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公开(公告)号:US12046892B2
公开(公告)日:2024-07-23
申请号:US17619981
申请日:2020-06-12
发明人: Thomas Canet , Christian Kneifel , May Zhang , Linda Hao
CPC分类号: H02H3/10 , H02H3/085 , H05K1/0298
摘要: An electronic installation device for controlling a load in an electrical circuit, which comprises a single or multi-layer printed circuit board arrangement with electrical components and conductor tracks and which comprises a load circuit and a control circuit. According to the invention, in order to provide an electronic installation device with protective devices against short-circuit and against overload and which are specific to devices, the load circuit and the control circuit are at least functionally coupled to one another, and the electronic installation device comprises a first overcurrent protection device for protection against short-circuit currents and a second overcurrent protection device for protection against overload currents.
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公开(公告)号:US20240106225A1
公开(公告)日:2024-03-28
申请号:US18046730
申请日:2022-10-14
发明人: Ian David Young
摘要: Examples of the disclosure include a system for modifying a trip level of a circuit, the system comprising a protection device configured to activate responsive to a differential current exceeding the trip level, a first current transformer coupled to an input of the circuit, a second current transformer coupled to the output of the circuit, at least one measurement circuit coupled to the first current transformer and to the second current transformer, the at least one measurement circuit being configured to obtain a first current measurement from the first current transformer, obtain a second current measurement from the second current transformer, determine a bias current based on the first current measurement and the second current measurement, and modify the trip level of the protection device based on the bias current.
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公开(公告)号:US20240056822A1
公开(公告)日:2024-02-15
申请号:US18490937
申请日:2023-10-20
IPC分类号: H04W12/50 , H04W76/14 , H04W76/11 , G08B5/36 , H04L9/08 , H04W4/80 , G05B19/042 , G08C17/02 , H01H71/04 , H02H1/00 , H04L67/00 , G01R31/74 , H02H3/10 , H02H7/26 , H04L12/28 , G01R31/327 , G05B13/02 , G06F8/65 , H04Q9/00 , H04W12/03 , H04W12/0471
CPC分类号: H04W12/50 , H04W76/14 , H04W76/11 , G08B5/36 , H04L9/0841 , H04W4/80 , G05B19/0426 , G08C17/02 , H01H71/04 , H02H1/0061 , H02H1/0092 , H04L67/34 , G01R31/74 , H02H3/10 , H02H7/263 , H04L12/2816 , G01R31/3277 , G05B13/028 , G06F8/65 , H02H1/0007 , H04Q9/00 , H04W12/03 , H04W12/0471 , G06F7/588
摘要: Communication enabled circuit breakers and circuit breaker panels are described. Methods associated with such communication enabled circuit breakers and circuit breaker panels are also described. A circuit breaker panel may include a circuit breaker controller and one or more communication enabled circuit breakers. Two-way wireless communication is possible between the circuit breaker controller and the one or more communication enabled circuit breakers.
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公开(公告)号:US11881703B2
公开(公告)日:2024-01-23
申请号:US17121832
申请日:2020-12-15
发明人: Hynek Raisigel
CPC分类号: H02H1/0015 , H02H3/105 , H02H3/26
摘要: A device for detecting an arc fault in a polyphase electrical installation comprises:
a high-frequency measuring system coupled to at least two electrical phase lines of the installation, said measuring system being configured to extract a first signal representative of high-frequency components of electrical currents flowing through said phase lines;
a plurality of low-frequency measuring systems, each coupled to one electrical phase line of the installation, each being configured to acquire a second signal representative of the alternating line current flowing through the corresponding phase line; and
a data-processing module programmed to detect an arc fault on the basis of the second signals and of the first signal.-
公开(公告)号:US20240014645A1
公开(公告)日:2024-01-11
申请号:US18218734
申请日:2023-07-06
发明人: Zongqian Shi , Xiangming Zeng , Longfei Hao , Jing Guo , Min Li , Gang Wang , Xiaoqiang Lei , Bingchang Wu , Dabin Wu , Hongwei Wu , Haibo Huang
CPC分类号: H02H3/087 , H02H3/10 , H02H3/06 , H02H1/0007
摘要: A DC circuit breaker device is provided, including: a circuit breaker module including a first circuit breaker and a second circuit breaker connected in series with the first circuit breaker; a commutation module connected in parallel with the first circuit breaker and including a commutation capacitor, a commutation switch module and a commutation inductor connected in series; the commutation switch module including a commutation switch positive branch and a commutation switch negative branch; and a control module coupled to the circuit breaker module and the commutation module, and configured to control the switching on/off of the commutation switch positive branch and the commutation switch negative branch after the first circuit breaker is re-closed. A method of controlling a DC circuit breaker is also provided.
