• 제목/요약/키워드: Telecentric system

검색결과 16건 처리시간 0.029초

Optical Design of an Image-space Telecentric Two-mirror System for Wide-field Line Imaging

  • Lee, Jong-Ung;Kim, Youngsoo;Kim, Seo Hyun;Kim, Yeonsoo;Kim, Hyunsook
    • Current Optics and Photonics
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    • 제1권4호
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    • pp.344-350
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    • 2017
  • We present a new design approach and an example design for an image-space telecentric two-mirror system that has a fast f-number and a wide-field line image. The initial design of the telecentric mirror system is a conventional axially symmetric system, consisting of a flat primary mirror with fourth-order aspheric deformation and an oblate ellipsoidal secondary mirror to correct spherical aberration, coma, and field curvature. Even though in the optimized design the primary mirror is tilted, to avoid ray obstruction by the secondary mirror, the image-space telecentric two-mirror system shows quite good imaging performance, for a line imager.

Development of Image-space Telecentric Lens for Intra-Oral 3D Scanner

  • Kim, Tae Young;Shin, Min-Ho;Chang, Ryungkee;Kim, Young-Joo
    • Journal of the Optical Society of Korea
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    • 제19권3호
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    • pp.303-310
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    • 2015
  • An image-space telecentric lens for an intra-oral 3D scanner was designed and fabricated for dental application. Since a telecentric function can provide the same results regardless of image plane position, it helps to realize a more accurate image for an intra-oral scanner. The performance of the designed lens meets the required properties for HD resolution. In particular, lateral color is corrected within 1 pixel. This system achieves depth of focus of more than 3 mm. For user convenience, the developed system consists of a prism part and an imaging part. Both parts are optimized to reduce the front size and weight of the system. In order to make the parallax sights, parallax angle was determined to be 8 degrees between two optical systems.

머신비전을 위한 스마트폰용 텔레센트릭 렌즈의 설계 (Design of a Telecentric Lens with a Smartphone Camera to Utilize Machine Vision)

  • 최연찬;임천석
    • 한국광학회지
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    • 제29권4호
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    • pp.149-158
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    • 2018
  • 본 연구에서는 다수의 요소렌즈들로 이루어진 렌즈시스템을 단순화 및 구조화할 수 있는, 저자들만의 독창적인 설계기법인, 일반화된 구조설계 방정식을 제안하고 이를 통해 스마트폰 카메라 렌즈와 연동될 수 있는 텔레센트릭 렌즈의 존재 가능성 및 설계방법을 탐구하였다. 결과적으로, 텔레센트릭 렌즈 시스템을 모듈화하고 조립설계 할 수 있는 $f{\theta}$ 공식을 도출 및 검증할 수 있었고, 이 공식으로부터 공장자동화와 같은 머신비전에 효과적으로 활용될 수 있는 스마트폰용 텔레센트릭 렌즈를 설계할 수 있었다.

Telecentric 렌즈계의 이해와 광학적 성능 조사 (A conceptual introduction and the research of the optical properties of the Telecentric lens system)

  • 김봉환;임현선;지택상;윤성로
    • 한국안광학회지
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    • 제7권2호
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    • pp.197-202
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    • 2002
  • 본 논문에서는 telecentric 렌즈에 대하여 간략하게 그 성질을 알아보고 기존에 설계된 profile projection lens를 선택하여 광학적 성능을 조사하여 봄으로서 telecentric에 관한 이해를 도모하고자 하였다. 분석한 광학계는 F-no가 2.8이고, 첫 번째 렌즈를-렌즈로 사용하여 물측 초점의 위치를 광학계 안쪽에 위치시킴으로서 aperture stop을 광학계 내부에 설치하게 하여 광학계를 보다 compact하게 하려 하였음을 알 수가 있었다. 시야는 $21^{\circ}$ 정도를 유지하며, entrance pupil이 물측 초점의 위치(FFL)에 놓여짐으로써 exit pupil은 -49404.1mm로 물측 공간쪽으로 무한대로 놓여지게 됨을 확인할 수가 있다. 이로서 본 광학계는 '상측이 텔레센트릭계(image space telecentricity)'의 한 형태라고 할 수 있다.

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소형 텔레센트릭 카메라 광학계의 재귀반사 측정 방법 연구 및 측정 장치 개발 (Development of a Measuring Instrument for the Coefficient of Luminous Intensity of Retro-Reflection of Miniature Telecentric Cameras)

