Elastomeric particle having an electrically conducting surface, a pressure sensor comprising said particles, a method for producing said sensor and a sensor system comprising said sensors
    1.
    发明授权
    Elastomeric particle having an electrically conducting surface, a pressure sensor comprising said particles, a method for producing said sensor and a sensor system comprising said sensors 有权
    具有导电表面的弹性体颗粒,包含所述颗粒的压力传感器,用于生产所述传感器的方法和包括所述传感器的传感器系统

    公开(公告)号:US09027408B2

    公开(公告)日:2015-05-12

    申请号:US12524312

    申请日:2007-01-24

    Abstract: An elastomeric particle (1, 1, 1″) comprises a non-conducting elastomeric body (2) having an electrically conducting surface (4a, 4b, 6). Pressure sensor elements (20, 20′, 20″; 30, 30′, 30″, 30′″) comprising such elastomeric particles are disclosed, as well as sensor clusters (50″, 50′″, 50IV, 50V, 50VI, 50VII, 70) comprising such sensor elements. There is also disclosed a pressure sensor element (40, 40′, 40″, 40′″, 40IV, 40V, 40VI, 40VII), comprising a resistive element (44, 44′, 44″) providing a conduction path, a first electrode (42a, 42a-1, 42a-2, 42a-3, 42a-4, 42a-5, 42a-6), connected to the resistive element, a second electrode (42b, 42b′), which in a quiescent state is spaced from said first electrode, wherein the second electrode, when the pressure sensor element is subjected to a pressure, is arranged to contact said first electrode or said resistive element. Systems comprising such sensor elements and sensor clusters are disclosed, as well as methods of their fabrication.

    Abstract translation: 弹性体颗粒(1,1,1)包括具有导电表面(4a,4b,6)的非导电弹性体(2)。 公开了包含这种弹性体颗粒的压力传感器元件(20,20',20“; 30,30',30”,30“),以及传感器簇(50”,50“”,50IV,50V,50VI, 50VII,70)。 还公开了一种压力传感器元件(40,40',40“,40”,40IV,40V,40VI,40VII),包括提供导电路径的电阻元件(44,44',44“),第一 连接到电阻元件的电极(42a,42a-1,42a-2,42a-3,42a-4,42a-5,42a-6),处于静止状态的第二电极(42b,42b' 与所述第一电极间隔开,其中当所述压力传感器元件经受压力时,所述第二电极布置成接触所述第一电极或所述电阻元件。 公开了包括这种传感器元件和传感器簇的系统,以及它们的制造方法。

    ELASTOMERIC PARTICLE HAVING AN ELECTRICALLY CONDUCTING SURFACE, A PRESSURE SENSOR COMPRISING SAID PARTICLES, A METHOD FOR PRODUCING SAID SENSOR AND A SENSOR SYSTEM COMPRISING SAID SENSORS
    2.
    发明申请
    ELASTOMERIC PARTICLE HAVING AN ELECTRICALLY CONDUCTING SURFACE, A PRESSURE SENSOR COMPRISING SAID PARTICLES, A METHOD FOR PRODUCING SAID SENSOR AND A SENSOR SYSTEM COMPRISING SAID SENSORS 有权
    具有电气导电表面的弹性体颗粒,包含上述颗粒的压力传感器,用于生产传感器的方法和包含传感器的传感器系统

    公开(公告)号:US20100130889A1

    公开(公告)日:2010-05-27

    申请号:US12524312

    申请日:2007-01-24

    Abstract: An elastomeric particle (1, 1, 1″) comprises a non-conducting elastomeric body (2) having an electrically conducting surface (4a, 4b, 6). Pressure sensor elements (20, 20′, 20″; 30, 30′, 30″, 30′″) comprising such elastomeric particles are disclosed, as well as sensor clusters (50″, 50′″, 50IV, 50V, 50VI, 50VII, 70) comprising such sensor elements. There is also disclosed a pressure sensor element (40, 40′, 40″, 40′″, 40IV, 40V, 40VI, 40VII), comprising a resistive element (44, 44′, 44″) providing a conduction path, a first electrode (42a, 42a-1, 42a-2, 42a-3, 42a-4, 42a-5, 42a-6), connected to the resistive element, a second electrode (42b, 42b′), which in a quiescent state is spaced from said first electrode, wherein the second electrode, when the pressure sensor element is subjected to a pressure, is arranged to contact said first electrode or said resistive element. Systems comprising such sensor elements and sensor clusters are disclosed, as well as methods of their fabrication.

    Abstract translation: 弹性体颗粒(1,1,1)包括具有导电表面(4a,4b,6)的非导电弹性体(2)。 公开了包含这种弹性体颗粒的压力传感器元件(20,20',20“; 30,30',30”,30“),以及传感器簇(50”,50“”,50IV,50V,50VI, 50VII,70)。 还公开了一种压力传感器元件(40,40',40“,40”,40IV,40V,40VI,40VII),包括提供导电路径的电阻元件(44,44',44“),第一 连接到电阻元件的电极(42a,42a-1,42a-2,42a-3,42a-4,42a-5,42a-6),处于静止状态的第二电极(42b,42b' 与所述第一电极间隔开,其中当所述压力传感器元件经受压力时,所述第二电极布置成接触所述第一电极或所述电阻元件。 公开了包括这种传感器元件和传感器簇的系统,以及它们的制造方法。

    Method and system for removing exudates from a wound site

    公开(公告)号:US10780200B2

    公开(公告)日:2020-09-22

    申请号:US13992623

    申请日:2011-12-07

    Applicant: Landy Toth

    Inventor: Landy Toth

    Abstract: An apparatus (10) for controlling flow of fluid from a wound site of a patient may include a chamber (28) connectable to a wound site and a reservoir (16). The chamber (28) may have a first deformed state, and a second state in which it is not deformed or less deformed than in the first state. The chamber (28) may be adapted to manage fluid flow between the wound site and the reservoir (16) during transition of the chamber (28) between the first state and the second state. An actuator element (64) of the apparatus (10) may be adapted to operate on the chamber (28) to transition the chamber (28) from the second state to the first state.

    Stretched rolled electroactive polymer transducers and method of producing same
    8.
    发明申请
    Stretched rolled electroactive polymer transducers and method of producing same 有权
    拉伸电动聚合物换能器及其制造方法

    公开(公告)号:US20050040733A1

    公开(公告)日:2005-02-24

    申请号:US10644894

    申请日:2003-08-21

    Abstract: A transducer is designed and fabricated using stretched rolled electroactive polymers. The invention includes the design, fabrication, and integration of a stretched rolled actuator system with corresponding sensing, control and power subsystems. The invention presented is based on the improved performance of electroactive polymer transducers that can be achieve by prestretching the polymeric material. In this invention, the preferred stretch is maintained in a rolled configuration by introducing structural elements to the transducer. The structural elements facilitate fabrication of the transducer as well as provide a compact and efficient means of maintaining stretch and the desired boundary conditions on the electroactive polymer during operation. These conditions together are used to improve and tailor the strain response of the transducer.

    Abstract translation: 传感器使用拉伸的电活性聚合物设计和制造。 本发明包括拉伸卷绕的致动器系统与相应的感测,控制和电力子系统的设计,制造和集成。 本发明基于通过预拉伸聚合材料可以实现的电活性聚合物换能器的改进的性能。 在本发明中,优选的拉伸通过将结构元件引入换能器而保持卷成形状。 结构元件有助于换能器的制造,并且提供在操作期间在电活性聚合物上保持拉伸和期望的边界条件的紧凑和有效的手段。 这些条件一起用于改善和调整换能器的应变响应。

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