• Title/Summary/Keyword: continuous wave

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Ion doping effect on the $Nd:YVO_4$ CW laser crystallized poly-Si film ($Nd:YVO_4$ CW 레이저로 결정화한 다결정 실리콘 박막의 이온도핑 연구)

  • Kim, Eun-Hyun;Kim, Ki-Hyung;Park, Seong-Jin;Ku, Yu-Mi;Kim, Chae-Ok;Jang, Jin
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2005.05a
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    • pp.76-79
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    • 2005
  • $Nd:YVO_4$ 연속발진 레이저(CW laser:Continuous wave laser)로 제작한 다결정 실리콘 박막의 이온도핑 효과를 조사하였다. PECVD로 증착한 비정질 실리콘 박막을 CW 레이저를 조사하여 결정화한 후 $B_2H_6$ 플라즈마 이온 도즈량을 변화시켜 이온 도핑을 하고 급속열처리 방법과 퍼니스 어닐링 방법으로 도펀트 활성화를 하였다. 이온 도핑된 CW 다결정 실리콘 박막의 이온 도즈량에 따른 판저항 변화를 비교하고, 급속열처리(RTA: Rapid Thermal Annealing)와 퍼니스 어닐링(FA: Furnace Annealing) 전후의 결정성 변화를 라만 스펙트럼(Raman spectrum) 을 통하여 분석하였다. 이온 도즈량이 증가함에 따라 판저항은 감소하고, 어닐링 후 이온 도핑에 의해 손상된 박막이 복원됨을 확인 할 수 있다.

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Laser Welding Characteristics of Aluminum and Copper Sheets for Lithium-ion Batteries (자동차 이차전지 제조를 위한 알루미늄과 무산소동의 레이저 용접특성)

  • Kang, Minjung;Park, Taesoon;Kim, Cheolhee;Kim, Jeonghan
    • Journal of Welding and Joining
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    • v.31 no.6
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    • pp.58-64
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    • 2013
  • Several joining methods involving resistance welding, laser welding, ultrasonic welding and mechanical joining are currently applied in manufacturing lithium-ion batteries. Cu and Al alloys are used for tab and bus bar materials, and laser welding characteristics for these alloys were investigated with similar and dissimilar material combinations in this study. The base materials used were Al 1050 and oxygen-free Cu 1020P alloys, and a disk laser was used with a continuous wave mode. In bead-on-plate welding of both alloys, the joint strength was higher than the strength of O tempered base material. In overlap welding, the effect of welding parameters on the tensile shear strength and bead shape was evaluated. Tensile shear strength of overlap welded joint was affected by interfacial bead width and weld defect formation. The tensile-shear specimen was fractured at the heat affected zone by selecting proper laser welding parameters.

Detonation Wave Studies for CVC Engines of TBCC (TBCC를 위한 CVC 엔진의 데토네이션 현상 기초 연구)

  • Choi, J.Y.;Parent, Bernard;Cho, D.R.;Kang, K.;Shin, J.R.;Lee, S.H.;Yi, T.H.
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2008.11a
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    • pp.326-329
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    • 2008
  • DARPA's hypersonic propulsion program VULCAN is aimed for development of Mach 4+ capable engine by combining current production turbofan engine such as F119 with CVC (Constant Volume Combustion) engine. Final goal is a TBCC(Turbo-based Combined Cycle) engine by combining with dual mode ramjet/scramjet engine. CVC is a common designation of new concept of high efficiency engines, such as Pulse Detonation Engine (PDE) or Continuous Detonation Engine (CDE), which use the detonation as a combustion mechanism. Present paper introduces the internationally collaborative research activities carried out in Aerospace Combustion and Propulsion Laboratory of the department of Aerospace Engineering of the Pusan national University.

