Patents by Inventor Michael Reginald Bishop

Michael Reginald Bishop 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).

  • Patent number: 11698498
    Abstract: A module for multiple network pluggable optics is disclosed. The module includes a Printed Circuit Board (PCB); a faceplate connected to the PCB; a plurality of cage assemblies connected to the PCB, each cage assembly is configured to receive a pluggable optical module via a corresponding opening in the faceplate; and a shared heat exchanger that is integrally formed and substantially covers the plurality of cage assemblies, wherein the shared heat exchanger is configured to cool multiple pluggable optics in the plurality of cage assemblies.
    Type: Grant
    Filed: August 23, 2021
    Date of Patent: July 11, 2023
    Assignee: Ciena Corporation
    Inventors: Simon John Shearman, Michael Reginald Bishop, Terence Arthur Graham, Bonnie Lynne Mack, Behzad Mohajer, Marian Mocanita
  • Publication number: 20210382252
    Abstract: A module for multiple network pluggable optics is disclosed. The module includes a Printed Circuit Board (PCB); a faceplate connected to the PCB; a plurality of cage assemblies connected to the PCB, each cage assembly is configured to receive a pluggable optical module via a corresponding opening in the faceplate; and a shared heat exchanger that is integrally formed and substantially covers the plurality of cage assemblies, wherein the shared heat exchanger is configured to cool multiple pluggable optics in the plurality of cage assemblies.
    Type: Application
    Filed: August 23, 2021
    Publication date: December 9, 2021
    Inventors: Simon John Shearman, Michael Reginald Bishop, Terence Arthur Graham, Bonnie Lynne Mack, Behzad Mohajer, Marian Mocanita
  • Patent number: 11184995
    Abstract: A platform includes a housing with a front side, a rear side opposite the front side, a right side adjacent to both the front side and the rear side, and a left side opposite the right side and adjacent to both the front side and the rear side, wherein airflow in the platform is between the front side and the rear side or between the front side and the front side; one or more modules in the housing each including a plurality of cages supporting removable interface cards, wherein the airflow includes an air path that is over the one or more modules between a bottom portion of the one or more modules and a top portion of the one or more modules; and at least one dust cap in one of the plurality of cages, wherein the dust cap includes an air filter medium enabling airflow at an intermediate point of the air path.
    Type: Grant
    Filed: November 1, 2019
    Date of Patent: November 23, 2021
    Assignee: Ciena Corporation
    Inventors: Terence Arthur Graham, Bonnie Lynne Mack, Michael Reginald Bishop, Simon John Shearman
  • Patent number: 11112573
    Abstract: A module for multiple network pluggable optics is disclosed. The module includes a faceplate, a plurality of cage assemblies, and a plurality of springs. The faceplate includes a front face, a first wall extending from the front face, the first wall including a heat exchanger, and a second wall extending from the front face, the second wall being offset from the first wall. The plurality of cage assemblies is positioned at least partially within a volume defined by the front face and the first and second walls. Each cage assembly is configured to receive a pluggable optical module. The plurality of springs are configured with one or more springs positioned between each cage assembly and the second wall to push the plurality of cage assemblies towards the first wall such that each pluggable optical module received into one of the plurality of cage assemblies is pressed against the heat exchanger.
    Type: Grant
    Filed: November 1, 2019
    Date of Patent: September 7, 2021
    Assignee: Ciena Corporation
    Inventors: Simon John Shearman, Michael Reginald Bishop, Terence Arthur Graham, Bonnie Lynne Mack, Behzad Mohajer, Marian Mocanita
  • Publication number: 20210132311
    Abstract: A module for multiple network pluggable optics is disclosed. The module includes a faceplate, a plurality of cage assemblies, and a plurality of springs. The faceplate includes a front face, a first wall extending from the front face, the first wall including a heat exchanger, and a second wall extending from the front face, the second wall being offset from the first wall. The plurality of cage assemblies is positioned at least partially within a volume defined by the front face and the first and second walls. Each cage assembly is configured to receive a pluggable optical module. The plurality of springs are configured with one or more springs positioned between each cage assembly and the second wall to push the plurality of cage assemblies towards the first wall such that each pluggable optical module received into one of the plurality of cage assemblies is pressed against the heat exchanger.
    Type: Application
    Filed: November 1, 2019
    Publication date: May 6, 2021
    Inventors: Simon John Shearman, Michael Reginald Bishop, Terence Arthur Graham, Bonnie Lynne Mack, Behzad Mohajer, Marian Mocanita
  • Publication number: 20210136951
    Abstract: A platform includes a housing with a front side, a rear side opposite the front side, a right side adjacent to both the front side and the rear side, and a left side opposite the right side and adjacent to both the front side and the rear side, wherein airflow in the platform is between the front side and the rear side or between the front side and the front side; one or more modules in the housing each including a plurality of cages supporting removable interface cards, wherein the airflow includes an air path that is over the one or more modules between a bottom portion of the one or more modules and a top portion of the one or more modules; and at least one dust cap in one of the plurality of cages, wherein the dust cap includes an air filter medium enabling airflow at an intermediate point of the air path.
    Type: Application
    Filed: November 1, 2019
    Publication date: May 6, 2021
    Inventors: Terence Arthur Graham, Bonnie Lynne Mack, Michael Reginald Bishop, Simon John Shearman
  • Patent number: 10070553
    Abstract: A connector replacement method in a network element chassis includes obtaining physical access to a backplane in the network element chassis, while the network element chassis is deployed; powering down backplane connectors for replacement while other backplane connectors remained powered; removing the powered down backplane connectors with a connector removal tool; inserting a new set of backplane connectors in place of the removed, powered down backplane connectors with a connector insertion tool; and powering up the new set of backplane connectors.
    Type: Grant
    Filed: February 24, 2016
    Date of Patent: September 4, 2018
    Assignee: Ciena Corporation
    Inventors: Cindy Lee, Ryotaro Miyagawa, Trevor Meunier, Michael Reginald Bishop, Peter Saturley
  • Publication number: 20170244211
    Abstract: A connector replacement method in a network element chassis includes obtaining physical access to a backplane in the network element chassis, while the network element chassis is deployed; powering down backplane connectors for replacement while other backplane connectors remained powered; removing the powered down backplane connectors with a connector removal tool; inserting a new set of backplane connectors in place of the removed, powered down backplane connectors with a connector insertion tool; and powering up the new set of backplane connectors.
    Type: Application
    Filed: February 24, 2016
    Publication date: August 24, 2017
    Inventors: Cindy LEE, Ryotaro MIYAGAWA, Trevor MEUNIER, Michael Reginald BISHOP, Peter SATURLEY
  • Patent number: 6104611
    Abstract: A passive method and packaging system for thermally controlling the temperature of electronic equipment within a housing are disclosed. The packaging system provides for two cooling steps, each of which uses a different passive cooling technology. Cooling by changing the phase of Phase Change Material, assists in controlling internal ambient temperatures by limiting the effects of short term localized thermal phenomena which would otherwise further increase internal temperatures. Cooling is also provided for by switching on a second passive cooling means, preferably a heat pipe, as the internal temperature of the housing increases above a predetermined temperature and to switch it off as the internal temperature drops below the predetermined temperature. Turning the second passive cooling means on and off provides respectively, a low or high thermal resistance path between the interior and exterior of the housing.
    Type: Grant
    Filed: October 4, 1996
    Date of Patent: August 15, 2000
    Assignee: Nortel Networks Corporation
    Inventors: Richard John Glover, Michael Reginald Bishop, Michal Stefan Tencer