DocumentCode :
546033
Title :
60 GHz ultrawideband hybrid-integrated dual-polarized front-end in LTCC technology
Author :
Müller, Robert ; Ariza, Alexis Paolo Garcia ; Xia, Lei ; Wollenschläger, Frank ; Schulz, Alexander ; Lopez-Diaz, Daniel ; Elkhouly, Mohamed ; Thomä, Reiner S. ; Hein, Matthias A. ; Müller, Jens
Author_Institution :
Electron. Meas. Res. Lab., Ilmenau Univ. of Technol., Ilmenau, Germany
fYear :
2011
fDate :
11-15 April 2011
Firstpage :
1449
Lastpage :
1453
Abstract :
For wireless high-data-rate applications, channel sounding, and radar sensors, the unlicensed frequency band around 60 GHz is of relevant commercial interest. Currently, there is enormous progress in the field of integrating 60 GHz technology in compact systems using multilayer technology and reducing costs for mass production. For full channel characterization, but also for consumer applications, dual-polarized frontends offer many advantages for enhancement of polarization mismatch and increasing data rates. In this paper we address the design, successful implementation, and application of two dual-polarized (DP) frontend solutions using the low-temperature co-fired ceramic (LTCC) technology. These DP frontends exhibit advantageous technical properties for practical implementation, e.g., up to 9 GHz bandwidth at the 60 GHz band, low cross-talk between two channel and good heat dissipation in approximately 20 × 40 mm.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; III-V semiconductors; MIMIC; ceramic packaging; gallium arsenide; mass production; DP frontend solution; GaAs; LTCC technology; SiGe; channel sounding; compact system; consumer application; frequency 60 GHz; low-temperature cofired ceramic technology; mass production; multilayer technology; polarization mismatch; radar sensor; ultrawideband hybrid-integrated dual-polarized front-end solution; Frequency measurement; Heating; MMICs; Microwave filters; Radio frequency; Silicon germanium; Substrates; 60 GHz; GaAs; SiGe BiCMOS; dual-polarization; front-ends; low-temperature co-fired ceramic; millimeter-waves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation (EUCAP), Proceedings of the 5th European Conference on
Conference_Location :
Rome
Print_ISBN :
978-1-4577-0250-1
Type :
conf
Filename :
5781783
Link To Document :
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