Richard L. Campbell Ph.D.
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1 4105 NW Carlton Ct Portland, OR Phone Richard L. Campbell Ph.D. Professional Profile Internationally recognized designer of Radio Frequency Integrated Circuits, Radio Frequency Electronics, Instrument and Measurement and Remote Sensing Systems. Specialist in innovative products that open new markets, with extensive portfolio from concept to released product. Principal designer of first commercially successful cell phone GaAs ASICs for TriQuint Semiconductor. Principal designer of wafer probes for emerging THz market at Cascade Microtech. Key wireless telemetry intellectual property inventor for IR Telemetrics. Award-winning lecturer and technical author. Extensive portfolio of spin-off products for Project-Based RF Engineering Education, with many reprinted in the pages of the ARRL Handbook for Radio Communications. Co-author of seminal Project-Based RF Education book Experimental Methods in RF Design. Rick at sea September 2009 Education University of Washington, Seattle Ph.D. Electrical Engineering 1984 MSEE 1981 Seattle Pacific University B.S. General Honors Physics 1975 Summary Employment History Portland State University Associate Professor 2012-present Analog Devices SiGe BiCMOS IC Designer and Manager of product engineering group Portland State University Associate Professor Cascade Microtech Principal Engineer TriQuint Semiconductor Principal GaAs IC Design Engineer Michigan Technological University Associate Professor tenured in 1990 Bell Laboratories (Murray Hill) Senior Technical Associate, Surface Physics Technical Skills Creation and commercialization of innovative new measurement, analog, wireless and integrated circuit products. Complete skill-set including: concept design in basic physics; detailed technical design; analysis; simulation; prototype construction (machine shop, microelectronic and mechanical assembly); lab measurements; on-wafer measurements; performance analysis; and redesign to specs. Electromagnetic and Acoustic measurement system design and deployment. Professional Skills Award-winning technical writer of journal articles, feature technical articles, technical books and intellectual property documentation. Design team leadership and mentoring. Award-winning teacher from graduate level to middle school workshops. PhD and MS student advising. Spin-off of industry technology into accessible projects for RF Project-Based Engineering Education.
2 Selected Portfolio of Commercially Successful Designs Radio Frequency Integrated Circuits TriQuint 3918, 3919 ASICs for Nokia 6160 series US TDMA cell phones --TriQuint Presidents Award TriQuint 5M31 general purpose receive mixer IC used in many CDMA Phones --TriQuint Presidents Award, combined sales of ASICs and 5M31 over 300 million units. Infineon CMY210 and CMY212 mixer redesign for TriQuint process, used in many applications including Sennheiser Wireless Microphone systems. Integrated Circuit measurement instruments 220 GHz and 325 GHz On-Wafer waveguide probes for measurement of sub-mm wave transistors and RFICs. Used by NASA/JPL to measure 325 GHz MMICs and world record 325 GHz CMOS oscillator. Currently in production, with several patents issued. HF - VHF - UHF receiver and transmitter modules Conceived and developed MicroR2; MicroT2; MiniR2; R2pro, direct conversion receivers and VHFs signal sources sold by Kanga US and used worldwide for diverse applications such as amateur communications, radio astronomy, and wildlife tracking. All Currently in production. --Three ARRL Technical Excellence Awards, MicroR2 featured on the cover of 2008 Handbook for Radio Communications, MicroT2 featured on the cover of 2011 Handbook for Radio Communications. VHF Signal Sources featured in a new chapter describing Project-Based RF Education in the Centennial 2014 Handbook for Radio Communications. Microwave transmit and receive systems Low-cost printed 902 MHz; 1296 MHz, and 5.6 GHz transceive and 2.4 GHz local oscillator systems. First products for Downeast Microwave. --ARRL Technical Excellence Award 2.4 GHz telemetry system for rotating machines. Used to transmit piston skirt temperature data in a running Corvette engine. Two patents, and spinoff company IR Telemetrics from Michigan Tech University. IR Telemetrics won the Michigan Governors Award for best technology transfer from Academia to Industry in Discrete 2.4 and 3.6 GHz PA reference designs using AT8140 power GaAs FET, published in 1986 and widely duplicated. Electromagnetic wave propagation measurement systems Surface Vehicle Bistatic Synthetic Aperture system for measurement of UHF propagation in urban residential areas, forest, and on simulated earth-space paths through trees. Designed, built, and deployed first-generation instrument. Second generation developed at Institute for Telecommunication Science, US Department of Commerce, Boulder Laboratories.
