{"projectId":8967,"project":{"projectId":8967,"title":"Reliable Direct Bond Copper Ceramic Packages for High Temperature Power Electronics","startDate":"2010-01-29","startYear":2010,"startMonth":1,"endDate":"2010-07-29","endYear":2010,"endMonth":7,"programId":73,"program":{"ableToSelect":false,"acronym":"SBIR/STTR","isActive":true,"description":"<p>The NASA SBIR and STTR programs fund the research, development, and demonstration of innovative technologies that fulfill NASA needs as described in the annual Solicitations and have significant potential for successful commercialization. If you are a small business concern (SBC) with 500 or fewer employees or a non-profit RI such as a university or a research laboratory with ties to an SBC, then NASA encourages you to learn more about the SBIR and STTR programs as a potential source of seed funding for the development of your innovations.</p><p><strong>The SBIR and STTR programs have 3 phases</strong>:</p><ul><li><strong>Phase I</strong> is the opportunity to establish the scientific, technical, and commercial feasibility of the proposed innovation in fulfillment of NASA needs.</li><li><strong>Phase II</strong> is focused on the development, demonstration and delivery of the proposed innovation.</li></ul><p>The SBIR and STTR Phase I contracts last for 6 months with a maximum funding of $125,000, and Phase II contracts last for 24 months with a maximum funding of $750,000 - $1.5 million.</p><ul><li><strong>Phase III</strong> is the commercialization of innovative technologies, products, and services resulting from either a Phase I or Phase II contract. Phase III contracts are funded from sources other than the SBIR and STTR programs and may be awarded without further competition.</li></ul><p><strong>Opportunity for Continued Technology Development Post-Phase II</strong>:</p><p>The NASA SBIR/STTR Program currently has in place two initiatives for supporting its small business partners past the basic Phase I and Phase II elements of the program that emphasize opportunities for commercialization. Specifically, the NASA SBIR/STTR Program has the Phase II Enhancement (Phase II-E) and Phase II eXpanded (Phase II-X) contract options.&nbsp;</p><p><strong>Please review the links below to obtain more information on the SBIR/STTR programs.</strong></p><ul><li><strong><a target=\"_blank\" href=\"http://sbir.gsfc.nasa.gov/sites/default/files/ParticipationGuide.pdf\">Participation Guide</a></strong></li></ul><p>Provides an overview of the SBIR and STTR programs as implemented by NASA</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/solicitations\">Program Solicitations</a></strong></li></ul><p>Provides access to the annual SBIR/STTR Solicitations containing detailed information on the program eligibility requirements, proposal instructions and research topics and subtopics</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/prg_sched_anncmnt\">Schedule and Awards</a></strong></li></ul><p>Schedule and links for the SBIR/STTR solicitations and selection announcements</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/content/additional-sources-assistance\">Sources of Assistance</a></strong></li></ul><p>Federal and non-Federal sources of assistance for small business</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/abstract_archives\">Awarded Abstracts</a></strong></li></ul><p>Search our complete archive of awarded project abstracts to learn about what NASA has funded</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/content/frequently-asked-questions\">Frequently Asked Questions</a></strong></li></ul><p>&nbsp;Still have questions? Visit the program FAQs</p>","parentProgram":{"ableToSelect":false,"isActive":true,"description":"Catalyst is a portfolio of early stage programs that specialize in different innovation constituencies and mechanisms to push the state of the art in aerospace technology development","programId":92327,"responsibleMd":{"canUserEdit":false,"locationEdit":false,"organizationRolePretty":"","organizationTypePretty":""},"title":"Catalyst","manageGaps":false,"acronymOrTitle":"Catalyst"},"parentProgramId":92327,"programId":73,"responsibleMd":{"organizationId":4875,"organizationName":"Space Technology Mission