• Title/Summary/Keyword: Directional coupler

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Design and implementaton of a 2 stage directonal coupler using interdigital capacitors (Interdigital 커패시터를 이용한 2단 방향성 결합기의 설계 및 제작)

  • 이승철;심부석;이종형;한대현
    • Proceedings of the IEEK Conference
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    • 2003.07a
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    • pp.338-341
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    • 2003
  • In this paper, we designed and implemented a microstrip directional coupler that has high directivity at 2.14 GHz. To design coupler that has high directivity, we used interdigital capacitors instead of lumped elements. The measured results show the diretivity is higher than 30 dB at 2.14 GHz.

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Implementation of a Waveguide Cross Guide directional Coupler for Ku-Band using Polynomial Approximations for the Polarizabilities of the Rounded End Slot (끝이 둥근 슬롯의 분극률에 대한 다항 근사식을 이용한 Ku-Band용 도파관 십자형 방향성 결합기 제작)

  • 유경완;이재현;박광량;김재명
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.31A no.8
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    • pp.7-15
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    • 1994
  • In this paper, the directional coupler for Ku-band, which is designed is of the crossguide type with a coupling value of about 3-dB. The apertures chosen for this design are crosses. We used polynomial approximations of rounded end slot to obtain the electric and magnetic polarizability of crossed-slot and compared the results with Cohn's experimental results. The optimized dimensions and positions of the cross aperture are obtained by a trial-and-error reiteration of the program. This paper presents the measurement results for the designed coupler. The very flat coupling shows a total variation of only 29.80$\pm$0.04dB for the design frequency ranges of 12.25GHz-12.75GHz. The measured minimum directivity is 25dB. The aperture attenuation for the finite diaphragm thickness is about 2dB pr 0.5mm, which is in agreement with the theoretical value. The transmission loss and input return loss at center frequency are 0.0564dB and 48.16dB respectively. We obtained the measured minimum directivity of the coupler. Whose apertures are both circles is better than that containing holes in the performance of directivity.

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Design of Polarization-Insensitive Directional Couplers and Multimode Interference Couplers Integrated with Bragg Grating Waveguide (Bragg 격자구조가 집적된 편광 무의존성 방향성 결합기와 다중모드 간섭 결합기의 설계)

  • Ho, Kwang-Chun
    • Korean Journal of Optics and Photonics
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    • v.18 no.5
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    • pp.295-302
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    • 2007
  • This paper presents a rigorous comparison of the design characteristics of polarization-insensitive directional coupler (DC) and multimode interference (MMI) coupler based on rib type waveguides, by using longitudinal modal transmission-line theory (L-MTLT). It shows that the multimode mixing and interference property of MMI can be structurally designed through the continuous evolution of the two-mode coupling property of DC. It also compares and analyzes the coupling efficiency along with the coupling length and the wavelength between polarization-insensitive DC and MMI. From the design properties obtained, it demonstrates for the first time the integration of polarization-insensitive DC or MMI with a Bragg grating and evaluates precisely the filtering characteristics. The numerical results reveal that the DC, as long as it is designed to have the same coupling length for TE and TM modes, has better performance than the MMI in polarization-insensitive filtering behaviour. However, it shows that the MMI with much less coupling length than DC is preferred in the miniaturization of integrated devices.

A Study on the Design of the Directional Coupler using Three Layer Microstrip Substrate (세 층 마이크로스트립 유전체 기판을 이용한 방향성 결합기 설계에 관한 연구)

  • 천동완;김원기;박정훈;김상태;신철재
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.4
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    • pp.513-520
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    • 2001
  • In this paper, the directional coupler using three layer microstrip substrate is proposed and the design method is notified. Modified re-entrant mode coupler is the proposed structure that one layer is added on upper plane of coupled transmission lines and the floating conductor is placed on added layer's upper planes. This structure has high coupling for the increase of odd mode capacitance and also has good performance in VSWR, isolation, phase difference because the difference of effective permittivity is small in each mode. We have designed the coupler from the calculation of impedance, effective permittivity, coupling coefficient using even, odd mode analysis method. From the simulation and measurement, proposed coupler has about 2 dB more tighter coupling than conventional coupler and also has good performance in VSWR, isolation, phase difference.

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CPW Directional Couplers with Enhanced Directivity Via Center-Elimination of Backed Conductor (Backed Conductor의 Center-Elimination을 통한 향상된 방향성을 갖는 CPW 방향성 결합기의 설계)

  • 박정훈;이창언;최경민;신철재
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.12
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    • pp.1321-1328
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    • 2003
  • In this paper, we demonstrate that the directivity of the CPW(Coplanar Waveguide) directional coupler with finite-extent backed conductor is enhanced by eliminating center region of backed conductor appropriately. If the backed conductor is removed at center region of couplers, the couplers have two backed conductors. If effective odd mode dielectric constant is decreased at center region, the electrical length for odd mode is changed and phase velocity is same at the directional couplers. Hence, directivity is improved. The eliminated length is solved by an odd and even mode analysis. The designed moderate CPW directional coupler with the proposed compensation structure has excellent directivity and matching characteristic at center frequency in simulation and measurement.

