• Title/Summary/Keyword: unit circuit block

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Thermal-hydraulic Design of A Printed-Circuit Steam Generator for Integral Reactor (일체형원자로 인쇄기판형 증기발생기 열수력학적 설계)

  • Kang, Han-Ok;Han, Hun Sik;Kim, Young-In
    • The KSFM Journal of Fluid Machinery
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    • v.17 no.6
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    • pp.77-83
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    • 2014
  • The vessel of integral reactor contains its major primary components such as the fuel and core, pumps, steam generators, and a pressurizer, so its size is proportional to the required space for the installation of each component. The steam generators take up the largest volume of internal space of reactor vessel and their volumes is substantial for the overall size of reactor vessel. Reduction of installation space for steam generators can lead to much smaller reactor vessel with resultant decrease of overall cost for the components and related facilities. A printed circuit heat exchanger is one of the compact types of heat exchangers available as an alternative to conventional shell and tube heat exchangers. Its name is derived from the procedure used to manufacture the flat metal plates that form the core of the heat exchanger, which is done by chemical milling. These plates are then stacked and diffusion bonded, converting the plates into a solid metal block containing precisely engineered fluid flow passages. The overall heat transfer area and pressure drops are evaluated for the steam generator based on the concept of the printed circuit heat exchanger in this study. As the printed circuit heat exchanger is known to have much larger heat transfer area density per unit volume, we can expect significantly reduced steam generator compared to former shell and tube type of steam generator. For the introduction of new steam generator, two design requirements are considered: flow area ratio between primary and secondary flow paths, and secondary side parallel channel flow oscillation. The results show that the overall volume of the steam generator can be significantly reduced with printed circuit type of steam generator.

A Study on Characteristic Analysis of AC to AC Current-Fed Type High Frequency Resonant Inverter with High Power Factor (고역율 AC/AC 전류형 고주파 공진 인버터의 특성해석에 관한 연구)

  • Kim, Jong-Hae;Won, Jae-Sun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.28 no.1
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    • pp.16-28
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    • 2014
  • This paper presents a novel high-power-factor circuit topology of AC to AC current-fed type high frequency resonant inverter which includes the function of power factor correction(PFC) in the proposed inverter to operate the AC input block with high power factor. The proposed circuit topology of AC to AC current fed type high resonant inverter removes DC link electrolytic capacitor and has also the one of power factor correction(PFC) in the inverter circuit without an additional PFC circuit since the input current by constituting it in parallel as an unit inverter, which assumes the class-E high frequency resonant inverter of conventional current-fed type, flows in the form of the resultant current flowing through each constant current reactor($L_{d1}$, $L_{d2}$). The circuit analysis of proposed inverter is generally described by adopting the normalized parameters and the evaluation of its operating characteristics are conducted by using the parameters such as the ratio of switching and resonant frequency(${\mu}$), coupling coefficient(k) and so on. An example of procedure for circuit design based on the characteristic values obtained from the theoretical analysis is presented. To confirm the validity of the theoretical analysis, the experimental results are also presented. In the future, the proposed inverter shows it can be practically used as power supply system for induction heating application, DC-DC converter etc.

Modeling and analysis of radiation effects for 1-D RLH-TL (1차원 RLH-TL 방사효과 모델링 및 해석)

  • Moon, Hyo-Sang;Lee, Bom-Son
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.44 no.12
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    • pp.8-15
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    • 2007
  • This paper presents the radiation rate formula due of a inclusion of a series capacitor and shunt inductor in a unit cell for the right/left-handed transmission line (RLH-TL). The equivalent circuit for a RLH unit cell considering radiation effects is presented and analyzed in terms of the Bloch impedance and dispersion diagram. It has been found that when two radiation rates are identical, the Blockimpedance reduces to the characteristic impedance of the host conventional RH-TL. Besides, design equations for a unit cell for a specific phase shift at a given frequency are provided. The method of realizing uniform excitation along the RLH-TL is also proposed for antenna applications.

A Field test of an Integrated Electronic Block System for verification of the suitability (통합형 전자폐색제어장치의 적합성 확인을 위한 현장시험)

  • Kim, Young-June;Baek, Jong-Hyen
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.12
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    • pp.6427-6433
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    • 2013
  • For trains to run safely and quickly, the train should always follow the preceding train at a proper spacing. For this purpose, a certain distance between the stations is set for each block section. For the safe operation of trains in one block section, only one train service for an automatic block system is needed. The existing block system is composed an ABS, which is a linked track circuit and line sideway system through the interlocking system. The interlocking system is being replaced with a domestic electronic interlocking system. On the other hand, the block system still uses the relay format of an analog system, and is independently installed of the line sideway systems. Therefore, the existing block system has many problems in terms of construction and maintenance. In addition, the existing domestic line is used for ABS and LEU , which is installed separately, despite the train being controlled by the information of the same signal at the same location. This is not efficient in terms of each product price and the maintenance costs. This paper introduces an integrated electronic block system and the field test results. The field test was carried out through a periodic inspection performed eight times from January to late August.

