会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明申请
    • MONOLITHIC PHOTOVOLTAIC MODULE
    • 单声道光伏模块
    • US20100059098A1
    • 2010-03-11
    • US12207014
    • 2008-09-09
    • Kevin BeerninkShengzhong Liu
    • Kevin BeerninkShengzhong Liu
    • H01L31/042B05D5/12
    • H01L31/0392H01L31/022425H01L31/03926H01L31/046H01L31/075H01L31/18H01L31/1892Y02E10/548
    • A photovoltaic module comprised of a plurality of series connected photovoltaic cells disposed upon a substrate is fabricated utilizing thin film device techniques. A body of photovoltaic stock material comprised of an electrically conductive substrate having at least a bottom electrode layer, a body of photovoltaic material, and a top electrode layer supported thereupon is patterned so as to define a number of individual, electrically isolated photovoltaic cells and a number of electrically isolated connection zones. The connection zones are patterned to each include a portion of the bottom electrode material and are configured so that the bottom electrode material in each segment of the connection zone is exposed, and is in electrical communication with the bottom electrode portion of a particular cell. A current collecting grid structure is disposed on the top electrode of each cell and is placed in electrical communication with the bottom electrode of an adjoining cell via the electrode layer in an appropriate connection zone. In this manner, a series interconnection between the cells is established. Electrical terminals may be affixed to the module, and the finished module may be encapsulated in a body of protective materials. The substrate used in the manufacture of the module may comprise a thin, flexible layer of polymeric material and the disclosed techniques may be utilized to fabricate ultra lightweight photovoltaic modules. Also disclosed are specific module structures.
    • 使用薄膜器件技术制造由多个串联连接的光伏电池组成的光伏模块,该太阳能电池设置在衬底上。 由至少具有底电极层,光电材料体和支撑在其上的顶电极层的导电基底构成的光电储备材料体被图案化以便限定多个单独的电隔离的光伏电池和 电隔离连接区数。 连接区域被图案化成每个包括底部电极材料的一部分,并且被构造成使得连接区域的每个区段中的底部电极材料被暴露,并且与特定电池的底部电极部分电连通。 电流收集栅格结构设置在每个单元的顶部电极上,并通过电极层在适当的连接区域中与相邻单元的底部电极电连通。 以这种方式,建立了电池之间的串联互连。 电气端子可以固定到模块,并且完成的模块可以被封装在保护材料的主体中。 用于制造模块的基板可以包括薄的柔性聚合材料层,并且所公开的技术可以用于制造超轻型光伏模块。 还公开了具体的模块结构。
    • 7. 发明授权
    • Method and apparatus for the laser scribing of ultra lightweight semiconductor devices
    • 超轻型半导体器件的激光划线方法和装置
    • US07964476B2
    • 2011-06-21
    • US12053712
    • 2008-03-24
    • Shengzhong LiuGinger PietkaKevin BeerninkArindam BanerjeeChi YangSubhendu Guha
    • Shengzhong LiuGinger PietkaKevin BeerninkArindam BanerjeeChi YangSubhendu Guha
    • H01L21/00
    • H01L21/268H01L31/046H01L31/0465H01L31/1876Y02E10/50Y02P70/521
    • A system for the laser scribing of semiconductor devices includes a laser light source operable to selectably deliver laser illumination at a first wavelength and at a second wavelength which is shorter than the first wavelength. The system further includes a support for a semiconductor device and an optical system which is operative to direct the laser illumination from the light source to the semiconductor device. The optical system includes optical elements which are compatible with the laser illumination of the first wavelength and the laser illumination of the second wavelength. In specific instances, the first wavelength is long wavelength illumination such as illumination of at least 1000 nanometers, and the second wavelength is short wavelength illumination which in specific instances is 300 nanometers or shorter. By the use of the differing wavelengths, specific layers of the semiconductor device may be scribed without damage to subjacent layers. Also disclosed are specific scribing processes.
    • 用于半导体器件的激光刻划的系统包括可操作以可选择地提供比第一波长短的第一波长和第二波长的激光照明的激光光源。 该系统还包括用于半导体器件和光学系统的支撑件,该系统可操作以将激光照明从光源引导到半导体器件。 光学系统包括与第一波长的激光照射和第二波长的激光照射兼容的光学元件。 在具体情况下,第一波长是诸如至少1000纳米的照明的长波长照明,而第二波长是在特定情况下为300纳米或更短的短波长照明。 通过使用不同的波长,半导体器件的特定层可以被划刻而不损坏下层。 还公开了具体的划线工艺。
    • 10. 发明授权
    • Monolithic photovoltaic module
    • 单片光伏组件
    • US08168881B2
    • 2012-05-01
    • US12207014
    • 2008-09-09
    • Kevin BeerninkShengzhong Liu
    • Kevin BeerninkShengzhong Liu
    • H01L31/042B05D5/12
    • H01L31/0392H01L31/022425H01L31/03926H01L31/046H01L31/075H01L31/18H01L31/1892Y02E10/548
    • A photovoltaic module comprised of a plurality of series connected photovoltaic cells disposed upon a substrate is fabricated utilizing thin film device techniques. A body of photovoltaic stock material comprised of an electrically conductive substrate having at least a bottom electrode layer, a body of photovoltaic material, and a top electrode layer supported thereupon is patterned so as to define a number of individual, electrically isolated photovoltaic cells and a number of electrically isolated connection zones. The connection zones are patterned to each include a portion of the bottom electrode material and are configured so that the bottom electrode material in each segment of the connection zone is exposed, and is in electrical communication with the bottom electrode portion of a particular cell. A current collecting grid structure is disposed on the top electrode of each cell and is placed in electrical communication with the bottom electrode of an adjoining cell via the electrode layer in an appropriate connection zone. In this manner, a series interconnection between the cells is established. Electrical terminals may be affixed to the module, and the finished module may be encapsulated in a body of protective materials. The substrate used in the manufacture of the module may comprise a thin, flexible layer of polymeric material and the disclosed techniques may be utilized to fabricate ultra lightweight photovoltaic modules. Also disclosed are specific module structures.
    • 使用薄膜器件技术制造由多个串联连接的光伏电池组成的光伏模块,该太阳能电池设置在衬底上。 由至少具有底电极层,光电材料体和支撑在其上的顶电极层的导电基底构成的光电储备材料体被图案化以便限定多个单独的电隔离的光伏电池和 电隔离连接区数。 连接区域被图案化成每个包括底部电极材料的一部分,并且被构造成使得连接区域的每个区段中的底部电极材料被暴露,并且与特定电池的底部电极部分电连通。 电流收集栅格结构设置在每个单元的顶部电极上,并通过电极层在适当的连接区域中与相邻单元的底部电极电连通。 以这种方式,建立了电池之间的串联互连。 电气端子可以固定到模块,并且完成的模块可以被封装在保护材料的主体中。 用于制造模块的基板可以包括薄的柔性聚合材料层,并且所公开的技术可以用于制造超轻型光伏模块。 还公开了具体的模块结构。