• Title/Summary/Keyword: 고온내성

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트랜스포머 열화 인자 도출 및 전원회로 영향성에 관한 연구

  • Lee, Yeong-Ju;Im, Hong-U;Han, Ji-Hun;Lee, Mu-Seok
    • Proceedings of the Korean Reliability Society Conference
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    • 2011.06a
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    • pp.61-70
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    • 2011
  • 본 논문에서는 전원회로에 사용되는 주요 부품인 트랜스포머에 대한 주요한 고장모드, 고장메커니즘, 스트레스 인자들을 규정하고 그에 따른 가속열화시험을 실시하여 가장 유효한 스트레스 인자를 도출하고 트랜스포머의 열화가 전원회로에 미치는 영향을 분석에 대한 연구를 진행하였다. 전원회로의 고장분석에서, 트랜스포머의 일시적인 특성변화 또는 고장현상(Bunt, Short, Open 등) 발생으로 인한 전류의 급증, 공진주파수 부조화, Spike 발생 등으로 인한 주변부품 또는 구성회로에 미치는 영향을 정확하게 분석하는 것이 어렵다는 점과 비교적 단순한 구조와 강한 내성으로 뚜렷한 고장모드를 보이지 않는 특징으로 인해 전원회로의 고장원인이 트랜스포머 외의 반도체 소자, 저항, 커패시터 등에 의한 것으로 분석되는 것이 일반적이다. 유효한 스트레스 인자별 가속열화시험을 통한 성능평가에서는 절연저항을 제외한 특성에서는 뚜렷한 변화(열화)를 보이지 않았고, 고온고습에 의한 스트레스에서 가장 절연저항의 급격한 열화를 확인할 수 있었다. 또한 열화 각각의 스트레스 인자에 따라 열화시킨 트랜스포머를 실장하여 평가하는 실증적인 방법을 통해 분석한 결과 트랜스포머의 열화는 스위칭소자를 비롯한 주변부품에 스트레스를 가중시켜 발열로 대변되는 현상을 유발하고 트랜스포머 입출력 양단간의 위상편차는 심화시키는 것으로 나타났으며, 스트레스 인자 중 온습도에 의한 영향이 가장 유효하다는 것으로 확인할 수 있었다.

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플라즈마를 이용한 저온 수정(Quartz) 직접 접합에서 공정변수의 영향

  • Lee, Ji-Hye;;Kim, Gi-Don;Choe, Dae-Geun;Choe, Jun-Hyeok;Jeong, Jun-Ho;Lee, Ji-Hye
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.460-460
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    • 2010
  • 단결정 수정은 높은 자외선(UV) 투과성, 화학정 내성, 압전성 등의 특성을 가지고 있으며, 이로 인해 UV 나노임프린트 리소그래피의 스탬프, 광학 리소그래피의 마스크, MEMS 능동소자 등의 다양한 분야에 응용되고 있다. 단결정 수정의 응용분야를 넓히기 위해서 수정과 수정을 접합하는 것은 매우 유용하다. 수정과 수정의 접합은 무결정 유리, 금속등의 중간층을 이용한 접합이 소개되었으나, 접합 시 접합 계면의 평평도가 낮아 지거나, 중간 금속층의 내화학성이 낮은 단점이 있다[1,2]. 이를 극복하기 위해 중간층을 사용하지 않고, 습식 화학적 에칭을 통한 수정-수정의 직접 접합 방법이 소개되었다[3]. 이 방법은 UV 투과성과 내화학성이 높은 접합을 형성할 수 있으나 500도씨 이상의 고온의 어닐링이 필요한 단점이 있다. 본 연구에서는 플라즈마를 이용하여 저온(200도씨)에서 수정-수정의 직접 접합을 형성하였다. 플라즈마 처리를 통해 수정-수정 직접 접합의 접합 강도가 향상되는 것을 확인하였다. 플라즈마 시간과 수정의 표면 거칠기가 접합 강도에 미치는 영향을 분석하였다. 이 방법을 이용하여 나노 임프린트 리소그래피용 스탬프를 제작하였으며, 성공적으로 나노임프린트를 수행하였다. 이 방법은 MEMS 능동 소자 제작, UV 나노임프린트 리소그래피 스탬프 등 다층 수정구조 제작에 등에 응용될 것으로 기대된다.

