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    • 1. 发明申请
    • SHAPE MEMORY ALLOY EJECTION MECHANISM FOR EJECTING A TEST STRIP FROM A TEST METER
    • 用于从测试仪器中排出测试条的形状记忆合金排出机构
    • WO2011095775A1
    • 2011-08-11
    • PCT/GB2011/000143
    • 2011-02-03
    • LIFESCAN SCOTLAND LIMITEDDEANGELI, MarcoVALSECCHI, Luca
    • DEANGELI, MarcoVALSECCHI, Luca
    • G01N33/487
    • G01N33/48757
    • A test strip ejection mechanism, for use with a test strip receiving port and a test strip, includes a framework, an elongated shape memory alloy (SMA) strip (e.g., a SMA wire), a slider, and a heating module. The SMA strip has first and second ends that are attached to the framework and exhibits a solid state transition temperature. The slider is configured to travel along the framework. The heating module is configured to heat the SMA strip from a temperature below the solid state transition temperature to a temperature above the solid state transition temperature. Moreover, the SMA strip and slider are configured such that the slider travels along the framework under an applied force exerted on the slider by the SMA strip as the shape memory strip is heated from a temperature below the solid state transition temperature to a temperature above the solid state temperature by the heating module. In addition, the slider has a proximal end configured to engage a test strip received within a test strip receiving port and eject the test strip from the test strip receiving port as the slider travels along the framework. A test meter for use with a test strip includes a test strip receiving port and a test strip ejection mechanism.
    • 用于测试条接收端口和测试条的测试条弹出机构包括框架,细长形状记忆合金(SMA)条(例如SMA线),滑块和加热模块。 SMA带具有连接到框架并具有固态转变温度的第一和第二端。 滑块被配置为沿着框架行进。 加热模块被配置为将SMA条带从低于固态转变温度的温度加热到高于固态转变温度的温度。 此外,SMA条和滑块被构造成使得当形状记忆条被从低于固态转变温度的温度加热到高于固态转变温度的温度时,滑块在由SMA条带施加在滑块上的施加力下沿框架行进 固态温度由加热模块组成。 另外,滑块具有近端,其被配置为接合容纳在测试条接收端口内的测试条,并且当​​滑块沿着框架行进时将测试条从测试条接收端口排出。 用于测试条的测试仪包括测试条接收端口和测试条弹出机构。
    • 2. 发明申请
    • SHAPE MEMORY ALLOY EJECTION MECHANISM FOR EJECTING A TEST STRIP FROM A TEST METER
    • 用于从测试仪器中排出测试条的形状记忆合金排出机构
    • WO2011095774A1
    • 2011-08-11
    • PCT/GB2011/000142
    • 2011-02-03
    • LIFESCAN SCOTLAND LIMITEDDEANGELI, MarcoVALSECCHI, Luca
    • DEANGELI, MarcoVALSECCHI, Luca
    • G01N33/487
    • G01N33/4875
    • A method for ejecting a test strip from a test meter includes initiating activation of a test strip ejection mechanism that is in a pre-ejection state. In the method, the test strip ejection mechanism includes a shape memory alloy strip that exhibits a solid state transition temperature and has a programmed configuration and a deformed configuration. In the test strip ejection mechanism pre-ejection state, a test strip has been received within a test strip receiving port of the test meter and the shape memory alloy strip is in the deformed configuration. The method also includes heating, in response to the initiation step, the shape memory alloy strip from below the solid state transition temperature to above the solid state transition temperature. The heating results in the shape memory alloy strip undergoing a transformation from the deformed configuration to the programmed configuration. The method also includes applying a force produced by the transformation from the deformed configuration to the programmed configuration to the test strip and, thereby, ejecting the test strip from the test strip receiving port.
