• 제목/요약/키워드: Optical pulse source

검색결과 65건 처리시간 0.023초

동물 세포 증식을 위한 저출력 광 소스의 특성 (Characteristics of Low-level Light Source for Animal Cell Proliferation)

  • 천민우;김성환;송창훈;문성표;김태곤;박용필;김대영;김영수
    • 한국전기전자재료학회논문지
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    • 제20권1호
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    • pp.92-97
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    • 2007
  • This paper performed the basic study for developing the Photodynamic Therapy Equipment for medical treatment. We developed the equipment palpating cell proliferation using a high brightness LED. This equipment was fabricated using a micro-controller and a high brightness LED, and designed to enable us to control light irradiation time, intensity, frequency and so on. Especially, to control the light irradiation frequency, FPGA was used, and to control the change of output value, TLC5941 was used. Control stage is divided into 30 levels by program. Consequently, the current value could be controlled by the change of level in Continue Wave(CW) and Pulse Width Modulation(PWM), and the output of a high brightness LED could be controlled stage by stage. And then, each experiment was performed to irradiation group and non-irradiation group for both Rat bone marrow and Rat tissue cells. MTT assay method was chosen to verify the cell increase of two groups and the effect of irradiation on cell proliferation was examined by measuring 590 nm transmittance of ELISA reader. As a result, the cell increase of Rat bone marrow and tissue cells was verified in irradiation group as compared to non-irradiation group. The fact that specific wavelength irradiation has an effect on cell vitality and proliferation is known through this study.

Performance Analysis of Spiral Axicon Wavefront Coding Imaging System for Laser Protection

  • Haoqi Luo;Yangliang Li;Junyu Zhang;Hao Zhang;Yunlong Wu;Qing Ye
    • Current Optics and Photonics
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    • 제8권4호
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    • pp.355-365
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    • 2024
  • Wavefront coding (WFC) imaging systems can redistribute the energy of an interference laser spot on an image plane sensor by wavefront phase modulation and reduce the peak intensity, realizing laser protection while maintaining imaging functionality by leveraging algorithmic post-processing. In this paper, a spiral axicon WFC imaging system is proposed, and the performance for laser protection is investigated by constructing a laser transmission model. An Airy disk on an image plane sensor is refactored into a symmetrical hollow ring by a spiral axicon phase mask, and the maximum intensity can be reduced to lower than 1% and single-pixel power to 1.2%. The spiral axicon phase mask exhibits strong robustness to the position of the interference laser source and can effectively reduce the risk of sensor damage for an almost arbitrary lase propagation distance. Moreover, we revealed that there is a sensor hazard distance for both conventional and WFC imaging systems where the maximum single-pixel power reaches a peak value under irradiation of a power-fixed laser source. Our findings can offer guidance for the anti-laser reinforcement design of photoelectric imaging systems, thereby enhancing the adaptability of imaging systems in a complex laser environment. The laser blinding-resistant imaging system has potential applications in security monitoring, autonomous driving, and intense-laser-pulse experiments.

Characteristics of photo-thermal reduced Cu film using photographic flash light

  • Kim, Minha;Kim, Donguk;Hwang, Soohyun;Lee, Jaehyeong
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.293.1-293.1
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    • 2016
  • Various materials including conductive, dielectric, and semi-conductive materials, constitute suitable candidates for printed electronics. Metal nanoparticles (e.g. Ag, Cu, Ni, Au) are typically used in conductive ink. However, easily oxidized metals, such as Cu, must be processed at low temperatures and as such, photonic sintering has gained significant attention as a new low-temperature processing method. This method is based on the principle of selective heating of a strongly absorbent film, without light-source-induced damage to the transparent substrate. However, Cu nanoparticles used in inks are susceptible to the growth of a native copper-oxide layer on their surface. Copper-oxide-nanoparticle ink subjected to a reduction mechanism has therefore been introduced in an attempt to achieve long-term stability and reliability. In this work, a flash-light sintering process was used for the reduction of an inkjet-printed Cu(II)O thin film to a Cu film. Using a photographic lighting instrument, the intensity of the light (or intense pulse light) was controlled by the charged power (Ws). The resulting changes in the structure, as well as the optical and electrical properties of the light-irradiated Cu(II)O films, were investigated. A Cu thin film was obtained from Cu(II)O via photo-thermal reduction at 2500 Ws. More importantly, at one shot of 3000 Ws, a low sheet resistance value ($0.2527{\Omega}/sq.$) and a high resistivity (${\sim}5.05-6.32{\times}10^{-8}{\Omega}m$), which was ~3.0-3.8 times that of bulk Cu was achieved for the ~200-250-nm-thick film.

