DocumentCode
1051336
Title
RF Noise of 65-nm MOSFETs in the Weak-to-Moderate-Inversion Region
Author
Shi, Jinglin ; Xiong, Yong Zhong ; Kang, Kai ; Nan, Lan ; Lin, Fujiang
Author_Institution
Agency for Sci., Technol. & Res., Inst. of Microelectron., Singapore
Volume
30
Issue
2
fYear
2009
Firstpage
185
Lastpage
188
Abstract
In this letter, the RF noise performance of 65-nm MOSFETs with 60-, 90-, 130-, and 240-nm drawn gate lengths has been extensively investigated in the weak-to-moderate-inversion region for low-power and low-voltage (LPLV) applications. Noise measurements show that although the noise performance is directly related to gate length (Lg), it does not monotonically scale with the inverse of gate length. When biased in the weak-inversion region, a transistor with slightly relaxed gate length, instead of minimum gate length, will benefit from a smaller gate resistance and a smaller equivalent noise resistance Rn. The transistor transconductance (gm), output conductance (gd), unity current gain frequency (fT) , maximum frequency of oscillation (f max), and noise parameters are extracted as a function of the drain current density and compared among devices with different gate lengths.
Keywords
MOSFET; noise measurement; MOSFET; RF noise; low-power and low-voltage applications; noise measurements; size 130 nm; size 240 nm; size 60 nm; size 65 nm; size 90 nm; transistor transconductance; 65 nm; CMOS; MOSFET; RF noise; low-power; low-voltage; moderate inversion; weak inversion;
fLanguage
English
Journal_Title
Electron Device Letters, IEEE
Publisher
ieee
ISSN
0741-3106
Type
jour
DOI
10.1109/LED.2008.2010464
Filename
4731846
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