Patents by Inventor Matthew Ferris

Matthew Ferris 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).

  • Publication number: 20250291240
    Abstract: A projector projects images through an MRI bore of an MRI (Magnetic Resonance Imaging) system onto the back of a translucent screen. In some embodiments, the screen scatters light. When the light is focused on the back of the screen, an image is formed on the front of the screen. The image on the front of the screen is reflected by a mirror towards a patient receiving an MRI. In some embodiments, the mirror is retractable. In some embodiments, the mirror is mounted on a retractable arm. In some embodiments, the screen is mounted on side panels, which also support pivots. In some embodiments, the retractable arm pivots on the pivots that are supported on the side panels.
    Type: Application
    Filed: March 13, 2024
    Publication date: September 18, 2025
    Inventors: Matthew Ferris, Simon Whalen
  • Publication number: 20250291007
    Abstract: Various embodiments of a method and apparatus including a projector for an MRI system are disclosed. The projector is enclosed in a metal housing with a heat exchanger of various embodiments of fins and surface areas to function as a heat sink. In some embodiments, the surface area of the heat sinks is large enough to reliably function within a magnetic field of up to 3 Tesla without overheating. In some embodiments, the projector is cooled by the heat sink without a fan or internal cooling. In an embodiment, the housing of the projector shields the projector and forces electromagnetic radiation to follow a path that includes a 90-degree turn to escape the interior of the projector, reducing the likelihood of electromagnetic radiation escaping.
    Type: Application
    Filed: March 12, 2024
    Publication date: September 18, 2025
    Inventors: Matthew Ferris, Simon Whalen
  • Patent number: 10705007
    Abstract: A flow cytometry system and method for quantification of fluorescently labeled virus particles smaller than 1 micron in size measures and controls sample fluid flow rate to an investigatory flow cell at a rate below 5000 nanoliters per minute and calculates in real time particle concentration in the sample fluid using measured flow rated data flow rate data and with correction for sample fluid flow rate fluctuations.
    Type: Grant
    Filed: July 19, 2018
    Date of Patent: July 7, 2020
    Assignee: Essen Instruments, Inc.
    Inventors: Kathy L. Rowlen, Matthew Ferris
  • Publication number: 20190041314
    Abstract: A flow cytometry system and method for quantification of fluorescently labeled virus particles smaller than 1 micron in size measures and controls sample fluid flow rate to an investigatory flow cell at a rate below 5000 nanoliters per minute and calculates in real time particle concentration in the sample fluid using measured flow rated data flow rate data and with correction for sample fluid flow rate fluctuations.
    Type: Application
    Filed: July 19, 2018
    Publication date: February 7, 2019
    Inventors: Kathy L. Rowlen, Matthew Ferris
  • Patent number: 10031061
    Abstract: The present invention relates to methods that enable improved accuracy for quantitative particle counting in a flowing liquid stream. The methods of the present invention utilize the real-time measurement of flow rates and flow rate control through feedback mechanisms to improve quantification, and this improved quantification translates to more accurate particle counting. In certain embodiments, particles being counted are biological particles in a liquid sample, such as viruses.
    Type: Grant
    Filed: May 13, 2009
    Date of Patent: July 24, 2018
    Assignee: IntelliCyt Corporation
    Inventors: Kathy L. Rowlen, Matthew Ferris
  • Patent number: 8797226
    Abstract: A cellular communication antenna has a base with a length that exceeds its width and an inside surface with internal mounts for a plurality of electrical components that generate heat when in operation. A top encapsulates the electrical components and incorporates a radome. A plurality of fins are mounted on the outside surface of the base. They may be non-parallel with the length of the base. They may all be substantially the same length. They are further constructed and arranged to be in thermal communication with the electrical components such that heat generated by the electrical components is dissipated by the fins. Each fin may be in thermally conductive communication with more than one electrical component.
    Type: Grant
    Filed: December 1, 2009
    Date of Patent: August 5, 2014
    Assignee: Andrew LLC
    Inventor: Matthew Ferris
  • Patent number: 8497813
    Abstract: A panel antenna having an enclosure, an internal cover, one or more micro radios and RF modules, and a radome is provided. The enclosure may include a rectangular rear panel, side walls with an interior surface to mount micro radios and an external surface to receive heat sinks, and a hinged front cover providing an internal cover. The internal cover may also have a plurality of RF radiating modules fastened thereto. The internal cover may also provide environmental sealing and electromagnetic shielding. The plurality of micro radios are located inside the cavity of the enclosure, and each micro radio is coupled to an RF radiating module. The micro radios may be mounted inside the enclosure on the side walls. The radome encloses the RF radiating modules. The radome may be mounted to the internal seal. Additionally, the panel antenna may further include a heat sink mounted on an exterior side of the rear panel.