Optical Power Transfer of Grating-Assisted Directional Coupler with Three-Guiding Channels: TM modes Case

  • Ho, Kwang-Chun
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2003.11a
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    • pp.126-130
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    • 2003
  • The optical power transfer of TM modes in grating-assisted directional couplers (GADCs) with three-guiding channels is rigorously evaluated by defining a novel coupling efficiency amenable to the rigorous analytical solutions of modal transmission-line theory (MTLT). The results reveal that the incident power is sensitively partitioned through three output channels in terms of such grating parameters as the period, the duty cycle, and wavelength.

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Design of Coupling and Rectifying Circuit for Monitoring of Transmitting Power of Maritime VHF Modem (해상 VHF 모뎀의 송신전력 모니터링을 위한 결합기 및 정류회로 설계)

  • Kim, Seung-Geun;Sung, So-Young;Lim, Young-Kon;Park, Dong-Kook
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.14 no.12
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    • pp.2642-2648
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    • 2010
  • The design of coupling and rectifying circuits for the maritime VHF digital modem is investigated in this paper. To monitor the transmitting power of the modem, a directional coupler which is used to extract a small fraction of the transmitter signal power, and a rectifying circuit which make DC voltage proportional to the coupled rf power are designed and fabricated. The parallel-coupled line coupler with directivity of above 25 dB at 160 MHz bands is designed and it is shown that the output voltage of the rectifying circuit is linearly changing from 0.85 V to 1.6 V when the transmitting power of the modem is varying from 1 W to 25 W. The proposed coupler and rectifying circuits are expected to be suitable for maritime VHF digital modem.

Implementation of Novel Bio-sensor Platform based on Optical Taper Coupler (광 테이퍼 결합기에 기초한 새로운 바이오-센서 플랫폼의 구현)

  • Kwang-Chun Ho
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.23 no.5
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    • pp.145-150
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    • 2023
  • Non-uniform optical taper waveguides have been widely used as devices for high-efficiency mode coupling, as they are integrated with single-mode optical fibers or photonic crystal waveguides. In this paper, we present a new platform for chemical sensing and bio-sensing using optical taper waveguides with these characteristics. The principle of operation is based on the coupling efficiency and interference properties of optical directional coupler (DC) and multi-mode interference coupler (MMIC). First, the curvature characteristics of taper sections of DC and MMIC is explained, and the design specifications of optimized taper waveguide to increase waveguide sensitivity is selected. Next, the sensor response to the change in refractive index of sensing analyte is numerically analyzed. Numerical results show that as the length of couplers increases, the effective index per change in refractive index unit (RIU) of analyte increases, and that sensitivity can be tuned using taper DC and MMIC design techniques.

Design of Ulta-short Fused Vertical Coupler Switches Composed of Two Sections (두 개의 영역으로 구성된 매우 짧은 길이를 가지는 융합된 수직 방향성 결합 스위치 설계)

  • Cho, Sung-Chan;Seol, Jong-Chol;Kim, Boo-Gyoun
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.37 no.10
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    • pp.42-50
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    • 2000
  • We show that both cross and bar states with high extinction ratios larger than 30dB can be achieved at eh same ends of ultra-short fused vertical directional coupler switches with two sections by changing the refractive indices of cores and inner cladding layers less than 1%. Based on the calculation of extinction ratios of cross state and bar state for various refractive index and thickness of inner cladding layer and core using the improved coupled mode theory and beam propagation method, the guidelines for design to achieve large tolerances in refractive indices of core and inner cladding layer in fused vertical directional coupler switches are presented.

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Implementation of Novel Bio-sensor Platform based on Optical MMI and Directional Coupler (광 MMI와 방향성 결합기에 기초한 새로운 바이오 센서 플랫폼의 구현)

  • Kwang-Chun Ho
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.23 no.2
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    • pp.163-168
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    • 2023
  • In this paper, a novel platform for chemical sensing and biosensing is presented. The working principle is based on the coupling efficiency and interference properties of optical directional coupler (DC) and multimode interference coupler (MMIC). It has been realized using planar technology to allow integration on a silicon substrate. Firstly, the dispersion curves of DC and MMIC is described, and the design specification of an optimized slot optical waveguide to increase waveguide sensitivity is selected. Next, the sensor response to the refractive index change of sensing analyte is numerically simulated. The numerical results reveal that high effective index change per refractive index unit (RIU) change of analyte is obtained, and the sensitivity can be tuned using the DC and MMIC design technique.