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    • 1. 发明专利
    • Control system for electrochromic device
    • 电光设备控制系统
    • JP2006053551A
    • 2006-02-23
    • JP2005214689
    • 2005-07-25
    • Sage Electrochromics Incセイジ・エレクトロクロミクス,インコーポレイテッド
    • GREER BRYAN D
    • G02F1/15G02F1/163G08B13/04
    • G02F1/163Y10S359/90
    • PROBLEM TO BE SOLVED: To provide a control system for an electrochromic (EC) device which can monitor the temperature of the EC device without requiring an external temperature monitoring element and control the EC device based on the temperature readings. SOLUTION: The control system provides methods for heating the EC device using current flowing through the device and for simultaneously heating and changing the transmissivity level of the device. The controller also provides security feedback by detecting glass breakage via a high frequency impedance measurement of the EC device. The controller also provides for methods of determining the bleaching/coloring history of the EC device, determining the transition state of the EC device, and applying a holding voltage to maintain the transmission state of the EC device. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种用于电致变色(EC)装置的控制系统,其可以监测EC装置的温度而不需要外部温度监测元件,并且基于温度读数来控制EC装置。 解决方案:控制系统提供使用流过设备的电流加热EC设备并同时加热和改变设备的透射率水平的方法。 控制器还通过EC设备的高频阻抗测量来检测玻璃破裂来提供安全反馈。 控制器还提供了确定EC设备的漂白/着色历史的方法,确定EC设备的过渡状态,以及施加保持电压以维持EC设备的传输状态。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明申请
    • CONTROLLED HEATING FOR ELECTROCHROMIC DEVICES
    • 用于电致发光器件的控制加热
    • WO2016019338A2
    • 2016-02-04
    • PCT/US2015043294
    • 2015-07-31
    • SAGE ELECTROCHROMICS INC
    • BJORNARD ERIK JONGREER BRYAN D
    • G02F1/15
    • G02F1/153G02F1/133382
    • An electrochromic device is structured to selectively heat one or more particular regions of a conductive layer of the electrochromic device. An electrical potential difference can be induced across the conductive layer to heat one or more layer regions. The conductive layer can be one of at least two conductive layers on opposite sides of an electrochromic film stack, and an electrical potential difference can be induced between the conductive layers to cause at least some of the electrochromic film stack to change transmission levels. The conductive layer can include regions with different sheet resistances, so that one or more regions are structured to generate more heat than other regions of the conductive layer when an electrical potential difference is induced across the conductive layer. Separate layer regions can include separate chemical species. The conductive layer can be geometrically structured so that some layer regions have a greater sheet resistance than other regions.
    • 电致变色器件构造成选择性地加热电致变色器件的导电层的一个或多个特定区域。 可以在导电层上诱导电位差以加热一个或多个层区域。 导电层可以是在电致变色膜堆叠的相对侧上的至少两个导电层中的一个,并且可以在导电层之间引起电势差,以使至少一些电致变色膜堆叠改变透射电平。 导电层可以包括具有不同薄层电阻的区域,使得当跨越导电层诱导电势差时,一个或多个区域被构造为产生比导电层的其它区域更多的热量。 单独的层区域可以包括单独的化学物质。 导电层可以是几何构造的,使得一些层区域具有比其它区域更大的薄层电阻。
    • 10. 发明申请
    • PARTIALLY TINTED CLEAR STATE FOR IMPROVED COLOR AND SOLAR-HEAT GAIN CONTROL OF ELECTROCHROMIC DEVICES
    • 用于改进电光装置的颜色和太阳能增益控制的部分清晰状态
    • WO2014059268A3
    • 2014-07-17
    • PCT/US2013064529
    • 2013-10-11
    • SAGE ELECTROCHROMICS INC
    • GREER BRYAN DBJORNARD ERIK
    • G02F1/163
    • G02F1/163G02F1/1523
    • A control device (120) for controlling the transmittance of an electrochromic device (110) includes a power source (150), an electrical load sensing circuit (140), and a processor (130) electrically coupled to the electrical load sensing circuit and the power source. The processor is configured to receive a measured electrical load value from the electrical load sensing circuit indicating an electrical property of the electrochromic device, further configured to control one or more properties of the electrochromic device by controlling the amount of current or voltage supplied from the power source to the electrochromic device, and yet further configured to vary a property of the electrochromic device while maintaining the electrochromic device at a substantially consistent transmissivity.
    • 用于控制电致变色装置(110)的透射率的控制装置(120)包括电源(150),电负载感测电路(140)和电耦合到电负载感测电路的处理器(130) 能量源。 处理器被配置为从电负载感测电路接收指示电致变色装置的电性能的测量电负载值,其进一步被配置为通过控制从电力供应的电流或电压的量来控制电致变色器件的一个或多个特性 并且还被配置为改变电致变色器件的性质,同时将电致变色器件保持在基本一致的透射率。