• Title/Summary/Keyword: superstrate layer

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A High-Gain Microstrip Patch Array Antenna Using a Superstrate Layer

  • Choi, Won-Kyu;Cho, Yong-Heui;Pyo, Cheol-Sik;Choi, Jae-Ick
    • ETRI Journal
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    • v.25 no.5
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    • pp.407-411
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    • 2003
  • A dielectric superstrate layer above a microstrip patch antenna has remarkable effects on its gain and resonant characteristics. This paper experimentally investigates the effect of a superstrate layer for high gain on microstrip patch antennas. We measured the gain of antennas with and without a superstrate and found that the gain of a single patch with a superstrate was enhanced by about 4 dBi over the one without a superstrate at 12 GHz. The impedance bandwidths of a single patch with and without a superstrate for VSWR < 2 were above 11%. The designed $2{\times}8$ array antenna using a superstrate had a high gain of over 22.5 dB and a wide impedance bandwidth of over 17%.

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Radiation Characteristics of Microstrip Antenna on the Cylindrical Bianisotropic Substrates Loaded bianisotropic superstrate

  • Yoon, Joong-Han;Lee, Sang-Mok;Park, Byung-Ha
    • Proceedings of the IEEK Conference
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    • 1999.06a
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    • pp.885-888
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    • 1999
  • Radiation characteristics of axial elementary current source on the cylindrical bianisotropic substrateloaded with bianisotropic superstrate layer are presented. The effects of bianisotropic superstrate cover on the radiation problems of a microstrip antenna are studied. This investigation is performed by using the Green function formulation in the spectral domain. Numerical results for the radiation pattern of the bianisotropic superstrate-loaded microstrip antenna is analyzed.

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Optimization of ZnO:Al properties for $CuInSe_2$ superstrate thin film solar cell

  • Lee, Eun-U;Park, Sun-Yong;Lee, Sang-Hwan;Kim, U-Nam;Jeong, U-Jin;Jeon, Chan-Uk
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2010.05a
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    • pp.36.1-36.1
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    • 2010
  • While the substrate-type solar cells with Cu(In,Ga)Se2 absorbers yield conversion efficiencies of up 20%[1], the highest published efficiency of Cu(In,Ga)Se2 superstrate solar cell is only 12.8% [2]. The commerciallized Cu(In,Ga)Se2 solar cells are made in the substrate configuration having the stacking sequence of substrate (soda lime glass)/back contact (molybdenum)/absorber layer (Cu(In,Ga)Se2)/buffer layer (cadmium sulfide)/window layer (transparent conductive oxide)/anti reflection layer (MgF2) /grid contact. Thus, it is not possible to illuminate the substrate-type cell through the glass substrate. Rather, it is necessary to illuminate from the opposite side which requires an elaborate transparent encapsulation. In contrast to that, the configuration of superstrate solar cell allows the illumination through the glass substrate. This saves the expensive transparent encapsulation. Usually, the high quality Cu(In,Ga)Se2 absorber requires a high deposition temperature over 550C. Therefore, the front contact should be thermally stable in the temperature range to realize a successful superstrate-type solar cell. In this study, it was tried to make a decent superstrate-type solar cell with the thermally stable ZnO:Al layer obtained by adjusting its deposition parameters in magnetron sputtering process. The effect of deposition condition of the layer on the cell performance will be discussed together with hall measurement results and current-voltage characteristics of the cells.

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High Gain Metamaterial Patch Antenna for 2.4GHz Band using New Metamaterial Single-Layer (새로운 메타물질 Single-Layer를 이용한 2.4GHz 대역을 위한 고 이득 메타물질 패치 안테나)

  • Park, Kwan-Young;Yang, Seung-In
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.6
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    • pp.56-61
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    • 2013
  • In this paper, a high gain patch antenna using a single layer metamaterial superstrate with a near-to-zero refractive index (n) is proposed. Simulations for an ordinary patch antenna and our proposed metamaterial patch antenna were conducted. Our proposed metamaterial patch antenna was implemented and measured. The gain of our proposed metamaterial patch antenna is 6.77dB higher than that of an ordinary patch antenna.

Design of Thin Frequency Selective Surface Superstrates for Dual-Band Directivity Enhancement (이중 대역 지향성 증가용 박판 주파수 선택적 표면의 설계)

  • Lee Dong-Hyun;Lee Young-Ju;Yeo Jun-Ho;Mittra Raj;Park Wee-Sang
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.7 s.110
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    • pp.648-658
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    • 2006
  • We propose a thin frequency selective surface(FSS) superstrate etched on a substrate for dual-band directivity enhancement, and present a design method of the superstrate. In the proposed new design, two FSS arrays with the same periodicity, but with different alignments are placed above and below a thin dielectric layer to overcome the problem of conventional superstrates for dual band directivity enhancements. Based on the unit-cell simulation, several important parameters that characterize the thin FSS superstrate are investigated, and the procedure for designing such a superstrate is described. We compare the resonant frequencies and the qualify factors of the unit cell with those of three FSS antenna composites with different quality factors, and identify the quality factors which support similar directivity enhancement at the dual-band directivity enhancement. It was found that there is an optimum FSS array size of a superstrate to enhance the directivity most efficiently. Measured results for a fabricated superstrate show a good agreement with the simulated ones.

