• 제목/요약/키워드: 초점 결상

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The Image-forming Property of Optical System having Gaussian Amplitude for Polychromatic Source (다색 광원에 대한 가우시안 진폭을 갖는 광학계의 결상 특성)

  • Park, Seong Jong;Park, Hae Jong
    • Journal of Korean Ophthalmic Optics Society
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    • v.4 no.2
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    • pp.33-38
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    • 1999
  • To investigate the image-forming property of optical system having Gaussian amplitude for polychromatic source, we calculated the chromaticity variation and the illuminance distribution. Considered polychromatic sources in this paper are A light which is on incandescent-tungsten lamp, C light which is a daylight, and $D_{65}$ light which is a extend daylight to the near ultraviolet. The polychromatic sources represent the different chromaticity values at a geometrical image point. The chromaticity variation of optical system having a Gaussian amplitude is smaller than that having an uniform amplitude. The illuminance distributions for polychromatic sources present nearly the same values, and the depth of focus for optical system having a Gaussian amplitude is wider than that having an uniform amplitude. From these results, we know that the depth of focus increases and the chromaticity variation decreases, when the incident light amplitude is modulated from an uniform amplitude to a Gaussian amplitude.

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연 X-선 결상현미경 시스템의 광학계 및 광량설계

  • Nam, Gi-Yong;Kim, Gyeong-U;Kim, Gyu-Gyeom;Gwon, Yeong-Man;Yun, Gwon-Ha;Cheon, Gwon-Su;Na, Seung-Yu
    • Proceedings of the Optical Society of Korea Conference
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    • 2004.02a
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    • pp.70-71
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    • 2004
  • 40nm의 해상도를 갖는 연 X-선 결상현미경 시스템의 광학계를 결정하였다. 연 X-선 장치에서의 대물렌즈로써 대상시료내에 빔 초점(focusing)를 위한 광학계로 두개의 Ellipsoid형 광하계로 설계하였다. 또한 접안렌즈로는 Fresnel zone plate로 하여 설계 및 제작하였다. 또한 연 X-선이 지나가는 빔 경로 상에 놓여진 다양한 물질들에 대한 각각의 X-선 광자의 조사선량을 계산하였다. 살아있는 세포를 관찰하고자하는 본 장치의 목적에 부합되기 위한 세포가 피폭되는 임계 방사선 조사선량의 관점에서 연 X-선의 선원의 세기와 검출기의 증폭효율을 고찰하였다.

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광학렌즈 기술.시장 동향

  • 한국광학기기협회
    • The Optical Journal
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    • s.154
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    • pp.33-45
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    • 2014
  • ■ 광통신용 렌즈는 광통신 시스템에 있어서 송신단과 수신단에 사용되는 하나의 부품으로 집광/발산의 결상 기능을 지니며, 광회로 부품과 광섬유 또는 수발광소자인 LD/PD와 광섬유를 효율 좋게 저손실로 접속하는 기능을 수행함. ■ 마이크로 렌즈는 마이크로 광학의 분야에 있어 광의 집광 및 평행 광으로의 변환에 빠질 수 없는 가장 기본적인 소자로서, 마이크로 렌즈의 종류로는 마이크로 볼 렌즈, 비구면 렌즈와 GRIN 렌즈가 대표적으로 있음. ■ 렌즈에 적용되는 사양으로서 렌즈의 유효 구경, 초점(focal point), 주점(principle point), 주점에서 초점까지의 거리인 초점 거리(focal length), 가상의 법선을 기준으로 빛이 입사되는 각도인 입사각, 빛이 다른 매질을 만나 반사되는 각도인 반사각, 서로 다른 매질을 빛이 통과할 때 굴절하는 굴절각 등이 있음. ■ 렌즈 모듈의 구조는 렌즈, 스페이서(spacer), 아리리스(Iris), 백링(back-ring), 바렐(Barrel)로 구성함. ■ LD 모듈에서 광원에 패브리 페로(FP)로 사용하는 것에는 볼 렌즈가, DFB 광원으로 사용하는 것으로는 비구면 렌즈가 사용하고 있음. 이를 위해 PON용에서는 G-PON의 OLT, ONU 측, GE-PON의 OLT측에는 비구면 렌즈가 사용되나 GE-PON의 ONU측에는 볼 렌즈가 주로 사용되고 있음. ■ 2012년 볼 렌즈 시장은 수량 기반으로 2011년 대비 9.7% 증가한 7,350만 개, 금액기반으로는 17.0% 증가한 3,125만$를 기록하였음. ■ 2012년 비구면 렌즈 시장은 수량 기반으로 2011년 대비 22.0% 증가한 2,220만 개, 금액 기반으로는 32.0% 증가한 8,900만$를 기록하였음. ■ 2012년 광통신용 렌즈 시장(볼 + 비구면)은 수량 기반으로 2011년 대비 12.3% 증가한 9,570만 개, 금액 기반으로는 27.7% 증가한 1억 2,063만$이었음.

