• 제목/요약/키워드: Beam forming

검색결과 353건 처리시간 0.03초

Measurement of Quality Parameters of Honey by Reflectance Spectra

  • Park, Chang-Hyun;Yang, Won-Jun;Sohn, Jae-Hyung;Kim, Jong-Hoon
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.1530-1530
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    • 2001
  • The objectives of this study were to develop models to predict quality parameters of Korean bee-honeys by visible and NIR spectroscopic technique. Two kinds of bee-honey fronl acacia and polyflower sources were tested in this study. The honeys were harvested in the spring of 2000 and stored in the storage facility at 20$^{\circ}C$ during experiments. Total of 394 samples of honey were analyzed. Reflectance spectra, moisture contents, ash, invert sugar, sucrose, F/G (fructose/glucose) ratio, HMF (hydroxymethyl furfural), and C12/C13 ratio of honeys were measured. The average values for the tested honeys were 19.9% of moisture contents, 0.12% of ash, 68.4% of invert sugar, 5.7% of sucrose, 1.27 of F/G(fructose/glucose) ratio, 14.4 mg/kg of HMF, and -19.1 of C12/C13 ratio. A spectrophotometer, equipped with a single-beam scanning monochromator (NIR Systems, Model 6500, USA) and a horizontal setup module, was used to collect reflectance data from honey. The reflectance spectra were measured in wavelength ranges of 400∼2,498 nm. with 2 nm of interval. Thirty-two repetitive scans were averaged, transformed to log(1/Reflectance), and then were stored in a microcomputer file, forming one spectrum per measurement. A sample cell and reflectance plate were made to hold honey samples constantly. Spectra of honey samples were divided into a calibration set and a validation set. The calibration set was used during model development, and the validation set was used to predict quality parameters from unknown spectra. The PLS(Partial Least Square) models were developed to predict the quality parameters of honeys. The first and the second derivatives of raw spectra were also used to develop the models with proper smoothing gap. The MSC (multiplicative scatter correction) and the SNV & Dtr.(standard normal variate and detranding) preprocessing were applied to all spectra to minimize sample-to-sample light scatter differences. The PLS models showed good relationships between predicted and measured quality parameters of honeys in the wavelength range of 1100∼2200 nm. However, the PLS analysis was not good enough to predict HMF of honeys.

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이온 보조 반응법을 이용한 금속과 고분자의 접착력 향상 (Improvement of Adhesion Between metal and Polymer by Ion Assisted Reaction (IAR))

  • 최성창;김현주;고석근
    • 한국진공학회지
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    • 제7권3호
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    • pp.221-228
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    • 1998
  • 금속과 고분자 사이에 접착력을 향상시키기 위하여 이온 보조 반응법을 이용하여 고분자의 표면을 친수성으로 처리하였다. 이온 보조 반응법은 기존의 이온빔을 이용한 고분 자 개질 방법과는 달리 이온조사시 시료 표면에 반응성 가스를 흘려줌으로써 반응성 가스와 고분자 표면에 반응이 일어나게 하여 새로운 기능성 그룹을 형성하는 방법이다. 이온보조 반응법에서는 이온의 양은 $5\times 10^{14}$에서 $1\times 10^{17}\textrm{ions/cm}^2$까지 변화시켰고 반응성 가스의 양은 0에서 8sccm까지 변화시켰으며 이온의 에너지는 0.3keV에서 1.2keV까지 변화시켰다. 이온 보조 반응법을 이용하여 처리한 고분자의 경우 접촉각은 단순히 Ar+이온만을 이용하여 처 리한 경우 $40^{\circ}$근처의 값을 나타내었다. 그러나, 반응성 가스인 산소를 표면에 주입하여 주 었을 경우 접촉각은 20도 미만의 값을 나타내었다. 그리고 이때의 표면에너지는 ~ 70dyne/cm2까지 증가하였다. 그러나 테프론(polytetraflouroethylene: PTFE)의 경우 이온의 양이 증가하면 원래의 접촉각 보다도 큰 값을 나타내었다. 이렇게 처리된 고분자 위에 금속 을 증착 시켰을 때 금속과 고분자사이에 접착력을 조사하여 본 결과 처리하지 않은 시료의 경우 증착한 박막이 벗겨져 나가는데 반하여 이온 보조 반응법에 의하여 처리된 고분자 표 면에 증착된 금속막은 떨어져 나가지 않음을 관찰 할 수 있었다.

