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    • 44. 发明专利
    • High speed current shunt
    • NZ591618A
    • 2013-08-30
    • NZ59161809
    • 2009-09-04
    • ADVANCED FUSION SYSTEMS LLC
    • BIRNBACH CURTIS A
    • H02H9/00H01H83/10H02G7/00H02G13/00H02H5/00
    • 591618 A high-speed current shunt (164) comprises a) a flat conductive metal strap (170) and b) a tapered parallel-plate transmission-line impedance matching transformer (174). The flat conductive metal strap has a first and a second electrode at each end of the strap for connection to an external circuit for receiving current through the strap. The strap has a defined current-measuring region (171) extending from a first linear position to a second linear position along the length of the strap. The tapered parallel-plate transmission-line impedance matching transformer comprises i) first and second plates (174a, 174b) tapered in shape and having a wide end and a narrow end, relative to one another and ii) a coaxial cable (176) with a centre conductor being attached by a solder to the narrow end of the first plate, and a shield being attached by a solder to the narrow end of the second plate. Each tapered plate has a length approximately 10 times that of width of the metal strap. The first plate is attached at its wide end to the first linear position of the defined measuring region by a solder and the second plate is attached at its wide end to the second linear position of the defined measuring region by a solder.
    • 47. 发明专利
    • METHOD AND SYSTEM FOR CONTROLLED FUSION REACTIONS
    • NZ573514A
    • 2011-12-22
    • NZ57351407
    • 2007-05-30
    • ADVANCED FUSION SYSTEMS LLC
    • BIRNBACH CURTIS A
    • G21B1/00G21B1/03G21B1/23
    • A system for extracting energy from inertial confinement fusion reactions includes a central target chamber 10 for receiving fusion target material via pellet injectors 16. A plurality of at least six energy drivers 12 are arranged around the exterior of the target chamber so as to directly supply synchronous x-ray pulse energy to fusion target material in the chamber at an energy level that avoids the creation of an exploding shockwave emanating from the target material prior to initiating and imploding phase of a fusion reaction of the material, releasing energy in the forms of fusion plasma and heat. The energy drivers are oriented to supply a synchronous x-ray pulse to the fusion target material in a 3-dimensionally symmetric manner about a spherical pellet of the fusion target material, and are controlled so that the energy is supplied exclusively as synchronous x-rays in pulse form to the target material. A plurality of structures for extracting energy from the fusion reaction are provided, and comprise devices 14 to extract high voltage DC power from the fusion plasma, and devices 18 to extract thermal energy from the central target chamber. Power to the energy drivers may be supplied from high voltage DC power extracted from the fusion reactions. The energy drivers may use an Apodizing filter to impart a desired shape to the wavefront of the X-ray pulses for causing the fusion reactions, to avoid hydrodynamic instabilities. The energy drivers may emit radio frequency energy to heat the fusion target material.