DocumentCode
821881
Title
Characteristics of transmission lines fabricated by CMOS process with deep n-well implantation
Author
Nishikawa, Kazuyasu ; Shintani, Kenji ; Yamakawa, Satoshi
Author_Institution
Adv. Technol. R&D Center, Mitsubishi Electr. Corp., Hyogo, Japan
Volume
54
Issue
2
fYear
2006
Firstpage
589
Lastpage
598
Abstract
We characterized the properties of transmission lines fabricated using a CMOS process with a deep n-well implantation and compared them with the properties of the transmission lines on the silicon substrate with other well formations, e.g., a p-well and those without well formations. The series inductance of the transmission line is nearly constant, for both the various well formations and the resistivities of the silicon substrate. The characteristic impedance of the transmission line on the silicon substrate with the deep n-well is higher than this value on the substrates with the p-well and those without well formations. This is because the capacitance of the transmission line on the silicon substrate with the deep n-well is larger due to the p-n junction. Moreover, the capacitance of the transmission line on the substrate with the deep n-well decreases when the dc bias voltage applied to the deep n-well is increased. The capacitance of the transmission line on the substrate with the deep n-well is nearly constant for the various resistivities of the silicon substrate, while the capacitance of the line on the substrate with the p-well decreases with higher resistivity of the substrate.
Keywords
CMOS integrated circuits; capacitance; elemental semiconductors; p-n junctions; silicon; transmission lines; CMOS process; Si; complementary metal-oxide-semiconductor; coplanar waveguides; deep n-well implantation; microstrip lines; p-n junction; silicon substrates; transmission lines; CMOS logic circuits; CMOS process; CMOS technology; Capacitance; Conductivity; Coplanar transmission lines; Radio frequency; Silicon; Transmission line theory; Transmission lines; Complementary metal–oxide–semiconductor (CMOS); coplanar waveguide; deep n-well implantation; microstrip line; silicon substrate; transmission line;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2005.862679
Filename
1589482
Link To Document