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ISSCC 2012Session 9 · WIRELESS TRANSCEIVER TECHNIQUESWireless65nm CMOS

A 4-in-1 (WiFi/BT/FM/GPS) Connectivity SoC with Enhanced Co-Existence Performance in 65nm CMOS

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📋 论文概要

该论文提出了一款在65nm CMOS工艺下集成了WiFi、蓝牙、FM和GPS四种无线连接功能的SoC,重点解决了多模共存时的干扰问题,提升了共存性能。

💡 主要创新点

工艺节点
65nm CMOS
重要性
发表年份
ISSCC 2012

🏷 关键词

多模SoC共存性能无线连接

📄 原文摘要

Chien-Wei Kuan1, Hong-Lin Chu1, Chihun Lee1, Chih-Fan Liao1, Hsuan-Yu Liu1, Hong-Kai Hsu1, Li-Chun Ko1, Kuo-Hao Chen1, Chao-Hsin Lu1, Tsung-Ming Chen1, YuLi Hsueh1, Chunwei Chang1, Yi-Hsien Cho1, Chih-Hsien Shen1, Yuan Sun2, Eng-Chuan Low2, Xudong Jiang2, Deyong Hu2, Weimin Shu2, Jhy-Rong Chen1, Jui-Lin Hsu1, Chia-Jui Hsu1, Jing-Hong Conan Zhan1, Osama Shana’A2, Guang-Kaai Dehng1, George Chien3 MediaTek, Hsinchu, Taiwan MediaTek, Singapore, Singapore 3 MediaTek, San Jose, CA 1 2 In recent years, the increasing popularity of mobile devices, such as smartphones and tablets, is driving the demand for integrating multiple radios on a single SoC to reduce cost, form factor and external BOM [1]. These devices require ubiquitous wireless connectivity, which means concurrent operation with different radios. While concurrent operation of multiple radios brings excellent user experiences, there exist great challenges in dealing with radio co-existence

👥 作者与机构

Yuan-Hung Chung1, Min Chen1, Wei-Kai Hong1, Jie-Wei Lai1, Sheng-Jau Wong2,

分类:Wireless · 年份:ISSCC 2012