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Electrical characterization of 4H-SiC MOSFET with aluminum gate according to design parameters (Aluminium Gate를 적용한 4H-SiC MOSFET의 Design parameter에 따른 전기적 특성 분석)

  • Seung-Hwan Baek;Jeong-Min Lee;U-yeol Seo;Yong-Seo Koo
    • Journal of IKEEE
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    • v.27 no.4
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    • pp.630-635
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    • 2023
  • SiC is replacing the position of silicon in the power semiconductor field due to its superior resistance to adverse conditions such as high temperature and high voltage compared to silicon, which occupies the majority of existing industrial fields. In this paper, the gate of 4H-SiC Planar MOSFET, one of the power semiconductor devices, was formed with aluminium to make the contrast and parameter values consistent with polycrystalline Si gate, and the threshold voltage, breakdown voltage, and IV characteristics were studied by varying the channel doping concentration of SiC MOSFET.

NITROGEN EXCRETION IN THE BIVALVE MOLLUSCS (이매패의 질소배설 2. 굴)

  • CHIN Pyung;LEE Bok Kyu
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.12 no.4
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    • pp.293-296
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    • 1979
  • The effects of temperature and salinity on tile rates of ammonia and amino nitrogen excretion, and oxygen consumption were measured for Crassostrea gigas. There was variability with temperature and salinity changes in both the rates of nitrogen excretion and the proportionality between ,ammonia and amino acids in the excreta, and also in the rates of oxygen consumption. Rates of nitrogen excretion and oxygen consumption were markedly decreased with increase in salinity, especially at high salinity-high temperature, whereas at low salinity-high temperature condition they were significantly increased. These changes are considered as the responses of physiological tolerances to the high temperature stress and the results of the metabolic temperature compensation at the low salinity-high temperature condition. Most of nitrogenous excretory products was ammonia, and large amounts of amino-nitrogen was excreted, and especially the rate of amino-nitrogen excretion was dominant at $32.5\%_{\circ}-22^{\circ}C$. The amounts of amino-nitrogen excreted by animals were decreased in the medium of high salinity and increased in the medium of low salinity through the experimental temperature. The atomic ratios of oxygen consumed to ammonia-nitrogen excreted (O: N ratio) was low at the low temperature $(15^{\circ}C)$, and was high at $22^{\circ}$ and $29^{\circ}C$ in the medium of 32.5 and $37.5\%_{\circ}$ but low in the low salinity $27.5\%_{\circ}$.

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Susceptibility of Two Potato Cultivars to Various Environmental Stresses (다양한 환경스트레스에 대한 감자 2품종의 감수성 분석)

  • Tang, Li;Kwon, Suk-Yoon;Sung, Chang-K;Kwak, Sang-Soo;Lee, Haeng-Soon
    • Journal of Plant Biotechnology
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    • v.30 no.4
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    • pp.405-410
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    • 2003
  • Environmental stress is the major limiting factor in plant productivity. In order to evaluate the stress tolerance of potato plants, leaf discs of two potato cultivars, Atlantic and Superior, were subjected to various stress conditions of high temperature, methyl viologen, H2O2, or $H_2O$$_2$. When potato leaf discs were exposed to high temperature at 37$^{\circ}C$ for 84 hr, Atlantic plants, a cultivar with high sensitivity to heat stress, showed about 20% higher membrane damage than Superior plants. When exposed to 2$\mu$M methyl violgen (MV), a superoxide generating non-selective herbicide, for 36 hr, Atlantic plants also showed about 38% higher membrane damage than Superior plants, and were more susceptible up to 10$\mu$M MV concentration tested. On treatment with 0.75M NaCl, Atlantic plants also had about 45% less chlorophyll contents in leaf discs than Superior plants. There was, however, no difference in chlorophyll content of two cultivars at higher NaCl concentrations. The effect of $H_2O$$_2$ on the two cultivars was mixed. At low $H_2O$$_2$ concentration (25 mM) , Superior plants were more susceptible to $H_2O$$_2$stress after 36 hr. However, at high $H_2O$$_2$ concentration (100 mM), Atlantic plants exhibited higher susceptibility after 36 hr. The results indicate that in vitro leaf discs reflecting the whole plants in this study will be useful for selection and characterization of elite transgenic potato plants with enhanced tolerance to environmental stress.

