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    • 1. 发明申请
    • Solar electric module
    • 太阳能电动模组
    • US20080185033A1
    • 2008-08-07
    • US12012570
    • 2008-02-04
    • Juris P. Kalejs
    • Juris P. Kalejs
    • H01L31/052
    • H01L31/0516H01L31/049H01L31/056Y02E10/52
    • A solar electric module having a layered construction including a light reflecting layer and light transmitting materials that encapsulate the solar cells of the module. The solar electric module provides weight mitigation and/or moisture control features. The weight mitigation feature provides for weight mitigation layers of a polymer or other light transmitting material reducing the volume of glass in a transparent top cover, while providing an increased distance between the light reflecting layer and the transparent top cover. The increased distance supports increased spacing between solar cells. The moisture control feature provides perforations in a reflective coating and/or reflecting layer to support migration of moisture into and out of the encapsulating layers of light transmitting materials.
    • 一种具有分层结构的太阳能电模块,包括光反射层和封装模块的太阳能电池的透光材料。 太阳能电力模块提供减重和/或湿度控制特征。 重量减轻特征提供聚合物或其它透光材料的重量减轻层,减少透明顶盖中的玻璃体积,同时在光反射层和透明顶盖之间提供增加的距离。 增加的距离支持增加太阳能电池之间的间距。 湿度控制特征在反射涂层和/或反射层中提供穿孔以支持水分进入和移出透光材料的包封层。
    • 2. 发明授权
    • Apparatus for controlling the atmosphere surrounding a crystal growth
zone
    • 用于控制晶体生长区周围的气氛的装置
    • US4443411A
    • 1984-04-17
    • US294737
    • 1981-08-20
    • Juris P. Kalejs
    • Juris P. Kalejs
    • C01B33/00C30B15/20C30B15/34H01L21/02H01L21/208
    • C30B29/20C30B15/20C30B15/34Y10S117/90Y10T117/1044Y10T117/1068
    • Method and apparatus for using a gas mixture containing an additive gas capable of beneficially altering the physical or chemical properties of a crystallized body grown from a melt by means of a shaping member. A suitable mixture of an inert gas and the additive gas is directed substantially uniformly over the entire melt surface of the meniscus existing between the top of the shaping member and the liquid/solid growth interface at which the crystallized body is formed. The method and apparatus are particularly suited to the growing of silicon ribbons from graphite crucibles for use in the production of photovoltaic solar cells, as evidenced by a substantial increase in the average minority carrier diffusion length in the silicon ribbon grown when the gas additive is a source of oxygen.
    • 使用含有添加剂气体的气体混合物的方法和装置,该添加剂气体能够有利地改变通过成形构件从熔体生长的结晶体的物理或化学性质。 惰性气体和添加气体的合适混合物基本上均匀地指向存在于成形构件的顶部与形成结晶体的液体/固体生长界面之间的弯液面的整个熔融表面上。 该方法和装置特别适合于用于生产光伏太阳能电池的来自石墨坩埚的硅带的生长,这通过当气体添加剂为一种时生长的硅带中的平均少数载流子扩散长度的显着增加 氧源。
    • 3. 发明申请
    • Solar electric module with redirection of incident light
    • 太阳能电子模块,重新定向入射光
    • US20090178704A1
    • 2009-07-16
    • US12012588
    • 2008-02-04
    • Juris P. KalejsMichael J. KardauskasBernhard P. Piwczyk
    • Juris P. KalejsMichael J. KardauskasBernhard P. Piwczyk
    • H01L31/052
    • B32B17/10788B32B17/10743H01L31/048H01L31/0547Y02B10/12Y02E10/52
    • A solar electric module having a layered construction including a light redirection layer and light transmitting materials that encapsulate the solar cells of the module. The solar electric module provides for weight mitigation and/or moisture control features. The weight mitigation feature provides for the use of weight mitigation layers to reduce the volume of glass in a transparent top cover, while providing an increased distance between the light redirection layer and the transparent top cover. The increased distance supports increased spacing between solar cells. The moisture control feature provides perforations in a metallic coating layer and/or light redirection layer to support migration of moisture into and out of the encapsulating layers. The light redirection layer can be an asymmetric redirection layer (for example, light scattering layer) or a symmetric redirection layer (for example, a diffractive optical element).
