• Title/Summary/Keyword: Directional couplers

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A Design of Microstrip Directional Coupler with the Improved Directivity Characteristic (개선된 지향성을 갖는 마이크로스트립 방향성 결합기 설계)

  • Kim, Chul-Soo;Lim, Jong-Sik;Kim, Dong-Joo;Ahn, Dal
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.15 no.6
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    • pp.548-553
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    • 2004
  • In this paper, single, two, and three-section microstrip directional couplers are implemented for realizing the high directivity characteristics. The achievement of the high directivity with microstrip configuration is carried out by the distributed capacitor to decrease the even and odd mode phase difference. Capacitive compensation is performed by gap coupling of open stub formed in sub-coupled line. Therefore, insertion loss and power handling capability are not affected by the gap coupling. The proposed structure is easy to fabricate and incorporate another microwave device due to the planner microstrip. We designed and fabricated single, two, and three-section directional coupler with 20 ㏈ coupling. In spite of microstrip structure, the capacitive compensation structure shows 30 ㏈, 27 ㏈, and 25 ㏈ of directivity in single, two, and three-section directional couplers, respectively.

Optical IIR lattice fiber filter design for optimum of optical signal energy (광신호 에너지 최적화를 위한 IIR 격자형 광파이버필터 설계)

  • 이채욱;김신환
    • Journal of the Korean Institute of Telematics and Electronics B
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    • v.32B no.11
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    • pp.1481-1488
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    • 1995
  • Due to the low loss, broadband and accurate short time delay properties of optical fiber, it has attracted as a delay medium for high speed and broad-band signal processing. In this paper, we consider the coherent optical fiber filter of IIR lattice structure, which uses coherent light sources and consists of directional couplers whose coupling coefficients are restricted between 0 and 1. Considering restrictions of directional coupler, the design formulae and condition for realibility of optical fiber filter of IIR lattice structure which makes the optimal use of optical signal energy are derived.

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Design and Analysis of Tolerant Optical Waveguide Directional Coupler (공정 오차에 둔감한 광 도파로 방향성 결합기의 설계 및 분석)

  • Lee, Dong-Hyeon;Lee, Tae-Hyeong;Kim, Su-Hyeon;Park, Jun-O;Jeong, Yeong-Cheol
    • Proceedings of the Optical Society of Korea Conference
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    • 2006.07a
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    • pp.493-494
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    • 2006
  • Fabrication-error tolerant directional couplers are designed and analyzed. In the wavelength region of $1.55{\mu}m$, the coupling characteristics of the 3dB coupler is 50${\pm}$4%, when the waveguide width error is ${\pm}0.2{\mu}m$.

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

  • Ho, Kwang-Chun;Ho, Kwang-Soo
    • Journal of the Optical Society of Korea
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    • v.8 no.4
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    • pp.149-155
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    • 2004
  • Newly developed modal transmission-line theory(MTLT) is used to analyze rigorously the optical power distribution in grating-assisted directional couplers(GADCs) with three guiding channels. By defining a novel coupling efficiency ${\eta}$ amenable to the rigorous analytical solutions of modal transmission-line theory, we explicitly evaluate the power coupling and distribution of TM modes. The results reveal that the incident power is sensitively partitioned through three output channels in terms of such grating parameters as the grating period, the duty cycle, and the operating wavelength.

Coupling Efficiency of Optical Directional Coupler with Rib-Type (Rib형 광 방향성 결합기의 결합효율)

  • Lee, Won-Seock;Ho, Kwang-Chun;Kim, Yung-Kwon
    • Journal of IKEEE
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    • v.3 no.1 s.4
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    • pp.86-92
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    • 1999
  • A rigorous modal transmission-line theory (MTLT) based on effective dielectric method (EDM) is introduced and developed for the design of optical directional couplers with rib-type. This approach provides a rigorous numerical algorithm that takes all the possible guided components into consideration, and thus may serve as an appropriate reference to access the accuracy of such simplified methods as effective index method (EIM) and perturbation theory. Consequently, to search the optical parameters for maximum power coupling of the optical couplers, we evaluate the operating wavelength, the interval S between rib guides and the thickness t of a cladding layer.

