CMOS芯片
发射机
班级(哲学)
极地的
计算机科学
电信
电气工程
物理
工程类
频道(广播)
天文
人工智能
作者
Jie-Wei Lai,Chi-Hsueh Wang,Kaipon Kao,Anson Lin,Yi-Hsien Cho,Lan-Chou Cho,Meng-Hsiung Hung,Xin-Yu Shih,Che-Min Lin,Sheng-Hong Yan,Yuan-Hung Chung,Paul Liang,Guang-Kaai Dehng,Hung-Sung Li,George Chien,Robert Bogdan Staszewski
标识
DOI:10.1109/isscc.2013.6487762
摘要
An all-digital polar transmit (TX) architecture exhibits advantages of low cost, low power, as well as reconfigurability with full usage of digital computational power. The design challenge is the need for continuous innovation to further enhance power efficiency and minimize silicon area while achieving the best-in-class RF performance. The design must also meet the increasing demand of concurrent operation for multi-radio SoC integration. The presented Bluetooth TX demonstrates advancements in this direction with over 30% power and 66% area reduction.
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