• Title/Summary/Keyword: IIP2

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Design of a CMOS LNA for MB-OFDM UWB Systems (MB-OFDM 방식의 UWB 시스템을 위한 CMOS LNA 설계)

  • Lee Jae-kyoung;Kang Ki-sub;Park Jong-tae;Yu Chong-gun
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.10 no.1
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    • pp.117-122
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    • 2006
  • A CMOS LNA based on a single-stage cascode configuration is designed for MB-OFDM ultra-wide band(UWB) systems. Wideband($3.1GHz\~4.9GHz$) input matching is performed using a simple bandpass filter to minimize the chip size and the noise figure degradation. The simulation results using $0.18{\mu}m$ CMOS process parameters show a power gain of 9.7dB, a 3dB band width of $2.1GHz\~7.1GHz$, a minimum NF of 2dB, an IIP3 of -2dBm. better than -11.8dB of input matching while occupying only $0.74mm^2$ of chip area. It consumes 25.8mW from a 1.8V supply.

The Expression of MMPs and TIMPs in IPF and NSIP (IPF와 NSIP에서 MMPs와 TIMPs의 발현)

  • Kim, Yu Jin;Kim, Jung Ho;Jeon, Hyo Keun;Kim, Mi Kyeong;Jo, Young Chan;Kyung, Sun Yong;An, Chang Hyeok;Lee, Sang Pyo;Park, Jung Woong;Ha, Seung Yeon;Jeong, Sung Hwan
    • Tuberculosis and Respiratory Diseases
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    • v.61 no.5
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    • pp.447-455
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    • 2006
  • Background: MMPs and TIMPs are important factors for abnormal remodeling the pulmonary parenchyme in idiopathic interstitial pneumonia(IIP) This study evaluated the expression of MMPs and TIMPs in the tissue of IPF, NSIP and normal control subjects. Method: The MMP-2 and -9 activity in the lung tissue was studied by gelatin zymography, and the expression of MMP-1, -2, -9, TIMP-1 and -2 in the lung tissue was measured by immunohistochemistry. Thirty five patients, who were diagnosed with IIP (UIP ; 22, NSIP ; 13), were enrolled in the immunohistochemical study. Thirteen patients with IIP (UIP ; 9, NSIP ; 4) and five patients with lung cancer were enrolled in the zymographic assay. Results: (1) The immunohistochemistry for MMP-1,-2,-9, TIMP-1 and-2 ; MMP-1,-9 and TIMP-2 were stained stronger in the UIP subjects than NSIP and the normal control. TIMP-2 was strongly stained in the UIP tissue. particularly the fibroblasts in the fibroblastic foci. (2) Zymography for MMP-2 and MMP-9 revealed MMP-2 to have prominent expression in the UIP tissue than in the NSIP tissue. Conclusions: These results suggest that the overexpression of the TIMPs and gelatinases in UIP might be important factors in the irreversible fibrosis of the lung parenchyme.

Design of Double-Conversion Down Mixer Using Single Half-LO Frequency at 2.3 GHz (2.3 GHz 대역에서 단일 Half-LO 주파수를 이용한 Double-Conversion Down Mixer 설계)

  • Kim Min-Seok;Moon Ju-Young;Yun Sang-Won
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.8 s.111
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    • pp.719-724
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    • 2006
  • In this paper, we designed the double conversion down mixer by using Half-LO frequency in 2.3 GHz band. The IF frequency is obtained by supplying two LO frequencies to HEMT in both gate type and resistive type. The proposed mixer uses Half-LO frequency the same way as conventional sub-harmonic mixers. However the proposed one uses fundamental component of Half-LO frequency in first stage instead of using second harmonic components of Half-LO frequency, and the IF frequency is obtained by resistive type mixer in second stage, thereby the proposed mixer can improve linearity in comparison with conventional active mixer. We can verify that the proposed mixer has an conversion loss of 5dBm and IIP3 of 16.25dBm by using 10 dBm Power.

Design of the Low Noise Amplifier and Mixer Using Newly Bias Circuit for S-band (새로운 바이어스 회로를 적용한 S-band용 저잡음 증폭기 및 믹서의 One-Chip 설계)

  • Kim Yang-Joo;Shin Sang-Moon;Choi Jae-Ha
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.11 s.102
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    • pp.1114-1122
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    • 2005
  • In this paper, the study of a design, fabrication and measurement of the receiver MMIC LNA, mixer for S-band application is described. The LNA is designed by 2-stage common source. The mixer is composed of active LO and RF balun to integrate on a chip and applied a newly proposed bias circuit to compensate the process variations of active devices. The LNA has 15.51 dB-gain and 1.02dB-Noise Figure at 2.1 GHz. The conversion gain of the mixer is -12 dB, IIP3 is approximately 4.25 dBm and port-to-port isolation is over 25 dB. The newly proposed bias circuit is composed of a few FETs and resistors, and can compensate the variation of the threshold voltage by the process variations, temperature changes and etc. The designed chip size is $1.2[mm]\times1.4[mm]$.

