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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >CMOS Active Bandpass Filter Using Compacted Synthetic Quasi-TEM Lines at $C$-Band
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CMOS Active Bandpass Filter Using Compacted Synthetic Quasi-TEM Lines at $C$-Band

机译:CMOS有源带通滤波器,采用紧凑的合成准TEM线,价格为$ C $ -Band

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This paper presents a fully monolithic transmission-line-based active bandpass filter (BPF) fabricated in a 0.18-mum standard complementary metal-oxide-semiconductor (CMOS) technology. The half-wavelength resonators are realized by synthetic quasi-TEM complementary conducting-strip transmission lines (CCS TLs). To lower the insertion loss of the BPF, the differential nMOS cross-coupled pairs are combined with the parallel resonators. Besides, the active devices and CCS TLs are vertically integrated on the standard CMOS substrate. The Q-enhanced resonator, which is comprised of a CCS TL and an nMOS cross-coupled pair, is theoretically investigated. Simulation results indicate that the Q factor of the resonator can be increased from 3.4 to 84.0 at 6.53 GHz. Additionally, the prototype of the second-order BPF occupies an area of 1230 mumtimes880 mum, and the measured results demonstrate that the center frequency is 6.02 GHz with a bandwidth of 1.14 GHz. The P1dB and insertion loss are -15.2dBm and 2.2 dB, respectively, when the BPF consumes 3.0 mA from a 1.8-V supply. A two-port noisy network is also reported to examine the noise figure (NF) of the proposed BPF. Theoretical results reveal that the NF is 11.38 dB at 6.0 GHz, with a difference of less than 7.2% among the measured data
机译:本文提出了一种采用0.18um标准互补金属氧化物半导体(CMOS)技术制造的完全基于传输线的有源带通滤波器(BPF)。半波长谐振器通过合成准TEM互补导电带传输线(CCS TL)实现。为了降低BPF的插入损耗,差分nMOS交叉耦合对与并联谐振器组合在一起。此外,有源器件和CCS TL垂直集成在标准CMOS基板上。从理论上研究了由CCS TL和nMOS交叉耦合对组成的Q增强谐振器。仿真结果表明,谐振器的Q因子在6.53 GHz时可以从3.4增加到84.0。此外,二阶BPF的原型占用的面积为1230 mum×880 mum,测量结果表明中心频率为6.02 GHz,带宽为1.14 GHz。当BPF从1.8V电源消耗3.0mA电流时,P1dB和插入损耗分别为-15.2dBm和2.2dB。还报告了一个两端口噪声网络,以检查提议的BPF的噪声系数(NF)。理论结果表明,在6.0 GHz时,NF为11.38 dB,测量数据之间的差异小于7.2%

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