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公开(公告)号:US20250079552A1
公开(公告)日:2025-03-06
申请号:US18727124
申请日:2022-12-21
Inventor: MASAAKI KURANUKI
IPC: H01M10/633 , B60L58/27 , H01M10/48 , H01M10/615 , H01M10/625
Abstract: A heater heats a battery. A voltage measurement unit measures a voltage of the battery. A temperature measurement unit measures a temperature of the battery. A controller determines that the measured temperature of the battery, which is measured by the temperature measurement unit, is a temperature at which the heater is started, and controls a heating amount from the heater to the battery adaptively according to a voltage difference between the measured voltage during discharging of the battery and a reference voltage, based on the measured temperature of the battery. For instance, the controller increases the heating amount as a voltage difference between a discharging lower limit voltage and the measured voltage during low-temperature discharging of the battery becomes small.
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公开(公告)号:US20250079092A1
公开(公告)日:2025-03-06
申请号:US18724467
申请日:2022-10-24
Inventor: Masahiro Sato , Hitoshi Fukui
Abstract: A solid electrolytic capacitor includes a capacitor element and an exterior body that seals the capacitor element. The capacitor element includes an anode body, a dielectric layer that is formed on the surface of the anode body, a cathode part that covers at least a portion of the dielectric layer, an anode lead with one end portion electrically connected to the anode body, and a cathode lead with one end portion electrically connected to the cathode part. The other end portion of the anode lead and the other end portion of the cathode lead are drawn out from the exterior body. The cathode part includes a solid electrolyte layer that covers at least a portion of the dielectric layer. When the solid electrolytic capacitor is subjected to a processing corresponding to mounting reflow, the amount of gas generated is 1600 μL or less.
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93.
公开(公告)号:US20250079083A1
公开(公告)日:2025-03-06
申请号:US18949304
申请日:2024-11-15
Inventor: Hiroyuki KOSHIKAWA , Hiroki TAKEUCHI , Ryosuke KIKUCHI
Abstract: A dielectric has a composition represented by Bi2xMgyTizOk. The composition satisfies requirements x≥0.15, y≥0.40, z≥0.25, and x+y+z=1.0. In the composition, k is a value for maintaining electroneutrality.
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94.
公开(公告)号:US20250078639A1
公开(公告)日:2025-03-06
申请号:US18727385
申请日:2022-10-06
Inventor: Yasuhisa YAMAZAKI , Jun SHIBATA , Kazuyuki YOSHINO , Naoto HORIIKE , Yoshihito KAWAI , Yoshimasa SHIROSAKI , Atsuki TSUNOBUCHI , Noriyuki GEJOH , Hiroaki SUDO , Kazuhiro KOSAKA
Abstract: Provided is an information processing device comprising: a processing unit that dynamically sets an area in a portion of the surroundings of a first terminal including the position of the first terminal on the basis of a state of a moving body mounting the first terminal and the position of the first terminal and determines entry of a second terminal into or approach of the second terminal to the area; and a communication unit that transmits, to the second terminal, a signal for causing the second terminal to issue an alarm in response to the entry or the approach.
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公开(公告)号:US20250077458A1
公开(公告)日:2025-03-06
申请号:US18814648
申请日:2024-08-26
Inventor: Masaya TAKAHASHI , Kin NISHIKAWA
Abstract: An imaging device including a connector conforming to a predetermined standard is enabled to communicate, via the connector, with an external device not including a communication interface of the predetermined standard. The imaging device includes: a connector conforming to a predetermined standard and having a plurality of terminals including a GND terminal; a first communication unit configured to communicate with a first external device having a communication interface of the predetermined standard when the first external device is connected to the connector; and a second communication unit configured to communicate with a second external device when the second external device configured to perform communication using the GND terminal alone among the plurality of terminals is connected to the connector.
