• Title/Summary/Keyword: 200 GHz

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Design and Fabrication of Array antenna in the WLAN Band (무선랜 대역의 배열 안테나 설계 및 제작)

  • Park, Yong-Wook
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.2
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    • pp.779-783
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    • 2012
  • In this paper, we studied the design and fabrication of $2{\times}2$ array-type microstrip patch antenna to be used in wireless communication systems operating at around 5GHz band. To obtain wide bandwidth and high gain, antenna parameters such as patch size, inter patch space are simulated by HFSS(High Frequency Structure Simulator). From these parameters, the $2{\times}2$ array-type microstrip patch antenna is fabricated using FR-4 substrate. The measured results of the antenna are as follows: The center frequency of 5.06GHz, insertion loss of -44dB, bandwidth of 200MHz, and VWSR of 1.1.

Design of 5.8GHz Band 4×4 Butler Matrix using Commercial 90° Hybrid Coupler (상용 90도 하이브리드 커플러를 이용한 5.8GHz 대역 4×4 버틀러매트릭스 설계)

  • Park, Byeong-Hoon
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.63 no.3
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    • pp.200-205
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    • 2014
  • In this paper, 5.8GHz band $4{\times}4$ Butler matrix is designed using easily accessible commercial $90^{\circ}$ hybrid coupler and semirigid coaxial cable as a transmission line. This Butler matrix is very flexible to changes of antenna system specification like a frequency band because $90^{\circ}$ hybrid coupler changing is all to do. The result of design is the distance of $2{\times}2$ array antenna element is $\sqrt{2}{\lambda}/4$, the 4 beam directions are diagonal of array antenna and phase shifter is not necessary. The beam width is roughly $25^{\circ}$ narrower because of array antenna geometry and the side lobe is about 10dB higher partially than theoretical beam pattern. But the overall beam pattern is similar with theoretical beam. This Butler matrix can be applied to switching beam antenna of 5.8GHz band Wi-Fi and WAVE system.

Design of Miniaturized Multi-layer BPFs Using LTCC for Wireless LAN Applications (LTCC를 이용한 WLAN용 초소형 적층 대역통과 필터 설계)

  • Park, Hun;Kim, Kuen-Hwan;Yoon, Kyung-Sik;Lee, Young-Chul;Park, Chul-Soon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.7A
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    • pp.563-568
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    • 2003
  • In this paper, a miniaturized parallel coupled bandpass filter using multi-layered LTCC(Low Temperature Co-fired Ceramics) substrate for SOP(System-On-Package) is proposed for applications to wireless communication systems. The fabricated BPF is composed of five 106${\mu}{\textrm}{m}$ thick LTCC layers and its size is 5.24mm x 4.3mm x 0.53 mm. The measured characteristics of the BPF show the center frequency of 5.8GHz, bandwidth of 200MHz, insertion loss of 2.326dB and return loss of 13.679dB. In addition, the attenuation is 28.052dB at 4.7GHz.

Silicon Based Millimeter-Wave Phased Array System (실리콘 기반의 고주파 위상 배열 시스템에 관한 연구)

  • Kang, Dong-Woo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.25 no.1
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    • pp.130-136
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    • 2014
  • This paper reviews the research on silicon based phased array system operating from microwave to millimeter wave frequencies. First, the design of phase shifter using CMOS technology is presented. The passive phase shifter is applied to the transmit/receive module from one to 16 channel in a single chip. The 35 GHz 4-element T/R module consumes less than 200 mW both transmit and receive modes. The architecture can extend to 16-channel operating at 44 GHz, thereby improving transmit power and linearity. The Ku-band 2-antenna 4-element receiver was developed using active phase shifter based on vector sum method. It is important to minimize coupling between beams because the chip contains four independent beams. The method of coupling is presented and verified.

Design of Miniaturized Multi-layer BPFs Using LTCC for Wireless LAN Applications (LTCC를 이용한 WLAN용 초소형 적층 대역통과 필터 설계)

  • Park, Hun;Kim, Kuen-Hwan;Yoon, Kyung-Sik;Lee, Young-Chul;Park, Chul-Soon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.8A
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    • pp.607-612
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    • 2003
  • In this paper, a miniaturized parallel coupled bandpass filter using multi-layered LTCC(Low Temperature Co-fired Ceramics) substrate for SOP(System-On-Package) is proposed for applications to wireless communication systems. The fabricated BPF is composed of five 106$\mu\textrm{m}$ thick LTCC layers and its size is 5.24mm ${\times}$ 4.3mm${\times}$ 0.53mm. The measured characteristics of the BPF show the center frequency of 5.8GHz, bandwidth of 200㎒, insertion loss of 2.326㏈ and return loss of 13.679㏈. In addition, the attenuation is 28.052㏈ at 4.7GHz.

