INPUT DEVICE WITH MEANS FOR ALTERING THE OPERATING MODE OF THE INPUT DEVICE
    4.
    发明申请
    INPUT DEVICE WITH MEANS FOR ALTERING THE OPERATING MODE OF THE INPUT DEVICE 有权
    具有用于改变输入装置的操作模式的装置的输入装置

    公开(公告)号:US20160026268A1

    公开(公告)日:2016-01-28

    申请号:US14337561

    申请日:2014-07-22

    IPC分类号: G06F3/038 G06F3/0354

    CPC分类号: G06F3/03543 G06F3/03547

    摘要: An input device for a computing device includes a first input sensor for receiving a first type of instructions associated with a first operating mode of the input device, the first type of instructions including moving the first input sensor with respect to a reference surface. The input device includes a second input sensor for receiving a second type of instructions associated with a second operating mode of the input device, the second type of instructions including moving an indicator with respect to an active surface of the input device provided with said second input sensor. The input device includes a control sensor adapted to detect the position of at least a portion of the hand of a user with respect to the input device. The control sensor is coupled to a controller adapted to allow the input device to operate in either the first or the second operating mode.

    摘要翻译: 用于计算设备的输入设备包括用于接收与输入设备的第一操作模式相关联的第一类型指令的第一输入传感器,第一类型的指令包括相对于参考表面移动第一输入传感器。 所述输入装置包括用于接收与所述输入装置的第二操作模式相关联的第二类型指令的第二输入传感器,所述第二类型的指令包括相对于设置有所述第二输入的输入装置的有效表面移动指示器 传感器。 输入装置包括适于检测用户相对于输入装置的手的至少一部分的位置的控制传感器。 控制传感器耦合到适于允许输入设备在第一或第二操作模式下操作的控制器。

    Thermal mitigation of a haptic element in a peripheral device

    公开(公告)号:US10969869B2

    公开(公告)日:2021-04-06

    申请号:US16553038

    申请日:2019-08-27

    发明人: Jacques Chassot

    摘要: A system comprising a host device configured to request a haptic effect from a peripheral device, the peripheral device configured to perform operations including: receiving a request from the host device to generate a haptic effect at a specified intensity; determining an operating range of a motor configured to generate the haptic effect on the peripheral device, where the operating range defines a maximum force that the motor can generate in a linear region of operation, and the operating range changes based on a temperature of the motor; scaling the specified intensity of the haptic effect based on the determined operating range of the motor; and controlling the operation of the motor to generate the haptic effect at the scaled specified intensity, where the scaling is performed by the peripheral device.

    Receiver configured to pair to multiple wireless devices
    6.
    发明授权
    Receiver configured to pair to multiple wireless devices 有权
    接收器配置为配对多个无线设备

    公开(公告)号:US08990438B2

    公开(公告)日:2015-03-24

    申请号:US13739728

    申请日:2013-01-11

    摘要: A computer system includes a receiver configured to pair with a set of peripheral devices and have active connections with a first subset of the peripheral devices and inactive connections with a second subset of the peripheral devices. The first and the second subsets of peripheral devices are subsets of the set of peripheral devices. If a select one of the peripheral devices in the inactive set of peripheral devices is operated, the receiver is configured to activate a connection with the select one of the peripheral devices in a latency period that is below human perception levels of the latency period.

    摘要翻译: 计算机系统包括被配置为与一组外围设备配对并且具有与外围设备的第一子集的活动连接以及与外围设备的第二子集的非活动连接的接收器。 外围设备的第一和第二子集是外围设备集合的子集。 如果在不活动的外围设备组中选择一个外围设备被操作,则接收机被配置为在等待时间段内等待周期的人感知级别之下激活与选择的一个外围设备的连接。

    THERMAL MITIGATION OF A HAPTIC ELEMENT IN A PERIPHERAL DEVICE

    公开(公告)号:US20210064136A1

    公开(公告)日:2021-03-04

    申请号:US16553038

    申请日:2019-08-27

    发明人: Jacques Chassot

    摘要: A system comprising a host device configured to request a haptic effect from a peripheral device, the peripheral device configured to perform operations including: receiving a request from the host device to generate a haptic effect at a specified intensity; determining an operating range of a motor configured to generate the haptic effect on the peripheral device, where the operating range defines a maximum force that the motor can generate in a linear region of operation, and the operating range changes based on a temperature of the motor; scaling the specified intensity of the haptic effect based on the determined operating range of the motor; and controlling the operation of the motor to generate the haptic effect at the scaled specified intensity, where the scaling is performed by the peripheral device.

    INPUT DEVICE FOR AR/VR APPLICATIONS
    8.
    发明申请

    公开(公告)号:US20190113966A1

    公开(公告)日:2019-04-18

    申请号:US16163346

    申请日:2018-10-17

    摘要: An AR/VR input device include a processor(s), an internal measurement unit (IMU), and a plurality of sensors configured to detect emissions received from a plurality of remote emitters. The processor(s) can be configured to: determine a time-of-flight (TOF) of the detected emissions, determine a first estimate of a position and orientation of the input device based on the TOF of a subset of the detected emissions and the particular locations of each of the plurality of sensors on the input device that are detecting the detected emissions, determine a second estimate of the position and orientation of the input device based on the measured acceleration and velocity from the IMU, and continuously update a calculated position and orientation of the input device within the AR/VR environment in real-time based on a Beyesian estimation (e.g., Extended Kalman filter) that utilizes the first estimate and second estimate.

    INPUT DEVICE FOR AR/VR APPLICATIONS

    公开(公告)号:US20210216135A1

    公开(公告)日:2021-07-15

    申请号:US17216012

    申请日:2021-03-29

    摘要: An AR/VR input device include a processor(s), an internal measurement unit (IMU), and a plurality of sensors configured to detect emissions received from a plurality of remote emitters. The processor(s) can be configured to: determine a time-of-flight (TOF) of the detected emissions, determine a first estimate of a position and orientation of the input device based on the TOF of a subset of the detected emissions and the particular locations of each of the plurality of sensors on the input device that are detecting the detected emissions, determine a second estimate of the position and orientation of the input device based on the measured acceleration and velocity from the IMU, and continuously update a calculated position and orientation of the input device within the AR/VR environment in real-time based on a Beyesian estimation (e.g., Extended Kalman filter) that utilizes the first estimate and second estimate.