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
    • 65. 发明申请
    • Substrate structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays
    • 集成串联光伏阵列的基板结构和这种阵列的制造工艺
    • US20080227236A1
    • 2008-09-18
    • US12154078
    • 2008-05-19
    • Daniel Luch
    • Daniel Luch
    • H01L21/00H01L31/0392
    • H01L31/0445H01L31/0392H01L31/0504H01L31/0508H01L2924/0002Y02E10/50H01L2924/00
    • This invention comprises manufacture of photovoltaic cells by deposition of thin film photovoltaic junctions on metal foil substrates. The photovoltaic junctions may be heat treated if appropriate following deposition in a continuous fashion without deterioration of the metal support structure. In a separate operation, an interconnection substrate structure is provided, optionally in a continuous fashion. Multiple photovoltaic cells are then laminated to the interconnection substrate structure and conductive joining methods are employed to complete the array. In this way the interconnection substrate structure can be uniquely formulated from polymer-based materials employing optimal processing unique to polymeric materials. Furthermore, the photovoltaic junction and its metal foil support can be produced in bulk without the need to use the expensive and intricate material removal operations currently taught in the art to achieve series interconnections.
    • 本发明包括通过在金属箔基底上沉积薄膜光伏结来制造光伏电池。 如果适当的话,光伏结可以以连续的方式沉积而不损坏金属支撑结构,进行热处理。 在单独的操作中,可选地以连续的方式提供互连衬底结构。 然后将多个光伏电池层压到互连衬底结构,并采用导电接合方法来完成阵列。 以这种方式,互连基板结构可以使用采用聚合物材料独特的最佳加工的聚合物基材料独特地配制。 此外,光伏接头及其金属箔支撑件可以批量生产,而不需要使用本领域当前教导的昂贵且复杂的材料去除操作来实现串联互连。
    • 66. 发明授权
    • Electromagnetic interference shields and methods of manufacture
    • 电磁干扰屏蔽和制造方法
    • US07120005B1
    • 2006-10-10
    • US10756072
    • 2004-01-12
    • Daniel Luch
    • Daniel Luch
    • H02H47/00
    • H05K9/0084H05K9/0015H05K9/0088
    • The invention teaches improved materials and processes for production of structures to shield against ingress or egress of electromagnetic radiation. The structures and processes taught are based on the recognition and use of directly electroplateable resins. The directly electroplateable resins are combined with electrodeposited metal-based coatings to result in uniquely suitable structures to achieve radiation shielding. Fabrication and compositional flexibility of directly electroplateable resins and low cost material possibilities contribute to the unique suitability of directly electroplateable resins in the production of improved electromagnetic radiation shields.
    • 本发明教导了用于生产结构以防止电磁辐射的入射或流出的改进的材料和方法。 所教导的结构和过程基于直接电镀树脂的识别和使用。 直接电镀树脂与电沉积的金属基涂层结合,以产生独特的合适结构以实现辐射屏蔽。 直接电镀树脂的制造和组成灵活性以及低成本材料的可能性有助于直接电镀树脂在生产改进的电磁辐射屏蔽中的独特适用性。
    • 67. 发明申请
    • Tamper-evident cap and container neck
    • 防篡改的帽子和容器颈部
    • US20050269282A1
    • 2005-12-08
    • US11057952
    • 2005-02-14
    • Daniel Luch
    • Daniel Luch
    • B65D1/02B65D41/04B65D41/17B65D41/34B65D77/20
    • B65D41/3409B29C65/561B29C65/58B29C66/65B65D1/023B65D41/0421B65D41/0471B65D41/17B65D41/34B65D41/3404B65D2101/0023B65D2101/0038B65D2101/0053B65D2251/0015B65D2251/0093B65D2501/0081B65D2577/205
    • A tamper-evident, snap-on, screw-off closure is used with a specially shaped container neck. The neck has at least one first helical thread on an upper neck stretch portion, and at least one external ratchet tooth on a locking wall portion below the upper neck stretch portion. The closure has an upper skirt having at least one second helical thread mating with the first helical thread of the neck. A downward extending lower skirt portion includes an outer skirt portion and a shoulder extending inwardly from said outer skirt portion. A frangible section interconnects the shoulder and the upper skirt portion. At least one substantially vertical castle projection is formed upstanding from the shoulder, preventing upward deformation of the lower skirt portion without breaking the frangible section. The lower skirt portion has at least one internal ratchet tooth, and is formed with a line of weakness extending through the outer skirt portion and the shoulder. The lower skirt has a tear tab which, when pulled, fractures the lower skirt on a vertical line. Continued pulling on the tab sequentially fractures the frangible section.
    • 特殊形状的容器颈部使用防篡改,卡扣式,旋紧式封闭件。 颈部具有在上颈部拉伸部分上的至少一个第一螺旋形螺纹和在上颈部伸展部分下方的锁定壁部分上的至少一个外部棘轮齿。 封闭件具有上裙部,其具有与颈部的第一螺旋螺纹配合的至少一个第二螺旋螺纹。 向下延伸的下裙部包括外裙部和从所述外裙部向内延伸的肩部。 易碎部分将肩部和上裙部相互连接。 从肩部形成至少一个基本上垂直的城堡突起,防止下裙部的向上变形,而不破坏易碎部分。 下裙部具有至少一个内部棘齿,并且形成有延伸穿过外裙部和肩部的弱线。 下裙部有一个撕裂片,当被拉动时,它在垂直线上折下下裙部。 继续拉动标签依次破碎易碎部分。
    • 69. 发明授权
    • Substrate and collector grid structures for electrically interconnecting photovoltaic arrays and process of manufacture of such arrays
    • 用于电互连光伏阵列的基板和集电极栅格结构以及这种阵列的制造工艺
    • US06239352B1
    • 2001-05-29
    • US09281656
    • 1999-03-30
    • Daniel Luch
    • Daniel Luch
    • H01L31042
    • H01L31/0508H01L31/0445H01L31/048H01L31/0512Y02E10/50
    • This invention comprises deposition of thin film photovoltaic junctions on metal substrates which can be heat treated following deposition in a continuous fashion without deterioration of the metal support structure. In a separate operation, an interconnection substrate structure is produced in a continuous roll-to-roll fashion. In this way the interconnection substrate structure can be uniquely formulated from polymer-based materials since it does not have to endure high temperature exposure. Cells comprising the metal foil supported photovoltaic junctions are then laminated to the interconnection substrate structure. Conductive interconnections are deposited to complete the array. The conductive interconnections can be accomplished with a separately prepared interconnection component. The interconnected array is produced using continuous roll-to-roll processing which avoids the need to use the expensive and intricate material removal operations currently taught in the art to achieve electrical interconnections among arrays of photovoltaic cells.
    • 本发明包括在金属基底上沉积薄膜光伏结,其可以以连续的方式沉积而不会损坏金属支撑结构而进行热处理。 在单独的操作中,以连续的卷对卷方式生产互连基板结构。 以这种方式,互连衬底结构可以由聚合物基材料独特地配制,因为它不必承受高温暴露。 然后将包含金属箔支撑的光伏结的电池层压到互连衬底结构。 导电互连被沉积完成阵列。 导电互连可以通过单独准备的互连部件实现。 使用连续的卷对卷处理来生产互连的阵列,其避免了使用本领域当前教导的昂贵且复杂的材料去除操作的需要,以实现光伏电池阵列之间的电互连。