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    • 2. 发明申请
    • Method and apparatus for monitoring temperature of intravenously delivered fluids and other medical items
    • 用于监测静脉内输送的流体和其他医疗物品的温度的方法和装置
    • US20040240520A1
    • 2004-12-02
    • US10759218
    • 2004-01-20
    • Durward I. Faries JR.Bruce R. HeymannCalvin Blankenship
    • G01K011/00G01K001/00
    • G01K11/12
    • An intravenous solution bag includes a temperature sensing device in the form of a temperature sensing strip. The strip includes a temperature scale and corresponding temperature sensitive substances that change color or illuminate the scale indicators to visually indicate solution temperature. The strip may be formed integral with the bag, may be attached to the bag exterior surface, may be laminated to the bag exterior surface or may be encased with the bag within a solution bag liner. Further, the temperature sensing strip may be affixed to bottles containing intravenous or other solutions, where the strip is attached to the bottle exterior surface or to a label affixed to the bottle to measure and indicate temperature of fluid contained therein as described above. Moreover, the temperature sensing strip may be employed by a receptacle or delivery tube of an infusion apparatus to measure and indicate solution temperature prior to or during infusion. In addition, the temperature sensing strip may be disposed within thermal treatment system compartments to measure and provide a visual indication of medical item temperatures. Alternatively, the strip may be employed by a stand, plate, receptacle or other structure receiving a medical item or container to provide a temperature measurement and indication as described above. The structure may be a stand-alone unit or may be attached to a thermal treatment or other system to facilitate temperature measurement.
    • 静脉溶液袋包括温度感测条形式的温度感测装置。 该条带包括温度标度和相应的温度敏感物质,其改变颜色或照亮刻度指示器以目视指示溶液温度。 带可以与袋一体地形成,可以附接到袋外表面,可以层压到袋外表面上,或者可以将袋子包裹在溶液袋衬里内。 此外,温度感测带可以固定到含有静脉内或其它溶液的瓶子上,其中条带附接到瓶子外表面或固定到瓶子上的标签以测量并指示如上所述容纳在其中的流体的温度。 此外,温度感测条可以由输液装置的容器或输送管使用以在输注之前或期间测量并指示溶液温度。 此外,温度感测带可以设置在热处理系统隔室内,以测量和提供医疗用品温度的视觉指示。 或者,条带可以由接收医疗物品或容器的支架,板,插座或其他结构使用,以提供如上所述的温度测量和指示。 该结构可以是独立单元,或者可以附接到热处理或其他系统以便于温度测量。
    • 3. 发明申请
    • TEMPERATURE GAUGE AND CERAMIC SUSCEPTOR IN WHICH IT IS UTILIZED
    • 使用温度计和陶瓷制品
    • US20040208228A1
    • 2004-10-21
    • US10605519
    • 2003-10-06
    • SUMITOMO ELECTRIC INDUSTRIES, LTD.
    • Manabu HashikuraHirohiko NakataMasuhiro NatsuharaAkira Kuibira
    • G01K001/00G01K007/00
    • G01K1/08
    • Temperature gauge, and ceramic susceptors and semiconductor manufacturing equipment utilizing the temperature gauge, in which the thermocouple may be easily replaced even if damaged, and in which heat from the temperature-gauging site is readily transmitted to the temperature-gauging contact, shortening time until the measurement temperature stabilizes. A temperature-gauging contact (12) in the tip of the thermocouple contacts, in an exposed-as-it-is state, a temperature-gauging site on a ceramic susceptor (1), and by means of a circular cylindrical-shaped retaining member (11) screwed into female threads in the ceramic susceptor (1) is detachably pressed upon and retained against the ceramic susceptor. Thermocouple lead lines (13), passing through a through-hole (14) in the retaining member (11), stretch from one end face to the other end face thereof. The retaining member may be provided with a flange having threaded holes and screwlocked into female screws in the ceramic susceptor.