    • 一种具有层叠结构的太阳能电模块,包括光重定向层和封装模块的太阳能电池的透光材料。 太阳能电力模块提供减轻重量和/或湿度控制特征。 重量减轻特征提供了使用减重层减少透明顶盖中的玻璃体积,同时在光重定向层和透明顶盖之间提供了更大的距离。 增加的距离支持增加太阳能电池之间的间距。 水分控制特征在金属涂层和/或光重定向层中提供穿孔以支持水分进入和离开包封层的迁移。 光重定向层可以是不对称重定向层(例如光散射层)或对称重定向层(例如,衍射光学元件)。
    • 5. 发明申请
    • Manufacturing processes for light concentrating solar module
    • 集中太阳能组件的制造工艺
    • US20090032087A1
    • 2009-02-05
    • US12286025
    • 2008-09-26
    • Juris P. Kalejs
    • Juris P. Kalejs
    • H01L31/042B05D5/12
    • H01L31/0516H01L31/048H01L31/0504H01L31/0547Y02E10/52
    • Solar module manufacturing methods for manufacturing a light concentrating solar module including photovoltaic (PV) cells. The method includes applying an interconnect material to a flexible electrical backplane having preformed conductive interconnect circuitry to form interconnect attachments. The method aligns an array of back contact PV cells with the interconnect attachments. Conductive pathways are formed between the PV cells and the conductive interconnects of the flexible electrical backplane. The method includes providing a light concentrating layer between PV cells that are spaced apart. The method applies an encapsulant material to fill spaces formed between the PV cells and the flexible electrical backplane to form a solar cell subassembly, which is incorporated into the light concentrating solar module.
    • 用于制造包括光伏(PV)电池的聚光太阳能模块的太阳能电池组件制造方法。 该方法包括将互连材料应用于具有预成型导电互连电路的柔性电底板以形成互连附件。 该方法将后接触PV电池阵列与互连附件对齐。 在PV电池和柔性电底板的导电互连之间形成导电通路。 该方法包括提供间隔开的PV电池之间的聚光层。 该方法应用密封剂材料以填充形成在PV电池和柔性电背板之间的空间,以形成太阳能电池组件,其被并入到聚光太阳能模块中。
    • 8. 发明授权
    • Contoured inner after-heater shield for reducing stress in growing
crystalline bodies
    • 形成内部后热器屏蔽,以减少生长结晶体的压力
    • US5558712A
    • 1996-09-24
    • US334753
    • 1994-11-04
    • Juris P. Kalejs
    • Juris P. Kalejs
    • C30B15/34C30B35/00
    • C30B15/34Y10T117/10Y10T117/1036
    • An apparatus for growing hollow crystalline bodies by the EFG process, comprising an EFG die having a top surface shaped for growing a hollow crystalline body having a cross-sectional configuration in the shape of a polygon having n faces, and a radiation shield adjacent to and surrounded by the top end surface of the die, characterized in that the shield has an inner edge defining a similar polygon with n sides, and the inner edge of the shield is notched so that the spacing between the n faces and the n sides is greatest between the central portions of the n faces and the n sides, whereby the greater spacing at the central portions helps to reduce lateral temperature gradients in the crystalline body that is grown by use of the die.
    • 一种用于通过EFG工艺生长空心结晶体的装置,包括具有成形为具有呈n形面多边形形状的横截面形状的中空晶体的顶表面的EFG管芯和与其相邻的辐射屏蔽 由模具的顶端表面包围,其特征在于,屏蔽件具有限定具有n个侧面的类似多边形的内边缘,并且屏蔽件的内边缘被切口,使得n面和n侧之间的间隔最大 在n个面的中心部分和n个侧面之间,由此在中心部分处的较大的间距有助于减少通过使用该模具生长的结晶体中的横向温度梯度。