Patents by Inventor Chiara Pelletti

Chiara Pelletti 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: 11777224
    Abstract: The reflect array system includes a resonant structure formed of an array of resonant cells and for passive reflection of incident signals. The resonant structure generates a radio frequency (“RF”) signal that is shaped and steered by the reflect array.
    Type: Grant
    Filed: November 20, 2020
    Date of Patent: October 3, 2023
    Assignee: Metawave Corporation
    Inventors: Maha Achour, Yan Wang, Chiara Pelletti, Bernard Casse
  • Patent number: 11700056
    Abstract: Examples disclosed herein relate to a phased array antenna system for use with a Low Earth Orbit (“LEO”) satellite constellation. The phased array antenna system has a plurality of antenna panels positioned in a dome and an antenna controller to control the plurality of antenna panels, the controller directing a first antenna panel to transmit a first signal and a second antenna panel to transmit a second signal to a LEO satellite, the first signal having a first phase and the second signal having a second phase different from the first phase.
    Type: Grant
    Filed: February 10, 2021
    Date of Patent: July 11, 2023
    Assignee: METAWAVE CORPORATION
    Inventors: Jun Fang, Chiara Pelletti
  • Publication number: 20230086198
    Abstract: Examples disclosed herein relate to radar systems to coordinate detection of objects external to the vehicle and distractions within the vehicle. A method of environmental detection with a radar system includes detecting an object in an external environment of a vehicle with the radar system positioned on the vehicle. The method includes determining a distraction metric from measurements of user activity obtained within the vehicle with the radar system. The method includes adjusting one or more detection parameters of the radar system based at least on the detected object and the distraction metric. Other examples disclosed herein relate to a radar sensing unit for a vehicle that includes an internal distraction sensor, an external object detection sensor, a coordination sensor and a central controller for internal and external environmental detection.
    Type: Application
    Filed: November 29, 2022
    Publication date: March 23, 2023
    Inventors: Maha ACHOUR, Chiara Pelletti, Sandra Lynn Godsey
  • Patent number: 11606134
    Abstract: In some embodiments, an apparatus includes a plurality of first conductive traces oriented in a first direction in a first layer and plurality of second conductive traces oriented in a second direction in a second layer coupled by vias to define first hierarchical networks. A plurality of third conductive traces oriented in the first direction in a third layer and a plurality of fourth conductive traces oriented in the second direction in a fourth layer are coupled by vias to define second hierarchical networks. Open ends of the first or second traces at a last stage of the first hierarchical networks comprise first ends and open ends of the third or fourth traces at a last stage of the second hierarchical networks comprise second ends. A first end and a corresponding second end are non-collinear to each other and perpendicular to a major plane of the first layer.
    Type: Grant
    Filed: September 9, 2021
    Date of Patent: March 14, 2023
    Assignee: Space Exploration Technologies Corp.
    Inventors: Nil Apaydin, Chiara Pelletti, Souren Shamsinejad, Alireza Mahanfar
  • Publication number: 20230013662
    Abstract: Examples disclosed herein relate to methods and apparatuses for an antenna structure having reactance control of an array of radiating elements to achieve radiation beam tilting.
    Type: Application
    Filed: September 20, 2022
    Publication date: January 19, 2023
    Inventors: Chiara Pelletti, Maha Achour
  • Patent number: 11539120
    Abstract: Examples disclosed herein relate to a range adaptable antenna system for use in autonomous vehicles. The antenna system has a connector and a transition layer to receive an RF transmission signal from a transmission signal controller, a range adaptable power divider layer coupled to the connector and transition layer to divide the RF transmission signal into a plurality of transmission signals to propagate through an array of transmission lines, with a set of transmission lines from the array of transmission lines having a set of switches, an RFIC layer having a plurality of phase shifters to apply different phase shifts to the plurality of transmission signals and generate a plurality of phase shifted transmission signals, and an antenna layer having an array of superelements for radiating the plurality of phase shifted transmission signals, wherein a set of superelements is connected to the set of switches in the range adaptable power divider layer for deactivation.
    Type: Grant
    Filed: October 29, 2019
    Date of Patent: December 27, 2022
    Assignee: METAWAVE Corporation
    Inventor: Chiara Pelletti
  • Publication number: 20220384959
    Abstract: Examples disclosed herein relate to a radiating structure. The radiating structure has a transmission array structure having a plurality of transmission paths with each transmission path having a plurality of slots and a pair of adjacent transmission paths forming a superelement. Each superelement has a phase control module to control a phase of a transmission signal. The radiating structure also includes a radiating array structure having a plurality of radiating elements configured in a lattice, with each radiating element corresponding to at least one slot from the plurality of slots and the radiating array structure positioned proximate the transmission array structure. A feed coupling structure is coupled to the transmission array structure and adapted for propagation of a transmission signal to the transmission array structure.
