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    • 52. 发明申请
    • RACK ASSEMBLY FOR MOUNTING SOLAR MODULES
    • 用于安装太阳能模块的机架组件
    • US20110174360A1
    • 2011-07-21
    • US12949551
    • 2010-11-18
    • Joshua Reed PlaistedBrian West
    • Joshua Reed PlaistedBrian West
    • H01L31/058F16B1/02
    • H02S40/44F24S25/10F24S25/20F24S25/35F24S25/636F24S2020/17F24S2030/16H02S20/23Y02B10/12Y02B10/20Y02B10/70Y02E10/47Y02E10/60
    • A rack assembly is provided for mounting solar modules over an underlying body. The rack assembly may include a plurality of rail structures that are arrangeable over the underlying body to form an overall perimeter for the rack assembly. One or more retention structures may be provided with the plurality of rail structures, where each retention structure is configured to support one or more solar modules at a given height above the underlying body. At least some of the plurality of rail structures are adapted to enable individual rail structures to be sealed over the underlying body so as to constrain air flow underneath the solar modules. Additionally, at least one of (i) one or more of the rail structures, or (ii) the one or more retention structures are adjustable so as to adapt the rack assembly to accommodate solar modules of varying forms or dimensions.
    • 提供了用于将太阳能模块安装在下面的主体上的机架组件。 齿条组件可以包括多个轨道结构,其可布置在下面的主体上方以形成用于齿条组件的整个周边。 一个或多个保持结构可以设置有多个轨道结构,其中每个保持结构被配置为在下面的身体上方的给定高度处支撑一个或多个太阳能模块。 多个轨道结构中的至少一些适于使单独的轨道结构能够密封在下面的主体上,以限制太阳能模块下方的空气流动。 另外,(i)一个或多个轨道结构中的至少一个,或(ii)一个或多个保持结构是可调节的,以便使齿条组件适应于适应不同形式或尺寸的太阳能模块。
    • 56. 发明授权
    • Textured chamber surface
    • 纹理的室表面
    • US07618769B2
    • 2009-11-17
    • US10863151
    • 2004-06-07
    • Karl BruecknerBrian WestHong Wang
    • Karl BruecknerBrian WestHong Wang
    • G03F7/00
    • C23C14/564C23C16/4404G03F7/0015H01J37/32477
    • A method of fabricating a process chamber component having a textured surface includes applying a resist layer on an underlying surface of the component. A predetermined pattern of apertures is formed in the resist layer that exposes the underlying surface of the component. The underlying surface is etched through the apertures in the resist layer to form a textured surface having raised features with top corners. The resist layer is removed, and a treatment step is performed to form top corners that are rounded. In another method, the textured surface is formed by providing a patterned mask having apertures above the surface of the component. A material is sprayed through the apertures in the patterned mask and onto the surface to form a textured surface with raised features having the material.
    • 制造具有纹理化表面的处理室部件的方法包括在部件的下表面上施加抗蚀剂层。 在抗蚀剂层中形成预定的孔径图案,其暴露组件的下表面。 底层表面通过抗蚀剂层中的孔蚀刻,以形成具有顶角的凸起特征的纹理表面。 去除抗蚀剂层,并且执行处理步骤以形成圆形的顶角。 在另一种方法中,纹理化表面通过提供在组件表面上方具有孔的图案化掩模形成。 将材料通过图案化掩模中的孔喷射到表面上以形成具有具有该材料的凸起特征的纹理表面。
    • 57. 发明申请
    • Adaptive digital power control system
    • US20070010917A1
    • 2007-01-11
    • US11178671
    • 2005-07-11
    • Simeon MassonChris HearnEdward PradoBrian West
    • Simeon MassonChris HearnEdward PradoBrian West
    • G05D11/00
    • G06F1/26H02M3/157
    • An adaptive digital power control system is disclosed, which implements a digitally controlled, near real-time algorithm to accommodate multiple loop current mode controls for low voltage, high performance computing system power needs. For example, an adaptive digital power control system that is implemented with an FPGA to generate low voltages for high performance computing systems is disclosed, which includes a current and voltage loop compensation algorithm that enables the adaptive digital power control system to dynamically compensate for high current transients and EMI-related noise. The current and voltage loop compensation algorithm uses a combination of linear predictive coding and Kalman filtering techniques to provide dynamic current and voltage compensation, and implement a feed-forward technique using knowledge of the power system's output parameters to adequately adapt to the system's compensation needs. More specifically, an adaptive digital power control system is disclosed, which includes a power stage for generating a plurality of low voltages, a multiplexer and A/D converter stage for receiving and converting the plurality of low voltages and a plurality of associated currents to a plurality of digital voltage and current signals, a current and voltage compensation algorithm stage for receiving the plurality of digital voltage and current signals and generating a plurality of digital voltage and current compensation control signals using linear predictive coding, Kalman filtering and feed-forward estimation techniques, and a digitally controlled pulse width modulator stage for receiving the plurality of digital voltage and current compensation control signals and controlling the duty cycles of a plurality of transistor switching devices in the power stage. Thus, the adaptive digital power control system can dynamically compensate for high current transients and EMI-related noise generated in low voltage power systems for high performance computing systems.
    • 60. 发明申请
    • Rack assembly for mounting solar modules
    • 用于安装太阳能模块的机架组件
    • US20060118163A1
    • 2006-06-08
    • US11332000
    • 2006-01-13
    • Joshua PlaistedBrian West
    • Joshua PlaistedBrian West
    • H01L25/00
    • H02S40/44F24S25/10F24S25/20F24S25/35F24S25/636F24S2020/17F24S2030/16H02S20/23Y02B10/12Y02B10/20Y02B10/70Y02E10/47Y02E10/60
    • A rack assembly is provided for mounting solar modules over an underlying body. The rack assembly may include a plurality of rail structures that are arrangeable over the underlying body to form an overall perimeter for the rack assembly. One or more retention structures may be provided with the plurality of rail structures, where each retention structure is configured to support one or more solar modules at a given height above the underlying body. At least some of the plurality of rail structures are adapted to enable individual rail structures o be sealed over the underlying body so as to constrain air flow underneath the solar modules. Additionally, at least one of (i) one or more of the rail structures, or (ii) the one or more retention structures are adjustable so as to adapt the rack assembly to accommodate solar modules of varying forms or dimensions.
    • 提供了用于将太阳能模块安装在下面的主体上的机架组件。 齿条组件可以包括多个轨道结构,其可布置在下面的主体上方以形成用于齿条组件的整个周边。 一个或多个保持结构可以设置有多个轨道结构,其中每个保持结构被配置为在下面的身体上方的给定高度处支撑一个或多个太阳能模块。 多个轨道结构中的至少一些适于使得单独的轨道结构能够被密封在下面的主体上,以便限制太阳能模块下面的空气流动。 另外,(i)一个或多个轨道结构中的至少一个,或(ii)一个或多个保持结构是可调节的,以便使齿条组件适应于适应不同形式或尺寸的太阳能模块。