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Preliminary Study of Gender-Based Brain Lateralization Using Multi-Channel Near-Infrared Spectroscopy

  • V, Zephaniah Phillips;Kim, Evgenii;Kim, Jae Gwan
    • Journal of the Optical Society of Korea
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    • v.19 no.3
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    • pp.284-296
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    • 2015
  • It has been thought that males tend to use their brain hemispheres more laterally than females. However, recent fMRI studies have shown that there may be no difference in brain lateralization between genders. Functional near-infrared spectroscopy (fNIRS) presents a unique opportunity to acquire real time measurements of blood oxygenation changes to observe neural activity specific to the brain's left and right hemispheres. Using an in-house built multichannel fNIRS system, brain lateralization was observed from seven males and four females according to specially designed tasks for left and right hemisphere activation. The Pearson correlation coefficient and a modified Lateralization Index metric for continuous wave fNIRS systems were calculated to quantify brain lateralization. The preliminary results point to no significant difference in lateral hemodynamic changes between the genders. However, the correlation of symmetrical channel pairs decreased as the experiments progressed. To further develop this study, the subject's performance and the removal of global interference must be implemented for an improved study of brain lateralization.

The Effect of Digitalization and Virtual Leadership on Organizational Innovation During the COVID-19 Pandemic Crisis: A Case Study in Indonesia

  • HUTAJULU, Richard Surungan;SUSITA, Dewi;ELIYANA, Anis
    • The Journal of Asian Finance, Economics and Business
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    • v.8 no.10
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    • pp.57-64
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    • 2021
  • In the last decade, the effect of digitalization was the most cited issue in economic discourse, especially since technological advances, automation, and artificial intelligence are the key to the future discussions. Unemployment is one of the most important and continuous debates, especially in times of crisis due to the COVID-19 pandemic. Therefore, this study aims to analyze the influence of leadership style in innovation organizations to deal with the crisis. In this study, a non-probability purposive sampling method was used. A total of 377 respondents were from LinkedIn social media in Indonesia, with the criteria of employees who have worked for at least 6 years. The structural equation model was analyzed with Amos 25.0. The results show that virtual, servant, and transformational leadership influence employee creativity. Moreover, employee creativity strongly influences organizational innovation; therefore, a new model was found to meet the challenges during the COVID-19 pandemic crisis, which is leadership. Therefore, these results are useful for managers to overcome challenges during the COVID-19 pandemic crisis to manage employee creativity for a better innovative organization and make science a reference for finding solutions to the global wave of unemployment in the revolution 5.0 era.

Performance evaluation of 80 GHz FMCW Radar for level measurement of cryogenic fluid

  • Mun, J.M.;Lee, J.H.;Lee, S.C.;Sim, K.D.;Kim, S.H.
    • Progress in Superconductivity and Cryogenics
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    • v.23 no.4
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    • pp.56-60
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    • 2021
  • The microwave Radar used for special purposes in the past is being applied in various areas due to the technological advancement and cost reduction, and is particularly applied to autonomous driving in the automobile field. The FMCW (Frequency Modulated Continuous Wave) Radar can acquire level information of liquid in vessel based on the beat frequency obtained by continuously transmitting and receiving signals by modulating the frequency over time. However, for cryogenic fluids with small impedance differences between liquid medium and gas medium, such as liquid nitrogen and liquid hydrogen, it is difficult to apply a typical Radar-based level meter. In this study, we develop an 80 GHz FMCW Radar for level measurement of cryogenic fluids with small impedance differences between media and analyze its characteristics. Here, because of the low intrinsic impedance difference, most of the transmitted signal passes through the liquid nitrogen interface and is reflected at the bottom of the vessel. To solve this problem, a radar measurement algorithm was designed to detect multiple targets and separate the distance signal to the bottom of the vessel in order to estimate the precise position on the liquid nitrogen interface. Thereafter, performance verification experiments were performed according to the liquid nitrogen level using the developed radar level meter.

LED Dimming Control Using Manchester-Code Duty Factor And Spike Detection in Visible Light Communication (가시광통신에서 맨체스터코드 듀티율과 스파이크 검출을 이용한 LED 조명제어)

  • Lee, Seong-Ho
    • Journal of IKEEE
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    • v.23 no.2
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    • pp.571-579
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    • 2019
  • Visible light communication (VLC) performs illumination and communication simultaneously, thus it is important to prevent the flicker due to the optical power variation during data transmission and at the same time to have dimming control capability. In this paper, we used Manchester code for flicker-prevention and dimming control. In the transmitter, the duty factor of the Manchester code was used for controlling the LED illumination. In the receiver, the edge-spike signals of an RC-high pass filter were used for recovering the Manchester code while preventing the adjacent noise light. In experiments, the LED light was kept flicker-free and the average optical power was controlled in the range of 8~68 % of the continuous wave (CW) LED light by changing the duty factor of the Manchester code.

