• 제목/요약/키워드: Direct printing

검색결과 203건 처리시간 0.028초

다이렉트 프린팅용 청정 금속 및 세라믹 나노 입자 잉크 기술 동향 (Trends on Technology of Eco-friendly Metal and Ceramic Nanoparticle Inks for Direct Printing)

  • 홍성제;김종웅;한철종;김용성;홍태환
    • 마이크로전자및패키징학회지
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    • 제17권2호
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    • pp.1-9
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    • 2010
  • 본고에서는 청정 공정을 이용한 다이렉트 프린팅용 금속 및 세라믹 나노 입자 및 잉크 소재의 국내외 기술 동향 및 시장 전망에 대해 고찰하였다. 다이렉트 프린팅용 나노 입자 기술은 해외의 경우 UILVAC에서 연구 개발이 활발하게 진행되고 있는데, 주로 가스중 증발법에 의해 진행되고 있었다. 또한, 국내의 경우 전자부품연구원 등 산학연에서 활발하게 진행되고 있고, 가스중 증발법 및 저온 합성법 등 건식과 습식법에 의해 진행되고 있었다. 또한 이러한 금속 및 세라믹 나노 분말 입자를 이용하여 잉크를 제조하고 이를 다이렉트 프린팅 공정에 적용하여 박막 및 패턴을 제작하는 연구도 진행되고 있었다. 이러한 다이렉트 프린팅용 나노 입자 및 잉크는 전기, 전자, 정보, 통신 산업의 핵심 소재로서 관련 산업 및 시장이 빠른 속도로 증가하고 있다. 이러한 청정 공정 기술은 연구개발 단계에 있어 국내에서도 청정 기술을 이용하여 선진 기술에 접근하고 있는 결과가 제시되고 있다. 이와 같이 다이렉트 프린팅용 금속 및 세라믹 나노 입자 및 잉크의 기술에 있어서 세계적인 기술의 주도를 위해선 나노 입자 및 잉크의 청정 제조의 원천 기술 개발을 통한 기술 확보 및 시장의 경쟁을 통한 우위 점유가 필요하다.

디지털화폐와 화폐 변천과정에 관한 문헌적 연구: 동적패턴, CBDC, 리브라를 중심으로 (A Literature Study on Digital Currency and Historical Developments of Money: Dynamic Pattern in Currency, Central Bank Digital Currency and Libra)

  • 김의석
    • 한국전자거래학회지
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    • 제25권2호
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    • pp.109-126
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    • 2020
  • 본 연구에서는 디지털화폐 및 화폐변천과 관련된 문헌들에 대한 내용분석과 분석적 서술을 통해 디지털화폐의 특성을 알아보고, 시대에 따라 변화된 '화폐형태'의 동적인 모습과 그에 따른 패러다임변화를 가져오게 된 사회적 배경을 밝혀내고자 했다. 분석결과 새로운 화폐 출현 초기에는 민간에서의 다양한 시도와 함께 시장 중심의 자율적 통화조정이 이루어졌고, 이후 이윤과 권력의 국가독점을 위하여 정부 중심의 중앙 집중 통화 관리와 조정이 이루어졌다는 것을 알 수 있었다. 디지털화폐는 패러다임 변화를 가져올 새로운 화폐형태의 등장으로 볼 수 있다. 중앙은행이 발행하는 CBDC는 직접형과 간접형 모델이 있으며, 관련 산업 생태계의 변화가 예상되는 만큼 국가나 기업의 전략적 접근이 필요할 것으로 보인다. 민간주도형 디지털화폐인 페이스북 리브라는 가격변동을 최소화하여 화폐로서의 기능에 적합하도록 설계된 스테이블코인으로 실제 상용화에 성공할 경우 전 세계 금융산업에 혁명적 변화를 가져올 것으로 전망된다.