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KURT 지하수의 천연 유기물질과 6가 우라늄 화학종의 상호작용에 관한 연구 (Study on the Interaction of U(VI) Species With Natural Organic Matters in KURT Groundwater)

  • 정의창;백민훈;조혜륜;김희경;차완식
    • 방사성폐기물학회지
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    • 제15권2호
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    • pp.101-116
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    • 2017
  • KURT(KAERI Underground Research Tunnel) 지하수에 존재하는 천연 유기물질과 6가 우라늄(U(VI))화학종의 상호작용을 레이저 분광학 기술을 이용하여 조사하였다. 지하수 시료에 266 nm 파장의 레이저 빛을 입사시켜 자외선 및 파란색 파장 영역에서 방출되는 천연 유기물질의 발광 스펙트럼을 관측하였다. $0.034-0.788mg{\cdot}L^{-1}$ 농도 범위의 우라늄이 함유된 지하수에서는 녹색 파장 영역에서 방출되는 U(VI) 화학종의 발광 스펙트럼을 측정하였다. 지하수에 함유된 U(VI) 화학종의 발광 특성(피크 파장 및 발광 수명)이 실험실에서 제조한 표준용액에 함유된 $Ca_2UO_2(CO_3)_3(aq)$의 발광 특성과 매우 유사하다는 것을 확인하였다. 지하수에 존재하는 U(VI) 화학종의 발광 세기는 표준용액에 함유된 같은 농도의 $Ca_2UO_2(CO_3)_3(aq)$의 발광세기에 비해 약하다. 표준용액의 $Ca_2UO_2(CO_3)_3(aq)$를 천연 유기물질이 함유된 지하수에 섞었을 때에도 $Ca_2UO_2(CO_3)_3(aq)$의 발광 세기가 감소한다. 이러한 현상의 원인을 지하수의 천연 유기물질과 Ca-U(VI)-탄산염 화학종의 상호작용으로 인해 비발광성 U(VI) 착물이 형성되기 때문인 것으로 설명하였다.

Y2O3 세라믹스의 미세구조 및 플라즈마 저항성 (Microstructure and plasma resistance of Y2O3 ceramics)

  • 이현규;이석신;김비룡;박태언;윤영훈
    • 한국결정성장학회지
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    • 제24권6호
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    • pp.268-273
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    • 2014
  • $Y_2O_3$ 세라믹 소결체를 제작하기 위해, $Y_2O_3$ 분말을 분산한 상태에서 슬러리에 pH 조절제인 NaOH를 첨가하였으며 결합제로는 PVA, 가소제로는 PEG를 첨가하여 열분무 건조 공정을 거쳐 $Y_2O_3$ 과립형 분말을 제조하였다. ${\phi}14mm$ 크기의 $Y_2O_3$ 세라믹 성형체를 성형하고, $1650^{\circ}C$의 온도에서 소결하여 $Y_2O_3$ 세라믹 소결체를 제작하였다. $Y_2O_3$ 소결체의 미세구조, 밀도 및 내플라즈마 특성이 성형압력 및 소결시간에 따라 분석되었다. $Y_2O_3$ 소결체는 $CHF_3/O_2/Ar$ 플라즈마에 노출시켜, $Ar^+$ 이온빔에 의한 물리적반응 식각과 $CHF_3$로부터 분해된, $F^-$ 이온에 의한 화학적반응 식각에 의한 건식 식각 처리가 이루어졌다. 본 연구에서 $Y_2O_3$ 소결체 소결시간의 증가에 따라, 비교적 높은 밀도를 나타내었으며, 내플라즈마 특성이 향상되는 것으로 나타났다.

