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    • 3. 发明授权
    • Electro-optic window incorporating a discrete photovoltaic device and
apparatus for making same
    • 包括分立的光伏器件的电光窗和用于制造它的装置
    • US6045643A
    • 2000-04-04
    • US12957
    • 1998-01-26
    • Harlan J. BykerDavid J. CammengaDavid L. PollScott W. Vander Zwaag
    • Harlan J. BykerDavid J. CammengaDavid L. PollScott W. Vander Zwaag
    • G02F1/133G02F1/153G02F1/163B32B17/00
    • G02F1/1533G02F1/13318G02F1/163
    • An electro-optic window is provided which is powered solely by at least one discrete photovoltaic cell within an electro-optic window. The electro-optic window has front and back spaced-apart glass elements sealably bonded together in a spaced-apart relationship and defining a chamber filled with an electro-optic material. The front glass element has a transparent conductive layer on the face of the front glass element confronting the rear glass element and the rear glass element has a transparent conductive layer on the face confronting the front glass element. The seal is generally disposed along the perimeter of three edges of both glass elements and some distance in from the remaining (fourth) edge. The photovoltaic assembly is electrically connected to the two transparent conductive layers and is placed on the outer perimeter along this fourth edge with the photon-absorbing side of all the photovoltaic cells within the photovoltaic assembly facing in one direction ("out" the window). When light impinges on the photovoltaic cell a current is created which darkens the electro-optic material in proportion to the amount of impinging light. By choosing the relative area of the photovoltaic assembly to produce the correct current for the electro-optically active window area, the darkening of the electro-optic portion can be directly and accurately controlled without the need for any circuit, wires or shorting resistors.In addition, an apparatus for making an electro-optic window having two members capable of securing and holding two glass elements in a spaced-apart and parallel relationship is provided. The glass elements may be secured by vacuum-applying members or simple clips. The glass elements may be held in a spaced-apart and parallel relationship by a hydraulic mechanism or by simple spacers placed between the securing members.
    • 提供电光窗,其仅由电光窗内的至少一个分立的光伏电池供电。 电光窗具有以间隔开的关系密封地结合在一起的前部和后部间隔开的玻璃元件,并且限定了充满电光材料的室。 前玻璃元件在与前玻璃元件相对的前玻璃元件的表面上具有透明导电层,后玻璃元件在与前玻璃元件相对的面上具有透明导电层。 密封件通常沿着两个玻璃元件的三个边缘的周边设置,并且与剩余的(第四)边缘距离一定距离。 光伏组件电连接到两个透明导电层,并且沿着第四边缘放置在外周边上,光伏组件内的所有光伏电池的光子吸收侧面向一个方向(“向外”)。 当光照射在光伏电池上时,产生电流,使电光材料与入射光的量成比例地变暗。 通过选择光电组件的相对面积以产生用于电光窗口区域的正确电流,可以直接和精确地控制电光部分的变暗,而不需要任何电路,导线或短路电阻器。 此外,提供了一种用于制造具有两个能够以间隔和平行关系固定和保持两个玻璃元件的构件的电光窗的装置。 玻璃元件可以通过真空施加构件或简单的夹子来固定。 玻璃元件可以通过液压机构或通过固定构件之间的简单间隔件保持间隔开和平行的关系。
    • 4. 发明授权
    • Electrochromic rearview mirror incorporating a third surface metal
reflector and a display/signal light
    • 具有第三表面金属反射器和显示器/信号灯的电致变色后视镜
    • US06111684A
    • 2000-08-29
    • US197400
    • 1998-11-20
    • Jeffrey A. ForgetteHarlan J. BykerWilliam L. TonarFrederick T. BauerDavid J. CammengaJohn K. Roberts
    • Jeffrey A. ForgetteHarlan J. BykerWilliam L. TonarFrederick T. BauerDavid J. CammengaJohn K. Roberts
    • B60Q1/26B60R1/08B60R1/12G02F1/15G02F1/155G02F1/157G02F1/153
    • B60Q1/2665B60R1/088B60R1/1207G02F1/155G02F1/157B60R2001/1215B60R2001/1223G02F1/1506G02F2001/1502G02F2001/1512G02F2201/34G02F2203/02
    • An electrochromic mirror is disclosed for use in a vehicle rearview mirror assembly having a light source positioned behind the electrochromic mirror for selectively projecting light through the mirror. The electrochromic mirror includes front and rear spaced elements each having front and rear surfaces and being sealably bonded together in a spaced-apart relationship to define a chamber, a layer of transparent conductive material disposed on the rear surface of the front element, at least one solution-phase electrochromic material contained within the chamber, and a second electrode overlying the front surface of the rear element in contact with the electrochromic material. The second electrode includes a layer of highly reflective material and a coating of electrically conductive material that is at least partially transmissive and is disposed over substantially all of the front surface of the rear element. The second electrode further includes a region in front of the light source that is at least partially transmissive. The electrically conductive coating may include a single transparent layer or a plurality of partially reflective and transmissive layers, or an electrically conductive dichroic coating. The light source may be an information display, such as a compass/temperature display as used in an inside rearview mirror, or may be a signal light as used in an outside rearview mirror.
