• Title/Summary/Keyword: Triple antenna

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A Study on Coupling Coefficient and Resonant Frquency tunable Multi-band Internal Antenna (결합계수 및 주파수 튜너블 다중대역 내장형 안테나에 관한 연구)

  • Lee, Moon-Woo;Lee, Sang-Hyun
    • Journal of the Korea Society of Computer and Information
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    • v.15 no.8
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    • pp.59-66
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    • 2010
  • In this paper, the internal antenna for mobile communication handset which is able to control both coupling coefficient and resonant frequency without any major modification of radiator and ground plane of antenna. Novel internal antenna with its controllable resonant frequency is presented for triple-band or over mobile handsets. The operating range can include GSM(880~960 MHz), GPS($1,575{\pm}10MHz$), DCS(1,710~1,880MHz), US-PCS(1,850~1,990 MHz), and W-CDMA(1,920~2,170 MHz). The proposed antenna is realized by combination of a half wavelength loaded line antenna and PIFA(Planner Inverted F Antenna). A single shorting and feeding points are used and they are common to both antenna structures. One of two inductors which is placed at each shorting post, one inductor is for adjusts amount of coupling, and the other controlling the resonant frequency in DCS/US-PCS/WCDMA bands. The inductance range for control of input impedance is between 0nH and 6.8nH, and each of gain variation in GSM, GPS and DCS/US-PCS/WCDMA band is under 0.15dBi, 0.73dBi and 0.29dBi. The inductance range for control of the resonant frequency is between 1640MHz and 2500MHz, and each of gain variation in GSM, GPS and DCS/US-PCS/WCDMA band is under 0.46dBi, 0.53dBi and 0.8dBi.

Design and Fabrication of Quadruple Band Antenna with DGS (DGS를 적용한 4중대역 안테나의 설계 및 제작)

  • Kim, Min-Jae;Choi, Tea-Il;Choi, Young-Kyu;Yoon, Joong-Han
    • The Journal of the Korea institute of electronic communication sciences
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    • v.15 no.1
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    • pp.31-38
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    • 2020
  • In this paper, we propose a quadruple band antenna for GPS/WLAN/WiMAX application. The proposed antenna has quadruple band characteristics by considering the interconnection of four strip lines and DGS on the ground place. The total substrate size is 20.0 mm (W1) ⨯27.0 mm (L1), thickness (h) 1.0 mm, and the dielectric constant is 4.4, which is made of 20.0 mm (W2)⨯ 27.0 mm (L8 + L6+ L10) antenna size on the FR-4 substrate. From the fabrication and measurement results, bandwidths of 60 MHz (1.525 to 1.585 GHz) bandwidth for GPS band, 825 MHz (3.31 to 4.135 GHz) bandwidth for WiMAX band and 480 MHz (2.395 to 2.975 GHz) and 385 MHz (5.10 to 5.485 GHz) bandwidth for WLAN band were obtained on the basis of -10 dB. Also, gain and radiation pattern characteristics are measured and shown in the frequency of triple band as required.

Design of a Multi-band Internal Antenna Using Half Wavelength Loaded Line Structure for Mobile Handset Applications (반파장 로디드 라인 구조를 이용한 이동 통신 단말기용 다중 대역 내장형 안테나 설계)

  • Shin Hoo;Jung Woo-Jae;Jung Byungwoon;Park Myun-Joo;Lee Byungje
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.12 s.103
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    • pp.1179-1185
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    • 2005
  • In this paper, novel internal antenna with its controllable resonant frequency is presented for triple-band or over mobile handsets. The operating range can include GSM(880${\~}$960 MHz), GPS(1,575$\pm$10 MHz), DCS(1,710${\~}$1,880 MHz), US-PCS(1,850${\~}$l,990 MHz), and W-CDMA(1,920${\~}$2,170 MHz). The proposed antenna is realized by combination of a half wavelength loaded line and a shorted monopole. A single shorting and feeding points are used and they are common to both antenna structures. By controlling a value of lumped inductance element between shorting point and ground plane, the antenna provides enough bandwidth to cover DCS, US-PCS, and W-CDMA respectively. When these higher bands are controlled by the values of inductance, resonant characteristics in GSM and GPS bands are maintained. In this work, maximum value of the inductor is limited within 3.3 nH to mitigate gain degradation from frequency tuning. As a result, measured maximum gain of antenna is -0.58${\~}$-0.30 dBi in the GSM band, -0.57${\~}$0.43 dBi in the GPS band and 0.38${\~}$1.15 dBi in the DCS/US-PCS/W-CDMA band. In higher band, the proposed antenna is certified that resonant frequency of about 240 MHz can be effectively controlled within gain variation of about 0.77 dB by simulation and measurement.

