RFIC公司
电感器
电感
导线
电子工程
工程类
Q系数
放大器
电气工程
皮肤效应
材料科学
CMOS芯片
电压
谐振器
复合材料
作者
Choon Beng Sia,B.H. Ong,Kwok Wai Chan,Kiat Seng Yeo,Jianguo Ma,Moon Ho
标识
DOI:10.1109/ted.2005.859638
摘要
A new test structure layout technique and design methodology are used to investigate quantitatively how geometrical layout parameters such as core diameter, conductor spacing, and width would affect the performance of spiral inductors. For the 0.18-/spl mu/m RFCMOS technology, experimental results in this paper reveal that inductors' core diameters must be adequately large, more than 100 /spl mu/m, to ensure high quality factor characteristics and their conductor spacing should be minimal to obtain larger per unit area inductance value. A novel design methodology which optimizes the conductor width of inductors allows alignment of their peak quality factor to the circuit's operating frequency, enhancing the gain, input/output matching characteristics and noise figure of a giga-hertz amplifier.
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