieun;Hong, Songeun;Park, Jongwoon
    • Journal of the Semiconductor & Display Technology
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    • v.21 no.2
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    • pp.25-31
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    • 2022
  • By an aid of needle coating, we have fabricated a spherical microlens array using poly(methyl methacrylate) for potential applications in light extraction of organic light-emitting diodes. With an attempt to achieve high-density and high-aspect-ratio microlens arrays, we have investigated the coating behaviors by varying the material parameters such as the solute concentration and wettability of the poly(methyl methacrylate) solution and process parameters such as the dwell time of needle near the substrate, retract distance of needle from the substrate, and coating gap between the needle and substrate. Under the optimized coating conditions, it is demonstrated that high-aspect-ratio microlens arrays can be obtained using a coating solution with high solute concentration and a small amount of a hydrophobic solvent. It is found that the diameter and height of microlens array are decreased with increasing poly(methyl methacrylate) concentration, yet the overall aspect ratio is rather enhanced. By the addition of 5 wt% hexylamine in 35 wt% poly(methyl methacrylate) solution, we have achieved a spherical microlens with the height of 7.7 ㎛ and the width of 94.24 ㎛ (the aspect ratio of 0.082). To estimate the capability of light extraction by the microlens array, we have performed ray tracing simulations and demonstrated that the light extraction efficiency of organic light-emitting diode is expected to be enhanced up to 24%.

Multiple Camera Calibration for Panoramic 3D Virtual Environment (파노라믹 3D가상 환경 생성을 위한 다수의 카메라 캘리브레이션)

  • 김세환;김기영;우운택
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.41 no.2
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    • pp.137-148
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    • 2004
  • In this paper, we propose a new camera calibration method for rotating multi-view cameras to generate image-based panoramic 3D Virtual Environment. Since calibration accuracy worsens with an increase in distance between camera and calibration pattern, conventional camera calibration algorithms are not proper for panoramic 3D VE generation. To remedy the problem, a geometric relationship among all lenses of a multi-view camera is used for intra-camera calibration. Another geometric relationship among multiple cameras is used for inter-camera calibration. First camera parameters for all lenses of each multi-view camera we obtained by applying Tsai's algorithm. In intra-camera calibration, the extrinsic parameters are compensated by iteratively reducing discrepancy between estimated and actual distances. Estimated distances are calculated using extrinsic parameters for every lens. Inter-camera calibration arranges multiple cameras in a geometric relationship. It exploits Iterative Closet Point (ICP) algorithm using back-projected 3D point clouds. Finally, by repeatedly applying intra/inter-camera calibration to all lenses of rotating multi-view cameras, we can obtain improved extrinsic parameters at every rotated position for a middle-range distance. Consequently, the proposed method can be applied to stitching of 3D point cloud for panoramic 3D VE generation. Moreover, it may be adopted in various 3D AR applications.

Development of Microlens Array for Maskless Lithography Application (Maskless lithography 응용을 위한 마이크로렌즈 어레이 개발)

  • Nam, Min-Woo;Oh, Hae-Kwan;Kim, Geun-Young;Seo, Hyun-Woo;Wei, Chang-Hyun;Song, Yo-Tak;Yang, Sang-Sik;Lee, Kee-Keun
    • Journal of the Microelectronics and Packaging Society
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    • v.16 no.4
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    • pp.33-39
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    • 2009
  • A microlens array (MLA) was developed based on the wet-etched quartz substrate and coating of UV adhesive on the substrate for maskless lithography application. The developed MLA has the focal length of ${\sim}45\;{\mu}m$ and the spot size of ${\sim}1\;{\mu}m$. The spot size of the focused beam passing through the MLA was detected by CCD camera, and its intensity was monitored by beam profiler. Uniform spots with nearly identical intensities were observed on the focal plane when a beam passes through the fabricated MLA. The focal length was varied depending on thickness of the coated UV adhesive. The thicker the thickness of the UV adhesive was, the shorter the focal length of the MLA was. With a general mask aligner, UV beam focusing was tested onto photoresist (PR). The beams were well focused onto PR when UV passes through the MLA. Depending on the variable distances from the MLA, beam sizes onto PR were controlled. Even at high temperature for a long time, the performances of the MLA were not changed.

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Relationship between the Deposition of Tear Constituents and the Adherence of Candida albicans according to Soft Contact Lens Materials and Pigmentation (소프트콘택트렌즈 재질과 착색에 따른 눈물성분 침착과 칸디다균 흡착의 상관관계)

  • Park, So Hyun;Kim, So Ra;Park, Mijung
    • Journal of Korean Ophthalmic Optics Society
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    • v.21 no.3
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    • pp.215-225
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    • 2016
  • Purpose: The aim of this study was to figure out how the characteristics of soft contact lens materials and pigmentation affect the adherence of C. albicans on soft contact lenses pre-deposited with tear constituents. Methods: The adherent number of C. albicans on clear soft contact lenses (hereinafter clear lenses) and circle soft contact lenses (hereinafter circle lenses) made of etafilcon A, hilaiflcon B and nelfilcon A, respectively, was measured before and after the deposition of artificial tear. Also, bacteria adherence on lenses were observed by a scanning electron microscope. Results: Adherence of C. albicans was significantly different according to lens materials. The amount of adsorption was not different between clear lenses and circle lenses made of etafilcon A however, the number of bacteria absorption was bigger in hilafilcon B and nelfilcon A lenses. More absorption of C. albicans was found in the non-pigmented central area compared the pigmented area, and non-pigmented peripheral area has more bacterial absorption than non-pigmented central area. The number of C. albicans decreased in the case that tear protein was pre-deposited. The maintenance of antibacterial activity against C. albicans was different according to lens materials thus, etafilcon A has the longest period of its maintenance. Conclusions: It was revealed that the number of C. albicans was different according to the characteristics of lens materials, pigmentation or non-pigmentation, the pigmented area of soft contact lenses. Thus, it is suggested that the management method should be different according to the adsorption characteristics of C. albicans.

