SPORIAN MICROSYSTEMS, INC — Department of Energy SBIR Phase I: Improvements and advances are needed for systems and component technologies that ultimatel

SPORIAN MICROSYSTEMS, INC — SBIR Phase I award from Department of Energy.

Amount
$149,988
Agency
Department of Energy
Program / Phase
SBIR · Phase I
Solicitation
DE-FOA-0000413
NAICS
Place of performance
CO
Period
2011-06-17 → 2012-05-16

Description

Improvements and advances are needed for systems and component technologies that ultimately would be used in the design, construction, or operation of existing and future nuclear power plants, and Generation IV nuclear power systems. Of particular need are sensors and instrumentation with improved reliability and accuracy that can withstand temperatures in excess of 1600 C and harsh environments encountered in advanced Generation IV high temperature gas reactor designs and sodium fast reactors including flowing helium, liquid sodium, very high neutron flux levels, etc. Sporian Microsystems, Inc. has established a solid track record of successful research and development of polymer derived SiCN high temperature sensors and packaging architectures. SiCN is a relatively new class of high temperature ceramic materials synthesized by thermal decomposition of polymeric precursors, which possesses excellent mechanical properties, tunable electric properties and superior oxidation and corrosion resistance at high temperatures up to 1600 C. Sporian proposes to experimentally evaluate the suitability of SiCN material formulations as functional materials in Generation IV high temperature gas reactor designs and sodium fast reactors, and based on the results, develop preliminary sensor concepts for future development. Commercial Applications and Other Benefits: Specific groups that stand to directly benefit from the proposed sensor suites include nuclear generator OEMs and operators, fossil fuel turbine and boiler OEMs and operators, petroleum refineries, propulsion turbine OEMs and operators and industrial furnace OEMs and operators. Customers and owners of these organizations also stand to benefit directly from the proposed technology as operational efficiencies are realized in lower prices for customers and increased shareholder value for owners. Society at large will tend to benefit from these developments as operational efficiencies manifest as decreases in fuel consumption and emissions