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US Patent 11883847 Blocking plate structure for improved acoustic transmission efficiency

Patent 11883847 was granted and assigned to Ultraleap on January, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Current Assignee
Ultraleap
Ultraleap
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
118838470
Patent Inventor Names
Adam John Robert Jackson0
Amaru Daniel Araya-Williams0
Benjamin John Oliver Long0
Justin Rorke Buckland0
Brian Kappus0
Date of Patent
January 30, 2024
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Patent Application Number
180656030
Date Filed
December 13, 2022
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Patent Citations
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US Patent 10915177 Three-dimensional perceptions in haptic systems
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US Patent 10943578 Driving techniques for phased-array systems
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US Patent 11048329 Mid-air ultrasonic haptic interface for immersive computing environments
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US Patent 11169610 Tracking techniques in haptic systems
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US Patent 11189140 Calibration and detection techniques in haptic systems
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US Patent 11204644 Method and apparatus for modulating haptic feedback
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US Patent 11276281 Algorithm improvements in a haptic system
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US Patent 11531395 Haptic effects from focused acoustic fields
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...
Patent Citations Received
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US Patent 11980915 Ultrasonic transmission structure
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Patent Primary Examiner
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Sunita Joshi
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CPC Code
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H04R 1/2811
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H04R 1/025
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Patent abstract

An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity. The transducing element may be an actuator which generates motion of an end wall in a direction perpendicular to the plane of the cavity to excite acoustic oscillations in the fluid in the cavity, and the cavity geometry and resonant amplification increase the amplitude of the resulting pressure oscillation. The cavity side wall or end walls contain at least one aperture positioned away from the center of the cavity to allow pressure waves to propagate into the surrounding acoustic medium.

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