Patents Assigned to STMicroelectronics (Research & Development), Limited
  • Patent number: 10978606
    Abstract: The present disclosure relates to an avalanche diode including at least one PN junction; at least one depletion structure located adjacent to the PN junction and configured to form a depletion region; and at least two electrodes to polarize the at least one PN junction.
    Type: Grant
    Filed: October 11, 2018
    Date of Patent: April 13, 2021
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventor: Laurence Stark
  • Patent number: 10976709
    Abstract: In an embodiment, a method includes: providing a gray-coded time reference to a time-to-digital converter (TDC); receiving an event from an event signal; latching the gray-coded time reference into a memory upon reception of the event signal; and updating a time-of-flight (ToF) histogram based on the latched gray-coded time reference.
    Type: Grant
    Filed: March 30, 2020
    Date of Patent: April 13, 2021
    Assignee: STMICROELECTRONICS (RESEARCH & DEVELOPMENT) LIMITED
    Inventors: John Kevin Moore, Neale Dutton
  • Publication number: 20210105427
    Abstract: The present disclosure relates to a device that includes a photodiode having a first terminal that is coupled by a resistor to a first rail configured to receive a high supply potential and a second terminal that is coupled by a switch to a second rail configured to receive a reference potential. A read circuit is configured to provide a pulse when the photodiode enters into avalanche, and a control circuit is configured to control an opening of the switch in response to a beginning of the pulse and to control a closing of the switch in response to an end of the pulse.
    Type: Application
    Filed: October 5, 2020
    Publication date: April 8, 2021
    Applicants: STMicroelectronics (Crolles 2) SAS, STMicroelectronics (Research & Development) Limited
    Inventors: Raul Andres BIANCHI, Matteo Maria VIGNETTI, Bruce RAE
  • Publication number: 20210098512
    Abstract: An imaging sensor includes a pixel array containing photodiodes, the photodiodes being isolated from one another by full thickness deep trench isolations. Row control circuitry controls which rows of the pixel array operate in an imaging mode and which rows of the pixel array operate in an energy harvesting mode, on a row by row basis. Switch circuitry selectively connects different groups of photodiodes in rows operating in the energy harvesting mode into forward biased series configurations between a voltage output line and a ground line, or into forward biased parallel configurations between the voltage output line and the ground line.
    Type: Application
    Filed: September 26, 2019
    Publication date: April 1, 2021
    Applicant: STMicroelectronics (Research & Development) Limited
    Inventors: Filip KAKLIN, Jeffrey M. RAYNOR
  • Patent number: 10955289
    Abstract: An electronic module includes an ambient light sensor and a proximity sensor. The ambient light sensor includes an ambient light photodetector. The proximity sensor includes an infrared photoemitter, a reference infrared photodetector and another infrared photodetector. The ambient light sensor is arranged in a stack over the proximity sensor with a position that allows infrared photons transmitted by the infrared photoemitter to be received by the reference infrared photodetector.
    Type: Grant
    Filed: April 8, 2019
    Date of Patent: March 23, 2021
    Assignees: STMicroelectronics (Research & Development) Limited, STMicroelectronics (Grenoble 2) SAS
    Inventors: William Halliday, Eric Saugier, Roy Duffy
  • Publication number: 20210080576
    Abstract: A distance from an apparatus to at least one object is determined by generating a first signal and generating light modulated by the first signal to be emitted from the apparatus. Light reflected by the at least one object is detected using a Time-of-flight detector array, wherein each array element of the Time-of-flight detector array generates an output signal from a series of photon counts over a number of consecutive non-overlapping time periods. The output signals are compared to the first signal to determine at least one signal phase difference. From this at least one signal phase difference a distance from the apparatus to the at least one object is determined.
    Type: Application
    Filed: November 6, 2020
    Publication date: March 18, 2021
    Applicant: STMicroelectronics (Research & Development) Limited
    Inventors: John Kevin MOORE, Neale DUTTON, Jeffrey M. RAYNOR
  • Patent number: 10950559
    Abstract: An electronic integrated circuit chip includes a semiconductor substrate with a front side and a back side. A first reflective shield is positioned adjacent the front side of the semiconductor substrate and a second reflective shield is positioned adjacent the back side of the semiconductor substrate. Photons are emitted by a photon source to pass through the semiconductor substrate and bounce off the first and second reflective shields to reach a photon detector at the front side of the semiconductor substrate. The detected photons are processed in order to determine whether to issue an alert indicating the existence of an attack on the electronic integrated circuit chip.
