• 제목/요약/키워드: depletion mode

검색결과 77건 처리시간 0.021초

대용량 splitter less full-feed depletion SPLITT 분획법 (Large scale FFD-SF)에서의 분획효율(FE)및 시료처리량(TP)의 최적화 (Optimization of fractionation efficiency (FE) and throughput (TP) in a large scale splitter less full-feed depletion SPLITT fractionation (Large scale FFD-SF))

  • 음철헌;노아람;최재영;유영석;김운중;이승호
    • 분석과학
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    • 제28권6호
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    • pp.453-459
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    • 2015
  • Split-flow thin cell fractionation (SPLITT fractionation, SF)은 밀도와 입자 크기에 따라 입자성 물질이나 거대분자를 연속적으로 분리 및 분획하는 기술이다. SF 모드 중 full-feed depletion mode (FFD)는 오직 한 개의 주입 구를 가지고 있으며, outlet에만 flow stream splitter가 존재한다. SPLITT은 두 가지의 중요 인자가 있다. 하나는 시간에 따라 통과되는 시료의 양 (throughput, TP)과 또 다른 하나는 이론에 의해 예측된 크기를 가지는 입자들의 수 퍼센트로 정의하는 분획효율 (fractionation efficiency, FE)이다.. 기존 FFD 모드에서는 splitter가 outlet에 존재하여, 채널 규모를 확장시키는 데 제한이 있어 시료 처리량의 한계가 있다. 따라서 splitter를 제거하고 채널규모를 증가하여 시료 처리량을 대폭 증가시킬 수 있는 대규모 중력장 FFD-SF 채널을 사용하였다. 따라서 이 논문에서는 대용량 중력장 FFD-SF의 TP와 FE 최적화를 위하여 시료농도와 유속변화로 실험을 진행하였다. 이 실험에서는 두 개의 다른 입자 분포 (3~7 µm, 2~30 µm) 를 가지는 Polyurethane (PU) latex beads가 사용되었다. 시료의 농도는 0.2~0.8% (wt/vol)을 사용하였으며, 채널의 유속은 70~160 mL/min을 사용하였다. 분획된 입자는 광학 현미경으로 확인하여 직접 크기 관찰을 하였으며 시료 회수율 (recovery)은 수집된 입자를 0.1 µm 맴브레인 필터로 거른 후 무게측정으로 실험하였다. 본 연구를 통해 fraction-a의 분획효율 (FE)은 이론에 따라 정확히 맞춰준다면 언제든 좋은 수치를 얻을 수 있다는 것이 확인되었고, 시료의 입자크기가 커서 채널에 쌓일 경우, 시료 회수율을 높이기 위해서는 이동상을 더 흘려주는 방법을 사용하면 효과적인 것을 확인하였다. 또한 효율적인 TP로 실험을 진행하기 위해서는 최소한 0.4% 농도는 사용해야 효율적인 분획이 이뤄진다는 것을 확인하였다.

연속시간의 MOSFET-C 필터 설계 (The Design of Continuous-Time MOSFET-C Filter)

  • 최석우;윤창훈;조성익;조해풍;이종인;김동용
    • 한국통신학회논문지
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    • 제18권2호
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    • pp.184-191
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    • 1993
  • 최근 MOS 공정기술로 집적화된 연속시간 필터 연구가 주목을 받고 있다. 본 논문에서는 차단주파수 3,400Hz를 갖는 연속시간 5차 타원 저역통과 MOSFET-C 필터를 실현하기 위하여, 먼저 각 블록을 동조할 수 있는 종속연결법으로 능동 RC 필터를 설계하였다. 그리고 능동 RC 회로의 저항들을 triode 영역에서 작동하는 NMOS depletion mode 트랜지스터 선형저항으로 실현하였다. 이러한 연속시간 MOSFET-C 필터는 스윗치드 커패시터 필터에 비하여 구조가 간단하여 칩의 면적을 줄일 수 있다. 설계된 MOSFET-C 필터 특성을 PSPICE 프로그램으로 시뮬레이션 하였다.

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The Characterizing Analysis of a Buried-Channel MOSFET based on the 3-D Numerical Simulation

  • Kim, Man-Ho;Kim, Jong-Soo
    • Journal of Electrical Engineering and Technology
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    • 제2권2호
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    • pp.267-273
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    • 2007
  • A depletion-mode MOSFET has been analyzed to evaluate its electrical behavior using a novel 3-D numerical simulation package. The characterizing analysis of the BC MOSFET was performed through short-channel narrow-channel and small-geometry effects that are investigated, in detail, in terms of the threshold voltage. The DIBL effect becomes significant for a short-channel device with a channel length of $<\;3({\mu}m)$. For narrow-channel devices the variation of the threshold voltage was sharp for $<4({\mu}m)$ due to the strong narrow-channel effect. In the case of small-geometry devices, the shift of the threshold voltage was less sensitive due to the combination of the DIBL and substrate bias effects, as compared with that observed from the short-channel and narrow-channel devices. The characterizing analysis of the narrow-channel and small-geometry devices, especially with channel width of $<\;4({\mu}m)$ and channel area of $<\;4{\times}4({\mu}m^2)$ respectively, can be accurately performed only from a 3-D numerical simulation due to their sharp variations in threshold voltages.

