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    • 3. 发明申请
    • CAPACITIVE UTERINE CONTRACTION SENSOR
    • 电容式尿床收缩传感器
    • WO2004016168A1
    • 2004-02-26
    • PCT/US2003/026057
    • 2003-08-19
    • CZARNEK & ORKIN LABORATORIES, INC.CZARNEK, Robert
    • CZARNEK, Robert
    • A61B5/103
    • A61B5/4356A61B5/04882A61B2562/02
    • A capacitive uterine contraction sensor (28) includes an insulating substrate (18), a first electrode (20) disposed on one side of the substrate (18), and a second electrode (22) positioned in a spaced relation to the first electrode (20). The second electrode (22) is configured to move toward or away from the first electrode (20). The sensor may also include a conductive standoff (24) sandwiched between the substrate (18) and the second electrode (22) for maintaining the second electrode (22) in a spaced relation to the first electrode (20). The conductive standoff (24) is electrically coupled to the second electrode (22) and electrically isolated from the first electrode (20). Alternatively, the second electrode (22) may include a spring mechanism used in conjunction with a standoff (24) to maintain the second electrode (22) in a spaced relation to the first electrode (20). The spring mechanism is electrically isolated from the first electrode (20) and enables the second electrode (22) to move toward or away from the first electrode (20).
    • 电容性子宫收缩传感器(28)包括绝缘基板(18),设置在基板(18)一侧的第一电极(20)和与第一电极间隔开的第二电极(22) 20)。 第二电极(22)构造成朝向或远离第一电极(20)移动。 传感器还可以包括夹在衬底(18)和第二电极(22)之间的导电支座(24),用于将第二电极(22)保持与第一电极(20)间隔开。 导电支座(24)电耦合到第二电极(22)并与第一电极(20)电隔离。 或者,第二电极(22)可以包括与支架(24)结合使用以将第二电极(22)保持为与第一电极(20)间隔开的关系的弹簧机构。 弹簧机构与第一电极(20)电隔离,并使第二电极(22)朝向或远离第一电极(20)移动。
    • 8. 发明申请
    • CAPACITIVE UTERINE CONTRACTION SENSOR
    • 电容式子宫收缩传感器
    • WO2004016168A9
    • 2004-04-08
    • PCT/US0326057
    • 2003-08-19
    • CZARNEK & ORKIN LAB INCCZARNEK ROBERT
    • CZARNEK ROBERT
    • A61B5/03A61B5/0488A61B5/103A61B5/117
    • A61B5/4356A61B5/04882A61B2562/02
    • A capacitive uterine contraction sensor (28) includes an insulating substrate (18), a first electrode (20) disposed on one side of the substrate (18), and a second electrode (22) positioned in a spaced relation to the first electrode (20). The second electrode (22) is configured to move toward or away from the first electrode (20). The sensor may also include a conductive standoff (24) sandwiched between the substrate (18) and the second electrode (22) for maintaining the second electrode (22) in a spaced relation to the first electrode (20). The conductive standoff (24) is electrically coupled to the second electrode (22) and electrically isolated from the first electrode (20). Alternatively, the second electrode (22) may include a spring mechanism used in conjunction with a standoff (24) to maintain the second electrode (22) in a spaced relation to the first electrode (20). The spring mechanism is electrically isolated from the first electrode (20) and enables the second electrode (22) to move toward or away from the first electrode (20).
    • 一种电容式子宫收缩传感器(28),包括绝缘衬底(18),设置在衬底(18)的一侧上的第一电极(20),以及与第一电极隔开关系定位的第二电极(22) 20)。 第二电极(22)构造成朝向或远离第一电极(20)移动。 传感器还可以包括夹在基板(18)和第二电极(22)之间的导电支座(24),用于保持第二电极(22)与第一电极(20)间隔开。 导电支座(24)电耦合到第二电极(22)并且与第一电极(20)电隔离。 或者,第二电极(22)可以包括与支座(24)结合使用的弹簧机构,以使第二电极(22)与第一电极(20)保持间隔关系。 弹簧机构与第一电极(20)电隔离并且使第二电极(22)能够朝向或远离第一电极(20)移动。