• Title/Summary/Keyword: 렌즈 모듈

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Reliable methods at low temperatures for LED navigation light of ships (LED 선박용 항해등의 저온에서의 신뢰성 방안)

  • Yang, Byongmoon;Cha, Jaesang
    • Journal of Satellite, Information and Communications
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    • v.10 no.1
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    • pp.83-87
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    • 2015
  • LED navigation light installed on the ship performs a important role to ensure safety and prevent collisions with other ships. LED navigation light is mainly used in the night and within the limited visibility by smoke, rainfall. In particular, LED navigation light installed with a clear understanding. LED navigation light is consist of LED module, a control board, a converter, a Fresnel lens, such as enclosure. Russian Society of LED navigation light (RMRS) of the ship to be delivered by drying at Daewoo Shipbuilding & Marine Engineering requires guaranteed reliable products at below $-52^{\circ}C$. conventional LED navigation light has to ensure quality at $-25{\sim}40^{\circ}C$. So, LED navigation light should ensure a problems of random failure or long time operation. In this paper, we present the current status and future plans of reliability so far.

A Study on Ultra Precision Grinding of Silicon Carbide Molding Core for High Pixel Camera Phone Module (고화소 카메라폰 모듈을 위한 Glass 렌즈 성형용 Silicon Carbide 코어의 초정밀 가공에 관한 연구)

  • Kim, Hyun-Uk;Kim, Jeong-Ho;Ohmori, Hitoshi;Kwak, Tae-Soo;Jeong, Shang-Hwa
    • Journal of the Korean Society for Precision Engineering
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    • v.27 no.7
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    • pp.117-122
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    • 2010
  • Recently, aspheric glass lens molding core is fabricated with tungsten carbide(WC). If molding core is fabricated with silicon carbide(SiC), SiC coating process, which must be carried out before the Diamond-Like Carbon(DLC) coating can be eliminated and thus, manufacturing time and cost can be reduced. Diamond Like Carbon(DLC) is being researched in various fields because of its high hardness, high elasticity, high durability, and chemical stability and is used extensively in several industrial fields. Especially, the DLC coating of the molding core surface used in the fabrication of a glass lens is an important technical field, which affects the improvement of the demolding performance between the lens and molding core during the molding process and the molding core lifetime. Because SiC is a material of high hardness and high brittleness, it can crack or chip during grinding. It is, however, widely used in many fields because of its superior mechanical properties. In this paper, the grinding condition for silicon carbide(SiC) was developed under the grinding condition of tungsten carbide. A silicon carbide molding core was fabricated under this grinding condition. The measurement results of the SiC molding core were as follows: PV of 0.155 ${\mu}m$(apheric surface) and 0.094 ${\mu}m$(plane surface), Ra of 5.3 nm(aspheric surface) and 5.5 nm(plane surface).

Performance Analysis of CPV Modules for Optimizing Secondary Optical Elements (CPV모듈의 2차 광학계 특성에 따른 성능분석)

  • Park, Jeom-Ju;Jeong, Byeong-Ho;Park, Ju-Hoon;Lee, Kang-Yeon;Kim, Hyo-Jin
    • Journal of the Korean Solar Energy Society
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    • v.40 no.5
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    • pp.23-34
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    • 2020
  • Concentrator photovoltaic (CPV) system consists of high-quality complex optical elements, mechanical devices, and electronics components and can have the advantages of high integration and high-efficiency energy sources. III-V compound semiconductor cells have proven performance based on high reliability in the aerospace field, but have characteristics that require absolute support of the balance of systems (BOS) such as solar position trackers, receivers with heat sinks, and housing instruments. To determine the optimum parameters of secondary optical elements (SOEs) design for CPV systems, we designed three types of CPV modules, classified as non-SOEs type, reflective mirror type, and CPC lens type. We measured the I-V and P-V characteristics of the prototype CPV modules with the angle of inclination varying from 0° to 12° and with a 500-magnification Fresnel lens. The experimental results assumed misalignment of the solar position tracker or module design of pinpoint accuracy. As a result, at the 0° tilt angle, the CPC lens produced lower power due to the quartz transmittance ratio compared to that by other SOEs. However, for tilt angles greater than 3°, the CPC lens type module achieved high efficiency and stability. This study is expected to help design high-performance CPV systems.

