Mutually coupled CG-CS current reuse low noise amplifier architecture for 4 – 14 GHz frequency

IF 1 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Electrical Engineering-elektrotechnicky Casopis Pub Date : 2023-06-01 DOI:10.2478/jee-2023-0023
Dheeraj Kalra, Vishal Goyal, Manish Kumar, M. Srivastava
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Abstract

Abstract The current research paper presents a design of a mutually coupled cascode Common Gate Common Source (CG-CS) Low Noise Amplifier (LNA) using current reuse technique. The proposed design provides a significant improvement in the gain and noise performance of the LNA, while also reducing power consumption. Mutually coupled inductors help in reducing the size of the circuit while transformer connected at the output provide output impedance matching. Proposed LNA simulated for the 4–14 GHz RF frequency. Mathematical analysis of proposed LNA has been analyzed using the small signal model henceforth input impedance; gain and Noise Figure (NF) have been derived from it. The design and simulation results show that the proposed LNA design with current reuse technique achieved a maximum gain of 17.87 dB, minimum NF of 5.45 dB, and input reflection coefficient less than –10 dB for the 10 GHz bandwidth. These results indicate a significant improvement in the overall performance of the LNA compared to conventional designs as Figure of Merit (FoM) is 17.34.
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用于4–14 GHz频率的相互耦合CG-CS电流重用低噪声放大器架构
摘要当前的研究论文提出了一种利用电流复用技术设计的互耦共栅共栅共源低噪声放大器。所提出的设计显著提高了LNA的增益和噪声性能,同时还降低了功耗。相互耦合的电感器有助于减小电路的尺寸,而连接在输出端的变压器提供输出阻抗匹配。针对4–14 GHz射频频率模拟的拟议LNA。使用小信号模型对所提出的LNA进行了数学分析,此后输入阻抗;设计和仿真结果表明,采用电流复用技术设计的低噪声放大器在10GHz带宽下,最大增益为17.87dB,最小噪声系数为5.45dB,输入反射系数小于-10dB。这些结果表明,与传统设计相比,LNA的总体性能显著提高,因为优良系数(FoM)为17.34。
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来源期刊
Journal of Electrical Engineering-elektrotechnicky Casopis
Journal of Electrical Engineering-elektrotechnicky Casopis 工程技术-工程:电子与电气
CiteScore
1.70
自引率
12.50%
发文量
40
审稿时长
6-12 weeks
期刊介绍: The joint publication of the Slovak University of Technology, Faculty of Electrical Engineering and Information Technology, and of the Slovak Academy of Sciences, Institute of Electrical Engineering, is a wide-scope journal published bimonthly and comprising. -Automation and Control- Computer Engineering- Electronics and Microelectronics- Electro-physics and Electromagnetism- Material Science- Measurement and Metrology- Power Engineering and Energy Conversion- Signal Processing and Telecommunications
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