首页> 外文会议>International Conference on VLSI Design >Tutorial T12: Design, Simulation, Fabrication and Testing of Microwave CMOS Distributed Oscillators, Amplifiers, Noise Cancelling LNA with Temperature Performances and Finally Design of 60 GHz 5G Receiver for Mobile Communication
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Tutorial T12: Design, Simulation, Fabrication and Testing of Microwave CMOS Distributed Oscillators, Amplifiers, Noise Cancelling LNA with Temperature Performances and Finally Design of 60 GHz 5G Receiver for Mobile Communication

机译:教程T12:微波CMOS分布式振荡器,放大器,噪声消除LNA的设计,仿真,制造和测试,具有温度性能,最终设计为移动通信60 GHz 5G接收器

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Summary form only given, as follows. The complete presentation was not made available for publication as part of the conference proceedings. In this tutorial, after a brief description of the typical structure of a millimeter-wave receiver, the design, simulation, layouts and measured results of Microwave frequency Distributed Oscillators and broadband Distributed Amplifier will be presented. The measured temperature performance of the above mentioned Integrated Circuits (ICs) will also be presented with an analysis. The tutorial will be describing the popular RF front-end architectures with a particular emphasis on the noise-canceling (NC) technique based NC Distributed LNA in UWB band, followed by 60 GHz band designs of LNA, Quadrature Voltage Controlled Oscillator (QVCO) and down-conversion Mixer for 5G Mobile Communication Receiver. The tutorial will be constructing a 60 GHz Quadrature Receiver utilizing above 60 GHz circuits and presentation of its simulation results of Rx Conversion Gain, Noise Figure etc. Finally, an example of 60 GHz full duplex (FD) Transceiver of greater than 5 Gbps data rate will be presented from a recently published work.
机译:摘要只给出,如下所述。完整的陈述未作为会议诉讼程序的一部分提供出版物。在本教程中,在简要描述毫米波接收器的典型结构之后,将呈现微波频率分布式振荡器和宽带分布放大器的设计,模拟,布局和测量结果。还将呈现上述集成电路(IC)的测量温度性能。本教程将描述流行的RF前端架构,特别强调UWB带中基于噪声消除(NC)的NC分布式LNA,然后是LNA,正交电压控制振荡器(QVCO)和60GHz带设计。用于5G移动通信接收器的下转换混合器。该教程将使用高于60 GHz电路的60 GHz正交接收器,并呈现RX转换增益,噪声图等的仿真结果。最后,60 GHz全双工(FD)收发器的示例大于5 Gbps数据速率将从最近发表的工作中提出。

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