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    • 2. 发明授权
    • Deployable solar array assembly
    • 可部署的太阳能阵列组件
    • US06983914B2
    • 2006-01-10
    • US10779063
    • 2004-02-12
    • Ray A. StriblingJoel A. Schwartz
    • Ray A. StriblingJoel A. Schwartz
    • B64G1/44
    • B64G1/443B64G1/222Y10S136/292
    • Solar array assemblies and systems and methods for deploying solar cell arrays from a spacecraft. A solar cell panel assembly comprises a first flexible solar panel and a rotational member. A first extension assembly is disposed proximate to a first end of the rotational member and a second extension assembly is disposed proximate to a second end of the rotational member. The solar cell panel assembly further comprises a first support member and a second support member. The first end of the first support member is coupled to the first end of the rotational member and the first end of the second support member is coupled to the second end of the rotational member. The second ends of the support members are coupled to the first flexible solar panel. A tether assembly couples the extension assemblies to the support members.
    • 用于从太空船部署太阳能电池阵列的太阳能阵列组件和系统和方法。 太阳能电池板组件包括第一柔性太阳能电池板和旋转构件。 第一延伸组件靠近旋转构件的第一端设置,并且第二延伸组件靠近旋转构件的第二端设置。 太阳能电池板组件还包括第一支撑构件和第二支撑构件。 第一支撑构件的第一端联接到旋转构件的第一端,并且第二支撑构件的第一端联接到旋转构件的第二端。 支撑构件的第二端联接到第一柔性太阳能电池板。 系绳组件将延伸组件耦合到支撑构件。
    • 3. 发明授权
    • Method and apparatus to protect solar cells from electrostatic discharge damage
    • 保护太阳能电池免受静电放电损坏的方法和装置
    • US07082019B2
    • 2006-07-25
    • US10288037
    • 2002-11-04
    • John Michael BodeauPhilip L. LeungJesse Nerses MatossianJoel A. Schwartz
    • John Michael BodeauPhilip L. LeungJesse Nerses MatossianJoel A. Schwartz
    • H02H3/18
    • H02J7/355B64G1/428B64G1/443
    • Methods and apparatuses are disclosed for protecting solar cells from cellular degradation caused by an electrostatic discharge pulse. In one embodiment, a diode may bypass current generated from an electrostatic discharge so that the pulse current does not reverse bias the solar cell. Advanced diodes, capacitors and/or multiple diodes located on multiple bypass current paths, may be used. In another embodiment, the transient impedance of the current path that reverse biases the solar cell is increased by using inductors placed along the reversing current path. In another embodiment, the pulse current rise rate is reduced by extending the harness length of cell contacts. In another embodiment, solar cells in a serpentine pattern may be protected from electrostatic discharge damage by coupling bypass current paths to the open ends of the serpentine. Inductors may also be placed in series with the serpentine series of cells.
    • 公开了用于保护太阳能电池免受由静电放电脉冲引起的细胞降解的方法和装置。 在一个实施例中,二极管可以旁路从静电放电产生的电流,使得脉冲电流不反向偏置太阳能电池。 可以使用位于多个旁路电流路径上的高级二极管,电容器和/或多个二极管。 在另一实施例中,通过使用沿着反向电流路径放置的电感来增加反向偏置太阳能电池的电流路径的瞬态阻抗。 在另一个实施例中,通过延长电池触点的线束长度来减小脉冲电流上升速率。 在另一个实施例中,通过将旁路电流路径耦合到蛇形管的开口端,可以保护蛇形图案的太阳能电池免受静电放电损坏。 电感器也可以与蛇形系列电池串联放置。
    • 6. 发明授权
    • Multi-junction photovoltaic cell having buffer layers for the growth of single crystal boron compounds
    • 具有用于生长单晶硼化合物的缓冲层的多结光伏电池
    • US07122733B2
    • 2006-10-17
    • US10236797
    • 2002-09-06
    • Authi A. NarayananJoel A. Schwartz
    • Authi A. NarayananJoel A. Schwartz
    • H01L31/04H01L31/06
    • H01L31/0687H01L31/03046H01L31/0693Y02E10/544
    • The present invention provides a solar cell comprising a substrate, a first buffer layer disposed above the base layer, a second buffer layer disposed above the first buffer layer, a first boron compound layer disposed above the second buffer layer, a second boron compound layer disposed above the first compound layer, and a window layer disposed above the second compound layer, wherein the first compound layer comprises a first type of doping, wherein the second compound layer comprises a second type of doping, wherein the second buffer layer comprises a higher energy bandgap than the first compound layer, and wherein the first buffer layer and the second buffer layer permit a boron content in the first compound layer and the second compound layer to be greater than 3 %.
    • 本发明提供了一种太阳能电池,其包括基板,设置在基底层上方的第一缓冲层,设置在第一缓冲层上方的第二缓冲层,设置在第二缓冲层上方的第一硼化合物层,设置在第二缓冲层上的第二硼化合物层 在第一化合物层上方,以及设置在第二化合物层上方的窗口层,其中第一化合物层包括第一类型的掺杂,其中第二化合物层包括第二类型的掺杂,其中第二缓冲层包含较高的能量 并且其中第一缓冲层和第二缓冲层允许第一化合物层和第二化合物层中的硼含量大于3%。