• 제목/요약/키워드: Light control device

검색결과 327건 처리시간 0.031초

강자성-강유전성 복합체를 활용한 자기-기계-마찰전기 변환 발전소자 (Magneto-Mechano-Triboelectric Generator Enabled by Ferromagnetic-Ferroelectric Composite)

  • 임예슬;황건태
    • 한국전기전자재료학회논문지
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    • 제37권1호
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    • pp.112-117
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    • 2024
  • The Internet of Things (IoT) device is a key component for Industry 4.0, which is the network in homes, factories, buildings, and infrastructures to monitor and control the systems. To demonstrate the IoT network, batteries are widely utilized as power sources, and the batteries inevitably require repeated replacement due to their limited capacity. Magneto-mechano-electric (MME) generators are one of the candidate to develop self-powered IoT systems since MME generators can harvest electricity from stray alternating current (AC) magnetic fields arising from electric power cables. Herein, we report a magneto-mechano-triboelectric generator enabled by a ferromagnetic-ferroelectric composite. In the triboelectric nylon matrix, a ferromagnetic carbonyl iron powder (CIP) was introduced to induce magnetic force near the AC magnetic field for MME harvesting. Additionally, a ferroelectric ceramic powder was also added to the MME composite material to enhance the charge-trapping capability during triboelectric harvesting. The final ferromagnetic-ferroelectric composite-based MME triboelectric harvester can generate an open-circuit voltage and a short-circuit current of 110 V and 8 μA, respectively, which were enough to turn on a light emitting diode (LED) and charge a capacitor. These results verify the feasibility of the MME triboelectric generator for not only harvesting electricity from an AC magnetic field but also for various self-powered IoT applications.

초고속 원심방사에 의한 아세트산프로피온산 셀룰로오스/폴리부틸렌 숙시네이트 다공성 마이크론 섬유 제조 (Fabrication of Porous Cellulose Acetate Propionate/Polybutylene Succinate Microfibers by High Speed Centrifugal Spinning)

  • 김태영;김미경;김진수;이정언;정재훈;김영권;김태현;김기영;염정현
    • 한국염색가공학회지
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    • 제35권4호
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    • pp.239-245
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    • 2023
  • Cellulose is an abundant biodegradable material in nature with excellent properties, but due to its poor processability, it has been widely studied for processing through modification. Cellulose acetate propionate (CAP) is a cellulose derivative in which the hydroxyl group of cellulose is replaced by acetyl and propionyl groups. CAP has several advantages, such as excellent solubility, structural stability, light and weather resistance, and good transparency. Porous nanofibers with excellent specific surface area, which can be applied in various fields, can be easily formed by the phase separation method using highly volatile solvents. High speed centrifugal spinning is a nano/micro fiber preparation method with advantages such as fast spinning and easy alignment control. In this study, a CAP/polybutylene succinate (PBS) spinning solution with chloroform as solvent was prepared to prepare porous microfibers and the fiber morphology was examined as a function of the disk rotation speed in an high speed centrifugal spinning device.

N- and P-doping of Transition Metal Dichalcogenide (TMD) using Artificially Designed DNA with Lanthanide and Metal Ions

