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公开(公告)号:US20230267745A1
公开(公告)日:2023-08-24
申请号:US18111743
申请日:2023-02-20
Applicant: RF Code, Inc.
Inventor: Jonathan Andrew Guy
CPC classification number: G06V20/52 , G06T7/70 , G06T7/194 , G06V10/60 , G06T7/90 , G06T2207/10048 , G06V2201/07
Abstract: Systems, methods, and devices are described for monitoring and protecting electronic hardware, data assets, and the facility itself, particularly well-suited to monitoring remote facilities and resources in edge locations, including for determining door state for both equipment and personnel doors, and for determining values of one or more environmental parameters, using optical image analytics. An example system includes one or more edge-located hardware monitoring devices having one or more physical sensors, and custom software distributed across edge, cloud, mobile, and enterprise platforms. An example monitoring device can include an embedded computer, various sensors of different types, one or more cameras, a power supply, and several communication interfaces. All or virtually all sensing and processing capabilities can be integrated into the edge device, which utilizes low-cost sensors and video analytics to monitor the environment.
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公开(公告)号:US11137422B2
公开(公告)日:2021-10-05
申请号:US16701963
申请日:2019-12-03
Applicant: RF Code, Inc.
Inventor: Jonathan Andrew Guy , Jacob Aaron Perlmutter , Iurii Buiankin
IPC: G01R15/14 , G01R29/08 , G01R19/155
Abstract: A sensor device for detecting voltage in a conductor cable includes a sense electrode to be disposed over a surface of the conductor cable to cover a sense region having a sense axial width and a sense circumferential length and a reference electrode to be disposed over the surface of the conductor cable to cover a reference region. The reference region has an axial position adjacent the axial position of the sense region and has a reference circumferential length greater than the sense circumferential length. The sensor device further includes a charge measurement circuit connected in series between the sense electrode and the reference electrode to measure a charge measurement and circuitry to compare the charge measurement to a threshold to detect a presence of the voltage in the conductor cable.
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公开(公告)号:US20190098380A1
公开(公告)日:2019-03-28
申请号:US16350438
申请日:2018-11-13
Applicant: RF CODE, INC.
Inventor: Michael Primm , Richard Jefts , Martin Stich
IPC: H04Q9/00
Abstract: A monitoring system can receive sensor measurements from a select sensor of a group of sensors. The sensor measurements are compared to group alert condition or an individual alert condition. Based on the comparison, an alert state can be identified and a user notified of the alert state. The system can automatically determine the individual alert condition, which can be uniquely associated with the select sensor and can be associated with a domain of time.
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公开(公告)号:US20170214117A1
公开(公告)日:2017-07-27
申请号:US15412571
申请日:2017-01-23
Applicant: RF CODE, INC.
Inventor: Ronald B. Gracyk , Edmund G. Healy , Ryan D. Joy , Jesse L. Richardson , Michael R. Primm
CPC classification number: H01Q1/2225 , G01S5/02 , G01S13/74 , G01S13/767 , G01S13/878 , G06K7/10366 , G06Q10/087 , H01Q3/26 , H01Q9/0407 , H01Q9/0421 , H01Q21/00
Abstract: A system includes a central server; a reader in communication with the central server; and a set of equipment racks. Each equipment rack of the set of equipment racks defines a face. The each equipment rack includes an observer device and at least two antenna arrays. At least one of the at least two antennas is in communication with the observer device. The system further including a set of tags attached to assets disposed within the set of equipment racks. Each tag of the set of tags is to transmit a beacon signal including a tag identifier of the each tag. The at least one antenna is to receive the beacon signal. The observer device is to communicate the tag identifier and the characteristics of the beacon signal to the reader and central server. The central server determines a rack location based on the characteristics of the beacon signal.
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公开(公告)号:US09640044B2
公开(公告)日:2017-05-02
申请号:US14262791
申请日:2014-04-27
Applicant: RF CODE, INC.
Inventor: Ronald B. Graczyk , Michael R. Primm , Dale E. Parvey , Ryan D. Joy , Chris C. Gaskins
Abstract: A beacon device includes a control circuitry, a window, and a plurality of sets of illumination sources. The window includes a prismatic structure forming a ring from a planar perspective. The prismatic structure defines an inside surface and an outside surface from the planar perspective. The plurality of sets of illumination sources are coupled to the control circuitry. Each set of illumination sources includes a first illumination source disposed proximal to the inside surface of the prismatic structure and includes a second illumination source disposed proximal to the outside surface of the prismatic structure. The control circuitry is to illuminate a first set of the plurality of sets of illumination sources to transmit a signal in a first direction.
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公开(公告)号:US12080070B2
公开(公告)日:2024-09-03
申请号:US18372831
申请日:2023-09-26
Applicant: RF Code, Inc.
