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
    • 7. 发明授权
    • Method for manufacturing a fluid pressure measurement unit and a component for being used in a fluid pressure measurement unit
    • 用于制造流体压力测量单元的方法和用于流体压力测量单元中的部件
    • US07373826B2
    • 2008-05-20
    • US11458961
    • 2006-07-20
    • Joerg WeberBernd Beck
    • Joerg WeberBernd Beck
    • A61B5/02
    • G01L19/0023A61M5/16854A61M39/22A61M2205/3344A61M2230/30Y10T29/49144Y10T29/49146Y10T29/49171
    • A fluid pressure measurement unit is manufactured by steps of providing a measurement element with a measurement chip arranged on a first chip carrier side and a plurality of socket-shaped terminal contacts for contacting contact terminals of the measurement chip, the socket-shaped terminal contacts protruding from a second chip carrier side opposite from the chip carrier first side; providing a housing element comprising a plurality of receiving holes in a housing element first side which are implemented to receive the socket-shaped terminal contacts when combining the housing element with the measurement element, wherein the receiving holes extend from the housing element first side to a housing element second side opposite from the housing element first side; and combining the measurement element and the housing element, wherein the second chip carrier side is opposite from the housing element first side and the socket-shaped terminal contacts are arranged in the receiving holes.
    • 流体压力测量单元通过以下步骤来制造:测量元件具有布置在第一芯片载体侧上的测量芯片和用于接触测量芯片的接触端子的多个插座形状的端子触头,插座形状的端子触头突出 从与芯片载体第一侧相反的第二芯片载体侧; 提供壳体元件,其包括在壳体元件第一侧中的多个接收孔,当将所述壳体元件与所述测量元件组合时,所述多个接收孔被实现为接收所述插座形接线端子,其中所述接收孔从所述壳体元件第一侧延伸到 壳体元件第二侧与壳体元件第一侧相对; 以及组合测量元件和壳体元件,其中第二芯片载体侧与壳体元件第一侧相对,并且插座形端子触头布置在接收孔中。
    • 8. 发明申请
    • METHOD FOR MANUFACTURING A FLUID PRESSURE MEASUREMENT UNIT AND A COMPONENT FOR BEING USED IN A FLUID PRESSURE MEASUREMENT UNIT
    • 制造流体压力测量单元的方法和用于流体压力测量单元的组件
    • US20070209449A1
    • 2007-09-13
    • US11458961
    • 2006-07-20
    • Joerg WeberBernd Beck
    • Joerg WeberBernd Beck
    • G01F1/56H05K3/30H05K3/34
    • G01L19/0023A61M5/16854A61M39/22A61M2205/3344A61M2230/30Y10T29/49144Y10T29/49146Y10T29/49171
    • A method for manufacturing a component of a fluid pressure measurement unit includes the step of providing a measurement element with a measurement chip arranged on a first side of the chip carrier and a plurality of socket-shaped terminal contacts for contacting contact terminals of the measurement chip, wherein the socket-shaped terminal contacts protrude from a second side of the chip carrier opposite from the first side of the chip carrier. Further, the inventive method comprises a step of providing a housing element comprising a plurality of receiving holes in a first side of the housing element which are implemented to receive the socket-shaped terminal contacts when combining the housing element with the measurement element, wherein the receiving holes extend from the first side of the housing element to a second side of the housing element opposite from the first side of the housing element, wherein the step of providing the housing element includes spraying on a sealing element to the first side of the housing element and/or spraying on a closing element to the second side of the housing element for closing the receiving holes on the second side of the housing element. Finally, the inventive method includes a step of combining the measurement element and the housing element such that the second side of the chip carrier is opposite from the first side of the housing element and the socket-shaped terminal contacts are arranged in the receiving holes to manufacture the component of the fluid pressure measurement unit.
    • 一种制造流体压力测量单元的部件的方法包括以下步骤:向芯片载体的第一侧设置测量芯片和测量芯片,用于接触测量芯片的接触端子 ,其中所述插座形端子触点从所述芯片载体的与所述芯片载体的第一侧相对的第二侧突出。 此外,本发明的方法包括提供壳体元件的步骤,该壳体元件包括在壳体元件的第一侧中的多个接收孔,其在将壳体元件与测量元件组合时被实施为接收插座形接线端子,其中 接收孔从壳体元件的第一侧延伸到与壳体元件的第一侧相对的壳体元件的第二侧,其中提供壳体元件的步骤包括在密封元件上喷涂到壳体的第一侧 元件和/或在封闭元件上喷射到壳体元件的第二侧,用于封闭壳体元件的第二侧上的接收孔。 最后,本发明的方法包括将测量元件和壳体元件组合以使得芯片承载件的第二侧与壳体元件的第一侧相对的步骤,并且插座形端子触头布置在接收孔中 制造流体压力测量单元的部件。
    • 9. 发明申请
    • Patient monitoring apparatus
    • 病人监护仪
    • US20050203350A1
    • 2005-09-15
    • US11064338
    • 2005-02-23
    • Bernd Beck
    • Bernd Beck
    • A61B5/00A61B5/0215G06F19/00G08C17/00A61B5/02A61B5/08A61B10/00G06F17/00
    • A61B5/0002A61B5/0215G06F19/3418
    • A patient monitoring apparatus includes at least one transducer for a patient, a transmission device for the patient and a reception device which is remote therefrom and to which an evaluation unit is connected. The transmission and reception devices each have at least one memory. The memory in the transmission unit stores an explicit or unique unalterable identification code. The reception unit has a keypad which can be used to input an identification code into its memory. A radio link between the transmission and reception units is set up only if the two stored identification codes are identical. If the radio link is interrupted for a prescribed period, the identification code in the reception unit is automatically erased, and a connection can be set up again only after the appropriate identification code has been input on the reception unit again. The radio link operates on the basis of the Bluetooth protocol.
    • 患者监视装置包括至少一个用于患者的换能器,用于患者的传输装置和远离其的接收装置,并且连接有评估单元。 发送和接收设备各具有至少一个存储器。 传输单元中的存储器存储显式或唯一的不可更改的识别码。 接收单元具有可用于将识别码输入其存储器中的小键盘。 发送和接收单元之间的无线电链路仅在两个存储的识别码相同时被建立。 如果无线链路在规定时间内中断,接收单元中的识别码将被自动擦除,并且只有在再次在接收单元上输入适当的识别码之后,才能再次建立连接。 无线电链路基于蓝牙协议进行操作。