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Silicon Based Millimeter Wave Devices


Silicon Based Millimeter Wave Devices
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Silicon Based Millimeter Wave Devices


Silicon Based Millimeter Wave Devices
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Author : Johann-Friedrich Luy
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-03-07

Silicon Based Millimeter Wave Devices written by Johann-Friedrich Luy and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-03-07 with Technology & Engineering categories.


A description of field-theoretical methods for the design and analysis of planar waveguide structures and antennas. The principles and limitations of transit-time devices with different injection mechanisms are covered, as are aspects of fabrication and characterization. The physical properties of silicon Schottky contacts and diodes are treated in a separate chapter, while two whole chapters are devoted to silicon/germanium devices. The integration of devices in monolithic circuits is explained together with advanced technologies, such as the self-mixing oscillator operation, before concluding with sensor and system applications.



Mm Wave Silicon Technology


Mm Wave Silicon Technology
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Author : Ali M. Niknejad
language : en
Publisher: Springer Science & Business Media
Release Date : 2008-01-03

Mm Wave Silicon Technology written by Ali M. Niknejad and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008-01-03 with Technology & Engineering categories.


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.



Advances In Imaging And Electron Physics


Advances In Imaging And Electron Physics
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Author :
language : en
Publisher: Academic Press
Release Date : 2012-11-01

Advances In Imaging And Electron Physics written by and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-11-01 with Technology & Engineering categories.


Advances in Imaging and Electron Physics merges two long-running serials--Advances in Electronics and Electron Physics and Advances in Optical and Electron Microscopy. This series features extended articles on the physics of electron devices (especially semiconductor devices), particle optics at high and low energies, microlithography, image science and digital image processing, electromagnetic wave propagation, electron microscopy, and the computing methods used in all these domains. Contributions from leading authorities Informs and updates on all the latest developments in the field



Microwave De Embedding


Microwave De Embedding
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Author : Gilles Dambrine
language : en
Publisher: Elsevier Inc. Chapters
Release Date : 2013-11-09

Microwave De Embedding written by Gilles Dambrine and has been published by Elsevier Inc. Chapters this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-11-09 with Technology & Engineering categories.


This chapter aims to describe experimental tools and techniques used for on-wafer millimeter (mm)-wave characterizations of silicon-based devices under the small-signal regime. We discuss the basics of scattering parameters (S parameters), high-frequency (HF) noise concept and measurement facilities, and expert details concerning experimental procedures. In this chapter, we describe first the basic notions of the S-parameters concept and its limitations, as well of as those HF noise. Secondly, the main experimental tools such as mm-wave vectorial network analyzer, noise setup, and on-wafer station are depicted. The third part concerns the description and the methodology of on-wafer calibration and de-embedding techniques applied for mm-wave advanced silicon devices. Finally, the last section focuses on the presentation and description of several examples of device characterizations. The main objective of this chapter is to propose a tradeoff between basic information and details of experience.



A New Silicon Based Dielectric Waveguide Technology For Millimeter Wave Terahertz Devices And Integrated Systems


A New Silicon Based Dielectric Waveguide Technology For Millimeter Wave Terahertz Devices And Integrated Systems
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Author : Aidin Taeb
language : en
Publisher:
Release Date : 2014

A New Silicon Based Dielectric Waveguide Technology For Millimeter Wave Terahertz Devices And Integrated Systems written by Aidin Taeb and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014 with categories.


In recent decades, the millimeter-Wave (mmWave)/THz band has attracted great attention in the research community. The Terahertz frequency band runs from approximately 300 GHz to 3 THz, an incredible 2700 GHz of bandwidth. The Terahertz frequency range has traditionally been considered as the RF "no man's land", between electronic and optical technologies. Many efforts have been made to extend existing active and passive devices to take advantage of these higher frequencies. The development of a universal technology for integrating various functionalities in the THz region is the ultimate goal of many researchers. The primary focus of this research is to develop a novel silicon waveguide-based technology for implementing various structures and devices in the mmWave and THz range of frequencies. The structures introduced in this study are designed based on High Resistivity Silicon (HRS). Two technologies are developed and investigated at the Centre for Intelligent Antenna and Radio Systems (CIARS): Silicon-On-Glass (SOG) and Silicon Image Guide (SIG) technologies. The proposed technologies provide a low-cost, highly efficient, and integratable platform for realization a variety of mmWave/THz systems suitable for various applications such as sensing, communication, and imaging.



Rf And Mm Wave Power Generation In Silicon


Rf And Mm Wave Power Generation In Silicon
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Author : Hua Wang
language : en
Publisher: Academic Press
Release Date : 2015-12-10

Rf And Mm Wave Power Generation In Silicon written by Hua Wang and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-12-10 with Technology & Engineering categories.


