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  • 505547

    us

    An example system for analyzing a component includes a radiation source configured to transmit an input radiation beam towards a component, at least a portion of the input radiation beam passing through the component as an output beam pattern; a radiation detector configured to detect the output beam pattern; and a beam adjustment device disposed between the radiation source and the component and configured to modify a radiation intensity profile of the input radiation beam, wherein the beam adjustment device has an adjustable radiation transparency. A method of analyzing a component is also disclosed, which includes transmitting an input radiation beam from a radiation source towards a component, at least a portion of the input radiation beam passing through the component as an output beam pattern; modifying a radiation intensity profile of the input radiation beam by passing the input radiation beam through a beam adjustment device disposed between the radiation source and the component, wherein the beam adjustment has an adjustable radiation transparency; and detecting the output beam pattern at a radiation detector.
    • 출원번호 : 18654809
    • 출원인 : Pelliccione, Christopher
    • 특허번호 :
    • IPC : G01N-023/203(2006.01);G01N-023/04(2006.01);G01N-023/16(2006.01);
  • 505546

    us

    Disclosed herein are systems and methods for measuring the radiation emitted from the therapeutic radiation source. One variation of a radiotherapy system includes a radiation measurement device that is coupled to a radiotherapy system housing. The radiation measurement device may be movably coupled to the housing, and its position and/or motion is independent from the position and/or motion of the therapeutic radiation source. In one variation, the radiation measurement device is at a location on the system housing where it may measure exit beams with little or no interference with entrance beams. Also disclosed herein are radiotherapy systems that include one or more radiopaque or radiation emitting fiducials coupled to the housing.
    • 출원번호 : 18654922
    • 출원인 : RAMEZANZADEH MOGHADAM, Amir
    • 특허번호 :
    • IPC : A61N-005/10(2006.01)
  • 505545

    wo

    A marine vessel and a method of operating the marine vessel. The marine vessel includes an electricity generation system having a nuclear reactor and an electrical generator. The nuclear reactor is coupled to the electrical generator to generate electricity. The marine vessel may also include a propulsion system having an engine and a propulsor that receives torque from the engine to move the hull through a body of water surrounding the hull. The marine vessel may be part of a temporary power system having an electrical cable electrically connecting the electrical generator to an onshore electrical distribution system. A plurality of buoys may support the electrical cable between the marine vessel and the onshore electrical distribution system. The method of operating the marine vessel may include starting up the nuclear reactor and maintaining the nuclear reactor in a standby condition, while the marine vessel is underway.
    • 출원번호 : US2024/027733
    • 출원인 : CROWLEY GOVERNMENT SERVICES, INC.;BWXT ADVANCED TECHNOLOGIES LLC;
    • 특허번호 :
    • IPC : G21C-011/04(2006.01);G21D-005/12(2006.01);B63B-035/44(2006.01);
  • 505544

    wo

    The invention relates to a thermo-photovoltaic structure (10) comprising: - an alternating stack of thermo-photovoltaic cells (1; 1.1, 1.2, 1.3) and output electrodes so as to connect the cells in electrical series and/or parallel; - at least one coating (12) made of a material, referred to as the radiative material, suitable for dissipating heat from the exterior environment by radiative cooling, which is arranged on at least one of the end faces of the stack, so that the infrared radiation emitted by the black body of the coating is converted by the cells into electricity.
    • 출원번호 : EP2024/062225
    • 출원인 : SANGLE-FERRIERE, Bruno
    • 특허번호 :
    • IPC : H02S-010/30(2014.01);H01L-031/0216(2014.01);H10K-030/00(2023.01);
  • 505543

    wo

    An apparatus for measuring photon density, the apparatus comprising a substrate having a volume for receiving photons from within an optical radiation field, the substrate having an outer periphery, an inner periphery, and an exit aperture, a first reflecting layer coating at least a portion of the outer periphery of the substrate, the first reflective layer configured to integrate the photons within the volume of the substrate, a plurality of entrance openings within the first reflective layer for diffracting the photons entering the volume and a photon detector configured to receive the photons to detect a photon density and to produce an electrical signal representative of the detected photon density, wherein the substrate having the coating is configured such that the photons incident on the exit aperture of the volume of the substrate are at least substantially equally proportional to the photons incident on the plurality of entrance openings.
    • 출원번호 : US2024/027789
    • 출원인 : TOMPHYZX.LLC
    • 특허번호 :
    • IPC : G01N-021/27(2006.01)
  • 505542

    wo

    A radiation therapy treatment plan can be adjusted concurrently with delivery of the therapy in order to compensate for changes in a position of a target. For example, at least two image slices, taken from different in-plane directions, can be used to estimate motion in a through-plane direction substantially orthogonal to the in-plane directions. A machine learning model can be trained with interpolations from a sequence of in-plane image slices, the motion estimated therefrom in the through-plane direction, or both to predict 3D motion.
    • 출원번호 : CA2024/050607
    • 출원인 : ELEKTA LTD.
    • 특허번호 :
    • IPC : A61N-005/10(2006.01);G06T-007/73(2017.01);G06T-007/246(2017.01);
  • 505541