A Study on the Effective Management of Image Stage Gauge System (영상수위계 시스템의 효율적 운영에 관한 연구)

  • Kwon, Sung-Ill;Kim, Won;Lee, Chan-Joo;Kim, Dong--Gu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.1916-1920
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    • 2010
  • 영상수위계는 카메라에 의해서 수위표를 촬영하여 촬영된 영상을 처리하여 수위값으로 변환하여 자동적으로 수위를 측정하는 장비이다. 이 수위계는 기존 수위측정 장비인 부자식, 압력식, 기포식, 초음파식, 레이다식과는 달리 수위표를 촬영한 영상으로부터 수위를 직접 눈으로 확인할 수 있는 장점이 있다. 이로 인해 영상자료로부터 측정된 수위를 검증할 수 있어 수위측정의 정확도를 향상시킬 수 있다. 그리고 수위표 영상과 더불어 관측지점 주변의 전체 영상을 동시에 촬영하여 실시간으로 전송하기 때문에 홍수시 하천 상황에 대한 모니터링 목적으로 사용될 수 있다. 영상수위계 시스템은 크게 메인제어기, 전원부, 서버부 및 카메라부로 구성되어 있다. 현재 운영되고 있는 시스템은 전원장치 리셋시 전 시스템을 리셋해야하고, 상전 단전시 전 시스템이 off된다. 그리고 별도의 통신모듈을 사용하여 장비간 통신이 이루어지고 있다. 또한 카메라부에는 렌즈와 팬/틸트를 제어하기 위한 별도의 장비가 포함되어 있고, 백색 LED 조명이 사용되어 야간에 수위인식주기마다 조명이 on/off 되고 있다. 위와 같은 전원장치의 운영으로 시스템을 안정적으로 운영할 수 없다. 그리고 수위 오인식을 최소화하기 위해서는 연속적인 수위 인식이 필요하지만, 백색 LED조명과 1초에 2프레임을 캡쳐하는 비디오 캡쳐방식에 의해 시스템을 상시로 운영하는 것이 곤란하다. 현재 운영 중인 영상수위계를 안정적으로 운영할 수 있도록 장비별로 제어가 가능하도록 전원 제어장치를 개발하였고, 상전 단전시 최소 30분 정도 전원을 유지할 수 있도록 무정전전원장치(UPS)를 설치하였으며, 측정자료의 저장장치를 하드디스크 타입에서 Flash SSD 메모리 타입으로 교체하였다. 또한 영상수위계 시스템을 상시 운영할 수 있도록 백색 LED조명을 적외선 LED조명으로 교체하였고, 1초에 1회 수위를 인식하도록 수위인식주기와 1초에 25프레임 캡쳐할 수 있도록 비디오 캡쳐방식을 개선하였다. 위와 같은 시스템의 개선으로 시스템을 안정적으로 운영할 수 있게 되어 시스템 고장에 의해 발생하는 수위 결측을 감소시킬 수 있고, 시스템의 상시 운영으로 수 위 오인식을 최소화시킬 수 있을 것으로 판단된다.

