Definitive Contract NNX17CA03C

Award Date 4/19/17
Potential Completion Date 4/18/19
Potential Value $750K
Ultimate Awardee
Not listed
Federal Contract Vehicle
Set-Aside Type
Total Small Business
Extent Competed
Full and Open Competition after exclusion of sources
Major Defense Program
Not listed
Pricing Type
Firm Fixed Price
Place of Performance
Pembroke, VA 24136, USA
Solicitation Procedures
Negotiated Proposal / Quote
Number Of Offers Received
500
Legislative Mandate
Not listed
National Interest Action
Not listed
Research Type
SBIR Program Phase II Action
Primary Consortia Member
Not listed
Similar Awards
This is a NASA Phase II Small Business Innovation Research (SBIR) contract awarded to Nanosonic Inc., a for-profit manufacturer based in Pembroke, Virginia. The $750,000 contract is for the fabrication of high-sensitivity semiconductor nanomembrane "sensor skins" capable of multi-axis surface pressure characterization on flight test vehicles, wind tunnel models, and operational aerospace vehicles. The sensor skins will utilize silicon-on-insulator (SOI) nanomembrane techniques combined...
Nanosonic Inc. was awarded a firm fixed price definitive contract valued at $759,957 by the National Aeronautics and Space Administration (NASA) to further develop low profile, self-diagnosing nanomembrane based pressure sensors with minimum power consumption and fast operation time for flight test applications. This Phase II Small Business Innovation Research (SBIR) program contract builds upon Nanosonic's initial Phase I work to utilize silicon on insulator nanomembrane techniques. The work...
This is a Phase I Small Business Innovation Research (SBIR) contract awarded by NASA to Nanosonic Inc., a small business manufacturer based in Pembroke, Virginia. The contract, valued at $125,000.00, is focused on developing high-sensitivity, high-frequency nanomembrane-based surface sensors for use in hypervelocity testing and analysis on wind tunnel models and aerospace vehicles. The goal is to create low-modulus, conformal nanomembrane sensor skins with integrated interconnect elements and...
This is a $122,073 NASA Phase I Small Business Innovation Research (SBIR) contract awarded to Nanosonic Inc., a for-profit manufacturer based in Pembroke, Virginia. The contract is for the fabrication of high-sensitivity semiconductor nanomembrane "sensor skins" capable of multi-axis surface pressure characterization on flight test vehicles, wind tunnel models, and operational aerospace vehicles. The sensor skins leverage silicon-on-insulator nanomembrane techniques combined with...
This is a NASA SBIR Phase I contract awarded to Nanosonic Inc., a small business manufacturer based in Pembroke, Virginia. The $125,000 fixed-price contract is to fabricate wireless networked nanomembrane-based surface pressure sensors for remote monitoring in propulsion systems. The sensors will utilize silicon-on-insulator nanomembrane techniques combined with hybrid ceramic nanocomposite materials to create low-modulus, conformal sensor skins that can be applied to new or existing...
Nanosonic Inc., a small business manufacturer, was awarded a $125,000.00 firm-fixed price contract by the National Aeronautics and Space Administration (NASA) Shared Services Center under the Small Business Innovation Research (SBIR) Phase I program. The contract is for the development of high-performance, wireless networked cryogenic and minimum pressure sensors using silicon-on-insulator nanomembrane techniques and ceramic nanocomposite materials, for remote monitoring in propulsion systems....
Nanosonic Inc. was awarded a $131,453 firm fixed price definitive contract by the National Aeronautics and Space Administration (NASA) Shared Services Center under the Small Business Innovation Research (SBIR) Program Phase I action. The contract has a total small business set aside designation. Under this award, Nanosonic will deliver wireless passive wideband sensors capable of detecting signals from direct current to 5 megahertz to support NASA's research and development efforts....
This is a $125,000.00 Small Business Innovation Research (SBIR) Phase I contract awarded by the National Aeronautics and Space Administration (NASA) Shared Services Center to Nanosonic Inc., a small business prime contractor. The contract is for the development of conformal nanomembrane-based sensor skins to enable cryogenic shear measurements. As a total small business set-aside, this award aligns with NASA's efforts to support innovative research and technology development by small businesses....
Nanosonic Inc. has been awarded a $125,000 firm fixed price definitive contract by the National Aeronautics and Space Administration (NASA) Shared Services Center to deliver ultra-wide bandwidth, conformal strain sensors for nondestructive evaluation applications. The contract is set aside for total small businesses and associated with the Small Business Innovation Research (SBIR) Program Phase I solicitation to support NASA's research and technology development efforts. Work will be performed...
<p>Nanosonic Inc., doing business as Nanosonic Inc., was awarded a $750,000.00 definitive contract by the National Aeronautics and Space Administration (NASA) Shared Services Center for WIRELESS NETWORKED, HIGH TEMPERATURE, WIDE BANDWIDTH PRESSURE SENSORS FOR PROPULSION SYSTEM MONITORING. This small business set-aside contract is a firm fixed price STTR Phase II award, with performance taking place in Pembroke, Virginia over a two year period concluding on November 8, 2024.</p>

Nanosonic Inc. was awarded a $750,000 Phase II Small Business Innovation Research (SBIR) contract from the National Aeronautics and Space Administration (NASA) to develop high sensitivity, high frequency nanomembrane-based surface sensors for hypervelocity testing and analysis on wind tunnel and shock tube models. The contract is a Firm Fixed Price definitive contract and was designated as a Total Small Business set-aside. The sensors leverage Silicon-on-Insulator (SOI) nanomembrane techniques combined with nanocomposite materials to create thin, robust sensors that can be embedded into wind tunnel models and shock tube facilities. This research aims to enable high-frequency pressure analysis and shock front detection to support NASA's hypervelocity testing and analysis requirements.

Generated 3/22/24, 12:58 AM