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Millimeter-Wave Low Noise Amplifiers

Millimeter-Wave Low Noise Amplifiers
Author: Mladen Božanić
Publisher: Springer
Total Pages: 334
Release: 2017-11-30
Genre: Technology & Engineering
ISBN: 3319690205

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This book is the first standalone book that combines research into low-noise amplifiers (LNAs) with research into millimeter-wave circuits. In compiling this book, the authors have set two research objectives. The first is to bring together the research context behind millimeter-wave circuit operation and the theory of low-noise amplification. The second is to present new research in this multi-disciplinary field by dividing the common LNA configurations and typical specifications into subsystems, which are then optimized separately to suggest improvements in the current state-of-the-art designs. To achieve the second research objective, the state-of-the-art LNA configurations are discussed and the weaknesses of state-of the art configurations are considered, thus identifying research gaps. Such research gaps, among others, point towards optimization – at a systems and microelectronics level. Optimization topics include the influence of short wavelength, layout and crosstalk on LNA performance. Advanced fabrication technologies used to decrease the parasitics of passive and active devices are also explored, together with packaging technologies such as silicon-on-chip and silicon-on-package, which are proposed as alternatives to traditional IC implementation. This research outcome builds through innovation. Innovative ideas for LNA construction are explored, and alternative design methodologies are deployed, including LNA/antenna co-design or utilization of the electronic design automation in the research flow. The book also offers the authors’ proposal for streamlined automated LNA design flow, which focuses on LNA as a collection of highly optimized subsystems.


Millimeter-wave Low-noise Amplifiers Using Cost-effective Ion Implanted MESFETs and Coplanar Transmission Lines

Millimeter-wave Low-noise Amplifiers Using Cost-effective Ion Implanted MESFETs and Coplanar Transmission Lines
Author: Daniel Raymond Scherrer
Publisher:
Total Pages: 152
Release: 1996
Genre:
ISBN:

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This dissertation describes the design and implementation of a monolithic 38 GHz low-noise amplifier using 0.25 $mu$m ion-implanted GaAs MESFETs and coplanar waveguide transmission lines. It describes the development of low-noise GaAs FETs, measurement and modeling of active and passive components, circuit design, simulation, fabrication, and characterization of the completed amplifiers. Wireless systems are reshaping the nature of today's telecommunications industry. Millimeter-wave data communication systems provide the large bandwidth which is needed for high information capacity systems. The noise figure of the front ends currently available is a limiting factor in the performance of these systems, due to the lack of commercially available low-noise amplifiers to boost signal levels prior to down conversion. Most systems use a mixer as the first element in the receiver, which results in a noise figure of 7-8 dB. If low-noise amplifiers with a noise figure of less than 4 dB were commercially available, this would result in at least a 3 dB improvement in sensitivity. This would allow for longer links and/or reduced transmitter power, which improve the performance/cost ratio of the link. The use of ion implanted MESFETs as the active devices in MMIC circuits results in a dramatic reduction in material cost and improvement in circuit yields in comparison with those for devices based on epitaxial material. Various industrial foundries currently use high-cost epitaxial material with the goal of obtaining superior high frequency gain and noise performance compared to those for simpler ion-implanted devices. This work explores the benefits and capabilities of ion implanted MESFETs in millimeter-wave integrated circuits and compares their performance to that of p-HEMTs. Low cost ion implanted GaAs MESFETs are demonstrated with performance equivalent to those of high cost p-HEMTs fabricated on epitaxial material with $rm Fsb{t} > 60$ GHz, $rm Fsb{min} 12$ dB at 10 GHz. Coplanar circuits are gaining acceptance as a viable alternative to microstrip circuits for Ka-band applications. Coplanar technology eliminates processing steps associated with backside vias which limit yield in most MMIC processes. This results in high yield and low cost circuits. This work describes the models used to accurately simulate coplanar components at millimeter-wave frequencies. Three-stage coplanar amplifiers are fabricated that have greater than 12 dB of gain at 38 GHz.


Millimeter-Wave Integrated Circuits

Millimeter-Wave Integrated Circuits
Author: Eoin Carey
Publisher: Springer Science & Business Media
Total Pages: 277
Release: 2005-12-05
Genre: Technology & Engineering
ISBN: 038723666X

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Millimeter-Wave Integrated Circuits delivers a detailed overview of MMIC design, specifically focusing on designs for the millimeter-wave (mm-wave) frequency range. The scope of the book is broad, spanning detailed discussions of high-frequency materials and technologies, high-frequency devices, and the design of high-frequency circuits. The design material is supplemented as appropriate by theoretical analyses. The broad scope of the book gives the reader a good theoretical and practical understanding of mm-wave circuit design. It is best-suited for both undergraduate students who are reading or studying high frequency circuit design and postgraduate students who are specializing in the mm-wave field.


mm-Wave Silicon Technology

mm-Wave Silicon Technology
Author: Ali M. Niknejad
Publisher: Springer Science & Business Media
Total Pages: 313
Release: 2008-01-03
Genre: Technology & Engineering
ISBN: 0387765611

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This book compiles and presents the research results from the past five years in mm-wave Silicon circuits. This area has received a great deal of interest from the research community including several university and research groups. The book covers device modeling, circuit building blocks, phased array systems, and antennas and packaging. It focuses on the techniques that uniquely take advantage of the scale and integration offered by silicon based technologies.


Millimeter-Wave Integrated Circuits

Millimeter-Wave Integrated Circuits
Author: Mladen Božanić
Publisher: Springer Nature
Total Pages: 259
Release: 2020-03-16
Genre: Technology & Engineering
ISBN: 3030443981

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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.