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A 16TX/16RX 60 GHz 802.11ad Chipset With Single Coaxial Interface and Polarization Diversity
The IEEE 802.11ad standard supports PHY rates up to 6.7 Gbps on four 2 GHz-wide channels from 57 to 64 GHz. A 60 GHz system offers higher throughput than existing 802.11ac solutions but has several challenges for high-volume production including: integration in the host platform, automated test, and...
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Published in: | IEEE journal of solid-state circuits 2014-12, Vol.49 (12), p.3031-3045 |
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container_title | IEEE journal of solid-state circuits |
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creator | Boers, Michael Afshar, Bagher Vassiliou, Iason Sarkar, Saikat Nicolson, Sean T. Adabi, Ehsan Perumana, Bevin George Chalvatzis, Theodoros Kavvadias, Spyros Sen, Padmanava Chan, Wei Liat Yu, Alvin Hsing-Ting Parsa, Ali Nariman, Med Seunghwan Yoon Besoli, Alfred Grau Kyriazidou, Chryssoula A. Zochios, Gerasimos Castaneda, Jesus A. Sowlati, Tirdad Rofougaran, Maryam Rofougaran, Ahmadreza |
description | The IEEE 802.11ad standard supports PHY rates up to 6.7 Gbps on four 2 GHz-wide channels from 57 to 64 GHz. A 60 GHz system offers higher throughput than existing 802.11ac solutions but has several challenges for high-volume production including: integration in the host platform, automated test, and high link loss due to blockage and polarization mismatch. This paper presents a 802.11ad radio chipset capable of SC and OFDM modulation using a 16TX-16RX beamforming RF front-end, complete with an antenna array that supports polarization diversity. To aid low-cost integration in PC platforms, a single coaxial cable interface is used between chips. The chipset is capable of maintaining a link of 4.6 Gbps (PHY rate) at 10 m. |
doi_str_mv | 10.1109/JSSC.2014.2356462 |
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A 60 GHz system offers higher throughput than existing 802.11ac solutions but has several challenges for high-volume production including: integration in the host platform, automated test, and high link loss due to blockage and polarization mismatch. This paper presents a 802.11ad radio chipset capable of SC and OFDM modulation using a 16TX-16RX beamforming RF front-end, complete with an antenna array that supports polarization diversity. To aid low-cost integration in PC platforms, a single coaxial cable interface is used between chips. The chipset is capable of maintaining a link of 4.6 Gbps (PHY rate) at 10 m.</description><subject>Antennas</subject><subject>Arrays</subject><subject>Baseband</subject><subject>CMOS integrated circuits</subject><subject>Coaxial cables</subject><subject>Gain</subject><subject>millimeter wave integrated circuits</subject><subject>Phase locked loops</subject><subject>phased arrays</subject><subject>Transceivers</subject><subject>wireless communication</subject><issn>0018-9200</issn><issn>1558-173X</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2014</creationdate><recordtype>article</recordtype><recordid>eNo9kNFKw0AURBdRsFY_QHzZH0i7dze7uXksUdtKQbEV-yCETfbGrsSkJEFsv96UFp-GgZlhOIzdghgBiHj8tFwmIykgHEmlTWjkGRuA1hhApNbnbCAEYBBLIS7ZVdt-9TYMEQbsY8LBrNZjMK9rbgSfzvYchexHrePJxm9b6vi77zZ86avPknhS219vSz6vOmoKmxO3leMvdWkbv7edryt-73-oaX23u2YXhS1bujnpkL09PqySWbB4ns6TySLIldJdIDFSJiO0mbIOLCKG4IygKIqszlAUTglSuj8skTLldBhbTeh0jkUWxZEaMjju5k3dtg0V6bbx37bZpSDSA570gCc94ElPePrO3bHjieg_b2JAHRr1B48SXnc</recordid><startdate>20141201</startdate><enddate>20141201</enddate><creator>Boers, Michael</creator><creator>Afshar, Bagher</creator><creator>Vassiliou, Iason</creator><creator>Sarkar, Saikat</creator><creator>Nicolson, Sean T.</creator><creator>Adabi, Ehsan</creator><creator>Perumana, Bevin George</creator><creator>Chalvatzis, Theodoros</creator><creator>Kavvadias, Spyros</creator><creator>Sen, Padmanava</creator><creator>Chan, Wei Liat</creator><creator>Yu, Alvin Hsing-Ting</creator><creator>Parsa, Ali</creator><creator>Nariman, Med</creator><creator>Seunghwan Yoon</creator><creator>Besoli, Alfred Grau</creator><creator>Kyriazidou, Chryssoula A.</creator><creator>Zochios, Gerasimos</creator><creator>Castaneda, Jesus A.</creator><creator>Sowlati, Tirdad</creator><creator>Rofougaran, Maryam</creator><creator>Rofougaran, Ahmadreza</creator><general>IEEE</general><scope>97E</scope><scope>RIA</scope><scope>RIE</scope><scope>AAYXX</scope><scope>CITATION</scope></search><sort><creationdate>20141201</creationdate><title>A 16TX/16RX 60 GHz 802.11ad Chipset With Single Coaxial Interface and Polarization Diversity</title><author>Boers, Michael ; 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A 60 GHz system offers higher throughput than existing 802.11ac solutions but has several challenges for high-volume production including: integration in the host platform, automated test, and high link loss due to blockage and polarization mismatch. This paper presents a 802.11ad radio chipset capable of SC and OFDM modulation using a 16TX-16RX beamforming RF front-end, complete with an antenna array that supports polarization diversity. To aid low-cost integration in PC platforms, a single coaxial cable interface is used between chips. The chipset is capable of maintaining a link of 4.6 Gbps (PHY rate) at 10 m.</abstract><pub>IEEE</pub><doi>10.1109/JSSC.2014.2356462</doi><tpages>15</tpages></addata></record> |
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source | IEEE Electronic Library (IEL) Journals |
subjects | Antennas Arrays Baseband CMOS integrated circuits Coaxial cables Gain millimeter wave integrated circuits Phase locked loops phased arrays Transceivers wireless communication |
title | A 16TX/16RX 60 GHz 802.11ad Chipset With Single Coaxial Interface and Polarization Diversity |
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