• Title/Summary/Keyword: 5.8 GHz

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Design of Quadrature CMOS VCO using Source Degeneration Resistor (소스 궤환 저항을 이용한 직교 신호 발생 CMOS 전압제어 발진기 설계)

  • Moon Seong-Mo;Lee Moon-Que;Kim Byung-Sung
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.15 no.12 s.91
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    • pp.1184-1189
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    • 2004
  • A new schematic of quadrature voltage controlled oscillator(QVCO) is designed and fabricated. To obtain quadrature characteristic and low phase noise simultaneously, two differential VCOs are forced to un in quadrature mode by using coupling amplifier with a source degeneration resistor, which is optimized to obtain quadrature accuracy with minimum phase noise degradation. The designed QVCO was fabricated in standard CMOS technology. The measured performance showed the phase noise of below -120 dBc/Hz at 1 MHEz frequency offset, tuning bandwidth of 210 MHz from 2.34 GHz to 2.55 GHz with a tuning voltage varying form 0 to 1.8 V Quadrature error of 0.5 degree and amplitude error of 0.2 dB was measured with conjunction with low-lF mixer. The fabricated QVCO requires 19 mA including 5 mA in the VCO core part fiom a 1.8 V supply.

Design of a 5.8 GHz Narrow Band-pass Filter with Harmonics Suppression (고조파가 억제된 5.8 GHz 협대역 대역통과 여파기)

  • Yoon, Ki-Cheol;Lee, Jong-Chul
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.2A
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    • pp.167-173
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    • 2008
  • In this paper, the flexible narrow bandpass filters (BPFs) with ${\lambda}$g/4 short and ${\lambda}$g/2 open stubs by microstrip line on duroid substrate are suggested. These BPFs with narrow bandwidth show flexible bandwidth with variation of the position of the stubs using the Qe (external quality factor) without changing the impedance value at microwave range. On the other hand, by replacing the series quarter-wavelength connecting lines with the equivalent T-shaped line of bandstop filter(BSF), the compact stub bandpass filter with harmonics suppression can be realized. The BPF with ${\lambda}$g/4 short stubs shows the insertion loss of 2.1 dB and the return loss of 18 dB and BPF with ${\lambda}$g/2 open stubs shows the insertion loss of 1.2 dB and the return loss of 21.9 dB at the center frequency of 5.8 GHz and the bandwidth of 10 %.

The Design of Miniature Microstrip Fractal Patch Antenna Using L-shaped Feeding Structure. (L-형급전구조를 이용한 소형 마이크로스트립 Fractal 패치 안테나 설계)

  • Park, Chang-Hyun;Yoon, Chi-Mu;Kim, Kab-Ki
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2007.10a
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    • pp.863-867
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    • 2007
  • In this paper, We have designed miniature microstrip patch antenna based on fractal structure using L-shaped feeding structure for 4G mobile communication applications. Miniature antenna has achieved by the presence of unusual fundamental resonant mode which we call "crossed-diagonal"(CD)current. Using CST Microwave Studio 5.0, patch antenna was designed. The simulated input return loss showed the bandwidth of 1.2647[GHz]($2.944{\sim}4.209GHz$), 35.4% below -10dB. The gain of E, H-plane was achieved 8.3dBi and 8.4dBi respectively. And beamwidth of 3dB in the E, H-plane was $40.6^{\circ}$ and $81.6^{\circ}$, respectively.

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A Novel Frequency Doubler using Feedforward Structure and DGS Microstrip for Fundamental and High-Order Components Suppression (Feedforward 구조와 DGS를 이용하여 기본 신호와 3차 이상의 고조파 신호를 제거한 2차 주파수 체배기 설계)

  • 황도경;임종식;정용채
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.5
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    • pp.513-520
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    • 2003
  • In this paper, a novel design concept of frequency doubler using feedforward technique and DGS microstrip line is proposed. The feedforward loop plays a role of fundamental frequency suppression and DGS microstrip line suppresses over the 3rd order harmonic components. By using this new concept, the high suppression for the undesired signals could be achieved easily. The proposed technique is experimentally demonstrated in 1.87 GHz-to-3.74 GHz frequency doubler. The output power of -3 dBm at the frequency of 3.74 GHz(2f$\_$0/) is measured with 42.9 dB suppression of the fundamental frequency signal(f$\_$0/), 20.2 dB suppression of the 3rd harmonic signal(3f$\_$0/) and B9.7 dB suppression of the 4th harmonic signal(4f$\_$0/). The conversion loss of -2.34 dB ∼ -5.8 dB at the bandwidth of 100 MHz, the phase noise of -97.51 dB/Hz(@10 kHz) were measured.

Design of Multi-Band VCO with Fast AFC Technique (광대역 고속 AFC 기법을 적용한 다중 대역 VCO의 설계)

  • Ahn, Tae-Won;Yoon, Chan-Geun;Lee, Won-Seok;Moon, Yong
    • Proceedings of the IEEK Conference
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    • 2006.06a
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    • pp.983-984
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    • 2006
  • Multi-band VCO with fast response adaptive frequency calibration (AFC) technique is designed in 1.8V $0.18{\mu}m$ CMOS process. The possible operation is verified for 5.8GHz band, 5.2GHz band, and 2.4GHz band using the switchable L-C resonators for 802.11a/b/g WLAN applications. To linearize its frequency-voltage gain, optimized multiple MOS varactor biasing technique is used. In order to operate in each band frequency range with reduced VCO gain, 4-bit digitally controlled switched-capacitor bank is used and a wide-range digital logic quadricorrelator is implemented for fast frequency detector.