    • 公开了一种用于车辆后视镜组件中的电致变色镜,其具有位于电致变色镜后面的光源,用于选择性地将光投射通过反射镜。 电致变色镜包括前后分隔的元件,每个元件具有前表面和后表面,并且以间隔开的关系密封地结合在一起,以限定室,设置在前元件的后表面上的透明导电材料层,至少一个 包含在室内的溶液相电致变色材料,以及覆盖与电致变色材料接触的后部元件的前表面的第二电极。 第二电极包括高反射材料层和至少部分透射并且设置在后部元件的基本上所有前表面上的导电材料涂层。 第二电极还包括至少部分透射的在光源前面的区域。 导电涂层可以包括单个透明层或多个部分反射和透射层或导电二向色涂层。 光源可以是诸如在内侧后视镜中使用的罗盘/温度显示器的信息显示器,或者可以是在外部后视镜中使用的信号灯。
    • 7. 发明授权
    • Electro-optic window incorporating a discrete photovoltaic device
    • 装有分立光电器件的电光窗
    • US5805330A
    • 1998-09-08
    • US616698
    • 1996-03-15
    • Harlan J. BykerDavid J. CammengaDavid L. Poll
    • Harlan J. BykerDavid J. CammengaDavid L. Poll
    • G02F1/133G02F1/153G02F1/163G02F1/15
    • G02F1/1533G02F1/13318G02F1/163
    • An electro-optic window is provided which is powered solely by at least one discrete photovoltaic cell within an electro-optic window. The electro-optic window has front and back spaced-apart glass elements sealably bonded together in a spaced-apart relationship and defining a chamber filled with an electro-optic material. The front glass element has a transparent conductive layer on the face of the front glass element confronting the rear glass element and the rear glass element has a transparent conductive layer on the face confronting the front glass element. The seal is generally disposed along the perimeter of three edges of both glass elements and some distance in from the remaining (fourth) edge. The photovoltaic assembly is electrically connected to the two transparent conductive layers and is placed on the outer perimeter along this fourth edge with the photon-absorbing side of all the photovoltaic cells within the photovoltaic assembly facing in one direction ("out" the window). When light impinges on the photovoltaic cell a current is created which darkens the electro-optic material in proportion to the amount of impinging light. By choosing the relative area of the photovoltaic assembly to produce the correct current for the electro-optically active window area, the darkening of the electro-optic portion can be directly and accurately controlled without the need for any circuit, wires or shorting resistors. In addition, an apparatus for making an electro-optic window having two members capable of securing and holding two glass elements in a spaced-apart and parallel relationship is provided. The glass elements may be secured by vacuum-applying members or simple clips. The glass elements may be held in a spaced-apart and parallel relationship by a hydraulic mechanism or by simple spacers placed between the securing members.
    • 提供电光窗,其仅由电光窗内的至少一个分立的光伏电池供电。 电光窗具有以间隔开的关系密封地结合在一起的前部和后部间隔开的玻璃元件,并且限定了充满电光材料的室。 前玻璃元件在与前玻璃元件相对的前玻璃元件的表面上具有透明导电层,后玻璃元件在与前玻璃元件相对的面上具有透明导电层。 密封件通常沿着两个玻璃元件的三个边缘的周边设置,并且与剩余的(第四)边缘距离一定距离。 光伏组件电连接到两个透明导电层,并且沿着第四边缘放置在外周边上,光伏组件内的所有光伏电池的光子吸收侧面向一个方向(“向外”)。 当光照射在光伏电池上时,产生电流,使电光材料与入射光的量成比例地变暗。 通过选择光电组件的相对面积以产生用于电光窗口区域的正确电流,可以直接和精确地控制电光部分的变暗,而不需要任何电路,导线或短路电阻器。 此外,提供了一种用于制造具有两个能够以间隔和平行关系固定和保持两个玻璃元件的构件的电光窗的装置。 玻璃元件可以通过真空施加构件或简单的夹子来固定。 玻璃元件可以通过液压机构或通过固定构件之间的简单间隔件保持间隔开和平行的关系。