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公开(公告)号:US20240256512A1
公开(公告)日:2024-08-01
申请号:US18162160
申请日:2023-01-31
Applicant: Cisco Technology, Inc.
Inventor: D. Brice Achkir , Kaushal Sanjay Mhalgi , Gautam Khandelwal
CPC classification number: G06F16/2272 , G06F16/284
Abstract: Methods that provide accelerated data operations by splitting data records into sub-records and by using in-memory storage. In these methods, a computing device obtains a complex data record that includes at least one unique identifier, primary information about the complex data record, and a plurality of data values that change over time. The computing device generates a plurality of data sub-records by splitting, based on a set of rules, the complex data record into a plurality of parts in which at least a portion of the primary information is separated from the plurality of data values and added to a respective data sub-record of the plurality of data sub-records, generating a unique binding identifier, and adding the unique binding identifier to each of the plurality of data sub-records to link the plurality of data sub-records to each other. The data sub-records are stored, using an in-memory database, into a blockchain.
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公开(公告)号:US11838060B2
公开(公告)日:2023-12-05
申请号:US17502848
申请日:2021-10-15
Applicant: Cisco Technology, Inc.
Inventor: Joel Richard Goergen , Charles Calvin Byers , Robert Gregory Twiss , D. Brice Achkir , Chad M. Jones
IPC: H04B10/80 , G02B6/42 , H04L12/40 , H04M19/08 , H04L12/12 , H04L12/10 , H02J50/80 , H02J50/30 , G02B6/38 , H02S40/38 , G01J3/02
CPC classification number: H04B10/807 , G02B6/4293 , H02J50/30 , H02J50/80 , H04L12/10 , H04L12/12 , H04L12/40045 , H04L12/40091 , H04L12/40176 , H04M19/08 , G01J3/0218 , G02B6/3817 , H02S40/38
Abstract: In one embodiment, a method includes receiving power delivered over a data fiber cable at an optical transceiver installed at a network communications device and transmitting data and the power from the optical transceiver to the network communications device. The network communications device is powered by the power received from the optical transceiver. An apparatus is also disclosed herein.
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公开(公告)号:US11751322B2
公开(公告)日:2023-09-05
申请号:US17703051
申请日:2022-03-24
Applicant: Cisco Technology, Inc.
Inventor: Joel Goergen , Scott Hinaga , Jessica Kiefer , Alpesh Umakant Bhobe , D. Brice Achkir , David Nozadze , Amendra Koul , Mehmet Onder Cap , Madeline Marie Roemer
IPC: H05K1/02
CPC classification number: H05K1/0239 , H05K1/0242 , H05K2201/09245
Abstract: A conductive signal transmission structure for an electronic device (e.g., a printed circuit board of an electronic device) includes a copper material and a graphene layer disposed within the copper material at a depth below a surface of the structure. The depth of the graphene layer is further within a skin depth region of the structure when a transmission signal applied to the conductive signal transmission structure has a signal speed of at least 112 Gbps.
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公开(公告)号:US11501347B2
公开(公告)日:2022-11-15
申请号:US16533458
申请日:2019-08-06
Applicant: Cisco Technology, Inc.
Inventor: D. Brice Achkir , Pavan Mettu
Abstract: The present technology pertains to a distributed server system for verifying vendors. The distributed server system comprises one or more nodes on a distributed network; a communication interface of a first node that communicates over a communication network with the one or more nodes on the distributed network, wherein the communication interface receives information about a unique seal associated with a product in response to a query; and a processor of the first node that executes instructions stored in memory, wherein execution of the instructions by the processor verifies that a vendor is associated with the unique seal has been appended to a distributed ledger, determines a match between the unique seal and the vendor; and, after determining the match, confirms that the vendor is a certified vendor of the product.
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公开(公告)号:US11330702B2
公开(公告)日:2022-05-10
申请号:US17079970
申请日:2020-10-26
Applicant: Cisco Technology, Inc.
