• 제목/요약/키워드: Lab-on-a-Chip

검색결과 198건 처리시간 0.029초

The realization of 3D Display by using 2D sensor

  • Lee, Kyu-Tae;Um, Kee-Tae;Kim, Sang-Jo;Chae, Kyung-Pil
    • 한국정보디스플레이학회:학술대회논문집
    • /
    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
    • /
    • pp.765-768
    • /
    • 2008
  • To make 3D camera system, we check the possibility of advanced range camera module based on measuring the time delay of modulated infrared light, using a single detector chip fabricated on standard CMOS process. To depth information, electronic shutter and interlaced scanning method of 2D sensor is needed. Especially, we design "lens system, illumination unit" and review simulation result.

  • PDF

고출력 광섬유 레이저를 위한 광섬유 칩 기반 All-fiber 7x1 펌프 광 결합기 제작 (Fabrication of All-fiber 7x1 Pump Combiner Based on a Fiber Chip for High Power Fiber Lasers)

  • 최인석;전민용;서홍석
    • 한국광학회지
    • /
    • 제28권4호
    • /
    • pp.135-140
    • /
    • 2017
  • 본 논문에서는 고출력 광섬유 레이저를 위한 광섬유 칩 기반 all-fiber $7{\times}1$ 펌프 광 결합기의 제작에 대하여 보고한다. 광섬유 칩은 코어, 클래딩 직경이 각각 20, $400{\mu}m$인 광섬유를 길이 방향으로 식각하여 제작하였다. 7개의 입력 광섬유 부분은 105, $125{\mu}m$의 코어, 클래딩 직경을 가진 7개의 입력 광섬유를 원통형 다발로 제작하여 광섬유 칩의 $375{\mu}m$부분에 융착하였고, 1개의 출력 광섬유는 코어, 클래딩 직경이 각각 25, $250{\mu}m$ 광섬유를 광섬유 칩의 $250{\mu}m$부분에 융착하여 최종적으로 $7{\times}1$ 펌프광 결합기를 제작하였다. 제작된 광섬유 칩 기반 $7{\times}1$ 펌프 광 결합기의 포트별 평균 광 전달 효율은 약 90.2%로 나타났다.

Feasibility of On-chip Detection of Endotoxin by LAL Test

  • Lee, Eun-Kyu;Suh, Chang-Woo;Hwang, Sang-Youn;Park, Hyo-Jin;Seong, Gi-Hoon;Ahn, Yoo-Min;Kim, Yang-Sun
    • Biotechnology and Bioprocess Engineering:BBE
    • /
    • 제9권2호
    • /
    • pp.132-136
    • /
    • 2004
  • The LAL (Limulus amebocyte lysate) test for the detection and quantification of endotoxin is based on the gelation reaction between endotoxin and LAL from a blood extract of Limulus polyphemus. The test is labor intensive, requiring dedicated personnel, a relatively long reaction time (approximately 1 h), relatively large volumes of samples and reagents and the detection of the end-point is rather subjective. To solve these problems, a miniaturized LOC (lab-on-a-chip) prototype, 62mm (L) ${\times}$ 18 mm (W), was fabricated using PDMS (polydimethylsiloxane) bonded to glass. Using this prototype, in which 2mm (W) ${\times}$ 44.3mm (L) ${\times}$ 100 $\mu\textrm{m}$ (D) microfluidic channel was constructed, turbidometric and chromogenic assay detection methods were compared, and the chromogenic method was found the most suitable for a small volume assay. In this assay, the kinetic-point method was more accurate than the end-point method. The PDMS chip thickness was found to be minimized to around 2 mm to allow sufficient light transmittance, which necessitated the use of a glass slide bonding for chip rigidity. Due to this miniaturization, the test time was reduced from 1 h to less than 10 min, and the sample volume could be reduced from 100 to ca. 4.4 ${\mu}$L. In summation, this study suggested that the LOC using the LAL test principle could be an alternative as a semi-automated and reliable method for the detection of endotoxin.

Implementation and Experiment of Neural Network Controllers for Intelligent Control System Education

  • Lee, Geun-Hyeong;Noh, Jin-Seok;Jung, Seul
    • International Journal of Fuzzy Logic and Intelligent Systems
    • /
    • 제7권4호
    • /
    • pp.267-273
    • /
    • 2007
  • This paper presents the implementation of an educational kit for intelligent system control education. Neural network control algorithms are presented and control hardware is embedded to control the inverted pendulum system. The RBF network and the MLP network are implemented and embedded on the DSP 2812 chip and other necessary functions are embedded on an FPGA chip. Experimental studies are conducted to compare performances of two neural control methods. The intelligent control educational kit(ICEK) is implemented with the inverted pendulum system whose movements of the cart is limited by space. Experimental results show that the neural controllers can manage to control both the angle and the position of the inverted pendulum systems within a limited distance. Performances of the RCT and the FEL control method are compared as well.

비젼 피드백 제어를 이용한 광통신 Laser Diode Test Device 개발 (Development of Laser Diode Test Device using Feedback Control with Machine Vision)

  • 유철우;송문상;김재희;박상민;유범상
    • 한국정밀공학회:학술대회논문집
    • /
    • 한국정밀공학회 2003년도 춘계학술대회 논문집
    • /
    • pp.1663-1667
    • /
    • 2003
  • This thesis is on tile development of LD(Laser Diode) chip tester and the control system based on graphical programming language(LabVIEW) to control the equipment. The LD chip tester is used to test the optic power and the optic spectrum of the LD Chip. The emitter size of LD chip and the diameter of the receiver(optic fiber) are very small. Therefore, in order to test each chip precisely, this tester needs high accuracy. However each motion part of the tester could not accomplish hish accuracy due to the limit of the mechanical performance. Hence. an image processing with machine vision was carried out in order to compensate for the error. and also a load test was carried out so as to reduce tile impact of load on chip while the probing motion device is working. The obtained results were within ${\pm}$5$\mu\textrm{m}$ error.

  • PDF

Bio-MEMS분야의 최근 연구동향 (Recent research trends on Bio-MEMS)

  • 박세광;양주란
    • 센서학회지
    • /
    • 제19권4호
    • /
    • pp.259-270
    • /
    • 2010
  • MEMS(micro electro mechanical systems) is a technology for the manufacture hyperfine structure, as a micro-sensor and a driving device, by a variety of materials such as silicon and polymer. Many study for utilizing the MEMS applications have been performed in variety of fields, such as light devices, high frequency equipments, bio-technology, energy applications and other applications. Especially, the field of Bio-MEMS related with bio-technology is very attractive, because it have the potential technology for the miniaturization of the medical diagnosis system. Bio-MEMS, the compound word formed from the words 'Bio-technology' and 'MEMS', is hyperfine devices to analyze biological signals in vitro or in vivo. It is extending the range of its application area, by combination with nano-technology(NT), Information Technology(IT). The LOC(lab-on-a-chip) in Bio-MEMS, the comprehensive measurement system combined with Micro fluidic systems, bio-sensors and bio-materials, is the representative technology for the miniaturization of the medical diagnosis system. Therefore, many researchers around the world are performing research on this area. In this paper, the application, development and market trends of Bio-MEMS are investigated.