• 제목/요약/키워드: Omega Network

검색결과 86건 처리시간 0.028초

열소결로 제작된 유연기판 인쇄회로의 전기적 거동 (Electrical Behavior of the Circuit Screen-printed on Polyimide Substrate with Infrared Radiation Sintering Energy Source)

  • 김상우;감동근;정승부
    • 마이크로전자및패키징학회지
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    • 제24권3호
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    • pp.71-76
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    • 2017
  • 열 소결 공정 중 소결 온도와 시간을 다르게 하여 제작된 은 인쇄회로의 전기적 거동과 유연성을 분석하였다. 은 인쇄회로의 비저항값과 고주파 전송 특성을 4-포인트 프로브 및 네트워크 분석기를 사용하여 각각 측정하였다. 비저항값은 DC 전류가 회로에 흐를 때의 전기 저항을, 고주파 전송 특성은 은 회로의 신호 전송 특성을 의미한다. 은 인쇄회로의 유연성은 IPC 슬라이딩 테스트 중 발생하는 회로 저항의 변화를 실시간으로 측정하여 평가하였다. 은 인쇄회로의 파괴 모드는 주사전자 현미경과 광학 현미경을 통해 관측하였다. 폴리이미드 기판 위에 인쇄된 은 회로의 비저항값은 소결 온도와 소결 시간이 증가함에 따라 급격하게 감소하였다. $250^{\circ}C$에서 45분간 열 소결된 은 인쇄회로의 비저항값이 가장 낮았으며 그 때의 값은 $3.8{\mu}{\Omega}{\cdot}cm$였다. 은 인쇄회로에서 발생한 균열은 슬라이딩 테스트 10만번 이후의 길이가 2.5만번 테스트 후의 균열보다 열 배는 더 길게 측정되었다. 측정된 전송계수와 반사계수는 전산모사 결과와 그 경향이 거의 일치하였으며 슬라이딩 테스트가 진행될수록 은 회로의 전송손실은 증가하였다.

지진 관측 기록을 이용한 필리핀 마닐라의 현장 증폭 특성 및 S파 속도구조 추정 (Estimation of site amplification and S-wave velocity profiles in metropolitan Manila, the Philippines, from earthquake ground motion records)

  • 야마나카 히로아키
    • 지구물리와물리탐사
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    • 제14권1호
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    • pp.69-79
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    • 2011
  • 본 연구에서는, 필리핀의 마닐라에서 관측된 지진 기록을 통해 얇고 깊은 토양층의 S파 속도 구조와 경험적 현장 증폭 특성을 평가하였다. 지진 기록에 빛띠 역산법 (Spectral inversion technique)을 적용하여 진원, 경로 및 국지적 현장 증폭 효과들을 평가하였다. 사용한 지진 자료는 36회의 중간급 지진들의 기록을 얻었으며, 그 중에서 마닐라의 지진 관측 망에서 강한 움직임을 보인 10곳의 관측점 자료를 이용하였다. 전파경로의 추정 Q값은 54,6f 1.1으로 모사된다. 대부분의 진원의 빛띠(스펙트럼)는 오메가-스퀘어 (omega-square) 모형으로 근사 될 수 있다. 현장 증폭 특성은 지표 지질조건에 따라 특유의 특정을 보여준다. 중앙 고지대의 증폭특성은 우세 주파수를 갖지 않는데 비해, 해안 저지대 와 마리카나(Marikina) 계곡에서의 증폭특성은 1~5Hz의 우세 주파수를 갖는다. 우리는 현장 증폭 특성을 S파 속도로 변환한 후에, 증폭 특성과 상부 30m의 평균 S파 속도 구조와의 관계를 검토하였다. 낮은 주파수대의 증폭 특성은 평균 S파 속도와 좋은 상관성을 보인다. 반면, 높은 주파수대의 증폭특성은 상부 30m내의 평균 S파 속도로 충분히 설명되지 않는다. 이것은 30m보다 낮은 심도의 평균 S파 속도와 더 많이 관련되어 있다.

완전 스위칭이 가능한 Ti:LiNbO3 진행파 광변조기 (Traveling-wave Ti:LiNbO3 optical modulator capable of complete switching)

