Patents by Inventor Kevin Jiaming Wu
Kevin Jiaming Wu 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: 12697727Abstract: A robot has a controller and a sensor. The sensor is communicatively coupled to the controller. The controller includes a contact response system. A safety response of the contact response system is activated for the sensor. A method of operation of the robot includes detecting, by the sensor, a contact between the robot and a human, the contact resulting from a motion of the robot, and determining, by the controller, whether the contact between the robot and the human is an expected or unexpected contact. In response to determining the contact between the robot and the human is an expected contact, the safety response is deactivated for the sensor to allow the robot to proceed with its motion uninterrupted. In response to determining the contact between the robot and the human is an unexpected contact, the contact response system causes the robot to interrupt the motion of the robot.Type: GrantFiled: April 19, 2024Date of Patent: August 4, 2026Assignee: Sanctuary Cognitive Systems CorporationInventors: Connor Richard Shannon, Kevin Jiaming Wu
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Patent number: 12172297Abstract: A mechanical hand mimics a human hand having similar degrees of freedom and sensory abilities while appearing visually similar to human hand. The mechanical hand comprises a mechanical hand skeleton and resilient elastomer (e.g., silicone) skin that fully encloses the mechanical hand skeleton. The mechanical hand skeleton may advantageously be molded directly into the resilient elastomer (e.g., silicone) skin such that the hand appears, moves, and feels very similar to a real human hand. The mechanical hand may have applications in robotics, for example as an end-of-arm tool or end effector, or may have other applications. Robotic applications may include prosthetics applications.Type: GrantFiled: March 30, 2023Date of Patent: December 24, 2024Assignee: Sanctuary Cognitive Systems CorporationInventors: Hatef Khadivinassab, Connor Richard Shannon, Kevin Jiaming Wu, Matthew Steven Hill
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Publication number: 20240351212Abstract: A robot has a controller and a sensor. The sensor is communicatively coupled to the controller. The controller includes a contact response system. A safety response of the contact response system is activated for the sensor. A method of operation of the robot includes detecting, by the sensor, a contact between the robot and a human, the contact resulting from a motion of the robot, and determining, by the controller, whether the contact between the robot and the human is an expected or unexpected contact. In response to determining the contact between the robot and the human is an expected contact, the safety response is deactivated for the sensor to allow the robot to proceed with its motion uninterrupted. In response to determining the contact between the robot and the human is an unexpected contact, the contact response system causes the robot to interrupt the motion of the robot.Type: ApplicationFiled: April 19, 2024Publication date: October 24, 2024Inventors: Connor Richard Shannon, Kevin Jiaming Wu
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Publication number: 20240351211Abstract: A robot has a controller and a sensor. The sensor is communicatively coupled to the controller. The controller includes a contact response system. A safety response of the contact response system is activated for the sensor. A method of operation of the robot includes detecting, by the sensor, a contact between the robot and a human, the contact resulting from a motion of the robot, and determining, by the controller, whether the contact between the robot and the human is an expected or unexpected contact. In response to determining the contact between the robot and the human is an expected contact, the safety response is deactivated for the sensor to allow the robot to proceed with its motion uninterrupted. In response to determining the contact between the robot and the human is an unexpected contact, the contact response system causes the robot to interrupt the motion of the robot.Type: ApplicationFiled: April 19, 2024Publication date: October 24, 2024Inventors: Connor Richard Shannon, Kevin Jiaming Wu
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Patent number: 12066347Abstract: Tactile sensing using both coarse and fine tactile sensors. A coarse tactile sensor having a first sensitive area at least partially encompasses or overlies a plurality of fine tactile sensors, each having a respective sensitive area smaller than the first sensitive area. The coarse tactile sensor(s) and fine tactile sensors may be carried on a same circuit board or separate circuit boards. Processor(s) circuits are communicatively coupled to the coarse and/or fine tactile sensors. Information indicative of at least a presence or absence of force or pressure at a given location monitored by the respective tactile sensor, and/or a measure of the force or pressure or strain is collected. Such may be mounted to a backing, and optionally covered or encased in an artificial skin. Collecting sensor readings employs both coarse and fine tactile sensors, sampling corresponding fine tactile sensors in response to detection by a coarse tactile sensor.Type: GrantFiled: July 28, 2021Date of Patent: August 20, 2024Assignee: Sanctuary Cognitive Systems CorporationInventors: Kevin Jiaming Wu, Connor Richard Shannon
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Publication number: 20230302659Abstract: In an implementation, a position transducer includes a printed circuit board (PCB) and a wiper in sliding contact with the PCB. The PCB includes a first and a second connector pad, and a conductive trace comprising two legs. One leg has an end electrically communicatively coupled to the first connector pad, and the other leg has an end electrically communicatively coupled to the second connector pad. The wiper includes a first blade electrically communicatively coupled to the first leg and a second blade electrically communicatively coupled to the second leg. In operation, an electrical path length of a conductive path between the first and the second connector pad depends, at least in part, on a relative position of the PCB and the wiper. One or more of the position transducers can be used to determine a relative position of actuatable components of a robotic digit.Type: ApplicationFiled: March 24, 2023Publication date: September 28, 2023Inventors: Joshua Lee, Connor Richard Shannon, Kevin Jiaming Wu