Directorate","acronym":"STMD","organizationType":"NASA_Mission_Directorate","canUserEdit":false,"locationEdit":false,"organizationRolePretty":"","organizationTypePretty":"NASA Mission Directorate"},"responsibleMdOffice":4875,"stockImageFileId":36648,"title":"Small Business Innovation Research/Small Business Tech Transfer","manageGaps":false,"acronymOrTitle":"SBIR/STTR"},"description":"The proposed program will develop highly reliable, hermetic, Si3N4 ceramic multichip modules to integrate commercially available SiC power devices to build power electronic modules for reliable operation above 500ºC in extreme environments of space exploration. The Phase I program will demonstrate a reliable direct bond copper (DBC) process for Si3N4 substrates, develop high current carrying hermetic feedthroughs, an innovative transient liquid phase (TLP) die attach, and a monometallic wire bonding capable of reliable operation above 500ºC; and fabricate and test a hermetic single-chip module.","benefits":"Potential applications include motor drives, power supplies, and well logging; high power microwave applications such as phased array radar; automotive applications such as combustion sensors; DoD's mostly electric aircraft and tank programs, monitoring nuclear reactors, and aeronautical engine controls.<br /> <br />Future NASA missions outlined in Decadal Survey of Solar System Exploration all involve operation in extreme environments of temperature, pressure, and radiation. Venus Surface Exploration and Venus Sample Return, both of which require surface operation including sample acquisition from 15-20 cm depth of hard rock and in-situ sensing (temperature, pressure etc.), will significantly benefit from the proposed program.","releaseStatus":"Released","status":"Completed","viewCount":600,"destinationType":["Others_Inside_the_Solar_System"],"trlBegin":1,"trlCurrent":6,"trlEnd":6,"lastUpdated":"02/13/26","favorited":false,"detailedFunding":false,"projectContacts":[{"contactId":3164028,"canUserEdit":false,"firstName":"Celestino Jun","lastName":"Rosca","fullName":"Celestino Jun Rosca","fullNameInverted":"Rosca, Celestino Jun","email":"crosca@nasa.gov","receiveEmail":"Subscribed_Contact","projectContactRole":"Project_Manager","projectContactId":538542,"projectId":8967,"programContactRolePretty":"","projectContactRolePretty":"Project Manager"},{"contactId":141277,"canUserEdit":false,"firstName":"Ender","lastName":"Savrun","fullName":"Ender Savrun","fullNameInverted":"Savrun, Ender","email":"ender.savrun@siennatech.com","receiveEmail":"Subscribed_User","projectContactRole":"Principal_Investigator","projectContactId":538541,"projectId":8967,"programContactRolePretty":"","projectContactRolePretty":"Principal Investigator"}],"programContacts":[{"contactId":206378,"canUserEdit":false,"firstName":"Jason","lastName":"Kessler","fullName":"Jason L Kessler","fullNameInverted":"Kessler, Jason L","middleInitial":"L","email":"jason.l.kessler@nasa.gov","receiveEmail":"Subscribed_User","programContactRole":"Program_Director","programContactId":143,"programId":73,"programContactRolePretty":"Program Director","projectContactRolePretty":""},{"contactId":62051,"canUserEdit":false,"firstName":"Carlos","lastName":"Torrez","fullName":"Carlos Torrez","fullNameInverted":"Torrez, Carlos","email":"carlos.torrez@nasa.gov","receiveEmail":"Subscribed_User","programContactRole":"Program_Manager","programContactId":194,"programId":73,"programContactRolePretty":"Program Manager","projectContactRolePretty":""}],"leadOrganization":{"organizationId":3036,"organizationName":"Sienna Technologies, Inc.","organizationType":"Industry","city":"Woodinville","stateTerritoryId":11,"stateTerritory":{"abbreviation":"WA","country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"name":"Washington","stateTerritoryId":11,"isTerritory":false},"country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"zipCode":"98072-4423","uei":"W8VZALJ8J617","cageCode":"084Z5","congressionalDistrict":"Washington 01","projectId":8967,"projectOrganizationId":566284,"organizationRole":"Lead_Organization","canUserEdit":false,"locationEdit":false,"organizationRolePretty":"Lead Organization","organizationTypePretty":"Industry"},"otherOrganizations":[{"organizationId":3036,"organizationName":"Sienna