Brush-painted Ti-doped In2O3 Transparent Conducting Electrodes Using Nano-particle Solution for Printable Organic Solar Cells

  • 정진아;김한기
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.458.2-458.2
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    • 2014
  • We have demonstrated that simple brush-painted Ti-doped $In_2O_3$(TIO) films can be used as a cost effective transparent anodes for organic solar cells (OSCs). We examined the RTA effects on the electrical, optical, and structural properties of the brush painted TIO electrodes. By the direct brushing of TIO nanoparticle ink and rapid thermal annealing (RTA), we can simply obtain TIO electrodes with a low sheet resistance of 28.25 Ohm/square and a high optical transmittance of 85.48% under atmospheric ambient conditions. Furthermore, improvements in the connectivity of the TIO nano-particles in the top region during the RTA process play an important role in reducing the resistivity of the brush-painted TIO anode. In particular, the brush painted TIO films showed a much higher mobility ($33.4cm^2/V-s$) than that of previously reported solution-process transparent oxide films ($1{\sim}5cm^2/V-s$) due to the effects of the Ti dopant with higher Lewis acid strength (3.06) and the reduced contact resistance of TIO nanoparticles. The OSCs fabricated on the brush-painted TIO films exhibited cell-performance with an open circuit voltage (Voc) of 0.61 V, shot circuit current (Jsc) of $7.90mA/cm^2$, fill factor (FF) of 61%, and power conversion efficiency (PCE) of 2.94%. This indicates that brush-painted TIO film is a promising cost-effective transparent electrode for printing-based OSCs with its simple process and high performance.

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Maskless 방식을 이용한 PCB생산시스템의 진동 해석 (Vibration Analysis of PCB Manufacturing System Using Maskless Exposure Method)

  • 장원혁;이재문;조명우;김종수;이철희
    • 한국소음진동공학회논문집
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    • 제19권12호
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    • pp.1322-1328
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    • 2009
  • This paper presents vibration analysis of maskless exposure module in printed circuit board(PCB) manufacturing system. In order to complete exposure process in PCB, masking type module has been widely used in electronics industries. However, masking process confronts some limitations of application due to higher production cost for masking as well as lower printing resolution. Therefore, maskless exposure module is started to be in the spotlight for flexible production system to meet the needs of fabrication in variable patterns at low cost. Since maskless exposure process adopts direct patterning to PCB, vibration problems become more critical compared to conventional masking type process. Moreover, movements of exposure engine as well as stage generate vibration sources in the system. Thus, it is imperative to analyze the vibration characteristics for the maskless exposure module to improve the quality and accuracy of PCB. In this study, vibration analysis using the finite element analysis is conducted to identify the critical structural parts deteriorating vibration performance. Also, Experimental investigations are conducted by single/dual encoder measurement process under the operating module speed. Measurement points of vibration are selected by three places, which are base of stage, exposure engine and top of stage, to check the effect of vibration from the exposure engine. Comparisons between analysis results and experimental measurement are conducted to confirm the accuracy of analysis results including the developed FE model. Finally, this studies show feasibility of optimal design using the developed FE analysis model.

21세기 패션에 나타난 원시주의의 표현방법과 특성 (Type of Expression and Characteristics of Primitivism in $21^{st}$ Century Fashion)

  • 김선영
    • 복식문화연구
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    • 제18권2호
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    • pp.229-244
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    • 2010
  • This study aims to discuss the type and characteristics of primitivism in the modern fashion of the $21^{st}$ century and, as a research method, the concept of primitivism as well as the transition of the patterns of primitivism expressed in modern art have been considered and reviewed through a variety of references. In particular, an empirical analysis of the works that have been created from 2000 to 2009 has been performed using domestic and overseas fashion and collection magazines. The characteristics of primitivism in modern fashion possess the following types of expression: First, Sensuality can be cited as one of the characteristics, either by using direct or indirect exposure of the human body, a silhouette which fits tightly to the body, or creating the effect of sensual beauty using animal fur or bird feathers. Second, Incantation: Masks symbolizing primitive incantation are used to cover the human face or primitive incantation is incorporated as a theme of hair accessories or fashion trinkets, etc. In addition, such decorations as tattoos and the body colorations of ancient tribes are reproduced in modern fashion by means of body painting, printing or other accessories, emphasizing the image of occult primitiveness. Third, Naturalness can be cited as one of the characteristics. Naturalness is emphasized in modern fashion not through artificial decorations and processing, but rather through different patterns of exposure by which natural purity can be felt or through the use of non-artificial materials which recalls primitive civilization. Forth, Playfulness is expressed in the form of graffiti or abstract letters and paintings, and the character of the play is often expressed by the use of grotesque images based on various distortions and exaggerations of the human body, the utilization of symbols of primitive incantation and body and/or facial painting. Fifth, Lastly 'folkishness is emphasized. Folk-like objects, facial decorations, exposure of the body and intense color contrasts typically represent the folkish characteristics.

