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    • 1. 发明申请
    • ADJUSTABLE-FIRMNESS BODY SUPPORT AND METHOD
    • 可调霍尔体支持和方法
    • WO2010075289A3
    • 2010-08-19
    • PCT/US2009069009
    • 2009-12-21
    • TEMPUR PEDIC MAN INCMIKKELSEN TOM DCHANDLER KELLY W
    • MIKKELSEN TOM DCHANDLER KELLY W
    • A47C27/08
    • A47C21/048A47C21/042A47C21/044A47C21/06A47C27/14A47C27/15A61F7/02A61F2007/0054A61F2007/0244A61G2210/70A61G2210/90
    • The present invention provides a body support assembly comprising a layer having a passage, a pump positioned to create a flow of fluid through the passage, a sensor that detects a parameter and produces a signal, and a controller coupled to the sensor and programmed to control the flow of fluid based on the signal. Preferably, the layer comprises visco-elastic foam. In one embodiment, the parameter corresponds with a firmness of the layer (e.g., a temperature of the layer). A heat exchanger can be used to alter (e.g., heat or cool) a temperature of the fluid. The present invention further provides a method of controlling a firmness of a body support comprising sensing a sensed value of a parameter (e.g., temperature) of the body support, establishing a desired value of the parameter, comparing the sensed parameter to the desired value, and adjusting the parameter.
    • 本发明提供了一种身体支撑组件,其包括具有通道的层,设置成产生通过通道的流体流的泵,检测参数并产生信号的传感器,以及耦合到传感器并被编程为控制 基于信号的流体流动。 优选地,该层包含粘弹性泡沫。 在一个实施例中,该参数对应于层的坚固度(例如层的温度)。 热交换器可用于改变(例如,加热或冷却)流体的温度。 本发明进一步提供了一种控制身体支撑物的硬度的方法,该方法包括感测身体支撑物的参数(例如,温度)的感测值,建立参数的期望值,将感测到的参数与期望值进行比较, 并调整参数。
    • 5. 发明申请
    • BODY SUPPORT WITH FLUID SYSTEM AND METHOD OF OPERATING SAME
    • 身体支持流体系统和操作方法
    • WO2010075230A3
    • 2010-08-19
    • PCT/US2009068814
    • 2009-12-18
    • TEMPUR PEDIC MAN INCMIKKELSEN TOM DCHANDLER KELLY W
    • MIKKELSEN TOM DCHANDLER KELLY W
    • A47C21/04
    • A47C21/044A47C27/144A47C27/15
    • A body support assembly comprising a first layer (e.g., a visco-elastic foam) having a lower surface, and a second layer supporting the first layer and having an upper surface. One of the upper and lower surfaces is defined by a non-planar surface to define a plurality of passages. A fan is positioned to move air through the passages. Preferably, the non-planar surface comprises a plurality of protrusions (e.g., a convoluted surface). The body support can further comprise a sensor that detects a parameter and produces a signal, and a controller coupled to the sensor and programmed to control the fan. Multiple fans and sensors can be provided, and the controller can control the fans to provide different air flows through different locations of the body support assembly. A user interface can be coupled to the controller to allow selection of a desired parameter of the body support assembly.
    • 本体支撑组件包括具有下表面的第一层(例如,粘弹性泡沫)和支撑第一层并具有上表面的第二层。 上表面和下表面中的一个由非平面表面限定以限定多个通道。 风扇定位为通过通道移动空气。 优选地,非平面表面包括多个突起(例如,盘旋表面)。 身体支撑件还可以包括检测参数并产生信号的传感器,以及耦合到传感器并被编程为控制风扇的控制器。 可以提供多个风扇和传感器,并且控制器可以控制风扇通过身体支撑组件的不同位置提供不同的气流。 用户界面可以连接到控制器以允许选择身体支撑组件的期望参数。