Patents by Inventor Anthony Mayenburg
Anthony Mayenburg has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250169022Abstract: Network rack systems for physically supporting modules of a network element and cable management structures for maintaining network cables in an organized manner are provided. An auxiliary side cabinet, according to one implementation, includes a frame configured for physical attachment to a side portion of a main rack structure, where the main rack structure is configured to support a plurality of modules of a Network Element (NE). The auxiliary side cabinet further includes a front plane connected to a front portion of the frame. Also, the auxiliary side cabinet includes one or more connector panels supported on the front plane. Each of the one or more connector panels is configured to support a plurality of connectors. The plurality of connectors are configured for communication with associated connectors of the modules of the NE via cables. Also, the plurality of connectors are configured as high pin count connectors.Type: ApplicationFiled: January 17, 2025Publication date: May 22, 2025Inventors: Daniel Rivaud, Anthony Mayenburg
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Patent number: 12238888Abstract: Network rack systems for physically supporting modules of a network element and cable management structures for maintaining network cables in an organized manner are provided. An auxiliary side cabinet, according to one implementation, includes a frame configured for physical attachment to a side portion of a main rack structure, where the main rack structure is configured to support a plurality of modules of a Network Element (NE). The auxiliary side cabinet further includes a front plane connected to a front portion of the frame. Also, the auxiliary side cabinet includes one or more connector panels supported on the front plane. Each of the one or more connector panels is configured to support a plurality of connectors. The plurality of connectors are configured for communication with associated connectors of the modules of the NE via cables. Also, the plurality of connectors are configured as high pin count connectors.Type: GrantFiled: July 12, 2021Date of Patent: February 25, 2025Assignee: Ciena CorporationInventors: Daniel Rivaud, Anthony Mayenburg
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Patent number: 12120854Abstract: A networking hardware system includes a housing; a board located in the housing and comprising a plurality of components; a liquid cooled heat exchanger; and one or more fans disposed near the liquid cooled heat exchanger and configured to provide cool airflow from the liquid cooled heat exchanger to any of the plurality of components. The housing can be substantially sealed from an external environment and includes no air intake thereon, removing a need for higher powered fans and for air filtering for dust. The housing can include a faceplate with no air intake thereon, providing increased density for ports on the faceplate.Type: GrantFiled: December 10, 2021Date of Patent: October 15, 2024Assignee: Ciena CorporationInventors: Daniel Rivaud, Peter Ajersch, Michael Bishop, Anthony Mayenburg
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Patent number: 11703649Abstract: A modular hardware platform utilizes a combination of different types of units that are pluggable into cassette endpoints. The present disclosure enables the construction of an extremely large system, e.g., 500 Tb/s+, as well as small, standalone systems using the same hardware units. This provides flexibility to build different systems with different slot pitches. The hardware platform includes various numbers of stackable units that mate with a cost-effective, hybrid Printed Circuit Board (PCB)/Twinax backplane, that is orthogonally oriented relative to the stackable units. In an embodiment, the hardware platform supports a range of 14.4 Tb/s-800 Tb/s+ in one or more 19? racks, providing full features Layer 3 to Layer 0 support, i.e., protocol support for both a transit core router and full feature edge router including Layer 2/Layer 3 Virtual Private Networks (VPNs), Dense Wave Division Multiplexed (DWDM) optics, and the like.Type: GrantFiled: June 14, 2022Date of Patent: July 18, 2023Assignee: Ciena CorporationInventors: Daniel Rivaud, Anthony Mayenburg, Fabien Colton, Nicola Benvenuti
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Publication number: 20230189482Abstract: A networking hardware system includes a housing; a board located in the housing and comprising a plurality of components; a liquid cooled heat exchanger; and one or more fans disposed near the liquid cooled heat exchanger and configured to provide cool airflow from the liquid cooled heat exchanger to any of the plurality of components. The housing can be substantially sealed from an external environment and includes no air intake thereon, removing a need for higher powered fans and for air filtering for dust. The housing can include a faceplate with no air intake thereon, providing increased density for ports on the faceplate.Type: ApplicationFiled: December 10, 2021Publication date: June 15, 2023Inventors: Daniel Rivaud, Peter Ajersch, Michael Bishop, Anthony Mayenburg