    • 使用温度计的温度计和陶瓷感受体和半导体制造设备,其中热电偶即使损坏也可以容易地更换,并且来自温度测量部位的热量容易传递到温度测量接点,缩短时间直到 测量温度稳定。 热电偶尖端中的温度测量接点(12)以暴露状态接触陶瓷基座(1)上的温度测量位置,并且通过圆柱形保持 螺纹连接在陶瓷基座(1)中的阴螺纹中的构件(11)可拆卸地按压并保持在陶瓷基座上。 穿过保持构件(11)中的通孔(14)的热电偶引线(13)从一个端面延伸到另一端面。 保持构件可以设置有具有螺纹孔的凸缘并且被螺纹锁定在陶瓷基座中的内螺纹中。
    • 5. 发明申请
    • Axillary thermometer
    • 腋温度计
    • US20040170216A1
    • 2004-09-02
    • US10722590
    • 2003-11-25
    • Stephen RussakAndrew HowanskyJim BestScott HendersonTimothy KennedyDaniel FormosaWilfrido L. Canizares
    • G01K001/00
    • G01K13/002
    • An axillary thermometer for measuring the temperature of a patient comprising a first disk-shaped member having a circumferential edge, and an upper portion and lower portion, that is integrally connected, and angularly situated, via a connecting member joint, to a second disk-shaped member having a top side and a bottom side. The top side of the second disk-shaped member, including an actuation switch and display, being proximate the upper portion of the first disk-shaped member such that viewing of the temperature display can be simultaneously accomplished with the temperature taking process. The first disk-shaped member further having at least one temperature sensor along its circumferential edge of the upper portion with the at least one temperature sensor being connected to at least one temperature sensing circuitry.
    • 一种用于测量患者体温的腋窝温度计,包括具有圆周边缘的第一圆盘形构件和上部分和下部,其经由连接构件接头一体地连接并成角度地设置到第二圆盘形构件, 具有顶侧和底侧。 包括致动开关和显示器在内的第二盘形构件的顶侧靠近第一盘形构件的上部,使得可以通过采暖过程同时完成温度显示的观察。 第一盘状构件还沿着其上部的周缘具有至少一个温度传感器,其中至少一个温度传感器连接到至少一个温度感测电路。
    • 6. 发明申请
    • Detection and display of status of container
    • 检测和显示容器状态
    • US20040145861A1
    • 2004-07-29
    • US10351688
    • 2003-01-27
    • Jen-Fu Chen
    • G06F001/16G09G005/00G01K001/00
    • G06F1/16
    • In an aspect, a system for recording and displaying the status of a container includes a recording assembly and a displaying assembly. The recording assembly includes a keypad via which data are entered and a transmitter for transmitting the data in a cable-free manner. The displaying assembly includes a receiver for receiving the data from the transmitter and a display for displaying the data. In another aspect, a system for detecting and displaying the status of a container includes a detecting assembly and a displaying assembly. The detecting assembly includes a probe extending into the container for detecting a factor of the status of the container and producing data representative of the factor and a transmitter for transmitting the signal in a cable-free manner. The displaying assembly includes a receiver for receiving the data from the transmitter and a display for displaying the data.
    • 一方面,用于记录和显示容器状态的系统包括记录组件和显示组件。 记录组件包括输入数据的小键盘和用于以无线方式发送数据的发送器。 显示组件包括用于从发送器接收数据的接收器和用于显示数据的显示器。 在另一方面,一种用于检测和显示容器状态的系统包括检测组件和显示组件。 检测组件包括延伸到容器中的探针,用于检测容器状态的因素并产生代表该因子的数据,以及用于以无线方式传输信号的发射器。 显示组件包括用于从发送器接收数据的接收器和用于显示数据的显示器。
    • 7. 发明申请
    • Cantilevered thermocouple rake
    • 悬臂式热电偶耙
    • US20040114665A1
    • 2004-06-17
    • US10317692
    • 2002-12-12
    • Sun ParkScott Bittman
    • G01K001/00G01K007/00
    • G01K7/02G01K1/026
    • The present invention provides a thermocouple rake that may readily be removed and reinstalled into a separate turbine. Further, a cantilevered thermocouple rake is provided, wherein the installed rake requires fixation at only one end. A thermocouple rake consistent with the invention also comprises a plurality of rigid guide and support tubes for strength and stiffness, and comprises a plurality of thermocouple junctions in each guide tube at different lengths along the tube, for taking readings at various distances from the turbine wall. The present invention further provides a thermocouple rake having tubing of various diameters to protect against vortex shedding. A plurality of spacers serve as damping during vibration allowing the rake (or at least a portion thereof) to survive vibration at its natural frequency. A stop and tapered bushing configuration effects better damping and longevity in high vibration environments, e.g., in gas turbines. Further, the tapered surfaces used in the stop mechanism allow easy disengagement during transient thermal growth, thereby minimizing thermal stress due to thermal expansion.