Technologies, Inc.","organizationType":"Industry","city":"Woodinville","stateTerritoryId":11,"stateTerritory":{"abbreviation":"WA","country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"name":"Washington","stateTerritoryId":11,"isTerritory":false},"country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"zipCode":"98072-4423","uei":"W8VZALJ8J617","cageCode":"084Z5","congressionalDistrict":"Washington 01","projectId":8967,"projectOrganizationId":566284,"organizationRole":"Lead_Organization","canUserEdit":false,"locationEdit":false,"organizationRolePretty":"Lead Organization","organizationTypePretty":"Industry"},{"organizationId":4946,"organizationName":"Jet Propulsion Laboratory","acronym":"JPL","organizationType":"FFRDC_2fUARC","city":"Pasadena","stateTerritoryId":59,"stateTerritory":{"abbreviation":"CA","country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"name":"California","stateTerritoryId":59,"isTerritory":false},"country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"zipCode":"91109","projectId":8967,"projectOrganizationId":566283,"organizationRole":"Supporting_Organization","canUserEdit":false,"locationEdit":false,"organizationRolePretty":"Supporting Organization","organizationTypePretty":"FFRDC/UARC"}],"primaryTx":{"taxonomyNodeId":11218,"taxonomyRootId":8817,"parentNodeId":11216,"code":"TX08.1.2","title":"Electronics","description":"Electronics include analog and mixed-signal instrument electronics and associated packaging technology that are designed for reuse and/or extensibility and that have reduced volume, mass, and power that can operate over a wide temperature range and other extreme environments, such as high radiation. This area includes detector support electronics such as digital back ends; high-voltage power supplies; wireless networking techniques; and integrated electronic, photonic, and sensor readouts that enable significant signal processing and data compression.","exampleTechnologies":"Analog and mixed-signal instrument front end electronics application-specific integrated circuits (ASICs), Field Programmable Gate Arrays (FPGAs) and discrete components (e.g., radio frequency (RF) System on Chip, Multi-Channel Digitizer (MCD); control and bias voltage electronics; low noise amplifiers; multi-channel A/D and D/A Converters; trans-impedance amplifiers and bias generators), space cube, onboard Synthetic Aperture Radar (SAR) processor, Modular Unified Space Technology Avionics for Next Generation missions (MUSTANG), nanoelectronics","level":3,"hasChildren":false,"selected":false,"isPrimary":true,"hasInteriorContent":true},"primaryTxTree":[[{"taxonomyNodeId":11215,"taxonomyRootId":8817,"code":"TX08","title":"Sensors and Instruments","level":1,"hasChildren":true,"selected":false,"hasInteriorContent":true},{"taxonomyNodeId":11216,"taxonomyRootId":8817,"parentNodeId":11215,"code":"TX08.1","title":"Remote Sensing Instruments and Sensors","description":"Remote sensing instruments and sensors include components, sensors, and instruments that are sensitive to electromagnetic radiation; particles (charged, neutral, dust); electromagnetic fields, both direct current (DC) and alternating current (AC); acoustic energy; seismic energy; and whatever physical phenomenology the science requires. These instruments and sensors can be active or passive devices, depending on the measurement regime and detection technology.","level":2,"hasChildren":true,"selected":false,"hasInteriorContent":true},{"taxonomyNodeId":11218,"taxonomyRootId":8817,"parentNodeId":11216,"code":"TX08.1.2","title":"Electronics","description":"Electronics include analog and mixed-signal instrument electronics and associated packaging technology that are designed for reuse and/or extensibility and that have reduced volume, mass, and power that can operate over a wide temperature range and other extreme environments, such as high radiation. This area includes detector support electronics such as digital back ends; high-voltage power supplies; wireless networking techniques; and integrated electronic, photonic, and sensor readouts that enable significant signal processing and data compression.","exampleTechnologies":"Analog and mixed-signal instrument front end electronics application-specific integrated circuits (ASICs), Field Programmable Gate Arrays (FPGAs) and discrete components (e.g., radio