DETERMINATIONS OF CHARACTERISTICS FROM BIOMETRIC SIGNALS

    公开(公告)号:WO2022055474A1

    公开(公告)日:2022-03-17

    申请号:PCT/US2020/049694

    申请日:2020-09-08

    Abstract: An example system includes a plurality of biometric sensors. The system also includes a first classifier engine to produce a first latent space representation of a first signal from a first biometric sensor of the plurality of biometric sensors. The system includes a second classifier engine to produce a second latent space representation of a second signal from a second biometric sensor of the plurality of biometric sensors. The system includes an attention engine to weight the first latent space representation and the second latent space representation based on correlation among latent space representations. The system includes a final classifier engine to determine a characteristic of a user based on the weighted first and second latent space representations.

    MODEL GENERATION BASED ON SKETCH INPUT
    4.
    发明申请

    公开(公告)号:WO2019240749A1

    公开(公告)日:2019-12-19

    申请号:PCT/US2018/036840

    申请日:2018-06-11

    Abstract: An example system includes a sketch interface to receive a sketch input from a user, an object model reservoir to store models of objects, a generator to generate additional models of objects, and a sample matching portion. The additional models generated by the generator are to be added to the object model reservoir. The sample matching portion is to select at least one matched object model from the reservoir to match to the sketch input from the user. The generator is to generate the additional models based on the matched object model.

    NONINVASIVE BLOOD MONITORING EAR BUD
    5.
    发明申请

    公开(公告)号:WO2019117966A1

    公开(公告)日:2019-06-20

    申请号:PCT/US2017/066852

    申请日:2017-12-15

    Abstract: A noninvasive blood monitoring earbud may include a chamber sized for insertion into an ear canal, wherein the chamber is formed by an outer wall and at least a portion of the outer wall is flexible. Earbud may further include a pressure adjuster, an optical emitter and an optical detector. The pressure adjuster is to exert an adjustable pressure against a surface of the ear canal. The optical emitter is to direct light through the outer wall. The optical detector is to output signals in response to receiving the light reflected from the surface of the ear canal through the outer wall.

    CALCULATION OF LEFT AND RIGHT BINAURAL SIGNALS FOR OUTPUT

    公开(公告)号:WO2022093162A1

    公开(公告)日:2022-05-05

    申请号:PCT/US2020/057274

    申请日:2020-10-26

    Abstract: For each of a number of screen locations respectively corresponding to discrete audio signals, left and right transfer functions are generated using a machine learning model. The left and right transfer functions can take into account a head orientation of a user relative to a display screen having the screen locations. To each discrete audio signal, the left and right transfer functions for the screen location corresponding to the discrete audio signal are applied to respectively generate left and right audio signals corresponding to the discrete audio signal. Left and right binaural signals are calculated by respectively adding together the left and right audio signals corresponding to the discrete audio signals. The left and right binaural signals can be output on left and right speakers, respectively, which may be left and right headphone speakers of headphones that the user is wearing.

    3D-PRINTED COMPONENTS WITH RFID CONNECTION DETECTION

    公开(公告)号:WO2021167716A1

    公开(公告)日:2021-08-26

    申请号:PCT/US2021/013075

    申请日:2021-01-12

    Abstract: Systems and methods are described herein for detecting connections between components, such as 3D-printed components, using RFID tags, readers, and/or writers. For example, an RFID reader may read an identification code from an RFID tag that is at least partially 3D-printed as part of a first 3D-printed component to verify the connection to a second 3D-printed component. In various examples, the RFID reader may detect different identification codes depending on whether the first 3D-printed component is correctly connected to the second 3D-printed component, incorrectly connected to the second 3D-printed component, and/or connected to the second 3D-printed component in the past.

    EXTENDED REALITY ADJUSTMENTS BASED ON PHYSIOLOGICAL MEASUREMENTS

    公开(公告)号:WO2020251567A1

    公开(公告)日:2020-12-17

    申请号:PCT/US2019/036794

    申请日:2019-06-12

    Abstract: In example implementations, an apparatus is provided. The apparatus includes a physiological sensor, a memory, and a processor. The physiological sensor is to measure a physiological parameter. The memory is to store an extended reality application and a baseline level for the physiological parameter. The processor is in communication with the physiological sensor and the memory. The processor is to execute the extended reality application. In response to the physiological parameter exceeding the baseline level by a difference threshold, the processor is to adjust the extended reality application.

    EXTENDED REALITY GRASP CONTROLLER
    10.
    发明申请

    公开(公告)号:WO2020251566A1

    公开(公告)日:2020-12-17

    申请号:PCT/US2019/036792

    申请日:2019-06-12

    Abstract: In example implementations, an apparatus is provided. The apparatus includes a body portion and a plurality of legs movably coupled to the body portion. The body portion is to rest on a backside of a hand of a user. Each one of the plurality of legs include a curved portion to fit between fingers of a user. Respective ends of the plurality of legs are to contact a palm of the user.

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