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    • 108. 发明申请
    • LIGHT MASKED SMART GLAZING
    • 灯罩智能玻璃
    • US20150277165A1
    • 2015-10-01
    • US14668636
    • 2015-03-25
    • Cardinal CG Company
    • Keith James BurrowsKlaus Hartig
    • G02F1/137G02F1/1335G02F1/1339G02F1/153
    • G02F1/137E06B9/24E06B2009/2464E06B2009/247G02F1/133615G02F1/1339G02F1/153G02F2001/13756
    • A multiple-pane insulating glazing unit may include multiple panes of transparent material and a layer of electrically controllable optically active material that provides controllable privacy for the glazing unit. Despite efforts to fully black out the multiple-pane insulating glazing unit by switching the optically active material from a transmissive state to a privacy state, the glazing unit may exhibit some residual direct visible transmission. In some examples, the multiple-pane insulating glazing unit may include a light emitting element positioned to direct light at the layer of optically active material to address this issue. Light emitted by the light emitting element may reflect and mask residual visibility through the electrically controllable optically active material.
    • 多层玻璃绝缘玻璃窗单元可以包括多个透明材料窗格和一层可电控制的光学活性材料,为玻璃窗单元提供可控的隐私。 尽管通过将光学活性材料从透射状态切换到隐私状态来努力完全遮蔽多层玻璃绝缘玻璃窗单元,但是玻璃窗单元可能表现出一些残留的直接可见透射。 在一些示例中,多窗格绝缘玻璃窗单元可以包括定位成在光学活性材料层处引导光的发光元件以解决该问题。 由发光元件发射的光可以通过电可控光学活性材料反射和掩蔽残留的可见度。
    • 109. 发明申请
    • Control System For Color Rendering Of Optical Glazings
    • 光学玻璃显色控制系统
    • US20150092259A1
    • 2015-04-02
    • US14043214
    • 2013-10-01
    • SAGE ELECTROCHROMICS, INC.
    • Bryan D. GreerLouis J. PodbelskiHelen Sanders
    • G02F1/163F21V23/04
    • G02F1/163E06B9/24E06B2009/2411E06B2009/2464F21S19/005F21V23/0464F21V33/006H05B37/0218Y02B20/46
    • The present disclosure provides for a method of controlling a plurality of independently controllable sections of one or more electrochromic devices belonging to a common interior space to provide lighting having a substantially color neutral or aesthetically pleasing spectrum to the interior space. The method comprises receiving a desired illuminance input indicating an amount of lighting desired in the interior space, and a neutral lighting input indicating a quantifiable amount of the sections of the electrochromic devices to be set to a high transmittance state. One or more sections of the electrochromic devices are selected in accordance with the neutral lighting input. The selected sections of the electrochromic device are set to the high transmittance state. The one or more electrochromic devices collectively transmit an amount of light into the interior space in accordance with the desired illuminance input.
    • 本公开提供了一种控制属于公共内部空间的一个或多个电致变色装置的多个独立可控部分的方法,以向内部空间提供具有基本上色彩中性或美观的光谱的照明。 该方法包括:接收指示内部空间中期望的光线的期望的照度输入,以及指示要设置为高透射率状态的电致变色器件的可定量量的中性点亮输入。 根据中性点亮输入选择电致变色装置的一个或多个部分。 电致变色器件的选定部分被设定为高透射率状态。 一个或多个电致变色装置根据期望的照度输入将一定量的光共同地传输到内部空间。
    • 110. 发明申请
    • THERMALLY SWITCHED REFLECTIVE OPTICAL SHUTTER
    • 热开关反射式光学切换器
    • US20150070746A1
    • 2015-03-12
    • US14307274
    • 2014-06-17
    • RAVENBRICK LLC
    • Richard M. PowersWil McCarthy
    • G02F1/01
    • G02F1/0147E06B9/24E06B2009/2464G02B27/28G02F1/0136G02F1/132G02F1/133514G02F1/133533G02F1/133536G02F2001/0139G02F2001/133538
    • The thermally switched reflective optical shutter is a self-regulating “switchable mirror” device that reflects up to 100% of incident radiant energy above a threshold temperature, and reflects up to 50% of incident radiant energy below a threshold temperature. Control over the flow of radiant energy occurs independently of the thermal conductivity or insulating value of the device, and may or may not preserve the image and color properties of incoming visible light. The device can be used as a construction material to efficiently regulate the internal temperature and illumination of buildings, vehicles, and other structures without the need for an external power supply or operator signals. The device has unique aesthetic optical properties that are not found in traditional windows, skylights, stained glass, light fixtures, glass blocks, bricks, or walls. The device can be tailored to transmit sufficient visible light to see through in both the transparent and reflective states, while still providing significant control over the total energy transmission across the device.
    • 热开关反射光学快门是一种自调节“可切换反射镜”装置,其反射高达阈值温度高达100%的入射辐射能量,并将高达50%的入射辐射能量反射到阈值温度以下。 控制辐射能量的流动与设备的热导率或绝缘值无关,并且可能保持或不保留输入的可见光的图像和颜色特性。 该装置可用作建筑材料,以有效地调节建筑物,车辆和其他结构的内部温度和照明,而不需要外部电源或操作员信号。 该设备具有独特的美学光学性能,在传统的窗户,天窗,彩色玻璃,灯具,玻璃砖,砖块或墙壁上都没有发现。 该设备可以被调整为传输足够的可见光以在透明和反射状态下透视,同时仍然对跨设备的总能量传输提供显着控制。