A High Linear And Low Noise COMOS RF Front-End For 2.4GHz ZigBee Applications (지그비(ZigBee) 응용을 위한 고선형, 저잡음 2.4GHz CMOS RF 프론트-엔드(Front-End))

  • Lee, Seung-Min;Jung, Chun-Sik;Kim, Young-Jin;Baek, Dong-Hyun
    • Journal of Advanced Navigation Technology
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    • v.12 no.6
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    • pp.604-610
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    • 2008
  • A 2.4 GHz CMOS RF front-end using for ZigBee application is described The front-end consists of a low noise amplifier and a down-mixer and uses a 2 MHz IF frequency. A common source with resistive feedback and an inductive degeneration are adopted for a low noise amplifier, and a 20 dB gain control step is digitally controlled. A passive mixer for low current consumption is employed. The RF front-end is implemented in 0.18 ${\mu}m$IP6M CMOS process. The measured performance is 4.44 dB NF and -6.5 dBm IIP3 while consuming 3.28 mA current from a 1.8 V supply.

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Design of 5.8 GHz Wireless LAN Sub Harmonics Pumped Mixer Using Anti Parallel Diode Pair (APDP를 이용한 5.8GHz 무선 랜용 서브 하모닉 혼합기의 설계)

  • Yoo, Hong-Gil;Jang, Seok-Hwan;Kang, Jeong-Jin;Lee, Jong-Arc
    • Journal of IKEEE
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    • v.8 no.1 s.14
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    • pp.79-85
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    • 2004
  • In this paper, Sub harmonic mixer using anti-parallel diode pair is designed for 5.8 GHz Wireless LAN. Conventional mixers mix LO with RF and obtain IF signal from the difference between LO and RF. As frequency increase, LO signal is required increasing LO power, better phase noise, stable LO. But, using APDP, the SHP mixer mix the harmonics of LO signal. Therefore, Sub harmonic mixer is advantage that necessary LO signal frequency was used to operate the 1/2. When LO power is 3 dBm, the conversion loss of manufactured SHP mixer is 12.83 dB. The isolation of LO/IF, 2LO/IF, RF/IF and LO/RF is 39.17 dB, 58 dB, 34 dB, 67.9 dB. And IIP3 is 8 dBm.

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6.2~9.7 GHz Wideband Low-Noise Amplifier Using Series RLC Input Matching and Resistive Feedback (직렬 RLC 입력 정합 및 저항 궤환 회로를 이용한 6.2~9.7 GHz 광대역 저잡음 증폭기 설계)

  • Park, Ji An;Cho, Choon Sik
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.24 no.11
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    • pp.1098-1103
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    • 2013
  • A low-noise amplifier(LNA) using series RLC matching network and resistive feedback at 8 GHz is presented. Inductive degeneration is used for the input matching with which the proposed LNA shows quite a wide bandwidth in terms of $S_{21}$. An equivalent circuit model is deduced for input matching by conversion from parallel circuit to series resonant circuit. By exploiting the resistive feedback and series RLC input matching, fully integrated LNA achieves maximum $S_{21}$ of 8.5 dB(peak to -3 dB bandwidth is about 3.5 GHz) noise figure of 5.9 dB, and IIP3 of 1.6 dBm while consuming 7 mA from 1.2 V supply.

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.

Design of High Performance LNA Based on InGaP/GaAs HBT for 5.4㎓ WLAN Band Applications (InGaP/GaAs HBT를 이용한 5.4㎓ 대역의 고성능 초고주파 집적회로 저잡음 증폭기 설계)

  • 명성식;전상훈;육종관
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.15 no.7
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    • pp.713-721
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    • 2004
  • This paper presents a high Performance LNA based on InGaP/GaAs HBT for 5.4㎓ WAM band applications. During the past days, InGaP/GaAs HBT has been being used for mainly high power amplifiers, but InCaP/GaAs is recognized as a suitable device for RF single chip. At this point, the research about a high performance LNA based on InGaP/GaAs HBT must be preceded, and in this paper, a excellent linearity and noise characteristics LNA based on InGaP/GaAs HBT is desisted and fabricated. The LNA is integrated in new of 0.9${\times}$0.9$\textrm{mm}^2$ single chip with high Q spiral inductors and MIM capacitors. The proposed LNA is biased at current point for optimum noise figure and gain characteristics, futhermore, excellent linearity is achieved. The proposed LNA shows 13㏈ gain, 2.1㏈ noise figure, and excellent linearity in terms of IIP3 of 5.5㏈m.

The Design and Performance Analysis of Physical Layer for VDL Mode-2 (VDL Mode-2 물리 계층 설계 및 성능 분석)

  • Choi, Jun-Su;Lee, Han-Seong;Kim, Tae-Sik;Kim, In-Kyu;Kim, Hyoun-Kyoung
    • Journal of Advanced Navigation Technology
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    • v.11 no.1
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    • pp.17-23
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    • 2007
  • This paper, describes the VDR physical layer design in VDL Mode-2 in order to meet the requirements of International standards. VDR's frequency band is 117.975~137MHz, and CSMA(Carrier Sense Multiple Access), D8PSK(Differential Eight Phase Shift Keyed), 25KHz's channel bandwidth use. The analysis of the isolated channel from near channels, sensitivity of the receiver, dynamic range of the receiver, linear of the transmitter and energy of spurious for linear and non-linear simulation as a requirement condition of performance of VDR and teaches the course of design. The transmitting power level should be lower than 5dB from Po1dB point and the selected IF frequency is 45MHz to suppress the spurious signals. The receiver designed has 4.5dB of Noise figure, 27.52dB of Es/No, Mixer isolation up to 30dB, IIP3 power of LNA up to +10dBm to minimize the intermodulation.

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