⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文设计了一款用于2.4GHz WLAN的数字极性发射机,其核心创新在于提出了一种采用数字综合流程实现的数字-时间转换器(DTC)。该发射机基于14nm Tri-gate/FinFET工艺,解决了传统模拟DTC在先进工艺下设计复杂度高、可移植性差的问题。
Muhammad Faisal1,b, William Yee Li1, Hyung Seok Kim1, Khoa Minh Nguyen1, Yulin Tan1,c, Brent Carlton1, Vaibhav Vaidya1, Yanjie Wang1, Thomas Tetzlaff1, Satoshi Suzuki1, Amr Fahim1,d, Parmoon Seddighrad1, Jianyong Xie2, Zhichao Zhang2, Divya Shree Vemparala1, Ashoke Ravi1, Stefano Pellerano1, Yorgos Palaskas1 Intel, Hillsboro, OR, 2Intel, Chandler, AZ 1 now with Fudan University, Shanghai, China, b now with Movellus Circuits, Ann Arbor, MI, c now with Radiawave Technologies, Shenzhen, China, d now with Clariphy Communications, Irvine CA The DTC is implemented with digital design flow with synthesis and automated place-and-route layout tools. It is described using a combination of structural RTL (for delay lines, divider by two, phase mux) and behavioral RTL (for control/synchronization logic, calibration engine). A design methodology based on a Matlab script is used to size the delay lines to meet required ranges and
Paolo Madoglio1, Hongtao Xu1,a, Kailash Chandrashekar1, Luis Cuellar1,