⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文介绍了一款采用单同轴接口和极化分集技术的60GHz 802.11ad芯片组,包含16个发射和16个接收通道,解决了60GHz频段无线通信中的高数据速率和链路可靠性问题。
Ehsan Adabi1, Bagher Afshar1, Bevin Perumana1, Theodoros Chalvatzis2, Spyros Kavadias2, Padmanava Sen1, Wei Liat Chan1, Alvin Yu1, Ali Parsa3, Med Nariman1, Seunghwan Yoon1, Alfred Grau Besoli1, Chryssoula Kyriazidou2, Gerasimos Zochios2, Namik Kocaman1, Adesh Garg1, Hans Eberhart1, Phil Yang1, Hongyu Xie1, Hea Joung Kim1, Alireza Tarighat1, David Garrett1, Andrew Blanksby1, Mong Kuan Wong4, Durai Pandian Thirupathi1, Siukai Mak3, Radha Srinivasan1, Amir Ibrahim1, Ersin Sengul1, Vincent Roussel1, Po-Chao Huang1, Tsuifang Yeh3, Murat Mese1, Jesus Castaneda1, Brima Ibrahim1, Tirdad Sowlati1, Maryam Rofougaran1, Ahmadreza Rofougaran1 Broadcom, Irvine, CA, 2Broadcom, Alimos, Greece, 3Broadcom, San Diego, CA, Broadcom, Sunnyvale, CA 1 4 The IEEE 802.11ad standard supports PHY rates up to 6.7Gb/s on four 2GHzwide channels from 57 to 64GHz. A 60GHz system offers higher throughput than existing 802.11ac solutions but has several challenges for high-volume
Michael Boers1, Iason Vassiliou2, Saikat Sarkar1, Sean Nicolson1,