다목적실용위성 1호 추진시스템 궤도운용 결과 분석 (Results Analysis for On-orbit Operation of KOMPSAT-1 Propulsion System)

  • 김정수;한조영;진익민
    • 한국추진공학회지
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    • 제4권4호
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    • pp.107-113
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    • 2000
  • 다목적실용위성 1호 추진시스템의 설계형상 및 성능요구조건이 기술되었으며, 발사후 초기운용기간 중에 획득한 추진시스템 운용결과를 분석, 검토하였다. 위성체 자세제어를 위한 추진 시스템의 추력기 성능 검증결과와 PVT Method 에 의해 산출된 추진제 소모율을 위성 운용 모우드에 따라 비교하였으며 추진제 Leakproof 성능 및 추진시스템 열제어 성능 등을 시스템 검증 측면에서 검토하였다. $\Delta$V 기동과 위성 자세제어 모우드별로 산출된 추진세 소모량은 위성 임무말기까지의 추진제 소모율 예측에 유용한 결과를 제시한다.

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Improvement and verification of the DeCART code for HTGR core physics analysis

  • Cho, Jin Young;Han, Tae Young;Park, Ho Jin;Hong, Ser Gi;Lee, Hyun Chul
    • Nuclear Engineering and Technology
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    • 제51권1호
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    • pp.13-30
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    • 2019
  • This paper presents the recent improvements in the DeCART code for HTGR analysis. A new 190-group DeCART cross-section library based on ENDF/B-VII.0 was generated using the KAERI library processing system for HTGR. Two methods for the eigen-mode adjoint flux calculation were implemented. An azimuthal angle discretization method based on the Gaussian quadrature was implemented to reduce the error from the azimuthal angle discretization. A two-level parallelization using MPI and OpenMP was adopted for massive parallel computations. A quadratic depletion solver was implemented to reduce the error involved in the Gd depletion. A module to generate equivalent group constants was implemented for the nodal codes. The capabilities of the DeCART code were improved for geometry handling including an approximate treatment of a cylindrical outer boundary, an explicit border model, the R-G-B checker-board model, and a super-cell model for a hexagonal geometry. The newly improved and implemented functionalities were verified against various numerical benchmarks such as OECD/MHTGR-350 benchmark phase III problems, two-dimensional high temperature gas cooled reactor benchmark problems derived from the MHTGR-350 reference design, and numerical benchmark problems based on the compact nuclear power source experiment by comparing the DeCART solutions with the Monte-Carlo reference solutions obtained using the McCARD code.

CFRP/GFRP 적층복합재의 두께가 혼합모드 균열거동과 AE에 미치는 영향 (The Effect of the CFRP/GFRP Composite Thickness on AE Characteristics and Mixed Mode Crack Behavior)

  • 윤유성;김다진솔;권오헌
    • 한국안전학회지
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    • 제29권6호
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    • pp.9-14
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    • 2014
  • Recently many efforts and researches have been done to cope with industrial facilities that require a low energy machines due to the gradual depletion of the natural resources. The fiber-reinforced composite materials in general have good properties and have the proper mechanical properties according to the change of the ply sequences and fiber distribution types. However, in the fiber-reinforced composite material, there are several problems, including fiber breaking, peeling, layer lamination, fiber cracking that can not be seen from the metallic material. Particularly, the fracture and delamination are likely to be affected by the thickness of the stacking laminates when the bi-material laminated structure is subjected to a load of the mixed mode. In this study, we investigated the effect of the thickness ratio of the difference in the CFRP/GFRP bi-material laminate composites by measuring the cracking behavior and the AE characteristics in a mixed mode loading, which may be generated in the actual structure. The results show that the thickness of the CFRP becomes more thick, the mode I energy release rate becomes a larger, and also the influence of mode I is greater than that of mode II. In addition, AE amplitude which shows the level of the damage in the structure was obtained the more damage in the CFRP with the thin thickness.

소비자의 자원고갈이 제품구색간 의사결정에 미치는 효과 (The Effect of Resource Depletion on Deciding on Product Assortments Size)