Double-Layered Frequency Selective Surface Superstrate Using Ring Slot and Dipole-Shaped Unit Cell Structure

  • Lee, Hong-Min;Kim, Yong-Jin
    • Journal of electromagnetic engineering and science
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    • v.10 no.3
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    • pp.86-91
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    • 2010
  • In this paper, a double-layered frequency selective surface(FSS) superstrate was built and tested. The unit cell of the proposed FSS consists of a ring slot and a dipole-shaped structure and shows a complementary frequency response. Each unit cell is printed on two sides of a substrate. By using these double-layered structures, the first resonant frequency of the pass-band can be lowered. As a result, the size of the unit cell is minimized and the spacing between the other cells is reduced. The proposed FSS-dipole composite antenna is designed for the gain enhancement of wide-band code division multiple access(WCDMA) frequency bands(1.92~2.17 GHz) with a low quality factor(Q=0.17). To verify the gain enhancement performance of the FSS, an FSS-dipole composite antenna was created. Although the FSS layer enhances the gain of the primary radiation source of the dipole antenna, the FSS-dipole complex antenna cannot show a uniform gain over the entire desired frequency band. The experimental results show a gain enhancement of 3 dBi with an FSS superstrate in the WCDMA frequency band.

Radiation Pattern in Rectangular Microstrip Patch Antenna with Anisotropy Substrates and Superstrate (이방성 매질의 기판과 덮개층을 갖는 마이크로스트립 패치 안테나의 방사패턴)

  • Yoon, Joong-Han;Lee, Hwa-Choon;Kwak, Kyung-Sup
    • Journal of IKEEE
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    • v.7 no.1 s.12
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    • pp.32-42
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    • 2003
  • In this paper, radiation pattern of rectangular microstrip patch antenna with anisotropy substrates and superstrate is studied by using a rigorous full-wave approach and a moment method calculation. Dyadic Green's function is derived for selected anisotropy material by constitutive relation. From these results, integral equations of electric fields are formulated. The electric field integral equations are discretized into the matrix form by applying Galerkin's moment method and then the current coefficients are obtained.. After solving the current coefficients, the far-zone electric field in spherical coordinates can be obtained by using the stationary phase method. To verify the validity of numerical result, we compare our result with existing one and get a good agreement between them. From the numerical results, the radiation patterns for variation of uniaxial superstrate thickness, anisotropy ratio of substrate and superstrate layer are presented and analyzed.

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Analysis of a Circular Microstrip Patch Antenna with Dielectric Superstrate using the Rigorous Probe Feed Model (정확한 급전 구조를 고려한 레이돔 원형 패치 안테나 해석)

  • 최동혁;박경빈;박성욱
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.6
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    • pp.859-867
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    • 2000
  • In order to analyze the effect of a cover layer or radome for an antenna, the moment method is applied to the analysis of the circular microstrip patch antenna with dielectric superstrate fed by coaxial probe. The probe feed is modeled as a attachment mode method which can solve more exact analysis. In case of a ideal probe feed modeling, the probe self-impedance as well as the rapidly-varying patch current at the vicinity of the feed point was neglected. But a rigorous probe feed model which overcomes these deficiencies are developed, and used in the analysis of isolated circular patches. Measurements were performed to validate the numerical results. These are good agreement with each other.

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The Development of Land Mobile Communication Microstrip Antenna Using Superstrate Effect (유전체 덮개층 효과를 이용한 이동통신용 마이크로스트립 안테나의 개발에 관한 연구)

  • Hong-Min Lee
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.8 no.3
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    • pp.243-253
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    • 1997
  • In land mobile communications, incident waves to mobile antenna com mostly from directions having low elevation angles about $60^{\circ}$ down from the vertical plane. In order to receive this waves effectively, planar type antenna was fabricated and its characteristics were analyzed. This type of antenna is achieved using superstrate effect criteria which are derived for a nonzero radiation field extending down to the substrate layer surface plan. A small planar type microstrip antenna which can receive incident waves having low elevation angle was fabricated. Experimental results show that the band width of the fabricated antenna is 70 MHz at 1.2 GHz and have nonzero field down to the layer surface.

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Effect of Complexing/Buffering Agents on Morphological Properties of CuInSe2 Layers Prepared by Single-Bath Electrodeposition

  • Lee, Hana;Lee, Wonjoo;Seo, Kyungwon;Lee, Doh-Kwon;Kim, Honggon
    • Current Photovoltaic Research
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    • v.1 no.1
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    • pp.44-51
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    • 2013
  • For preparing a device-quality $CuInSe_2$ (CISe) light-absorbing layer by single-bath electrodeposition for a superstrate-type CISe cell, morphological properties of the CISe layers were investigated by varying concentrations of sulfamic acid and potassium biphthalate, complexing/buffering agents. CISe films were grown on an $In_2Se_3$ film by applying a constant voltage of -0.5V versus Ag/AgCl for 90 min in a solution with precursors of $CuCl_2$, $InCl_3$, and $SeO_2$, and a KCl electrolyte. A dense and smooth layer of CISe could be obtained with a solution containing both sulfamic acid and potassium biphthalate in a narrow concentration range of combination. A CISe layer prepared on the $In_2Se_3$ film with proper concentrations of complexing/buffering agents exhibited thickness of $1.6{\sim}1.8{\mu}m$ with few undesirable secondary phases. On the other hand, when the bath solution did not contain either sulfamic acid or potassium biphthalate, a CISe film appeared to contain undesirable flake-shape $Cu_{2-x}Se$ phases or sparse pores in the upper part of film.