    Type: Grant
    Filed: June 2, 2010
    Date of Patent: July 30, 2013
    Assignee: Andrew LLC
    Inventors: Derek Rodger, Matthew Ferris
  • Publication number: 20120070818
    Abstract: The present invention relates to methods that enable improved accuracy for quantitative particle counting in a flowing liquid stream. The methods of the present invention utilize the real-time measurement of flow rates and flow rate control through feedback mechanisms to improve quantification, and this improved quantification translates to more accurate particle counting. In certain embodiments, particles being counted are biological particles in a liquid sample, such as viruses.
    Type: Application
    Filed: May 13, 2009
    Publication date: March 22, 2012
    Applicant: INDEVR, INC.
    Inventors: Kathy Rowlen, Matthew Ferris
  • Publication number: 20110260944
    Abstract: A cellular communication antenna has a base with a length that exceeds its width and an inside surface with internal mounts for a plurality of electrical components that generate heat when in operation. A top encapsulates the electrical components and incorporates a radome. A plurality of fins are mounted on the outside surface of the base. They may be non-parallel with the length of the base. They may all be substantially the same length. They are further constructed and arranged to be in thermal communication with the electrical components such that heat generated by the electrical components is dissipated by the fins. Each fin may be in thermally conductive communication with more than one electrical component.
    Type: Application
    Filed: December 1, 2009
    Publication date: October 27, 2011
    Applicant: ANDREW LLC
    Inventor: Matthew Ferris
  • Publication number: 20110032158
    Abstract: A panel antenna having an enclosure, an internal cover, one or more micro radios and RF modules, and a radome is provided. The enclosure may include a rectangular rear panel, side walls with an interior surface to mount micro radios and an external surface to receive heat sinks, and a hinged front cover providing an internal cover. The internal cover may also have a plurality of RF radiating modules fastened thereto. The internal cover may also provide environmental sealing and electromagnetic shielding. The plurality of micro radios are located inside the cavity of the enclosure, and each micro radio is coupled to an RF radiating module. The micro radios may be mounted inside the enclosure on the side walls. The radome encloses the RF radiating modules. The radome may be mounted to the internal seal. Additionally, the panel antenna may further include a heat sink mounted on an exterior side of the rear panel.
    Type: Application
    Filed: June 2, 2010
    Publication date: February 10, 2011
    Applicant: ANDREW LLC
    Inventors: Derek RODGER, Matthew FERRIS
  • Publication number: 20070248309
    Abstract: A cable trough cover assembly and method of assembly including a cover plate and a hinge piece. The cover plate includes a pivot member along at least one edge, and the hinge piece defines a pocket for releasably receiving the pivot member. The pocket and pivot member arrangement allow the cover plate to be rotated relative to a cable trough to which the hinge pieces may be mounted.
    Type: Application
    Filed: April 5, 2007
    Publication date: October 25, 2007
    Applicant: ADC Telecommunications, Inc.
    Inventors: Matthew Ferris, Joel Fisher
  • Publication number: 20070230891
    Abstract: A telecommunications optical fiber distribution system is disclosed. The system comprises a support structure with an upper end, a lower end, a front side, a rear side, and a longitudinal axis. An input cable carrying an input signal and an output cable carrying an output signal is received into the system through the lower end. A plurality of signal splitters located at the upper end of the support structure split the input signal into a plurality of secondary signals. The system includes a plurality of adapters arranged radially about the longitudinal axis along the front side of the support structure. The adapters connect the secondary signals to the output signal. A cable management structure having portions located both along the front side between the plurality of adapters and the splitters and adjacent the back side manage and direct cables going from the input opening to the splitters and from the splitters to the adapters.
    Type: Application
    Filed: February 5, 2007
    Publication date: October 4, 2007
    Applicant: ADC Telecommunications, Inc.
    Inventors: Michael Barth, Soutsada Vongseng, Matthew Ferris
  • Publication number: 20070189691
    Abstract: A fiber distribution system includes one or more fiber distribution hubs (FDHs) that provide an interface at a termination panel between incoming fibers routed from a central office and outgoing fibers routed to network subscribers. Termination modules can be incrementally added to the termination panel. The FDH can include one or more optical splitter modules that split an optical signal into two or more signals. The optical splitter modules can be incrementally added along with one or more storage modules. The subscriber termination panel, optical splitters, and storage modules can be provided on a swing frame.
    Type: Application
    Filed: February 13, 2006
    Publication date: August 16, 2007
    Inventors: Michael Barth, Joshua Zabel, Soutsada Vongseng, Matthew Ferris, Steve Anderson, Craig Standish
  • Publication number: 20070140642
    Abstract: A fiber access terminal for mounting to the end of a fiber distribution cable and configured to be extended through a buried conduit. The fiber distribution cable may include a plurality of optical fibers and enters a housing of the terminal through a base. The terminal also includes a plurality of fiber optic connectors or adapters extending through the housing in generally the same direction as the fiber distribution cable for connecting to optical fiber customer drop cables. The terminal includes a cover and the housing defining an interior and the interior includes a cable slack storage arrangement providing bend radius protection for the optical fiber cables within the interior. A method of assembling a fiber access terminal. A fiber access terminal assembly including a pedestal mounting arrangement.