NDE Inspecting Techniques for Wind Turbine Blades Using Terahertz Waves (테라헤르츠파를 이용한 풍력터빈 블레이드 NDE 탐상 평가기법)

  • Im, Kwang-Hee;Kim, Sun-Kyu;Jung, Jong-An;Cho, Young-Tae;Woo, Yong-Deuck
    • Journal of Advanced Engineering and Technology
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    • v.11 no.4
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    • pp.245-251
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    • 2018
  • Terahertz waves (T-ray) was extensively studied for the NDE (nondestructive evaluation) of characterization of trailing edges for a use of turbines composed with composite materials. The used NDE system were consisted of both CW(Continuous wave) and TDS (Time domain spectroscopy). The FRP composites were utilized for two kinds of both trailing edges of wind energy (non-conducting polymeric composites) and carbon fiber composites with conducting properties. The signals of T-ray in the TDS (Time domain spectroscopy) mode resembles almost that of ultrasound waves; however, a terahertz pulse could not penetrate a material with conductivity unlike ultrasound. Also, a method was suggested to obtain the "n" in the materials, which is called the refractive index (n). The data of refractive index (n) could be solved for the trailing edges. The trailing edges were scanned for characterization and inspection. C-scan and B-scan images were obtained and best optimal NDE techniques were suggested for complicated geometry samples by terahertz radiation. Especially, it is found that the defect image of T-ray corresponded with defect locations for the trailing edges of wind mill.

Correlation study between propeller noise and cavitation erosion with inclined propeller model test (경사축 추진기 모형시험에서 추진기 소음과 캐비테이션 침식 상관관계 연구)

  • Seol, Hanshin;Paik, Bu-Geun
    • The Journal of the Acoustical Society of Korea
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    • v.38 no.3
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    • pp.328-333
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    • 2019
  • In this paper, to investigate the cavitation erosion phenomenon on the ship propeller, the correlation between the propeller noise and the cavitation intensity was analyzed. Cavitation erosion is closely related to cavitation collapsing intensity, which can be defined as the frequency and intensity of cavitation collapse. The pressure wave generated by cavitation collapse appears as a continuous acoustic pulse and this result is analyzed with the cavitation behavior to determine the relationship of the propeller noise to cavitation collapse intensity. This technique is applied to the propeller erosion test using the inclined shaft propeller model.

8.2-GHz band radar RFICs for an 8 × 8 phased-array FMCW receiver developed with 65-nm CMOS technology

  • Han, Seon-Ho;Koo, Bon-Tae
    • ETRI Journal
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    • v.42 no.6
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    • pp.943-950
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    • 2020
  • We propose 8.2-GHz band radar RFICs for an 8 × 8 phased-array frequency-modulated continuous-wave receiver developed using 65-nm CMOS technology. This receiver panel is constructed using a multichip solution comprising fabricated 2 × 2 low-noise amplifier phase-shifter (LNA-PS) chips and a 4ch RX front-end chip. The LNA-PS chip has a novel phase-shifter circuit for low-voltage operation, novel active single-to-differential/differential-to-single circuits, and a current-mode combiner to utilize a small area. The LNA-PS chip shows a power gain range of 5 dB to 20 dB per channel with gain control and a single-channel NF of 6.4 dB at maximum gain. The measured result of the chip shows 6-bit phase states with a 0.35° RMS phase error. The input P1 dB of the chip is approximately -27.5 dBm at high gain and is enough to cover the highest input power from the TX-to-RX leakage in the radar system. The gain range of the 4ch RX front-end chip is 9 dB to 30 dB per channel. The LNA-PS chip consumes 82 mA, and the 4ch RX front-end chip consumes 97 mA from a 1.2 V supply voltage. The chip sizes of the 2 × 2 LNA-PS and the 4ch RX front end are 2.39 mm × 1.3 mm and 2.42 mm × 1.62 mm, respectively.