CMOS Wideband Low-Pass Filter Using Complementary Structured OPAMP for Wideband System Applications

IF 1.6 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of electromagnetic engineering and science Pub Date : 2023-01-31 DOI:10.26866/jees.2023.1.r.141
C. Noh, Hyun-Yeop Lee, H. Kang, Seong-Tae Kim, Homin Park, Young-jin Kim
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Abstract

In this paper, a CMOS wideband low-pass filter is proposed. In the wide band active filter design, the unit gain frequency (GBW) of OPAMP should be larger than GHz. The GBW of the proposed OPAMP is around 2.3 GHz. Additionally, the OPAMP with a complementary structure in signal and common mode feedback is proposed and has a wide operating voltage range at the input and output. The 1-dB gain compression point (P1dB) at the output is 4.9 dBm. A source follower is employed for driving 50 Ω output impedance without degrading the bandwidth and linearity of the filter. The power consumption is 27 mW from a 1-V supply voltage. The 3 dB bandwidth of the filter ranges from 330 MHz to 660 MHz with 3-bit cap tuning. This work is implemented in a 65-nm CMOS process, with a chip area of 0.18 mm2.
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用于宽带系统应用的互补结构OPAMP CMOS宽带低通滤波器
本文提出了一种CMOS宽带低通滤波器。在宽带有源滤波器设计中,运算放大器的单位增益频率(GBW)应大于GHz。所提出的OPAMP的GBW约为2.3 GHz。此外,提出了具有信号和共模反馈互补结构的OPAMP,并在输入和输出处具有宽的工作电压范围。输出处的1-dB增益压缩点(P1dB)为4.9dBm。源极跟随器用于驱动50Ω的输出阻抗,而不会降低滤波器的带宽和线性度。在1-V电源电压下,功耗为27mW。滤波器的3dB带宽范围从330MHz到660MHz,具有3位上限调谐。这项工作是在65纳米CMOS工艺中实现的,芯片面积为0.18平方毫米。
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来源期刊
Journal of electromagnetic engineering and science
Journal of electromagnetic engineering and science ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.90
自引率
17.40%
发文量
82
审稿时长
10 weeks
期刊介绍: The Journal of Electromagnetic Engineering and Science (JEES) is an official English-language journal of the Korean Institute of Electromagnetic and Science (KIEES). This journal was launched in 2001 and has been published quarterly since 2003. It is currently registered with the National Research Foundation of Korea and also indexed in Scopus, CrossRef and EBSCO, DOI/Crossref, Google Scholar and Web of Science Core Collection as Emerging Sources Citation Index(ESCI) Journal. The objective of JEES is to publish academic as well as industrial research results and discoveries in electromagnetic engineering and science. The particular scope of the journal includes electromagnetic field theory and its applications: High frequency components, circuits, and systems, Antennas, smart phones, and radars, Electromagnetic wave environments, Relevant industrial developments.
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