  • 여태운;카라식 발레리;김영일
    • 한국광학회지
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    • 제25권6호
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    • pp.334-339
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    • 2014
  • 이 논문에서는 소형센트릭 카메라의 광학적 특성이 분석적, 실험적으로 연구되었다. 광학적 특성으로 소형센트릭광학계의 재귀반사 광도계수가 조사되었다. 우선, 시뮬레이션을 통해서, 이론적 재귀반사광도계수 값을 측정하였다. 두번째로, 소형센트릭 카메라 장치를 디자인 하였으며, 이후 실험을 통해 실제 장치의 재귀반사광고계수를 측정하였다. 시뮬레이션과 시험을 통해, 재귀반사광도계수의 측정치 및 실험치 모두가 (P384200CPH: $0,0042m^2/sr{\sim}0,018m^2/sr$, P285200CPH: $0,0045m^2/sr{\sim}0,0297m^2/sr$, P321450S: $0,0021m^2/sr{\sim}0,00963m^2/sr$) 1.4 ~ 4.9의 분각에서 $0,002{\sim}0,03m^2/sr$의 범위에 있음을 발견하였다. 이 결과는, 실제 장비를 구상하는데 사용된 메커니즘과 실험방법의 중요성(유효성)을 증명한다. 이에따라, 이 유효한 결과를 통해서, 이 연구는 광학공학의 이론과 실제의 발전에 기여하였다.

Development of 3D scanner using structured light module based on variable focus lens

  • Kim, Kyu-Ha;Lee, Sang-Hyun
    • International Journal of Advanced Culture Technology
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    • 제8권3호
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    • pp.260-268
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    • 2020
  • Currently, it is usually a 3D scanner processing method as a laser method. However, the laser method has a disadvantage of slow scanning speed and poor precision. Although optical scanners are used as a method to compensate for these shortcomings, optical scanners are closely related to the distance and precision of the object, and have the disadvantage of being expensive. In this paper, 3D scanner using variable focus lens-based structured light module with improved measurement precision was designed to be high performance, low price, and usable in industrial fields. To this end, designed a telecentric optical system based on a variable focus lens and connected to the telecentric mechanism of the step motor and lens to adjust the focus of the variable lens. Designed a connection structure with optimized scalability of hardware circuits that configures a stepper motor to form a system with a built-in processor. In addition, by applying an algorithm that can simultaneously acquire high-resolution texture image and depth information and apply image synthesis technology and GPU-based high-speed structured light processing technology, it is also stable for changes to external light. We will designed and implemented for further improving high measurement precision.

Novel Telecentric Collimator Design for Mobile Optical Inspection Instruments

  • Hojong Choi;Seongil Cho;Jaemyung Ryu
    • Current Optics and Photonics
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    • 제7권3호
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    • pp.263-272
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    • 2023
  • A collimator refers to an optical system that images a collimated beam at a desired point. A resolution target located at a near distance can be converted into a virtual image located at a long distance. To test the resolution for mobile cameras, a large target is placed at a long distance. If a collimator system is used, the target can be placed at a near distance. The space required for a resolution inspection can thus be drastically reduced. However, to inspect a mobile camera, the exit pupil of the collimator system and the entrance pupil of the mobile camera must match, and the stop of the collimator system must be located on the last surface. Because a collimator system cannot be symmetrical with respect to the stop, the distortion becomes extremely large, which can be corrected by combining the collimator symmetrically with respect to the object plane. A novel system was designed to inspect an optical lens on a mobile phone. After arranging the refractive power, lenses were added using the equivalent lens design method. The distortion was reduced to less than 1%. This optical system satisfies a half-field angle of 45° and an optical performance sufficient for inspection.

서브미크론 리소그라피를 이한 4 반사광학계의 설계 (Four-mirror optical system for UV submicron lithography)

  • 박성찬
    • 한국광학회:학술대회논문집
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    • 한국광학회 1991년도 제6회 파동 및 레이저 학술발표회 Prodeedings of 6th Conference on Waves and Lasers
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    • pp.81-87
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    • 1991
  • A design of a four-mirror optical system for submicron lithography using KrF excimer laser beam(λ=248nm) is presented. By using the third order aberration theory, analytic solutions for a telecentric, flat-field, and anastigmatic four-spherical-mirror system (reduction magnification 5$\times$) are found. Aspherization is carried out to the spherical mirror surfaces in order to reduce the residual higher order aberrations and vignetting effect. Finally we obtain a reflection system useful in submicron lithographic application.

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Design of a Tele-centric Wide Field Lens with High Relative Illumination and Low Distortion Using Third-order Aberration Analysis

  • Kim, Kae-Hong;Kim, Yeong-Sik;Park, Sung-Chan
    • Journal of the Optical Society of Korea
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    • 제19권6호
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    • pp.679-686
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    • 2015
  • This paper presents a design method for improving the low relative illumination and large distortion due to widening the field of a system. A tele-centric optical system in image space was suggested to increase the relative illumination. Through the analyses of the third-order aberrations affected by introducing aspherical surfaces, we have proposed a method to determine analytically what surface should be aspheric to correct each aberration effectively. By utilizing this method to design a wide field lens, a tele-centric wide field lens with f-number of F/2.0 was obtained. Even though the field angle is 120 degrees, it has a very low distortion less than -2% and high relative illumination more than 73.7%. In conclusion, this analytic method for selecting aspherical surfaces is expected to serve as a useful way to find design solutions.