가변 커버리지를 갖는 위성 관제용 접이식 헬리콘 반사체 안테나 성능 연구 (Modified Fold Type Helicone Reflector for Efficient Satellite TT&C Having Variable Coverage Area)

  • 이상민;이우경
    • 한국전자파학회논문지
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    • 제20권9호
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    • pp.914-923
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    • 2009
  • 헬릭스 안테나는 관제, 관측, 탐사, 통신 위성 등에서 관제(TT&C), 데이터 통신, GPS 수신 시스템, 전술 시스템으로 활용되고 있다 위성의 Z축에서 최대 지향성과 방사 특성을 갖는 헬릭스는 광대역의 임피던스와 통신 커버리지 대역을 제공할 수 있다. 도파관 혼 구조는 흔히 레이다 분야에 이용되는데, 지반 탐사 레이다 및 전자파 장애 측정 등 초 광대역 펄스를 필요로 하는 곳에 사용된다. 또한 크기가 비교적 작고, 적은 방사 왜곡으로 인한 고효율과 낮은 반사 특성을 갖는 장점이 있다. 본 논문에서는 고용량의 데이터를 전송하여 넓은 주파수 대역폭을 사용하는 통신 및 원격 탐사 위성에 적합한 도파관 혼-헬릭스 결합 안테나를 설계한다. 설계된 변형 구조 안테나는 S 밴드에서 가변 빔 스캐닝 모드를 갖는 혼-헬릭스 결합 헬리콘 구조로 관제, 탐사, 고속 데이터 통신용 등의 다기능 안테나로 동작한다. 도파관 혼은 테이퍼된 헬릭스를 감싸는 접이식 반사체로 설계하여 구조물의 소형화를 유도한다. 현재 개발 중인 차세대 다목적 실용위성에서는 고성능의 탑재체를 활용하기 때문에 정밀하고 안정된 위성 자세 제어 능력을 요구하고, 위성 안테나의 지향성 요구 조건이 강화된다. 이를 위해 설계된 안테나의 위성 초기 배치에 따른 링크 분석을 통해 위성체의 자세 및 운용 모드에 따라 다른 결과를 갖는 빔 스캐닝을 산출하고 각 모드에서의 자료 전송률에 대해 연구한다.

Laser crystallization in active-matrix display backplane manufacturing

  • Turk, Brandon A.;Herbst, Ludolf;Simon, Frank;Fechner, Burkhard;Paetzel, Rainer
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.1261-1262
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    • 2008
  • Laser-based crystallization techniques are ideally-suited for forming high-quality crystalline Si films on active-matrix display backplanes, because the highly-localized energy deposition allows for transformation of the as-deposited a-Si without damaging high-temperature-intolerant glass and plastic substrates. However, certain significant and non-trivial attributes must be satisfied for a particular method and implementation to be considered manufacturing-worthy. The crystallization process step must yield a Si microstructure that permits fabrication of thin-film transistors with sufficient uniformity and performance for the intended application and, the realization and implementation of the method must meet specific requirements of viability, robustness and economy in order to be accepted in mass production environments. In recent years, Low Temperature Polycrystalline Silicon (LTPS) has demonstrated its advantages through successful implementation in the application spaces that include highly-integrated active-matrix liquid-crystal displays (AMLCDs), cost competitive AMLCDs, and most recently, active-matrix organic light-emitting diode displays (AMOLEDs). In the mobile display market segment, LTPS continues to gain market share, as consumers demand mobile devices with higher display performance, longer battery life and reduced form factor. LTPS-based mobile displays have clearly demonstrated significant advantages in this regard. While the benefits of LTPS for mobile phones are well recognized, other mobile electronic applications such as portable multimedia players, tablet computers, ultra-mobile personal computers and notebook computers also stand to benefit from the performance and potential cost advantages offered by LTPS. Recently, significant efforts have been made to enable robust and cost-effective LTPS backplane manufacturing for AMOLED displays. The majority of the technical focus has been placed on ensuring the formation of extremely uniform poly-Si films. Although current commercially available AMOLED displays are aimed primarily at mobile applications, it is expected that continued development of the technology will soon lead to larger display sizes. Since LTPS backplanes are essentially required for AMOLED displays, LTPS manufacturing technology must be ready to scale the high degree of uniformity beyond the small and medium displays sizes. It is imperative for the manufacturers of LTPS crystallization equipment to ensure that the widespread adoption of the technology is not hindered by limitations of performance, uniformity or display size. In our presentation, we plan to present the state of the art in light sources and beam delivery systems used in high-volume manufacturing laser crystallization equipment. We will show that excimer-laser-based crystallization technologies are currently meeting the stringent requirements of AMOLED display fabrication, and are well positioned to meet the future demands for manufacturing these displays as well.