  • 곽재곤;김경암;김영문;정은주;피중호;박권동;김창민
    • 한국광학회지
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    • 제14권5호
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    • pp.545-554
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    • 2003
  • Ti:LiNbO$_3$세 도파로 방향성 결합기와 CPW진행파 전극으로 구성된 완전 스위칭이 가능한 외부 광변조기를 설계, 제작하였다. 결합 모드 이론을 이용하여 세 도파로 광결합기의 스위칭 현상을 해석하였으며, 유한차분법을 이용하여 단일 모드를 갖는 광도파로의 설계 및 공정 파라미터를 도출하였으며, 이를 이용하여 광 결합길이를 계산하였다. 등각사상법과 반복이완법을 이용하여, CPW구조 진행파 전극의 특성임피던스와 M/W(Micro wave)유효굴절률 정합조건을 동시에 만족하는 설계 파라미터를 도출하였다. 제작된 세 도파로 광변조기의 삽입손실과 스위칭 전압은 약 4㏈와 19V였으며, S 파라미터를 측정하여 특성임피던스 Z$_{c}$=45 Ω M/W 유효굴절률 N$_{eff}$=2.20, 그리고 감쇠상수 $\alpha$$_{0}$=0.055/cm√GHZ 등의 진행파 전극 파라미터를 추출하였다. 추출된 진행파 전극 파라미터를 이용하여 이론적인 주파수 응답 R($\omega$)을 계산하였으며, Photo Detector로 측정된 주파수 응답과 비교하였다. 주파수 응답 측정 결과, 3㏈ 변조대역폭은 13 GHz로 측정되었다.

$\textrm{V}_{2}\textrm{O}_{5}$계 전자 전도성 유리의 제조 및 전기적 특성 (Preparation and Electrical Properties of Electro-conducting Glasses Containing $\textrm{V}_{2}\textrm{O}_{5}$)

  • 김일구;박희찬;손명모;이헌수
    • 한국재료학회지
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    • 제7권1호
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    • pp.81-88
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    • 1997
  • 유리 형성제로 $B_{2}O_{3}$를 사용하고 CuO를 첨가한 vanadate계 3성분계 유리의 전기적 특성을 조사하였다. 각 조성별 결정화온도에서 열처리 시간을 다르게 하여 생성되는 결정상을 조사 하였으며, 결정화 특성에 따른 직류 전기 전도도의 변화를 분헉하였다. 생성 결정물은 XRD 분석결과 $V_{2}O_{5},\;{\alpha}-CuV_{2}O_{6}$로 판명 되었으며, 열처리 시간에 따라 $V_{2}O_{5}\;와\;{\beta}-CuV_{2}O_6$의 결정화도는 별다른 변화가 없었으나 ${\alpha}-CuV_{2}O_{6}$의 결정화도는 크게 변화하였고 ${\alpha}-CuV_{2}O_{6}$의 결정화도 증가에 따라 전기 전도도가 증가 하였다. 전기 전도도는 상온(303K)에서 유리 조성을 변화시켜 $10^{-2}~-10^{-4}{\Omega}^{-1}cm^{-1}$ 범위로 조절될수 있었다. $V_{2}O_{5}$ 함량이 증가할수록, 염기도($CuO/B_{2}O_{3}$)가 감소할수록 전기 전도도가 증가 하였다. 이 유리의 charge carrier는 전자인 n-type 반도체임이 seebeck coefficient 측정결과 판명되었으며, 전자 전도에 대한 활성화 에너지는 0.098-0.124eV로 계산되어졌다. 측정 온도인 $30~200^{\circ}C$에서 small polaron hopping conduction이 발생함이 관찰되었고, variable range hopping은 보이지 않았다.

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Characteristic Intracelluar Response to Lidocaine And MK-801 of Hippocampal Neurons: An In Vivo Intracellular Neuron Recording Study

  • Choi, Byung-Ju;Cho, Jin-Hwa
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권3호
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    • pp.297-305
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    • 1998
  • This study used in vivo intracellular recording in rat hippocampus to evaluate the effect of lidocaine and MK-801 on the membrane properties and the synaptic responses of individual neurons to electrical stimulation of the commissural pathway. Cells in control group typically fired in a tonic discharge mode with an average firing frequency of $2.4{\pm}0.9$ Hz. Neuron in MK-801 treated group (0.2 mg/kg, i.p.) had an average input resistance of $3.28{\pm}5.7\;M{\Omega}$ and a membrane time constant of $7.4{\pm}1.8$ ms. These neurons exhibited $2.4{\pm}0.2$ ms spike durations, which were similar to the average spike duration recorded in the neurons of the control group. Slightly less than half of these neurons were firing spontaneously with an average discharge rate of $2.4{\pm}1.1$ Hz. The average peak amplitude of the AHP following the spikes in these groups was $7.4{\pm}0.6$ mV with respect to the resting membrane potential. Cells in MK-801 and lidocaine treated group (5 mg/kg, i.c.v.) had an average input resistance of $3.45{\pm}6.0\;M{\Omega}$ and an average time constant of $8.0{\pm}1.4$ ms. The cells were firing spontaneously at an average discharge rate of $0.6{\pm}0.4$ Hz. Upon depolarization of the membrane by 0.8 nA for 400 ms, all of the tested cells exhibited accommodation of spike discharge. The most common synaptic response contained an EPSP followed by early-IPSP and late-IPSP. Analysis of the voltage dependence revealed that the early-IPSP and late-IPSP were putative $Cl^--and\;K^+-dependent$, respectively. Systemic injection of the NMDA receptor blocker, MK-801, did not block synaptic responses to the stimulation of the commissural pathway. No significant modifications of EPSP, early-IPSP, or late-IPSP components were detected in the MK-801 and/or lidocaine treated group. These results suggest that MK-801 and lidocaine manifest their CNS effects through firing pattern of hippocampal pyramidal cells and neural network pattern by changing the synaptic efficacy and cellular membrane properties.