Structure and Implementation of Fully Interconnected ATM Switch (Part II : About the implementation of ASIC for Switching Element and Interconnected Network of Switch) (완전 결합형 ATM 스위치 구조 및 구현 (II부 스위치 엘리먼트 ASIC화 및 스위치 네트워크 구현에 대하여))

  • 김경수;김근배;박영호;김협종
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.21 no.1
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    • pp.131-143
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    • 1996
  • In this paper, we propose the improved structure of fully interconnected ATM Switch to develop the small sized switch element and represent practical implementation of switch network. As the part II of the full study about structure and implementation of fully interconnected ATM Switch, this paper especially describes the implementation of an ATM switching element with 8 input port and 8 output port at 155 Mbits/sec each. The single board switching element is used as a basic switching block in a small sized ATm switch for ATM LAN Hub and customer access node. This switch has dedicated bus in 12 bit width(8 bit data + 4 bit control signal) at each input and output port, bit addressing and cell filtering scheme. In this paper, we propose a practical switch architecture with fully interconnected buses to implement a small-sized switch and to provide multicast function withoutany difficulty. The design of switching element has become feasible using advanced CMOS technology and Embedded Gate Array technology. And, we also represent Application Specific Integrated Circuit(ASIC) of Switch Output Multiplexing Unit(SOMU) and 12 layered Printed Circuit Board for interconnection network of switch.

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Implementation of Single-Phase Energy Measurement IC (단상 에너지 측정용 IC 구현)

  • Lee, Youn-Sung;Seo, Hae-Moon;Kim, Dong Ku
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.40 no.12
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    • pp.2503-2510
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    • 2015
  • This paper presents a single-phase energy measurement IC to measure electric power quantities. The entire IC includes two programmable gain amplifiers (PGAs), two ${\sum}{\Delta}$ modulators, a reference circuit, a low-dropout (LDO) regulator, a temperature sensor, a filter unit, a computation engine, a calibration control unit, registers, and an external interface block. The proposed energy measurement IC is fabricated with $0.18-{\mu}m$ CMOS technology and housed in a 32-pin quad-flat no-leads (QFN) package. It operates at a clock speed of 4,096 kHz and consumes 10 mW in 3.3 V supply.

A Low Power 16-Bit RISC Microprocessor Using ECRL Circuits

  • Shin, Young-Joon;Lee, Chan-Ho;Moon, Yong
    • ETRI Journal
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    • v.26 no.6
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    • pp.513-519
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    • 2004
  • This paper presents a low power 16-bit adiabatic reduced instruction set computer (RISC) microprocessor with efficient charge recovery logic (ECRL) registers. The processor consists of registers, a control block, a register file, a program counter, and an arithmetic and logical unit (ALU). Adiabatic circuits based on ECRL are designed using a $0.35{\mu}m$ CMOS technology. An adiabatic latch based on ECRL is proposed for signal interfaces for the first time, and an efficient four-phase supply clock generator is designed to provide power for the adiabatic processor. A static CMOS processor with the same architecture is designed to compare the energy consumption of adiabatic and non-adiabatic microprocessors. Simulation results show that the power consumption of the adiabatic microprocessor is about 1/3 compared to that of the static CMOS microprocessor.

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Development of PC based High Voltage Generator for Dental CT (PC기반 치과 CT용 고전압 펄스 발생장치 개발)

  • Kim, Hack-Seong;Oh, Jun-Yong;Song, Sang-Hoon;Won, Choong-Yeon
    • Proceedings of the KIPE Conference
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    • 2008.06a
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    • pp.580-582
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    • 2008
  • The object of this paper is develope the PC based controlled high voltage power supply and studies 1.2kW(120kV, 10mA) pulse power X-ray generator possible to adapt fluoroscopy of Dental CT X-ray generator and industrial X-ray pulse power equipment. The developed pulse power X-ray generator consisted of mono-block tank include X-ray tube and high voltage X-ray power supply circuit and high voltage control unit with RS232C/422 communication port. The PC control program of pulse power X-ray generator uses LabVIEW, and the size of high voltage transformer and high voltage generator is minimized by high voltage high frequency inverter has 100kHz switching frequency. Also this paper shows result of X-ray tube voltage and tube current correspond to variable load.

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Efficient ACS Design for High Speed Viterbi Decoder (고속 비터비 디코더를 위한 효율적인 ACS 설계)

  • Lee, Seul-Ki;Kim, In-Soo;Min, Hyoung-Bok;Ryu, Joong-Kyung
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.2273-2274
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    • 2008
  • It respects the high speed of the Bitter expense decoder from the present paper ACS (Add Compare Select) block structures of new method it proposed. It became component anger of existing and it substituted it added all input price it predicted with the method which reduces the operation which is unnecessary it chose respectively ACS unit and a union logical operation circuit and the result after operation one in advance.

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A Study on Heat Transfer Performances of a Heat Pipe Heat Sink for Power Control Semiconductors (전력제어 반도체용 히트파이프 냉각기의 열전달 성능 연구)

  • 강환국;김재진;김철주
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.13 no.8
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    • pp.701-709
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    • 2001
  • In this days, heat pipe heat sink has been widely applied to power controllers for railway substations to remove heat from power semiconductors(diodes or thyristors). The heat pipe heat sink consists of a aluminum heating block for mounting the thyristor, 2~3 heat pipes and large number of aluminum fins. The present study was to get fundamental informations of the structure, design parameters and heat transfer performances of heat pipe heat sink. Series of operational test for a unit with 3 heat pipes were performed and its heat flow circuit was analysed from the experimentally obtained data on wall temperature distribution. Total resistance was ranged 0.02~$0.03^{\circ}C$/W for a power range from 40W to400W. The time to get the steady state was approximately longer than 20 minutes, and overshooting was not occurred during start up operation.

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