    Type: Grant
    Filed: June 10, 2019
    Date of Patent: March 16, 2021
    Assignees: STMicroelectronics (Rousset) SAS, STMicroelectronics (Research & Development) Limited
    Inventors: Mathieu Lisart, Bruce Rae
  • Patent number: 10950743
    Abstract: A transmit integrated circuit includes a light source configured to generate a beam of light. A receive integrated circuit includes a first photosensor. A transmit optic is mounted over the transmit and receive integrated circuits. The transmit optic is formed by a prismatic light guide and is configured to receive the beam of light. An annular body region of the transmit optic surrounds a central opening which is aligned with the first photosensor. The annular body region includes a first reflective surface defining the central opening and further includes a ring-shaped light output surface surrounding the central opening. Light is output from the ring-shaped light output surface in response to light which propagates within the prismatic light guide in response to the received beam of light and which reflects off the first reflective surface.
    Type: Grant
    Filed: May 2, 2019
    Date of Patent: March 16, 2021
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventors: Thineshwaran Gopal Krishnan, Roy Duffy
  • Patent number: 10948731
    Abstract: A diffractive optical element (DOE) is designed to implement both a collimation function with respect to an input divergent beam and a beam shaping function with respect to an output divergent beam. The phase designs of the collimation function and the beam shaping function are independently produced in the phase domain. These phase designs are then combined using a phase angle addition of the individual functions and wrapped between 0 and 2? radians. The diffractive surface of the DOE is then defined from the wrapped phase angle addition of the individual functions.
    Type: Grant
    Filed: July 17, 2018
    Date of Patent: March 16, 2021
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventor: James Peter Drummond Downing
  • Patent number: 10922590
    Abstract: An apparatus for performing object recognition includes an image camera to capture a first resolution image and a depth map camera to capture a second resolution depth map. The first resolution is greater than the second resolution. The apparatus is configured to perform object recognition based on the image and the depth map.
    Type: Grant
    Filed: February 9, 2018
    Date of Patent: February 16, 2021
    Assignee: STMICROELECTRONICS (RESEARCH & DEVELOPMENT) LIMITED
    Inventor: Jeffrey M. Raynor
  • Patent number: 10904049
    Abstract: In accordance with embodiments, a first counter of a plurality of counters of an apparatus receives a plurality of pulse width signals in the time domain. The first counter generates a first increment signal in the time domain from the plurality of pulse width signals based on a first row of a Discrete Transform matrix. A synchronizer of the apparatus receives the first increment signal. The synchronizer generates a first synchronized increment signal in the time domain from the first increment signal. A first accumulator of a plurality of accumulators of the apparatus receives the first synchronized increment signal. The first accumulator accumulates the first synchronized increment signal over a period of time to generate a first frequency domain signal.
    Type: Grant
    Filed: July 11, 2019
    Date of Patent: January 26, 2021
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventor: Filip Kaklin
  • Patent number: 10903313
    Abstract: A single photon avalanche diode based range detecting apparatus includes a reference array of single photon avalanche diodes configured to receive light from an illumination source via an internally coupled path. A return array of single photon avalanche diodes is configured to receive light from the illumination source via an external free space path. A calibration pulse generator is configured to generate a calibration signal pulse. Readout circuitry is configured to receive an output of the reference array via a reference signal path, an output of the return array via a return signal path, and an output of the calibration pulse generator via a calibration signal path. The readout circuitry is configured to determine a delay difference value between the reference signal path and the return signal path based on the output of the calibration pulse generator via the calibration signal path.
    Type: Grant
    Filed: June 30, 2017
    Date of Patent: January 26, 2021
    Assignee: STMICROELECTRONICS (RESEARCH & DEVELOPMENT) LIMITED
    Inventors: John Kevin Moore, Caixin Zhuang
  • Patent number: 10892757
    Abstract: A metal oxide semiconductor (MOS) transistor has a source terminal, a drain terminal, a gate terminal and a body terminal. The source terminal is connected to receive a supply voltage and the body terminal is connected to receive a reverse body bias voltage. A photovoltaic circuit has a first terminal connected to the source terminal of the MOS transistor and a second terminal connected to the body terminal of the MOS transistor. The photovoltaic circuit converts received photons from the environment to generate the reverse body bias voltage.