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The research for the enhancement of depth of focus by elliptical polarization illumination(EPI) (타원편광 조명에 의한 초점심도 향상에 관한 연구)

  • 박정보;김기호;이성묵
    • Korean Journal of Optics and Photonics
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    • v.9 no.3
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    • pp.146-150
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    • 1998
  • To enhance the resolution and the depth of focus of the patterns whose size reaches the optical resolution limits, the various imaging methods are being tried. Generally in the linear polarization illumination methods, the contrast gap exists between TE mode TM mode according to the pattern direction. However, through the previous research, the elliptical polarization illumination(EPI) method was proposed to overcome this contrast gap. In this research, we investigated the optimal polarization condition to be able to enhance the depth of focus(DOF) for the optional mask which is containing the opposite direction patterns by applying the various polarization conditions including EPI. The DOF according to each polarization condition was obtained by ED-Tree(Exposure-Defocus Tree) for the given exposure dose and CD error boundaries. As the result, we can ascertain th effect of EPI for the enhancement of DOF in some condition of optical system.

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The Influence of the Variation of Conic Coefficient of the Front Surface on RMS Spot Diameter (전면의 conic 계수 변화가 착락원 크기에 미치는 영향)

  • Park, Seong-Jong;Ju, Seok-Hee;Sim, Sang-Hyun
    • Journal of Korean Ophthalmic Optics Society
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    • v.8 no.2
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    • pp.77-83
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    • 2003
  • To investigate the influence of the variation of conic coefficient of the front surface on the RMS SD(Root Mean Square Spot Diameter) in a back focal plane, we use programs which are Cove V and LOSA 2.0. We consider a spectacle lens with back vertex power of -4.00D, diameter of 70 mm, the front surface powers which are 2.00D, 4.00D, 6.00D, and 8.00D, and the indices which are $n_d$=1.498, 1.523, 1.586, and 1.660, respectively. The RMS SD in the back focal plane and the thickness of an aspherical tens having the optimized conic constant are smaller than those of a spherical lens. The RMS SD in the back focal plane decreases as the front surface power decreases. From these results, we determine the optimized conic constant to improve the optical image quality and decrease RMS SD in the back focal plane.

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Machine Vision Inspection System of Micro-Drilling Processes On the Machine Tool (공작기계 상에서 마이크로드릴 공정의 머신비전 검사시스템)

  • Yoon, Hyuk-Sang;Chung, Sung-Chong
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.28 no.6
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    • pp.867-875
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    • 2004
  • In order to inspect burr geometry and hole quality in micro-drilling processes, a cost-effective method using an image processing and shape from focus (SFF) methods on the machine tool is proposed. A CCD camera with a zoom lens and a novel illumination unit is used in this paper. Since the on-machine vision unit is incorporated with the CNC function of the machine tool, direct measurement and condition monitoring of micro-drilling processes are conducted between drilling processes on the machine tool. Stainless steel and hardened tool steel are used as specimens, as well as twist drills made of carbide are used in experiments. Validity of the developed system is confirmed through experiments.

Design of Imaging Optical System with 24mm Focal length for MWIR (MWIR용 24mm 초점거리를 가지는 결상광학계의 설계)

  • Lee, Sang-Kil;Lee, Dong-Hee
    • Journal of the Korea Convergence Society
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    • v.9 no.6
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    • pp.203-207
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    • 2018
  • This paper deals with the design and development of a lens system capable of imaging an infrared image of $3{\sim}5{\mu}m$ wavelength bands with a focal length of 24mm and good atmospheric transmission characteristics. The design used CodeV, a commercial design program, and the optimization is carried out with weighting to eliminate chromatic aberration, spherical aberration and distortion. The designed lens system consists of two lenses consisting of Si and Ge. Each lens has an aspherical surface on one side. And this optical system has the resolution of the characteristics that the MTF value is 0.40 at the line width of 29lp/mm and the MTF value is 0.25 at the line width of 20lp/mm. This optical system is considered to have the capability to be applied to the thermal imaging camera for MWIR using the $206{\times}156$ array infrared detector of $25{\mu}m$ pixels and the $320{\times}240$ array infrared detector of $17{\mu}m$ pixels.