    us

    In one aspect, inks for use with a three-dimensional (3D) printing system are described herein. In some embodiments, an ink described herein comprises up to 80 wt. % oligomeric curable material; up to 80 wt. % monomeric curable material; up to 10 wt. % photoinitiator; up to 1 wt. % non-curable absorber material; and up to 10 wt. % one or more additional components, based on the total weight of the ink, and wherein the total amount of the foregoing components is equal to 100 wt. %. Additionally, the photoinitiator is operable to initiate curing of the oligomeric curable material and/or the monomeric curable material when the photoinitiator is exposed to incident curing radiation having a peak wavelength λ. Moreover, the ink has a penetration depth (Dp), a critical energy (Ec), and a print through depth (DPT) at the wavelength λ of less than or equal to 2×Dp.
    • 출원번호 : 18654201
    • 출원인 : MOUSSA, Khalil
    • 특허번호 :
    • IPC : C09D-011/38(2006.01);B29C-064/112(2006.01);B29C-064/124(2006.01);B29K-033/00(2006.01);B29K-105/00(2006.01);B33Y-010/00(2006.01);B33Y-070/00(2006.01);C09D-011/037(2006.01);C09D-011/101(2006.01);C09D-011/107(2006.01);C09D-011/328(2006.01);
  • 505540

    us

    As described herein, photosensitive composition comprises RSnL3, where R is a hydrocarbyl ligand with 1-20 carbon atoms and one or more silicon and/or germanium heteroatoms and L is an acetylide ligand (—C≡CA, where A is a silyl group with 0 to 6 carbon atoms or an organo group with 1 to 10 carbon atoms). Methods are described wherein photosensitive compositions are synthesized by reacting RX, where X is a halide, and MSnL3, where M is an alkali metal, alkali earth metal or a pseudo-alkali earth metal, L is an acetylide or a dialkylamide. The radiation sensitive compositions are effective for radiation based patterning, such as with EUV light.
    • 출원번호 : 18654160
    • 출원인 : Jilek, Robert E.
    • 특허번호 :
    • IPC : G03F-007/075(2006.01);G03F-007/11(2006.01);G03F-007/16(2006.01);
  • 505539

    ep

    An example method includes obtaining one or more three dimensional computer models that model geometric and material properties of a component (12), and model beam properties of a beam (16) of radiation to be applied to the component (12); utilizing the one or more three dimensional computer models to obtain simulated radiation imaging data, which includes simulated elastic scattering data, resulting from a simulated application of the beam (16) having the beam properties on a plurality of discretized samples (82) of the component (12), and which accounts for sequential interactions of rays of the beam (16) with multiple ones of the plurality of discretized samples (82); obtaining actual radiation imaging data, which includes actual elastic scattering data, of an output beam pattern (20) caused by application of a non-simulated beam (16) of radiation having the beam properties to the component (12); and performing at least one of: determining whether an anomaly exists in a crystalline structure of the component (12) based a comparison of the simulated elastic scattering data to the actual elastic scattering data; and modifying the actual radiation imaging data based on the simulated elastic scattering data to at least partially remove the actual elastic scattering data from the actual radiation imaging data. A corresponding system (10) is also disclosed.
    • 출원번호 : 24174169.3
    • 출원인 : RTX Corporation
    • 특허번호 :
    • IPC : G01N-023/2055(2018.01)
  • 505538

    ep

    A module (1) of a solar collector comprises a container (2) transparent to a light radiation which has a vacuum gap delimiting a primary volume. The module (1) also comprises a conduit (3) for conveying a vector fluid and a heat energy accumulating material (4). The latter is arranged between the conduit (3) and the container (2) and it is configured to accumulate a set quantity of heat energy arising from the light radiation. The module (1) further comprises a light radiation absorbing element interposed between the heat energy accumulating material (4) and the container (2) and configured to absorb solar radiation and reduce a possible dispersion due at least to the refraction phenomenon. The absorbing element is also configured to convert at least part of the light radiation absorbed into a quantity of heat energy. In particular, the heat energy accumulating material (4) is configured to absorb and accumulate the quantity of heat energy deriving from the light radiation and, further, to transfer said quantity of heat energy to said conduit (3). The heat energy accumulating material (4) extends along the container (2) until it protrudes therefrom so as to define a protruding portion (40) outside the primary volume.
    • 출원번호 : 24174119.8
    • 출원인 : Spinazza, Roberto
    • 특허번호 :
    • IPC : F24S-010/40(2018.01);F24S-010/70(2018.01);F24S-060/00(2018.01);F24S-080/54(2018.01);F24S-020/40(2018.01);F24S-023/70(2018.01);F24S-070/12(2018.01);F24S-070/20(2018.01);F24S-010/75(2018.01);F24S-020/00(2018.01);