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Surface Characteristics of Type II Anodized Ti-6Al-4V Alloy for Biomedical Applications

  • 이수원;정태곤;양재웅;정재영;박광민;정용훈
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2017년도 춘계학술대회 논문집
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    • pp.77-77
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    • 2017
  • Titanium and its alloys offer attractive properties in a variety of applications. These are widely used for the field of biomedical implants because of its good biocompatibility and high corrosion resistance. Titanium anodizing is often used in the metal finishing of products, especially those can be used in the medical devices with dense oxide surface. Based on SAE/AMS (Society of Automotive Engineers/Aerospace Material Specification) 2488D, it has the specification for industrial titanium anodizing that have three different types of titanium anodization as following: Type I is used as a coating for elevated temperature forming; Type II is used as an anti-galling coating without additional lubrication or as a pre-treatment for improving adherence of film lubricants; Type III is used as a treatment to produce a spectrum of surface colours on titanium. In this study, we have focused on Type II anodization for the medical (dental and orthopedic) application, the anodized surface was modified with gray color under alkaline electrolyte. The surface characteristics were analyzed with Focused Ion Beam (FIB), Scanning Electron Microscopy (SEM), surface roughness, Vickers hardness, three point bending test, biocompatibility, and corrosion (potentiodynamic) test. The Ti-6Al-4V alloy was used for specimen, the anodizing procedure was conducted in alkaline solution (NaOH based, pH>13). Applied voltage was range between 20 V to 40 V until the ampere to be zero. As results, the surface characteristics of anodic oxide layer were analyzed with SEM, the dissecting layer was fabricated with FIB method prior to analyze surface. The surface roughness was measured by arithmetic mean deviation of the roughness profile (Ra). The Vickers hardness was obtained with Vickers hardness tester, indentation was repeated for 5 times on each sample, and the three point bending property was verified by yield load values. In order to determine the corrosion resistance for the corrosion rate, the potentiodynamic test was performed for each specimen. The biological safety assessment was analyzed by cytotoxic and pyrogen test. Through FIB feature of anodic surfaces, the thickness of oxide layer was 1.1 um. The surface roughness, Vickers hardness, bending yield, and corrosion resistance of the anodized specimen were shown higher value than those of non-treated specimen. Also we could verify that there was no significant issues from cytotoxicity and pyrogen test.

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Increased Sensitivity of Carbon Nanotube Sensors by Forming Rigid CNT/metal Electrode

  • 박대현;전동렬
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.348-348
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    • 2011
  • Carbon nanotube (CNT) field effect transistors and sensors use CNT as a current channel, of which the resistance varies with the gate voltage or upon molecule adsorption. Since the performance of CNT devices depends very much on the CNT/metal contact resistance, the CNT/electrode contact must be stable and the contact resistance must be small. Depending on the geometry of CNT/electrode contact, it can be categorized into the end-contact, embedded-contact (top-contact), and side-contact (bottom-contact). Because of difficulties in the sample preparation, the end-contact CNT device is seldom practiced. The embedded-contact in which CNT is embedded inside the electrode is desirable due to its rigidness and the low contact resistance. Fabrication of this structure is complicated, however, because each CNT has to be located under a high-resolution microscope and then the electrode is patterned by electron beam lithography. The side-contact is done by depositing CNT electrophoretically or by precipitating on the patterned electrode. Although this contact is fragile and the contact resistance is relatively high, the side-contact by far has been widely practiced because of its simple fabrication process. Here we introduce a simple method to embed CNT inside the electrode while taking advantage of the bottom-contact process. The idea is to utilize a eutectic material as an electrode, which melts at low temperature so that CNT is not damaged while annealing to melt the electrode to embed CNT. The lowering of CNT/Au contact resistance upon annealing at mild temperature has been reported, but the electrode in these studies did not melt and CNT laid on the surface of electrode even after annealing. In our experiment, we used a eutectic Au/Al film that melts at 250$^{\circ}C$. After depositing CNT on the electrode made of an Au/Al thin film, we annealed the sample at 250$^{\circ}C$ in air to induce eutectic melting. As a result, Au-Al alloy grains formed, under which the CNT was embedded to produce a rigid and low resistance contact. The embedded CNT contact was as strong as to tolerate the ultrasonic agitation for 90 s and the current-voltage measurement indicated that the contact resistance was lowered by a factor of 4. By performing standard fabrication process on this CNT-deposited substrate to add another pair of electrodes bridged by CNT in perpendicular direction, we could fabricate a CNT cross junction. Finally, we could conclude that the eutectic alloy electrode is valid for CNT sensors by examine the detection of Au ion which is spontaneously reduced to CNT surface. The device sustatined strong washing process and maintained its detection ability.

