Title :
Effective throughput 1 Gbps-class millimeter-wave wireless system
Author :
Ozawa, Fumio ; Taniguchi, Toru ; Toriyama, Yasuhiro ; Kobayashi, Jun ; Kojima, Kazuya
Author_Institution :
Lab., R&D Center, Japan Radio Co., Ltd., Tokyo, Japan
Abstract :
In preparation for achieving the millimeter-wave broadband wireless system aimed at seamless connection with the optical network, we have developed key devices such as baseband signal processing SoC (System-On-Chip) with the built-in high-speed multi-level QAM (Quadrature amplitude modulation) modem (modulator and demodulator), SiGe (silicon germanium) I/Q quadrature modulator and demodulator MMIC (Microwave Monolithic Integrated Circuit), and GaAsHEMT (gallium arsenide high electron mobility transistor) frequency converter MMIC. We have also prototyped the small and broadband 38 GHz band point-to-point wireless system using TDD (Time Division Duplex) mode with dynamic radio resource control. Then, the maximum effective throughput on 64QAM has been 1 Gbps, and this system has reached to the stage of field trial.
Keywords :
HEMT integrated circuits; MIMIC; MMIC; gallium arsenide; modulators; quadrature amplitude modulation; radiocommunication; silicon compounds; system-on-chip; time division multiplexing; GaAs; HEMT; I/Q quadrature modulator; SiGe; SoC; TDD; baseband signal processing; bit rate 1 Gbit/s; broadband band point-to-point wireless system; demodulator MMIC; dynamic radio resource control; effective throughput; frequency 38 GHz; frequency converter MMIC; gallium arsenide high electron mobility transistor; microwave monolithic integrated circuit; millimeter wave wireless system; multi level QAM; optical network; quadrature amplitude modulation; seamless connection; system-on-chip; time division duplex mode; Bit error rate; MMICs; Phase shift keying; System-on-a-chip; Throughput; Wireless communication;
Conference_Titel :
Electronics, Circuits and Systems (ICECS), 2011 18th IEEE International Conference on
Conference_Location :
Beirut
Print_ISBN :
978-1-4577-1845-8
Electronic_ISBN :
978-1-4577-1844-1
DOI :
10.1109/ICECS.2011.6122321