会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 14. 发明授权
    • Thermal energy storage and transfer assembly
    • 热能储存和转移组件
    • US06215852B1
    • 2001-04-10
    • US09208961
    • 1998-12-10
    • Carey S. RogersCharles B. KendallDouglas J. SnyderBrian D. Lounsberry
    • Carey S. RogersCharles B. KendallDouglas J. SnyderBrian D. Lounsberry
    • H01J3516
    • H01J35/105H01J35/18H05G1/025H05G1/04
    • A thermal energy storage and transfer assembly is disclosed for use in electron beam generating devices that generate residual energy. The residual energy comprises radiant thermal energy and kinetic energy of back scattered electrons. The thermal energy storage and transfer assembly absorbs and stores an amount of the residual energy to reduce the heat load on other components in the electron beam generating device. The thermal energy storage and transfer device comprises a body portion of a sufficient thermal capacity to permit the rate of transfer of the amount of the residual energy absorbed into the assembly to substantially exceed the rate of transfer of the amount of the residual energy out of the assembly. The assembly also comprises a heat exchange chamber filled with a circulating fluid that transfers the thermal energy out of the assembly. Additionally, in an x-ray generating device, an x-ray transmissive filter suitable for absorbing residual energy is positioned between the anode and an x-ray transmissive window. The filter reduces the exposure of the window to the residual energy. The filter may additionally comprise a coating layer that further reduces the exposure of the window to the residual energy.
    • 公开了用于产生残余能量的电子束产生装置中的热能存储和转移组件。 剩余能量包括辐射热能和背散射电子的动能。 热能储存和转移组件吸收和储存一定量的剩余能量以减少电子束发生装置中其它部件上的热负荷。 热能储存和转移装置包括具有足够热容量的主体部分,以允许吸收到组件中的剩余能量的量的转移速率基本上超过剩余能量的转移速率 部件。 组件还包括填充有循环流体的热交换室,该循环流体将热能转移出组件。 另外,在x射线产生装置中,适于吸收残余能量的x射线透射滤光器位于阳极和x射线透射窗之间。 过滤器可以减少窗口对剩余能量的暴露。 过滤器可以另外包括涂层,其进一步减少窗口暴露于剩余能量。
    • 16. 发明授权
    • Wetness monitoring system
    • 湿度监测系统
    • US07250547B1
    • 2007-07-31
    • US09707610
    • 2000-11-07
    • Christopher M. HofmeisterDavid A. LangeCharles B. KendallJohn G. Schmidt
    • Christopher M. HofmeisterDavid A. LangeCharles B. KendallJohn G. Schmidt
    • A61F13/15G08B23/00G08B21/00
    • A61F13/42G01N27/121
    • The present invention relates to a wetness monitoring system that includes a data collection device that sends wetness measurement data to a central computer that detects changes in wetness measurement data caused by the presence of urine or other dielectric fluids. The data collection device includes a semi-reusable sensor and reusable data collector that are worn on a garment of the person. The data collector includes an internal power source so that the person can live a normal ambulatory life. The data collector has an electrical circuit that uses the changing resistance characteristics in the sensor to gather wetness measurement data. The data collector periodically generates and transmits a signal containing the actual wetness measurement data. The signals are coded to identify the particular data collector or person sending the signal. The data collector is programmed to conserve power by sending signals less frequently during periods when the sensor is clearly dry. Signals are sent more frequently when the sensor is damp or a wetness event may have occurred. The central computer receives the signals containing the wetness measurement data and compares the measurement data to an adjustable wetness sensitivity level to determine if a wetness event has occurred. When the central computer determines that a wetness event has occurred, the computer displays the name of the particular person wearing the data collector and the approximate time that the wetness event occurred. The system then pages an appropriate healthcare worker to inform them that the particular individual needs attention and tracks the approximate response times to ensure that the patient is continuously receiving prompt care.
