A 27.8Gb/s 11.5pJ/b 60GHz transceiver in 28nm CMOS with polarization MIMO

S. Daneshgar, K. Dasgupta, C. Thakkar, A. Chakrabarti, Shuhei Yamada, D. Choudhury, J. Jaussi, B. Casper
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引用次数: 29

Abstract

The industry-wide impetus on user experience and immersive content for handheld/wearable consumer devices is accelerating the demand for high-speed millimeter-wave (mm-wave) PAN wireless connectivity. Next-generation 60GHz PAN standards [1] have made it mandatory to achieve >20Gb/s rates using wide (4.32GHz or higher) bandwidth. However, in order to support multiple concurrent high-speed links, it is imperative to achieve high spectral efficiency. MIMO techniques allow for such spectrum reuse by employing simultaneous spatial streams. However, unlike at low-GHz frequencies, which exhibit rich multipath scattering and therefore a high-rank TX-RX MIMO channel matrix, mm-wave propagation is fundamentally less diverse due to higher reflection/absorption.
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一个27.8Gb/s 11.5pJ/b 60GHz的28nm CMOS偏振MIMO收发器
整个行业对手持/可穿戴消费设备的用户体验和沉浸式内容的推动正在加速对高速毫米波(mm-wave) PAN无线连接的需求。下一代60GHz PAN标准[1]已经强制要求使用宽(4.32GHz或更高)带宽实现>20Gb/s的速率。然而,为了支持多个并发高速链路,必须实现高频谱效率。MIMO技术允许这样的频谱重用通过采用同步的空间流。然而,与低ghz频率不同,低ghz频率表现出丰富的多径散射,因此具有高阶TX-RX MIMO信道矩阵,由于更高的反射/吸收,毫米波传播的多样性基本上较低。
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