A Design on the Four-Horn Triple-Mode Type Monopulse Feeder at X-Band (X-대역 4혼 삼중 모드 모노펄스 급전기 설계)

  • Kim, Chan-Hong;Kim, Seung-Gak
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.21 no.5
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    • pp.528-536
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    • 2010
  • A monopulse feeder gives the most important impact upon the radiation pattern characteristics of a multi-function radar or a tracking radar which uses the space feed. It is described that the triple-mode type monopulse feeder which possesses the optimum aperture illumination for three monopulse channels is designed and measured in this paper. The measured results show that the designed feeder has not only the characteristics of the optimum aperture illimination in each channel and also very low return loss over the 10 % of fractional bandwidth at X-band. This means that the feeder provides the antenna system with low sidelobe level and high monopulse slope characteristics.

Multi-band directional antenna for satellite communications (위성 통신용 다대역 안테나)

  • Cheong, Chi-Hyun;Jeong, Hye-Mi;Kim, Kun-Woo;Bae, Ki-Hyoung;Tae, Hyun-Sik;Evtyushkin, Gennadiy
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.38 no.12
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    • pp.1223-1231
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    • 2010
  • The design is presented for a SATCOM antenna capable of simultaneous multi-band (X/Ku/Ka-Band) communications without replacement of feed horns or change of other parts in the application as a ground satellite terminal for large data transfer. The antenna is the offset configuration and consists of a dual-band(X/Ka-band) feed horn, a single-band(Ku-band) feed horn, a frequency selective surface(FSS) sub-reflector and a parabolic main-reflector. The antenna has a main reflector defining a prime focus and a frequency selective surface sub-reflector defining an image focus. A dual-band feed and a single-band feed are provided at each of the prime focus and image focus. The antenna is designed using 3D EM simulator and the gains measured in X/Ku/Ka-band of the complete antenna assembly is more than 31.6dBi, 36.8dBi, 40.8dBi, and the cross polarization is 21.7dB, 26.6dB, 25.2dB, respectively.

Design of Triple-band Internal antenna for Slide Type cell phone (Slide Type 휴대폰 3중 대역 내장형 안테나 설계)

  • Lim, Seung-Jin;Lee, Jea-Hoon;Kang, Hyun-Su;Seo, Sang-Hyuk;Son, Tae-Ho
    • Proceedings of the KAIS Fall Conference
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    • 2009.12a
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    • pp.977-980
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    • 2009
  • 본 논문에서는 GSM/DCS/PCS대역에서 사용할 수 있는 변형된 IFA형태의 내장형 안테나를 설계하고 이를 제작하였다. 본 논문에서는 실제 상용화된 휴대단말기의 내장형 안테나를 3D Tool을 이용하여 전류 흐름의 상쇄작용을 고려하여 3중 대역을 형성시켰으며, Stub의 길이에 따라 변화하는 반사소실 특성을 확인하였다. 설계된 안테나를 제작 측정한 결과 기존의 안테나 보다 약 10.9%, 1.57dB 특성이 개선되었다.

