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Towards Broadband D-Band Wireless Communication Systems using Beam Steering in SiGe BiCMOS Technology

机译:在SiGE BICMOS技术中使用光束转向的宽带D波段无线通信系统

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This paper provides an overview of key challenges and solutions for integrated circuits and system-integration in order to realize practical mm-wave wireless communication systems in D-band targeting data rates in the order of 100 Gbps with beam steering functionality. As key element for beam-controlled systems, the design and measurement results of a broadband, low power and digitally adjustable D-band phase shifter are presented. Additionally, system performance limits in different beam-steering architectures are derived. The presented vector modulator core exploits passive phase generation with synthesized high performance couplers, achieving a 360° phase control at a maximum power consumption of 25mW from a 2.5V supply and a maximum 3 dB bandwidth of 20 GHz. Because of its flat gain response and high control-resolution, the phase shifter can be operated within multiple multi-GHz sub-bands within the D-band.
机译:本文概述了集成电路和系统集成的关键挑战和解决方案,以便在与光束转向功能的100Gbps的顺序中实现D波段的实际MM波无线通信系统。 作为光束控制系统的关键元件,呈现了宽带,低功率和数字可调节的D波段移位器的设计和测量结果。 此外,导出了不同光束引导架构中的系统性能限制。 呈现的矢量调制器核心利用合成的高性能耦合器利用被动阶段生成,从2.5V电源的最大功耗和20 GHz的最大3 dB带宽实现360°相位控制。 由于其平坦增益响应和高控制分辨率,可以在D波段内的多个多GHz子带内操作移相器。

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