Patents by Inventor Paul Stokes
Paul Stokes 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).
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Patent number: 12379467Abstract: Techniques are disclosed for systems and methods to provide wildlife feeding flock detection using a remote sensing imagery system. A remote sensing imagery system includes a radar assembly mounted to a mobile structure and a coupled logic device. The logic device is configured to receive radar returns corresponding to a detected target, determine a radial velocity spectrum associated with the detected target based, at least in part, on the received radar returns, and determine a probability the detected target includes a feeding flock based, at least in part, on the determined radial velocity spectrum. The logic device may generate radar image data based on the received radar returns, the determined radial velocity spectrum, and/or the probability the detected target includes the feeding flock. Subsequent user input and/or the sensor data may be used to adjust a steering actuator, a propulsion system thrust, and/or other operational systems of the mobile structure.Type: GrantFiled: October 25, 2021Date of Patent: August 5, 2025Assignee: Raymarine UK LimitedInventors: Paul Stokes, Richard James Jales, Nicholas Lester St. Hill, Philippe Aston, Adam Murphy, Mark Johnson, Mark C. Rivers, Peter A. A. Stewart, Paul S. Chittenden, Thomas Bonfield
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Publication number: 20250196977Abstract: Techniques are disclosed for systems and methods for video based sensor fusion with respect to mobile structures. A mobile structure may include at least one imaging module and multiple navigational sensors and/or receive navigational data from various sources. A navigational database may be generated that includes data from the imaging module, navigational sensors, and/or other sources. Aspects of the navigational database may then be used to generate an integrated model, forecast weather conditions, warn of dangers, identify hard to spot items, and generally aid in the navigation of the mobile structure.Type: ApplicationFiled: February 28, 2025Publication date: June 19, 2025Inventors: Mark Johnson, Richard Jales, Gordon Pope, Christopher Daniel Gatland, Paul Stokes, Aaron Ridout, Chris Jones, Jay E. Robinson, Neil R. Owens, Peter Long
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Bulk acoustic wave filter structure with conductive bridge forming electrical loop with an electrode
Patent number: 12255614Abstract: Disclosed is a Bulk Acoustic Wave (BAW) filter structure with a conductive bridge forming an electrical loop with an electrode for reduced electrical losses. In exemplary aspects disclosed herein, the BAW filter structure includes a transducer with electrodes, a piezoelectric layer between the electrodes, and at least one conductive bridge offset from at least a portion of one of the electrodes by an insulating volume. The conductive bridge forms a first electrical loop between a medial end and a distal end of the electrode. Such a configuration reduces electrical resistance, heat resistance, and/or ohmic losses for improved electrical loss of the BAW filter structure.Type: GrantFiled: November 10, 2022Date of Patent: March 18, 2025Assignee: Qorvo US, Inc.Inventors: Yazid Yusuf, Mohammad J. Modarres-Zadeh, Andreas Tag, Paul Stokes, Robert Aigner, Gernot Fattinger -
Patent number: 12240571Abstract: Techniques are disclosed for systems and methods for video based sensor fusion with respect to mobile structures. A mobile structure may include at least one imaging module and multiple navigational sensors and/or receive navigational data from various sources. A navigational database may be generated that includes data from the imaging module, navigational sensors, and/or other sources. Aspects of the navigational database may then be used to generate an integrated model, forecast weather conditions, warn of dangers, identify hard to spot items, and generally aid in the navigation of the mobile structure.Type: GrantFiled: March 19, 2021Date of Patent: March 4, 2025Assignee: FLIR Belgium BVBAInventors: Mark Johnson, Richard Jales, Gordon Pope, Christopher Daniel Gatland, Paul Stokes, Aaron Ridout, Chris Jones, Jay E. Robinson, Neil R. Owens, Peter Long
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BULK ACOUSTIC WAVE FILTER STRUCTURE WITH CONDUCTIVE BRIDGE FORMING ELECTRICAL LOOP WITH AN ELECTRODE
Publication number: 20250062743Abstract: Disclosed is a Bulk Acoustic Wave (BAW) filter structure with a conductive bridge forming an electrical loop with an electrode for reduced electrical losses. In exemplary aspects disclosed herein, the BAW filter structure includes a transducer with electrodes, a piezoelectric layer between the electrodes, and at least one conductive bridge offset from at least a portion of one of the electrodes by an insulating volume. The conductive bridge forms a first electrical loop between a medial end and a distal end of the electrode. Such a configuration reduces electrical resistance, heat resistance, and/or ohmic losses for improved electrical loss of the BAW filter structure.Type: ApplicationFiled: November 7, 2024Publication date: February 20, 2025Inventors: Yazid Yusuf, Mohammad J. Modarres-Zadeh, Andreas Tag, Paul Stokes, Robert Aigner, Gernot Fattinger -
