Silicon-Germanium Heterojunction Bipolar Transistors for Mm-wave Systems Technology, Modeling and Circuit Applications
The semiconductor industry is a fundamental building block of the new economy, there is no area of modern life untouched by the progress of nanoelectronics. The electronic chip is becomingan ever-increasing portion of system solutions, starting initially from less than 5% in the 1970 microcomputer e...
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Format: | Electronic Book Chapter |
Language: | English |
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Taylor & Francis
2018
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Online Access: | DOAB: download the publication DOAB: description of the publication |
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072 | 7 | |a PHDY |2 bicssc | |
100 | 1 | |a Rinaldi, Niccolò |4 edt | |
700 | 1 | |a Schröter, Michael |4 edt | |
700 | 1 | |a Rinaldi, Niccolò |4 oth | |
700 | 1 | |a Schröter, Michael |4 oth | |
245 | 1 | 0 | |a Silicon-Germanium Heterojunction Bipolar Transistors for Mm-wave Systems Technology, Modeling and Circuit Applications |
260 | |b Taylor & Francis |c 2018 | ||
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506 | 0 | |a Open Access |2 star |f Unrestricted online access | |
520 | |a The semiconductor industry is a fundamental building block of the new economy, there is no area of modern life untouched by the progress of nanoelectronics. The electronic chip is becomingan ever-increasing portion of system solutions, starting initially from less than 5% in the 1970 microcomputer era, to more than 60% of the final cost of a mobile telephone, 50% of the price of a personal computer (representing nearly 100% of the functionalities) and 30% of the price of a monitor in the early 2000's.Interest in utilizing the (sub-)mm-wave frequency spectrum for commercial and research applications has also been steadily increasing. Such applications, which constitute a diverse but sizeable future market, span a large variety of areas such as health, material science, mass transit, industrial automation, communications, and space exploration.Silicon-Germanium Heterojunction Bipolar Transistors for mm-Wave Systems Technology, Modeling and Circuit Applications provides an overview of results of the DOTSEVEN EU research project, and as such focusses on key material developments for mm-Wave Device Technology. It starts with the motivation at the beginning of the project and a summary of its major achievements. The subsequent chapters provide a detailed description of the obtained research results in the various areas of process development, device simulation, compact device modeling, experimental characterization, reliability, (sub-)mm-wave circuit design and systems. | ||
536 | |a European Commission | ||
540 | |a Creative Commons |f by-nc/4.0 |2 cc |4 http://creativecommons.org/licenses/by-nc/4.0 | ||
546 | |a English | ||
650 | 7 | |a Energy |2 bicssc | |
653 | |a Energy | ||
856 | 4 | 0 | |a www.oapen.org |u https://library.oapen.org/bitstream/20.500.12657/59750/1/9781000794403.pdf |7 0 |z DOAB: download the publication |
856 | 4 | 0 | |a www.oapen.org |u https://directory.doabooks.org/handle/20.500.12854/94299 |7 0 |z DOAB: description of the publication |