1.5 ~ 5.0 ghz输入匹配+2dBm P1dB全无源开关电容波束成形接收机前端,采用65nm CMOS

Michiel C. M. Soer, E. Klumperink, B. Nauta, F. V. Vliet
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引用次数: 25

摘要

用于消费者通信频段的CMOS相控阵旨在利用天线阵列的波束形成来提高接收机的性能。通过阵列增益,灵敏度随天线单元数的增加而增加,通过波束方向图的空间滤波可以消除干扰[1]。对于后者,由于干扰尚未消除,接收器在波束形成和点之前的线性度成为瓶颈。LO域的相移降低了信号路径的复杂性,可以使用线性信号块,但对多相LO生成有较高的要求[2]。另一方面,开关电容移相器可以是非常线性的,但受到必要的输入匹配和元件求和级的线性限制[3]。本文提出了一种全无源相控阵接收机前端,它实现了阻抗匹配、相移和元件求和,只需开关电容级即可实现高线性度。
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A 1.5-to-5.0GHz input-matched +2dBm P1dB all-passive switched-capacitor beamforming receiver front-end in 65nm CMOS
Phased arrays in CMOS for consumer communication bands aim to enhance receiver performance by exploiting beamforming with antenna arrays. Sensitivity increases with the number of antenna elements through array gain and interferers can be cancelled through the spatial filtering of the beam pattern [1]. For the latter, the linearity of the receiver before the beamforming summing point becomes a bottleneck as interferers are not cancelled yet. Phase shifting in the LO domain reduces the complexity in the signal path and enables the use of linear signal blocks, but has high requirements on the multiphase LO generation [2]. On the other hand, a switched-capacitor phase shifter can be very linear, but is limited by the linearity of the necessary input matching and element summing gm-stages [3]. This paper proposes a fully passive phased-array receiver front-end which implements impedance matching, phase shifting and element summing with only switched-capacitor stages for a high linearity.
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