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유연 기판 기반 전기화학 센서 응용을 위한 레이저 유도 그래핀 전극 제작 및 전사 연구 (Fabrication and Transfer of Laser Induced Graphene (LIG) Electrode for Flexible Substrate-based Electrochemical Sensor Applicatins)

  • 김정대;김태헌;박정호
    • 전기학회논문지
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    • 제67권3호
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    • pp.406-412
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    • 2018
  • This paper describes the fabrication process of laser induced graphene (LIG) and its transfer method on to a flexible and stretchable PDMS substrate. By irradiating CO2 laser on a polyimide(PI) film surface, a localized high temperature is created, resulting in a three-dimensional porous graphene network structure with good conductivity. This LIG electrode is relatively easy to fabricate and since it is very weak the LIG electrode was transferred to a flexible PDMS substrate to increase the sturdiness as well as possible use in flexible applications. Sheet resistance, thickness, and electrochemical activity of the fabricated in-situ LIG electrodes have been examined and compared with the LIG electrodes after transferring to PDMS elastomer. The properties of the LIG electrodes were also examined depending on the $CO_2$ laser power. As the irradiated laser power increased, the LIG electrode resistance decreases and the LIG electrode thickness increased. At 4.8 W of laser power, the average sheet resistance and thickness of the fabricated LIG electrodes were approximately $31.7{\Omega}/{\Box}$ and $62.67{\mu}m$, respectively. Moreover, the electrochemical activity of the fabricated LIG electrode at 4.8 W of laser power showed a high oxidation current of $28.2{\mu}A$ after transferring to PDMS.

Synthesis of Core-shell Copper nanowire with Reducible Copper Lactate Shell and its Application

  • Hwnag, Hyewon;Kim, Areum;Zhong, Zhaoyang;Kwon, Hyeokchan;Moon, Jooho
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.430.1-430.1
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    • 2016
  • We present the concept of reducible fugitive material that conformally surrounds core Cu nanowire (NW) to fabricate transparent conducting electrode (TCE). Reducing atmosphere can corrodes/erodes the underlying/surrounding layers and might cause undesirable reactions such impurity doing and contamination, so that hydrogen-/forming gas based annealing is impractical to make device. In this regards, we introduce novel reducible shell conformally surrounding indivial CuNW to provide a protection against the oxidation when exposed to both air and solvent. Uniform copper lactate shell formation is readily achievable by injecting lactic acid to the CuNW dispersion as the acid reacts with the surface oxide/hydroxide or pure copper. Cu lactate shell prevents the core CuNW from the oxidation during the storage and/or film formation, so that the core-shell CuNW maintains without signficant oxidation for long time. Upon simple thermal annealing under vacuum or in nitrogen atmosphere, the Cu lactate shell is easily decomposed to pure Cu, providing an effective way to produce pure CuNW network TCE with typically sheet resistance of $19.8{\Omega}/sq$ and optical transmittance of 85.5% at 550 nm. Our reducible copper lactate core-shell Cu nanowires have the great advantage in fabrication of device such as composite transparent electrodes or solar cells.

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In situ viscoelastic properties of insoluble and porous polysaccharide biopolymer dextran produced by Leuconostoc mesenteroides using particle-tracking microrheology