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Publication number: 20230010285Abstract: Network rack systems for physically supporting modules of a network element and cable management structures for maintaining network cables in an organized manner are provided. An auxiliary side cabinet, according to one implementation, includes a frame configured for physical attachment to a side portion of a main rack structure, where the main rack structure is configured to support a plurality of modules of a Network Element (NE). The auxiliary side cabinet further includes a front plane connected to a front portion of the frame. Also, the auxiliary side cabinet includes one or more connector panels supported on the front plane. Each of the one or more connector panels is configured to support a plurality of connectors. The plurality of connectors are configured for communication with associated connectors of the modules of the NE via cables. Also, the plurality of connectors are configured as high pin count connectors.Type: ApplicationFiled: July 12, 2021Publication date: January 12, 2023Inventors: Daniel Rivaud, Anthony Mayenburg
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Publication number: 20220308299Abstract: A modular hardware platform utilizes a combination of different types of units that are pluggable into cassette endpoints. The present disclosure enables the construction of an extremely large system, e.g., 500 Tb/s+, as well as small, standalone systems using the same hardware units. This provides flexibility to build different systems with different slot pitches. The hardware platform includes various numbers of stackable units that mate with a cost-effective, hybrid Printed Circuit Board (PCB)/Twinax backplane, that is orthogonally oriented relative to the stackable units. In an embodiment, the hardware platform supports a range of 14.4 Tb/s-800 Tb/s+ in one or more 19? racks, providing full features Layer 3 to Layer 0 support, i.e., protocol support for both a transit core router and full feature edge router including Layer 2/Layer 3 Virtual Private Networks (VPNs), Dense Wave Division Multiplexed (DWDM) optics, and the like.Type: ApplicationFiled: June 14, 2022Publication date: September 29, 2022Inventors: Daniel Rivaud, Anthony Mayenburg, Fabien Colton, Nicola Benvenuti
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Patent number: 11372180Abstract: A modular networking hardware platform utilizes a combination of different types of units that are pluggable into cassette endpoints. The present disclosure enables the construction of an extremely large system, e.g., 500 Tb/s+, as well as small, standalone systems using the same hardware units. This provides flexibility to build different systems with different slot pitches. The hardware platform includes various numbers of stackable units that mate with a cost-effective, hybrid Printed Circuit Board (PCB)/Twinax backplane, that is orthogonally oriented relative to the stackable units. In an embodiment, the hardware platform supports a range of 14.4 Tb/s-800 Tb/s+ in one or more 19? racks, providing full features Layer 3 to Layer 0 support, i.e., protocol support for both a transit core router and full feature edge router including Layer 2/Layer 3 Virtual Private Networks (VPNs), Dense Wave Division Multiplexed (DWDM) optics, and the like.Type: GrantFiled: January 31, 2020Date of Patent: June 28, 2022Assignee: Ciena CorporationInventors: Daniel Rivaud, Anthony Mayenburg, Fabien Colton, Nicola Benvenuti
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Patent number: 11276955Abstract: A pluggable-modules holder for a plurality of pluggable-modules of a rack-mounted unit is disclosed. The pluggable-modules holder includes a holder body and a plurality of holder ports. Each of the holder ports extends through the holder body and is sized to hold a portion of a respective pluggable-module. The holder body can be configured to connect to a rack-mounted unit before and/or after the plurality of pluggable-modules can be inserted into the plurality of holder ports.Type: GrantFiled: January 6, 2020Date of Patent: March 15, 2022Assignee: Ciena CorporationInventors: Daniel Rivaud, Anthony Mayenburg, Fabien Colton
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Patent number: 11102914Abstract: A network device includes a shelf configured to support interface cards on a front side; a control module including a first frame and a printed circuit board disposed to the first frame, wherein the control module is configured to connect on a rear side of the shelf; and a cooling module including a second frame and cooling fans disposed to the second frame, wherein the second frame is configured slidingly connect to the first frame on the rear side of the shelf.Type: GrantFiled: June 17, 2020Date of Patent: August 24, 2021Assignee: Ciena CorporationInventors: Simon John Shearman, Anthony Mayenburg, Michael Bishop
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Publication number: 20210239927Abstract: A modular networking hardware platform utilizes a combination of different types of units that are pluggable into cassette endpoints. The present disclosure enables the construction of an extremely large system, e.g., 500 Tb/s+, as well as small, standalone systems using the same hardware units. This provides flexibility to build different systems with different slot pitches. The hardware platform includes various numbers of stackable units that mate with a cost-effective, hybrid Printed Circuit Board (PCB)/Twinax backplane, that is orthogonally oriented relative to the stackable units. In an embodiment, the hardware platform supports a range of 14.4 Tb/s-800 Tb/s+ in one or more 19? racks, providing full features Layer 3 to Layer 0 support, i.e., protocol support for both a transit core router and full feature edge router including Layer 2/Layer 3 Virtual Private Networks (VPNs), Dense Wave Division Multiplexed (DWDM) optics, and the like.Type: ApplicationFiled: January 31, 2020Publication date: August 5, 2021Inventors: Daniel Rivaud, Anthony Mayenburg, Fabien Colton, Nicola Benvenuti
