Purchase Order NNX13CG21P
- Not listed
- This is a Small Business Innovation Research (SBIR) Phase I contract awarded by NASA to Creare LLC, a small business engineering and research company based in Hanover, New Hampshire. The contract, valued at $124,910, is for the development and demonstration of an innovative Stirling cryocooler that can efficiently produce refrigeration at 30 Kelvin while rejecting heat at 150 Kelvin. This technology is critical for future NASA planetary science missions with limited access to solar power, as...
- NASA has awarded a Small Business Innovation Research (SBIR) Phase I contract to Mainstream Engineering Corporation, a small business manufacturer, to develop an oil-less vapor-compression refrigeration compressor technology capable of operating at high temperatures up to 400 K. This compressor technology is intended to meet NASA's need for space exploration vehicles to reject waste heat to high-temperature heat sinks, particularly for an equatorial lunar mission profile. Mainstream...
- This is a Phase I Small Business Innovation Research (SBIR) contract awarded by NASA to Creare LLC, a small business engineering R&D company based in Hanover, NH. The $124,997 firm-fixed-price contract is for the design and assessment of a high-capacity turbo-Brayton cryocooler that can provide 150 watts of refrigeration at 90 Kelvin. This technology is intended to address NASA's need for long-term cryogenic propellant storage in space, where typical cryocoolers are not suitable for the high...
- This is a $124,425 firm-fixed-price Small Business Innovation Research (SBIR) Phase I contract awarded by NASA to Converter Source LLC, a small business limited liability company based in Athens, Ohio. The contract is for the preliminary design of an innovative Stirling-cycle-based cryogenic refrigeration and coolant circulating subsystem to enable reduced or zero boil-off of cryogenic liquid propellants, such as liquid oxygen (LO2) and liquid hydrogen (LH2), for space missions. The goal is to...
- This is a firm fixed-price purchase order awarded by the National Aeronautics and Space Administration (NASA) to Madison Cryogroup LLC, a small business, under the Small Business Innovation Research (SBIR) Program Phase I. The contract is valued at $124,836.00 and has a completion date of December 9, 2016. The purpose of the contract is to develop a two-stage pulse tube cryocooler that can provide cooling in the range of 10 to 20 Kelvin. This is intended to address the limitations of currently...
- This is a $124,245 firm fixed-price Small Business Innovation Research (SBIR) Phase I contract awarded by the National Aeronautics and Space Administration (NASA) to Iris Technology Corporation, a small business manufacturer of defense and space electronics based in Irvine, California. The contract aims to advance the state-of-the-art in CubeSat cryocooler systems by developing a high-efficiency, low-power, two-stage pulse tube cryocooler and integrating it with proven miniature low-cost...
- NASA's Glenn Research Center awarded Creare LLC a Phase III Small Business Innovation Research (SBIR) contract valued at approximately $9.0 million for the development and delivery of a 20-watt, 20-kelvin cryocooler designed for thermal control of space-based liquid hydrogen systems. This definitive contract, awarded December 1, 2014, with an ultimate completion date of August 1, 2026, represents a continuation of technology development work previously conducted by Creare under Phase II SBIR...
- This is a Small Business Innovation Research (SBIR) Phase I contract awarded by the National Aeronautics and Space Administration (NASA) to Creare LLC, a small engineering research and development company based in Hanover, New Hampshire. The contract, valued at $124,569, is for the development of a new cryocooler technology to enable superconducting systems for turboelectric aircraft. The goal is to extend the temperature range of Creare's existing cryocooler design to provide cooling down to 15...
- This is a Phase II Small Business Innovation Research (SBIR) contract awarded by the National Aeronautics and Space Administration (NASA) Shared Services Center to Creare LLC, a small business engineering and research and development company. The contract has a potential value of $749,951 and is for the development of a low-cost cryocooler control electronics package to support future small spacecraft missions. Many of NASA's future space science missions will utilize small spacecraft, which...
