Ph. D. IN ENGINEERING SCIENCES ENSMM ENGINEER

Ph. D. student in Engineering Sciences and Microtechnology (SPIM, Thesis in ... Research Masters - Sciences, Health, Technology – Electronics and optics specialty ... Application of fuzzy logic with Matlab Simulink for the implementation of an ...
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Joël IMBAUD

Ph. D. IN ENGINEERING SCIENCES

25 years – Single Clean driving licence

ENSMM ENGINEER Formations and Diplomas 2005 to 2008

2002 to 2005

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Ph. D. student in Engineering Sciences and Microtechnology (SPIM, Thesis in progress).

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Research Masters - Sciences, Health, Technology – Electronics and optics specialty, September 2005, passed with honors. Engineer graduate from the Ecole Nationale Supérieure de Mécanique et des Microtechniques, ENSMM (National School of Mechanics and Microtechnology) of Besançon (France) – microtechnology specialty.

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2000 to 2002

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Two years of intensive study to gain access into French National Engineering Schools Preparatory, section Technologies and Industrials Sciences (TSI) at the “lycée La Fayette” at Clermont-Ferrand (France).

2000

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A levels in Sciences and Industrials Technologies (STI) electronics option, passed with honors.

Professional Experiences

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Legislative Research underway since October 2005 within the Time-Frequency department (formerly LCEP) of the FEMTO-ST institute (UMR CNRS 6174) at Besançon (France). Research

Part 1: Highlighting the differences of grades about the quality of langasite materials. Development of a manufacture and optimization method for high quality langatate crystal resonators. Electrical characterization of these resonators in pure synthetic material. Development of a computerized method for the optimization of ultra-stable oscillators for the common collector topologies (Colpitts). Study and design of the thermal/connectors and packaging for the OCXO prototype (Oven Controlled Crystal Oscillator). Evaluation of materials for the family of the langasite potential through realization of ultra-stable oscillators OCXO type using langatate (LGT) crystal resonators. Measurement of temporal stability of the Allan variance relative frequency (better than 5.0 10-13 from 1 to 40 seconds) and power spectral density of phase fluctuations and preliminary evaluation of aging of these oscillators. Part 2: Establishment of cryogenics pulsed tube equipment down to lower temperatures than 4.2K (liquid helium) later participation in the design and assembly of the enclosure system and secondary vacuum pumps system (pressure