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US Patent 11048329 Mid-air ultrasonic haptic interface for immersive computing environments

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Emerge
Emerge
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
110483290
Patent Inventor Names
Ravi Patel0
Sylvester Lee0
Jamie Hamilton0
Mauricio Teran0
Nathan Brummel0
Carmen Badea0
Isaac Castro0
Date of Patent
June 29, 2021
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Patent Application Number
156621590
Date Filed
July 27, 2017
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Patent Citations
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US Patent 10281553 Determining the orientation of objects in space
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US Patent 10459530 Cursor mode switching
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US Patent 10496175 Three-dimensional perceptions in haptic systems
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US Patent 10497358 Transducer driver
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US Patent 10531212 Acoustic transducers in haptic systems
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US Patent 10564799 Dynamic user interactions for display control and identifying dominant gestures
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US Patent 10565784 Systems and methods for authenticating a user according to a hand of the user moving in a three-dimensional (3D) space
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US Patent 10579156 Three dimensional (3D) modeling of a complex control object
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Patent Citations Received
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US Patent 11886639 Ultrahapticons
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US Patent 11550395 Mid-air haptic textures
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US Patent 11656686 Method and apparatus for modulating haptic feedback
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US Patent 11698605 Holographic reality system, multiview display, and method
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US Patent 11704983 Minimizing unwanted responses in haptic systems
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US Patent 11529650 Blocking plate structure for improved acoustic transmission efficiency
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US Patent 11714492 Three-dimensional perceptions in haptic systems
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US Patent 11715453 Acoustic transducer structures
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Patent Primary Examiner
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Jonathan A Boyd
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Patent abstract

The present disclosure concerns an ultrasound system for providing tactile mid-air haptic feedback. As described herein, various embodiments of the invention can create a precise mid-air tactile sensation in mid-air on a body part of a user through use of an array of ultrasonic emitters. The array produces steerable focal points of ultrasonic energy that provide sufficient radiation pressure to be felt by the skin of the user. Such an implementation allows for multiple points of contact with immersive computing environments in a variety of form factors. This implementation, too, allows for coverage of larger distances and provides for a wider range of interactions thereby allowing a user to extend an appendage into a broader workspace while providing for multiple points of or comprehensive sensation or interaction without sacrificing user comfort with respect to any such interaction.

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