  • Kang, Dong-Ho;Park, Jin-Hong
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.292-292
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    • 2016
  • Transition metal dichalcogenides (TMDs) with a two-dimensional layered structure have been considered highly promising materials for next-generation flexible, wearable, stretchable and transparent devices due to their unique physical, electrical and optical properties. Recent studies on TMD devices have focused on developing a suitable doping technique because precise control of the threshold voltage ($V_{TH}$) and the number of tightly-bound trions are required to achieve high performance electronic and optoelectronic devices, respectively. In particular, it is critical to develop an ultra-low level doping technique for the proper design and optimization of TMD-based devices because high level doping (about $10^{12}cm^{-2}$) causes TMD to act as a near-metallic layer. However, it is difficult to apply an ion implantation technique to TMD materials due to crystal damage that occurs during the implantation process. Although safe doping techniques have recently been developed, most of the previous TMD doping techniques presented very high doping levels of ${\sim}10^{12}cm^{-2}$. Recently, low-level n- and p-doping of TMD materials was achieved using cesium carbonate ($Cs_2CO_3$), octadecyltrichlorosilane (OTS), and M-DNA, but further studies are needed to reduce the doping level down to an intrinsic level. Here, we propose a novel DNA-based doping method on $MoS_2$ and $WSe_2$ films, which enables ultra-low n- and p-doping control and allows for proper adjustments in device performance. This is achieved by selecting and/or combining different types of divalent metal and trivalent lanthanide (Ln) ions on DNA nanostructures. The available n-doping range (${\Delta}n$) on the $MoS_2$ by Ln-DNA (DNA functionalized by trivalent Ln ions) is between $6{\times}10^9cm^{-2}$ and $2.6{\times}10^{10}cm^{-2}$, which is even lower than that provided by pristine DNA (${\sim}6.4{\times}10^{10}cm^{-2}$). The p-doping change (${\Delta}p$) on $WSe_2$ by Ln-DNA is adjusted between $-1.0{\times}10^{10}cm^{-2}$ and $-2.4{\times}10^{10}cm^{-2}$. In the case of Co-DNA (DNA functionalized by both divalent metal and trivalent Ln ions) doping where $Eu^{3+}$ or $Gd^{3+}$ ions were incorporated, a light p-doping phenomenon is observed on $MoS_2$ and $WSe_2$ (respectively, negative ${\Delta}n$ below $-9{\times}10^9cm^{-2}$ and positive ${\Delta}p$ above $1.4{\times}10^{10}cm^{-2}$) because the added $Cu^{2+}$ ions probably reduce the strength of negative charges in Ln-DNA. However, a light n-doping phenomenon (positive ${\Delta}n$ above $10^{10}cm^{-2}$ and negative ${\Delta}p$ below $-1.1{\times}10^{10}cm^{-2}$) occurs in the TMD devices doped by Co-DNA with $Tb^{3+}$ or $Er^{3+}$ ions. A significant (factor of ~5) increase in field-effect mobility is also observed on the $MoS_2$ and $WSe_2$ devices, which are, respectively, doped by $Tb^{3+}$-based Co-DNA (n-doping) and $Gd^{3+}$-based Co-DNA (p-doping), due to the reduction of effective electron and hole barrier heights after the doping. In terms of optoelectronic device performance (photoresponsivity and detectivity), the $Tb^{3+}$ or $Er^{3+}$-Co-DNA (n-doping) and the $Eu^{3+}$ or $Gd^{3+}$-Co-DNA (p-doping) improve the $MoS_2$ and $WSe_2$ photodetectors, respectively.

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고시인성 스마트 안전의류의 설계 및 제작 (Designing and Fabricating of the High-visibility Smart Safety Clothing)

  • 박순자;김선웅
    • 감성과학
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    • 제23권4호
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    • pp.105-116
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    • 2020
  • 본 연구의 목적은 형광직물과 재귀반사 소재만으로 제작, 보급되고 있는 현 안전의복에, LED 부착으로 시인성을 높여 야간이나 기상악화 시 안전사고로부터 작업자나 보행자를 보호하고, 기울기 센서와 소리신호를 탑재하여 의식불명자의 구명에 도움을 주는데 있다. 이를 위하여 공학적 하이테크를 적용하여 설계·제작한 산업용 서스펜더형 안전벨트 및 기울기 센서와 소리신호가 탑재된 안전조끼형 벨트를 개발하였다. 그 효과로 첫째, 서스펜더형 안전벨트는 필름에 접착된 자동 점멸 LED에 의해 빛을 방출하도록 설계하여 벨트 착용자의 신체는 LED와 재귀반사를 통해 멀리서 인식되어 사고예방에 도움이 된다. 또한 야간에 실시하는 도로변이나 고지대에서의 작업, 구조대원 활동, 스포츠 활동 시사고를 예방하거나, 비상상황이 발생할 경우 LED 발광을 변화시키는 신호로 사고 지점을 빨리 발견할 수 있어 인명구조에 도움이 된다. 둘째, 착용자가 조난사고 등으로 인하여 의식불명으로 쓰러질 경우, 조난신호를 발생하는 첨단 디바이스를 개발하여 감지 및 신호 장치를 탑재한 결과 제어부의 기울기 센서가 인체의 각도를 자동 감지하였다. 동시에 조끼형의 벨트 형태로 제작함으로써 탈착이 용이하도록 하여 활용도를 높였다. 사고로 착용자가 쓰러지면 이 벨트의 기울기 센서가 각도를 감지하고 제어기가 고주파 음과 LED 점멸신호를 동시에 발생시킨다. 기존의 안전 조끼의 경우 주변 조명이 없을 때는 조끼를 착용한 사람을 감지하는 것이 거의 불가능 하였지만, 본 연구에서는 안전벨트의 음향과 빛 신호로 주변 조명이 없을 때에도 100 m 이내에서 착용자를 발견할 수 있었다. 그러므로 본 연구에서 LED 부착과 기울기 센서, 소리신호 소자를 부착한 스마트 안전의류의 개발은 사고발생 감소와 구명에 이바지할 수 있을 것이다.