Characterization of Phosphate Solubilizing Yeasts from Korean Traditional Fermented Foods (한국 전통 발효식품에서 분리한 인산가용화 효모의 특성)

  • Park, In-Cheol;Kim, Jeong-Seon;Jung, Joo Ae;Yoo, Jae-Hong
    • The Korean Journal of Mycology
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    • v.41 no.4
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    • pp.218-224
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    • 2013
  • Of 1,100 yeast strains which were isolated from various Korean fermented foods, screened for phosphate solubilization, five strains showed the ability to solubilize tricalcium phosphate. The 26S rDNA domain D1-D2 sequence analysis revealed the identification of strain Y393 and Y524 as Pichia anomala (99.8 and 100% identity, respectively), Y669 as Pichia farinosa (100% identity), Y901 as Candida versatilis (100% identity), and Y1101 as Pichia subpelliculosa (100% identity). All the phosphate solubilizing strains showed mesophilic characteristics. The temperature range for growth of 4 strains was $20{\sim}35^{\circ}C$ and P. farinosa Y669 was able to grow up to $45^{\circ}C$. The strain C. versatilis Y907 was able to grow at pH range of 5.0~6.0 and showed halophilic characteristics with tolerance to 15% of NaCl concentration. The Phosphate solubilizing yeast strains were survived well in bed soil for 8 weeks which were maintained densities of $10^7{\sim}10^8$ cfu/g. The highest phosphate solubilizing activity was observed in P. subpelliculosa Y1101. It solubilized 697.2 ug/mL of phosphorus from tricalcium phosphate with decrease in pH from 6.8 to 4.37 after 11 days of inoculation.

Physiological Characterization of BTEX Degrading Bacteria Microbacterium sp. EMB-1 and Rhodococ-cus sp. EMB-2 Isolated from Reed Rhizosphere of Sunchon Bay (순천만 갈대의 근권으로부터 분리한 BTEX 분해세균 Microbacterium sp. EMB-1과 Rhodococcus sp. EMB-2의 생리학적 특성 분석)

  • Kang Sung-Mi;Oh Kye-Heon;Kahng Hyung-Yeel
    • Microbiology and Biotechnology Letters
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    • v.33 no.3
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    • pp.169-177
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    • 2005
  • This study focuses on investigating roles of microorganisms in decontamination of reed rhizosphere in Sunchon Bay, Korea, which is considered one of the marsh and mud environment severely affected by human activities such as agriculture and fisheries. In general, the bay is known to play the role of the buffering zone to reduce the sudden impact or change by environmental stresses. In our initial efforts to elucidate the microbial functions in decontamination process in reed rhizosphere, pure bacteria capable of degrading aromatic hydrocarbons were isolated from reed (Phragmites communis) rhizosphere of Sunchon bay by enrichment culture using either benzene, toluene, ethylbenzene, or xylene (BTEX) as a sole source of carbon and energy. Measurement of the rates of BTEX degradation and cell growth during the incubation in BTEX media under several temperature conditions demonstrated maximized degradation of BTEX at $37^{\circ}C$ in both strains. Both strains were also resistant to all the heavy metals and antibiotics tested in this study, as well as they grew well at $42^{\circ}C$. Identification of the isolates based on 16S rRNA gene sequences, and a variety of phenotypic and morphologic properties revealed that the two strains capable of BTEX catabolism were among Microbacterium sp., and Rhodococcus sp. with over $95{\%}$ confidence, designated Microbacterium sp. EMB-1 and Rhodococcus sp. EMB-2, respectively This result suggested that in the rhizosphere of reed, one of major salt marsh plants they might play an important roles in decontamination process of reed rhizosphere contaminated with petroleum such as BTEX.

Characterization of Fusant from Protoplast Fusion between Saccharomyces cerevisiae D-71 and Zygosaccharomyces rouxii SR-S (Saccharomyces cerevisiae D-71과 Zygosaccharomyces rouxii SR-S의 세포융합으로 육성한 융합주의 특성)

  • 이종수;김찬조
    • Microbiology and Biotechnology Letters
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    • v.16 no.4
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    • pp.297-302
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    • 1988
  • The protoplasts of Saccharomyces cerevisiae D-71, a thermophilic strain and Zygosaccharomyces rouxii SR-S, an osmotolerant strain were fused, and a fusant (FS-RN 1) was selected, then was characterized for its genetic stability, DNA content, cell capacity, growth rate, tolerance to salts and chemicals, $\beta$-fructofuranosidase level and ethanol fermenting activity. After 6 months of preservation, 5.8% of the fusant clones were segregated to parental types. The DNA content and cell capacity of the fusant were greater than those of the parental strains. Lag period of growth for the fusant was longer than those for the parents. The fusant colonies showed pink-color reaction to triphenyltetrazolium chloride(TTC) test. The fusant appeared to have resistances to NaCl at moderate levels between both parental strains, and resistances to KCI, sodium propionate and cycloheximide similar to either one of the parents. $\beta$-Fructofuranosidase activity of the fusant was 24.2$\times$10$^{-3}$/IU/g(dry wt) for 3 days culture. Ethanol yields ofter 4 days of fermentation by the fusant at 3$0^{\circ}C$ were : 6.0%(v/v) from 40% of glucose and 8.8%(v/v) from 20% of sucrose.

