• Title/Summary/Keyword: TNL

Search Result 17, Processing Time 0.023 seconds

Iub Congestion Detection Method for WCDMA HSUPA Network to Improve User Throughput (WCDMA HSUPA 망의 성능 향상을 위한 Iub 혼잡 검출 방법)

  • Ahn, Ku-Ree;Lee, Tae-Jin
    • The Journal of Korean Institute of Communications and Information Sciences
    • /
    • v.35 no.1A
    • /
    • pp.16-24
    • /
    • 2010
  • High Speed Uplink Packet Access(HSUPA) is a WCDMA Release 6 technology which corresponds to High Speed Downlink Packet Access(HSDPA). Node B Supports fast scheduling, Hybrid ARQ(HARQ), short Transmission Time Interval(TTI) for high rate uplink packet data. It is very important to detect Iub congestion to improve end user's Quality of Service(QoS). This paper proposes Node B Congestion Detection(BCD) mechanism and suggests to use the hybrid of Transport Network Layer(TNL) congestion detection and BCD. It is shown that HSUPA user throughput performance can be improved by the proposed method even with small Iub bandwidth.

Fabrication of Micro Diamond Tip Cantilever for AFM and its Applications (AFM 부착형 초미세 다이아몬드 팁 켄틸레버의 제작 및 응용)

  • Park J.W.;Lee D.W.
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
    • /
    • 2005.05a
    • /
    • pp.395-400
    • /
    • 2005
  • Nano-scale fabrication of silicon substrate based on the use of atomic force microscopy (AFM) was demonstrated. A specially designed cantilever with diamond tip, allowing the formation of damaged layer on silicon substrate by a simple scratching process, has been applied instead of conventional silicon cantilever for scanning. A thin damaged layer forms in the substrate at the diamond tip-sample junction along scanning path of the tip. The damaged layer withstands against wet chemical etching in aqueous KOH solution. Diamond tip acts as a patterning tool like mask film for lithography process. Hence these sequential processes, called tribo-nanolithography, TNL, can fabricate 2D or 3D micro structures in nanometer range. This study demonstrates the novel fabrication processes of the micro cantilever and diamond tip as a tool for TNL using micro-patterning, wet chemical etching and CVD. The developed TNL tools show outstanding machinability against single crystal silicon wafer. Hence, they are expected to have a possibility for industrial applications as a micro-to-nano machining tool.

  • PDF

Nanoscale Fabrication in Aqueous Solution using Tribo-Nanolithography (Tribo-Nanolithography 를 이용한 액중 나노가공기술 개발)

  • 박정우;이득우
    • Proceedings of the Korean Society of Precision Engineering Conference
    • /
    • 2004.10a
    • /
    • pp.1315-1318
    • /
    • 2004
  • Nano-scale fabrication of silicon substrate in an aqueous solution based on the use of atomic force microscopy was demonstrated. A specially designed cantilever with diamond tip, allowing the formation of damaged layer on silicon substrate easily by a simple scratching process (Tribo-Nanolithography, TNL), has been applied instead of conventional silicon cantilever for scanning. A slant nanostructure can be fabricated by a process in which a thin damaged layer rapidly forms in the substrate at the diamond tip-sample junction along scanning path of the tip and simultaneously the area uncovered with the damaged layer is being etched. This study demonstrates how the TNL parameters can affect the formation of damaged layer and the shape of 3-D structure, hence introducing a new process of proximal nanolithography in aqueous solution.

  • PDF

Nanoscale Fabrication in Aqueous Solution using Tribo-Nanolithography (Tribo-Nanolithography를 이용한 액중 나노가공기술 개발)

  • Park Jeong Woo;Lee Deug Woo;Kawasegi Noritaka;Morita Noboru
    • Journal of the Korean Society for Precision Engineering
    • /
    • v.22 no.2
    • /
    • pp.194-201
    • /
    • 2005
  • Nanoscale fabrication of silicon substrate in an aqueous solution based on the use of atomic force microscopy was demonstrated. A specially designed cantilever with diamond tip, allowing the formation of damaged layer on silicon substrate easily by a simple scratching process (Tribo-Nanolithography, TNL), has been applied instead of conventional silicon cantilever for scanning. A slant nanostructure can be fabricated by a process in which a thin damaged layer rapidly forms in the substrate at the diamond tip-sample junction along scanning path of the tip and simultaneously the area uncovered with the damaged layer is being etched. This study demonstrates how the TNL parameters can affect the formation of damaged layer and the shape of 3-D structure, hence introducing a new process of AFM-based nanolithography in aqueous solution.

Development of Time Measure System for Acceleration of Gravity Experiment (중력 가속도 실험을 위한 시간 측정 시스템 개발)

  • Lee, Hyeon-Hee;Kim, Seong-Gon;Chin, Dal-Bok
    • Proceedings of the KIEE Conference
    • /
    • 2002.07d
    • /
    • pp.2280-2284
    • /
    • 2002
  • This study is to develop a time measure system for acceleration of gravity verification. The system can measure time interval between two points when an object passes through the points. The system has 1${\mu}$sec time resolution. The AT90S8515 microprocessor, product of ATMEL. can make 1${\mu}$sec time resolution possible connected with the 8 MHz fine crystal oscillator. The two external signals called 'start' and 'stop' have AT90S8515 that counted time intervals of the two signals. Sensors are composed of the IR beam emitting diode. TNL108 and the IR beam receiving photo diode, TNL601, produced by NEC company. In order to acquire the measurement of exactitude of the system, measure the pendulum period. Experimental result, the average period =3.0406sec with pendulum length of 2.314m. The acceleration of gravity g=$908821{\pm}6.416{\times}1^{-4}m/s^2$.

  • PDF

Construction of C-Reactive Protein-Binding Aptamer As A Module of the DNA Computing System for Diagnosing Cardiovascular Diseases (심혈관계 질환 진단용 DNA 컴퓨팅 시스템 모듈로서의 C-반응 단백질-결합 앱타머 개발)

  • 김수동;류재송;김성천;장병탁
    • Proceedings of the Korean Information Science Society Conference
    • /
    • 2004.04b
    • /
    • pp.307-309
    • /
    • 2004
  • 급성 심근경색 진단용 DNA 컴퓨팅 시스템 모듈로서, 트로포닌 I (troponin I, Tnl). 트로포닌 T (troponin T, TnT). 미오글로빈 (myoglobin), C-반응 단백질 (C-reactive protein, CRP) 과 각각 결합할 수 있는 네 가지 종류의 앱타머틀 선정하고, 이의 개발을 시도하여, 그 중 첫 번째로 C-반응 단백질-결합 앱타머를 SELEX 기법을 이용하여 선별해내었다. 또한, 선별된 앱타머 염기서열에 기초하여 각각 10-mer 길이의 FDNA 와 QDNA 를 제작하고, 표적 단백질 (CRP) 과 혼합시켜 형광발현 변화의 추이를 살펴보았다. 앱타머 및 FDNA. QDNA 가 결합할 경우에는 형광감쇄효과가 발생하므로, 형광감쇄효과가 일어나지 않은 경우에 비하여 현저하게 형광측정값이 저조하게 나타나는 현상을 확인할 수 있었다. 향후 연구로, 나머지 세 가지 종류의 앱타머를 SELEX기법을 이용하여 선별해내고. 기확보된 C-반응 단백질-결합 앱타머 모듈과 함께 논리회로를 구성하는 DNA 컴퓨팅 칩을 제작할 예정이다.

  • PDF