NASA Technology Transfer Program
NASAs Synthetic Schlieren Techniques for Flight Testing Webinar
updated
Innovators at NASA's Glenn Research Center have made several breakthroughs in treating hexagonal boron nitride (hBN) nanomaterials, improving their properties to supplant carbon nanotubes in many applications. These inventors have greatly enhanced the processes of intercalation and exfoliation. Both processes are crucial in creating usable nanomaterials and tailoring them for specific engineered applications. In addition, Glenn's researchers have devised a means of fabricating exfoliated hBN-alumina ceramic composites, which have great potential as high-thermal-conductivity electrical insulators, as well as a new method to remove impurities from nanomaterials without causing damage to their structures.
For more information on this technology, please visit:
technology.nasa.gov/patent/LEW-TOPS-107
NASA Glenn's innovation, flown in a successful space mission, uses SMA components in actuators and hinging elements to improve retention, release, and deployment of crucial structures, such as solar arrays. Compared to standard devices, the SMA-based mechanisms are much smaller and lighter, do not produce debris, and require minimal power to operate, meeting the rigorous power budget for CubeSats. These SMA-based components are a key breakthrough for CubeSats and other small satellites, where their small size and weight, reusability, and reliability are mission critical.
For more information on this technology, please visit:
technology.nasa.gov/patent/LEW-TOPS-135
Hannah LaCon (Founder and CEO)
Aaliyah Hall (Co-Founder and CMO)
Johnnie Stewart (Mechanical Engineer Lead)
In our Startup NASA Feature series, discover how companies are licensing NASA technologies to bring groundbreaking innovations to market.
HerculE-Q is at the forefront of wireless charging innovation for light electric vehicles (LEVs). In partnership with Warp Speed Scooters, they are leveraging NASA technology to introduce a cutting-edge hybrid wireless charging system for e-bikes and e-scooters.
Learn how they are setting new standards for efficiency and sustainability, paving the way for a cleaner, more connected world.
To contact HerculE-Q, please email: herculeqllc@gmail.com
Griffin Lunn, P.E.
Oscar A. Monje, PhD
Removing nitrogen pollutants, like ammonia, from water is a critical environmental issue. The Wastewater Treatment and Remediation System by NASA Kennedy Space Center offers a scalable solution that can be incorporated into water treatment systems at various stages: water treatment, effluent polishing, resource reclamation, resource recycling, grey water treatment, and more. The system utilizes an affordable media that is highly selective for ammonia, allowing large concentrations of ammonia in wastewater to be reduced to levels less than 1 ppm. Following treatment, the media is regenerated for reuse in the system and ammonia is captured as a by-product. Ideal for hotels, other multi-unit housing complexes, food processing plants, chemical plants, and beyond.
To learn more about this technology, please visit this page:
technology.nasa.gov/patent/KSC-TOPS-36
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market these technologies. For more information, please visit: http://technology.nasa.gov
#watertechnology #watertreatment #technologytransfer #techinnovation #nasatechnology
Aviary is NASA’s new digital modeling tool for aeronautical engineers to innovate new aircraft designs. Building on decades of experience using highly advanced computer code for aviation, Aviary allows researchers to create simulations of conceptual aircraft featuring never-flown technology, delivering detailed data on performance. Aviary’s flexibility enables seamless integration with other tools, enhancing its capabilities beyond traditional modeling systems. This powerful, free, and accessible resource fosters collaboration and innovation, with extensive documentation on GitHub. In this webinar, discover how Aviary is set to revolutionize aircraft design and push the boundaries of aerospace engineering.
NASA’s Glenn Research Center, Ames Research Center, and Langley Research Center contributed to Aviary.
GitHub: github.com/OpenMDAO/Aviary
NASA Software: software.nasa.gov
John Chavez and Melissa Firestone
The Startup NASA Feature Series provides an opportunity for you to hear about companies that have licensed NASA technologies and are working to commercialize them.
