• Title/Summary/Keyword: planar microstrip

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Design and fabrication of the 2.4 to 2.5 GHz voltage controlled oscillator using microstrip patch antenna (마이크로스트립 패치 안테나를 이용한 2.4 ~ 2.5GHz 에서 동작하는 전압 조정 발진기의 설계 및 제작)

  • 황재호;명노훈
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.33A no.2
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    • pp.78-86
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    • 1996
  • Solid-state devices can be directly integrated with a planar antenna to form active antenna elements. In this paper, the voltage controlled oscillator (VCO) is designed and fabricated at 2.4 to 2.5 GHz using a microstrip patch antenna. A varactor diode is used as avariable reactance. The predicted frequency tuning range of the VCO is 2.448 to 2.498 GHz in the design procedure and the fabricated VCO has 2.446 to 2.498 GHz frequency tuning range when the varactor tuning voltage is varied from 0 to 11V. Transmitted power output of the patch antenna which serves both as a rsonator and a radiating element for VCO is about 18 mW over this tuning range.

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The radiation pattern calculation of the electromagnetically coupled microstrip dipole array antenna using the FDTD method (FDTD 방법을 이용한 전자기결합 마이크로스트립 다이폴 배열안테나의 복사패턴 계산)

  • 손영수;윤현보
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.22 no.7
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    • pp.1459-1467
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    • 1997
  • The current on the thin planar structure as an element of the transversely fed electromagnetically coupled(EMC) microstrip dipole array antenna is obtained by using the integral forms of the finite difference time domain(FDTD) method. This method was applied to calculating the optimum current distribution (Doplh-Tchebyscheff distribution) of each dipole element on the feed line as a function of their offset positions for the narrow main beam width and the side beam level below -20 dB. The current on each dipole substitutes for the electric and magnetic current densities on the virtual surface of the FDTD calculation to express the far field intensity, the calculation time and the computer memeory can be reduced to about 80% and 1.3 Mbyte, respectively. The calculated radiation patterns are compared to the measured values and these are in good agreement.

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Extraction of Design Parameters for Planar Coupled Lines (유한 요소 해석에 의한 평면형 결합 선로의 설계 파라미터 추출)

  • Lee, Pil-Yong;Park, Jun-Seok;Ahn, Dal;Kim, Hysons-Seok
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.2213-2215
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    • 2000
  • In this paper we implemented a novel re-entrant mode microstrip directional coupler for realizing the high directivity characteristic using finite element (FE) analysis. In microstrip configuration, the high directivity can be reached by matching the even- and odd-mode effective phase velocities. Through the values of capacitance obtained from 2-dimensional finite element(FE) analysis, the phase velocities for each mode and the design parameter were extracted for the proposed coupled-line configuration. Based on the extracted design parameter with phase matching condition we designed and fabricated 30dB directional coupler at 850MHz. Experimental results show good performance with excellent isolation.

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Analysis of Phase Velocity Matching in Coupled Microstrip Lines with Dielectric Overlay

  • Lee, Yong K.;Seung Y. Rhee;Kim, Nam;Park, Han K.
    • Journal of Electrical Engineering and information Science
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    • v.1 no.2
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    • pp.96-100
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    • 1996
  • This paper describes a concrete method for computing characteristic impedances and effective dielectric constants of the microstrip coupled lines without and with a dielectric overlay. The frequency-independent spectral domain method is used for the analysis of these lines. This method is a powerful, accurate, and numerically efficient approach for planar transmission line structure. For designing the optimal directional coupler, the velocities of even and odd mode must be equal but velocities of these two modes are different in the conventional coupled line which is inhomogeneous. The results show that these two velocities can be almost same according to variations of structural and material parameters in terms of the overlay(superstrate).

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Modified Slot-Loaded Multi-Band Microstrip Patch Antenna

  • Cho, Man-Shik;Kim, Il-Kwon;Cho, Han-Back;Yook, Jong-Gwan;Park, Han-Kyu
    • Journal of electromagnetic engineering and science
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    • v.3 no.1
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    • pp.23-28
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    • 2003
  • In this paper, a triple-band planar antenna is proposed for the application to miniaturized automobile safety devices operating at X band(10.5 ㎓), K band(24.15 ㎓), and Ka band(34.3 ㎓). The frequency ratio between the resonant frequencies of this antenna can be adjusted from 1.99 to 2.23 for both X band and K band by varying its slit length. Parasitic elements are added on the modified slot loaded antenna to obtain the third resonance. From numerical as well as experimental results, it has been confirmed that this type of antenna is appropriate for planar multi-band antenna systems.

