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公开(公告)号:US10509525B2
公开(公告)日:2019-12-17
申请号:US16097944
申请日:2016-08-02
摘要: A touch panel includes a first sheet and a second sheet that are disposed opposing each other. A first conductive path and a second conductive path are formed facing each other on main surfaces of the first sheet and the second sheet, respectively. The second conductive path is spaced apart from the first conductive path when viewed in the normal direction of the first sheet. On the main surface of the second sheet, pressure-detecting conductive paths electrically connected to the second conductive path are arranged. The pressure-detecting conductive paths intersect the first conductive path as viewed in the normal direction. Structures are disposed on a second sheet main surface not opposing the first sheet, and cause flexing of the corresponding pressure-detecting conductive path to contact the first conductive path when pressed down.
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公开(公告)号:US11546421B2
公开(公告)日:2023-01-03
申请号:US17439082
申请日:2019-04-03
IPC分类号: G06F15/173 , H04L67/1012 , H04L67/63 , H04L67/1014 , H04L67/1021 , H04L67/1023
摘要: A connection management device is communicatively connected to a plurality of server devices. A receiver receives from a terminal device a request for connection to one of the plurality of server devices. A location information extractor extracts, from the request for connection, location information indicating a location where the terminal device exists. A region determiner determines, based on the extracted location information, a region where the terminal device exists. A connection destination determiner determines, based on the determined region, which of the plurality of server devices is the server device to which the terminal device is to connect. A transmitter transmits to the determined server device the request for connection received from the terminal device.
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公开(公告)号:US11315295B2
公开(公告)日:2022-04-26
申请号:US16622114
申请日:2018-06-28
发明人: Yoshihiro Ohta , Natsumi Tamura , Kenji Sato , Satoko Tomita , Kazuyuki Nagahiro , Kazuo Tomisawa , Takayoshi Iida , Hiroyuki Yasuda , Yoshinori Nakajima
摘要: Perception of the relationship between a comfort level and environmental data is facilitated, and appropriate management of air-conditioning equipment is enabled. A comfort level display apparatus has a preference storage unit to store a preference of a user regarding an air-conditioned environment, an attribute storage unit to store an attribute of the user, an environmental data value acquisition unit to acquire an environmental data value representing a condition in an air-conditioned space, a comfort level value generation unit to generate a comfort level value indicating comfort of the user in the air-conditioned space, based on the preference of the user stored the preference storage unit, the attribute of the user stored in the attribute storage unit, and the environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit, a display data generation unit to generate display data by synthesizing the comfort level value of the user generated by the comfort level value generation unit and the environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit, and a display unit to display the display data.
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公开(公告)号:US11215651B2
公开(公告)日:2022-01-04
申请号:US17083572
申请日:2020-10-29
发明人: Fuyuki Sato , Shinichiro Otani , Genta Yoshimura , Hiroki Kawano , Toshihiro Mega , Yoshinori Nakajima
IPC分类号: G01R21/133 , G06Q50/06
摘要: A power consumption estimation device (10) which estimates power consumption of each of one object facility (100) or more whose operation statuses can be monitored includes: a total power vector generation unit (32) to acquire time-series data of total power consumption; a status matrix generation unit (34) to acquire time-series data of an operation parameter of the one object facility (100) or more; a reference signal generation unit (36) to generate one reference signal or more; a contribution degree estimation unit (38) to perform multiple regression analysis by taking the total power consumption as an objective variable, and the operation parameter of the one object facility (100) or more and a component value of the one reference signal or more, as explanatory variables, to thereby calculate a contribution degree of each of the one object facility (100) or more; and a breakdown calculation unit (42) to multiply the contribution degree of the object facility (100) and the operation parameter of the object facility (100), to thereby calculate power consumption of the object facility (100).
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