In this webinar, New Mexico Start-Up Factory™ shares their groundbreaking approach to bringing laboratory technologies to market. Their innovative model guides scientists through technology validation and market readiness, forming commercialization strategies that cultivate promising new ventures.
ORC Tech, a standout company in their portfolio, harnesses NASA technology from Johnson Space center that was originally designed to improve communications for lunar missions. This lightweight portable device can boost incoming signals to improve local reception for cell phones, laptops, satellite and Wi-Fi internet receivers without the need for power plugs, cables or batteries.
NASA Tech Transfer Expansion Program: technology.nasa.gov/t2x
To visit the NASA Technology Transfer portfolio and all of the available patents, visit: technology.nasa.gov
#technologytransfer #techinnovation #startups #NASAT2X
Community noise has been identified as a major barrier to entry-into-service of unmanned aerial vehicles (UAVs) and urban air mobility (UAM) platforms. For these applications, distributed electric propulsion (DEP) systems are becoming increasingly popular because of their ability to distribute propulsors in many locations on the vehicle. New small/medium UAV's and UAM's, and thin/short haul aircraft concepts and demonstrators exploit DEP systems for different purposes. However, given the problem of community noise, NASA engineers have modified the vehicle noise directivity pattern by controlling the relative angular positions of the propulsor blades, in order to direct noise away from sensitive areas.
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-308
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #instrumentation #technologytransfer
Priyank Pradeep
Jessica Koehne
Guru P. Guruswamy
Evan T. Kawamura
Renowned for pioneering research, NASA Ames Research Center has been at the forefront of space exploration and scientific discoveries since its establishment. Be among the first to explore a range of newly released technologies set to revolutionize industries and pave the way for future solutions. From aerospace to biotechnology, these discoveries offer vast possibilities for collaboration and commercialization.
For more information on the featured technologies, please click below:
Method and System for Wind-Optimal Airspeed Target and Airspeed Predictions at Waypoints Using Flight Management System: technology.nasa.gov/patent/TOP2-319
Viral Antigen Sensor Based on Electrochemical Enzyme-Linked Immunosorbent Assay (ELISA): technology.nasa.gov/patent/TOP2-307
Active Turbulence Suppression System for Electric Vertical Take-Off and Landing (eVTOL) vehicles: technology.nasa.gov/patent/TOP2-308
Vision-based Approach and Landing System (VALS): technology.nasa.gov/patent/TOP2-322
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market these technologies. For more information, please visit: http://technology.nasa.gov
Dr. Rodger Dyson at NASA Glenn Research Center presents on the "Closed Strayton" Generator Design, created to efficiently deliver lightweight and sustainable electric power for clean energy applications. Optimized for hydrogen-based, zero-emission electrified aircraft propulsion from kW to MW range, the design builds on the core Strayton engine technology, which combines both Stirling and Brayton cycle elements to overcome the size and performance limitations of conventional turbines and heat engines. In its closed-cycle configuration, the design provides fuel-source agnostic, maintenance-free, quiet power generation for applications with challenging footprint and noise constraints. Scalable to higher power outputs, this early-stage technology offers broad applications for tomorrow's clean energy and power systems.
For more information on this technology, please visit:
technology.nasa.gov/patent/LEW-TOPS-168
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#cleanenergy #electricpower #sustainability #greenenergy #techinnovation
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-347
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #optics #technologytransfer #techinnovation
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-329
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture, and market this technology. For more information, please visit: http://technology.nasa.gov
#aerospace #technologytransfer #NASALangleyTech #techinnovation
This webinar series features firsthand experiences and best practices from distinguished instructors at colleges and universities around the country.
At Syracuse University, Capstone is a pivotal experience for students in the Whitman School of Management. The course is taught each semester by Whitman Entrepreneurship and Emerging Enterprise Faculty, who challenges teams of students to create a concept for a new product, service, or business model.