Patent number: 12231109Abstract: The disclosure is directed to an electronic device with a solder interconnect and multiple material encapsulant. The electronic device includes a die last assembly with the die assembled to an electronic packaging substrate by a solder interconnect. At least a portion of a first dielectric material and the die are milled or ground, with a second dielectric material applied over an exposed portion of the die. A shield is then positioned over and electrically insulated from the die. Accordingly, such a configuration reduces a thickness or height of an electronic device with shielding and a die last assembly.Type: GrantFiled: June 17, 2021Date of Patent: February 18, 2025Assignee: Qorvo US, Inc.Inventors: Charles E. Carpenter, Howard Terry Glascock, Paul Stokes, Thomas Scott Morris
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Patent number: 12081194Abstract: Bulk acoustic wave (BAW) resonators and particularly top electrodes with step arrangements for BAW resonators are disclosed. Top electrodes on piezoelectric layers are disclosed that include a border (BO) region with a dual-step arrangement where an inner step and an outer step are formed with increasing heights toward peripheral edges of the top electrode. Dielectric spacer layers may be provided between the outer steps and the piezoelectric layer. Passivation layers are disclosed that extend over the top electrode either to peripheral edges of the piezoelectric layer or that are inset from peripheral edges of the piezoelectric layer. Piezoelectric layers may be arranged with reduced thickness portions in areas that are uncovered by top electrodes. BAW resonators as disclosed herein are provided with high quality factors and suppression of spurious modes while also providing weakened BO modes that are shifted farther away from passbands of such BAW resonators.Type: GrantFiled: March 29, 2023Date of Patent: September 3, 2024Assignee: Qorvo US, Inc.Inventors: Alireza Tajic, Paul Stokes, Robert Aigner
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Publication number: 20240267022Abstract: Bulk acoustic wave (BAW) resonators and particularly top electrodes with step arrangements for BAW resonators are disclosed. Top electrodes on piezoelectric layers are disclosed that include a border (BO) region with a dual-step arrangement where an inner step and an outer step are formed with increasing heights toward peripheral edges of the top electrode. Dielectric spacer layers may be provided between the outer steps and the piezoelectric layer. Passivation layers are disclosed that extend over the top electrode either to peripheral edges of the piezoelectric layer or that are inset from peripheral edges of the piezoelectric layer. Piezoelectric layers may be arranged with reduced thickness portions in areas that are uncovered by top electrodes. BAW resonators as disclosed herein are provided with high quality factors and suppression of spurious modes while also providing weakened BO modes that are shifted farther away from passbands of such BAW resonators.Type: ApplicationFiled: April 17, 2024Publication date: August 8, 2024Inventors: Alireza Tajic, Paul Stokes, Robert Aigner
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Publication number: 20240258039Abstract: Tunable capacitors based on scandium aluminum nitride (ScAlN) are disclosed. In one aspect, a tunable capacitor or varactor may be formed from a ferroelectric material. More particularly, the ferroelectric material may be formed from ScAlN. The permittivity of the ScAlN material may be adjusted using a direct current (DC) electric field applied to the material. Tunable capacitors or varactors have myriad uses in wireless communication systems, such as being used in filters or transformers. Further, use of ScAlN allows resonators and varactors to be formed on the same die or wafer using the same process flow, thereby reducing cost, fabrication complexity, and also potentially reducing the overall size of the circuit.Type: ApplicationFiled: October 24, 2023Publication date: August 1, 2024Inventors: Milad Zolfagharloo Koohi, Nadim Khlat, Paul Stokes
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Patent number: 12052010Abstract: The present disclosure relates to a Bulk Acoustic Wave (BAW) device with a substantially symmetrical structure in a vertical direction. The disclosed BAW device includes a main device region having a top electrode, a bottom electrode, and a piezoelectric layer sandwiched between the top electrode and the bottom electrode, a bottom reflector section underneath the bottom electrode, a bottom substrate underneath the bottom reflector section, a top reflector section over the top electrode, and a top substrate over the bottom reflector section. Herein, the bottom reflector section, the bottom substrate, the top reflector section, and the top substrate are configured so that a neutral plane of the BAW device is positioned at a center of the piezoelectric layer.Type: GrantFiled: July 9, 2021Date of Patent: July 30, 2024Assignee: Qorvo US, Inc.Inventors: Gernot Fattinger, Michael Fattinger, Paul Stokes