    • 湿度监测系统技术领域本发明涉及一种湿度监测系统,其包括:数据收集装置,其将湿度测量数据发送到中央计算机,其检测由尿液或其它介电流体的存在引起的湿度测量数据的变化。 数据采集​​装置包括穿戴在人的衣服上的半可再用传感器和可重复使用的数据收集器。 数据采集​​器包括一个内部电源,使人能够正常行走。 数据采集​​器具有使用传感器中电阻变化特性的电路来收集湿度测量数据。 数据收集器周期性地产生并发送包含实际湿度测量数据的信号。 信号被编码以识别发送信号的特定数据收集器或人。 数据采集​​器被编程为通过在传感器清洁干燥的时段期间较少频率地发送信号来节省功率。 当传感器潮湿或可能发生潮湿事件时,信号会更频繁地发送。 中央计算机接收含有湿度测量数据的信号,并将测量数据与可调湿度敏感度水平进行比较,以确定是否发生了湿度事件。 当中央计算机确定发生湿度事件时,计算机显示佩戴数据收集器的特定人物的名称以及湿度事件发生的大致时间。 然后,系统向适当的医护人员提供通知,告诉他们特定个人需要注意并跟踪大致的响应时间,以确保患者持续接受提示。
    • 19. 发明授权
    • Computed tomography gantry cooling systems and methods
    • 计算机断层摄影龙门架冷却系统及方法
    • US06909775B2
    • 2005-06-21
    • US10319947
    • 2002-12-16
    • Shawn A. RayCharles B. Kendall
    • Shawn A. RayCharles B. Kendall
    • A61B6/03G01N20060101H01J35/10H05G1/02
    • A61B6/035A61B6/4488
    • A computed tomography (“CT”) gantry cooling system including a gantry housing defining a gantry chamber, wherein the gantry housing includes a lower portion, an upper portion, and a gantry cover disposed adjacent to the upper portion of the gantry housing. The CT gantry cooling system also including a fan disposed within the gantry cover of the gantry housing, wherein the fan is operable for forcing cooling air into the gantry chamber and creating a positive pressure within the gantry chamber. The CT gantry cooling system further including a vent disposed within the gantry cover of the gantry housing, wherein the vent is operable for exhausting heated air from the gantry chamber.
    • 一种计算机断层摄影(“CT”)龙门架冷却系统,其包括限定了龙门架室的龙门架,其中所述台架外壳包括邻近所述台架外壳的上部设置的下部,上部和龙门架。 CT台架冷却系统还包括设置在台架外壳的机架盖内的风扇,其中风扇可操作以迫使冷却空气进入台架室,并在机架室内产生正压。 CT台架冷却系统还包括设置在台架外壳的机架盖内的通风口,其中通风口可操作以从机架室排出加热的空气。
    • 20. 发明授权
    • Thermal filter for an x-ray tube window
    • X射线管窗口的热过滤器
    • US06301332B1
    • 2001-10-09
    • US09723932
    • 2000-11-28
    • Carey S. RogersCharles B. KendallDouglas J. SnyderBrian D. Lounsberry
    • Carey S. RogersCharles B. KendallDouglas J. SnyderBrian D. Lounsberry
    • H01J3516
    • H01J35/105H01J35/18H05G1/025H05G1/04
    • A thermal energy storage and transfer assembly is disclosed for use in electron beam generating devices that generate residual energy. The residual energy comprises radiant thermal energy and kinetic energy of back scattered electrons. The thermal energy storage and transfer assembly absorbs and stores an amount of the residual energy to reduce the heat load on other components in the electron beam generating device. The thermal energy storage and transfer device comprises a body portion of a sufficient thermal capacity to permit the rate of transfer of the amount of the residual energy absorbed into the assembly to substantially exceed the rate of transfer of the amount of the residual energy out of the assembly. The assembly also comprises a heat exchange chamber filled with a circulating fluid that transfers the thermal energy out of the assembly. Additionally, in an x-ray generating device, an x-ray transmissive filter suitable for absorbing residual energy is positioned between the anode and an x-ray transmissive window. The filter reduces the exposure of the window to the residual energy. The filter may additionally comprise a coating layer that further reduces the exposure of the window to the residual energy.
    • 公开了用于产生残余能量的电子束产生装置中的热能存储和转移组件。 剩余能量包括辐射热能和背散射电子的动能。 热能储存和转移组件吸收和储存一定量的剩余能量以减少电子束发生装置中其它部件上的热负荷。 热能储存和转移装置包括具有足够热容量的主体部分,以允许吸收到组件中的剩余能量的量的转移速率基本上超过剩余能量的转移速率 部件。 组件还包括填充有循环流体的热交换室,该循环流体将热能转移出组件。 另外,在x射线产生装置中,适于吸收残余能量的x射线透射滤光器位于阳极和x射线透射窗之间。 过滤器可以减少窗口对剩余能量的暴露。 过滤器可以另外包括涂层,其进一步减少窗口暴露于剩余能量。