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    • 1. 发明申请
    • SERIES INTERCONNECTED OPTOELECTRONIC DEVICE MODULE ASSEMBLY
    • 系列互连光电器件模块组件
    • US20080020503A1
    • 2008-01-24
    • US11865691
    • 2007-10-01
    • James SheatsSam KaoGregory MillerMartin Roscheisen
    • James SheatsSam KaoGregory MillerMartin Roscheisen
    • H01L21/00
    • H01L31/0392H01L27/3204H01L31/03925H01L31/03928H01L31/046H01L31/0465H01L31/0749H01L31/18H01L51/5203Y02E10/541Y02P70/521
    • Series interconnection of optoelectronic device modules is disclosed. Each device module includes an active layer disposed between a bottom electrode and a transparent conducting layer. An insulating layer is disposed between the bottom electrode of a first device module and a backside top electrode of the first device module. One or more vias are formed through the active layer, transparent conducting layer and insulating layer of the first device module. Sidewalls of the vias are coated with an insulating material such that a channel is formed through the insulating material to the backside top electrode of the first device module. The channel is at least partially filled with an electrically conductive material to form a plug that makes electrical contact between the transparent conducting layer and the backside top electrode of the first device module. Portions of the backside top electrode and insulating layer of a second device module are cut back to expose a portion of the bottom electrode of the second device module. The first and second device modules are attached to an insulating carrier substrate. Electrical contact is made between the backside top electrode of the first device module and the exposed portion of the bottom electrode of the second device module.
    • 公开了光电器件模块的串联互连。 每个器件模块包括设置在底部电极和透明导电层之间的有源层。 绝缘层设置在第一器件模块的底部电极和第一器件模块的背面顶部电极之间。 通过第一器件模块的有源层,透明导电层和绝缘层形成一个或多个通孔。 通孔的侧壁涂覆有绝缘材料,使得通过绝缘材料形成通道到第一器件模块的背面顶部电极。 通道至少部分地填充有导电材料以形成在第一器件模块的透明导电层和背面顶部电极之间形成电接触的插塞。 背面顶部电极和第二器件模块的绝缘层的部分被切割以暴露第二器件模块的底部电极的一部分。 第一和第二器件模块附接到绝缘载体衬底。 在第一器件模块的背面顶部电极和第二器件模块的底部电极的暴露部分之间形成电接触。
    • 2. 发明申请
    • Series interconnected optoelectronic device module assembly
    • 系列互连光电器件组件
    • US20060160261A1
    • 2006-07-20
    • US11039053
    • 2005-01-20
    • James SheatsSam KaoGregory MillerMartin Roscheisen
    • James SheatsSam KaoGregory MillerMartin Roscheisen
    • H01L21/00
    • H01L31/0392H01L27/3204H01L31/03925H01L31/03928H01L31/046H01L31/0465H01L31/0749H01L31/18H01L51/5203Y02E10/541Y02P70/521
    • Series interconnection of optoelectronic device modules is disclosed. Each device module includes an active layer disposed between a bottom electrode and a transparent conducting layer. An insulating layer is disposed between the bottom electrode of a first device module and a backside top electrode of the first device module. One or more vias are formed through the active layer, transparent conducting layer and insulating layer of the first device module. Sidewalls of the vias are coated with an insulating material such that a channel is formed through the insulating material to the backside top electrode of the first device module. The channel is at least partially filled with an electrically conductive material to form a plug that makes electrical contact between the transparent conducting layer and the backside top electrode of the first device module. Portions of the backside top electrode and insulating layer of a second device module are cut back to expose a portion of the bottom electrode of the second device module. The first and second device modules are attached to an insulating carrier substrate. Electrical contact is made between the backside top electrode of the first device module and the exposed portion of the bottom electrode of the second device module.