Design of Planar Microwave Bandstop Filters by Control of Wave Propagation on Nonuniform Transmission Line

  • Park, Eui-Joon
    • Journal of Electrical Engineering and information Science
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    • v.2 no.5
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    • pp.114-120
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    • 1997
  • A design method is newly presented for the creation of planar type filters which shapes will be nonuniform transmission line with continuously varying characteristic impedances. Those filters yield frequency characteristics of the bandstop filter in transmission, and have not nay discontinuities. The design is achieved by the control of wave propagation in view to both reflection an transmission properties on the dispersive nonuniform line within the desired frequency band. The developed algorithm is based on optimized perturbations of inherent nulls of lobes from the solution of first-order nonlinear differential equation for reflection coefficients of the nonuniform line, and an appropriate distribution of reflection coefficient which affects to filter length and bandwidth. Practical measurements for designed wideband microstrip and stop filter show very good agreement with theoretical results.

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Interconnection structures of bilevel microstriplines using electromagnetic coupling (전자기적 결합을 이용한 이층 마이크로스트립선로의 접속 구조)

  • 박기동;이현진;임영석
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.32A no.8
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    • pp.47-55
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    • 1995
  • Proximity-coupled open-end microstrip interconnections in bilevel planar structures are investigated through three-dimensional finite-difference time-domain(3D-FDTD) method. Three types of EMC (electromagnetically coupled) microstriplines are considered, collinear lines, transverse lines and modified EMC structure. From the analyzed results, it is found that these EMC interconnections have the coupling coefficient enough to interconnect lines in bilevel structures over a broad-band. The computed results of the modified EMC structure was compared with measurement from physical model and the computed results of via hole interconnection.

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Open loop resonator diplexer applying conjugate matching (복소 매칭을 이용한 Open Loop Resonator 다이플렉서)

  • Paek, Hyun;Han, Hyeong-Seok;Kim, Hyeong-Seok
    • 한국정보통신설비학회:학술대회논문집
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    • 2008.08a
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    • pp.425-428
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    • 2008
  • A new type of cross-coupled planar microwave filter using coupled microstrip square open-loop resonators diplexer pro-posed. A method for the rigorous calculation of the coupling coefficients of basic four pole electric and magnetic coupling structures encountered. Simple empirical models are derived for estimation of the coupling coefficients. Experiments are performed to verify the theory. And a method for diplexer matching is conjugate matching that has characteristic better than open matching method.

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Design for Trapezoidal Planar UWB Antenna Using Symmetry Meander Feedline (대칭 미앤더 급전 선로를 이용한 사다리꼴 평면 UWB 안테나 설계)

  • Kim, Tae-Geun;Min, Kyeong-Sik
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.20 no.8
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    • pp.739-745
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    • 2009
  • This paper presents a design for trapezoidal planar UWB(Ultra Wide-band) antenna using symmetry meander line to realize broad bandwidth at low frequency region. The size of proposed design antenna is $15.5{\times}21{\times}1.6mm^3$ and dielectric substrate considered in design has 4.4 of relative permittivity. The calculated bandwidth is from 1.31 GHz to 10.83 GHz and the measured return loss is 1.5 GHz to 10.6 GHz at -10 dB below, and satisfies with the UWB antenna's bandwidth. The simulated and measured radiation patterns show fine agreement with each other at each frequency.

Design of Planar Power Divider Combiner for K-Band and Improvement of Impedence Matching Condition (K-밴드 평면형 Power Divider / Combiner와 정합특성에 관한 연구)

  • 나극환;홍의석;강준길;김춘길
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.14 no.6
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    • pp.579-589
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    • 1989
  • In this paper, planar power dividers/combiners for millimeter waves K-band or bands which can be printed on the substrates of hybrid or monolithic IC by surface mounting are designed and studied. Power dividers/combiners, and the conductor loss of microstrip lines in particualr the existing Wilkinson power dividers/combiners is modified ad amployes by ist equivalent circuit. Microwave CAD program SUPEROMPACT is employed for the Wilkinson power combiner which is modified and analyzed to reduce the high frequency coupling between the branches of the combiner, and the method to diminish the sensitivity of the input reflection of $2^n$-way power dividers/combiners is studied employing the commerical microwave CAD program package SUPERCOMPACT.

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