Inventor: Jonathan Andrew Guy
CPC classification number: G06V20/52 , G06T7/194 , G06T7/70 , G06T7/90 , G06V10/60 , G06V30/18 , G06V30/18105 , G06T2207/10048 , G06V2201/07
Abstract: Systems, methods, and devices are described for monitoring and protecting electronic hardware, data assets, and the facility itself, particularly well-suited to monitoring remote facilities and resources in edge locations, including for determining door state for both equipment and personnel doors, and for determining values of one or more environmental parameters, using optical image analytics. An example system includes one or more edge-located hardware monitoring devices having one or more physical sensors, and custom software distributed across edge, cloud, mobile, and enterprise platforms. An example monitoring device can include an embedded computer, various sensors of different types, one or more cameras, a power supply, and several communication interfaces. All or virtually all sensing and processing capabilities can be integrated into the edge device, which utilizes low-cost sensors and video analytics to monitor the environment.
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公开(公告)号:US20240013545A1
公开(公告)日:2024-01-11
申请号:US18372831
申请日:2023-09-26
Applicant: RF Code, Inc.
Inventor: Jonathan Andrew Guy
CPC classification number: G06V20/52 , G06T7/70 , G06T7/194 , G06T7/90 , G06V10/60 , G06V2201/07 , G06T2207/10048
Abstract: Systems, methods, and devices are described for monitoring and protecting electronic hardware, data assets, and the facility itself, particularly well-suited to monitoring remote facilities and resources in edge locations, including for determining door state for both equipment and personnel doors, and for determining values of one or more environmental parameters, using optical image analytics. An example system includes one or more edge-located hardware monitoring devices having one or more physical sensors, and custom software distributed across edge, cloud, mobile, and enterprise platforms. An example monitoring device can include an embedded computer, various sensors of different types, one or more cameras, a power supply, and several communication interfaces. All or virtually all sensing and processing capabilities can be integrated into the edge device, which utilizes low-cost sensors and video analytics to monitor the environment.
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公开(公告)号:US11347957B2
公开(公告)日:2022-05-31
申请号:US17129469
申请日:2020-12-21
Applicant: RF Code, Inc.
Inventor: Peter Vancorenland , Ben Gawiser , Jonathan Guy , Peter Kazmir , Rick Trujillo
Abstract: A system includes an asset management system in communication with an asset disposed within a rack, an asset tracking server, a gateway, and a set of equipment racks including the rack in which the asset is disposed. Each equipment rack defines a face. The equipment rack includes an observer device and a location indicator device. The system includes a set of tags attached to assets disposed within the set of equipment racks, a tag of the set of tags attached to the asset. The asset management system is to identify a maintenance event associated with the asset and is to communicate the identity of the asset to the asset tracking server. The asset tracking server is to locate the rack location of the tag associated with the asset and is to communicate with the associated observer device, which is to direct the location indicator device to provide a light signal.
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公开(公告)号:US09330287B2
公开(公告)日:2016-05-03
申请号:US13784126
申请日:2013-03-04
Applicant: RF CODE, INC.
Inventor: Ronald B. Graczyk , Ryan D. Joy , Michael R. Primm , Jesse L. Richardson , Dale E. Parvey
IPC: G08B1/08 , G06K7/10 , G06K19/07 , G08B25/08 , G08B25/10 , G01S1/70 , G01S13/82 , G06Q10/06 , G08C23/04 , H04Q9/00
CPC classification number: G06K7/10099 , G01S1/70 , G01S13/825 , G06K7/10089 , G06K19/0723 , G06Q10/06 , G08B25/08 , G08B25/10 , G08C23/04 , H04Q9/00 , H04Q2209/47
Abstract: A system including a detector, a reader, and a tag. The detector includes a sensor to detect a user event, and a communication circuitry to communicate at a first frequency band. The reader includes communication circuitry to communicate at a second frequency band. The tag includes a first communication circuitry to communicate at the first frequency band and a second communication circuitry to communicate at the second frequency band. The detector is to communicate with the tag via the communication circuitry of the detector. The detector is to determine whether to associate the tag with the user event. The detector is to communicate the determined association. The tag is to communicate using the second communication circuitry of the tag with the reader.
Abstract translation: 包括检测器,读取器和标签的系统。 检测器包括用于检测用户事件的传感器和用于在第一频带进行通信的通信电路。 读取器包括用于在第二频带进行通信的通信电路。 标签包括用于在第一频带进行通信的第一通信电路和用于在第二频带进行通信的第二通信电路。 检测器将通过检测器的通信电路与标签通信。 检测器是确定是否将标签与用户事件相关联。 检测器用于传达确定的关联。 标签是使用标签的第二通信电路与读取器进行通信。
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公开(公告)号:US20160094898A1
公开(公告)日:2016-03-31
申请号:US14499168
申请日:2014-09-27
Applicant: RF Code, Inc.
Inventor: Michael Primm , Richard Jefts , Martin Stich
IPC: H04Q9/00
CPC classification number: H04Q9/00 , H04Q2209/823
Abstract: A monitoring system can receive sensor measurements from a select sensor of a group of sensors. The sensor measurements are compared to group alert condition or an individual alert condition. Based on the comparison, an alert state can be identified and a user notified of the alert state. The system can automatically determine the individual alert condition, which can be uniquely associated with the select sensor and can be associated with a domain of time.
Abstract translation: 监控系统可以从一组传感器的选择传感器接收传感器测量。 将传感器测量与组警报条件或单个警报条件进行比较。 基于该比较,可以识别警报状态并且向用户通知警报状态。 该系统可以自动确定单独的警报状态,其可以与选择传感器唯一相关联并且可以与时间域相关联。
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