Effective component generation device and method for manufacturing same

    公开(公告)号:US12261415B2

    公开(公告)日:2025-03-25

    申请号:US17621163

    申请日:2020-06-18

    Abstract: Effective component generation device includes internal component and case. Internal components include discharger that generates an effective component. Case is formed in a box shape having discharge port through which an effective component is discharged, and houses internal components. Case includes metal body including a bottom plate and peripheral walls surrounding at least discharger in internal component. Metal body has seamless portion at a corner portion between two surfaces of adjacent peripheral walls oriented in different directions. As a result, there is provided effective component generation device capable of suppressing electromagnetic noise radiated to the outside of case and reducing an influence of electromagnetic noise to the outside.

    Buffer member and power storage module

    公开(公告)号:US12261313B2

    公开(公告)日:2025-03-25

    申请号:US17597697

    申请日:2020-07-27

    Abstract: A power storage module includes at least one power storage device, and a buffer member arranged with the power storage device in a first direction X. The buffer member includes a hard part having a predetermined hardness and a soft part softer than the hard part, the hard part and the soft part receiving a load in first direction X from the power storage device. The hard part changes its shape by receiving a load of a predetermined magnitude or more. The buffer member changes its state, by the hard part changing its shape, from a first state in which the load is received by the hard part to a second state in which the load is received by the soft part.

    MOUNTING HEAD, MOUNTING APPARATUS, AND METHOD OF MANUFACTURING ELECTRONIC DEVICE

    公开(公告)号:US20250098135A1

    公开(公告)日:2025-03-20

    申请号:US18968534

    申请日:2024-12-04

    Abstract: A mounting head includes a drive part that moves in a vertical direction to apply a load to an electronic component, a float part supported by the drive part in a vertically movable manner, and a linear motor that applies a vertical upward pressing force to the float part. The linear motor includes a stator fixed on the drive part and a moving member fixed on the float part. The drive part moves downward in the vertical direction to apply the load due to own weight of the float part to the electronic component to mount the electronic component onto the board. The linear motor is driven to control a magnitude of 10 the load applied to the electronic component by applying the vertical upward pressing force to the float part.

    IMAGING SYSTEM AND MOBILE OBJECT PROVIDED WITH SAME

    公开(公告)号:US20250097581A1

    公开(公告)日:2025-03-20

    申请号:US18961954

    申请日:2024-11-27

    Abstract: An optical axis changing assembly changes an optical axis of an imaging device to states of k optical axes, so that the optical axis of the imaging device changes from a state of a first optical axis of the imaging device during capturing a first image to a state of a second optical axis displaced in a second direction intersecting a first direction during capturing a second image, to sequentially change the optical axis of the imaging device in a second direction. The imaging device is installed with an installation inclination so that a predetermined optical axis among the k optical axes is inclined at a predetermined angle smaller than an optical axis change angle of the optical axis changing assembly with respect to a direction from an installation position of the imaging device to an imaging target region in a plane including the k optical axes.

    EVALUATION DEVICE, EVALUATION METHOD, AND PROGRAM

    公开(公告)号:US20250093827A1

    公开(公告)日:2025-03-20

    申请号:US18963686

    申请日:2024-11-28

    Abstract: Evaluation device (100) is a device that evaluates, by Bayesian optimization, unknown characteristic points corresponding to a plurality of candidate control points at a second time following a first time based on known characteristic points corresponding to controlled control points at the first time, the device including: reception controller (10) that acquires control result data (222) indicating the controlled control points at the first time and the known characteristic points at the first time, purpose data (212) indicating an optimization purpose, constraint condition data (213) indicating a constraint condition, and region reduction rule data (214); evaluation value calculating unit (12) that calculates an evaluation value of each of the plurality of unknown characteristic points based on control result data (222), purpose data (212), constraint condition data (213), and region reduction rule data (214); and evaluation value output unit (13) that outputs an evaluation value.

    Positive electrode active material for nonaqueous electrolyte secondary batteries, and nonaqueous electrolyte secondary battery

    公开(公告)号:US12255325B2

    公开(公告)日:2025-03-18

    申请号:US16638837

    申请日:2018-07-13

    Abstract: A positive electrode active material for nonaqueous electrolyte secondary batteries which allows the capacity of nonaqueous electrolyte secondary batteries to be increased and offers a smaller decrease in charge discharge cycle characteristics, and to provide a nonaqueous electrolyte secondary battery having such a positive electrode active material. A positive electrode active material for nonaqueous electrolyte secondary batteries according to the present invention includes a composite oxide containing Li, Ni, Co, Al, W and additive elements M, the proportion of Ni in the composite oxide being not less than 80 mol % relative to the total number of moles of the metal elements except Li, the additive elements M including at least either of an alkaline earth metal element and an alkali metal element except Li, and a tetravalent or higher valent element, the average valence of the additive elements M being not less than 3.6.

    Information processing device, information processing method, and non-transitory computer-readable storage medium storing program

    公开(公告)号:US12253906B2

    公开(公告)日:2025-03-18

    申请号:US18373011

    申请日:2023-09-26

    Abstract: A processor of an information processing device acquires first device information including failure information related to each client terminal, and failure resolution information, and generates a failure database containing the failure information and the failure resolution information associated with each other. The processor acquires second device information related to each client terminal at a predetermined time interval, and performs, in the failure database, primary search for the failure resolution information based on information for search for searching for the failure resolution information. The processor performs, in the second device information, secondary search for the information of the client terminal specified by the information for search, extracts specific information of the specified client terminal from the failure resolution information by extracting information corresponding to a result of the secondary search from a result of the primary search, and transmits the specific information to the specified client terminal by the output unit.

    SOLID ELECTROLYTIC CAPACITOR
    80.
    发明申请

    公开(公告)号:US20250087424A1

    公开(公告)日:2025-03-13

    申请号:US18962950

    申请日:2024-11-27

    Abstract: A disclosed solid electrolytic capacitor includes a capacitor element, a lead terminal and a lead terminal that are electrically connected to the capacitor element, and an exterior body that seals a portion of the lead terminal, a portion of the lead terminal, and the capacitor element. The exterior body includes a resin part containing a resin. The resin has a glass transition point Tg of 140° C. or less, where the glass transition point Tg is a temperature of the resin part at which a loss modulus measured by nanoscale dynamic viscoelastic measurement using a nanoindentation method changes from an increasing state to a decreasing state. The hardness of the resin part measured by the nanoindentation method is 0.08 GPa or less in a temperature range from the glass transition point Tg to 260° C. inclusive.

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