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公开(公告)号:US20250075927A1
公开(公告)日:2025-03-06
申请号:US18816088
申请日:2024-08-27
Inventor: Hiroharu OHARA , Yuusuke URATA
IPC: F24F11/46
Abstract: A whole building air-conditioning system includes a whole building air-conditioning device that conditions air in an air-conditioning room and conveys the air conditioned in the air-conditioning room to a plurality of air-conditioning target spaces, and a controller that executes power saving processing on the whole building air-conditioning device that sets a target temperature of each of the plurality of air-conditioning target spaces to a temperature at which a power load is smaller based on a reduction request for reducing use of power.
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公开(公告)号:US20250072677A1
公开(公告)日:2025-03-06
申请号:US18951105
申请日:2024-11-18
Inventor: Hiroshi NAKAYAMA , Mikiya NAKATA
IPC: A47L7/00 , A47L9/08 , A47L9/14 , A47L9/16 , A47L9/28 , A47L9/30 , G01N35/00 , G01N35/08 , G01N35/10
Abstract: A detection system for detecting a virus or the like. The detection system includes an autonomous collection device that is capable of moving on a floor surface and for collecting an object on the floor surface, and a station device for detecting an analyte from the object collected from the floor surface by the autonomous collection device. The autonomous collection device includes a moving part for moving on the floor surface, a primary electric blower for sucking the object on the floor surface, and a dust container for storing the sucked object. The station device includes a transfer pipe fluidically connected to the dust container of the autonomous collection device when the autonomous collection device is positioned in a home position, and a virus detection part for detecting the analyte from the object transferred from the dust container through the transfer pipe.
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公开(公告)号:US12244034B2
公开(公告)日:2025-03-04
申请号:US17633370
申请日:2020-08-19
Inventor: Shota Norimine , Goro Fujita , Tetsuji Omura , Mitsutoshi Tajima , Shingo Kume
IPC: H01M50/291 , H01G11/12 , H01G11/78 , H01M10/04 , H01M50/209 , H01M50/236 , H01M50/238 , H01M50/242 , H01M50/264 , H01M50/293 , H01M50/296
Abstract: An electrical storage module includes at least one electrical storage device, and a buffer member that is arrayed in first direction X together with the electrical storage device and receives a load in first direction X from the electrical storage device. The buffer member has a soft part and a hard part, which is positioned closer to an outer edge part of the buffer member than the soft part, and the soft part is more easily deformed than the hard part.
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公开(公告)号:US12244009B2
公开(公告)日:2025-03-04
申请号:US17430083
申请日:2020-02-21
Inventor: Yasunobu Kawamoto , Masahiro Kinoshita
Abstract: The purpose of the present disclosure is to provide a non-aqueous electrolyte rechargeable battery that serves to improve the thermal stability of the lithium composite oxide while keeping degradation in the low-temperature characteristics of the battery under control. A non-aqueous electrolyte rechargeable battery involving one aspect of the present disclosure includes a cathode, an anode, and a non-aqueous electrolyte. The cathode includes a cathode current collector and a cathode laminate disposed on the cathode current collector. The cathode laminate includes a lithium composite oxide (30) composed of secondary particles (34) formed of aggregated primary particles (32). Letting the average particle diameter of the primary particles (32) be d and the standard deviation in the particle-size distribution be σ, among the secondary particles (34) primary particles (32a) having a particle diameter greater than d+6σ are present.
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公开(公告)号:US20250070255A1
公开(公告)日:2025-02-27
申请号:US18714368
申请日:2022-11-25
Inventor: Shoshi Terada , Akira Kano
IPC: H01M10/0569 , H01M10/0525
Abstract: A lithium secondary battery includes positive and negative electrodes, and a nonaqueous electrolyte having lithium-ion conductivity. In the lithium secondary battery, lithium metal deposits on the negative electrode during charging, and the lithium metal dissolves from the negative electrode during discharging. The nonaqueous electrolyte contains a lithium salt, and a solvent. The solvent includes a first solvent: a chain ether containing no fluorine element, a second solvent: a chain fluorinated ether having a fluorination rate of 60% or more, and a third solvent: a fluorinated ether having a fluorination rate of more than 0% and less than 60%. When the number of moles of the first solvent contained in the nonaqueous electrolyte is M1, and the number of moles of the third solvent contained in the nonaqueous electrolyte is M3, a molar ratio M1/M3 is 0.25 or more and less than 3.
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