Since joining the T2U program, Ken Walsleben, Professor of Entrepreneurial Practice and voted Professor of the Year, has incorporated NASA technology into the curriculum. Tune in to learn how Syracuse University is bringing NASA innovations to the classroom.
For more information on the NASA Technology Transfer University program, visit: technology.nasa.gov/t2u
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-311
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-280
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#instrumentation #minerals #preciousmetals #techinnovation #technologytransfer
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-368
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#manufacturing #additivemanufacturing #informationtechnology #softwareinnovation
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-374
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#techinnovation #aerospaceinnovation #urbanairmobility
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-301
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#sensortechnology #NASALangleyTech #techinnovation
In this webinar, NASA Glenn Research Center (GRC) will present a next-generation, non-pneumatic, compliant tire structure based on shape memory alloy (SMA) elements. This new structure builds upon previous work related to airless tires that were designed for rovers used in planetary exploration. The use of SMAs capable of undergoing high strain as load bearing components results in a tubular structure that can withstand excessive deformation without permanent damage.
Applications include:
Vehicle tires aircraft, agricultural machinery, off-road vehicles, trucks, motorcycles, automobiles, bicycles, energy absorbers: sports helmets, military equipment, seals and couplings, compliant connectors, and the biomedical Industry
For more information on this technology, please visit here:
technology.nasa.gov/patent/LEW-TOPS-161
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#ShapeMemoryAlloys #techinnovation
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-245
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#sensortechnology #NASALangleyTech #techinnovation
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-295
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #instrumentation #technologytransfer
MNPCs are composed of lightweight polymer matrix, superstrong nanotubes (NT), and functional nanoparticle inclusions, offering metallic properties without the associated weight penalty. MNPCs offer structural quality composites with tailor designed properties. MNPCs manage the challenges associated with high-speed, high-altitude flight that is also able to transfer to ground-use cases that require stronger, lighter materials. Unlike MNPCs, other non-metallic composites fail to meet the functional requirements of current metallic options, and may expose an increased risk to health, instruments or structure, not all of which can be mitigated. MNPCs offer both EME protection and structural rigidity without the weight of typical metallic options, and can be applied to various nanotubes and capitalize on those inherit properties.
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-313
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#techinnovation #materialsscience #polymer #nanotubes
This webinar is for anyone passionate about innovation and its real-world applications. Whether you're a NASA enthusiast, a student, or a professional interested in the intersection of academia and industry, this event is for you.
NASA Tech Transfer Expansion Program: technology.nasa.gov/t2x
To visit the NASA Technology Transfer portfolio and all of the available patents, visit: technology.nasa.gov
#technologytransfer #techinnovation
Automated Fiber Placement machines (AFP) can be susceptible to tow-tape defects such as gaps and overlaps. These can reduce strength between 7% and 32%. Automated inspection is not fully effective, and current AFP systems rely heavily on visual based inspections of each ply layer to detect and correct these tape defects.
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-284
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#Manufacturing #Aerospace #ProcessImprovement #ErrorDetection #technologytransfer #techinnovation #NASALangleyTech
Moderator: Kelly Sands
Introducing SMAnalytics, a groundbreaking software designed for automating the analysis, summarization, and reporting of shape memory alloy (SMA) test data.
Join us for a webinar with NASA Glenn Research Center and discover how SMAnalytics streamlines data analysis from standardized test methods like ASTM E3097 Uniaxial Constant Force Thermal Cycling (UCFTC), ASTM E3098 Uniaxial Pre-Strain and Thermal Free Recovery (UPFR), and ASTM F2004 Differential Scanning Calorimetry (DSC).
For more information on this technology, please visit here:
software.nasa.gov/software/LEW-20278-1
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#ShapeMemoryAlloys #softwareinnovation
Learn how Aetherworks, Inc. harnesses NASA patented technology to efficiently capture carbon dioxide (CO2) from the air and release it as needed into indoor farms.