투명 산화물 트랜지스터

  • 박상희;황치선;조두희;유민기;윤성민;정우석;변춘원;양신혁;조경익;권오상;박은숙
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2009년도 춘계학술발표대회
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    • pp.13.1-13.1
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    • 2009
  • Transparent electronics has attracted many interests, for it can open new applications for consumer electronics, transportation, business, and military. Among them, display backplane, thin film transistor (TFT) array would be the most attractive application. Many researchers have been investigating oxide semiconductors for transparent channel material of TFT since the report for transparent amorphous oxide semiconductor (TAOS) TFT by Hosono group and ZnO TFT by Wager group. Especially, oxide TFTs have been intensively investigated during a couple of years since the first demonstration of ZnO-TFT driving AM-OLED. Many papers regarding the fabrication and performance of oxide TFTs, and active matrix display driven by oxide TFTs have been reported. Now lots of people have confidence in the competitiveness of oxide TFTs for the backplane of AM-Display. Especially, high mobility, uniformity, fairly good stability, and low cost process make oxide TFTs applied even to a large size AM-OLED. Last year, Samsung mobile display, former SID, reported 12" AM-OLED driven by IZGO-TFT and it seems that the remained issue for the mass production is the bias temperature stability. Here, we will introduce the application of oxide TFT and important issue for oxide TFT to be used for the direct printing.

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HDD에서 상대습도, 디스크 가속도, 정지시간이 슬라이더-디스크 인터페이스의 마찰대전 발생에 미치는 영향 (Effect of Relative Humidity, Disk Acceleration, and Rest Time on Tribocharge Build-up at a Slider-Disk Interface of HDD)

  • 황정호;이대영;이재호;좌성훈
    • Tribology and Lubricants
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    • 제22권2호
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    • pp.59-65
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    • 2006
  • In hard disk drives as the head to disk spacing continues to decrease to facilitate recording densities, slider disk interactions have become much more severe due to direct contact of head and disk surfaces in both start/stop and flying cases. The slider disk interaction in CSS (contact-start-stop) mode is an important source of particle generation and tribocharge build-up. The tribocharge build-up in the slider disk interface can cause ESD (electrostatic discharge) damage. In turn, ESD can cause severe melting damage to MR or GMR heads. The spindle speed of typical hard disk drives has increased in recent years from 5400 rpm to 15000 rpm and even higher speeds are anticipated in the near future. And the increasing disk velocity leads to increasing disk acceleration and this might affect the tribocharging phenomena of the slider/disk interface. We investigated the tribocurrent/voltage build-up generated in HDD, operating at increasing disk accelerations. In addition, we examined the effects with relative humidity conditions and rest time. We found that the tribocurrent/voltage was generated during pico-slider/disk interaction and its level was about $3\sim16pA$ and $0.1\sim0.3V$, respectively. Tribocurrent/voltage build-up was reduced with increasing disk acceleration. Higher humidity conditions $(75\sim80%)$ produced lower levels tribovoltage/current. Therefore, a higher tribocharge is expected at a lower disk acceleration and lower relative humidity condition. Rest time affected the charge build-up at the slider-disk interface. The degree of tribocharge build-up increased with increasing rest time.

은 나노입자 프린팅 기반의 재활치료용 신축성 관절센서 개발 (Development of Stretchable Joint Motion Sensor for Rehabilitation based on Silver Nanoparticle Direct Printing)

