Definitive Contract W31P4Q19C0002

Award Date 11/8/18
Potential Completion Date 7/31/21
Potential Value $987K
Contracting Federal Agency
Aviation and Missile Command
Ultimate Awardee
Not listed
Set-Aside Type
Total Small Business
Federal Contract Vehicle
Extent Competed
Full and Open Competition after exclusion of sources
Major Defense Program
Not listed
Pricing Type
Cost Plus Fixed Fee
Place of Performance
Glen Allen, VA 23060, USA
Solicitation Procedures
Negotiated Proposal / Quote
Number Of Offers Received
2
Legislative Mandate
Not listed
National Interest Action
Not listed
Research Type
STTR Phase II
Primary Consortia Member
Not listed
Similar Awards
The Department of the Army Materiel Command Research Development and Engineering Command awarded a Small Technology Transfer Research (STTR) Phase I contract to Summit Information Solutions, Inc., a self-certified small disadvantaged business, for the effort titled "Thin Film Deposition of Highly Conductive Metals for Sensor Applications." The $145,458.68 firm-fixed-price contract was awarded on July 24, 2017, with a completion date of March 23, 2018. The contract is set aside for...
This contract award to Smart Material Solutions Inc. is for a Small Business Technology Transfer (STTR) Phase II project with the U.S. Department of the Army Materiel Command Research Development and Engineering Command (RDECOM). The $1,314,850.12 firm fixed price contract has a total small business set aside and will fund one year of advanced research and development on metamaterials, spectral absorbers, and dust mitigation surfaces. As a self-certified small disadvantaged business, Smart...
This is a $999,930.32 Firm Fixed Price Definitive Contract awarded by the U.S. Army Materiel Command Research, Development and Engineering Command (RDECOM) to Smart Material Solutions Inc., a self-certified small disadvantaged business. The contract is for Phase II STTR (Small Business Technology Transfer) research and development on "Computation and Fabrication Tools for Sub-Wavelength Texturing of Visible and IR Surfaces". This work builds on prior SBIR/STTR efforts by Smart Material...
This award is a Small Business Innovation Research (SBIR) Phase 1 contract from the Department of the Army Materiel Command Research Development and Engineering Command to Smart Material Solutions Inc., a self-certified small disadvantaged business. The contract is for highly scalable mastering and roll-to-roll processing of tunable spectral absorbers, valued at $162,500.00. As an SBIR Phase 1 contract, this represents the initial research and development phase to demonstrate the feasibility...
This is a Small Business Technology Transfer (STTR) Phase I contract awarded by the Department of the Army Materiel Command Research Development and Engineering Command to Luna Innovations Incorporated, a for-profit manufacturer of goods. The contract is for research and development of physical vapor deposition as a method to produce high aspect ratio conductive flakes for advanced bispectral or infrared obscuration applications. The contract has a firm fixed price of $166,495.49 and a...
This STTR Phase I contract was awarded by the Department of the Air Force Materiel Command Research Laboratory to SI2 Technologies, Inc., a small business provider of antennas and RF systems. The $149,995 firm fixed price contract is for the manufacture of accurate, dual-sided, capacitive sheets. SI2 Technologies has previously served as a prime contractor on federal R&D contracts, including a $4 million Phase III SBIR award from the U.S. Marine Corps and a $37 million Phase II SBIR award...
This is a $1,730,222.95 Small Business Innovation Research (SBIR) Phase II contract awarded by the Department of the Army to Smart Material Solutions, LLC, a self-certified small disadvantaged business. The contract extends work from a previous Phase I contract and is for research and development related to metamaterials, spectral absorbers, and dust mitigation surfaces. As a total small business set-aside, this contract supports critical advanced materials research for military and space...
This is a $1,244,055.00 Cost Plus Fixed Fee contract awarded by the Air Force Research Laboratory (AFRL) to SI2 Technologies, Inc., a small business, under the Small Business Innovation Research (SBIR) Program Phase II. The contract is for the development of "Efficient Processing Low Variability Printed Resistive Films," a solution intended to improve resistive film processing. SI2 Technologies, Inc. is a leading provider of innovative communications, sensing, and radar technologies...
This is a $150,000.00 firm fixed-price purchase order contract awarded by the U.S. Army Research, Development and Engineering Command (RDECOM) to Structured Materials Industries, Inc., a small business manufacturer, for a Phase I Small Business Technology Transfer (STTR) research and development project. The contract is set aside for small businesses. The project will involve research and development related to advanced materials, optics, electronics, and photonics, with potential applications...
This is a $1,238,227.00 Small Business Innovation Research (SBIR) Phase II contract awarded by the Air Force Research Laboratory (AFRL) to SI2 Technologies, Inc., a small business defense technology company. The contract is for the manufacture of accurate, dual-sided, capacitive sheets, which are likely a component of advanced communications, sensing, or radar systems. SI2 Technologies has a history of SBIR and Indefinite Delivery Vehicle (IDV) contracts with various defense agencies,...

The Department of the Army Materiel Command Research Development and Engineering Command awarded a Small Business Technology Transfer (STTR) Phase II contract to Summit Information Solutions, Inc., a self-certified small disadvantaged business, for a Statement of Work entitled "Thin Film Deposition of Highly Conductive Metals for Sensor Applications." The $986,712.09 Cost Plus Fixed Fee contract runs through July 31, 2021 and is set aside for small businesses. This STTR effort is focused on the development of advanced thin film deposition techniques for highly conductive metals to support sensor applications.

Generated 3/23/24, 8:34 PM