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Publication number: 20240213956Abstract: A ferroelectric acoustic resonator structure is provided. The tunable ferroelectric acoustic resonator structure is configured to resonate in a series resonance frequency to pass a signal from a signal input to a signal output and block the signal in a parallel resonance frequency by presenting an equivalent parallel capacitance between the signal input and the signal output. The series resonance frequency can be tuned by applying a voltage to polarize the tunable ferroelectric acoustic resonator structure. However, the voltage can also cause an increase in the equivalent parallel capacitance to therefore shift the parallel resonance frequency toward the series resonance frequency. Herein, the tunable ferroelectric acoustic resonator structure is configured to reduce the equivalent parallel capacitance that is increased when tuning the series resonance frequency.Type: ApplicationFiled: November 30, 2023Publication date: June 27, 2024Inventors: Nadim Khlat, Milad Zolfagharloo Koohi, Paul Stokes
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Patent number: 11733699Abstract: Techniques are disclosed for systems and methods to provide perimeter ranging for navigation of mobile structures. A navigation control system includes a logic device, a perimeter ranging system, one or more actuators/controllers, and modules to interface with users, sensors, actuators, and/or other elements of a mobile structure. The logic device is configured to receive perimeter sensor data from ultrasonic perimeter ranging sensor assemblies of the perimeter ranging system and generate an obstruction map based on the received perimeter sensor data. The logic device determines a range to and/or a relative velocity of a navigation hazard based on the received perimeter sensor data. The logic device determines navigation control signals based on the range and/or relative velocity of the navigation hazard. Control signals may be displayed to a user and/or used to adjust a steering actuator, a propulsion system thrust, and/or other operational systems of the mobile structure.Type: GrantFiled: September 3, 2020Date of Patent: August 22, 2023Assignee: FLIR Belgium BVBAInventors: Mark Johnson, Neil Millerchip, Kajetan Dworski, Paul Stokes
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Patent number: 11722119Abstract: Bulk acoustic wave (BAW) resonators, and particularly top electrodes with step arrangements for BAW resonators are disclosed. Top electrodes on piezoelectric layers are disclosed that include a border (BO) region with a dual-step arrangement where an inner step and an outer step are formed with increasing heights toward peripheral edges of the top electrode. Dielectric spacer layers may be provided between the outer steps and the piezoelectric layer. Passivation layers are disclosed that extend over the top electrode either to peripheral edges of the piezoelectric layer or that are inset from peripheral edges of the piezoelectric layer. Piezoelectric layers may be arranged with reduced thickness portions in areas that are uncovered by top electrodes. BAW resonators as disclosed herein are provided with high quality factors and suppression of spurious modes while also providing weakened BO modes that are shifted farther away from passbands of such BAW resonators.Type: GrantFiled: August 24, 2022Date of Patent: August 8, 2023Assignee: Qorvo US, Inc.Inventors: Alireza Tajic, Paul Stokes, Robert Aigner
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Publication number: 20230231535Abstract: Bulk acoustic wave (BAW) resonators and particularly top electrodes with step arrangements for BAW resonators are disclosed. Top electrodes on piezoelectric layers are disclosed that include a border (BO) region with a dual-step arrangement where an inner step and an outer step are formed with increasing heights toward peripheral edges of the top electrode. Dielectric spacer layers may be provided between the outer steps and the piezoelectric layer. Passivation layers are disclosed that extend over the top electrode either to peripheral edges of the piezoelectric layer or that are inset from peripheral edges of the piezoelectric layer. Piezoelectric layers may be arranged with reduced thickness portions in areas that are uncovered by top electrodes. BAW resonators as disclosed herein are provided with high quality factors and suppression of spurious modes while also providing weakened BO modes that are shifted farther away from passbands of such BAW resonators.Type: ApplicationFiled: March 29, 2023Publication date: July 20, 2023Inventors: Alireza Tajic, Paul Stokes, Robert Aigner
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Publication number: 20230223922Abstract: The present disclosure relates to a Bulk Acoustic Wave (BAW) resonator, which includes a bottom electrode, a top electrode structure, and a ferroelectric layer sandwiched in between. Herein, the ferroelectric layer is formed of a ferroelectric material, which has a box-shape polarization-electric field (P-E) curve. The ferroelectric layer includes a ferroelectric border (BO) portion positioned at a periphery of the ferroelectric layer and a ferroelectric central portion surrounded by the ferroelectric BO portion. The ferroelectric BO portion has a first polarization and a first electromechanical coupling coefficient, and the ferroelectric central portion has a second polarization and a second electromechanical coupling coefficient. An absolute value of the first polarization is less than an absolute value of the second polarization, and the first electromechanical coupling coefficient is less than the second electromechanical coupling coefficient.Type: ApplicationFiled: January 5, 2023Publication date: July 13, 2023Inventors: Milad Zolfagharloo Koohi, Gernot Fattinger, Paul Stokes, Ralph Rothemund, Jyothi Swaroop Sadhu, Istvan Veres
