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Millimeter-wave integrated circuits ...
~
Bozanic, Mladen.
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Millimeter-wave integrated circuits = methodologies for research, design and innovation /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Millimeter-wave integrated circuits/ by Mladen Bozanic, Saurabh Sinha.
其他題名:
methodologies for research, design and innovation /
作者:
Bozanic, Mladen.
其他作者:
Sinha, Saurabh.
出版者:
Cham :Springer International Publishing : : 2020.,
面頁冊數:
xiii, 248 p. :ill., digital ;24 cm.
內容註:
Device Scaling: Going from Micro- to Nano-Electronics -- Electronic Design Automation for Millimeter-Wave Research and Design -- Millimeter-Wave Substrates and System-Level Approach in Millimeter-Wave Research and Design -- Methodologies for Millimeter-Wave Circuit Design -- Methodologies for Millimeter-Wave Circuit Design in Extreme Environments -- Further Device Scaling: From Nanoelectronics to Future Technologies -- Getting Ready for Terahertz Electronics.
Contained By:
Springer eBooks
標題:
Millimeter waves. -
電子資源:
https://doi.org/10.1007/978-3-030-44398-6
ISBN:
9783030443986
Millimeter-wave integrated circuits = methodologies for research, design and innovation /
Bozanic, Mladen.
Millimeter-wave integrated circuits
methodologies for research, design and innovation /[electronic resource] :by Mladen Bozanic, Saurabh Sinha. - Cham :Springer International Publishing :2020. - xiii, 248 p. :ill., digital ;24 cm. - Lecture notes in electrical engineering,v.6581876-1100 ;. - Lecture notes in electrical engineering ;v.658..
Device Scaling: Going from Micro- to Nano-Electronics -- Electronic Design Automation for Millimeter-Wave Research and Design -- Millimeter-Wave Substrates and System-Level Approach in Millimeter-Wave Research and Design -- Methodologies for Millimeter-Wave Circuit Design -- Methodologies for Millimeter-Wave Circuit Design in Extreme Environments -- Further Device Scaling: From Nanoelectronics to Future Technologies -- Getting Ready for Terahertz Electronics.
This peer-reviewed book explores the methodologies that are used for effective research, design and innovation in the vast field of millimeter-wave circuits, and describes how these have to be modified to fit the uniqueness of high-frequency nanoelectronics design. Each chapter focuses on a specific research challenge related to either small form factors or higher operating frequencies. The book first examines nanodevice scaling and the emerging electronic design automation tools that can be used in millimeter-wave research, as well as the singular challenges of combining deep-submicron and millimeter-wave design. It also demonstrates the importance of considering, in the millimeter-wave context, system-level design leading to differing packaging options. Further, it presents integrated circuit design methodologies for all major transceiver blocks typically employed at millimeter-wave frequencies, as these methodologies are normally fundamentally different from the traditional design methodologies used in analogue and lower-frequency electronics. Lastly, the book discusses the methodologies of millimeter-wave research and design for extreme or harsh environments, rebooting electronics, the additional opportunities for terahertz research, and the main differences between the approaches taken in millimeter-wave research and terahertz research.
ISBN: 9783030443986
Standard No.: 10.1007/978-3-030-44398-6doiSubjects--Topical Terms:
817588
Millimeter waves.
LC Class. No.: TK7876.5 / .B633 2020
Dewey Class. No.: 621.3815
Millimeter-wave integrated circuits = methodologies for research, design and innovation /
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This peer-reviewed book explores the methodologies that are used for effective research, design and innovation in the vast field of millimeter-wave circuits, and describes how these have to be modified to fit the uniqueness of high-frequency nanoelectronics design. Each chapter focuses on a specific research challenge related to either small form factors or higher operating frequencies. The book first examines nanodevice scaling and the emerging electronic design automation tools that can be used in millimeter-wave research, as well as the singular challenges of combining deep-submicron and millimeter-wave design. It also demonstrates the importance of considering, in the millimeter-wave context, system-level design leading to differing packaging options. Further, it presents integrated circuit design methodologies for all major transceiver blocks typically employed at millimeter-wave frequencies, as these methodologies are normally fundamentally different from the traditional design methodologies used in analogue and lower-frequency electronics. Lastly, the book discusses the methodologies of millimeter-wave research and design for extreme or harsh environments, rebooting electronics, the additional opportunities for terahertz research, and the main differences between the approaches taken in millimeter-wave research and terahertz research.
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