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A New Directional Coupler Type Partial Discharge Sensor Installed on the Power Lead of Rotating Machine

  • Yi, Sang-Hwa;Hwang, Don-Ha;Park, Wee Sang
    • Journal of Electrical Engineering and Technology
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    • v.11 no.6
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    • pp.1769-1776
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    • 2016
  • For on-line partial discharge (PD) monitoring of rotating machines, a novel sensor is proposed, which can be installed on the power lead inside the terminal box of the machine. The sensor has been designed to have high capacitance, and minimal reflection of measured pulses. As a sensitivity of the sensor, transfer impedance $Z_t$ has been measured and compared to conventional coupler-type sensors. A simple method is presented for measuring $Z_t$ of coupler sensors, using a vector network analyzer and a practical lead-cable of rotating machine. Through this method, it became possible to measure the $Z_t$ of coupler sensors including the installation environment of them. The $Z_t$ of the proposed sensor is higher than that of same sized other conventional couplers at frequencies between 30 and 92 MHz. Another sensitivity test has been performed using a PD calibrator as a test pulse source. The proposed sensor has higher measured peak voltage than the conventional coupler type sensors when the same charges were input.

Microstrip directional coupler using the difference between even and odd mode phase constants ($\cdot$기모드 위상정수의 차를 이용한 마이크로스트립 방향성 결합기)

  • 문영찬;윤상원
    • Journal of the Korean Institute of Telematics and Electronics D
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    • v.35D no.2
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    • pp.13-18
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    • 1998
  • In this paper, a new type microstrip directional coupler has been designed and a 3dB coupler has been fabricated and measured. The measured and analysed results are agree well each other except difference of 1 dB insertion loss. There are two eigenmodes, e.g. even and odd mode in coupled microstrip lines. By using the difference between these two eigenmodes phase constants, the directional coupler can be designed by adjusting coupling length, which has a desired coupler has a disdvantage that its coupling length is longer than conventional oe, but it may be used as a useful coupler in millimeter wave range. And it has the merit of less discontinuity effects, becuase it is simpler than the other couplers in structure.

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Analysis of Dielectric Rectangular Waveguide and Directional Coupler with Step Index Profile by the Modified Effective Index Method (수정된 실효 굴절율법에 의한 계단형 굴절률 분포를 갖는 광도파로와 방향성 결합기의 해석)

  • Kim, Chang Min;Jung, Byung Gi;Lee, Choang Woong
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.23 no.4
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    • pp.522-528
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    • 1986
  • Based on the modified effective index method, analysis of dielectric rectangular waveguides and directional couplers are presented. Aside from the effective index concept of channel region, the equivalent index concept of cladding region is proposed. The error problem of eigenvalues, which has been experienced when the effective index method is used, is improved. Our approxiamtions give similar accuracy when compared with the results of other regorous approxiamtion techiniques. The advantage of the modified effective index methods is utilized by replacing the directional coupler with the equivalent slab guides, and the coupling constant is calculated by the coupled mode theory. The effectiveness of the equivalent index concept is positively confirmed.

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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.

Design Characteristics of Tapered Directional Couplers in Optical Communication (광통신용 테이퍼 방향성 결합기의 설계 특성)

  • Son, Seock-Yong;Ho, Kwang-Chun;Kim, Yung-Kwon
    • Journal of the Korean Institute of Telematics and Electronics D
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    • v.36D no.11
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    • pp.18-26
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    • 1999
  • Recently, various simplified simulation techniques such as firite-difference beam propagation method and non-orthogonal coupled-mode theory have proposed to analyze the optical characteristics of tapered directional couplers supported by the coupling of two propagating modes. Although these approaches are often in sufficiently accurate, they do not provide the detailed solutions encountered in the analysis of tapered guiding structures. For this purpose, we introduce and utilize a newly developed modal transmission-line theory to analyze rigorously power transfer of the directional coupler. The numerical result reveals that the propagation constants of even and odd modes converge to a single value as increasing the spacer thickness between two symmetric tapered guides. Furthermore, 97% of the power incident into a guiding channel is transmitted to the other channel at the tapered angle ${\theta}=0.1^{\circ}$, and the efficiency of power transfer decreases dramatically as increasing the angle.

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