MOTION-BASED LENTICULAR IMAGE DISPLAY
    1.
    发明申请
    MOTION-BASED LENTICULAR IMAGE DISPLAY 审中-公开
    基于运动的图像显示

    公开(公告)号:US20150213784A1

    公开(公告)日:2015-07-30

    申请号:US14164046

    申请日:2014-01-24

    Abstract: The display of images, such as lenticular images, in a limited display space can be aided through the use of motion-based control, whereby a user can rotate and/or translate a computing device in order to cause different views of a lenticular image to be displayed. Sensors can be used to determine the motion in order to select the appropriate view to display. Approaches can further assist the user in creating lenticular images. The user can specify various configurations in which to display different views in a lenticular. If the user is capturing the images, one or more previously-acquired images can be used as a guide to help the user to align the images. Various processing can be performed to cause the individual views of the lenticular to match as closely as possible in factors such as alignment, brightness, and color range, among other such options.

    Abstract translation: 可以通过使用基于运动的控制来帮助在有限的显示空间中显示诸如透镜图像的图像,由此用户可以旋转和/或平移计算设备,以便引起透镜图像的不同视图 被显示。 可以使用传感器来确定运动,以便选择适当的显示视图。 方法可以进一步帮助用户创建透镜图像。 用户可以指定在透镜中显示不同视图的各种配置。 如果用户正在捕获图像,则可以使用一个或多个先前获取的图像作为指导来帮助用户对准图像。 可以进行各种处理,以使得透镜的各个视图在诸如对准,亮度和颜色范围等因素之间尽可能接近地匹配,以及其他这样的选项。

    Headphones with asymmetric coupling
    2.
    发明授权
    Headphones with asymmetric coupling 有权
    耳机具有不对称耦合

    公开(公告)号:US08891798B1

    公开(公告)日:2014-11-18

    申请号:US13718760

    申请日:2012-12-18

    CPC classification number: H04R1/1033 H04R1/1041

    Abstract: Headphones can be configured such that back surfaces of the speaker housings can be coupled to form a loop enabling users to wear the headphones around their necks when the speakers are not in use. In various embodiments, faces of the respective speaker housings may comprise asymmetrical, complementary surfaces. In such embodiments, the users can distinguish between the speakers intended to correspond with respective right and left stereo channels by tactile feel. In some embodiments, the interlocking of the housing structures can be achieved by magnetic force to maintain the coupling when the speakers are not in use but can be decoupled by the user without undue effort. In some embodiments, the speaker housings are configured to constrain the housings to a specific orientation when mated.

    Abstract translation: 可以配置耳机,使得扬声器壳体的后表面可以耦合以形成环路,使得当扬声器不使用时,用户可以在其颈部周围佩戴耳机。 在各种实施例中,相应扬声器壳体的表面可以包括不对称的互补表面。 在这样的实施例中,用户可以通过触觉来区分旨在与相应的右和左立体声通道相对应的扬声器。 在一些实施例中,壳体结构的互锁可以通过磁力来实现,以在扬声器不使用时保持耦合,但是可以在不用过度的努力的情况下被使用者解耦。 在一些实施例中,扬声器壳体被配置为当配合时将壳体约束到特定取向。

    Lenticular image capture
    4.
    发明授权
    Lenticular image capture 有权
    透镜图像捕捉

    公开(公告)号:US09294670B2

    公开(公告)日:2016-03-22

    申请号:US14164027

    申请日:2014-01-24

    Abstract: The display of images, such as lenticular images, in a limited display space can be aided through the use of motion-based control, whereby a user can rotate and/or translate a computing device in order to cause different views of a lenticular image to be displayed. Sensors can be used to determine the motion in order to select the appropriate view to display. Approaches can further assist the user in creating lenticular images. The user can specify various configurations in which to display different views in a lenticular. If the user is capturing the images, one or more previously-acquired images can be used as a guide to help the user to align the images. Various processing can be performed to cause the individual views of the lenticular to match as closely as possible in factors such as alignment, brightness, and color range, among other such options.