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公开(公告)号:US11831150B2
公开(公告)日:2023-11-28
申请号:US18102553
申请日:2023-01-27
申请人: Hubbell Incorporated
发明人: Roy Itzler , Nicole Gay
摘要: A temporary power delivery system includes a power source, a booth stringer, and a portable GFCI device. The GFCI device is receives current from the power source by a first terminal and delivers current to the booth stringer by a second terminal. An electronic processor of the GFCI device compares a combined magnitude of current flowing through first and second phase conductors of the GFCI device to a magnitude of current flowing through a neutral conductor of the GFCI. The electronic processor also compares a first voltage between the first phase conductor and neutral conductor to a second voltage between the second phase conductor and neutral conductor. A circuit breaker of the GFCI device is opened if a difference between the combined magnitude of phase conductor current and neutral conductor current exceeds a first threshold or a difference between the first voltage and second voltage exceeds a second threshold.
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公开(公告)号:US11689015B2
公开(公告)日:2023-06-27
申请号:US17888107
申请日:2022-08-15
申请人: Plamen Doynov
发明人: Plamen Doynov
CPC分类号: H02H9/045 , H02H5/00 , H02H5/005 , H02H9/04 , H02H3/08 , H02H3/105 , H02H3/22 , H02H9/041 , H02H9/046
摘要: A method and system for suppressing EMP-induced voltage surges due to detonation of a nuclear weapon at high altitude generating an EMP (HEMP) comprising E1, E2, and E3 component pulses. Surge protection assemblies are positioned intermediate a signal stream and a plurality of electronic device ports associated with a plurality of communication channels of networked devices. Single-channel multimode surge suppressing systems are combined to form multi-port multimode protection systems that connect directly to multiport networked devices supporting communication channels with mixed signals data and direct current power in Gigabit Ethernet networks supporting PoE. The surge suppressing systems mitigate differential and common mode induced interference and protect from overvoltage surges associated with E1, E2, and E3 components of the HEMP and mitigate the over-voltages to predetermined allowable levels within the predetermined time. The surge suppressing systems is interoperable with multimode PoE and support endpoint and midspan PoE devices of Gigabit networks.
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公开(公告)号:US11658473B2
公开(公告)日:2023-05-23
申请号:US17381839
申请日:2021-07-21
申请人: Apple Inc.
IPC分类号: H02H3/08 , H02H1/00 , H05K5/00 , H05K1/14 , H05K1/18 , H05K1/02 , G01R19/165 , G05B19/042 , G08B21/18 , H02H3/10 , G06F1/16 , G06F1/18 , H02H3/04 , H02H5/04 , H02H7/20
CPC分类号: H02H3/085 , G01R19/16542 , G05B19/0428 , G08B21/182 , H02H1/0007 , H02H3/10 , H05K1/028 , H05K1/14 , H05K1/181 , H05K5/0086 , G05B2219/21156 , G06F1/1613 , G06F1/189 , H02H1/0092 , H02H3/04 , H02H5/041 , H02H7/20 , H02J2207/20 , H05K2201/10151
摘要: A personal electronic device can include a main printed circuit board having disposed thereon a processing unit, one or more auxiliary circuits coupled to the main printed circuit board by one or more corresponding flexible printed circuits and one or more temperature sensors disposed on one of the flexible printed circuits. A processing unit of the portable electronic device can be configured to monitor the one or more temperature sensors, provide a warning in response to a monitored temperature exceeding a first threshold, and to cause a shutdown of at least a portion of the personal electronic device in response to the monitored temperature exceeding a second threshold. The temperature sensors can be negative temperature coefficient resistors.
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公开(公告)号:US11626720B1
公开(公告)日:2023-04-11
申请号:US17749743
申请日:2022-05-20
发明人: Huy D. Nguyen , Tom Lik-Chung Lee
摘要: A multiphase ground fault circuit interrupter includes a first phase power line input, a second phase power line input, a third phase power line input, a neutral line input, a controller circuit having a relay control output, a first phase latching relay having a first phase switch input coupled to the first phase power line input and a first phase relay control input coupled to the relay control output of the controller circuit, a sensor having a core and a sensor pickup coupled to the controller circuit, and a first phase load wire coupled to a first phase switch output of the first phase latching relay and passed through the core.
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公开(公告)号:US20220416530A1
公开(公告)日:2022-12-29
申请号:US17700638
申请日:2022-03-22
申请人: Musco Corporation
摘要: Conventional GFCI-type technology typically relies solely on onsite control—for example, pushing a reset button physically located at the impacted circuit to clear a trip and resume operation. For simpler/lower voltage systems—such as outlets in a residence—this is not particularly labor-intensive or confusing. However, for large, complex, and/or high voltage systems—such as sports lighting systems with multiple circuits dozens of feet apart in locked enclosures—trying to perform the same task of pushing a reset button and clearing a trip is much more labor-intensive, and confusing not only in locating the impacted circuit, but in determining what happens next if pushing the reset button does not resume operation. Presented herein are remote control options for GFCIs which could be used in addition to, and not instead of, conventional GFCI-type functionality—or could provide remote-only reset function where a system has no onsite reset button.
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