frequency (RF) System on Chip, Multi-Channel Digitizer (MCD); control and bias voltage electronics; low noise amplifiers; multi-channel A/D and D/A Converters; trans-impedance amplifiers and bias generators), space cube, onboard Synthetic Aperture Radar (SAR) processor, Modular Unified Space Technology Avionics for Next Generation missions (MUSTANG), nanoelectronics","level":3,"hasChildren":false,"selected":true,"hasInteriorContent":true}]],"technologyOutcomes":[{"technologyOutcomeId":90653,"projectId":8967,"project":{"projectId":8967,"title":"Reliable Direct Bond Copper Ceramic Packages for High Temperature Power Electronics","startDate":"2010-01-29","startYear":2010,"startMonth":1,"endDate":"2010-07-29","endYear":2010,"endMonth":7,"programId":73,"program":{"ableToSelect":false,"acronym":"SBIR/STTR","isActive":true,"description":"<p>The NASA SBIR and STTR programs fund the research, development, and demonstration of innovative technologies that fulfill NASA needs as described in the annual Solicitations and have significant potential for successful commercialization. If you are a small business concern (SBC) with 500 or fewer employees or a non-profit RI such as a university or a research laboratory with ties to an SBC, then NASA encourages you to learn more about the SBIR and STTR programs as a potential source of seed funding for the development of your innovations.</p><p><strong>The SBIR and STTR programs have 3 phases</strong>:</p><ul><li><strong>Phase I</strong> is the opportunity to establish the scientific, technical, and commercial feasibility of the proposed innovation in fulfillment of NASA needs.</li><li><strong>Phase II</strong> is focused on the development, demonstration and delivery of the proposed innovation.</li></ul><p>The SBIR and STTR Phase I contracts last for 6 months with a maximum funding of $125,000, and Phase II contracts last for 24 months with a maximum funding of $750,000 - $1.5 million.</p><ul><li><strong>Phase III</strong> is the commercialization of innovative technologies, products, and services resulting from either a Phase I or Phase II contract. Phase III contracts are funded from sources other than the SBIR and STTR programs and may be awarded without further competition.</li></ul><p><strong>Opportunity for Continued Technology Development Post-Phase II</strong>:</p><p>The NASA SBIR/STTR Program currently has in place two initiatives for supporting its small business partners past the basic Phase I and Phase II elements of the program that emphasize opportunities for commercialization. Specifically, the NASA SBIR/STTR Program has the Phase II Enhancement (Phase II-E) and Phase II eXpanded (Phase II-X) contract options.&nbsp;</p><p><strong>Please review the links below to obtain more information on the SBIR/STTR programs.</strong></p><ul><li><strong><a target=\"_blank\" href=\"http://sbir.gsfc.nasa.gov/sites/default/files/ParticipationGuide.pdf\">Participation Guide</a></strong></li></ul><p>Provides an overview of the SBIR and STTR programs as implemented by NASA</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/solicitations\">Program Solicitations</a></strong></li></ul><p>Provides access to the annual SBIR/STTR Solicitations containing detailed information on the program eligibility requirements, proposal instructions and research topics and subtopics</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/prg_sched_anncmnt\">Schedule and Awards</a></strong></li></ul><p>Schedule and links for the SBIR/STTR solicitations and selection announcements</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/content/additional-sources-assistance\">Sources of Assistance</a></strong></li></ul><p>Federal and non-Federal sources of assistance for small business</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/abstract_archives\">Awarded Abstracts</a></strong></li></ul><p>Search our complete archive of awarded project abstracts to learn about what NASA has funded</p><ul><li><strong><a href=\"http://sbir.gsfc.nasa.gov/content/frequently-asked-questions\">Frequently Asked Questions</a></strong></li></ul><p>&nbsp;Still have questions? Visit the program FAQs</p>","parentProgram":{"ableToSelect":false,"isActive":true,"description":"Catalyst is a portfolio of early stage programs that specialize