- This is a Phase II Small Business Innovation Research (SBIR) contract awarded by the National Aeronautics and Space Administration (NASA) to Converter Source LLC, a limited liability company, for the development and testing of a Stirling-cycle cryocooler and coolant circulating subsystem. The cryocooler system is intended for use with broad area cooling (BAC) systems to enable reduced or zero boil-off storage of cryogenic liquid propellants for long-term in-space applications. The contract is...
THE UNIQUE BUILT-IN DESIGN FEATURES OF THE PROPOSED MINI PULSE TUBE CRYOCOOLER AVOID ALL THERMAL EXPANSION ISSUES ENABLING IT TO OPERATE WITHIN A COLD, 150 K ENVIRONMENT. AS SUCH, THE COOLER ADDRESSES THE NEED TO PREVENT BOILOFF OF CRYOGENIC PROPELLANTS ON LONG DURATION REMOTE MISSIONS. DUE TO ITS HIGH HEAT CAPACITY REGENERATOR MATRIX, THE COOLER HAS A HIGH EFFICIENCY AND A SMALL FOOTPRINT, MAKING ITS LAUNCH MASS MINIMAL. THE COHERENT REGENERATOR MATRIX CONFIGURATION PREVENTS MOVEMENT AND SO PREVENTS DEGRADATION OVER TIME. DUE TO ITS UNIQUE COMPRESSOR BEING COLD-TOLERANT DOWN TO 150 K THE COOLER CAN KEEP RUNNING EVEN WHERE THE SUN IS SO FAR AWAY AND DIM THAT THE ENERGY CAPTURED BY THE SPACECRAFT CANNOT KEEP THE COMPRESSOR WARM. THE COMPRESSOR BEING DESIGNED TO RUN COLD AND ON MINIMAL INPUT POWER ALLOWS IT TO RUN AT THE INHERENTLY LOW SOLAR INTENSITY, WHICH SERIOUSLY DEPRESSES SOLAR CELL POWER GENERATION. IN ALL, OUR CRYOCOOLER INNOVATION IS AN ENABLING TECHNOLOGY FOR FAR-FLUNG MISSIONS THAT HAVE THE NEED TO PRESERVE MISSION PROPELLANTS IN THEIR LIQUEFIED STATE UNTIL NEEDED TO MANEUVER NEAR A DESTINATION OR A MIDWAY POINT. THE DESIGN CONCEPT CALLS FOR: 1) USING REGENERATOR MATERIALS FROM A RECENTLY DEVELOPED CLASS OF HIGH HEAT CAPACITY RARE EARTH ALLOYS; 2) A COMPRESSOR AND COLDHEAD DESIGN OPTIMIZED FOR A LOW TEMPERATURE HEAT SINK; 3) MINIMIZING THE KNOWN LOSSES IN THE PULSE TUBE PROPER. THE CRYOCOOLER DESIGN WILL BE POSSIBLE DUE TO THE LONG STANDING CRYOCOOLER DESIGN AND MANUFACTURE HERITAGE OF THE TEAM MEMBERS. PHASE I WILL VERIFY THE LOW TEMPERATURE CAPABILITIES DOWN TO 150 K OF AN AVAILABLE MINI COMPRESSOR, AND, WILL PUT FORTH THE DESIGN OF THE CRUCIAL COMPONENTS OF A COMPLETE 0.3 W AT 35 K CRYOCOOLER TARGETED TO RUN IN A 150 K ENVIRONMENT. PHASE II WILL BUILD AND TEST A COMPLETE PROTOTYPE CRYOCOOLER THAT IS SMALL IN SIZE AND POWER CONSUMPTION ENABLING LONG DURATIONS MISSIONS TO PLANETARY OBJECTS AT REMOTE LOCATIONS WITHIN THE SOLAR SYSTEM.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | Not listed | $124.9k | 5/22/13 |