Mobile Robot Localization and Mapping using Scale-Invariant Features (스케일 불변 특징을 이용한 이동 로봇의 위치 추정 및 매핑)

  • Lee, Jong-Shill;Shen, Dong-Fan;Kwon, Oh-Sang;Lee, Eung-Hyuk;Hong, Seung-Hong
    • Journal of IKEEE
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    • v.9 no.1 s.16
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    • pp.7-18
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    • 2005
  • A key component of an autonomous mobile robot is to localize itself accurately and build a map of the environment simultaneously. In this paper, we propose a vision-based mobile robot localization and mapping algorithm using scale-invariant features. A camera with fisheye lens facing toward to ceiling is attached to the robot to acquire high-level features with scale invariance. These features are used in map building and localization process. As pre-processing, input images from fisheye lens are calibrated to remove radial distortion then labeling and convex hull techniques are used to segment ceiling region from wall region. At initial map building process, features are calculated for segmented regions and stored in map database. Features are continuously calculated from sequential input images and matched against existing map until map building process is finished. If features are not matched, they are added to the existing map. Localization is done simultaneously with feature matching at map building process. Localization. is performed when features are matched with existing map and map building database is updated at same time. The proposed method can perform a map building in 2 minutes on $50m^2$ area. The positioning accuracy is ${\pm}13cm$, the average error on robot angle with the positioning is ${\pm}3$ degree.

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Multiple Camera Based Imaging System with Wide-view and High Resolution and Real-time Image Registration Algorithm (다중 카메라 기반 대영역 고해상도 영상획득 시스템과 실시간 영상 정합 알고리즘)

  • Lee, Seung-Hyun;Kim, Min-Young
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.49 no.4
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    • pp.10-16
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    • 2012
  • For high speed visual inspection in semiconductor industries, it is essential to acquire two-dimensional images on regions of interests with a large field of view (FOV) and a high resolution simultaneously. In this paper, an imaging system is newly proposed to achieve high quality image in terms of precision and FOV, which is composed of single lens, a beam splitter, two camera sensors, and stereo image grabbing board. For simultaneously acquired object images from two camera sensors, Zhang's camera calibration method is applied to calibrate each camera first of all. Secondly, to find a mathematical mapping function between two images acquired from different view cameras, the matching matrix from multiview camera geometry is calculated based on their image homography. Through the image homography, two images are finally registered to secure a large inspection FOV. Here the inspection system of using multiple images from multiple cameras need very fast processing unit for real-time image matching. For this purpose, parallel processing hardware and software are utilized, such as Compute Unified Device Architecture (CUDA). As a result, we can obtain a matched image from two separated images in real-time. Finally, the acquired homography is evaluated in term of accuracy through a series of experiments, and the obtained results shows the effectiveness of the proposed system and method.

Fabrication of High Density and High Uniformity Irradiation Light Source for Exposure Curing System Using 365 nm and 385 nm Wavelength SMD LED and High Transmittance Silicone Resin TIR Bar Type Lens (365 nm 및 385 nm SMD LED와 TIR 바형 렌즈를 이용하는 고밀도 고균일성 특성의 경화용 광원모듈 제작 )

  • Pil Hong Jeong;Beom Jin Kim;Yeong Jin Kim;Dong Gyu Jeon;Hyo Min Kim;Jae Hyeon Kim;Hyeong Min Kim;Gyu Seong Lee;Kawan Anil;Eung Ryul Park;Soon Jae Yu;Min Jun Ann;Do Won Hwang
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.37 no.4
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    • pp.394-399
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    • 2024
  • An irradiator is developed using two UVA wavelength ranges of SMD LEDs as a curing light source. This module has dimensions of 545×111×300 mm3 and is equipped with a TIR bar-shaped lens made of PDMS silicone resin. The developed irradiator offers high uniformity, with 89% in the centerline of the horizontal axis direction, for two different wavelength ranges of 365 nm and 385 nm. The radiation intensity from the light source module shows highly directional characteristics, and the irradiator provides a maximum irradiance of 1,634 mW/cm2 at a working distance of 50 mm. During the initial 5 minutes of operation, the irradiance experiences a rapid decrease. However, this issue is addressed by optimizing the LED's current reduction characteristics and managing the Transistor's temperature rise in the constant current circuit. After continuous operation for approximately 60 minutes. The highest temperature, near the central part of the irradiating surface, reaches 69.7℃, while the lowest temperature, near the edges, is 41.1℃.

Characterization of Electro-wetting Velocity by Measuring Transmission Intensity (광량 측정을 통한 전자습윤 현상의 동작 특성 평가)

  • Park, Seung-Ryong;Song, Seok-Ho;Oh, Cha-Hwan;Kim, Pill-Soo;Oh, Byoung-Do;Chung, Sang-Kug
    • Korean Journal of Optics and Photonics
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    • v.17 no.4
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    • pp.347-353
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    • 2006
  • The electro-wetting effect can be implemented as a fast means to move liquid interfaces. A continuous and numerical method would be required in measurement of electro-wetting liquid interfaces. We propose an /in-situ/ measurement method to characterize the dynamic change in curvature of liquid interfaces. In the proposed method, variation of light intensity transmitted through the liquid interfaces is measured, leading to numerical determination of the liquid curvatures. Experimental results obtained from our efficient method are confirmed by the direct images of a streak camera.