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Hugh P Bivens, 935623 Vulcan Vista Dr NE, Albuquerque, NM 87111

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5623 Vulcan Vista Dr NE, Albuquerque, NM 87111   

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Hugh P Bivens

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Work

Company: Sandia national laboratories Position: Computer software r&d

Education

Degree: Masters School / High School: The University of New Mexico 1997 to 1999 Specialities: Computer Science

Skills

Software Engineering • C++ • Linux • Android Development • Matlab • C • Systems Engineering • Simulations • Distributed Systems • Algorithms • Software Development • Cmake • System Architecture • Programming • Embedded Systems

Interests

Children • Education • Environment • Poverty Alleviation • Science and Technology • Human Rights • Arts and Culture • Health

Industries

Computer Software

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Resumes

Hugh Bivens Photo 11

Computer Science R And D

Location:
Albuquerque, NM
Industry:
Computer Software
Work:
Sandia National Laboratories
Computer Software R&D
Education:
The University of New Mexico 1997 - 1999
Masters, Computer Science
The University of New Mexico 1990 - 1996
Bachelors, Bachelor of Science, Computer Science
Skills:
Software Engineering, C++, Linux, Android Development, Matlab, C, Systems Engineering, Simulations, Distributed Systems, Algorithms, Software Development, Cmake, System Architecture, Programming, Embedded Systems
Interests:
Children
Education
Environment
Poverty Alleviation
Science and Technology
Human Rights
Arts and Culture
Health

Publications & IP owners

Us Patents

Micro-Machined Resonator Oscillator

US Patent:
5339051, Aug 16, 1994
Filed:
Mar 30, 1993
Appl. No.:
8/039638
Inventors:
Dale R. Koehler - Albuquerque NM
Jeffry J. Sniegowski - Albuquerque NM
Hugh M. Bivens - Albuquerque NM
Kurt O. Wessendorf - Albuquerque NM
Assignee:
Sandia Corporation - Albuquerque NM
International Classification:
H03B 536
H01L 4108
US Classification:
331 65
Abstract:
A micro-miniature resonator-oscillator is disclosed. Due to the miniaturization of the resonator-oscillator, oscillation frequencies of one MHz and higher are utilized. A thickness-mode quartz resonator housed in a micro-machined silicon package and operated as a "telemetered sensor beacon" that is, a digital, self-powered, remote, parameter measuring-transmitter in the FM-band. The resonator design uses trapped energy principles and temperature dependence methodology through crystal orientation control, with operation in the 20-100 MHz range. High volume batch-processing manufacturing is utilized, with package and resonator assembly at the wafer level. Unique design features include squeeze-film damping for robust vibration and shock performance, capacitive coupling through micro-machined diaphragms allowing resonator excitation at the package exterior, circuit integration and extremely small (0. 1 in. square) dimensioning. A family of micro-miniature sensor beacons is also disclosed with widespread applications as bio-medical sensors, vehicle status monitors and high-volume animal identification and health sensors.

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