    Type: Application
    Filed: February 15, 2007
    Publication date: June 21, 2007
    Applicant: ADC Telecommunications, Inc.
    Inventors: Daniel Mertesdorf, Trevor Smith, Keith Nelson, Erik Gronvall, Paula Rudenick, Thomas Tinucci, Matthew Ferris
  • Publication number: 20070105411
    Abstract: Couplers for a cable trough system including a spacing defined by first and second guiding surfaces, the spacing being sized to receive the terminal end of a trough member into the spacing. One or more springs are carried on the couplers and may be at least partially disposed within the spacing between the first and the second guiding surfaces. The springs urge the terminal end of the trough member against the coupler upon insertion of the terminal end into the spacing. One or more locking elements are coupled adjacent to the springs to move between a locking position and a released position. The locking elements may slide longitudinally or move perpendicularly to the couplers. A first trough member may be released from the couplers independent from a second trough member coupled to the couplers. Methods for use of the couplers are also provided.
    Type: Application
    Filed: January 4, 2007
    Publication date: May 10, 2007
    Applicant: ADC Telecommunications, Inc.
    Inventors: Matthew Ferris, Timothy Haataja
  • Publication number: 20070077019
    Abstract: A telecommunications optical fiber distribution system is disclosed. The system comprises a support structure with an upper end, a lower end, a front side, a rear side, and a longitudinal axis. An input cable carrying an input signal and an output cable carrying an output signal is received into the system through the lower end. A plurality of signal splitters located at the upper end of the support structure split the input signal into a plurality of secondary signals. The system includes a plurality of adapters arranged radially about the longitudinal axis along the front side of the support structure. The adapters connect the secondary signals to the output signal. A cable management structure having portions located both along the front side between the plurality of adapters and the splitters and adjacent the back side manage and direct cables going from the input opening to the splitters and from the splitters to the adapters.
    Type: Application
    Filed: October 3, 2005
    Publication date: April 5, 2007
    Inventors: Michael Barth, Soutsada Vongseng, Matthew Ferris
  • Publication number: 20060285812
    Abstract: A cable trough cover assembly and method of assembly including a cover plate and a hinge piece. The cover plate includes a pivot member along at least one edge, and the hinge piece defines a pocket for releasably receiving the pivot member. The pocket and pivot member arrangement allow the cover plate to be rotated relative to a cable trough to which the hinge pieces may be mounted.
    Type: Application
    Filed: August 21, 2006
    Publication date: December 21, 2006
    Applicant: ADC Telecommunications, Inc.
    Inventors: Matthew Ferris, Joel Fisher
  • Publication number: 20060269204
    Abstract: A telecommunications optical fiber distribution system is disclosed. The system comprises a support structure defining a longitudinal axis. A plurality of fiber optic signal splitters are arranged radially with respect to the longitudinal axis defined by the support structure, each fiber optic signal splitter including a signal input location and a split signal output location. A plurality of adapters mounted to the support structure are arranged radially around the longitudinal axis defined by the support structure. Each adapter includes a first connection end for receiving a connector terminated to an output cable extending from the output location of the splitter and a second connection end for receiving a connector terminated to an outgoing distribution cable.
    Type: Application
    Filed: May 25, 2005
    Publication date: November 30, 2006
    Inventors: Michael Barth, Matthew Ferris, Soutsada Vongseng
  • Publication number: 20060261240
    Abstract: Couplers for a cable trough system including a terminal end sized to receive a terminal end of a trough member along a longitudinal direction of the body. A spring may be coupled to the body for securing the terminal end of the trough member to the coupler, the spring including first and second spring arms extending generally in opposition to one another in a plane generally parallel to the longitudinal direction. The spring may be received in a slot formed by the trough member. Also included may be a spring release mechanism coupled to the body, the spring release mechanism sliding in the longitudinal direction between a locked position, such that the first and second spring arms engage the terminal end of the trough, and an unlocked position, such that the first and second fingers release the first and second arms of the spring.
    Type: Application
    Filed: February 20, 2006
    Publication date: November 23, 2006
    Applicant: ADC Telecommunications, Inc.
    Inventors: Gary Nault, Timothy Haataja, Matthew Ferris, Alex Watts
  • Publication number: 20060210356
    Abstract: Couplers for a cable trough system including a terminal end sized to receive a terminal end of a trough member along a longitudinal direction of the body. A spring may be coupled to the body for securing the terminal end of the trough member to the coupler, the spring including first and second spring arms extending generally in opposition to one another in a plane generally parallel to the longitudinal direction. The spring may be received in a slot formed by the trough member. Also included may be a spring release mechanism coupled to the body, the spring release mechanism sliding in the longitudinal direction between a locked position, such that the first and second spring arms engage the terminal end of the trough, and an unlocked position, such that the first and second fingers release the first and second arms of the spring.
    Type: Application
    Filed: May 9, 2006
    Publication date: September 21, 2006
    Applicant: ADC Telecommunications, Inc.
    Inventors: Matthew Ferris, Alex Watts