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    • 7. 发明授权
    • High frequency emmitter and detector packaging scheme for 10GB/S transceiver
    • 10GB / S收发器的高频发射器和检测器封装方案
    • US07008120B2
    • 2006-03-07
    • US10638005
    • 2003-08-08
    • Brett ZaborskyRao PeddadaAndrew AlduinoDouglas CraftsSiegfried Fleischer
    • Brett ZaborskyRao PeddadaAndrew AlduinoDouglas CraftsSiegfried Fleischer
    • G02B6/43
    • G02B6/4201G02B6/4214G02B6/4225G02B6/4226G02B6/423G02B6/4246G02B6/4277G02B6/4279
    • An apparatus and packaging scheme that ensures that alignments between signal sending and detecting components in transceivers are optimized and maintained over the lifetime of the apparatus. This is accomplished through use of a pair of polymer optical modules, which are used to couple light sent to and received from respective fiber optic cables. During a pre-alignment process, head portions of the polymer optical modules are inserted into respective slots defined in a standoff that is mounted on an optical sub-assembly to which an emitter and detector are mounted, whereby these slots are configured so that the head portions slide along the sidewalls of the slots during assembly. During a subsequent active alignment process, each polymer optical module is positioned relative to its respective emitter or detector until a maximum signal is detected, whereupon the position of the components is quick-set using a UV-sensitive adhesive.
    • 一种确保收发器中的信号发送和检测部件之间的对准的设备和封装方案在设备的寿命期内被优化和维护。 这通过使用一对聚合物光学模块来实现,所述聚合物光学模块用于将发送到相应光纤电缆并从其接收的光耦合。 在预对准过程中,聚合物光学模块的头部被插入限定在安装在安装有发射器和检测器的光学子组件的支座上的相应狭槽中,由此这些狭槽被构造成使得头部 在组装期间,部分沿槽的侧壁滑动。 在随后的主动对准过程中,每个聚合物光学模块相对于其相应的发射器或检测器定位,直到检测到最大信号为止,于是组件的位置使用UV敏感粘合剂快速设定。
    • 8. 发明授权
    • High frequency emitter and detector packaging scheme for 10GB/S transceiver
    • 用于10GB / S收发器的高频发射器和检测器封装方案
    • US06692161B2
    • 2004-02-17
    • US09823294
    • 2001-03-29
    • Brett ZaborskyRao PeddadaAndrew AlduinoDouglas CraftsSiegfried Fleischer
    • Brett ZaborskyRao PeddadaAndrew AlduinoDouglas CraftsSiegfried Fleischer
    • G02B643
    • G02B6/4201G02B6/4214G02B6/4225G02B6/4226G02B6/423G02B6/4246G02B6/4277G02B6/4279
    • An apparatus and packaging scheme that ensures that alignments between signal sending and detecting components in transceivers are optimized and maintained over the lifetime of the apparatus. This is accomplished through use of a pair of polymer optical modules, which are used to couple light sent to and received from respective fiber optic cables. During a pre-alignment process, head portions of the polymer optical modules are inserted into respective slots defined in a standoff that is mounted on an optical sub-assembly to which an emitter and detector are mounted, whereby these slots are configured so that the head portions slide along the sidewalls of the slots during assembly. During a subsequent active alignment process, each polymer optical module is positioned relative to its respective emitter or detector until a maximum signal is detected, whereupon the position of the components is quick-set using a UV-sensitive adhesive. Additional adhesive may then be added to further secure the components.
    • 一种确保收发器中的信号发送和检测部件之间的对准的设备和封装方案在设备的寿命期内被优化和维护。 这通过使用一对聚合物光学模块来实现,所述聚合物光学模块用于将发送到相应光纤电缆并从其接收的光耦合。 在预对准过程中,聚合物光学模块的头部被插入限定在安装在安装有发射器和检测器的光学子组件的支座上的相应狭槽中,由此这些狭槽被构造成使得头部 在组装期间,部分沿槽的侧壁滑动。 在随后的主动对准过程中,每个聚合物光学模块相对于其相应的发射器或检测器定位,直到检测到最大信号为止,于是组件的位置使用UV敏感粘合剂快速设定。 然后可以加入另外的粘合剂以进一步固定部件。
    • 9. 发明申请
    • Photovoltaic module containing a metal/polymer stack for enhanced cooling and reflection
    • 包含金属/聚合物叠层的光伏组件,用于增强冷却和反射
    • US20110048495A1
    • 2011-03-03
    • US12661003
    • 2010-03-10
    • Satyanarayana Rao Peddada
    • Satyanarayana Rao Peddada
    • H01L31/052
    • H01L31/052H02S40/42Y02E10/50
    • A method and apparatus for efficiently cooling a PV module for converting solar radiation to electrical energy comprises a means for defining a thermally conductive path characterized by a steep thermal gradient (delta T) provided interiorly, adjacent the back surface of the solar cells and having opposite ends extending exteriorly around at least a portion of a back facing exterior surface of the PV module. Heat developed from the solar cells is efficiently conducted away from the solar cells along the steep thermal gradient to the exterior shaded surface of the PV module where heat is quickly dissipated to the ambient surroundings. The invention applies to both polycrystalline and single crystalline, as well as to thin film PV modules.
    • 用于有效地冷却用于将太阳辐射转换成电能的PV模块的方法和装置包括用于限定导热路径的装置,其特征在于在内部邻近太阳能电池的背面提供的陡峭的热梯度(delta T),并具有相反的 端部围绕PV模块的面向后的外表面的至少一部分外围延伸。 从太阳能电池产生的热量可以沿着陡峭的热梯度有效地从太阳能电池传播到PV模块的外部阴影表面,其中热量被快速耗散到周围的环境中。 本发明适用于多晶和单晶以及薄膜光伏组件。