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    • 35. 发明授权
    • Handheld extruder welding device
    • 手持挤出机焊接装置
    • US07374067B2
    • 2008-05-20
    • US11219041
    • 2005-09-02
    • Guiseppe De MiceliHans ArnoldAdolp Niederberger
    • Guiseppe De MiceliHans ArnoldAdolp Niederberger
    • B65D88/54
    • B29C47/0002B29C47/0009B29C47/1054B29C47/38B29C65/40B29C66/0242B29C66/861
    • Handheld extruder welding device for welding thermoplastic synthetic materials, including an extruder screw, a drive system for the extruder screw in an axial extension of the extruder screw, and a hot air unit with a blower, where the blower and the drive system are integrated in a housing including several parts, and where a cooling body with air inlets is located on the housing on the screw side. This cooling body transfers the axial and radial forces between the drive system and the screw cylinder and supports the housing. In this handheld extruder welding device, all drive components are integrated in one housing which makes it suitable for robust use and a long service life. Its design with a cooling body as the support base for the entire device represents a special function.
    • 用于焊接热塑性合成材料的手持式挤压机焊接装置,包括挤出机螺杆,用于挤出机螺杆的轴向延伸的挤出机螺杆的驱动系统和具有鼓风机的热空气单元,其中鼓风机和驱动系统被集成在 壳体包括多个部分,并且其中具有空气入口的冷却体位于螺钉侧的壳体上。 该冷却体传递驱动系统和螺杆缸之间的轴向力和径向力并支撑壳体。 在这种手持式挤压机焊接装置中,所有驱动部件都集成在一个壳体中,使其适用于强力使用和长使用寿命。 其设计采用冷却体作为整个设备的支撑底座代表了特殊功能。
    • 36. 发明申请
    • Assay Chip, and Uses of Said Assay Chip to Determine Molecular Structures and Functions
    • 测定芯片和所述测定芯片用于确定分子结构和功能的用途
    • US20070275480A1
    • 2007-11-29
    • US10584484
    • 2004-11-15
    • Karl BranderLouis Tiefenauer
    • Karl BranderLouis Tiefenauer
    • G01N33/68G01N33/566
    • G01N33/68B82Y5/00G01N33/54366G01N33/6845
    • An assay chip for investigation the functionality of membrane proteins and their interactions with molecules includes a nanopore array having a plurality of nanopores in a suitable support layer deposited on the nanopore substrate and being a substantially planar support layer having a plurality of nanopores corresponding to the nanopores of the nanopore substrate. The chip includes further a biologically effective layer capable to host at least a non-lipid molecule or functional molecule, deposited on the support layer and covering the plurality of nanopores, resulting in accesible nanopores from both sides of the biologically effective layer for measurement or imaging. The structured support allows generating a biologically effective membrane, such as a lipid bilayer membrane, having high and reliable stability in a manner that its fluidity is sustained in order to keep integrated membrane proteins in the lipid bilayer in its full biological functionality.
    • 用于研究膜蛋白的功能及其与分子的相互作用的测定芯片包括纳米孔阵列,该纳米孔阵列在沉积在纳米孔基底上的合适的支持层中具有多个纳米孔,并且是具有对应于纳米孔的多个纳米孔的基本平坦的支撑层 的纳米孔基材。 该芯片还包括能够承载沉积在支持层上并覆盖多个纳米孔的至少一种非脂质分子或功能性分子的生物学有效层,从而生物学有效层两侧的可接受的纳米孔用于测量或成像 。 结构化支持物允许产生生物学有效的膜,例如脂质双层膜,其以保持其流动性的方式具有高且可靠的稳定性,以将整合的膜蛋白保持在脂质双层中具有其完整的生物学功能。