• Title/Summary/Keyword: LC 공진회로

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CMOS Symmetric High-Q 2-Port Active Inductor (높은 Q-지수를 갖는 대칭 구조의 CMOS 2 단자 능동 인덕터)

  • Koo, Jageon;Jeong, Seungho;Jeong, Yongchae
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.10
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    • pp.877-882
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    • 2016
  • In this paper, a novel CMOS high Q factor 2-port active inductor has been proposed. The proposed circuit is designed by cascading basic gyrator-C structural active inductors and attaching the feedback LC resonance circuit. This LC resonator can compensate parasitic capacitance of transistor and can improve Q factor over wide frequency range. The proposed circuit was fabricated and simulated using 65 nm Samsung RF CMOS process. The fabricated circuit shows inductance of above 2 nH and Q factor higher than 40 in the frequency range of 1~6 GHz.

Input Current Waveform Improvenment using LC Resonant Circuit in Commercial Frequency (상용주파의 LC공진회로를 이용한 입력전류파형 개선)

  • Mun, Sang-Pil;Kim, Chil-Ryong;Kwon, Soon-Kurl;Suh, Ki-Young
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.21 no.5
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    • pp.126-132
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    • 2007
  • We propose a power factor correction scheme using a LC resonant circuit in commercial frequency without switching devices. In this method, It makes a sinusoidal wave by widening conduction period using the current resonance in commercial frequency, Hence, the harmonic characteristics can be significantly improved, where the lower order harmonics, such as the fifth and seventh orders are much reduced. The result are confirmed by the theoretical and experimental implementations

Simple Synthetic Testing Facility Using LC Resonance Circuit (LC 공진회로를 이용한 간이 합성시험설비)

  • Park, J.H.;Shin, Y.J.;Park, K.Y.;Ryu, H.G.;Kim, M.H.
    • Proceedings of the KIEE Conference
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    • 1993.07b
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    • pp.631-635
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    • 1993
  • This paper shows the procedure to determine the physical variables of the simple synthetic testing facility using LC resonance circuit and presents the calculated results of those variables for the LC resonance circuit which can be used to test circuit breakers up to 36kV 40kA class. Attention has also been paid to the advantages of the LC resonance circuit compared with the method adopting short-circuit generator for the development of circuit breakers.

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Characteristic Analyses of a Cycloconverter with a LC Resonant Circuit For a Induction Motor Drive (LC 공진회로를 이용한 유도전동기 구동용 사이크로콘버터의 특성해석)

  • Kim, Young-Seok;Cho, Kyu-Min
    • Proceedings of the KIEE Conference
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    • 1991.07a
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    • pp.573-578
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    • 1991
  • This paper presents a study on the cycloconverter with a LC resonant circuit for a induction motor drive which keeps the Input displacement factor at 1.0 by controlling real and reactive power independently under any load conditions. The input and the output current waveforms are sinusoid, and consequently Input power factor is nealy 1.0. In this paper, the operating principles of this cycloconverter, the control algorithms, the waveform analyses, and the characteristics of the system are described. The volts/hertz control of the induction motor is experimented, and the reasonability of this proposal is verified.

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Control of two-stage low-frequency square-wave electronic ballast with resonant ignition using a ZVS (ZVS를 이용한 공진 점등 저주파수 구형파 전자식 안정기 제어방법)

  • Kim, Hyung-Bae;Yoo, Chang-Gyu;Lee, Woo-Cheol
    • Proceedings of the KIPE Conference
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    • 2009.11a
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    • pp.182-184
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    • 2009
  • 본 논문은 램프 점등을 위한 공진회로와 정상상태에서의 저주파수 구형파(low frequency square-wave) 인버터 전류 제어를 실현하는 HID 전자식 안정기에 풀브리지 인버터(FB)와 LC 필터를 제안한다. 점등은 LC필터의 공진주파수에서 풀브리지 인버터 제어에 의한 공진에 의해서 이루어지고, 점등 후에 회로는 풀브리지 제어에 의해 벅컨버터 저주파수 구형파 인버터로 동작한다. 점등이 일어나는 동안의 LC필터의 공진주파수는 ($f_o$=120kHz)이고, 고조파를 감소시키고 음향공명현상을 피하기 위한 벅컨버터스위칭 주파수($f_{sw}$=50kHz)를 선택하였다.