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Design of a Triple Band Monopole Antenna for the Bar Type GSM Mobile Phone (BAR Type GSM Phone용 3중 밴드 Monopole 안테나 설계)

  • Ryu, Hong-Sun;Shin, Dong-Hwa;Kim, Joo-Man;Son, Tae-Ho
    • Proceedings of the KAIS Fall Conference
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    • 2008.11a
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    • pp.294-296
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    • 2008
  • 본 논문에서는 변형된 Monopole 안테나에 의한 GSM 900, 1800, 1900 3중 대역 BAR TYPE 형 휴대폰내장형 안테나를 설계 및 제작 하였다. 본 논문은 실제 상용화된 휴대 단말기의 내장형 안테나를 Monopole 타입으로 설계하여 현재 상용 중인 안테나에 부합하는 특징을 가지도록 하였다. 설계된 안테나를 제작 측정한 결과 기존의 안테나 보다 약 5.51% 1.39dB 특성이 개선되었다.

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Triple Band PIFA Internal Antenna GSM/DCS/USPCS Mobile phone handset (GSM/DCS/USPCS 트리플 밴드용 휴대폰 PIFA 안테나)

  • Lee Jonghoon;Son Taeho;Lee ByungSoo;Chang Eungsoon
    • Proceedings of the KAIS Fall Conference
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    • 2005.05a
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    • pp.163-165
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    • 2005
  • 본 논문에서는 GSM/DCS/USPCS 대역에서 사용할 수 있는 PIFA 형태의 내장형 안테나를 설계하고 이를 제작하였다. 이 안테나는 제한된 공간에서 기본 PIFA에 적절한 슬릿을 구성하여 트리플 밴드를 형성 시켰으며, GSM 대역에서 Maximum Gain -3.25dB$\~$6.37dB, DCS 대역에서 Maximum Gain -0.46dB$\~$2.95dB의 결과를 얻었다. 방사패턴 또한 전 방향성에 가까운 특성을 가지고 있으며 현재 GPRS용 휴대폰에 적용시키고 있다.

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Analyzing the Architecture of EPON Network for CATV Overlay (CATV Overlay를 위한 EPON 망 구조에 대한 분석)

  • 이상연;김용태;이재정;이형섭
    • Proceedings of the IEEK Conference
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    • 2003.11c
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    • pp.117-120
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    • 2003
  • PON (Passive Optical Network) is an emerging local subscriber access architecture that provides more bandwidth and services to subscriber than DSL (Digital Subscriber Line and HFC (Hybrid-Fiber Coaxial) network. A PON is a point-to-multipoint optical network with no active elements in the signals' path from source to destination. Advantages of using PON for a subscriber access network include large coverage area, reduced fiber deployment, multicast and broadcast capabilities, reduced cost of maintenance (due to devices being passive), and ease of upgrades to higher bit rate or additional wavelengths. PON uses WDM (Wavelength Division Multiplexing) technique that transmits the downstream and upstream data at each different wavelength. For transmitting the CATV (Community Antenna television) service through PON network, we give out additional wavelength. This study shows the available TPS (Triple play service) architecture using CATV overlay EPON (Ethernet PON) architecture and analyzes the effects of EPON-based CATV transmission by measuring the power loss fur each wavelength and the power range of the available analog wavelength and RF.

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Development of Electronic Identification System of Individual Dairy Cow for Stockvreeding Automatization I. Transmitting and Receiving Circuit Design and Manufacture (젖소의 사양관리 자동화를 위한 전자개체인식장치 개발 I.송, 수신부 회로설계 및 제작)

  • 한병성;정길도;최명호;김용준;김명순;강복원
    • Journal of Veterinary Clinics
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    • v.13 no.2
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    • pp.171-176
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    • 1996
  • In this study, dldctronic identification system of individual dairy cow was developed for autocatization of stoxkvreeding management. To automize the breeding management, it is necessary to obtain and analyze the individual information distinguished from others perferentially. Electronic identification system can distinguish individual livestock from others with electromagnetic wave signal recognition system. Electoronic identification system consists of transmitter transmitting the oscillated signal and receiver set. The transmitted signal from transmitter clung to individual livestock is received from the receiving antenna and the signal in different according to the established value of the register. By distinct signal recieved from the reciever, wi can distinguish the identity of a livestock from others clearly. This system can manage $2^{12}$ individuals with a reciever theoretically. However in order to reduce the errors by analogous signal, this system uses only triple number and can manage 1365 individuals with a reciever practically. This system can be connevtted to Max 232 and microcomputer for the breeding management efficiently.

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