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    • 1. 发明申请
    • METHOD, APPARATUS AND SYSTEM FOR PROVIDING METERING OF ACCELERATION
    • 方法,提供加速度计的装置和系统
    • US20140182377A1
    • 2014-07-03
    • US13730634
    • 2012-12-28
    • Kevin L. LinFaras EidQing Ma
    • Kevin L. LinFaras EidQing Ma
    • G01P15/10B81C1/00B81B3/00
    • G01P15/105G01P15/08
    • Techniques and mechanisms to provide for metering acceleration. In an embodiment, a microelectromechanical accelerometer includes a magnet, a mass, and a first support beam portion and second support beam portion for suspension of the mass. Resonance frequency characteristics of the first support beam portion and second support beam portion, based on the magnet and a current conducted by the first support beam portion and second support beam portion, are indicative of acceleration of the mass. In another embodiment, the accelerometer further includes a first wire portion and a second wire portion which are each coupled to the mass and further coupled to a respective anchor for exchanging a signal with the first wire portion and the second wire portion. The first wire portion and the second wire portion provide for biasing of the mass.
    • 提供计量加速度的技术和机制。 在一个实施例中,微机电加速度计包括用于悬挂质量的磁体,质量块和第一支撑梁部分和第二支撑梁部分。 基于磁体的第一支撑梁部分和第二支撑梁部分的共振频率特性以及由第一支撑梁部分和第二支撑梁部分传导的电流表示质量的加速度。 在另一个实施例中,加速度计还包括第一线部分和第二线部分,每个第一线部分和第二线部分均耦合到质量块,并且还耦合到相应的锚,用于与第一线部分和第二线部分交换信号。 第一线部分和第二线部分提供质量的偏压。
    • 2. 发明授权
    • Method, apparatus and system for providing metering of acceleration
    • 用于提供加速度计量的方法,装置和系统
    • US09250261B2
    • 2016-02-02
    • US13730634
    • 2012-12-28
    • Kevin L. LinFeras EidQing Ma
    • Kevin L. LinFeras EidQing Ma
    • G01P15/105G01P15/08
    • G01P15/105G01P15/08
    • Techniques and mechanisms to provide for metering acceleration. In an embodiment, a microelectromechanical accelerometer includes a magnet, a mass, and a first support beam portion and second support beam portion for suspension of the mass. Resonance frequency characteristics of the first support beam portion and second support beam portion, based on the magnet and a current conducted by the first support beam portion and second support beam portion, are indicative of acceleration of the mass. In another embodiment, the accelerometer further includes a first wire portion and a second wire portion which are each coupled to the mass and further coupled to a respective anchor for exchanging a signal with the first wire portion and the second wire portion. The first wire portion and the second wire portion provide for biasing of the mass.
    • 提供计量加速度的技术和机制。 在一个实施例中,微机电加速度计包括用于悬挂质量的磁体,质量块和第一支撑梁部分和第二支撑梁部分。 基于磁体的第一支撑梁部分和第二支撑梁部分的共振频率特性以及由第一支撑梁部分和第二支撑梁部分传导的电流表示质量的加速度。 在另一个实施例中,加速度计还包括第一线部分和第二线部分,每个第一线部分和第二线部分均耦合到质量块,并且还耦合到相应的锚,用于与第一线部分和第二线部分交换信号。 第一线部分和第二线部分提供质量的偏压。
    • 9. 发明申请
    • RENDERING TECHNIQUES FOR TEXTURED DISPLAYS
    • 用于纹理显示的渲染技术
    • US20150091890A1
    • 2015-04-02
    • US14040101
    • 2013-09-27
    • Nathan R. AndryscoKevin L. Lin
    • Nathan R. AndryscoKevin L. Lin
    • G06T15/04
    • G09G3/3473G09G3/002G09G2320/0233G09G2320/0242G09G2340/06
    • Rendering techniques are disclosed for displays capable of adjusting/changing the angle of individual pixels (or pixel groups), referred to herein as textured displays. The textured displays may be capable of creating on demand textures which may be used to simulate the surface of an object in a scene. The rendering techniques may be used to improve upon the realism of rendered scenes/objects and they may provide users with a unique rendering experience whereby the textured display physically changes to mimic textures of the rendered scenes/objects. This can be achieved by sending geometric data, such as surface normal information, to individual pixels of the textured display. Other factors may be considered when adjusting the angle of individual pixels of the textured display, such as whether the user is experiencing too much glare.
    • 公开了用于能够调整/改变单个像素(或像素组)的角度的显示器的渲染技术,这里称为纹理显示。 有纹理的显示器可能能够创建可以用于模拟场景中的对象的表面的按需纹理。 渲染技术可以用于改进渲染场景/对象的真实性,并且它们可以向用户提供独特的渲染体验,由此纹理化显示物理上改变以模拟渲染的场景/对象的纹理。 这可以通过将几何数据(诸如表面法线信息)发送到纹理显示器的各个像素来实现。 当调整纹理显示器的各个像素的角度时,例如用户是否经历过多的眩光,可以考虑其他因素。
    • 10. 发明申请
    • MONITOR RESOLUTION AND REFRESHING BASED ON VIEWER DISTANCE
    • 基于观察者距离的监测分辨率和刷新
    • US20150179150A1
    • 2015-06-25
    • US14139536
    • 2013-12-23
    • Nathan R. AndryscoKevin L. Lin
    • Nathan R. AndryscoKevin L. Lin
    • G09G5/391G06F3/00
    • G09G5/391G06F3/005G09G2320/0261G09G2340/0407
    • Techniques are disclosed for improving energy efficiency of displays, and in particular, displays capable of selective refresh. In an embodiment, the techniques include adjusting the effective resolution of a display based on the viewer's distance from the display. The effective resolution adjustment can be accomplished by, for example, grouping individual pixels or blurring the display buffer (or both pixel grouping and blurring) based on the viewer's distance from the display. Such an adjustment has the effect of creating enlarged pixels from a plurality of smaller pixels. In any such cases, each of the enlarged pixels (also called macro-pixels) can then be selectively refreshed based on changes from the previous frame. In addition, even if one of the macro-pixels has changed from the last frame, it also need not be refreshed if the viewer would not perceive that change given a subtle or otherwise unperceivable difference in intensity.
    • 公开了用于提高显示器能量效率的技术,特别是能够进行选择性刷新的显示器。 在一个实施例中,这些技术包括基于观看者与显示器的距离来调整显示器的有效分辨率。 可以通过例如基于观看者与显示器的距离来分组单个像素或模糊显示缓冲器(或者像素分组和模糊两者)来实现有效分辨率调整。 这种调整具有从多个较小像素产生放大像素的效果。 在任何这种情况下,可以基于来自先前帧的改变来选择性地刷新每个放大像素(也称为宏像素)。 另外,即使其中一个宏像素从最后一帧改变,如果观察者不会感觉到这种变化给出了微妙或其他不可察觉的强度差异,那么它也不需要刷新。