Patents by Inventor Marco Fiorentino

Marco Fiorentino 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: 20180097139
    Abstract: An example device in accordance with an aspect of the present disclosure includes an avalanche photodetector to enable carrier multiplication for increased responsivity, and a receiver based on source-synchronous CMOS and including adaptive equalization. The photodetector and receiver are monolithically integrated on a single chip.
    Type: Application
    Filed: April 30, 2015
    Publication date: April 5, 2018
    Inventors: Cheng Li, Zhihong Huang, Marco Fiorentino, Raymond G. Beausoleil
  • Publication number: 20180081203
    Abstract: Examples described herein relate to a driver circuit. In an example, the circuit includes a first input for receiving a first signal and a second input for receiving a second signal that is an inverse of the first signal. The circuit also includes a first driver array electrically coupling the first input to a first DC isolator and a first delay tap line electrically coupling the second input to the first DC isolator. The circuit further includes a second driver array electrically coupling the second input to a second DC isolator and a second delay tap line electrically coupling the first input to the second DC isolator. A carrier controller of the circuit is electrically coupled between the first DC isolator and the second DC isolator.
    Type: Application
    Filed: September 22, 2016
    Publication date: March 22, 2018
    Inventors: Tsung-Ching Huang, Chin-Hui Chen, Marco Fiorentino, Raymond G. Beausoleil
  • Patent number: 9917713
    Abstract: In one example, an apparatus includes an offset tunable edge slicer having an input to receive a pulse amplitude modulation signal. The offset tunable edge slicer also has a plurality of possible offset settings corresponding to a plurality of different reference voltages of the offset tunable edge slicer. A multiplexer has an output coupled to the input of the offset tunable edge slicer and an input to receive a control signal that selects one of the plurality of possible offset settings for the offset tunable edge slicer. A phase detector has an input coupled to an output of the offset tunable edge slicer.
    Type: Grant
    Filed: April 27, 2016
    Date of Patent: March 13, 2018
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Kunzhi Yu, Cheng Li, Marco Fiorentino, Raymond G. Beausoleil
  • Publication number: 20180024292
    Abstract: One example includes an apparatus that includes a plurality of input/output (I/O) ports and a body portion. The plurality of I/O ports can be arranged at a plurality of peripheral surfaces of the body portion. The body portion includes a solid dielectric material having a substantially constant index of refraction. The body portion also includes parallel planar surfaces spaced apart by and bounded by the plurality of peripheral surfaces. The solid dielectric material in the body portion can be writable via a laser-writing process to form an optical waveguide extending between a set of the plurality of I/O ports.
    Type: Application
    Filed: January 28, 2015
    Publication date: January 25, 2018
    Inventors: Raymond G BEAUSOLEIL, Marco FIORENTINO, Jason PELC, Charles M SANTORI, Terrel L MORRIS
  • Publication number: 20170359119
    Abstract: According to one example, errors in a logical signal from a data slicer are detected and a power supply voltage is adjusted based on the detected errors.
    Type: Application
    Filed: March 29, 2017
    Publication date: December 14, 2017
    Inventors: Cheng LI, Marco FIORENTINO, Raymond G. BEAUSOLEIL
  • Patent number: 9832550
    Abstract: A system can include an optical multiplexer to combine a plurality of optical input signals having respective wavelengths into a wide-channel optical input signal that is provided to an input channel. The system also includes a photonic packet switch comprising a switch core and a plurality of ports defining a switch radix of the photonic packet switch. The input channel and an output channel can be associated with one of the plurality of ports. The photonic packet switch can process the wide-channel optical input signal and can generate a wide-channel optical output signal that is provided to the output channel. The system further includes an optical demultiplexer to separate the wide-channel optical output signal into a plurality of optical output signals having respective wavelengths. The optical multiplexer and the optical demultiplexer can collectively provide the system with a radix greater than the switch radix.
    Type: Grant
    Filed: January 31, 2013
    Date of Patent: November 28, 2017
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Moray McLaren, Raymond G Beausoleil, Norman Paul Jouppi, Marco Fiorentino, Alan Lynn Davis, Naveen Muralimanohar, Sheng Li
  • Publication number: 20170336569
    Abstract: One example includes an optical port-shuffling module. The module includes a plurality of inputs to receive a respective plurality of optical signals. The module also includes a plurality of outputs to provide the respective plurality of optical signals from the optical port-shuffling module. The module further includes a plurality of total-internal-reflection (TIR) mirrors arranged in optical paths of at least a portion of the plurality of optical signals to reflect the at least a portion of the plurality of optical signals to at least a portion of the plurality of outputs to shuffle the plurality of optical signals between the plurality of inputs and the plurality of outputs.