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Design of Active Antenna for 5.5GHz Local Wireless Communication System (5.5GHz 근거리 무선통신용 능동안테나 설계)

  • Kim Kab-ki;Choi Chung-yun;Kim Chol-soo
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.8 no.7
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    • pp.1558-1564
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    • 2004
  • This paper shows the design of Active antenna which appled to 5.5GHz RF module for local wireless communication system. The LNA, which was designed Super low noise HJ FET of NE3210S01, is used to obtain a good noise figure characteristics. And the microstrip patch antenna was designed to obtain omnidirectional antenna characteristics. The measured LNA gain is 15 dB, input & output return loss is under -20 dB and VSWR under 1.5. The Single microstrip patch antenna input return loss is under -29 45, VSWR under 1.2.

Miniaturization of Ultra Wideband Log-Periodic Dipole Antenna for Leaked Electromagnetic Measurement (누설전자파 측정을 위한 초광대역 로그주기 안테나의 소형화)

  • Choi, Dong-Hoon;Kim, Tae-Hyung;Moon, Jun-Ho;Yook, Jong-Gwan
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.28 no.10
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    • pp.761-768
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    • 2017
  • In this paper, to implement the electromagnetic wave environment and solve electromagnetic compatibility(EMC) problem, miniaturization of ultra-wide band log periodic dipole antenna for measurement was investigated. In addition, in oder to improve the signal-to-noise ratio in high frequency band, balun was connected to the antenna to stabilize the operation of the differential mode antenna and the single mode coaxial cable. To minimize the total size and to increase bandwidth of the antenna, a fat dipole structure was used for the resonance frequency band below 4 GHz and a general dipole shape was used for that above 4 GHz. The bandwidth of the proposed antenna was represented from 0.6 GHz to 8.0 GHz with a ratio bandwidth of 12.3 : 1. Measured peak gain varies from 5.7 dBi to 9.1 dBi, and a half power beamwidth was presented from $29.4^{\circ}$ to $100.2^{\circ}$ in operating range.

Anti-Parallel Diode Pair(APDP) Mixer over 3~5 GHz for Ultra Wideband(UWB) Systems (역병렬 다이오드를 이용한 초광대역 시스템용 3~5 GHz 혼합기 설계)

  • Jung Goo-Young;Lee Dong-Hwan;Yun Tae-Yeoul
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.7 s.98
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    • pp.681-689
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    • 2005
  • This paper presents an ultra wide band(UWB) mixer using anti-parallel diode pair(APDP) with simulation and measurement results. The proposed mixer adopts the even-harmonic direct conversion mixing, which consists of a couple of filter, in-phase wilkinson power divider, wideband $45^{\circ}$ power divider, and APDP. The m mixer is operating over 3.1 to 4.8 GHz and producing quadrature(I/Q) outputs with a conversion loss of 18 dB and input third order intercept point($IIP_3$) of 15 dBm. I/Q outputs also have difference of about 0.5 dB and phase difference of ${\times}3^{\circ}$ and $P_{1dB}$ of 2 dBm.

Finding Candidate Frequency Bands for Spectrum Sharing in the Frequency Range of 1~4.5 GHz (1~4.5 GHz 대역 내의 공동사용 후보 주파수 대역 발굴)

  • Oh, Se-Jun;Kang, Young-Heung;Bae, Jong-Kee;Park, Duk-Kyu
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.24 no.8
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    • pp.820-830
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    • 2013
  • As wireless traffic drastically increase with the expansion of smart equipment, it is necessary to develop spectrum sharing technologies and introduce spectrum sharing policy for utilizing limited radio resources efficiently. In order to meet these new changes, this parper investigated the government-held (or license) spectrum to seek candidate frequency bands of spectrum sharing. Based on the database of the existing radio station, the investigated candidate frequency bands of spectrum sharing was experimented locally, considering the central frequency, bandwidths, and the region where the radio station is usedIn conclusion, we found out about 901 MHz bandwidths for regional spectrum sharing within the spectrum of 1~4.5 GHz. These bandwidths can be utilized in M2M and WiFi services, etc. based on spectrum sharing technology in the future.

Design and Performance Analysis of Wideband Six-port Phase correlator (대역폭이 향상된 Six-port 위상 상관기 설계 및 성능 분석)

  • Kim, Young-Wan;Yu, Jae-Du
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.12 no.3
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    • pp.414-419
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    • 2008
  • The six-port correlator is comprised of a power divider and three hybrid couplers. In this paper, the six-port phase correlator using three-arm branch $90^{\circ}$ hybrid coupler were designed with the center frequency of 11.85 GHz. The performances for the six-port phase correlator was analyzed by using ADS2003A tool. Three-arm six-port phase correlator provides more wide dynamic frequency range than that of six-port using the conventional hybrid coupler in range of circa five times, which is range of 10.8 to 12.3GHz (1.5 GHz). The phase errors among the output ports of the six-port phase correlator are below $5^{\circ}$. The six-port Phase correlator was fabricated to evaluate the Performance of the proposed six-port phase correlator. The measured performance of the six-port phase correlator shows the good accordance with the simulation data.