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Publication number: 20210210894Abstract: A pluggable-modules holder for a plurality of pluggable-modules of a rack-mounted unit is disclosed. The pluggable-modules holder includes a holder body and a plurality of holder ports. Each of the holder ports extends through the holder body and is sized to hold a portion of a respective pluggable-module.Type: ApplicationFiled: January 6, 2020Publication date: July 8, 2021Inventors: Daniel Rivaud, Anthony Mayenburg, Fabien Colton
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Publication number: 20200315067Abstract: A network device includes a shelf configured to support interface cards on a front side; a control module including a first frame and a printed circuit board disposed to the first frame, wherein the control module is configured to connect on a rear side of the shelf; and a cooling module including a second frame and cooling fans disposed to the second frame, wherein the second frame is configured slidingly connect to the first frame on the rear side of the shelf.Type: ApplicationFiled: June 17, 2020Publication date: October 1, 2020Inventors: Simon John Shearman, Anthony Mayenburg, Michael Bishop
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Patent number: 10736227Abstract: The solution of the present disclosure connects the power in parallel distribution chains. A horizontal pizza box in the middle of the equipment stack represents the power box (PB), which houses the power modules (PMs), such as the power input modules (PIMs) or the power supply units (PSUs). The PMs in the PB are connected to the office power source(s), and the PB supplies power to the parallel distribution chains (A? and B?). The parallel distribution chains are composed of jumper segments that are based on busbar-like technology, with each jumper segment being the length of the distance between coupled boxes. Any box can be removed without disrupting either distribution chain. Advantageously, the jumper segments are touch-proof, from a safety perspective. Thus, instead of a jumper created using a cable, PCB, etc., or a jumper composed of a custom molded back-to-back connector, the jumpers are based on busbar-like technology.Type: GrantFiled: May 13, 2019Date of Patent: August 4, 2020Assignee: Ciena CorporationInventors: Daniel Rivaud, Andrew L. Jarabek, Anthony Mayenburg, Fabien Colton
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Patent number: 10729037Abstract: Systems and methods for a hybrid control and cooling module with an independently removable cooling section for a network device. A control module for a network device includes a frame. A printed circuit board is disposed on the frame. Connectors are configured to operably connect the printed circuit board to mid-plane connectors of a shelf of a network device. A control module mounting system is disposed on the frame and is configured to slidably mount the control module to a shelf of a network device. A cooling module guidance system is disposed on the frame and is configured to slidably mount thereon a cooling module for a network device.Type: GrantFiled: January 23, 2019Date of Patent: July 28, 2020Assignee: Ciena CorporationInventors: Simon John Shearman, Anthony Mayenburg, Michael Bishop
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Publication number: 20200236813Abstract: Systems and methods for a hybrid control and cooling module with an independently removable cooling section for a network device. A control module for a network device includes a frame. A printed circuit board is disposed on the frame. Connectors are configured to operably connect the printed circuit board to mid-plane connectors of a shelf of a network device. A control module mounting system is disposed on the frame and is configured to slidably mount the control module to a shelf of a network device. A cooling module guidance system is disposed on the frame and is configured to slidably mount thereon a cooling module for a network device.Type: ApplicationFiled: January 23, 2019Publication date: July 23, 2020Inventors: Simon John Shearman, Anthony Mayenburg, Michael Bishop
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Patent number: 9603289Abstract: A chassis arrangement includes different depth cards with associated Faraday cages. The chassis arrangement provides support for a first set of cards at a first depth and with a first set of fans, the chassis forming a Faraday cage with either set of cards. The second depth can be greater than the first depth, providing additional space for components to support additional functionality. Changing the first set of fans with the second set of fans and upgrading the first set of cards to the second set of cards is performed in-service, extending a life span of the chassis through in-service upgrades to multiple chassis configurations.Type: GrantFiled: January 14, 2016Date of Patent: March 21, 2017Assignee: Ciena CorporationInventors: Simon John Edward Shearman, Anthony Mayenburg
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Publication number: 20050124180Abstract: A guidance block includes a base and a pair of opposing sides. A first set of opposing sides are attached to a top side of the base and provide a first separation configured to accept a first circuit card. A second set of opposing sides are attached to a bottom side of the base and provide a second separation configured to accept a second circuit card.Type: ApplicationFiled: December 9, 2003Publication date: June 9, 2005Inventors: Lambert Simonovich, Joseph Lommen, Sebastien Nadeau, Michael Wilson, David McQuinn, Paul Van Leeuwen, Michael Miron, Anthony Mayenburg