3 Publication Summary Over 100 in-print publications spanning a 30 year scientific and technical career, including refereed journal articles, peer-reviewed conference proceedings, technical feature articles, trade journal articles, one book and many book sections and chapters. Dr. Campbell was awarded the 2006 Bill Orr Award for Technical Writing by the ARRL Foundation for his extensive contributions to the radio frequency technical literature. Professional Activities Technical Program Co-Chair IEEE International Microwave Symposium 2013 Seattle WA Overall responsibility for the technical content of the world s largest conference of RF and Microwave engineers, including peer review and selection of approximately 500 papers, workshops, short-courses, best student papers, and student design competitions. Senior Member of IEEE Founding member and Past-Chair IEEE Microwave Theory and Techniques Society HF VHF UHF Technology Technical Committee 17 Current Member of IEEE Ocean Engineering, Geoscience and Remote Sensing, and Antennas and Propagation Societies Recent Books, Book Chapters, and Invited Book Sections Experimental Methods in RF Desiqn, Wes Hayward, Rick Campbell and Bob Larkin, published by American Radio Relay League, ISBN # , February 2003, 512 pages. Rick Campbell, VHF Signal Sources and Portland State University projects in 2014 Handbook for Radio Communications, ARRL, Centennial ed., pp Rick Campbell, Direct Conversion Receiver, in 2013 Handbook for Radio Communications, ARRL, pp edited and reprinted from QST vol. 90 no. 10 October Rick Campbell, Single Sideband Transmitter, in 2013 Handbook for Radio Communications, ARRL, pp edited and reprinted from QST vol. 90 no.12 December Rick Campbell, Binaural IQ Receiver, in 2010 Handbook for Radio Communications, ARRL, pp edited and reprinted from QST vol. 83 no. 3 March Richard L. Campbell, Article 479, Very High Frequency Range, in The Wiley Encyclopedia of Microwaves and RF, volume 6, Wiley Interscience, 2005 pp F.H. Raab, Caverly, R., Campbell, R., Eron, M., Hecht, J.B., Mediano, A., Myer, D.P., Walker, J.L.B., HF, VHF and UHF Systems and Technology (invited paper), IEEE Transactions on Microwave Theory and Techniques 50th Anniversary Issue, volume 50, no. 3, March 2002, pp
4 Teaching Awards Dr. Campbell was elected HKN Professor of the Year twice during his tenure at Michigan Tech University, was finalist in 1995 for the Michigan Technological University Distinguished Lecturer award. He was named ECE graduate instructor of the year at Portland State U in Patents: United States Patent no. 7,876,114 January , Differential Waveguide Probe Inventors: Richard L Campbell, Michael Andrews United States Patent no. 7,764,072 July 27, 2010 Differential Signal Probing System Inventors: Eric W. Strid, Richard Campbell United States Patent no. 7,750,652 July 6, 2010 Test structure and Probe for Differential Signals Inventor: Richard Campbell United States Patent no. 7,723,999 May 25, 2010 Calibration Structures for Differential Signal Probing Inventors: Eric W. Strid, Richard Campbell United States Patent no. 7,619,419 November 17, 2009 Wideband Active-Passive Differential Signal Probe Inventor: Richard Campbell United States Patent no. 7,609,077 October 27, 2009 Differential Signal Probe with integral balun Inventors: Richard Campbell, Eric W. Strid, Mike Andrews United States Patent no. 7,449,899 November 11, 2008 Probe for High Frequency Signals Inventors: Richard L. Campbell, Michael Andrews, Lynh Bui United States Patent no. 7,443,186 October 28, 2008 On-wafer test