• Title/Summary/Keyword: 변환이득

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Design of W-band Cascode Mixer with High Conversion Gain using 0.1-μm GaAs pHEMT Process (0.1-μm GaAs pHEMT 공정을 이용한 높은 변환이득을 가지는 W-대역 캐스코드 혼합기 설계)

  • Choe, Wonseok;Kim, HyeongJin;Kim, Wansik;Kim, Jongpil;Jeong, Jinho
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.18 no.6
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    • pp.127-132
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    • 2018
  • In this paper, a high conversion gain cascode mixer was designed in W-band and verified by the fabrication and measurements. In the high frequency band such as a W-band, the conversion loss of a mixer is increased because of the poor performance of transistors. This high conversion loss of the mixer requires additional circuits which can give an extra gain such as an RF buffer amplifier, and this can affects the linearity and stability of the overall systems. Therefore, it is necessary to maximize the conversion gain of the mixer. To maximize the conversion gain of the mixer, biases of the transistor were optimized, and output load impedance was optimized by the load-pull simulations. The designed mixer was fabricated in $0.1-{\mu}m$ GaAs pHEMT technology and verified by the measurements. The measurement results shows a maximum conversion gain of -4.7 dB at W-band and an input 1-dB compression point of 2.5 dBm.

A Study on the Mixer for Satellite Communication at Ku-Band (위성통신용 Ku-Band 믹서에 관한 연구)

  • Her, Keun;Ryou, Yeon-Guk;Hong, Ui-Seok
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.18 no.6
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    • pp.835-840
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    • 1993
  • In this paper a FET mixer is designed realized by small-signal S-parameter using microwave CAD, LINMIC + at Ku-band. The mixer has conversion gain 9.88dB at 14GHz RF, 1GHz IF, and + 1dBm LO imput. The maximum conversion gain is obtained 11.71dB at 1.1GHz. The result shows that the FET mixer does not need pre-and/or IF amplifier. The mixer maintains the desired conversion gain with low LO power level. The conversion gain of the mixer is higher than the available gain of a amplifier, which is experimentally verified.

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High performance V-Band Downconverter Module (V-band MMIC Downconverter 개발에 관한 연구)

  • 김동기;이상효;김정현;김성호;정진호;전문석;권영우;백창욱;김년태
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.27 no.5C
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    • pp.522-529
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    • 2002
  • MMIC circuits in whole receiver system was fabricated based on GaAs pHEMT technology. And a V-band downconverter module was fabricated by integrating these circuits. The downconverter module consists of a LO drive power amplifier which generates 24dBm output power, a low noise amplifier(LNA) which shows 20 dB small signal gain, an active parallel feedback oscillator which generates 1.6 dBm output power, and a cascode mixer which shows over 6dB conversion gain. The good conversion gain performance of our mixer made no need to attach any IF amplifier which grows conversion gain. Measured results of the complete downconverter show a conversion gain of over 20 dB between 57.5 GHz and 61.7GHz without IF amplifier.

Variable Conversion Gain Mixer for Dual Mode Receiver (이중 모우드 수신기용 가변 변환이득 믹서)

  • Park, Hyun-Woo;Koo, Kyung-Heon
    • Journal of Advanced Navigation Technology
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    • v.10 no.2
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    • pp.138-144
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    • 2006
  • In this paper, dual mode FET mixer for WiBro and wireless LAN(WLAN) applications has been designed in the form of dual gate FET mixer by using the cascode structure of two single gate pHEMTs. The designed dual gate mixer has been optimized to have variable conversion gain for WiBro and WLAN applications in order to save dc power consumption. The LO to RF isolation of the designed mixer is more than 20dB from 2.3GHz to 2.5GHz band. With the LO power of 0dBm and RF power of -50dBm, the mixer shows 15dB conversion gain. When RF power increases from -50dBm to -20dBm, the conversion gain decreases to -2dB from 15dB with bias change. The variable conversion gain has several advantages. It can reduce the high dynamic range requirement of AGC burden at IF stage. Also, it can save the dc power dissipation of mixer up to 90%.

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Design of 24GHz CMOS Mixer with High Conversion and Low Power (고 변환이득 및 저 전력 24GHz CMOS 믹서 설계)

  • Kim, Shin-Gon;Choi, Seong-Kyu;Kim, Cheol-Hwan;Sung, Myeong-U;Rastegar, Habib;Choi, Geun-Ho;Ryu, Jee-Youl;Noh, Seok-Ho
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2014.10a
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    • pp.780-781
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    • 2014
  • 본 논문에서는 차량 추돌 방지 단거리 레이더용 고 변환이득 및 저전력 24GHz CMOS 믹서를 제안한다. 이러한 회로는 2볼트 전원전압에서 동작하며, 저 전압 전원 공급에서도 높은 변환 이득과 낮은 잡음지수를 가지도록 설계되어 있다. 제안한 회로는 TSMC $0.13{\mu}m$ 혼성신호/고주파 CMOS 공정($f_T/f_{MAX}=120/140GHz$)으로 설계하였다. 전체 칩 면적을 줄이기 위해 실제 수동형 인덕터 대신 전송선을 이용하였다. 제안한 회로는 최근 발표된 연구결과에 비해 가장 높은 10.96dB의 변환이득, 7.6dBm의 IIP3를 보였고, 가장 적은 5mW의 소비전력 및 $0.2{\times}0.2m^2$의 칩 크기 특성을 보였다.

