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SBC: HYPER TECH RESEARCH INC Topic: 23i
Hyper Tech is developing a long-length superconducting NbTi CIC cable that can improve the performance/cost for a new DOE colliders plus energy and medical applications like MRI and SMES.STTR Phase II 2017 Department of Energy
HIGH POWER DIODE-PUMPED LASER AMPLIFIER FOR LASER-DRIVEN ULTRAFAST TABLE-TOP SOFT X-RAY LASER SOURCESSBC: XUV LASERS, INC. Topic: 08a
The novel high energy, high average power, diode-pumped solid state lasers to be developed by this program will enable the realization of a new generation of high average power table-top x-ray laser sources with applications in ultrafast metrology of materials, studies of molecular structure and catalysis, ultra-high resolution microscopy, and other nanotechnology applications.STTR Phase II 2017 Department of Energy
SBC: ELECTROFORMED NICKEL INC Topic: 08a
Neutron scattering is one of the most useful methods of studying the structure and dynamics of matter. Therefore, a number of new large neutron facilities have recently being constructed, upgraded or planned around the world. Examples include the new, 1.4 billion-dollars Spallation Neutron Source (SNS) at DoE’s Oak Ridge National Laboratory (ORNL) and upgrades of ORNL’s High-Flux Isotope React ...STTR Phase I 2017 Department of Energy
SBC: HYPER TECH RESEARCH INC Topic: 25h
Hyper Tech proposes to develop a new technology for the high-performance superconducting mag- nets that are required for final focus in an electron-ion collider. The Electron-Ion Collider (EIC) is a pro- posed colliding beam facility in which polarized beams of ions and electrons would be to study the spin structure of nuclear matter. Final-focus (FF) magnets are required to focus the beams as the ...STTR Phase I 2017 Department of Energy
SBC: MAINSTREAM ENGINEERING CORP Topic: 15a
Separations often account for a majority of process costs. This is because all traditional separation processes have inherent weaknesses that prevent the system from achieving perfect (or even near perfect in many instances) selectivity. These weaknesses result in large recycle streams and require multiple separation units in concert in order to produce a product clean enough for use or sale. An a ...STTR Phase I 2017 Department of Energy
SBC: PLC CONNECTIONS Topic: 04a
As computational density for high-performance computing and big-data services continues to scale, performance scalability of next generation computing systems is becoming increasingly constrained by limitations in memory access, power dissipation and chip packaging. The processor-memory communication bottleneck, a major challenge in current multicore processors due to limited pin-out and power bud ...STTR Phase I 2017 Department of Energy
SBC: UES SERVICES INC Topic: 17b
Direct Internal Reforming Solid Oxide Fuel Cells require an anode material with good catalytic reforming and electrochemical reactivity. Although the current state-of-the-art solid oxide fuel cell anode consisting of nickel and yttrium-stabilized zirconia (Ni-YSZ) has excellent catalytic properties and stability for the H2 oxidation at the usual operation conditions, the use of Ni-YSZ anode with c ...STTR Phase I 2017 Department of Energy
SBC: SKYRE, INC Topic: 14b
N/ASTTR Phase II 2016 Department of Energy
SBC: RNET TECHNOLOGIES INC Topic: 32d
An important objective of the NEAMS program is to enable widespread use of the software tools among the industry, academia, and regulatory communities. For solving the problems occurring at various stages of NEAMS simulations, typically there are several possible choices for numerical subroutines. Furthermore, the best method for a numerical problem may also evolve over the course of the simulatio ...STTR Phase II 2016 Department of Energy
SBC: MUPLUS INC. Topic: 31e
A novel pressurized gasfilled multiRFcavity beam profile monitor has been studied that is simple and robust in highradiation environments. Charged particles passing through each RFcavity in the monitor produce intensitydependent ionized plasma, which changes the gas permittivity. Standard RF techniques to measure the change in quality factor (Q) and frequency (f) as a function of time are then use ...STTR Phase II 2016 Department of Energy