Why is CO2 important to indoor farms? Most indoor farms add CO2 to help their crops grow 20 to 40 percent faster. Growers no longer have to pay transportation costs and will have a renewable on-site source of CO2 with this modular approach.
For more information on Aetherworks, Inc. please visit: aetherworks.us
NASA Tech Transfer Expansion Program: technology.nasa.gov/t2x
To visit the NASA Technology Transfer portfolio and all of the available patents, visit: technology.nasa.gov
#agritech #biotechnology #greentechnology #earthday #indoorfarming
#NASAT2X
In this webinar, innovators showcase five newly patented technologies, including a safer, cost-efficient way to generate artificial gravity and a screening tool for neurological disorders. For more information, please visit the links below:
Aerospace Vehicle Entry Flightpath Control
technology.nasa.gov/patent/TOP2-303
Oculometric Testing for Detecting/Characterizing Mild Neural Impairment
technology.nasa.gov/patent/TOP2-268
Centralized Data Management Platform
technology.nasa.gov/patent/TOP2-314
Spacecraft with Artificial Gravity Modules
technology.nasa.gov/patent/TOP2-311
Real-Time Drag Optimization Control Framework
technology.nasa.gov/patent/TOP2-279
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#aerospace #aerospaceinnovation #aviationtechnology #spacetechnology #biotechnology #techinnovation
For more information on these two technologies, please visit:
technology.nasa.gov/patent/LAR-TOPS-156
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#robotics #automation #NASALangleyTech
This innovative system by NASA Langley Research Center bridges this gap by harnessing GPS pseudorange, code phase, and carrier phase measurements, refining positioning estimates through established techniques like differential GPS and Real-Time Kinematic (RTK) GPS. Integrating signals from both mobile and fixed base stations, this technology eliminates common measurement errors, ensuring precision for a variety of applications.
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-296
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#technologytransfer #techinnovation #NASALangleyTech
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-264
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-259
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #lasertech #lasertechnology
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-282
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, please visit:
technology.nasa.gov/patent/lar-tops-214
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#ChemicalDetector #Sensors #PhotoAcoustic #NASALangleyTech
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-203
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#AdditiveManufacturing #Antennas #Connectivity #ElectronicEquipment #SunandSolar
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-120
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #Composites #DamageDetection #nondestructivetesting
This webinar series features firsthand experiences and best practices from distinguished instructors at colleges and universities around the country. These instructors have valuable perspectives about the educational benefits of working with NASA-developed technology and an understanding of the entrepreneurial value of leveraging these NASA IP resources to start tech-based companies.
Join us for the next installment of this webinar series to hear from Dr. Julie Lamarra, Ph.D., Assistant Professor of Professional Practice at Utah State University.
For more information on USU's Outdoor Product Design & Development program, visit: https://caas.usu.edu/opdd/
Instagram: @usuoutdoorproduct
Email: Julie.Lamarra@usu.edu
For more information on the NASA Technology Transfer University program, visit: technology.nasa.gov/t2u
Bronwyn Darlington (Founder) and Ashley Sweeting (USA Vice President)
Imagine if livestock diagnostic testing was non-invasive, efficient, accurate, and at point-of-care (POC). Agscent’s breath sensing technology is working to achieve just that.
During this Startup NASA Feature webinar with Agscent , learn about this bio/agri-tech company that was founded on a farm in regional NSW, Australia, and how they leveraged NASA-licensed technology from Ames Research Center to develop their groundbreaking breath sensing devices.
