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    • 4. 发明授权
    • Method, system and gateway allowing secured end-to-end access to WAP services
    • 方法,系统和网关允许安全的端到端访问WAP服务
    • US07237261B1
    • 2007-06-26
    • US09592916
    • 2000-06-13
    • Adriano HuberUrs Loher
    • Adriano HuberUrs Loher
    • H04L9/00
    • H04L63/0428H04L63/166H04L63/20H04W12/02
    • Method with which a mobile subscriber with a WAP-enabled terminal (1) can access a WAP or WEB server (5), wherein said terminal (1) sends a request for said server to a WAP gateway (3) wherein the security in the air interface (2) between the said WAP-enabled terminal (1) and said gateway (3) is based on WTLS (Wireless Transport Layer Security), wherein the security protocol used by said server (5) is based on the SSL and/or TLS security protocol, wherein the conversion between WTLS and SSL and/or TLS is effected in a secured domain of said server (5) administrated by an administrator, and wherein the packets sent by said terminal (1) are routed by said gateway (3) to said secured domain, without decrypting all the packets transmitted during a session.
    • 具有启用WAP的终端(1)的移动用户可以访问WAP或WEB服务器(5)的方法,其中所述终端(1)向WAP网关(3)发送对所述服务器的请求,其中,所述WAP或WEB服务器 所述启用WAP的终端(1)和所述网关(3)之间的空中接口(2)基于WTLS(无线传输层安全性),其中由所述服务器(5)使用的安全协议基于SSL和/ 或TLS安全协议,其中在由管理员管理的所述服务器(5)的安全域中实现WTLS与SSL和/或TLS之间的转换,并且其中由所述终端(1)发送的分组由所述网关路由( 3)到所述安全域,而不会解密在会话期间发送的所有分组。
    • 5. 发明申请
    • DEVICE AND METHOD FOR TEMPERATURE COMPENSATION TESTING OF DIGITAL LOAD CELLS
    • 数字负载电池温度补偿测试装置及方法
    • US20100251833A1
    • 2010-10-07
    • US12418078
    • 2009-04-03
    • Daniel ReberUrs LoherAaron Skidmore
    • Daniel ReberUrs LoherAaron Skidmore
    • G01L1/04
    • G01G23/01G01G23/3728G01L25/00
    • A device and method for effectuating the temperature compensation testing of digital load cells. The device uses conductive heat transfer to establish and maintain the temperature of the load cell(s) during testing. The device may include a vessel into which one or more load cells to be tested are placed. Temperature control of the load cells may be accomplished by circulating a temperature controlled fluid through the vessel. The vessel containing the one or more load cells may then be placed in a load application device that applies a load(s) to the one or more load cells during testing. Readings from the one or more load cells are used to establish a temperature compensation factor for each load cell tested. In other embodiments, temperature control of the load cells may be accomplished by placing the load cells in contact with a solid heat transfer element(s).
    • 一种实现数字称重传感器温度补偿测试的装置和方法。 该装置在测试期间使用导电传热来建立和维持测力传感器的温度。 该装置可以包括其中放置一个或多个待测试称重传感器的容器。 称重传感器的温度控制可以通过将受温度控制的流体循环通过容器来实现。 然后可以将容纳一个或多个称重传感器的容器放置在在测试期间将负载施加到一个或多个称重传感器的负载施加装置中。 来自一个或多个称重传感器的读数用于为测试的每个称重传感器建立温度补偿系数。 在其它实施例中,可以通过将测力传感器与固体传热元件接触来实现测力传感器的温度控制。
    • 9. 发明授权
    • Force transducer, mounting arrangement for a force transducer, and weighing scale
    • 力传感器,力传感器的安装布置和称重秤
    • US07051603B2
    • 2006-05-30
    • US10943037
    • 2004-09-17
    • Urs LoherChandradeo SawhJean-Maurice Tellenbach
    • Urs LoherChandradeo SawhJean-Maurice Tellenbach
    • G01L1/04
    • G01G3/1414G01G21/28G01G23/005
    • An exemplary mounting arrangement serves for the mounting of a force transducer that has a sensor-equipped core part connecting a support part to a force-application part. The support part can be bolted to a fastening part by mounting screws, and the force-application part can be bolted to a weighing pan carrier by means of mounting screws. The support part and the force-application part of the force transducer can each have a triplet of threaded holes serving to receive the mounting screws. Each triplet forms an isosceles triangle whose apex points towards the deformable body. The symmetry axes of the triangles lie in a plane that is parallel to the displacement travel of the force transducer. The mounting arrangement can be further configured to provide an effective overload protection in a low-profile design and to provide a thermally uncoupled fixation.
    • 示例性的安装布置用于安装力传感器,该力传感器具有将支撑部分连接到力施加部分的具有传感器的芯部分。 支撑部件可以通过安装螺钉螺栓连接到紧固部件,并且施力部件可以通过安装螺钉螺栓连接到称重盘托架上。 力传感器的支撑部分和力施加部分各自具有用于接收安装螺钉的三角形螺纹孔。 每个三元组形成等腰三角形,其顶点指向可变形体。 三角形的对称轴位于与力传感器的位移行程平行的平面中。 安装布置可以被进一步配置成在低轮廓设计中提供有效的过载保护并提供热分离固定。