Monolithic Integrated Amplifier for Millimeter Wave Band (밀리미터파 대역 단일 집적 증폭기)

  • Ji, Hong-Gu;Oh, Seung-Hyeub
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.11 no.10
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    • pp.3917-3922
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    • 2010
  • In this paper, 3 stage amplifier MMIC was designed and fabricated with U-band optimized epitaxal pHEMT that produced by large signal characterization and modeling for 60 GHz band. The pHEMT used in this paper, the gate $0.12\;{\mu}m$ length and total gate width of $100\;{\mu}m$, $200\;{\mu}m$ has been modeled using the large signal designed with negative feedback and MCLF instead of MIM capacitor for improving stability. Fabricated MMIC $2.5{\times}1.5mm^2$ size, current about 40 mA, operating frequency 59.5~60.5 GHz, gain 19.9~18.6 dB, input matching characteristics -14.6~-14.7 dB, output matching characteristics -11.9~-16.3 dB and output -5 dBm characteristics were obtained.

A Dual-Sprial Line Loaded Monopole Antenna having a Vertical Groundplane for Quadband Applications (수직 접지면을 가지는 4중 대역용 이중 스파이럴 라인 로디드 모노폴 안테나)

  • Kim, Byoung-Chul;Nguyen, Truong Khang;Choo, Ho-Sung;Park, Ik-Mo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.19 no.8
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    • pp.899-905
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    • 2008
  • In this paper, we propose a dual-spiral line loaded monopole antenna having a vertical ground plane for quadband applications. The antenna occupies a volume of $38{\times}12{\times}7\;mm^3$ with a $40{\times}92\;mm^2$ ground plane. The measured impedance bandwidths of the antenna based on $VSWR{\le}2$ are approximately of 11.7 % and 24.8 % in the first and second frequency band, respectively. The operating frequency can simultaneously cover Cellular($0.824{\sim}0.894\;GHz$), PCS($1.750{\sim}1.870\;MHz$), UMTS($1.920{\sim}2.170\;MHz$), and IMT-2000($1.885{\sim}2.200\;GHz$) bands. The maximum gains of the antenna are -0.99 dBi, 4.07 dBi, 2.72 dBi, and 4.33 dBi at the center frequencies of the Cellular, PCS, UMTS, and IMT-2000 bands, respectively. Good radiation patterns are experimentally obtained.

Broadband Patch Antenna for Wireless LAN Communication of 5GHz Band (5GHz 대역의 무선랜 통신을 위한 광대역 패치 안테나)

  • Yun, Tae-Soon
    • The Journal of the Korea institute of electronic communication sciences
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    • v.16 no.3
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    • pp.395-400
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    • 2021
  • In this paper, the wideband patch antenna is simulated and manufactured for the wireless LAN of 5GHz band that is defined in IEEE 802.11a. In the 802.11a, 200 channels of 675MHz are defined. Therefore, the bandwidth is needed more than 12.3%. For the wideband characteristics, low dielectric constant is realized with the multi-layer of 2 teflon substrates and the air dielectric layer and the feeding method of the coupled-line is used. Optimized wideband patch antenna is simulated with the return loss of 38.99dB at the center frequency of 5.43GHz and the bandwidth of 12.9%. The gain of manufactured patch antenna is 4.38, 4.52, and 5.12dBi at the channel number of 46, 56, and 153, respectively.

Implementation of Impulse Radar System in Time Domain within Laboratory Unit (시영역에서 임펄스 레이더 시스템의 실험적 구현)

  • Doojin Lee
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.17 no.2
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    • pp.93-98
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    • 2024
  • This paper presents the method to extract the ultrawide-band (UWB) signal and proposes the simple impulse radar system for sensing real-based target within close-range area. The proposed impulse radar system consists of impulse generator, ultrawide-band antennas, function generator, and digital oscilloscope. It is verified by experiment that a differentiated Gaussian pulse is generated with 200ps of pulse width and corresponding spectrum from 0.3 to 4.7 GHz once a sinusoidal wave with 10MHz is excited. The Gaussian doublet is received by identical antennas and it is shown that the UWB pule width of 328ps and its spectrum is from 0.9 to 4.4 GHz. It is confirmed that the UWB pulse is extracted when the real-based targets such as circular target with 4cm radius and corner reflector are placed at the close-range area.

Implementation of the 200-Watts SSPA for X-band Pulse Compression Solid State Radar (X-대역 펄스압축 Solid State Radar를 위한 200W SSPA 개발)

  • Kim, Min-Soo;Lee, Chun-Sung;Lee, Sang-Rock;Rhee, Young-Chul
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.46 no.12
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    • pp.22-29
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    • 2009
  • In this paper, we developed the 200-Watts SSPA(Solid State Power Amplifier) for the X-band pulse compression solid state radar. The developed X-band SSPA is consists of 3-stage CSA(Corporate Structured Amplifier) modules in pre-amplifier stage, driver-amplifier stage and main-power amplifier stage. The main-power amplifier stage of SSPA designed by balanced type using GaN HEMT with enough power and gain to generate power more than 200-Watts in X-band. The developed SSPA has performance with more than total gain 59dB and output power 200-Watts in condition of frequency range 9.2-9.6GHz, pulse period 1msec, pulse width 100usec and duty cycle 10%. The developed SSPA in this paper can apply to high quality solid state radar system with pulse compression technique.