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XeCl 레이저를 이용한 단일 단펄스 분포궤한 색소레이저의 3단 증폭기 특성 (Three-staged amplifier properties of single-short pulsed distributed feedback dye laser using a XeCl laser)

  • 김성훈;이영우;김용평
    • 한국광학회지
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    • 제10권5호
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    • pp.424-429
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    • 1999
  • 본 연구는 XeCl 레이저를 펌핑원으로 사용하여 파장 616nm, 펄스폭 106 ps의 분포궤환 색소레이저(DFDL)의 발진과 증폭특성을 측정하였다. 소광장치를 구성하여 얻은 DFDL 단일펄스의 효과적인 증폭을 위해 3단 증폭기를 사용하였다. 증폭기I,II는 전치증폭단으로서 이득길이 5 nm, 10 nm의 색소셀에 농도6$\times$10-4 [mol/ι](용매: Methanol)의 Rhodamine 610을 이득매질로 사용하였다. 증폭기 I은 2%의 ASE 발생과 1 mJ 이상의 펌핑 에너지에서 10배의 포화증폭율을 가지며, 증폭기 II는 2.5 mJ 이상의 펌핑 에너지에서 single-pass 증폭을 통하여 28배의 포화증폭율과 함께 15%의 ASE 발생이 측정되었으며, 최적 증폭을 위해 회절격자를 이용한 ASE 제거와 double-pass 증폭을 수행하여 45배의 에너지 증폭율을 얻었다. 최종증폭단인 증폭기III은 상.하.좌.우의 위치에서 여기되는 Bethune 셀에 농도 3$\times$10-4 [mol/ι](용매:Ethanol)의 Rhodamine 610을 이득매질로 사용하였으며, single-pass 증폭, double-pass 증폭에서 각각 168.2 $\mu$J과 471$\mu$J의 출력에너지를 얻었다.

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무인차량용 단거리 라이다 시스템을 위한 멀티채널 트랜스임피던스 증폭기 어레이 (Multi-channel Transimpedance Amplifier Arrays in Short-Range LADAR Systems for Unmanned Vehicles)

  • 장영민;김성훈;조상복;박성민
    • 전자공학회논문지
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    • 제50권12호
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    • pp.40-48
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    • 2013
  • 본 논문에서는 0.18um CMOS(1P6M) 공정을 이용하여 무인차량용 단거리 라이다 시스템을 위한 멀티채널 트랜스임피던스 증폭기(TIA) 어레이 회로를 구현하였다. 트랜스임피던스 증폭기 어레이 구조는 전압모드 $4{\times}4$ 채널 Inverter TIA 어레이와 전류모드 $4{\times}4$ 채널 Common-Gate(CG) TIA 어레이 두 가지를 설계했으며, 전체적으로 $4{\times}8$의 32-채널을 갖도록 설계하였다. 먼저, Inverter TIA는 피드백 저항을 가진 Inverter 입력구조와 CML 출력버퍼단으로 구성되어 있으며, 저잡음 및 저전력 특성뿐 아니라, virtual ground를 갖도록 설계함으로써 DC 전류조절이 가능하여 이득과 출력 임피던스 컨트롤이 가능하도록 하였다. 또한, CG-TIA는 on-chip bandgap reference로부터 bias 전압을 이용하고, 소스팔로워 출력버퍼를 사용하여 고주파수 이득을 높였으며, 기본적인 구조 상 CG-TIA는 채널당 칩 면적이 Inverter TIA에 비해 1.26배 작게 설계되었다. 포스트 레이아웃 시뮬레이션 결과, 제안한 Inverter TIA 어레이는 각 채널당 57.5-dB${\Omega}$ 트랜스임피던스 이득, 340-MHz 대역폭, 3.7-pA/sqrt(Hz) 평균 잡음전류 스펙트럼 밀도, 및 2.84-mW (16채널 45.4-mW) 전력소모를 가졌다. CG-TIA 어레이는 채널당 54.5-dB${\Omega}$ 트랜스임피던스 이득, 360-MHz 대역폭, 9.17-pA/sqrt(Hz) 평균 잡음전류 스펙트럼 밀도, 4.24-mW (16채널 67.8-mW) 전력소모를 가졌다. 단, 펄스 시뮬레이션 결과, CG-TIA 어레이가 200-500-Mb/s 동작속도에서 훨씬 깨끗하게 구분 가능한 출력펄스를 보였다.