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Zigbee Transmitter Using a Low-Power High-Gain Up-Conversion Mixer (저 전력 고 이득 주파수 상향변환기를 이용한 Zigbee 송신기 설계)

  • Baik, Seyoung;Seo, Changwon;Jin, Ho Jeong;Cho, Choon Sik
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.27 no.9
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    • pp.825-833
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    • 2016
  • This paper introduces a direct-conversion CMOS RF transmitter for the IEEE 802.15.4 standard with a low-power high-gain up-conversion mixer designed in $0.18{\mu}m$ process. The designed RF DCT(Direct Conversion Transmitter) is composed of differential DAC(Digital to Analog Converter), passive low-pass filter, quadrature active mixer and drive amplifier. The most important characteristic in designing RF DCT is to satisfy the 2.4 GHz Zigbee standard in low power. The quadrature active mixer inside the proposed RF DCT provides enough high gain as well as sufficient linearity using a gain boosting technique. The measurement results for the proposed transmitter show very low power consumption of 7.8 mA, output power more than 0 dBm and ACPR (Adjacent Channel Power Ratio) of -30 dBc.

Design of A 2.7-V MMIC SiGe HBT Up-converter and Variable Gain Amplifier for Cellular Band Applications (Cellular 주파수 대역 2.7-V MMIC SiGe HBT 상향 주파수 혼합기와 가변이득 증폭기의 설계)

  • 박성룡;김창우
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2000.11a
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    • pp.146-149
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    • 2000
  • SiGe HUT뜰 이용하여 Cellular 주파수 대역(824-849 MHz)에서 MMIC 상향 주파수 혼합기와 가변이득 증폭기를 설계하였다. 동작 전압은 2.7 V 이며, 이중평형 구조의 상향 주파수 혼합기는 12 dB의 변환이득, -0.6 dBm의 1dB 이득압축 출력전력, 30 dB 이상의 LO-RF 단자 격리도 특성, 1.25의 LO-VSWR. 1.34의 RF-VSWR을 가지며, 상호컨덕턴스형 가변이득 증폭기는 35 dB의 최대 선형이득, 13 dBm의 1dB 이득압축 출력전력, 42dB의 가변이득, 23dB의 3차 상호변조 교점 출력전력(OIP$_3$), 1.27의 입력 VSWR, 1.1의 출력 VSWR 특성을 보인다.

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Design of CMOS Mixer improved Flicker Noise and Conversion Gain (Flicker Noise와 변환 이득 특성을 개선한 CMOS Mixer설계)

  • Lim, Tae-Seo;Kim, Hyeong-Seok
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1508-1509
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    • 2007
  • 본 논문에서는 TSMC 0.18um공정을 이용한 무선통신 수신기용 직접변환 방식의 Double Balanced Mixer를 설계 하였다. 제안된 mixer는 current bleeding기법과 내부에 인덕터를 추가하여 기존의 Gilbert Cell구조의 mixer에 비해 변환 이득과 Flicker Noise특성을 향상 시켰다. 모의실험결과 2.45GHz에서 11dB의 변환이득을 나타내었으며 Flicker Noise의 corner frequency는 510kHz이고 이때 잡음특성은 10.8dB이다. 이 회로의 동작전압은 1.8V이며 소모 전력은 8.8mW이다.

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Dynamic Range Improvement of Digital Receiver (디지털 수신기의 Dynamic Range 개선방안)

  • Hwang, Hee-Geun;Rhee, Young-Chul
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.5 no.2
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    • pp.61-67
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    • 2012
  • In this paper, In this paper, we consider a dynamic range in the frequency converter to obtain a high conversion gain and linearity while operating area proposed to broaden the design. Super-heterodyne RF Front-End style was applied to the active mixer stage, GaAs devices were used. Circuit design easy and simple forms benefit circuit is constructed in the drain mixer, passive mixer with the operating area were compared and analyzed. The simulation results of the conversion gain of 2.4dB and 0.2dBm about a gain-compression point, and showed the dynamic range of 71.9dB, when compared with passive mixers, dynamic range of approximately 6dB improvement was identified. Measurements of an approximately 2dB conversion gain and-1.0dBm of the gain-compression point, and confirmed that the active area of 71.1dB. When compared with passive mixers, dynamic range of is reduced by approximately 8dB has been improved.

I/Q Gain and Phase Imbalances Compensation Algorithm by using Variable Step-size Adaptive Loops at Direct Conversion Receiver (가변 스텝 적응적 루프를 이용한 직접 변환 방식 수신기에서의 이득 및 위상 불일치 보상 알고리즘)

  • 송윤정;나성웅
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.10
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    • pp.1104-1111
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    • 2003
  • The paper presents an algorithm for the compensation of gain and phase imbalances to exist between I-phase and Q-phase signal at direct conversion receiver. We propose a gain and phase imbalances blind equalization compensation algorithm by using variable step-size adaptive loop at direct conversion receiver. The blind equalization schemes have trade-off between convergence speed and jitter effect for the compensation of gain and phase imbalance. We propose the variable step-size adaptive loop method, which varies the loop coefficients according to errors, for recovering these problem. By using variable step-size adaptive loops, we propose to speed up the convergence process and reduce the jitter effect and simulation results show that the algorithm compensates signal loss and speeds up convergence time.