    Type: Application
    Filed: October 15, 2018
    Publication date: December 1, 2022
    Inventors: Chiara Pelletti, Yan Wang, George Daniel, Maha Achour
  • Patent number: 11515611
    Abstract: Transitional elements to offset a capacitive impedance in a transmission line are disclosed. Described are various examples of transitional elements in a multilayer substrate that introduce a transitional reactance to cancel the transmission line capacitive effects. The transitional elements reduce insertion loss.
    Type: Grant
    Filed: October 17, 2019
    Date of Patent: November 29, 2022
    Assignee: METAWAVE Corporation
    Inventors: Taha Shahvirdi Dizaj Yekan, Chiara Pelletti
  • Patent number: 11515639
    Abstract: Examples disclosed herein relate to a radiating structure. The radiating structure has a transmission array structure having a plurality of transmission paths with each transmission path having a plurality of slots and a pair of adjacent transmission paths forming a superelement. Each superelement has a phase control module to control a phase of a transmission signal. The radiating structure also includes a radiating array structure having a plurality of radiating elements configured in a lattice, with each radiating element corresponding to at least one slot from the plurality of slots and the radiating array structure positioned proximate the transmission array structure. A feed coupling structure is coupled to the transmission array structure and adapted for propagation of a transmission signal to the transmission array structure.
    Type: Grant
    Filed: October 15, 2018
    Date of Patent: November 29, 2022
    Inventors: Chiara Pelletti, Yan Wang, George Daniel, Maha Achour
  • Patent number: 11495877
    Abstract: Examples disclosed herein relate to a multi-layer, multi-steering (MLMS) antenna array for autonomous vehicles. The MLMS antenna array includes a superelement antenna array layer comprising superelement subarrays, in which each superelement subarray includes radiating slots for radiating a transmission signal. The MLMS antenna array also includes a power divider layer coupled to the superelement antenna array layer and configured to serve as a feed to the superelement antenna array layer, in which the power divider layer is coupled to phase shifters that apply different phase shifts to transmission signals propagating to the superelement antenna array layer. The MLMS antenna array also includes a transition layer configured to couple the power divider layer and the superelement antenna array layer to the phase shifters through transition structures such as through-hole vias. Other examples disclosed herein include a radar system for use in an autonomous driving vehicle.
    Type: Grant
    Filed: August 15, 2019
    Date of Patent: November 8, 2022
    Assignee: METAWAVE Corporation
    Inventors: Chiara Pelletti, Taha Yekan
  • Patent number: 11476588
    Abstract: Examples disclosed herein relate to a Meta-Structure (“MTS”) antenna system with adaptive frequency-based power compensation. The MTS antenna system includes a radiating array structure having a plurality of radiating elements, and a transmission array structure coupled to the radiating array structure and feeding a transmission signal through to the radiating array structure. The transmission array structure has a plurality of super element transmission paths, each having a plurality of vias to form transmission paths and a plurality of slots for feeding the transmission signal to the radiating array structure, and a plurality of power amplifiers coupled to an adaptive feedback module, each power amplifier coupled to a super element transmission path, the adaptive feedback module to adjust a power gain at a center frequency.
    Type: Grant
    Filed: April 22, 2019
    Date of Patent: October 18, 2022
    Assignee: METAWAVE Corporation
    Inventors: Maha Achour, Raul Alidio, Chiara Pelletti
  • Patent number: 11450953
    Abstract: Examples disclosed herein relate to methods and apparatuses for an antenna structure having reactance control of an array of radiating elements to achieve radiation beam tilting.
    Type: Grant
    Filed: March 25, 2019
    Date of Patent: September 20, 2022
    Assignee: Metawave Corporation
    Inventors: Chiara Pelletti, Maha Achour
  • Patent number: 11444387
    Abstract: A radar system having multiple layers and a radiating array of elements, wherein signals are presented to the elements as they propagate through a slotted wave guide.
    Type: Grant
    Filed: April 19, 2019
    Date of Patent: September 13, 2022
    Assignee: METAWAVE Corporation
    Inventors: Maha Achour, Chiara Pelletti
  • Patent number: 11404794
    Abstract: Examples disclosed herein relate to a multi-layer, multi-steering (“MLMS”) antenna array for millimeter wavelength applications. The MLMS antenna array includes a superelement antenna array layer comprising a plurality of superelement subarrays, in which each superelement subarray of the plurality of superelement subarrays includes a plurality of radiating slots for radiating a transmission signal. The MLMS antenna array also includes a power division layer configured to serve as a feed to the superelement antenna array layer, in which the power division layer includes a dielectric layer interposed between a plurality of conductive layers. The MLMS antenna array also includes a top layer disposed on the superelement antenna array layer. The top layer may include a superstrate or a metamaterial antenna array. Other examples disclosed herein include a radar system for use in an autonomous driving vehicle.
