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题名

A 10ns Delay Range 1.5GHz BW True-Time-Delay Array-Based Passive-Active Signal Combiner with Negative-Cap Stabilized RAMP for Fast Precise Localization

作者
DOI
发表日期
2024-06-18
ISSN
1529-2517
ISBN
979-8-3503-5948-0
会议录名称
会议日期
16-18 June 2024
会议地点
Washington, DC, USA
摘要
Maximizing gain in beamforming arrays for emerging communications-on-the-move applications is key in highly resilient networks. Recent studies have demonstrated the rainbow beamtraining method as an effective solution for spatio-spectral mapping in analog/hybrid arrays but require large delay-bandwidth products. In this work, a proof-of-concept 2-channel 1.5GHz bandwidth 10ns maximum delay spatial signal processor is proposed. The angle-of-arrival estimation error is significantly reduced to ±1.5° compared to prior implementations with a smaller delay range. Multi-stage buffer-less switched-capacitor array enables large delay-bandwidth product of 15. A passive-active amplifier-based combination scheme supports the wideband operation minimizing power and distortion. A negative-capacitance compensated ring-amplifier with stabilization is proposed as part of the wideband signal combiner. The 2-channel system consumes 37.3mW/channel and 0.45mm2 in 65nm CMOS.
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条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/803370
专题南方科技大学
作者单位
1.Washington State University, USA
2.University of California, Los Angeles, USA
3.Southern University of Science and Technology, China
推荐引用方式
GB/T 7714
Qiuyan Xu,Chung-Ching Lin,Aditya Wadaskar,et al. A 10ns Delay Range 1.5GHz BW True-Time-Delay Array-Based Passive-Active Signal Combiner with Negative-Cap Stabilized RAMP for Fast Precise Localization[C],2024.
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