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
    • 22. 发明申请
    • Process for Preparing Inhalable Powders
    • 制备可吸入粉末的方法
    • US20070231272A1
    • 2007-10-04
    • US11762252
    • 2007-06-13
    • Georg BoeckMichael Walz
    • Georg BoeckMichael Walz
    • A61K9/14
    • A61K9/0075A61K31/46
    • The invention relates to a new process for producing powdered preparations for inhalation comprising a substance having a smaller particle size distribution and a substance having a larger particle size distribution, wherein a substance having a smaller particle size distribution and a substance having a larger particle size distribution are continuously metered into a suitable mixing container such that the quotient N of the delivery speed for the metering of the substance having the smaller particle size distribution and the delivery speed for the metering of the substance having the larger particle size distribution is at least as great as the quotient M of the total mass of the substance having the smaller particle size distribution and the total mass of the substance having the larger particle size distribution.
    • 本发明涉及一种用于生产粉末吸入制剂的新方法,其包括具有较小粒度分布的物质和具有较大粒度分布的物质,其中具有较小粒度分布的物质和具有较大粒度分布的物质 连续地计量到合适的混合容器中,使得具有较小粒度分布的物质计量的输送速度的商N和具有较大粒度分布的物质计量的输送速度至少为 作为具有较小粒度分布的物质和具有较大粒度分布的物质的总质量的总质量的商M。
    • 23. 发明授权
    • Process for preparing inhalable powders
    • 制备可吸入粉末的方法
    • US07244414B2
    • 2007-07-17
    • US10225781
    • 2002-08-22
    • Georg BoeckMichael Walz
    • Georg BoeckMichael Walz
    • A61K9/12A61K9/14A61K13/02A61K9/48A61K9/64
    • A61K9/0075A61K31/46
    • The invention relates to a new process for producing powdered preparations for inhalation comprising a substance having a smaller particle size distribution and a substance having a larger particle size distribution, wherein a substance having a smaller particle size distribution and a substance having a larger particle size distribution are continuously metered into a suitable mixing container such that the quotient N of the delivery speed for the metering of the substance having the smaller particle size distribution and the delivery speed for the metering of the substance having the larger particle size distribution is at least as great as the quotient M of the total mass of the substance having the smaller particle size distribution and the total mass of the substance having the larger particle size distribution.
    • 本发明涉及一种用于生产粉末吸入制剂的新方法,其包括具有较小粒度分布的物质和具有较大粒度分布的物质,其中具有较小粒度分布的物质和具有较大粒度分布的物质 连续地计量到合适的混合容器中,使得具有较小粒度分布的物质计量的输送速度的商N和具有较大粒度分布的物质计量的输送速度至少为 作为具有较小粒度分布的物质和具有较大粒度分布的物质的总质量的总质量的商M。
    • 25. 发明申请
    • SHAPE MEMORY ALLOY TRIP MECHANISM FOR ARC/GROUND FAULT CIRCUIT INTERRUPTION
    • 用于电弧/接地故障电路中断的形状记忆合金跳闸机制
    • US20060132267A1
    • 2006-06-22
    • US11016950
    • 2004-12-20
    • Michael WalzPatrick MillsRichard BenshoffPeter Nerstrom
    • Michael WalzPatrick MillsRichard BenshoffPeter Nerstrom
    • H01H75/12
    • H01H83/20H01H73/30H01H2083/201
    • A miniature circuit breaker comprising a non-conductive housing assembly; a pair of separable contacts including a first, fixed contact coupled to said housing assembly and having a terminal extending outside said housing assembly, and a second, movable contact having a terminal extending outside said housing assembly; an operating mechanism coupled to, and structured to move, said movable contact between a first position, wherein said movable contact engages said fixed contact, and a second position, wherein said movable contact is spaced from said fixed contact; a trip device coupled to said operating mechanism and structured to actuate said operating mechanism to separate said separable contacts upon the occurrence of a trip condition; an arc fault trip mechanism having an arc fault detector and a shape memory alloy element; said arc fault detector structured to detect an arc fault on the load side of said separable contacts and to provide an electrical pulse; said shape memory alloy element structured to transform between a first shape and a second shape during the application of an electrical pulse, said shape memory alloy element having a first end and a second end, said shape memory alloy element first end coupled to said housing assembly, said shape memory alloy element coupled to said trip device; said arc fault detector further coupled to said shape memory alloy element and structured to provide an electrical pulse to said shape memory alloy element sufficient to transform said shape memory alloy element from said first shape and said second shape; and wherein when said shape memory alloy element is in said second shape, said trip device is actuated and said operating mechanism separates said separable contacts.
    • 一种包括非导电壳体组件的微型断路器; 一对可分离触点,包括耦合到所述壳体组件的第一固定触点,并且具有延伸到所述壳体组件外部的端子;以及第二可移动触点,其具有延伸到所述壳体组件外部的端子; 操作机构,其联接到第一位置并且构造成在所述可动触头与所述固定触点接合的第一位置和第二位置之间联接并构造成移动所述可动触头,其中所述可动触头与所述固定触点间隔开; 耦合到所述操作机构并被构造成致动所述操作机构以在发生跳闸状态时分离所述可分离触点的跳闸装置; 具有电弧故障检测器和形状记忆合金元件的电弧故障跳闸机构; 所述电弧故障检测器被构造成检测所述可分离触点的负载侧上的电弧故障并提供电脉冲; 所述形状记忆合金元件构造成在施加电脉冲期间在第一形状和第二形状之间转变,所述形状记忆合金元件具有第一端和第二端,所述形状记忆合金元件第一端联接到所述壳体组件 ,所述形状记忆合金元件耦合到所述跳闸装置; 所述电弧故障检测器还耦合到所述形状记忆合金元件并且被构造为向所述形状记忆合金元件提供足以将所述形状记忆合金元件从所述第一形状和所述第二形状变换的电脉冲; 并且其中当所述形状记忆合金元件处于所述第二形状时,所述跳闸装置被致动,并且所述操作机构分离所述可分离触点。