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    • 31. 发明授权
    • Imaging systems for optical computing devices
    • 光学计算设备成像系统
    • US09013698B2
    • 2015-04-21
    • US13456493
    • 2012-04-26
    • Robert FreeseChristopher Michael JonesDavid PerkinsMichael SimcockWilliam Soltmann
    • Robert FreeseChristopher Michael JonesDavid PerkinsMichael SimcockWilliam Soltmann
    • G01N21/59G06E3/00G01N21/31G01N21/85
    • G01N21/59G01N21/31G01N21/85G01N2201/064G06E3/00G06E3/001
    • Optical computing devices are disclosed. One optical computing device includes an electromagnetic radiation source that emits electromagnetic radiation into an optical train to optically interact with a sample and at least one integrated computational element, the sample being configured to generate optically interacted radiation. A sampling window is arranged adjacent the sample and configured to allow transmission of the electromagnetic radiation therethrough and has one or more surfaces that generate one or more stray signals. A first focal lens is arranged to receive the optically interacted radiation and the one or more stray signals and generate a primary focal point from the optically interacted radiation. A structural element defines a spatial aperture aligned with the primary focal point such that the optically interacted radiation is able to pass therethrough while transmission of the one or more stray signals is substantially blocked by the structural element.
    • 公开了光学计算设备。 一个光学计算设备包括电磁辐射源,其将电磁辐射发射到光学系列中以与样品和至少一个集成的计算元件光学相互作用,所述样品被配置为产生光学相互作用的辐射。 采样窗口布置在样本附近并且被配置为允许电磁辐射通过其中并且具有产生一个或多个杂散信号的一个或多个表面。 布置第一焦点透镜以接收光学相互作用的辐射和一个或多个杂散信号,并从光学相互作用的辐射产生主要焦点。 结构元件限定与主焦点对准的空间孔,使得光学相互作用的辐射能够通过,其中一个或多个杂散信号的传输被结构元件基本上阻挡。
    • 39. 发明申请
    • Lighting Control With Automatic and Bypass Modes
    • 具有自动和旁路模式的照明控制
    • US20120229049A1
    • 2012-09-13
    • US13043745
    • 2011-03-09
    • Tanuj MohanPremal AsharLoharasp M. NasarbadiDavid Perkins
    • Tanuj MohanPremal AsharLoharasp M. NasarbadiDavid Perkins
    • H05B37/02
    • H05B37/0245
    • Methods, systems and apparatuses for controlling a light through an automatic mode and a bypass mode are disclosed. One method includes receiving physical signaling. Detection of a predetermined sequence of the physical signaling is used to determine whether to control the light in the automatic mode or the bypass mode. The automatic mode provides network control of the light, and the bypass mode bypasses the network control of the light. One lighting system includes a light, a sensor for receiving and sensing the physical signaling, and a controller detecting a predetermined sequence of the physical signaling. Detection of a predetermined sequence of the physical signaling is used to determine whether to control the light in the automatic mode or the bypass mode. The automatic mode provides network control of the light, and the bypass mode bypasses the network control of the light.
    • 公开了用于通过自动模式和旁路模式控制光的方法,系统和装置。 一种方法包括接收物理信令。 使用物理信令的预定序列的检测来确定是否控制自动模式或旁路模式中的光。 自动模式提供光的网络控制,旁路模式绕过光的网络控制。 一个照明系统包括光,用于接收和感测物理信令的传感器,以及检测物理信号的预定序列的控制器。 使用物理信令的预定序列的检测来确定是否控制自动模式或旁路模式中的光。 自动模式提供光的网络控制,旁路模式绕过光的网络控制。