  • Chae, Woen-Sik;Jung, Jae-Hu
    • 한국운동역학회지
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    • 제31권3호
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    • pp.183-188
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    • 2021
  • Objective: The purpose of this study was to develop a stretchable joint motion sensor that is based on silver nano-particle. Through this sensor, it can be utilized as an equipment for rehabilitation and analyze joint movement. Method: In this study, precursor solution was created, after that, nozel printer (Musashi, Image master 350PC) was used to print on a circuit board. Sourcemeter (Keithley, Keithley-2450) was used in order to evaluate changes of electric resistance as the sensor stretches. In addition, the sensor was attached on center of a knee joint to 2 male adults, and performed knee flexion-extension in order to evaluate accurate analysis; 3 infrared cameras (100 Hz, Motion Master 100, Visol Inc., Korea) were also used to analyze three dimensional movement. Descriptive statistics were suggested for comparing each accuracy of measurement variables of joint motions with the sensor and 3D motions. Results: The change of electric resistance of the sensor indicated multiple of 30 times from initial value in 50% of elongation and the value of electric resistance were distinctively classified by following 10%, 20%, 30%, 40% of elongation respectively. Through using the sensor and 3D camera to analyze movement variable, it showed a resistance of 99% in a knee joint extension, whereas, it indicated about 80% in flexion phase. Conclusion: In this research, the stretchable joint motion sensor was created based on silver nanoparticle that has high conductivity. If the sensor stretches, the distance between nanoparticles recede which lead gradual disconnection of an electric circuit and to have increment of electric resistance. Through evaluating angle of knee joints with observation of sensor's electric resistance, it showed similar a result and propensity from 3D motion analysis. However, unstable electric resistance of the stretchable sensor was observed when it stretches to maximum length, or went through numerous joint movements. Therefore, the sensor need complement that requires stability when it comes to measuring motions in any condition.

물 분자막의 두께와 윤활특성의 상관관계에 대한 분자시뮬레이션 연구 (Molecular Simulation Study on Influence of Water Film Thickness on Lubrication Characteristics)

  • 김현준;허세곤
    • Tribology and Lubricants
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    • 제38권5호
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    • pp.199-204
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    • 2022
  • This paper presents a numerical investigation of the influence of water molecule thickness on frictional behavior at the nanoscale using molecular dynamics simulation. Three different models, comprising water thin films of various thicknesses, were built, and indentation and sliding simulations were performed using the models. Various normal loads were applied by indenting the Si tip on the water film for the sliding simulation to evaluate the interplay between the water thin film thickness and the normal load. The results of the simulations showed that the friction force generally increased with respect to the normal load and thickness of the water thin film. The friction coefficient varied with respect to the normal load and the water film thickness. The friction coefficient was the smallest under a moderate normal force and increased with decreasing or increasing normal loads. As the water film became thicker, the contact area between the tip and water film became larger. Under well-lubricated conditions, the friction force was proportional to the contact area regardless of the water film thickness. As the normal force increased above a critical condition, the water molecules beneath the Si tip spread out; thus, the film could not provide lubrication. Consequently, the substrate was permanently deformed by direct contact with the Si tip, while the friction force and friction coefficient significantly increased. The results suggest that a thin water film can effectively reduce friction under relatively low normal load and contact pressure conditions. In addition, the contact area between the contacting surfaces dominates the friction force.

반도체 및 전자패키지의 방열기술 동향 (Heat Dissipation Trends in Semiconductors and Electronic Packaging)

  • 문석환;최광성;엄용성;윤호경;주지호;최광문;신정호
    • 전자통신동향분석
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    • 제38권6호
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    • pp.41-51
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    • 2023
  • Heat dissipation technology for semiconductors and electronic packaging has a substantial impact on performance and lifespan, but efficient heat dissipation is currently facing limited improvement. Owing to the high integration density in electronic packaging, heat dissipation components must become thinner and increase their performance. Therefore, heat dissipation materials are being devised considering conductive heat transfer, carbon-based directional thermal conductivity improvements, functional heat dissipation composite materials with added fillers, and liquid-metal thermal interface materials. Additionally, in heat dissipation structure design, 3D printing-based complex heat dissipation fins, packages that expand the heat dissipation area, chip embedded structures that minimize contact thermal resistance, differential scanning calorimetry structures, and through-silicon-via technologies and their replacement technologies are being actively developed. Regarding dry cooling using single-phase and phase-change heat transfer, technologies for improving the vapor chamber performance and structural diversification are being investigated along with the miniaturization of heat pipes and high-performance capillary wicks. Meanwhile, in wet cooling with high heat flux, technologies for designing and manufacturing miniaturized flow paths, heat dissipating materials within flow paths, increasing heat dissipation area, and reducing pressure drops are being developed. We also analyze the development of direct cooling and immersion cooling technologies, which are gradually expanding to achieve near-junction cooling.