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Publication number: 20230215164Abstract: Techniques are disclosed for systems and methods to provide remote sensing imagery for mobile structures. A remote sensing imagery system includes a radar assembly mounted to a mobile structure and a coupled logic device. The radar assembly includes an imaging system coupled to or within the radar assembly and configured to provide image data associated with the radar assembly. The logic device is configured to receive radar returns corresponding to a detected target from the radar assembly and image data corresponding to the radar returns from the imaging system, and then generate radar image data based on the radar returns and the image data. Subsequent user input and/or the sensor data may be used to adjust a steering actuator, a propulsion system thrust, and/or other operational systems of the mobile structure.Type: ApplicationFiled: February 23, 2023Publication date: July 6, 2023Inventors: Paul Stokes, Richard James Jales, Adam Murphy, Mark Johnson, Mark C. Rivers, Peter A.A. Stewart, Paul S. Chittendon, Thomas Bonfield
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Patent number: 11624822Abstract: A method for providing enhanced sonar images includes ensonifying a target column of water with sonar beams corresponding to pulses of continuous wave (CW) and pulse compression (FM) signals. Received acoustic returns are processed to generate sonar image data corresponding to the CW signals and the FM signals. The CW and FM sonar image data are then displayed contemporaneously such that one sonar image data set overlays another. Techniques are also disclosed to provide situational imagery. A pilot display system includes a user interface, a logic device, and a speed sensor mounted to a mobile structure. The user interface is configured to receive user input and provide user feedback, and the logic device is configured to receive a speed of the mobile structure from the speed sensor, generate corresponding situational image data, and render the situational image data via at least one display of the user interface.Type: GrantFiled: April 21, 2017Date of Patent: April 11, 2023Assignee: Teledyne FLIR, LLCInventors: Paul Stokes, Mark Rivers
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BULK ACOUSTIC WAVE FILTER STRUCTURE WITH CONDUCTIVE BRIDGE FORMING ELECTRICAL LOOP WITH AN ELECTRODE
Publication number: 20230074357Abstract: Disclosed is a Bulk Acoustic Wave (BAW) filter structure with a conductive bridge forming an electrical loop with an electrode for reduced electrical losses. In exemplary aspects disclosed herein, the BAW filter structure includes a transducer with electrodes, a piezoelectric layer between the electrodes, and at least one conductive bridge offset from at least a portion of one of the electrodes by an insulating volume. The conductive bridge forms a first electrical loop between a medial end and a distal end of the electrode. Such a configuration reduces electrical resistance, heat resistance, and/or ohmic losses for improved electrical loss of the BAW filter structure.Type: ApplicationFiled: November 10, 2022Publication date: March 9, 2023Inventors: Yazid Yusuf, Mohammad J. Modarres-Zadeh, Andreas Tag, Paul Stokes, Robert Aigner, Gernot Fattinger -
Patent number: 11598871Abstract: Techniques are disclosed for systems and methods to provide accurate and compact three dimensional (3D) capable multichannel sonar systems for mobile structures. A 3D capable multichannel sonar system includes a multichannel transducer and associated processing and control electronics and optionally orientation and/or position sensors disposed substantially within the housing of a sonar transducer assembly. The multichannel transducer includes multiple transmission and/or receive channels/transducer elements. The transducer assembly is configured to support and protect the multichannel transducer and associated electronics and sensors, to physically and/or adjustably couple to a mobile structure, and/or to provide a simplified interface to other systems coupled to the mobile structure. Resulting sonar data and/or imagery may be displayed to a user and/or used to adjust a steering actuator, a propulsion system thrust, and/or other operational systems of the mobile structure.Type: GrantFiled: May 11, 2021Date of Patent: March 7, 2023Assignee: FLIR Belgium BVBAInventor: Paul Stokes
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Publication number: 20230009535Abstract: Techniques are disclosed for systems and methods to provide high resolution interpolation of arrival direction of echo return signals using an active mills cross arrangement, such as in sonar or other ranging sensor systems. A system may include an active mills cross arrangement with high resolution interpolation of echo returns in two planes. The active mills cross arrangement may include a transmitter configured to emit one or more signals, a first line array including a first plurality of elements defining a first plane, and a second line array including a second plurality of elements defining a second plane orthogonal to the first plane. At least one of the first line array and the second line array may be configured to receive echo returns of the emitted signals from one or more objects or targets.Type: ApplicationFiled: December 18, 2020Publication date: January 12, 2023Inventor: Paul Stokes