    Type: Application
    Filed: October 23, 2014
    Publication date: November 23, 2017
    Inventors: Jason PELC, Charles M SANTORI, Marco FIORENTINO, Sr., Raymond G BEAUSOLEIL, Terrel L MORRIS
  • Publication number: 20170317865
    Abstract: In one example, an apparatus includes an offset tunable edge slicer having an input to receive a pulse amplitude modulation signal. The offset tunable edge slicer also has a plurality of possible offset settings corresponding to a plurality of different reference voltages of the offset tunable edge slicer. A multiplexer has an output coupled to the input of the offset tunable edge slicer and an input to receive a control signal that selects one of the plurality of possible offset settings for the offset tunable edge slicer. A phase detector has an input coupled to an output of the offset tunable edge slicer.
    Type: Application
    Filed: April 27, 2016
    Publication date: November 2, 2017
    Inventors: Kunzhi Yu, Cheng Li, Marco Fiorentino, Raymond G. Beausoleil
  • Publication number: 20170317473
    Abstract: An example method of manufacturing a semiconductor device. A first wafer may be provided that includes a first layer that contains quantum dots. A second wafer may be provided that includes a buried dielectric layer and a second layer on the buried dielectric layer. An interface layer may be formed on at least one of the first layer and the second layer, where the interface layer may be an insulator, a transparent electrical conductor, or a polymer. The first wafer may be bonded to the second wafer by way of the interface layer.
    Type: Application
    Filed: April 28, 2016
    Publication date: November 2, 2017
    Inventors: Di Liang, Geza Kurczveil, Raymond G. Beausoleil, Marco Fiorentino
  • Publication number: 20170315298
    Abstract: One example includes an optical fiber interface. The interface includes a first substrate comprising a pair of opposing surfaces. The substrate includes an opening extending therethrough that defines an inner periphery. One surface of the opposing surfaces of the first substrate can be configured to be bonded to a given surface of a second substrate. The interface also includes a plurality of optical fibers secured to the other opposing surface of the first substrate and extending inwardly from a plurality of surfaces of the inner periphery at fixed locations to align the set of optical fibers to optical inputs/outputs (I/O) of an optical system chip that is coupled to the given surface of the second substrate and received through the opening.
    Type: Application
    Filed: October 23, 2014
    Publication date: November 2, 2017
    Applicant: Hewlett Packard Enterprise Development LP
    Inventors: Terrel L MORRIS, Raymond G BEAUSOLEIL, Jason PELC, SR., Marco FIORENTINO, Charles M SANTORI, Michael W CUMBIE
  • Publication number: 20170212368
    Abstract: An example device in accordance with an aspect of the present disclosure includes a first semiconductor layer disposed on a substrate, a dielectric layer disposed between the first semiconductor layer and a second semiconductor layer dissimilar from the first semiconductor layer. A capacitor is formed of at least a portion of the first semiconductor layer, the dielectric layer, and the second semiconductor layer, and is to be included in an optical waveguide resonator.
    Type: Application
    Filed: July 30, 2014
    Publication date: July 27, 2017
    Inventors: Di LIANG, Geza KURCZVEIL, Marco FIORENTINO, Ray G. BEAUSOLEIL
  • Patent number: 9612402
    Abstract: An integrated grating element system includes a first transparent layer formed on an optoelectronic substrate layer which includes at least two optoelectronic components, a first grating layer disposed on the first transparent layer which includes at least two sub-wavelength grating elements formed therein aligned with active regions of the optoelectronic components, and a second grating layer placed at a distance from the first grating layer such that light propagates between a diffraction grating element formed within the second grating layer and the at least two sub-wavelength grating elements.
    Type: Grant
    Filed: January 12, 2012
    Date of Patent: April 4, 2017
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: David A. Fattal, Raymond G. Beausoleil, Marco Fiorentino, Paul Kessler Rosenberg, Terrel Morris
  • Patent number: 9568672
    Abstract: An optical coupling system and method of fabrication are included. The optical coupling system includes a substrate layer and an optical waveguide material overlying the substrate layer. The optical waveguide material can include a grating. The system also includes a cover material overlying the optical waveguide material to couple an optical signal to the optical waveguide material via the grating at a coupling angle. Approximately zero energy of the coupled optical signal is lost in the substrate layer due to a combination of the coupling angle and a difference in refractive indices between the cover material and the substrate layer.
    Type: Grant
    Filed: July 30, 2012
    Date of Patent: February 14, 2017
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: David A. Fattal, Zhen Peng, Marco Fiorentino, Raymond G. Beausoleil
  • Publication number: 20160370594
    Abstract: A directional backlight is disclosed. The directional backlight has a plurality of light sources to generate a plurality of input planar lightbeams. The plurality of input planar lightbeams illuminates a directional backplane that has a plurality of directional pixels to scatter the plurality of input planar lightbeams into a plurality of directional lightbeams. Each directional lightbeam has a direction and angular spread controlled by characteristics of a directional pixel in the plurality of directional pixels. The directional backlight can be used to generate a 3D image by specifying the characteristics of the directional pixels in the directional backplane.