Optical Design of a Modified Catadioptric Omnidirectional Optical System for a Capsule Endoscope to Image Simultaneously Front and Side Views on a RGB/NIR CMOS Sensor (RGB/NIR CMOS 센서에서 정면 영상과 측면 영상을 동시에 결상하는 캡슐 내시경용 개선된 반사굴절식 전방위 광학계의 광학 설계)

  • Hong, Young-Gee;Jo, Jae Heung
    • Korean Journal of Optics and Photonics
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    • v.32 no.6
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    • pp.286-295
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    • 2021
  • A modified catadioptric omnidirectional optical system (MCOOS) using an RGB/NIR CMOS sensor is optically designed for a capsule endoscope with the front field of view (FOV) in visible light (RGB) and side FOV in visible and near-infrared (NIR) light. The front image is captured by the front imaging lens system of the MCOOS, which consists of an additional three lenses arranged behind the secondary mirror of the catadioptric omnidirectional optical system (COOS) and the imaging lens system of the COOS. The side image is properly formed by the COOS. The Nyquist frequencies of the sensor in the RGB and NIR spectra are 90 lp/mm and 180 lp/mm, respectively. The overall length of 12 mm, F-number of 3.5, and two half-angles of front and side half FOV of 70° and 50°-120° of the MCOOS are determined by the design specifications. As a result, a spatial frequency of 154 lp/mm at a modulation transfer function (MTF) of 0.3, a depth of focus (DOF) of -0.051-+0.052 mm, and a cumulative probability of tolerance (CPT) of 99% are obtained from the COOS. Also, the spatial frequency at MTF of 170 lp/mm, DOF of -0.035-0.051 mm, and CPT of 99.9% are attained from the front-imaging lens system of the optimized MCOOS.

Phase-shifting diffraction grating interferometer for testing concave mirrors (오목 거울 측정용 위상천이 회절격자 간섭계)

  • 황태준;김승우
    • Korean Journal of Optics and Photonics
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    • v.14 no.4
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    • pp.392-398
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    • 2003
  • We present a novel concept of a phase-shifting diffraction-grating interferometer, which is intended for the optical testing of concave mirrors with high precision. The interferometer is configured with a single reflective diffraction grating, which performs multiple functions of beam splitting, beam recombination, and phase shifting. The reference and test wave fronts are generated by means of reflective diffraction at the focal plane of a microscope objective with large numerical aperture, which allows testing fast mirrors with low f-numbers. The fiber-optic confocal design is adopted for the microscope objective to focus a converging beam on the diffractive grating, which greatly reduces the alignment error between the focusing optics and the diffraction grating. Translating the grating provides phase shifting, which allows measurement of the figure errors of the test mirror to nanometer accuracy.

Tolerance analysis of Multi-Configurative Microscopic System for Inspecting the Wire-Bonding Status of Semiconductor Chips (반도체 와이어 본딩 검사용 다중배치 현미경 광학계에 대한 공차분석)

  • Ryu, Jae-Myung;Kim, Jae-Bum;Kang, Geon-Mo;Jung, Jin-Ho;Baek, Seung-Sun;Jo, Jae-Heung
    • Korean Journal of Optics and Photonics
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    • v.17 no.2
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    • pp.149-158
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    • 2006
  • We have analyzed various tolerances of the multi-configurative microscopic system for inspecting the wire-bonding of a reed frame by using the Gaussian bracket method and the equivalent lens method. The tolerances for the curvature and the thickness, which are axial symmetric tolerances, are given by varying the back focal length within a fecal depth under diffraction-limited conditions. Moreover, by using the trial and error method, the axial non-symmetric tolerances for decenter and tilt are established by assigning the 5% variation of MTF(modulation transfer function) at the spatial frequency of 50 lp/mm and at the field angle of 0.7 field. As the tolerances with the most probable distribution are distributed within the range of the decay rate of less than 5% independent of the probability distribution of tolerances, we can achieve completely the desired design performances of the multi-configurative microscopic system by using the various ranges of these tolerances.