  • 조연진;박청규;임현우
    • 유통과학연구
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    • 제14권3호
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    • pp.85-91
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    • 2016
  • Purpose - Prior research has suggested that consumers typically prefer to have a larger number of options. However, preference of assortment size may depend on how depleted resources in consumers' mind are. Reduced capacity for self-regulation by resource depletion makes people rely on more intuitive and less effortful decision processing. When they are mentally depleted, people are likely to focus on the choice difficulty from large assortment, which leads to preference for the small assortment when they make a decision. It could be an important question potentially how being in a depleted mode through effortful self-regulation will influence on the evaluation of assortment size. To answer this questioner, we hypothesized that being engaged in self-regulation, as compared with not being engaged in self-regulation, will influence on the evaluation of product assortment size such as attractiveness, difficulty of choice, and anticipated regret. Research design, data, and methodology - In this study, we first manipulated self-regulatory resource availability using a self-regulation task (i.e., instructing participants to solve Sudoku puzzle vs. to solve diagram cube by filling any diagrams that they prefer into cube instead of number) and asked to indicate the difficulty of the tasks available to them ("How much difficulty did you feel when you complete the task?") Next, participants were asked to imagine that they were planning to buy a laptop at one of the two stores (small assortment: 6 options vs. large assortment: 30 options), both offering good quality of products. After reading the product descriptions, participants were instructed to consider all the information and choose a store that they would like to shop. Finally we measured the choice difficulty, evaluation of product assortments, and anticipated regret on a 7-point scale. We conducted two-way ANOVA in testing the main hypothesis that depleted consumers will show poorer subsequent self-control than non-depleted consumers when they make a decision in large assortment. Results - Compared with non-depleted participants, depleted participants showed the bigger difference from the degree of choice difficulty and product attractiveness between large and small assortments, but the result revealed only a significant interaction effect of resource depletion and assortment size on choice difficulty. Also depleted participants showed the smaller difference from the degree of anticipated regret between large and small assortments than non-depleted participants. Conclusion - Depleted individuals by a prior task are relatively effortless and intuitive form of choosing products so that they try to avoid making effortful trade-offs among choice difficulty such as large assortment, compare with non-depleted individuals. However, for anticipated regret, non-depleted individuals in small assortment anticipate more regret by excluding or at least restricting the possibility of buying attractive items or another kind of potential items than depleted individuals, regardless less choice difficulty in small option. To sum up, it is important to note that individuals are influenced by self-regulatory resources and their self-regulatory conditions contribute to the overall positive or negative impact of product assortment on choice.

이온교환 평판도파로의 실효굴절율 측정 및 해석 (Analysis and Measurement of Effective Refractive Indices with Ion-exchanged Slab Waveguide)

  • 천석표;박정일;박태성;정홍배
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1995년도 춘계학술대회 논문집
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    • pp.73-76
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    • 1995
  • In this study, the slab waveguide was fabricated using potassium-nitride(KNO$_3$) or silver-nitride (AgNO$_3$) molten sources by ion-exchange process. The effective refractive indices of waveguide were measured by Prism-Coupling method. and The characteristics of waveguide(mode dispersion, effective diffusion depth. surface refractive index, diffusion coefficient, and refractive index profile etc,) were investigated by WKB method, In the case of potassium ion-exchange, the computer calculation showed that the refractive index profile of waveguide followed Gaussian function, the surface refractive index increased with ion-exchange time and the effective diffusion depth increased a little as ion-exchange time increased, while the surface refractive index of silver ion-exchanged waveguide decreased with ion-exchange time because of the ion depletion on the surface of waveguide, and the effective diffusion depth seriously with ion-exchange tim. Double ion-exchanged waveguide was fabricated by performing silver ion-exchange after potassium ion-exchange. Double ion-exchanged waveguide had a tight mode binding force since the surface refractive index was larger than single step ion-exchanged waveguide.

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Design of Parasitic Inductance Reduction in GaN Cascode FET for High-Efficiency Operation

  • Chang, Woojin;Park, Young-Rak;Mun, Jae Kyoung;Ko, Sang Choon
    • ETRI Journal
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    • 제38권1호
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    • pp.133-140
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    • 2016
  • This paper presents a method of parasitic inductance reduction for high-speed switching and high-efficiency operation of a cascode structure with a low-voltage enhancement-mode silicon (Si) metal-oxide-semiconductor field-effect transistor (MOSFET) and a high-voltage depletion-mode gallium nitride (GaN) fielde-ffect transistor (FET). The method is proposed to add a bonding wire interconnected between the source electrode of the Si MOSFET and the gate electrode of the GaN FET in a conventional cascode structure package to reduce the most critical inductance, which provides the major switching loss for a high switching speed and high efficiency. From the measured results of the proposed and conventional GaN cascode FETs, the rising and falling times of the proposed GaN cascode FET were up to 3.4% and 8.0% faster than those of the conventional GaN cascode FET, respectively, under measurement conditions of 30 V and 5 A. During the rising and falling times, the energy losses of the proposed GaN cascode FET were up to 0.3% and 6.7% lower than those of the conventional GaN cascode FET, respectively.

Current Modeling for Accumulation Mode GaN Schottky Barrier MOSFET for Integrated UV Sensors

  • Park, Won-June;Hahm, Sung-Ho
    • 센서학회지
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    • 제26권2호
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    • pp.79-84
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    • 2017
  • The drain current of the SB MOSFET was analytically modeled by an equation composed of thermionic emission and tunneling with consideration of the image force lowering. The depletion region electron concentration was used to model the channel electron concentration for the tunneling current. The Schottky barrier width is dependent on the channel electron concentration. The drain current is changed by the gate oxide thickness and Schottky barrier height, but it is hardly changed by the doping concentration. For a GaN SB MOSFET with ITO source and drain electrodes, the calculated threshold voltage was 3.5 V which was similar to the measured value of 3.75 V and the calculated drain current was 1.2 times higher than the measured.