DocumentCode :
61584
Title :
A CMOS Bidirectional 32-Element Phased-Array Transceiver at 60 GHz With LTCC Antenna
Author :
Cohen, Emmanuel ; Ruberto, Mark ; Cohen, Moshik ; Degani, O. ; Ravid, Shmuel ; Ritter, Daniel
Author_Institution :
Mobile Wireless Group, Intel Haifa, Haifa, Israel
Volume :
61
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
1359
Lastpage :
1375
Abstract :
Fully integrated 32-element symmetrical TX/RX 60-GHz RF integrated circuit (RFIC) with built-in self-test is presented. The RF bidirectional power-combining architecture with shared blocks and less than 1-dB millimeter-wave transmit/receive (T/R) switch loss achieves record size and power consumption. The RFIC features an 8-dB noise figure and - 28-dBm IP1 dB in RX mode, 10-dB power gain, and Psat of +3.5 dBm per chain in TX mode. Further included are a 2-bit phase shifter, an IF converter to/from 12 GHz, and an integrated frac-N synthesizer with push-push voltage-controlled oscillator having a-93 dBc@1-MHz phase noise at 48-GHz local oscillator port. A novel high dynamic range phase and power detector is presented with 2° and ±1-dB accuracy over PVT in phase and power. A detailed analysis of both phase quantization and power distribution is presented. Array impairments such as mismatch and coupling were compared for different topologies. The RFIC is packaged on alumina for testing and on low-temperature co-fired ceramic (LTCC) for antenna integration. The 6 × 6 patch antenna on LTCC including four dummies achieves a gain of 19 dBi with scanning of ± 30°. The total root mean square amplitude and phase error of the array is 0.8 dB and 6° , respectively, resulting in a maximum array beam degradation of 1.4 dB for 2-bit quantization. The RFIC area is 29 mm2 and it consumes 1.2 W/0.85 W at TX/RX, with a 29-dBm effective isotropic radiated power at -19-dB error vector magnitude.
Keywords :
CMOS integrated circuits; antenna phased arrays; ceramic packaging; mean square error methods; microstrip antennas; millimetre wave devices; radiofrequency integrated circuits; CMOS bidirectional 32-element phased-array transceiver; LTCC antenna; RF bidirectional power-combining architecture; RF integrated circuit; RFIC; antenna integration; frequency 60 GHz; low-temperature co-fired ceramic; millimeter-wave transmit/receive switch; patch antenna; phase quantization; power distribution; root mean square amplitude; topologies; Arrays; Gain; Power demand; Radio frequency; Switches; Synthesizers; Topology; 60 GHz; Bidirectional; flip chip; phase shifter (PS); phased array; power consumption;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2013.2243749
Filename :
6464611
Link To Document :
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