    • 公开了光电器件模块的串联互连。 每个器件模块包括设置在底部电极和透明导电层之间的有源层。 绝缘层设置在第一器件模块的底部电极和第一器件模块的背面顶部电极之间。 通过第一器件模块的有源层,透明导电层和绝缘层形成一个或多个通孔。 通孔的侧壁涂覆有绝缘材料,使得通过绝缘材料形成通道到第一器件模块的背面顶部电极。 通道至少部分地填充有导电材料,以形成在第一器件模块的透明导电层和背面顶部电极之间形成电接触的插塞。 背面顶部电极和第二器件模块的绝缘层的部分被切割以暴露第二器件模块的底部电极的一部分。 第一和第二器件模块附接到绝缘载体衬底。 在第一器件模块的背面顶部电极和第二器件模块的底部电极的暴露部分之间形成电接触。
    • 3. 发明申请
    • Optoelectronic device and fabrication method
    • 光电器件及其制造方法
    • US20070181177A9
    • 2007-08-09
    • US10290119
    • 2002-11-05
    • Brian SagerMartin RoscheisenKlaus PetritschGreg SmestadJacqueline FidanzaGregory MillerDong Yu
    • Brian SagerMartin RoscheisenKlaus PetritschGreg SmestadJacqueline FidanzaGregory MillerDong Yu
    • H01L31/00
    • H01L51/4226H01L51/0034H01L51/0035H01L51/0036H01L51/0038H01L51/0052H01L51/0053H01L51/0064H01L51/0078H01L51/4253Y02E10/549Y02P70/521
    • Charge-splitting networks, optoelectronic devices, methods for making optoelectronic devices, power generation systems utilizing such devices and method for making charge-splitting networks are disclosed. An optoelectronic device may include a porous nano-architected (e.g., surfactant-templated) film having interconnected pores that are accessible from both the underlying and overlying layers. A pore-filling material substantially fills the pores. The interconnected pores have diameters of about 1-100 nm and are distributed in a substantially uniform fashion with neighboring pores separated by a distance of about 1-100 nm. The nano-architected porous film and the pore-filling, material have complementary charge-transfer properties with respect to each other, i.e., one is an electron-acceptor and the other is a hole-acceptor. The nano-architected porous, film may be formed on a substrate by a surfactant temptation technique such as evaporation-induced self-assembly. A solar power generation system may include an array of such optoelectronic devices in the form of photovoltaic cells with one or more cells in the array having one or more porous charge-splitting networks disposed between an electron-accepting electrode and a hole-accepting electrode.
    • 公开了电荷分解网络,光电子器件,制造光电器件的方法,利用这种器件的发电系统以及用于制造电荷分解网络的方法。 光电子器件可以包括具有互连孔的多孔纳米结构(例如,表面活性剂模板化)膜,其可以从下面的层和上层两者接近。 孔填充材料基本上填充孔。 相互连通的孔具有大约1-100nm的直径,并以基本上均匀的方式分布,其中相邻的孔分开约1-100nm的距离。 纳米结构的多孔膜和孔填充材料相对于彼此具有互补的电荷转移性质,即一个是电子受体,另一个是空穴受体。 纳米结构的多孔膜可以通过表面活性剂诱导技术如蒸发诱导的自组装形成在基底上。 太阳能发电系统可以包括光伏电池形式的这种光电子器件的阵列,阵列中的一个或多个电池具有设置在电子接受电极和空穴接受电极之间的一个或多个多孔电荷分解网络。
    • 4. 发明申请
    • Optoelectronic device and frabrication method
    • 光电器件及其制造方法
    • US20060174934A1
    • 2006-08-10
    • US11375413
    • 2006-03-13
    • Brian SagerMartin RoscheisenKlaus PetristschGreg SmestadJacqueline FidanzaGregory MillerDong Yu
    • Brian SagerMartin RoscheisenKlaus PetristschGreg SmestadJacqueline FidanzaGregory MillerDong Yu
    • H01L31/042H01L31/00
    • H01L51/4226H01L51/0034H01L51/0035H01L51/0036H01L51/0038H01L51/0052H01L51/0053H01L51/0064H01L51/0078H01L51/4253Y02E10/549Y02P70/521
    • Charge-splitting networks, optoelectronic devices, methods for making optoelectronic devices, power generation systems utilizing such devices and method for making charge-splitting networks are disclosed. An optoelectronic device may include a porous nano-architected (e.g., surfactant-templated) film having interconnected pores that are accessible from both the underlying and overlying layers. A pore-filling material substantially fills the pores. The interconnected pores have diameters of about 1-100 nm and are distributed in a substantially uniform fashion with neighboring pores separated by a distance of about 1-100 nm. The nano-architected porous film and the pore-filling material have complementary charge-transfer properties with respect to each other, i.e., one is an electron-acceptor and the other is a hole-acceptor. The nano-architected porous, film may be formed on a substrate by a surfactant temptation technique such as evaporation-induced self-assembly. A solar power generation system may include an array of such optoelectronic devices in the form of photovoltaic cells with one or more cells in the array having one or more porous charge-splitting networks disposed between an electron-accepting electrode and a hole-accepting electrode.