    Abstract translation: 可以通过使用基于运动的控制来帮助在有限的显示空间中显示诸如透镜图像的图像,由此用户可以旋转和/或平移计算设备,以便引起透镜图像的不同视图 被显示。 可以使用传感器来确定运动,以便选择适当的显示视图。 方法可以进一步帮助用户创建透镜图像。 用户可以指定在透镜中显示不同视图的各种配置。 如果用户正在捕获图像,则可以使用一个或多个先前获取的图像作为指导来帮助用户对准图像。 可以进行各种处理,以使得透镜的各个视图在诸如对准,亮度和颜色范围等因素之间尽可能接近地匹配,以及其他这样的选项。

    PANORAMIC IMAGE CAPTURE
    5.
    发明申请
    PANORAMIC IMAGE CAPTURE 审中-公开
    全景图像捕获

    公开(公告)号:US20150215532A1

    公开(公告)日:2015-07-30

    申请号:US14164012

    申请日:2014-01-24

    CPC classification number: H04N5/23238 H04N5/23222 H04N5/23293

    Abstract: The display of images, such as panoramic images, in a limited display space can be aided through the use of motion-based control, whereby a user can rotate and/or translate a computing device in order to view different portions of the image, including translating or zooming within the image. Sensors can be used to determine the motion for adjusting the display. The same or other sensors can also assist a user in capturing such an image. For example, a compass can determine the relative orientation of the device and a gyroscope can determine rotation of the device, to determine an appropriate path of motion for the capture and any deviation from that path. The user can be provided with information enabling the user to follow the path with an appropriate device orientation.

    Abstract translation: 可以通过使用基于运动的控制来帮助在有限的显示空间中显示诸如全景图像的图像,由此用户可以旋转和/或平移计算设备以便观看图像的不同部分,包括 在图像中进行翻译或缩放。 传感器可用于确定调整显示的运动。 相同或其他传感器也可以帮助用户捕获这样的图像。 例如,罗盘可以确定设备的相对方向,并且陀螺仪可以确定设备的旋转,以确定用于捕获的适当的运动路径以及与该路径的任何偏差。 可以向用户提供使得用户能够以适当的设备取向跟随路径的信息。

    LENTICULAR IMAGE CAPTURE
    6.
    发明申请
    LENTICULAR IMAGE CAPTURE 有权
    透明图像捕获

    公开(公告)号:US20150215526A1

    公开(公告)日:2015-07-30

    申请号:US14164027

    申请日:2014-01-24

    Abstract: The display of images, such as lenticular images, in a limited display space can be aided through the use of motion-based control, whereby a user can rotate and/or translate a computing device in order to cause different views of a lenticular image to be displayed. Sensors can be used to determine the motion in order to select the appropriate view to display. Approaches can further assist the user in creating lenticular images. The user can specify various configurations in which to display different views in a lenticular. If the user is capturing the images, one or more previously-acquired images can be used as a guide to help the user to align the images. Various processing can be performed to cause the individual views of the lenticular to match as closely as possible in factors such as alignment, brightness, and color range, among other such options.

    Abstract translation: 可以通过使用基于运动的控制来帮助在有限的显示空间中显示诸如透镜图像的图像,由此用户可以旋转和/或平移计算设备,以便引起透镜图像的不同视图 被显示。 可以使用传感器来确定运动,以便选择适当的显示视图。 方法可以进一步帮助用户创建透镜图像。 用户可以指定在透镜中显示不同视图的各种配置。 如果用户正在捕获图像,则可以使用一个或多个先前获取的图像作为指导来帮助用户对准图像。 可以进行各种处理,以使得透镜的各个视图在诸如对准,亮度和颜色范围等因素之间尽可能接近地匹配,以及其他这样的选项。