  • Jeon, Min-Kyung;Kwon, Tae-Hyuk;Park, Jin-Sung;Shin, Jennifer H.
    • Geomechanics and Engineering
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    • 제12권5호
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    • pp.849-862
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    • 2017
  • With growing interests in using bacterial biopolymers in geotechnical practices, identifying mechanical properties of soft gel-like biopolymers is important in predicting their efficacy in soil modification and treatment. As one of the promising candidates, dextran was found to be produced by Leuconostoc mesenteroides. The model bacteria utilize sucrose as working material and synthesize both soluble and insoluble dextran which forms a complex and inhomogeneous polymer network. However, the traditional rheometer has a limitation to capture in situ properties of inherently porous and inhomogeneous biopolymers. Therefore, we used the particle tracking microrheology to characterize the material properties of the dextran polymer. TEM images revealed a range of pore size mostly less than $20{\mu}m$, showing large pores > $2{\mu}m$ and small pores within the solid matrix whose sizes are less than $1{\mu}m$. Microrheology data showed two distinct regimes in the bacterial dextran, purely viscous pore region of soluble dextran and viscoelastic region of the solid part of insoluble dextran matrix. Diffusive beads represented the soluble dextran dissolved in an aqueous phase, of which viscosity was three times higher than the growth medium viscosity. The local properties of the insoluble dextran were extracted from the results of the minimally moving beads embedded in the dextran matrix or trapped in small pores. At high frequency (${\omega}>0.2Hz$), the insoluble dextran showed the elastic behavior with the storage modulus of ~0.1 Pa. As frequency decreased, the insoluble dextran matrix exhibited the viscoelastic behavior with the decreasing storage modulus in the range of ${\sim}0.1-10^{-3}Pa$ and the increasing loss modulus in the range of ${\sim}10^{-4}-1\;Pa$. The obtained results provide a compilation of frequency-dependent rheological or viscoelastic properties of soft gel-like porous biopolymers at the particular conditions where soil bacteria produce bacterial biopolymers in subsurface.

Electrophysiological and Morphological Classification of Inhibitory Interneurons in Layer II/III of the Rat Visual Cortex

  • Rhie, Duck-Joo;Kang, Ho-Young;Ryu, Gyeong-Ryul;Kim, Myung-Jun;Yoon, Shin-Hee;Hahn, Sang-June;Min, Do-Sik;Jo, Yang-Hyeok;Kim, Myung-Suk
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권6호
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    • pp.317-323
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    • 2003
  • Interneuron diversity is one of the key factors to hinder understanding the mechanism of cortical neural network functions even with their important roles. We characterized inhibitory interneurons in layer II/III of the rat primary visual cortex, using patch-clamp recording and confocal reconstruction, and classified inhibitory interneurons into fast spiking (FS), late spiking (LS), burst spiking (BS), and regular spiking non-pyramidal (RSNP) neurons according to their electrophysiological characteristics. Global parameters to identify inhibitory interneurons were resting membrane potential (>-70 mV) and action potential (AP) width (<0.9 msec at half amplitude). FS could be differentiated from LS, based on smaller amplitude of the AP (<∼50 mV) and shorter peak-to-trough time (P-T time) of the afterhyperpolarization (<4 msec). In addition to the shorter AP width, RSNP had the higher input resistance (>200 $M{Omega}$) and the shorter P-T time (<20 msec) than those of regular spiking pyramidal neurons. Confocal reconstruction of recorded cells revealed characteristic morphology of each subtype of inhibitory interneurons. Thus, our results provide at least four subtypes of inhibitory interneurons in layer II/III of the rat primary visual cortex and a classification scheme of inhibitory interneurons.

$CCI_4$ 를 사용하여 베이스를 탄소도핑한 AlGaAs/GaAs HBT의 제작 및 특성 (Fabrication and Characteristic of C-doped Base AlGaAs/GaAs HBT using Carbontetrachloride $CCI_4$)

  • 손정환;김동욱;홍성철;권영세
    • 전자공학회논문지A
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    • 제30A권12호
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    • pp.51-59
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    • 1993
  • A 4${\times}10^{19}cm^{3}$ carbon-doped base AlGaAs/GaAs HBY was grown using carbontetracholoride(CCl$_4$) by atmospheric pressure MOCVD. Abruptness of emitter-base junction was characterized by SIMS(secondary ion mass spectorscopy) and the doping concentration of base layer was confirmed by DXRD(double crystal X-ray diffractometry). Mesa-type HBTs were fabricated using wet etching and lift-off technique. The base sheet resistance of R$_{sheet}$=550${\Omega}$/square was measured using TLM(transmission line model) method. The fabricated transistor achieved a collector-base junction breakdown voltage of BV$_{CBO}$=25V and a critical collector current density of J$_{O}$=40kA/cm$^2$ at V$_{CE}$=2V. The 50$\times$100$\mu$$^2$ emitter transistor showed a common emitter DC current gain of h$_{FE}$=30 at a collector current density of JS1CT=5kA/cm$^2$ and a base current ideality factor of ηS1EBT=1.4. The high frequency characterization of 5$\times$50$\mu$m$^2$ emitter transistor was carried out by on-wafer S-parameter measurement at 0.1~18.1GHz. Current gain cutoff frequency of f$_{T}$=27GHz and maximum oscillation frequency of f$_{max}$=16GHz were obtained from the measured Sparameter and device parameters of small-signal lumped-element equivalent network were extracted using Libra software. The fabricated HBT was proved to be useful to high speed and power spplications.

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