    Type: Grant
    Filed: June 26, 2019
    Date of Patent: August 2, 2022
    Inventors: Chiara Pelletti, Maha Achour
  • Patent number: 11355859
    Abstract: The present disclosures provide methods and apparatuses for a metamaterial antenna structure having a plurality of super elements of slotted transmission lines. The metamaterial antenna structure has an aperture structure with apertures positioned in a specific orientation relative to a centerline of the aperture structure and configured to propagate transmission signals from a distributed feed network through the apertures. The metamaterial antenna structure also has a transmission array structure comprising a plurality of transmission lines coupled to the aperture structure and configured to propagate the transmission signals from the aperture structure through one or more slots in the transmission array structure, in which the apertures of the aperture structure are interposed between the slots. The metamaterial antenna structure also has a radiating array structure coupled to the transmission array structure and configured to radiate the transmission signals from the transmission array structure.
    Type: Grant
    Filed: June 12, 2019
    Date of Patent: June 7, 2022
    Inventors: Chiara Pelletti, Maha Achour
  • Patent number: 11342682
    Abstract: Examples disclosed herein relate to a reflector device, having a first conductive layer of substrate, a dielectric layer of substrate, and a second conductive layer patterned with a first and a second set of frequency selective elements configured to reflect an incident electromagnetic radiation beam into a plurality of reflected beams at phase angles different from that of the incident electromagnetic radiation beams.
    Type: Grant
    Filed: May 24, 2019
    Date of Patent: May 24, 2022
    Inventors: Chiara Pelletti, Maha Achour
  • Publication number: 20220069887
    Abstract: In some embodiments, an apparatus includes a plurality of first conductive traces oriented in a first direction in a first layer and plurality of second conductive traces oriented in a second direction in a second layer coupled by vias to define first hierarchical networks. A plurality of third conductive traces oriented in the first direction in a third layer and a plurality of fourth conductive traces oriented in the second direction in a fourth layer are coupled by vias to define second hierarchical networks. Open ends of the first or second traces at a last stage of the first hierarchical networks comprise first ends and open ends of the third or fourth traces at a last stage of the second hierarchical networks comprise second ends. A first end and a corresponding second end are non-collinear to each other and perpendicular to a major plane of the first layer.
    Type: Application
    Filed: September 9, 2021
    Publication date: March 3, 2022
    Inventors: Nil Apaydin, Chiara Pelletti, Souren Shamsinejad, Alireza Mahanfar
  • Patent number: 11217902
    Abstract: Examples disclosed herein relate to an analog beamforming antenna for millimeter wavelength applications. The analog beamforming antenna includes a superelement antenna array layer comprising an array of superelements, in which each superelement includes a coupling aperture oriented at a predetermined non-orthogonal angle relative to a plurality of radiating slots for radiating a transmission signal. The analog beamforming antenna also includes a power division layer configured to serve as a feed to the superelement antenna array layer, in which the power division layer comprising a plurality of phase control elements configured to apply different phase shifts to transmission signals propagating to the superelement antenna array layer. The analog beamforming antenna also includes a top layer disposed on the superelement antenna array layer. The top layer may include a superstrate or a metamaterial antenna array. Other examples disclosed herein include a radar system for use in an autonomous driving vehicle.
    Type: Grant
    Filed: July 12, 2019
    Date of Patent: January 4, 2022
    Inventors: Chiara Pelletti, Maha Achour
  • Publication number: 20210320432
    Abstract: Examples disclosed herein relate to an intelligent metamaterial radar. The radar has an Intelligent Metamaterial (“iMTM”) antenna module to radiate a transmission signal with a dynamically controllable iMTM antenna in a plurality of directions based on a controlled reactance and generate radar data capturing a surrounding environment. The radar also has an iMTM interface module to detect and identify a target in the surrounding environment from the radar data and to control the iMTM antenna module.
    Type: Application
    Filed: May 6, 2021
    Publication date: October 14, 2021
    Inventors: Asmita Dani, Chiara Pelletti, Yan Wang, George Daniel, Maha Achour
  • Patent number: 11146323
    Abstract: In embodiments, an apparatus includes a beamformer including a plurality of inputs and a plurality of outputs, a plurality of input vias, and a plurality of output vias. Each input of the plurality of inputs electrically couples to a respective input via of the plurality of input vias. Each output of the plurality of outputs electrically couples to a respective output via of the plurality of output vias. The beamformer is included in a first layer, wherein the plurality of input vias are configured to electrically couple to termination trace ends of a plurality of hierarchical networks provided on at least second and third layers, and wherein the plurality of hierarchical networks comprises at least three hierarchical networks.
    Type: Grant
    Filed: February 14, 2019
    Date of Patent: October 12, 2021
    Assignee: SPACE EXPLORATION TECHNOLOGIES CORP.
    Inventors: Nil Apaydin, Chiara Pelletti, Souren Shamsinejad, Alireza Mahanfar