in different innovation constituencies and mechanisms to push the state of the art in aerospace technology development","programId":92327,"responsibleMd":{"canUserEdit":false,"locationEdit":false,"organizationRolePretty":"","organizationTypePretty":""},"title":"Catalyst","manageGaps":false,"acronymOrTitle":"Catalyst"},"parentProgramId":92327,"programId":73,"responsibleMd":{"organizationId":4875,"organizationName":"Space Technology Mission Directorate","acronym":"STMD","organizationType":"NASA_Mission_Directorate","canUserEdit":false,"locationEdit":false,"organizationRolePretty":"","organizationTypePretty":"NASA Mission Directorate"},"responsibleMdOffice":4875,"stockImageFileId":36648,"title":"Small Business Innovation Research/Small Business Tech Transfer","manageGaps":false,"acronymOrTitle":"SBIR/STTR"},"description":"The proposed program will develop highly reliable, hermetic, Si3N4 ceramic multichip modules to integrate commercially available SiC power devices to build power electronic modules for reliable operation above 500ºC in extreme environments of space exploration. The Phase I program will demonstrate a reliable direct bond copper (DBC) process for Si3N4 substrates, develop high current carrying hermetic feedthroughs, an innovative transient liquid phase (TLP) die attach, and a monometallic wire bonding capable of reliable operation above 500ºC; and fabricate and test a hermetic single-chip module.","benefits":"Potential applications include motor drives, power supplies, and well logging; high power microwave applications such as phased array radar; automotive applications such as combustion sensors; DoD's mostly electric aircraft and tank programs, monitoring nuclear reactors, and aeronautical engine controls.<br /> <br />Future NASA missions outlined in Decadal Survey of Solar System Exploration all involve operation in extreme environments of temperature, pressure, and radiation. Venus Surface Exploration and Venus Sample Return, both of which require surface operation including sample acquisition from 15-20 cm depth of hard rock and in-situ sensing (temperature, pressure etc.), will significantly benefit from the proposed program.","releaseStatus":"Released","status":"Completed","destinationType":["Others_Inside_the_Solar_System"],"trlBegin":1,"trlCurrent":6,"trlEnd":6,"favorited":false,"detailedFunding":false,"programContacts":[{"contactId":62051,"canUserEdit":false,"firstName":"Carlos","lastName":"Torrez","fullName":"Carlos Torrez","fullNameInverted":"Torrez, Carlos","email":"carlos.torrez@nasa.gov","receiveEmail":"Subscribed_User","programContactRole":"Program_Manager","programContactId":194,"programId":73,"programContactRolePretty":"Program Manager","projectContactRolePretty":""},{"contactId":206378,"canUserEdit":false,"firstName":"Jason","lastName":"Kessler","fullName":"Jason L Kessler","fullNameInverted":"Kessler, Jason L","middleInitial":"L","email":"jason.l.kessler@nasa.gov","receiveEmail":"Subscribed_User","programContactRole":"Program_Director","programContactId":143,"programId":73,"programContactRolePretty":"Program Director","projectContactRolePretty":""}],"endDateString":"Jul 2010","startDateString":"Jan 2010"},"technologyOutcomeDate":"2010-07-29","technologyOutcomePath":"Closed_Out","files":[{"title":"Final Summary Chart","file":{"fileExtension":"pdf","fileId":352791,"fileName":"SBIR_2009_1_FSC_S5_05-9060","fileSize":108977,"objectId":90653,"objectType":"technologyOutcomeFiles","presignedUpload":false,"fileSizeString":"106.4 KB"},"technologyOutcomeId":90653,"fileId":352791}],"infoText":"Closed out","infoTextExtra":"Project closed out","isIndirect":false,"infusionPretty":"","isBiDirectional":false,"technologyOutcomeDateString":"Jul 2010","technologyOutcomeDateFullString":"July 2010","technologyOutcomePartnerPretty":"","technologyOutcomePathPretty":"Closed Out","technologyOutcomeRationalePretty":""}],"libraryItems":[],"states":[{"abbreviation":"CA","country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"name":"California","stateTerritoryId":59,"isTerritory":false},{"abbreviation":"WA","country":{"abbreviation":"US","countryId":236,"name":"United States"},"countryId":236,"name":"Washington","stateTerritoryId":11,"isTerritory":false}],"endDateString":"Jul 2010","startDateString":"Jan 2010"}}