RF and mm-Wave Power Generation in Silicon presents the challenges and solutions of designing power amplifiers at RF and mm-Wave frequencies in a silicon-based process technology. It covers practical power amplifier design methodologies, energy- and spectrum-efficient power amplifier design examples in the RF frequency for cellular and wireless connectivity applications, and power amplifier and power generation designs for enabling new communication and sensing applications in the mm-Wave and THz frequencies. With this book you will learn: Power amplifier design fundamentals and methodologies Latest advances in silicon-based RF power amplifier architectures and designs and their integration in wireless communication systems State-of-the-art mm-Wave/THz power amplifier and power generation circuits and systems in silicon Extensive coverage from fundamentals to advanced design topics, focusing on various layers of abstraction: from device modeling and circuit design strategy to advanced digital and mixed-signal architectures for highly efficient and linear power amplifiers New architectures for power amplifiers in the cellar and wireless connectivity covering detailed design methodologies and state-of-the-art performances Detailed design techniques, trade-off analysis and design examples for efficiency enhancement at power back-off and linear amplification for spectrally-efficient non-constant envelope modulations Extensive coverage of mm-Wave power-generation techniques from the early days of the 60 GHz research to current state-of the-art reconfigurable, digital mm-Wave PA architectures Detailed analysis of power generation challenges in the higher mm-Wave and THz frequencies and novel technical solutions for a wide range for potential applications, including ultrafast wireless communication to sensing, imaging and spectroscopy Contributions from the world-class experts from both academia and industry



Silicon Based Arrays


Silicon Based Arrays
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Author : Nicholas Saiz
language : en
Publisher:
Release Date : 2018

Silicon Based Arrays written by Nicholas Saiz and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018 with categories.


This thesis presents the application of millimeter wave silicon integrated circuits towards high data rate wireless communications and wireless power transfer (WPT). Power generation in the D-band is challenging due to device limitations, therefore we present a SiGe transmitter that is fully packaged with a dielectric rod antenna-in-package that provides EIRP greater than 15 dBm at 135 GHz and consumes 366 mW. Next, we propose WPT in the radiative near-field using electrically large phased arrays. The trade-offs of this approach are analyzed to optimize an antenna array over frequency. Finally, a 4-channel Ka-band transmitter beamformer was fabricated on TSMC's 65nm CMOS technology, and is meant for large scalable arrays. Since the cost of the array is partly driven by the electronics, the beamformer architecture aims to reduce the overall chip area using a traveling wave distribution network. The proposed RFIC consumes 1.65 mm2 of die area and 320 mW (84 mW/element).



Silicon Based Millimeter Wave Circuits For W Band Applications


Silicon Based Millimeter Wave Circuits For W Band Applications
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Author : Chun-Cheng Wang
language : en
Publisher:
Release Date : 2012

Silicon Based Millimeter Wave Circuits For W Band Applications written by Chun-Cheng Wang and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012 with categories.


Historically, monolithic microwave integrated circuits (MMICs) have been designed using III-V semiconductor technologies, such as GaAs and InP. In recent years, the number of publications reporting silicon-based millimeter-wave (mm-wave) transmitter, receivers, and transceivers has grown steadily. For mm-wave applications including gigabit/s point-to-point links (57-64 GHz), automotive radar (77-81 GHz) and imaging (94 GHz) to reach mainstream market, the cost, size and power consumption of silicon-based solution has to be significantly below what is being achieved today using compound semiconductor technology. This dissertation focuses the effort of designing and implementing silicon-based solutions through circuit- and system-level innovation for applications in the W-band frequency band (75-110GHz), in particular, 94GHz passive imaging band. A W-band front-end receiver in 65nm CMOS based entirely on slow-wave CPW (SW-CPW) with frequency tripler as the LO is designed and measured. The receiver achieves a total gain of 35-dB, -3dB-BW of 12 GHz, a NF of 9-dB, a P1-dB of -40dBm, a low power consumption of 108mW under 1.2/0.8V. This front-end receiver chipset in conjuction with an analog back-end can be used to form a radiometer. Leveraging the work done in 65nm CMOS, the first integrated 2x2 focal-plane array (FPA) for passive imaging is implemented in a 0.18um SiGe BiCMOS process (fT/fmax=200/180GHz). The FPA incorporates four Dicke-type receivers. Each receiver employs a direct-conversion architecture consisting of an on-chip slot dipole antenna, an SPDT switch, a lower noise amplifier, a single-balanced mixer, an injection-locked frequency tripler (ILFT), a zero-IF variable gain amplifier, a power detector, an active bandpass filter and a synchronous demodulator. The LO signal is generated by a shared Ka-band PLL and distributed symmetrically to four ILFTs. This work demonstrates the highest level of integration of any silicon-based systems in the 94GHz imaging band. Finally, the main design bottleneck of any wireless transceiver system, the frequency synthesizer/phase-locked loop is investigated. Two monolithically integrated W-band frequency synthesizers are presented. Implemented in a 0.18um SiGe BiCMOS, both architectures incorporate the same 30.3-33.8GHz PLL core. One synthesizer uses an injection-locked frequency tripler (ILFT) with locking range of 92.8-98.1GHz and the other employ a harmonic-based frequency tripler (HBFT) with 3-dB bandwidth of 10.5GHz from 90.9-101.4GHz, respectively. The frequency synthesizer is suitable for integration in mm-wave phased array and multi-pixel systems such as W-band radar/imaging and 120GHz Gb/s communication.



Novel Silicon Based Integrated Circuits For Uwb And Millimeter Wave Transceiver


Novel Silicon Based Integrated Circuits For Uwb And Millimeter Wave Transceiver
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Author : Zhiming Chen
language : en
Publisher:
Release Date : 2009

Novel Silicon Based Integrated Circuits For Uwb And Millimeter Wave Transceiver written by Zhiming Chen and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2009 with categories.




Millimeter Wave Integrated Circuits


Millimeter Wave Integrated Circuits
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Author : Mladen Božanić
language : en
Publisher: Springer Nature
Release Date : 2020-03-16

Millimeter Wave Integrated Circuits written by Mladen Božanić and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-03-16 with Technology & Engineering categories.


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.