    • 本发明提供了可以容易地移除并重新安装到单独的涡轮机中的热电偶耙。 此外,提供悬臂式热电偶耙,其中安装的耙需要仅在一端固定。 与本发明一致的热电偶耙还包括用于强度和刚度的多个刚性引导和支撑管,并且包括沿着管的不同长度的每个导管中的多个热电偶接头,用于从涡轮机壁 。 本发明还提供了具有各种直径的管道以防止涡流脱落的热电偶耙。 多个间隔件在振动期间用作阻尼,允许耙子(或其至少一部分)在其固有频率下经受振动。 停止和锥形衬套配置在高振动环境(例如在燃气轮机中)中实现更好的阻尼和寿命。 此外,在停止机构中使用的锥形表面允许在瞬态热增长期间容易地脱离,从而最小化由于热膨胀引起的热应力。
    • 9. 发明申请
    • Temperature measurement probe and temperature measurement apparatus
    • 温度测量探头和温度测量仪
    • US20040028119A1
    • 2004-02-12
    • US10395683
    • 2003-03-24
    • Hiroshi TakahashiYoshiharu ShirakawabeTadashi Arai
    • G01K001/00
    • G01Q60/58G01K1/18G01Q20/04Y10S977/867
    • To perform a temperature measurement in a minute scale by using AFM with high respondency and with a high degree of accuracy. A peak forming a heat generation portion of a heater wire, which is disposed on a main face of a cantilever section constructing a temperature measurement probe, is positioned on a front end portion of the cantilever section, and then, a thermoelectric couple is arranged with superposed on a peak via a second insulating layer, which is formed on the heater wire. As a result, even if an electric energy supplied to a heater wire is reduced, it is possible to effectively supply an amount of heat necessary for measurement to the thermoelectric couple. Therefore, by minimizing the heat to be supplied to a sample and the cantilever, the respondency of measurement is capable of being improved noticeably.
    • 通过使用高响应度和高准确度的AFM来进行微小尺度的温度测量。 在构成温度测量探针的悬臂部的主面上形成加热丝的发热部的峰位于悬臂部的前端部,然后,配置热电偶, 通过形成在加热丝上的第二绝缘层叠置在峰上。 结果,即使提供给加热丝的电能降低,也可以有效地向热电偶提供测量所需的热量。 因此,通过使供给到样品和悬臂的热量最小化,测量的响应性能够显着改善。
    • 10. 发明申请
    • Method and apparatus for measuring temperature
    • 测量温度的方法和装置
    • US20030142722A1
    • 2003-07-31
    • US10258960
    • 2002-10-30
    • Takeshi Azami
    • G01K001/00
    • G01J5/00C30B13/22C30B13/28C30B29/06G01J5/0037G01J5/0044G01J5/041G01J5/08G01J5/0818G01J5/0862G01J5/0875G01J5/0896Y10T117/1004
    • Temperature of molten silicon 1 in an infrared image furnace 2 including a halogen lamp 8 as a heating source to grow a single crystal of silicon in a floating-zone method is measured with high precision according to light radiated from the molten silicon 1. By disposing an optical path tube extending to the molten silicon 1, light propagating from the molten silicon 1 in a particular direction can be extracted. As a result, light radiated from the molten silicon 1 can be extracted while reducing the influence of disturbance of light from various directions such as light radiated from the halogen lamp 8, reflected light and scattered light thereof, and the like. Luminance of light thus extracted is measured by a CCD camera 7 to obtain the temperature according to the luminance, and hence the temperature can be measured with high precision using a measuring apparatus of a simple configuration.
    • 根据从熔融硅1照射的光以高精度测量包括以漂浮区方式生长硅单晶的卤素灯8的红外图像炉2中的熔融硅1的温度。通过处理 延伸到熔融硅1的光路管可以提取从特定方向从熔融硅1传播的光。 结果,可以减少从熔融硅1辐射的光,同时减少来自卤素灯8,其反射光和散射光等的各种方向的光的干扰的影响。 通过CCD照相机7测量由此提取的光的亮度,以根据亮度获得温度,因此可以使用简单结构的测量装置以高精度测量温度。