    • 公开了电荷分解网络,光电子器件,制造光电器件的方法,利用这种器件的发电系统以及用于制造电荷分解网络的方法。 光电子器件可以包括具有互连孔的多孔纳米结构(例如,表面活性剂模板化)膜,其可以从下面的层和上层两者接近。 孔填充材料基本上填充孔。 相互连通的孔具有大约1-100nm的直径,并以基本上均匀的方式分布,其中相邻的孔分开约1-100nm的距离。 纳米构造的多孔膜和孔隙填充材料相互之间具有互补的电荷转移性质,即一个是电子受体,另一个是空穴受体。 纳米结构的多孔膜可以通过表面活性剂诱导技术如蒸发诱导的自组装形成在基底上。 太阳能发电系统可以包括光伏电池形式的这种光电子器件的阵列,阵列中的一个或多个电池具有设置在电子接受电极和空穴接受电极之间的一个或多个多孔电荷分解网络。
    • 5. 发明申请
    • High-efficiency solar cell with insulated vias
    • 具有绝缘通孔的高效太阳能电池
    • US20070186971A1
    • 2007-08-16
    • US11278645
    • 2006-04-04
    • Darren LochunJames SheatsGregory Miller
    • Darren LochunJames SheatsGregory Miller
    • H01L31/00
    • H01L31/0516H01L27/3204H01L31/022425H01L31/02245H01L31/0392H01L31/03923H01L31/03925H01L31/046H01L31/0463H01L31/0508H01L31/0512H01L31/0749H01L31/18H01L51/5203Y02E10/541
    • Methods and devices are provided for high-efficiency solar cells. In one embodiment, the device comprises of a solar cell having a high efficiency backside electrode configuration, wherein the solar cell comprises of: at least one transparent conductor, a photovoltaic layer, at least one bottom electrode, and at least one backside electrode. The device may include a plurality of electrical conduction fingers mounted to the transparent conductor in the solar cell. The device may include a plurality of filled vias coupled to the electrical conduction fingers, wherein the vias extend through the transparent conductor, the photovoltaic layer, and the bottom electrode, wherein the vias have a conductive core that conducts charge from the transparent conductor to the backside electrode. The via insulating layer may separate the conductive core in each via from the bottom electrode, wherein the insulating layer may be formed by a variety of techniques such as but not limited to aerosol coating of the via.
    • 为高效太阳能电池提供了方法和装置。 在一个实施例中,该装置包括具有高效背面电极结构的太阳能电池,其中太阳能电池包括:至少一个透明导体,光伏层,至少一个底部电极和至少一个背面电极。 该装置可以包括安装到太阳能电池中的透明导体的多个导电指状物。 该器件可以包括耦合到导电指状物的多个填充的通孔,其中通孔延伸通过透明导体,光伏层和底部电极,其中通孔具有将电荷从透明导体传导到 背面电极。 通孔绝缘层可以将每个通孔中的导电芯从底部电极分离,其中绝缘层可以通过各种技术形成,例如但不限于通孔的气溶胶涂层。
    • 9. 发明授权
    • Wash fluid distribution and filtration assembly and method
    • 清洗流体分布和过滤组件及方法
    • US08377228B2
    • 2013-02-19
    • US11636028
    • 2006-12-08
    • Matt D. MerschJoseph Duane TobbeGregory Miller
    • Matt D. MerschJoseph Duane TobbeGregory Miller
    • B08B3/00
    • A47L15/4202A47L15/4206
    • A fluid filtration assembly for a dishwasher system includes at least one spray arm assembly configured to distribute fluid within a wash chamber, and a filter assembly including a filter body defining a fluid inlet and a soil outlet thereon. A soil collection chamber is coupled in flow communication with the soil outlet and is configured to receive soil filtered by the filter assembly. A pump is configured to direct fluid to one of the spray arm assembly and the soil collection chamber. A valve assembly is movable between a first position and a second position. The valve assembly is coupled in flow communication with the spray arm assembly and the soil collection chamber. In the first position, the pump is configured to direct fluid to the at least one spray arm assembly. In the second position, the pump is configured to direct fluid into the soil collection chamber.
    • 用于洗碗机系统的流体过滤组件包括构造成在洗涤室内分配流体的至少一个喷雾臂组件和包括在其上限定流体入口和污物出口的过滤器主体的过滤器组件。 土壤收集室与土壤出口流动连通地联接并且被构造成接收由​​过滤器组件过滤的土壤。 泵构造成将流体引导到喷雾臂组件和土壤收集室中的一个。 阀组件可在第一位置和第二位置之间移动。 阀组件与喷雾臂组件和土壤收集室流体连通地联接。 在第一位置,泵构造成将流体引导到至少一个喷雾臂组件。 在第二位置,泵构造成将流体引导到土壤收集室中。