    Type: Application
    Filed: August 31, 2016
    Publication date: December 22, 2016
    Inventors: Charles M. Santori, David A. Fattal, Marco Fiorentino, James A. Brug, Zhen Peng
  • Patent number: 9520946
    Abstract: One example relates to an optical engine comprising a given layer of given material overlaying an optical waveguide of another material. The given layer of given material can comprise an aligning seat to receive an optical transmitter to provide the optical signal. The aligning seat can also align the optical transmitter such that the optical transmitter provides the optical signal in a direction that is substantially non-oblique relative to a longitudinal axis of the optical waveguide. The optical engine can also include an optical signal redirector to tilt the optical signal by a tilt angle. The optical waveguide can comprise a grating coupler to diffract the optical signal provided at the tilt angle into the optical waveguide.
    Type: Grant
    Filed: July 26, 2012
    Date of Patent: December 13, 2016
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Zhen Peng, David A. Fattal, Marco Fiorentino
  • Publication number: 20160341855
    Abstract: Examples include a method for fabricating a grating mirror using a computing device that comprises calculating a target phase change across the grating mirror. The target phase change may correspond to a target wavefront shape in a beam of light reflected from a grating patter. The method may also comprise generating the grating pattern comprising a plurality of lines with line widths, line period spacings, and line thicknesses corresponding to the target phase change across the grating mirror using the computing device. In such examples, a set of coordinates may be generated using the computing device with each coordinate identifying a location of a line of the plurality of lines, a line width of the line, a line period spacing of the line, and a line thickness of the line.
    Type: Application
    Filed: July 29, 2016
    Publication date: November 24, 2016
    Inventors: David A. FATTAL, Jingjing LI, Raymond G. BEAUSOLEIL, Marco FIORENTINO
  • Publication number: 20160327818
    Abstract: An active-control optical resonator includes an oxide layer; a ring resonator arranged in a loop and positioned on the oxide layer; a tangential optical waveguide optically coupled to the ring resonator; a translatable body configured to selectively move into an evanescent field region of the ring resonator; a first electrode positioned on the translatable body, the first electrode comprising indium tin oxide; and a second electrode positioned between the oxide layer and the ring resonator.
    Type: Application
    Filed: January 31, 2014
    Publication date: November 10, 2016
    Applicant: Hewlett-Packard Development Company, L.P.
    Inventors: Sonny Vo, Zhihong Huang, Chin-Hui Chen, Jason Scott Pelc, Marco Fiorentino
  • Patent number: 9490385
    Abstract: A device includes a first region, a multiplication region, a second region, and an absorption region. The first region is associated with a first terminal, and the second region is associated with a second terminal. The first region is separated from the second region by the multiplication region. The absorption region is disposed on the multiplication region and associated with a third terminal. A multiplication region electric field is independently controllable with respect to an absorption region electric field, based on the first terminal, the second terminal, and the third terminal.
    Type: Grant
    Filed: May 29, 2012
    Date of Patent: November 8, 2016
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Zhihong Huang, Marco Fiorentino, Charles M. Santori, Zhen Peng, Di Liang, Raymond G. Beausoleil
  • Patent number: 9459461
    Abstract: A directional backlight is disclosed. The directional backlight has a plurality of light sources to generate a plurality of input planar lightbeams. The plurality of input planar lightbeams illuminates a directional backplane that has a plurality of directional pixels to scatter the plurality of input planar lightbeams into a plurality of directional lightbeams. Each directional lightbeam has a direction and angular spread controlled by characteristics of a directional pixel in the plurality of directional pixels. The directional backlight can be used to generate a 3D image by specifying the characteristics of the directional pixels in the directional backplane.
    Type: Grant
    Filed: June 19, 2014
    Date of Patent: October 4, 2016
    Assignee: LEIA INC.
    Inventors: Charles M. Santori, David A. Fattal, Marco Fiorentino, James A. Brug, Zhen Peng
  • Patent number: 9442253
    Abstract: Techniques relating to optical shuffling are described herein. In an example, a system for shuffling a plurality of optical beams is described. The system includes a plurality of sources to output respective beams of light. The system further includes a plurality of receivers to receive respective beams of light. The system further includes a shuffling assembly including a plurality of sub-wavelength grating (SWG) sections. Each of the plurality of SWG sections is for defining optical paths of the plurality of beams. The plurality of SWG sections includes at least one reflecting SWG section to reflect and direct light from a respective one of the plurality of sources toward a respective one of the plurality of receivers.
    Type: Grant
    Filed: June 28, 2012
    Date of Patent: September 13, 2016
    Assignee: Hewlett Packard Enterprise Development LP
    Inventors: Paul Kessler Rosenberg, David A. Fattal, Marco Fiorentino, Raymond G. Beausoleil