DocumentCode :
3603148
Title :
A 60 GHz, 802.11ad/WiGig-Compliant Transceiver for Infrastructure and Mobile Applications in 130 nm SiGe BiCMOS
Author :
Tomkins, Alexander ; Poon, Alan ; Juntunen, Eric ; El-Gabaly, Ahmed ; Temkine, Grigori ; Yat-Loong To ; Farnsworth, Craig ; Tabibiazar, Arash ; Fakharzadeh, Mohammad ; Jafarlou, Saman ; Abdellatif, Ahmed ; Tawfik, Hatem ; Lynch, Brad ; Tazlauanu, Mihai ;
Author_Institution :
Peraso Technol. of Toronto, Toronto, ON, Canada
Volume :
50
Issue :
10
fYear :
2015
Firstpage :
2239
Lastpage :
2255
Abstract :
A fully integrated 802.11ad/WiGig compliant 60 GHz transceiver is presented in a 130 nm SiGe BiCMOS technology. Encompassing an area of 2.3 mm×2.16 mm=4.97 mm2, the transceiver covers the entire 60 GHz band, from 57 to 66 GHz. Within this span, the RX NF, TX OP1dB, and PLL RMS jitter is better than 5.5 dB, 13.5 dBm, and 7°, respectively. The transceiver is packaged in 1) a system-in-package substrate with industry standard WR-15 transition providing an approximate 1 dB insertion loss, and 2) a cost-effective 7×7 mm2 organic BGA package with integrated transmit and receive antennas providing 8 dBi gain. In system-level testing, the transceiver is fully compliant with all TX EVM and RX sensitivity requirements of the WiGig standard up to the top-rate 16-QAM operating mode and across all standard channel frequencies. Link testing over the air with the antenna-integrated package shows a range of 5.9 m at 4.6 Gbps and over 20 m at 2.5 Gbps. This system achieves the highest performance 802.11ad/WiGig compliant wireless links of any reported single-element transceiver.
Keywords :
BiCMOS analogue integrated circuits; Ge-Si alloys; ball grid arrays; jitter; radio transceivers; receiving antennas; system-in-package; transmitting antennas; 802.11ad/WiGig-compliant transceiver; BiCMOS technology; PLL RMS jitter; SiGe; antenna-integrated package; frequency 60 GHz; industry standard WR-15 transition; insertion loss; link testing; mobile applications; organic BGA package; receive antennas; size 130 nm; standard channel frequencies; system-in-package substrate; system-level testing; transmit antennas; Baseband; BiCMOS integrated circuits; Gain; Mixers; Radio frequency; Transceivers; Transmitters; 60 GHz; Antenna-in-package; BiCMOS; IEEE 802.11ad; SiGe; WiGig; mm-Wave; radio transceivers;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2015.2436900
Filename :
7124536
Link To Document :
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