For more information on Agscent, please visit: agscent.com
NASA Tech Transfer Expansion Program: technology.nasa.gov/t2x
To visit the NASA Technology Transfer portfolio and all of the available patents, visit: technology.nasa.gov
#agritech #biotechnology #biotech #agritechnology
#NASAT2X
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-198
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #techinnovation #technologytransfer #aerospace
For more information on this technology, please visit:
technology.nasa.gov/patent/LAR-TOPS-157
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#NASALangleyTech #techinnovation #technologytransfer #aerospace
Moderator: John C. Hernandez
Introducing the Hyper-Distributed RFID Antenna (HYDRA) System. NASA Johnson Space Center's multiplexing system enhances distribution of the RFID reader signal, providing improved coverage for large areas as well as for small, fixed regions requiring a high density of reader antennas. This greater coverage translates into better RFID sensing capabilities, higher localization accuracy, and enhanced logistics awareness.
The second technology is a low-mass, dual-mode RFID antenna that provides polarization diversity and employs dual resonances, but in a form factor that is much smaller than other RFID antennas that provide similar functionality. Although it was originally developed for the HYDRA system, it has vast applications.
For more information on these two technologies, please visit:
technology.nasa.gov/patent/MSC-TOPS-111
technology.nasa.gov/patent/MSC-TOPS-117
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#rfidtechnology #radiofrequency #antennas #rfidreader
Moderator: Lewis Parrish
NASA Kennedy Space Center has developed a technology that generates plasma activated water in pH ranges that allow for the addition of nitrates and other nutrients while maintaining a healthy pH for plants. The uniqueness of this process is the adjustability of the pH with one system. The same plasma system can be used to treat both the water and the biomass. Additionally, the technology can be used as an on-demand, point-of-use method for producing nitric acid.
For more information on this technology, please visit: technology.nasa.gov/patent/KSC-TOPS-94
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
#biotechnology #agriculture #hydroponics #hydroponicsfarming
During the virtual event, Chris Campbell, CEO, will present on their journey and product, the Provectus Sport, a handheld breath analysis system that will someday enable comprehensive metabolic analysis. This innovative solution is being developed with the goal of gathering health data that would normally require expensive chemical analysis equipment and a highly trained staff.
Hear how Chris Campbell got involved with NASA and where Simpli-Fi Automation is at in their growth stage.
Simpli-Fi Automation: simplifiautomation.com
NASA Tech Transfer Expansion: technology.nasa.gov/t2x
#telehealth #biotechnology #biotech #healthcare #healthtech #healthtechnologyinnovator #NASAT2X #nasatechnology
During the virtual event, presenters will delve into their programs, share stories on how they got involved with NASA, and highlight the startup companies born out of Expanding Frontiers.
Speakers:
Dr. Fredrick Jenet, Founder and Executive Director, Expanding Frontiers
Walter G. Ugalde, Economic Development Executive, NASA T2X
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, or to inquire about licensing, please visit: technology.nasa.gov/patent/MFS-TOPS-103
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, or to inquire about licensing, please visit: http://technology.nasa.gov/patent/LAR-TOPS-112
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, or to inquire about licensing, please visit: technology.nasa.gov/patent/LAR-TOPS-36
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, or to inquire about licensing, please visit: technology.nasa.gov/patent/LAR-TOPS-292
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
For more information on this technology, or to inquire about licensing, please visit: technology.nasa.gov/patent/LAR-TOPS-165
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov
Get started at software.nasa.gov
The primary target application is next-generation electric aviation propulsion systems, yet SABERS will benefit other applications, too. Whether for large electric vehicle systems or small electronic devices, SABERS can potentially set new benchmarks in energy density and power, all while offering the utmost in safety and reliability. And most importantly, the inventors intentionally designed environmentally friendly and sustainable materials and manufacturing methods into SABERS' portfolio. SABERS can help address today and tomorrow’s needs for electrification and sustainability.
For more information, including how to apply to license this technology, visit the SABERS patent page on the NASA Technology Transfer website at: technology.nasa.gov/patent/LEW-TOPS-167
More information about this technology can be found at technology.nasa.gov/patent/MFS-TOPS-101
The National Aeronautics and Space Administration solicits interest from companies interested in obtaining license rights to commercialize, manufacture and market this technology. For more information, please visit: http://technology.nasa.gov