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Construction of hsf1 Knockout-mutant of a Thermotolerant Yeast Strain Saccharomyces cerevisiae KNU5377 (고온내성 연료용 알코올 효모균주 Saccharomyces cerevisiae KNU5377에서 HSF1 유전자의 변이주 구축)

  • Kim Il-Sup;Yun Hae-Sun;Choi Hye-Jin;Sohn Ho-Yong;Yu Choon-Bal;Kim Jong-Guk;Jin Ing-Nyol
    • Journal of Life Science
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    • v.16 no.3 s.76
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    • pp.454-458
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    • 2006
  • HSF1 is the heat shock transcription factor in Saccharomyces cerevisiae. S. cerevisiae KNU5377 can ferment at high temperature such as $40^{\b{o}}C$. We have been the subjects of intense study because Hsf1p mediates gene expression not only to heat shock, but to a variety of cellular and environmental stress challenges. Basing these facts, we firstly tried to construct the hsf1 gene-deleted mutant. PCR-method for fast production of gene disruption cassette was introduced in a thermotolerant yeast S. cerevisiae KNU5377, which allowed the addition of short flanking homology region as short as 45 bp suffice to mediate homologous recombination to kanMX module. Such a cassette is composed of linking genomic DNA of target gene to the selectable marker kanMX4 that confers geneticin (G418) resistance in yeast. That module is extensively used for PCR-based gene replacement of target gene in the laboratory strains. We describe here the generation of hsf1 gene disruption construction using PCR product of selectable marker with primers that provide homology to the hsf1 gene following separation of haploid strain in wild type yeast S. cerevisiae KNU5377. Yeast deletion overview containing replace cassette module, deletion mutant construction and strain confirmation in this study used Saccharomyces Genome Deletion Project (http:://www-sequence.standard.edu/group/yeast_deletion_project). This mutant by genetic manipulation of wild type yeast KNU5377 strain will provide a good system for analyzing the research of the molecular biology underlying their physiology and metabolic process under fermentation and improvement of their fermentative properties.

Ethanol Production an Immobilized Themotolerant Mutant of Brettanomyces custersii H1-39 from Wood Hydrolyzate Media (목질계 당화액배지로부터 고온내성 변이주 Brettanomyces custersii H1-39의 고정화에 의한 에탄올생산)

  • 박승원;홍영기;김승욱;홍석인
    • Microbiology and Biotechnology Letters
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    • v.28 no.3
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    • pp.172-179
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    • 2000
  • Bretlanomyces C!tstersii Hl-39 mutant was immobilized with various caniers. Immobilized mutant Hl-39 produced more ethanol and showed higher productivity and cell concentration than those of free 81-39 in 3.4% hydrolyzate of wood-chips at different temperatures ($37^{\circ}C$, $40^{\circ}C$ and $43^{\circ}C$). At $37^{\circ}C$, ethanol concentration produced by mutant H1-39 immobilized in Ca-alginate and ARG(l % Ca-alginate, 1.67% bentonite, 0.33% glutaraldehyde) bead were higher than those produced by the other earners (ACG ; 1 % CaHalginate. ] .67% celite R-634 , 0.33% glutaraldehyde, ABP ; 1 % Ca-alginate. 1.67% bentonite, 0.33% pectin. ACP: 1 % Ca-alginate, ] .67% celiLe R-634, 0.33% pecLin). The highest value of productivity(l.23 ) was obtained by using ABG beads. At $40^{\circ}C$, ethanol conccntration and productivity obtained by ABC beads ,>,"ere 15.2 glL and 0.84 gl L.h, respectively, which showed the highest value compared to other carriers. Particularly, productivity of ilmnobilized ceIl was increased up to 90% as compared to that offree cell. On the other hand, ABP(l % Ca-alginate+L67% bentonile+O.33% pectin) beads gave the best resulLs at $43^{\circ}C$ for production of ethanol and productivity, which were 13.8 g!l and 0.77 g/l h, respectively.ively.

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