structures for Differential Signals Inventors: Eric Strid, Richard Campbell United States Patent no. 7,403,028 July 22, 2008 Test structure and probe for differential signals Inventor: Richard Campbell United States Patent no. 6,999,000 February 14, 2006 Transponder-based Microwave Telemetry Apparatus, Richard Lynn Campbell, Douglass B. Brumm, Glenn Barna, Carl Anderson United States Patent no. 6,437,658 August 20, 2002 Three-Level Semiconductor Balun and Method for Creating the Same, Thomas R. Apel and Richard L. Campbell United States Patent no. 6,407,647 June 18, 2002 Integrated Broadband Coupled Transmission Line Element, Thomas R. Apel and Richard L. Campbell United States Patent no. 5,555,457 September , Microwave Telemetry for Sensing Conditions in Enclosed Rotating and/or Reciprocating Machinery, Richard L. Campbell, Douglas B. Brumm, Carl Anderson, and Glen L. Barna
5 Selected Recent in-print Publications Daquan Huang. LaRocca TR. Chang M-CF. Samoska L. Fung A. Campbell RL. Andrews M., Terahertz CMOS frequency generator using linear superposition technique, IEEE Journal of Solid-State Circuits, vol.43, no.12, Dec. 2008, pp Rick Campbell, Designing and Building Transistor Linear Power Amplifiers: Part 1 Design, (invited paper) in QST, volume 93 no. 2 February 2009, pp Rick Campbell, Designing and Building Transistor Linear Power Amplifiers: Part 2 Prototype Construction and Measurements, (invited) in QST, volume 93 no.3 March 2009, pp Lorene Samoska, King Man Fung, Todd Gaier, Daquan Huang, Tim Larocca, M. F. Chang, Richard Campbell, Michael Andrews, On-Wafer Measurement of a Silicon-Based CMOS VCO at 324 GHz, in NASA Tech Briefs, September 1, Kooho Jung, Richard L. Campbell, Leonard A. Hayden, William R. Eisenstadt, Robert M. Fox, Evaluation of Measurement Uncertainties Caused by Common- and Cross-modes in Differential Measurements using Baluns, in IEEE Transactions on Microwave Theory and Techniques, 2008, vol. 56, no 6, pp Kooho Jung, Richard L. Campbell, Peter Navratil, Michael F. Andrews, Carol McCuen, William Eisenstadt, Robert Fox, Marchand Balun Embedded Probe, in IEEE Transactions on Microwave Theory and Techniques, 2008, vol. 56 (1), no 5, pp Jung, Kooho; Hayden, Leonard A.; Crisalle, Oscar D.; Eisenstadt, William R.; Fox, Robert M.; Hanaway, Peter; Campbell, Richard L.; McCuen, Carol; Lewis, Michael, A New Characterization and Calibration Method for 3-dB-Coupled On-Wafer Measurements, in IEEE Transactions on Microwave Theory and Techniques, vol. 56, issue 5, pp Richard L. Campbell, High Frequency Power Amplifiers Without Ground, IEEE Microwave Theory and Techniques Society International Microwave Symposium Proceedings pp June Richard Campbell, Andrews, M., Samoska, L., Fung, A., Membrane Tip Probes for On-Wafer Measurements in the 220 to 325 GHz band, International Symposium on Space THz Technology, March Richard L. Campbell, High Frequency Differential Passive FET Direct Conversion Mixer/Modulator, IEEE Microwave Theory and Techniques Society International Microwave Symposium Proceedings, pp , June Richard Campbell, Andrews, M., Bui, L., A 220 GHz Wafer Probe Tip with Reduced Stray Fields, IEEE Microwave Theory and Techniques Society International Microwave Symposium Proceedings, pp , June Rick Campbell, Direct Conversion SSB Receiver, QST vol. 90 no. 10 October 2006 pp Reprinted and featured on the cover of the 2008 ARRL Handbook for Radio Communications. Rick Campbell, Compact Single Band SSB Transmitter, QST vol. 90 no. 12 December 2006 pp
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