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Publication number: 20230302660Abstract: In an implementation, a position transducer includes a printed circuit board (PCB) and a wiper in sliding contact with the PCB. The PCB includes a first and a second connector pad, and a conductive trace comprising two legs. One leg has an end electrically communicatively coupled to the first connector pad, and the other leg has an end electrically communicatively coupled to the second connector pad. The wiper includes a first blade electrically communicatively coupled to the first leg and a second blade electrically communicatively coupled to the second leg. In operation, an electrical path length of a conductive path between the first and the second connector pad depends, at least in part, on a relative position of the PCB and the wiper. One or more of the position transducers can be used to determine a relative position of actuatable components of a robotic digit.Type: ApplicationFiled: March 24, 2023Publication date: September 28, 2023Inventors: Joshua Lee, Connor Richard Shannon, Kevin Jiaming Wu
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Publication number: 20230234242Abstract: A mechanical hand mimics a human hand having similar degrees of freedom and sensory abilities while appearing visually similar to human hand. The mechanical hand comprises a mechanical hand skeleton and resilient elastomer (e.g., silicone) skin that fully encloses the mechanical hand skeleton. The mechanical hand skeleton may advantageously be molded directly into the resilient elastomer (e.g., silicone) skin such that the hand appears, moves, and feels very similar to a real human hand. The mechanical hand may have applications in robotics, for example as an end-of-arm tool or end effector, or may have other applications. Robotic applications may include prosthetics applications.Type: ApplicationFiled: March 30, 2023Publication date: July 27, 2023Inventors: Hatef Khadivinassab, Connor Richard Shannon, Kevin Jiaming Wu, Matthew Steven Hill
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Patent number: 11639004Abstract: A mechanical hand mimics a human hand having similar degrees of freedom and sensory abilities while appearing visually similar to human hand. The mechanical hand comprises a mechanical hand skeleton and resilient elastomer (e.g., silicone) skin that fully encloses the mechanical hand skeleton. The mechanical hand skeleton may advantageously be molded directly into the resilient elastomer (e.g., silicone) skin such that the hand appears, moves, and feels very similar to a real human hand. The mechanical hand may have applications in robotics, for example as an end-of-arm tool or end effector, or may have other applications. Robotic applications may include prosthetics applications.Type: GrantFiled: November 16, 2020Date of Patent: May 2, 2023Assignee: Sanctuary Cognitive Systems CorporationInventors: Hatef Khadivinassab, Connor Richard Shannon, Kevin Jiaming Wu, Matthew Steven Hill
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Publication number: 20220034738Abstract: Tactile sensing using both coarse and fine tactile sensors. A coarse tactile sensor having a first sensitive area at least partially encompasses or overlies a plurality of fine tactile sensors, each having a respective sensitive area smaller than the first sensitive area. The coarse tactile sensor(s) and fine tactile sensors may be carried on a same circuit board or separate circuit boards. Processor(s) circuits are communicatively coupled to the coarse and/or fine tactile sensors. Information indicative of at least a presence or absence of force or pressure at a given location monitored by the respective tactile sensor, and/or a measure of the force or pressure or strain is collected. Such may be mounted to a backing, and optionally covered or encased in an artificial skin. Collecting sensor readings employs both coarse and fine tactile sensors, sampling corresponding fine tactile sensors in response to detection by a coarse tactile sensor.Type: ApplicationFiled: July 28, 2021Publication date: February 3, 2022Inventors: Kevin Jiaming Wu, Connor Richard Shannon
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Publication number: 20210307170Abstract: A flexible modular skin sensor array can cover any surface of a robot. The skin sensor array includes a flexible mesh and a set of modular sensor panels that attached to the mesh. The skin sensor array underlies or is molded inside a skin membrane (e.g., silicone), and can flex and stretch with the skin. Each modular sensor panel has a communications chip and one or more sensors. A master controller provides communications with the modular sensor panels through a shared bus. Modular sensor panels can fail without affecting the network. The flexible mesh and modular sensor panels may be made of flexible PCB, to accommodate movement of the skin. A set of convoluted bridges connect locations at which the modular sensor panels attach, allowing for flexing and stretching without tearing of the flexible mesh. The redundancy allows some of the connection leads to fail without affecting communications.Type: ApplicationFiled: March 30, 2021Publication date: September 30, 2021Inventors: Kevin Jiaming Wu, Connor Richard Shannon
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Publication number: 20210146553Abstract: A mechanical hand mimics a human hand having similar degrees of freedom and sensory abilities while appearing visually similar to human hand. The mechanical hand comprises a mechanical hand skeleton and resilient elastomer (e.g., silicone) skin that fully encloses the mechanical hand skeleton. The mechanical hand skeleton may advantageously be molded directly into the resilient elastomer (e.g., silicone) skin such that the hand appears, moves, and feels very similar to a real human hand. The mechanical hand may have applications in robotics, for example as an end-of-arm tool or end effector, or may have other applications. Robotic applications may include prosthetics applications.Type: ApplicationFiled: November 16, 2020Publication date: May 20, 2021Inventors: Hatef Khadivinassab, Connor Richard Shannon, Kevin Jiaming Wu, Matthew Steven Hill