Metal Oxide Thin Film Transistor with Porous Silver Nanowire Top Gate Electrode for Label-Free Bio-Relevant Molecules Detection

  • 유태희;김정혁;상병인;최원국;황도경
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.268-268
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    • 2016
  • Chemical sensors have attracted much attention due to their various applications such as agriculture product, cosmetic and pharmaceutical components and clinical control. A conventional chemical and biological sensor is consists of fluorescent dye, optical light sources, and photodetector to quantify the extent of concentration. Such complicated system leads to rising cost and slow response time. Until now, the most contemporary thin film transistors (TFTs) are used in the field of flat panel display technology for switching device. Some papers have reported that an interesting alternative to flat panel display technology is chemical sensor technology. Recent advances in chemical detection study for using TFTs, benefits from overwhelming progress made in organic thin film transistors (OTFTs) electronic, have been studied alternative to current optical detection system. However numerous problems still remain especially the long-term stability and lack of reliability. On the other hand, the utilization of metal oxide transistor technology in chemical sensors is substantially promising owing to many advantages such as outstanding electrical performance, flexible device, and transparency. The top-gate structure transistor indicated long-term atmosphere stability and reliability because insulator layer is deposited on the top of semiconductor layer, as an effective mechanical and chemical protection. We report on the fabrication of InGaZnO TFTs with silver nanowire as the top gate electrode for the aim of chemical materials detection by monitoring change of electrical properties. We demonstrated that the improved sensitivity characteristics are related to the employment of a unique combination of nano materials. The silver nanowire top-gate InGaZnO TFTs used in this study features the following advantages: i) high sensitivity, ii) long-term stability in atmosphere and buffer solution iii) no necessary additional electrode and iv) simple fabrication process by spray.

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Characteristics of $Al_2O_3/TiO_2$ multi-layers as moisture permeation barriers deposited on PES substrates using ECR-ALD

  • 권태석;문연건;김웅선;문대용;김경택;박종완
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.457-457
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    • 2010
  • Flexible organic light emitting diodes (F-OLEDs) requires excellent moisture permeation barriers to minimize the degradation of the F-OLEDs device. Specifically, F-OLEDs device need a barrier layer that transmits less than $10^{-6}g/m^2/day$ of water and $10^{-5}g/m^2/day$ of oxygen. To increase the life time of F-OLEDs, therefore, it is indispensable to protect the organic materials from water and oxygen. Severe groups have reported on multi-layerd barriers consisting inorganic thin films deposited by plasma enhenced chemical deposition (PECVD) or sputtering. However, it is difficult to control the formation of granular-type morphology and microscopic pinholes in PECVD and sputtering. On the contrary, atomic layer deoposition (ALD) is free of pinhole, highly uniform, conformal films and show good step coverage. Thus, $Al_2O_3/TiO_2$ multi-layer was deposited onto the polyethersulfon (PES) substrate by electron cyclotron resonance atomic layer deposition (ECR-ALD), and the water vapor transmission rates (WVTR) were measured. WVTR of moisture permeation barriers is dependent upon density of films and initial state of polymer surface. A significant reduction of WVTR was achieved by increasing density of films and by applying low plasma induced interlayer on the PES substrate. In order to minimize damage of polymer surface, a 10 nm thick $TiO_2$ was deposited on PES prior to a $Al_2O_3$ ECR-ALD process. High quality barriers were developed from $Al_2O_3$ barriers on the $TiO_2$ interlayer. WVTR of $Al_2O_3$ by introducing $TiO_2$ interlayer was recorded in the range of $10^{-3}g/m^2.day$ at $38^{\circ}C$ and 100% relative humidity using a MOCON instrument. The WVTR was two orders of magnitude smaller than $Al_2O_3$ barriers directly grown on PES substrate without the $TiO_2$ interlayer. Thus, we can consider that the $Al_2O_3/TiO_2$ multi-layer passivation can be one of the most suitable F-OLEDs passivation films.