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Fabrication of 365 nm Wavelength High Transmittance Silicone Resin TIR Lens and High Directivity Light Source Module for Exposure System (365 nm 파장대역 고투과율 실리콘 수지 TIR 렌즈 및 고지향성 노광기 광원모듈 제작)

  • Sung, Jun Ho;Yu, Soon Jae;Anil, Kawan;Jung, Mee Suk
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.31 no.4
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    • pp.267-271
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    • 2018
  • A high directivity TIR (total internal reflection) lens in the UV-A region was designed using a silicone resin, and a UV light source module with a maximum irradiation density of $150mW/cm^2$ was fabricated. The beam angle of the TIR lens was designed to be $8.04^{\circ}$ and the maximum diameter of the TIR lens was Ø13.5. A silicone resin having a UV transmittance of 93% and a refractive index of 1.4 at a wavelength of 365 nm was used, and the lens was manufactured using an aluminum mold, from which silicone could be easily released. The module was fabricated in a metal printed circuit board of COB (chip on board) type using a $0.75{\times}0.75mm^2$ UV chip. A jig was used to adjust the focal length between lens and chip and to fix the position of the lens. The optical characteristics such as illumination distributions of the lens and module were designed using 'LightTools' optical simulation software. The heat dissipation system was designed to use a forced-air cooling method using a heat-sink and fan.

A Study on Molding Condition of Aspheric Glass Lenses for Mobile Phone Module Using Design of Experiments ; Pressing Condition (DOE를 적용한 카메라폰 모듈용 비구면 Glass렌즈의 성형조건 연구 ; 가압조건)

  • Cha, Du-Hwan;Lee, Jun-Key;Kim, Sang-Suk;Kim, Hye-Jeong;Kim, Jeong-Ho
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.06a
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    • pp.57-57
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    • 2007
  • Aspheric glass lenses have many optical advantages, for glass have superior optical performance and an aspheric form can reduce optical aberrations. Recently, the use of it is rapidly expanding as the mass production becomes possible by glass molding press and so this method is considered as the best method for fabricating an aspheric glass lens, but it is difficult to control many parameters for pressing and cooling process. Design of experiments (DOE) is a very useful tool to design and analyze complicated industrial design problems. This study investigated the pressing conditions to mold aspheric glass lenses for mega pixel phone camera module using DOE method. We have applied fractional factorial design and the response variable was set form accuracy (PV) of aspheric surface of molded lens. The results of analysis indicates that all factors expect for pressing force of each step are available for the form accuracy (PV). It was the optimum condition of the designed pressing conditions for lowering the form accuracy(PV) value of molded lens that all factors were at the low level. The form accuracy (PV) of mold and molded lens under the optimum condition are $0.85\;{\mu}m$ and $0.922\;{\mu}m$ respectively.

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Image Processing Algorithms for DI-method Multi Touch Screen Controllers (DI 방식의 대형 멀티터치스크린을 위한 영상처리 알고리즘 설계)

  • Kang, Min-Gu;Jeong, Yong-Jin
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.48 no.3
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    • pp.1-12
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    • 2011
  • Large-sized multi-touch screen is usually made using infrared rays. That is because it has technical constraints or cost problems to make the screen with the other ways using such as existing resistive overlays, capacitive overlay, or acoustic wave. Using infrared rays to make multi-touch screen is easy, but is likely to have technical limits to be implemented. To make up for these technical problems, two other methods were suggested through Surface project, which is a next generation user-interface concept of Microsoft. One is Frustrated Total Internal Reflection (FTIR) which uses infrared cameras, the other is Diffuse Illumination (DI). FTIR and DI are easy to be implemented in large screens and are not influenced by the number of touch points. Although FTIR method has an advantage in detecting touch-points, it also has lots of disadvantages such as screen size limit, quality of the materials, the module for infrared LED arrays, and high consuming power. On the other hand, DI method has difficulty in detecting touch-points because of it's structural problems but makes it possible to solve the problem of FTIR. In this thesis, we study the algorithms for effectively correcting the distort phenomenon of optical lens, and image processing algorithms in order to solve the touch detecting problem of the original DI method. Moreover, we suggest calibration algorithms for improving the accuracy of multi-touch, and a new tracking technique for accurate movement and gesture of the touch device. To verify our approaches, we implemented a table-based multi touch screen.

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℃.