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    • 81. 发明申请
    • Coupling Socket For Connecting Medical Instruments
    • 用于连接医疗仪器的耦合插座
    • US20130252454A1
    • 2013-09-26
    • US13897091
    • 2013-05-17
    • Sabine ZahlerSebastian FreyMichael Sauer
    • Sabine ZahlerSebastian FreyMichael Sauer
    • H01R13/627
    • H01R13/627A61B1/00105A61B1/00128A61B2017/00477A61B2017/347
    • A medical-engineering coupling mechanism for connecting two medical instruments having a coupling plug and a coupling socket for inserting the coupling plug, so that the coupling socket and the coupling plug can be secured to one another by at least one spring-loaded notching connection. To produce a medical-engineering coupling mechanism that is easy to manipulate and ensures a secure notching connection of the components that are to be connected to one another, it is proposed with the invention that the notching connection consists of at least two notching hooks that are positioned on one of the components and are in active engagement with at least one spring element configured as a spring washer, and at least one notching recess positioned on the other component for insertion of the at least two notching hooks.
    • 一种用于连接具有联接插头和用于插入联接插头的耦合插座的两个医疗器械的医疗工程耦合机构,使得联接插座和联接插头可以通过至少一个弹簧加载的开槽连接彼此固定。 为了制造易于操作并确保要彼此连接的部件的安全的凹口连接的医疗工程联接机构,本发明提出了开槽连接由至少两个开槽钩 与至少一个被配置为弹簧垫圈的弹簧元件和至少一个位于另一个部件上的插槽的至少一个凹口凹槽主动配合,以插入至少两个开槽钩。
    • 83. 发明授权
    • Device for affixing to cylindrical components of medical instruments
    • 用于固定医疗器械的圆柱形部件的装置
    • US08286970B2
    • 2012-10-16
    • US11943660
    • 2007-11-21
    • Sebastian FreyMichael Sauer
    • Sebastian FreyMichael Sauer
    • B23B31/20
    • A61B17/3421A61B1/00135A61B2017/0046A61B2017/00477A61B2017/347Y10T279/17341Y10T279/17529Y10T279/17905
    • The invention relates to a device for affixing to cylindrical components of medical instruments, for instance an instrumental shaft, having at least one intake part that can be mounted on the cylindrical component and can be affixed to the cylindrical component, wherein a sleeve-shaped collet chuck that essentially coaxially surrounds the cylindrical component is positioned in the intake part and whose inner diameter can be displaced between a span that can slide along the cylindrical component and a span that is in form-locking contiguity on the cylindrical component. To allow for a stationary clamping on the one hand and ensure a non-harmful clamping of the cylindrical component on the other hand, it is proposed with the invention that the inner diameter of the collet chuck can be displaced by a slider that can slide essentially diagonally to the cylindrical component and is mounted so that it can slide in the housing of the intake part.
    • 本发明涉及一种用于固定到医疗器械(例如器械轴)的圆柱形部件的装置,其具有至少一个可安装在圆柱形部件上并可固定到圆柱形部件上的进气部分,其中套筒状夹头 基本上同轴地围绕圆柱形部件的卡盘定位在进气部分中,并且其内径可以沿着可沿着圆柱形部件滑动的跨度和在圆柱形部件上形成锁定接合的跨度而移位。 为了允许固定夹紧,另一方面确保圆柱形部件的无害夹紧,本发明提出了夹头卡盘的内径可以被滑块基本上移动 对角地连接到圆柱形部件并且被安装成使得其可以在进气部分的壳体中滑动。
    • 88. 发明申请
    • Dynamic Cell Bonding (DCB) for Radio-over-Fiber (RoF)-Based Networks and Communication Systems and Related Methods
    • 用于基于无线光纤(RoF)的网络和通信系统的动态小区绑定(DCB)及相关方法
    • US20110200325A1
    • 2011-08-18
    • US12705779
    • 2010-02-15
    • Andrey KobyakovMichael Sauer
    • Andrey KobyakovMichael Sauer
    • H04B17/00H04B10/00
    • H04B10/25753H04B7/0413H04B10/2581H04W48/20
    • Communication devices, systems, and methods for dynamic cell bonding (DCB) for Radio-over-Fiber (RoF)-based networks and communication systems are disclosed. In one embodiment, a method of operating an optical fiber-based wireless communication system is provided. The method includes determining a first plurality of remote units in a cloud bonded to a Radio-over-Fiber (RoF) communication session. The method also includes measuring a received signal strength from each of the first plurality of remote units. The method also includes measuring a received signal strength from each of a second plurality of remote units in the cloud not bonded to the RoF communication session. At least one of the second plurality of remote units is dynamically bonded to the RoF communication session if the measured received signal strength of the one of the second plurality of remote units is greater than the measured received signal strength of the first plurality of remote units.
    • 公开了用于基于无线光纤(RoF)的网络和通信系统的用于动态小区绑定(DCB)的通信设备,系统和方法。 在一个实施例中,提供了一种操作基于光纤的无线通信系统的方法。 该方法包括确定粘合到光纤无线(RoF)通信会话的云中的第一多个远程单元。 该方法还包括测量来自第一多个远程单元中的每一个的接收信号强度。 该方法还包括测量来自未绑定到RoF通信会话的云中的第二多个远程单元中的每一个的接收信号强度。 如果所测量的第二多个远程单元之一的接收信号强度大于第一多个远程单元的测量的接收信号强度,则第二多个远程单元中的至少一个被动态地绑定到RoF通信会话。
    • 90. 发明申请
    • Medical punch
    • 医疗打孔
    • US20100312265A1
    • 2010-12-09
    • US12793964
    • 2010-06-04
    • Martin OberlaenderMichael SauerUwe BacherMichael Staehler
    • Martin OberlaenderMichael SauerUwe BacherMichael Staehler
    • A61B17/32
    • A61B17/1611
    • A medical punch with a hollow shaft, a tool point that is positioned on the distal end of the shaft and includes a rigid cutting part and a cutting part that can slide with respect to the rigid cutting part, and with a handle positioned on the proximal end of the shaft, such that the displaceable cutting part and the handle are operatively connected with one another by a push/pull device that is displaceably mounted in the hollow shaft and an anti-tilt mechanism is positioned on the tool point to stabilize the cutting parts in their axially parallel alignment to one another. The rigid cutting part includes a sleeve-shaped proximal portion that encloses the displaceable cutting part and a distal punch portion configured as a single unit with the sleeve-shaped portion and that the rigid cutting part should be detachably connected with the hollow shaft by a coupling mechanism formed on the sleeve-shaped portion.
    • 具有空心轴的医用冲头,位于轴的远端上的工具点,其包括可相对于刚性切削部分滑动的刚性切削部分和切削部分,以及位于近端 使得可移动的切割部分和手柄通过可移动地安装在中空轴中的推/拉装置彼此操作地连接,并且防倾斜机构定位在工具点上以稳定切割 部件彼此轴向平行对准。 刚性切割部分包括套筒形近端部分,其包围可移动切割部分和远侧冲头部分,该远端冲头部分构造为具有套筒形部分的单个单元,并且刚性切割部分应通过联接器与中空轴可拆卸地连接 机构形成在套筒形部分上。