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The Development of Chestpiece Detecting Techniques for Physical Assessment Trainer (청진 훈련 모형용 청음판 검출 알고리즘 개발)

  • Chang, In Bae;Oh, Soo Hwan;Lee, Young Seok
    • Journal of the Korean Society for Precision Engineering
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    • v.31 no.6
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    • pp.527-534
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    • 2014
  • The control system of human torso model and driving system of stethoscope for physical assessment trainer are developed. The detecting characteristics of circular pickup coil which is driven by square wave voltage signal with resonance frequency of LC circuits are investigated and it is confirmed that the pickup coil can detect the existence of chestpiece near the coil region. The control system of human torso model is composed of 8 channel pickup coils, Mp3 and Bluetooth module. The driving system of stethoscope is composed of chestpiece with contact switch and Bluetooth headset. The chestpiece detecting algorithm check the contact of chestpiece with human body model first and excite the pickup coil sequentially to find the location. The proposed system can be applied the physical assessment trainer.

Design of Dual Band LNA for Wireless LAN Using Source Feedback (소스 피드백을 이용한 무선랜용 이중대역 저잡음 증폭기 설계)

  • Jeon, Hyun-Jin;Choi, Kum-Sung;Koo, Kyung-Heon
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.44 no.7 s.361
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    • pp.23-28
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    • 2007
  • A dual-band GaAs FET low noise amplifier (LNA) with an input LC-tank circuit is designed using inductance source feedback for wireless LAN, and output matching is realized with low-pass Cheyshev filter impedance transforming circuit. Some design techniques for dual band LNA have been developed including input and output design equations. The measured results shows close agreement with the predicted performance.

Construction of Simple Synthetic Testing Facility Using LC Resonance Circuit (L-C 공진회로를 이용한 대용량 간이 합성시험 설비 구축)

  • Kwon, G.J.;Kim, D.S.;Song, W.P.;Kwon, G.Y.;Chung, J.M.;Park, K.Y.
    • Proceedings of the KIEE Conference
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    • 1999.07a
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    • pp.409-411
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    • 1999
  • This paper proposes the circuit of the simple synthetic testing facility using LC resonance circuit. EMTP has been used to analyze the circuit. The obtained results indicate that the simple synthetic testing facility using LC resonance circuit can be easily designed and used very usefully for the research and development for the switchgears.

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A Design of Electronic Ballast for 400[W] High Pressure Sodium Lamp Using IsSPICE (IsSPICE를 이용한 400[W] 고압나트륨 램프용 전자식 안정기 설계)

  • Kong, Eung-Seok;Shin, Dae-Chul;Choi, Choung-Moon
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.18 no.5
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    • pp.27-34
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    • 2004
  • In this paper, we designed the electronic ballast for the 400[W] hight pressure sodium lamp using the half-bridge inverter Inductance and capacitance in the proposed equivalent LC series resonant circuit are calculated theoretically. We performed the simulation of the LC series half-bridge inverter circuit using the IsSPICE and the electronic ballast for the high pressure sodium lamp were implemented for verifing the simulation results. In the experimental results, the specification of the implemented electronic ballast are almost same with the simulated one. The experimental results show the good performance as PF 99.3[%], $A_{THD}$ 10.01[%], lamp efficiency 119[lm/W] at the output 400[W].].

A Study on the Polarity Changing Method without Dead Time of a Cycloconverter with an LC Resonant Circuit (LG 공진회로를 이용한 사이크로컨버터의 휴지기간 없는 극성절환 방법에 관한 연구)

  • Choi, Jung-Soo;Cho, Kyu-Min;Kim, Young-Seok
    • Journal of the Korean Institute of Telematics and Electronics S
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    • v.35S no.9
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    • pp.111-117
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    • 1998
  • This paper presents a polarity changing method without dead time of a cycloconverter with an LC resonant circuit. According to the proposed method, dead time to prevent short circuit for the polarity changing is not required. Therefore the delay of control and the harmonic components of output currents can be decreased. And the proposed method can be expanded for the other natural commutated cycloconverters of noncirculating current type. In this paper, the switching method of the proposed polarity changing without dead time is studied, and in order to confirm the validity of the proposed method the experiment is carried out with a cycloconverter with an LC resonant circuit.

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