    Determining calibration settings for displaying content on a monitor

    公开(公告)号:US10205940B1

    公开(公告)日:2019-02-12

    申请号:US14571023

    申请日:2014-12-15

    Abstract: Technologies are described herein for determining calibration settings for displaying content on a monitor. A user may use a mobile computing device to determine calibration settings for a monitor. A calibration tool on the mobile computing device causes one or more calibration images to be displayed on the monitor. The calibration images are used to determine settings related to gamma, brightness, contrast, color settings, and the like that are associated with the monitor. After a calibration image is displayed, the calibration tool utilizes a camera on the mobile computing device to capture an image of the calibration image. The calibration tool analyzes the captured image data to determine calibration settings for the monitor. The calibration tool may apply the calibration settings directly to the monitor or might adjust image data before the image data is displayed.

    Image optimization techniques using depth planes

    公开(公告)号:US09704250B1

    公开(公告)日:2017-07-11

    申请号:US14529009

    申请日:2014-10-30

    Abstract: A plurality of depth planes corresponding to a scene within a field of view of a camera of a computing device can be computed based on stereographic techniques, infrared transceivers, ultrasonic transceivers, among other approaches. The depth planes can be utilized to independently meter subject matter of interest (e.g., person, object, region, etc.) corresponding to each depth plane to obtain image statistics for each depth plane. The image statistics can be analyzed to determine optimal settings (e.g., focus, exposure, white balance, etc.) for each depth plane, and a camera can be configured to acquire image data according to the optimal settings for one or more of the depth planes. Further, the image statistics can be leveraged for processing portions of the image data that are not optimized during capture. Thus, a final image can reflect optimizations for multiple subject matter of interest located at various distances from a computing device.

    User authentication and verification through video analysis

    公开(公告)号:US09607138B1

    公开(公告)日:2017-03-28

    申请号:US14132885

    申请日:2013-12-18

    CPC classification number: G06F21/32 G06F21/30 H04L63/0861 H04W12/00 H04W12/06

    Abstract: Approaches utilize image information to not only identify a user, but also verify that the user is actually a physical person and not a false representation of that user. For example, a computing device can utilize image information with a facial recognition process in order to verify an identity of a current user of the device. A fingerprint or other verification metric can be generated from the image information and can be used to verify that the user is actually a physical human user instead of a representation (e.g., photo) of a human user. The fingerprint can include a number of cues, such as a shape of the face, a stereo disparity signature of the face, facial feature movement, as well as a presence of a human pulse. The cues can be combined and utilized for authenticating a user into the device as well as for verifying that the user is actually a physical person and not a false representation of that user.

    Interface selection element display
    10.
    发明授权
    Interface selection element display 有权
    界面选择元素显示

    公开(公告)号:US09075514B1

    公开(公告)日:2015-07-07

    申请号:US13714115

    申请日:2012-12-13

    Abstract: A finger of a user detected within a predetermined range from a surface of a display screen can be used to navigate through and select content in accordance with various embodiments. In response to detecting the finger within the predetermined range, a selection element can be positioned offset from the finger. The offset positioning keeps the selection element from being obscured by the finger and, thus, enabling it to remain visible to the user. In response to detecting the user's finger approaching the surface of the display screen, the selection element becomes fixed in its current location when the finger reaches a threshold distance from the surface. Accordingly, as the finger gets closer to the surface, it starts to converge with the selection element. Finally, the finger converges with the selection element when the finger reaches the surface of the display screen to select the desired content.

    Abstract translation: 根据各种实施例,可以使用从显示屏的表面在预定范围内检测到的用户的手指导航并选择内容。 响应于在预定范围内检测到手指,选择元件可以定位成偏离手指。 偏移定位使得选择元素不被手指遮挡,并且因此使其能够保持对用户可见。 响应于检测到用户的手指接近显示屏幕的表面,当手指到达距离表面的阈值距离时,选择元件变得固定在其当前位置。 因此,当手指靠近表面时,它开始与选择元件收敛。 最后,当手指到达显示屏幕的表面以选择期望的内容时,手指与选择元件收敛。

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