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High-Power CMOS SOI Switching and Ap...
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Hill, Cameron W.
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High-Power CMOS SOI Switching and Applications in RF Signal Processing.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
High-Power CMOS SOI Switching and Applications in RF Signal Processing./
作者:
Hill, Cameron W.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2020,
面頁冊數:
118 p.
附註:
Source: Dissertations Abstracts International, Volume: 82-05, Section: B.
Contained By:
Dissertations Abstracts International82-05B.
標題:
Electrical engineering. -
電子資源:
https://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=28029985
ISBN:
9798684681622
High-Power CMOS SOI Switching and Applications in RF Signal Processing.
Hill, Cameron W.
High-Power CMOS SOI Switching and Applications in RF Signal Processing.
- Ann Arbor : ProQuest Dissertations & Theses, 2020 - 118 p.
Source: Dissertations Abstracts International, Volume: 82-05, Section: B.
Thesis (Ph.D.)--University of California, Santa Barbara, 2020.
This item must not be sold to any third party vendors.
In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI) from the transmitter to the receiver. A combination of antenna-isolation, circulators, analog cancellation, and digital cancellation can achieve high levels of SI cancellation, but is still not enough to enable high-sensitivity IBFD operation. An additional layer of cancellation can be added in the code-domain. RF code-domain DSSS-CDMA approaches have been shown to add an additional 40-50 dB of SI cancellation. However, in order to make code-domain techniques compatible with other SI cancellation techniques, the interface must be RF-invisible and placed directly at the antenna interface. This requires RF-signal processing techniques in both the TX and RX paths of the tranceiver. This work focuses on the development of high-power, high modulation bandwidth switches in cost-effective CMOS SOI processes which enable the transmitter side of code-domain SI without interfering with other self-interference cancellation techniques. First, theory groundwork of trade-os between linearity, power-handling, and insertion loss in CMOS switches will be discussed. Then a variety of modulators based on this theory with fractional bandwidths (FBWs) approaching 50% and power handling of up to 40 dBm will be explained. Next, signal processing techniques to reduce unnecessary out-of-band (OOB) emissions will be given. Finally, the applications of these techniques in full-duplex systems, and further applications are discussed.
ISBN: 9798684681622Subjects--Topical Terms:
649834
Electrical engineering.
Subjects--Index Terms:
CMOS
High-Power CMOS SOI Switching and Applications in RF Signal Processing.
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In-band full duplex (IBFD) for increased spectral efficiency but is limited by self-interference (SI) from the transmitter to the receiver. A combination of antenna-isolation, circulators, analog cancellation, and digital cancellation can achieve high levels of SI cancellation, but is still not enough to enable high-sensitivity IBFD operation. An additional layer of cancellation can be added in the code-domain. RF code-domain DSSS-CDMA approaches have been shown to add an additional 40-50 dB of SI cancellation. However, in order to make code-domain techniques compatible with other SI cancellation techniques, the interface must be RF-invisible and placed directly at the antenna interface. This requires RF-signal processing techniques in both the TX and RX paths of the tranceiver. This work focuses on the development of high-power, high modulation bandwidth switches in cost-effective CMOS SOI processes which enable the transmitter side of code-domain SI without interfering with other self-interference cancellation techniques. First, theory groundwork of trade-os between linearity, power-handling, and insertion loss in CMOS switches will be discussed. Then a variety of modulators based on this theory with fractional bandwidths (FBWs) approaching 50% and power handling of up to 40 dBm will be explained. Next, signal processing techniques to reduce unnecessary out-of-band (OOB) emissions will be given. Finally, the applications of these techniques in full-duplex systems, and further applications are discussed.
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