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Market in Medical Devices of Blockchain-Based IoT and Recent Cyberattacks

  • Shih-Shuan WANG;Hung-Pu (Hong-fu) CHOU;Aleksander IZEMSKI ;Alexandru DINU;Eugen-Silviu VRAJITORU;Zsolt TOTH;Mircea BOSCOIANU
    • 한국인공지능학회지
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    • 제11권2호
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    • pp.39-44
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    • 2023
  • The creativity of thesis is that the significance of cyber security challenges in blockchain. The variety of enterprises, including those in the medical market, are the targets of cyberattacks. Hospitals and clinics are only two examples of medical facilities that are easy targets for cybercriminals, along with IoT-based medical devices like pacemakers. Cyberattacks in the medical field not only put patients' lives in danger but also have the potential to expose private and sensitive information. Reviewing and looking at the present and historical flaws and vulnerabilities in the blockchain-based IoT and medical institutions' equipment is crucial as they are sensitive, relevant, and of a medical character. This study aims to investigate recent and current weaknesses in medical equipment, of blockchain-based IoT, and institutions. Medical security systems are becoming increasingly crucial in blockchain-based IoT medical devices and digital adoption more broadly. It is gaining importance as a standalone medical device. Currently the use of software in medical market is growing exponentially and many countries have already set guidelines for quality control. The achievements of the thesis are medical equipment of blockchain-based IoT no longer exist in a vacuum, thanks to technical improvements and the emergence of electronic health records (EHRs). Increased EHR use among providers, as well as the demand for integration and connection technologies to improve clinical workflow, patient care solutions, and overall hospital operations, will fuel significant growth in the blockchain-based IoT market for linked medical devices. The need for blockchain technology and IoT-based medical device to enhance their health IT infrastructure and design and development techniques will only get louder in the future. Blockchain technology will be essential in the future of cybersecurity, because blockchain technology can be significantly improved with the cybersecurity adoption of IoT devices, i.e., via remote monitoring, reducing waiting time for emergency rooms, track assets, etc. This paper sheds the light on the benefits of the blockchain-based IoT market.

선량 판독용 OSL 측정장치의 개발 (Development of OSL Dosimetry Reader)

  • 박창영;정기수;이종덕;장인수;이정일;김장렬
    • Journal of Radiation Protection and Research
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    • 제37권1호
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    • pp.10-15
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    • 2012
  • 개인 선량계로 활용될 수 있는 광자극발광(OSL: optically stimulated luminescence) 측정장치의 개발과 이를 위한 이론적 배경 및 개발된 장치의 성능에 대하여 기술하였다. OSL 측정장치는 자극광원과 시료로부터 자극 발광된 광신호 사이의 간섭효과를 최소화하기 위하여 다양한 광학적 필터 조합을 구성해야 하는데, 여기서는 자극광에는 GG420 필터를, 측정부에는 UG11과 BG39 필터로 $Al_2O_3:C$ OSL 물질에 최적화된 광학적 필터를 구성하였다. 자극광원으로 Luxeon V형 고휘도 Blue LED를 선택함으로서 충분한 광량을 확보하였다. 또한 장비 제어 및 측정을 위하여 PC와 OSL 장치 사이에 다양한 제어보드들이 이용되며, 전체 장치의 자동화 및 장치제어는 LabView 프로그램을 이용하여 개발하였다. 개발된 OSL 장치의 신뢰도 및 재현성 평가를 위해 대표적인 OSL 물질인 $Al_2O_3:C$를 이용하여 OSL 특성곡선을 측정하고 이를 기존 상용 OSL 측정장치와 비교하였다.