    Type: Grant
    Filed: November 25, 2019
    Date of Patent: January 12, 2021
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventor: Filip Kaklin
  • Patent number: 10890662
    Abstract: A distance from an apparatus to at least one object is determined by generating a first signal and generating light modulated by the first signal to be emitted from the apparatus. Light reflected by the at least one object is detected using a Time-of-flight detector array, wherein each array element of the Time-of-flight detector array generates an output signal from a series of photon counts over a number of consecutive non-overlapping time periods. The output signals are compared to the first signal to determine at least one signal phase difference. From this at least one signal phase difference a distance from the apparatus to the at least one object is determined.
    Type: Grant
    Filed: October 18, 2017
    Date of Patent: January 12, 2021
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventors: John Kevin Moore, Neale Dutton, Jeffrey M. Raynor
  • Patent number: 10878117
    Abstract: An electronic device includes a time-of-flight sensor configured to sense a distance between the electronic device and at least one object proximate the electronic device. Processing circuitry is coupled to the time-of-flight sensor and controls access to the electronic device based on the sensed distance. The electronic device may include a digital camera that the processing circuitry controls to perform facial or iris recognition utilizing the sensed distance from the time-of-flight sensor.
    Type: Grant
    Filed: March 18, 2019
    Date of Patent: December 29, 2020
    Assignees: STMicroelectronics, Inc., STMicroelectronics (Research & Development) Limited
    Inventors: Xiaoyong Yang, Rui Xiao, Duncan Hall
  • Publication number: 20200400792
    Abstract: A combining network for an array of SPAD devices includes: synchronous sampling circuits, wherein each synchronous sampling circuit is coupled to an output of a corresponding SPAD device and is configured to generate a pulse or an edge each time an event is detected; and a summation circuit coupled to an output of each of the synchronous sampling circuits and configured to count a number of pulses or edges to generate a binary output value.
    Type: Application
    Filed: June 11, 2020
    Publication date: December 24, 2020
    Applicant: STMicroelectronics (Research & Development) Limited
    Inventors: Sarrah Moiz PATANWALA, Bruce RAE, Neale DUTTON
  • Patent number: 10872995
    Abstract: An embodiment method of manufacturing an avalanche diode includes forming a first trench in a substrate material, filling the first trench with a first material that comprises a dopant, and causing the dopant to diffuse from the first trench to form part of a PN junction. An avalanche diode array can be formed to include a number of the avalanche diodes.
    Type: Grant
    Filed: March 28, 2019
    Date of Patent: December 22, 2020
    Assignee: STMICROELECTRONICS (RESEARCH & DEVELOPMENT) LIMITED
    Inventor: Laurence Stark
  • Publication number: 20200386888
    Abstract: A ranging system includes a first ranging unit with a first laser driver, a first control circuit generating a first trigger signal, and a first data interface with a first trigger transmitter transmitting the first trigger signal over a first data transmission line and a first calibration receiver receiving a first calibration signal over a second data transmission line. A second ranging unit includes a second laser driver, a second data interface with a second trigger receiver receiving the first trigger signal and a second calibration transmitter transmitting the first calibration signal, and a second control circuit generating the first calibration signal in response to receipt of the first trigger signal. The first control circuit determines an elapsed time between transmission of the first trigger signal and receipt of the first calibration signal. The determined elapsed time is used to synchronize activation of the first and second laser drivers.
    Type: Application
    Filed: June 5, 2019
    Publication date: December 10, 2020
    Applicant: STMicroelectronics (Research & Development) Limited
    Inventor: John Kevin MOORE
  • Publication number: 20200388987
    Abstract: An electronic device includes laser emitters, and a laser driver generating a laser drive signal for the laser emitters based upon a feedback control signal. A steering circuit selectively steers the laser drive signal to a different selected one of the plurality of laser emitters and prevents the laser drive signal from being steered to non-selected ones of the plurality of laser emitters, during each of a plurality of time periods. Control circuitry senses a magnitude of a current of the laser drive signal and generates the feedback control signal based thereupon. The feedback control signal is generated so as to cause the laser driver to generate the laser drive signal as having a current with a substantially constant magnitude.
    Type: Application
    Filed: June 3, 2020
    Publication date: December 10, 2020
    Applicant: STMicroelectronics (Research & Development) Limited
    Inventor: John Kevin MOORE
  • Patent number: 10839537
    Abstract: A camera module with a fixed near field focus is configured to capture a single image. That single image is segmented by an image divider a number of regions. A focus metric determiner then determines a focus metric for each of the regions. A depth map generator maps the focus metric into a depth value for each of the regions and combines the depth values to generate a depth map.
    Type: Grant
    Filed: May 10, 2016
    Date of Patent: November 17, 2020
    Assignee: STMicroelectronics (Research & Development) Limited
    Inventor: Duncan Hall