    • 从测试仪器弹出测试条的方法包括启动处于预喷射状态的测试条弹出机构。 在该方法中,测试条弹出机构包括呈现固态转变温度并具有编程配置和变形构型的形状记忆合金条。 在测试条弹出机构预喷射状态下,测试条已被接收在测试仪的测试条接收端口内,形状记忆合金条处于变形状态。 该方法还包括响应于起始步骤,将形状记忆合金条从固态转变温度以下升至高于固态转变温度。 加热导致形状记忆合金条经历从变形构型到编程构型的转变。 该方法还包括通过变形产生的力从变形构型到编程构型施加到测试条上,从而将测试条从测试条接收端口排出。
    • 3. 发明申请
    • HAND-HELD TEST METER WITH ANALYTICAL TEST STRIP EJECTION MECHANISM
    • 具有分析测试条纹喷射机制的手持式测试仪
    • WO2013079977A1
    • 2013-06-06
    • PCT/GB2012/052987
    • 2012-12-03
    • LIFESCAN SCOTLAND LIMITED
    • NELSON, JonnyFAULKNER, AllanVALSECCHI, LucaBERETTA, RobertoVOLPE, MaurizioSALA, MicheleFOLEY, NickCROSSLAND, ColinTRICKETT, Paul
    • G01N33/487
    • G01N33/48757G01N33/4875
    • A hand-held test meter for use with an analytical test strip in the determination of an analyte (such as glucose) in a bodily fluid sample (e.g., a whole blood sample) includes a housing, with an outer surface, and an analytical test strip ejection mechanism ("ATSEM"). The ATSEM has an actuation button disposed in the outer surface of the housing, a motion amplification and rotation assembly ("MA&RA") operatively connected to the actuation button and a test strip slider operatively connected to the MA&RA. The actuation button is configured for movement by a user's digit in a first direction and the MA&RA and test strip slider are configured to convert the movement in the first direction into amplified movement of the test strip slider in a second direction with the second direction being rotated with respect to the first direction. In addition, the test strip slider is further configured for operative engagement with an analytical test strip inserted into the hand-held test meter in an engaged state such that movement of the test strip slider in the second direction from the engaged state to an ejected state ejects the analytical test strip from the hand-held test meter.
    • 用于测定体液样品(例如全血样品)中的分析物(例如葡萄糖)的分析测试条的手持式测试仪器包括具有外表面的壳体和分析测试 剥离机构(“ATSEM”)。 ATSEM具有设置在壳体的外表面中的致动按钮,可操作地连接到致动按钮的运动放大和旋转组件(“MA&RA”)和可操作地连接到MA&RA的测试条滑块。 致动按钮被配置为在第一方向上由用户的数字移动,并且MA&RA和测试条滑块被配置成将第一方向上的运动转换成第二方向上的测试条滑块的第二方向的放大运动 相对于第一个方向。 此外,测试条滑块进一步构造成在接合状态下与插入到手持测试仪中的分析测试条操作接合,使得测试条滑块在第二方向上从接合状态移动到喷射状态 从手持式测试仪中弹出分析测试条。
    • 4. 发明申请
    • ELECTRICAL CONNECTOR FOR SUBSTRATE HAVING CONDUCTIVE TRACKS
    • 具有导电轨道的基座的电气连接器
    • WO2014096826A1
    • 2014-06-26
    • PCT/GB2013/053354
    • 2013-12-19
    • LIFESCAN SCOTLAND LIMITED
    • CARROLL, GaryCONFIELD, IvanVALSECCHI, LucaSALA, MicheleVOLPE, MaurizioBERETTA, RobertoNELSON, John
    • G01N33/487
    • H01R12/613G01N33/48771H01R12/714H01R13/6683H01R2201/12H01R2201/20
    • An electrical connector (110) can receive a substrate (351) having conductive tracks (341, 342, 343, 344, 345). The connector includes a housing (120) with a port (129) and at least one alignment feature (121, 321) that together define a direction of insertion (125). At least three function pins (131, 132, 133, 134, 135) mounted to the housing each include contacts (141, 142, 143, 144, 145) that electrically connect to one of the conductive tracks of a substrate inserted in the connector. A sense pin (139) mounted to the housing has a contact (149) that electrically connects to at least one of the conductive tracks of an inserted substrate. The sense pin can include a plurality of electrically-connected segments, each segment extending substantially parallel or substantially perpendicular to the direction of insertion of the substrate. Systems and methods for detecting an analyte in a bodily-fluid sample are also described.
    • 电连接器(110)可以接收具有导电轨迹(341,342,343,344,345)的基底(351)。 连接器包括具有端口(129)的壳体(120)和一起限定插入方向(125)的至少一个对准特征(121,321)。 安装到壳体的至少三个功能销(131,132,133,134,135)包括电连接到插入连接器中的基板的导电轨道中的一个的触点(141,142,143,144,145) 。 安装到壳体的感测针(139)具有电连接到插入的衬底的至少一个导电轨道的触点(149)。 感测引脚可以包括多个电连接的段,每个段基本上平行或基本垂直于衬底的插入方向延伸。 还描述了用于检测体液样品中的分析物的系统和方法。