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    • 2. 发明授权
    • Configurable input device
    • 可配置的输入设备
    • US08799803B2
    • 2014-08-05
    • US13039510
    • 2011-03-03
    • David T. Amm
    • David T. Amm
    • G06F3/048G06F3/01
    • G06F3/0216G06F1/169G06F3/01G06F3/0425G06F3/048G06F3/04886
    • There are provided methods and systems related to having an input device configured according to a position of a user's hand relative to the input device. In particular, in some embodiments, a method of operating a computing system is provided that includes determining an operational context of the computing system utilizing a processor of the system and configuring an input device for the system based on the operational context. The input device includes a plurality of discrete input members. The method also includes displaying a virtual image representative of the input device on a display of the system. A position of a user's digits relative to the input device is sensed and the input device is reconfigured based on the sensed position of the user's digits. An image of the user's digits overlaying the virtual image representative of the input device is provided on a display of the computing system.
    • 提供了与根据用户的手相对于输入装置的位置配置的输入装置相关的方法和系统。 特别地,在一些实施例中,提供了一种操作计算系统的方法,其包括利用所述系统的处理器确定所述计算系统的操作上下文,并且基于所述操作上下文来配置所述系统的输入设备。 输入装置包括多个离散输入构件。 该方法还包括在系统的显示器上显示代表输入设备的虚拟图像。 感测到用户数字相对于输入设备的位置,并且基于感测到的用户数字的位置重新配置输入设备。 在计算系统的显示器上提供覆盖代表输入设备的虚拟图像的用户数字的图像。
    • 3. 发明申请
    • CONFIGURABLE INPUT DEVICE
    • 可配置输入设备
    • US20120227006A1
    • 2012-09-06
    • US13039510
    • 2011-03-03
    • David T. Amm
    • David T. Amm
    • G06F3/048
    • G06F3/0216G06F1/169G06F3/01G06F3/0425G06F3/048G06F3/04886
    • There are provided methods and systems related to having an input device configured according to a position of a user's hand relative to the input device. In particular, in some embodiments, a method of operating a computing system is provided that includes determining an operational context of the computing system utilizing a processor of the system and configuring an input device for the system based on the operational context. The input device includes a plurality of discrete input members. The method also includes displaying a virtual image representative of the input device on a display of the system. A position of a user's digits relative to the input device is sensed and the input device is reconfigured based on the sensed position of the user's digits. An image of the user's digits overlaying the virtual image representative of the input device is provided on a display of the computing system.
    • 提供了与根据用户的手相对于输入装置的位置配置的输入装置相关的方法和系统。 特别地,在一些实施例中,提供了一种操作计算系统的方法,其包括利用所述系统的处理器确定所述计算系统的操作上下文,并且基于所述操作上下文来配置所述系统的输入设备。 输入装置包括多个离散输入构件。 该方法还包括在系统的显示器上显示代表输入设备的虚拟图像。 感测到用户数字相对于输入设备的位置,并且基于感测到的用户数字的位置重新配置输入设备。 在计算系统的显示器上提供覆盖代表输入设备的虚拟图像的用户数字的图像。
    • 7. 发明授权
    • Hybrid analog/digital spatial light modulator
    • 混合模拟/数字空间光调制器
    • US07573631B1
    • 2009-08-11
    • US11352763
    • 2006-02-13
    • David T. Amm
    • David T. Amm
    • G02F1/03G02B26/00
    • G02B26/0808G02B5/1828G02B26/0841G02F2203/12G09G3/344G09G2310/0275
    • One embodiment relates to a hybrid micro electromechanical systems (MEMS) based spatial light modulator (SLM) capable of operating in both analog and digital modes. The hybrid SLM includes a substrate having an upper surface, a number of movable ribbons disposed a predetermined distance above the upper surface of the substrate, the ribbons having light reflective surfaces formed on their upper side facing away from the upper surface of the substrate, and a number of standoffs having a predetermined height positioned between a lower surface of the movable ribbons and the upper surface of the substrate. The standoffs are configured to limit the ribbon deflection of movable ribbons toward the upper surface of the substrate when the SLM is operated in digital mode with snap-down voltages applied between the ribbon and drive electronics in the substrate. Other embodiments are also disclosed.
    • 一个实施例涉及能够在模拟和数字模式下操作的基于混合微机电系统(MEMS)的空间光调制器(SLM)。 混合SLM包括具有上表面的衬底,多个可移动的带,其设置在衬底的上表面上方预定距离,所述带在其上侧形成为背离衬底的上表面的光反射表面,以及 具有预定高度的多个间隔位于可移动带的下表面和基底的上表面之间。 当SLM在数字模式下操作时,支架被配置为将可移动带的带偏转限制到衬底的上表面,其中施加在衬底中的色带和驱动电子器件之间的卡扣电压。 还公开了其他实施例。
    • 9. 发明授权
    • Micro-support structures
    • 微支撑结构
    • US07123399B2
    • 2006-10-17
    • US11054056
    • 2005-02-09
    • Christopher GudemanJames HunterRichard YehDavid T. Amm
    • Christopher GudemanJames HunterRichard YehDavid T. Amm
    • G02B26/00
    • B81C1/00111B81B2203/0136B81B2203/0307B81C2201/0109G02B26/0808
    • A MEM device in accordance with the invention comprises one or more movable micro-structures which are preferably ribbon structures or cantilever structures. The ribbon structures or cantilever structures are preferably coupled to a substrate structure through one or more support regions comprising a plurality of anchor support features and a plurality of post support features. The MEM device is preferably an optical MEM device with a plurality of movable ribbon structures each being supported by opposing ends through support regions each comprising a plurality of anchor support features and a plurality of post support features. In accordance with the method of the embodiments, the positions of the anchor and post support features, the number of anchor and support features and the spacings between the support features can selected during fabrication of the device to determine an operating condition of the MEM device.
    • 根据本发明的MEM装置包括优选带状结构或悬臂结构的一个或多个可移动微结构。 带状结构或悬臂结构优选地通过包括多个锚固支撑特征和多个支撑支撑特征的一个或多个支撑区域耦合到基底结构。 MEM装置优选地是具有多个可移动带结构的光学MEM装置,每个可移动带结构各自由相对的端部支撑,每个支撑区域包括多个锚固支撑特征和多个支撑支撑特征。 根据实施例的方法,可以在制造装置期间选择锚和支柱特征的位置,锚固和支撑特征的数量以及支撑特征之间的间隔,以确定MEM装置的操作状态。