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公开(公告)号:US20250029746A1
公开(公告)日:2025-01-23
申请号:US18751689
申请日:2024-06-24
Applicant: TAE TECHNOLOGIES, INC.
Inventor: Vladislav Vekselman , Alexander Dunaevsky
Abstract: Embodiments of systems, devices, and methods relate to fast beam position monitoring for detecting beam misalignment in a beam line. In an example, a fast beam position monitor includes a plurality of electrodes extending into an interior of a component of a beam line. The fast beam position monitor is configured to detect a position of a beam passing through the component of the beam line based on beam halo current. Embodiments of systems, devices, and methods further relate to noninvasively monitoring parameters of beams advancing along a beam line. In examples, gas is puffed into a pumping chamber along a beam line. One or more beam parameters are measured from fluorescence resulting from collisions of energetic beam particulates of a beam advancing through the beam line.
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公开(公告)号:US20250023483A1
公开(公告)日:2025-01-16
申请号:US18410818
申请日:2024-01-11
Applicant: TAE Technologies, Inc.
Inventor: Mikhail Slepchenkov , Roozbeh Naderi
Abstract: A housing and/or installation frameworks for a modular multi-level energy system includes a set of similar cabinets configured for orthogonal (e.g., vertical and horizontal) alignment of the modules. The cabinets are configured so modules of a particular phase are oriented along an axis parallel to a reference plane. Modules of the same level of the multi-level arrangement but of different phases are mounted in each cabinet, arranged such that a module for each phase is a defined distance from the reference plane. The cabinets are arranged equidistant and orthogonal to the reference plane, minimizing distance for connections between modules of the same phase across multiple cabinets, and facilitating convenient addition or removal of levels. The framework also facilitates data and reference signal connections between local control devices of the modules, and between the local control devices and a master control device for the system.
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公开(公告)号:US20250006452A1
公开(公告)日:2025-01-02
申请号:US18397728
申请日:2023-12-27
Applicant: TAE Technologies, Inc.
Inventor: Christopher J. Killer , Vladislav Vekselman , Joshua Leuenberger
Abstract: Embodiments of systems, devices, and methods relate to an electrode standoff isolator. An example electrode standoff isolator includes a plurality of adjacent insulative segments positioned between a proximal end and a distal end of the electrode standoff isolator. A geometry of the adjacent insulative is configured to guard a surface area of the electrode standoff isolator against deposition of a conductive layer of gaseous phase materials from a filament of an ion source.
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公开(公告)号:US20240326612A1
公开(公告)日:2024-10-03
申请号:US18497649
申请日:2023-10-30
Applicant: TAE Technologies, Inc.
Inventor: Mikhail Slepchenkov , Roozbeh Naderi
CPC classification number: B60L50/61 , B60L7/16 , B60L50/40 , B60L58/12 , H02J7/0048 , H02J7/1438 , B60L2210/20 , H02J2207/50 , H02J2310/48
Abstract: Systems and methods directed to improved battery management, motor control, energy storage and battery charging. The systems and methods enable vehicle electrification and provides a paradigm changing platform that enables integration of battery management, charging and motor controls with means to manage regenerative braking, traction and handling. In embodiments, systems and methods are directed to a unified modular battery pack system having a cascaded architecture comprising an integrated combination of a networked low voltage converter/controller with peer-to-peer communication capability, embedded ultra-capacitor or other secondary energy storage element, battery management system and serially connected set of individual cells as the fundamental building block.
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公开(公告)号:US12083361B2
公开(公告)日:2024-09-10
申请号:US17411832
申请日:2021-08-25
Applicant: TAE TECHNOLOGIES, INC.
Inventor: Konstantin Pirogov , Andrey A. Korepanov , Alexander Dunaevsky
CPC classification number: A61N5/1048 , A61N5/1067 , A61N5/1075 , A61N5/1078 , G01T1/29 , G21K5/00 , A61N2005/1074 , A61N2005/1087 , A61N2005/1089 , A61N2005/109
Abstract: Embodiments of systems, devices, and methods relate to a modular diagnostics interface system. An example modular diagnostics interface system includes one or more insertable measurement boards configured to communicably couple with a backplane of a modular measurement rack, and configured to collect a measured current from a component of a beamline.
