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Dive into the research topics where John E. Holmes is active.

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Featured researches published by John E. Holmes.


wireless and microwave technology conference | 2006

Emerging Commercial Applications Using the 60 GHz Unlicensed Band: Opportunities and Challenges

Bruce Allen Bosco; Rudy M. Emrick; Steve Franson; John E. Holmes; Steve Rockwell

The 60 GHz band has emerged as an international spectrum opportunity for short-range wireless communication networks. In this paper, opportunities that may leverage 60 GHz and the technology trends that will impact the commercial deployment of systems utilizing the 60 GHz frequency band are discussed. Millimeter-wave frequency bands have historically been costly to utilize and traditionally used almost exclusively for government and non-consumer products. Recent and ongoing advances in semiconductor technology and low cost high frequency packaging can be leveraged for low cost solutions that enable widespread deployment. An example of such a system operating in the millimeter-wave spectrum where bandwidths of ~3 GHz have been achieved. Multi-gigabit data transmission and reception over significant distances has also been realized to demonstrate the potential throughput of such a broadband wireless system.


international conference on wireless communications and applied computational electromagnetics | 2005

Technology for emerging commercial applications at millimeter-wave frequencies

Rudy M. Emrick; Steve Franson; John E. Holmes; Bruce Allen Bosco; Steve Rockwell

The 60 GHz band has emerged as an international spectrum opportunity for short-range wireless communication networks. In this paper, technology trends that can impact the commercial deployment of systems utilizing millimeterwave frequency bands is discussed. Millimeter-wave frequency bands have historically been costly to utilize and traditionally used almost exclusively for government and non-consumer products. Recent and ongoing advances in semiconductor and low cost high frequency packaging can be leveraged for low cost solutions that enable widespread deployment. In order to demonstrate the potential throughput of a broadband wireless system utilizing millimeter-wave spectrum, Motorola Labs has demonstrated multi-gigabit data transmission and reception over significant distances.


international conference on electromagnetics in advanced applications | 2007

Opportunities and Challenges in Utilizing Millimeter-Wave Spectrum for High Speed Wireless Communications

Rudy M. Emrick; Steve Franson; John E. Holmes; Bruce Allen Bosco; Steve Rockwell

The 60 GHz band has emerged as an international spectrum opportunity for short-range wireless communication networks. In this paper, technology trends that can impact the commercial deployment of systems utilizing millimeter-wave frequency bands are discussed. Millimeter-wave frequency bands have historically been costly to utilize and traditionally used almost exclusively for government and non-consumer products. Recent and ongoing advances in semiconductor technology and low cost high frequency packaging can be leveraged for low cost solutions that enable widespread deployment. An example of such a system operating in the millimeter-wave spectrum where bandwidths of >3 GHz have been achieved. Multi-gigabit data transmission and reception over significant distances has also been realized to demonstrate the potential throughput of such a broadband wireless system.


radio and wireless symposium | 2009

Gigabit wireless personal area networks: Motivation, challenges and implementation

Bruce Allen Bosco; Rudy M. Emrick; John E. Holmes; Robert Lempkowski; Steve Rockwell

Demands in file size and transfer rates for consumer products are escalating, requiring gigabit rates for applications such as uncompressed streaming video. A number of wireless technologies are attempting to meet the gigabit-plus rates required for these applications. The most promising of these wireless solutions is found to be the use of the 60 GHz band. This technology can provide the needed bandwidth for the most demanding application - even with modest modulation and coding implementations. The objective of this work is to provide an up to date overview of gigabit wireless systems with a focus on wireless personal area networks.


military communications conference | 2005

High frequency broadband communications

Rudy M. Emrick; Steven J. Franson; John E. Holmes; Bruce Allen Bosco; Steve Rockwell

The 60 GHz band has emerged as an international spectrum opportunity for short-range wireless communication networks. In this paper, technology trends that can impact the commercial deployment of systems utilizing millimeter-wave frequency bands are discussed. Millimeter-wave frequency bands have historically been costly to utilize and traditionally used almost exclusively for government and non-consumer products. Recent and ongoing advances in semiconductor technology and low cost high frequency packaging can be leveraged for low cost solutions that enable widespread deployment. An example of such a system operating in the millimeter-wave spectrum where bandwidths of ~3 GHz have been achieved. Multi-gigabit data transmission and reception over significant distances has also been realized to demonstrate the potential throughput of such a broadband wireless system.


international microwave symposium | 2002

Performance of GaAs on silicon power amplifier for wireless handset applications

Nestor Javier Escalera; Rudy M. Emrick; Steven J. Franson; Bryan K. Farber; G. Garrison; John E. Holmes; Steve Rockwell; Bruce Allen Bosco

Recently RF devices formed by the epitaxial growth of GaAs on a Si substrate have been demonstrated. The RF performance of these new devices compares well with devices on a conventional GaAs substrate process. This new GaAs-on-Si technology has the potential for replacing expensive RF components such as power amplifiers with lower cost devices fabricated on GaAs-on-Si while still maintaining good DC-RF performance. This paper presents the RF performance of these GaAs/STO/Si devices and shows for the first time their viability as power amplifiers in wireless handsets.


Archive | 2001

Structure for fabricating high electron mobility transistors utilizing the formation of complaint substrates

Rudy M. Emrick; Stephen Kent Rockwell; John E. Holmes


Archive | 2001

Structure and method for fabricating heterojunction bipolar transistors and high electron mobility transistors utilizing the formation of a complaint substrates for materials used to form the same

Rudy M. Emrick; Stephen Kent Rockwell; John E. Holmes


Archive | 2001

Structure and method for microelectromechanical system (MEMS) devices integrated with other semiconductor structures

Bruce Allen Bosco; Steven J. Franson; John E. Holmes; Nestor Javier Escalera; Rudy M. Emrick; Stephen Kent Rockwell


ieee radio and wireless conference | 2004

A 60 GHz transceiver with multi-gigabit data rate capability

Bruce Allen Bosco; Steven J. Franson; Rudy M. Emrick; Steve Rockwell; John E. Holmes

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