Inventor: Joel Goergen , Scott Hinaga , Jessica Kiefer , Alpesh Umakant Bhobe , D. Brice Achkir , David Nozadze , Amendra Koul , Mehmet Onder Cap , Madeline Marie Roemer
IPC: H05K1/02
Abstract: A conductive signal transmission structure for an electronic device (e.g., a printed circuit board of an electronic device) includes a copper material and a graphene layer disposed within the copper material at a depth below a surface of the structure. The depth of the graphene layer is further within a skin depth region of the structure when a transmission signal is applied to the structure that is in the GHz frequency range.
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公开(公告)号:US20210337657A1
公开(公告)日:2021-10-28
申请号:US17079970
申请日:2020-10-26
Applicant: Cisco Technology, Inc.
Inventor: Joel Goergen , Scott Hinaga , Jessica Kiefer , Alpesh Umakant Bhobe , D. Brice Achkir , David Nozadze , Amendra Koul , Mehmet Onder Cap , Madeline Marie Roemer
IPC: H05K1/02
Abstract: A conductive signal transmission structure for an electronic device (e.g., a printed circuit board of an electronic device) includes a copper material and a graphene layer disposed within the copper material at a depth below a surface of the structure. The depth of the graphene layer is further within a skin depth region of the structure when a transmission signal is applied to the structure that is in the GHz frequency range.
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公开(公告)号:US11068907B2
公开(公告)日:2021-07-20
申请号:US16544214
申请日:2019-08-19
Applicant: Cisco Technology, Inc.
Inventor: D. Brice Achkir , Pavan Mettu
IPC: G06Q30/00 , G06Q30/06 , G06F16/182 , H04W4/35 , G06Q99/00
Abstract: Systems, methods, and devices are disclosed for authenticating and predicting the remaining lifetime of a resold product. Telemetry data is received from a transceiver within the product, which is then stored within a distributed ledger. The lifetime of the product is determined by analyzing the telemetry data in the distributed ledger according to one or more models. In response to receiving a query about the product, the user is granted read access to the distributed ledger, including read access to the determined lifetime of the product and the authentication of the product (in real or near real time).
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公开(公告)号:US10541758B2
公开(公告)日:2020-01-21
申请号:US15707976
申请日:2017-09-18
Applicant: CISCO TECHNOLOGY, INC.
Inventor: Joel Richard Goergen , Charles Calvin Byers , Robert Gregory Twiss , D. Brice Achkir , Chad M. Jones
IPC: H04B10/80 , H02J50/80 , H02J50/30 , G02B6/42 , H04L12/10 , H04L12/12 , H04L12/40 , H04M19/08 , H02S40/38 , G01J3/02 , G02B6/38
Abstract: In one embodiment, a method includes receiving power delivered over a data fiber cable at an optical transceiver installed at a network communications device and transmitting data and the power from the optical transceiver to the network communications device. The network communications device is powered by the power received from the optical transceiver. An apparatus is also disclosed herein.
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公开(公告)号:US20190304630A1
公开(公告)日:2019-10-03
申请号:US15942015
申请日:2018-03-30
Applicant: CISCO TECHNOLOGY, INC.
Inventor: Joel Richard Goergen , Charles Calvin Byers , Robert Gregory Twiss , D. Brice Achkir
Abstract: In one embodiment, an apparatus includes an interface module for coupling a cable delivering combined power, data, and cooling to a network device. The interface module includes an electrical interface for receiving power for powering the network device, an optical transceiver for receiving optical communications signals, a fluid interface for receiving coolant, and sensors for monitoring the power and cooling and providing information to a central network device delivering the combined power, data, and cooling.
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公开(公告)号:US09658397B1
公开(公告)日:2017-05-23
申请号:US15080872
申请日:2016-03-25
Applicant: Cisco Technology, Inc.
Inventor: D. Brice Achkir
CPC classification number: G02B6/125 , G02B6/2804 , G02B6/2817 , G02B2006/12104 , G02B2006/1215
Abstract: In one embodiment, an optical splitter/coupler may be created by i) providing an optical waveguide having a first waveguide channel core, ii) forming an angular trench at an end of the first waveguide channel core, the angular trench establishing first and second facets within the first waveguide channel core, and iii) mirroring the first and second facets, wherein the mirrored first and second facets are configured to provide optical reflection into and/or from respective second and third waveguide channel cores located at correspondingly opposing sides of the first waveguide channel core.
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