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6.
公开(公告)号:US12035457B2
公开(公告)日:2024-07-09
申请号:US17383188
申请日:2021-07-22
Applicant: TAE Technologies, Inc.
Inventor: Sergey Y. Taskaev , Alexandr N. Makarov , Evgeniia O. Sokolova
CPC classification number: H05H6/00 , A61N5/1077 , A61N2005/1022 , A61N2005/109 , H05H5/063 , H05H2277/11
Abstract: Metallic bodies are provided having a lithium layer and a metallic substrate. The metallic bodies can exhibit increased resistance to radiation-induced deformations such as blistering. Methods are provided for transitioning the metallic bodies into more blister resistant configurations, as our methods for diminishing or eliminating blisters previously formed. Systems for utilizing the metallic bodies and methods are also disclosed.
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7.
公开(公告)号:US20240120115A1
公开(公告)日:2024-04-11
申请号:US18377136
申请日:2023-10-05
Applicant: TAE TECHNOLOGIES, INC.
Inventor: Michl W. Binderbauer , Sergei Putvinski , Artem N. Smirnov , Hiroshi Gota , Thomas Roche , Michael Meekins
Abstract: A high performance field reversed configuration (FRC) system includes a central confinement chamber, divertors coupled to the ends of the chamber, neutral beam injectors positioned about the chamber, and a magnetic system comprising quasi-dc coils axially positioned along the FRC system components.
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公开(公告)号:US11923782B2
公开(公告)日:2024-03-05
申请号:US17486607
申请日:2021-09-27
Applicant: TAE TECHNOLOGIES, INC.
Inventor: Mikhail Slepchenkov , Roozbeh Naderi
CPC classification number: H02M7/003 , H02J3/38 , H02J7/0042
Abstract: A housing and/or installation frameworks for a modular multi-level energy system includes a set of similar cabinets configured for orthogonal (e.g., vertical and horizontal) alignment of the modules. The cabinets are configured so modules of a particular phase are oriented along an axis parallel to a reference plane. Modules of the same level of the multi-level arrangement but of different phases are mounted in each cabinet, arranged such that a module for each phase is a defined distance from the reference plane. The cabinets are arranged equidistant and orthogonal to the reference plane, minimizing distance for connections between modules of the same phase across multiple cabinets, and facilitating convenient addition or removal of levels. The framework also facilitates data and reference signal connections between local control devices of the modules, and between the local control devices and a master control device for the system.
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公开(公告)号:US11894212B2
公开(公告)日:2024-02-06
申请号:US17740699
申请日:2022-05-10
Applicant: TAE TECHNOLOGIES, INC.
Inventor: Christopher J. Killer , Vladislav Vekselman , Joshua Leuenberger
CPC classification number: H01J37/12 , A61N5/1077 , A61N2005/109 , H01J27/024 , H01J49/068 , H01J2237/038
Abstract: Embodiments of systems, devices, and methods relate to an electrode standoff isolator. An example electrode standoff isolator includes a plurality of adjacent insulative segments positioned between a proximal end and a distal end of the electrode standoff isolator. A geometry of the adjacent insulative is configured to guard a surface area of the electrode standoff isolator against deposition of a conductive layer of gaseous phase materials from a filament of an ion source.
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公开(公告)号:US11889612B2
公开(公告)日:2024-01-30
申请号:US17412943
申请日:2021-08-26
Applicant: TAE Technologies, Inc.
Inventor: Gregory Luke Snitchler , Shahyar Ziaei , Harrison Beam Eggers , Alejandro Mesa Dame
CPC classification number: H05H7/001 , A61N5/10 , H05H6/00 , A61N2005/109 , H05H2007/002 , H05H2007/008
Abstract: Embodiments of systems, devices, and methods relate to selecting a raster profile for scanning a proton beam across a target. A raster profile is selected from among the plurality of plurality of possible raster profiles based on a value of a figure of merit. A beam is directed across the target surface to form a pattern that is repeated one or more times at different radial orientations to form a scanning profile. A target temperature is monitored while scanning the beam across the target surface according to the scanning profile. The scanning parameters are changeable to avoid target damaging, to improve thermal performance and to optimize particle loading.
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