태양광 발전에 의한 비접촉 방식 저 전력 에너지 전송회로에 관한 연구 (A Study on Low Power Energy Transfer Circuits of the Non Contact Method by means of Solar Generation)

  • 황락훈;나승권;김종래;최기호;김진선
    • 한국항행학회논문지
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    • 제18권1호
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    • pp.35-43
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    • 2014
  • 본 논문은 무선 전력 전송에 관한 이론을 토대로 송신부와 수신부의 두 개의 평면 코일 사이의 자기 유도 원리의 다양한 조건 변화에 따른 무 접촉 무선 전력 전송에 관한 연구이다. 실험은 무 접촉 방식으로 전력을 전송 할 수 있는 송신부인 1차 측 코일과 수신부인 2차 측 코일 및 하프브리지 직렬 공진 컨버터를 적용한 무선 전원 장치의 송신부 회로와 수신부회로의 출력 전압 및 전원을 계산할 수 있는 환경을 마련해 주었다. 송신부의 유도 결합 공진 컨버터의 주 전원은 태양광 전지 모듈과 대체 광원으로서 인공 광원(할로겐 램프)을 이용하여 전기 에너지로 변환 시켜 사용하였으며 태양광 발전으로부터 공급받은 24 V 전원을 무선 전력 전송 장치를 위한 입력 전원으로 사용하였다. 실험 결과, 전달 받은 전력은 수신부 회로에서 조명을 밝히거나 배터리를 충전하는데 사용된다. 그리고 송신부의 출력 측에서 측정을 통해 수신부의 입력 전력과 비교하여 무선 전력 전송 효율은 약 70~89%로 나타났다. 또한 이 논문을 위해서, 무선 전력 전송 시 이물질이 간섭하였을 때, ID 검증 방식과 전압의 위상차 비교 방법을 통해 효율성 실험을 하였다.

멀티 어레이 엘이디를 이용한 지능형 전조등 광학 설계 (Smart Headlamp Optics Design with Multi-array LEDs)

  • 유진희;노석주;이준호;황창국;고동진
    • 한국광학회지
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    • 제24권5호
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    • pp.231-236
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    • 2013
  • 본 논문에서는 멀티 어레이 엘이디를 이용한 불연속적인 광원의 빔 패턴이 광학계만으로 연속적인 매트릭스 빔으로 형성되어 광원의 점 소등만으로 다양한 빔 패턴을 구현할 수 있는 지능형 전조등의 광학 설계를 연구하였다. 기존 지능형 전조등의 기술과 다르게 멀티 어레이 엘이디를 이용한 지능형 전조등은 다수의 광원 엘이디와 하나의 광학계 어셈블리 모듈 구성으로 전자 제어를 통해 별도의 기구적인 작동 없이 빔 패턴을 변화시킬 수 있다. 본 연구에서 광학 설계는 상향등과 자동 조정 주행등의 패턴 구현과 광도 값을 만족시키기 위해 LED 앞 단에 2차렌즈 설계와 측벽 설계, 투사렌즈 설계를 실시하였다. 그 결과 불연속적인 광원의 패턴이 광학계를 통해 전방 25 m에서 14개의 동일한 사이즈와 밝기를 갖는 셀들이 모여 연속적인 하나의 매트릭스 빔 패턴을 형성하는 설계 조건을 만족하였다. 또한 설계된 광학계의 제작 및 측정을 통해 상향등의 원거리 시인성을 위한 최대 45000 cd 이상의 배광 법규 조건을 약 50000 cd로 만족하였고, 자동 조정 주행 빔 패턴 구현 시 광원의 소등 영역이 0.32 lx로 측정되어 배광 법규 0.4 lx 이하를 만족하였다.