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Enhancement of light extraction efficiency in vertical light-emitting diodes with MgO nano-pyramids structure

  • Son, Jun-Ho;Yu, Hak-Ki;Lee, Jong-Lam
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2010년도 춘계학술회의 초록집
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    • pp.16-16
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    • 2010
  • GaN-based light-emitting diodes (LEDs) are attracting great interest as candidates for next-generation solid-state lighting, because of their long lifetime, small size, high efficacy, and low energy consumption. However, for general illumination applications, the external quantum efficiency of LEDs, determined by the internal quantum efficiency (IQE) and the light extraction efficiency, must be further increased. The IQE is determined by crystal quality and epitaxial layer structure and high value of IQE more than 70% for blue LEDs have been already reported. However, there is much room for improvement of light extraction efficiency because most of the generated photons from active layer remain inside LEDs by total internal reflection at the interface of semiconductor with air due to the high refractive index difference between LEDs epilayer (for GaN, n=2.5) and air (n=1). The light confining in LEDs will be reabsorbed by the metal electrode or active layer, reducing the efficacy of LEDs. Here, we present the first demonstration of enhanced light extraction by forming a MgO nano-pyramids structure on the surface of vertical-LEDs. The MgO nano-pyramids structure was successfully fabricated at room temperature using conventional electron-beam evaporation without any additional process. The nano-sized pyramids of MgO are formed on the surface during growth due to anisotropic characteristics between (111) and (200) plane of MgO. The ZnO layer with quarter-wavelength in thickness is inserted between GaN and MgO layers to increase the critical angle for total internal reflection, because the refractive index of ZnO (n=1.94) could be matched between GaN (n=2.5) and MgO (n=1.73). The MgO nano-pyramids structure and ZnO refractive-index modulation layer enhanced the light extraction efficiency ofV-LEDs with by 49%, comparing with the V-LEDs with a flat n-GaN surface. The angular-dependent emission intensity shows the enhanced light extraction through the side walls of V-LEDs as well as through the top surface of the n-GaN, because of the increase in critical angle for total internal reflection as well as light scattering at the MgO nano-pyramids surface.

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플렉서블 기판의 레이저 투과 용접 및 기계적 특성 평가 (Laser Transmission Welding of Flexible Substrates and Evaluation of the Mechanical Properties)

  • 고명준;손민정;김민수;나지후;주병권;박영배;이태익
    • 마이크로전자및패키징학회지
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    • 제29권2호
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    • pp.113-119
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    • 2022
  • 플렉서블, 웨어러블 디바이스 등을 포함한 차세대 전자 기기의 기계적 신뢰성 향상을 위하여 다양한 유연 접합부에서 높은 수준의 기계적 신뢰성이 요구되고 있다. 기존 고분자 기판 접합을 위한 에폭시 등의 유기 접착소재는 접합부 두께 증가가 필연적이며, 반복 변형, 고온 경화에 의한 열기계적 파손 문제를 수반한다. 따라서 유연 접합을 위해서 접합부 두께를 최소화하고 열 손상을 방지하기 위한 저온 접합 공정 개발이 요구된다. 본 연구에서는 플렉서블 기판의 유연, 강건, 저 열 손상 접합이 가능한 플렉서블 레이저 투과 용접(flexible laser transmission welding, f-LTW)를 개발하였다. 유연 기판 위 탄소나노튜브(carbon nanotube, CNT)를 박막 코팅하여 접합부 두께를 줄였으며, CNT 분산 빔 레이저 가열을 통한 고분자 기판 표면의 국부적 용융 접합 공정이 개발되었다. 짧은 접합 공정 시간과 기판의 열 손상을 최소화하는 레이저 공정 조건을 구축하였으며 고분자 기판과 CNT 접합 형성 메커니즘을 분석하였다. 또한 접합부의 강건성 및 유연성 평가를 위해 인장강도 시험, 박리 시험과 반복 굽힘 시험을 진행하였다.