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    • 7. 发明申请
    • Urea concentration identification device for urea solution
    • 尿素溶液尿素浓度鉴定装置
    • US20070054409A1
    • 2007-03-08
    • US10571358
    • 2004-09-10
    • Shinichi InoueAkiko KubotaTakayuki Takahata
    • Shinichi InoueAkiko KubotaTakayuki Takahata
    • G01N33/00G01N25/00
    • G01N25/18F01N3/2066F01N11/00F01N2610/02F01N2610/10F01N2610/148F01N2900/1818Y02T10/47Y10T436/171538
    • A urea concentration identification device comprising a concentration identification sensor unit (2) and a support unit (4) attached at the bottom end thereof with this sensor unit and provided at the top end thereof with a mounting unit (4a) to a urea solution tank opening. The concentration identification sensor unit (2) has an indirectly-heated concentration detector and liquid temperature detector provided with metal fins (21c),(22c), respectively, for heat-exchanging with urea solution. The concentration identification sensor unit (2) is provided with a cover member (2d) that forms an opposite-ends-opened urea solution induction passage so as to surround the metal fins (21c), (22c). A single-pulse voltage is applied to the heating element of the indirectly-heated concentration detector to heat it, and a urea concentration is identified at an identification operation unit based on an output from a concentration detection circuit including the temperature sensing element of the indirectly-heated concentration detector and the liquid temperature detector.
    • 一种尿素浓度识别装置,包括浓度识别传感器单元(2)和支撑单元(4),所述浓度识别传感器单元(2)和所述支撑单元(4)的底端附接有所述传感器单元,并且在其顶端处设置有安装单元(4a)到尿素溶液 坦克开 浓度识别传感器单元(2)具有分别具有用于与尿素溶液进行热交换的金属翅片(21c),(22c)的间接加热浓度检测器和液体温度检测器。 浓度识别传感器单元(2)设置有形成以包围金属翅片(21c),(22c)的相反端开口的尿素溶液输送通路的盖部件(2d)。 将单脉冲电压施加到间接加热浓度检测器的加热元件以加热,并且基于来自包括间接地温度感测元件的浓度检测电路的输出,在识别操作单元处识别尿素浓度 加热浓度检测器和液体温度检测器。
    • 8. 发明申请
    • Flow rate measuring method and flowmeter, flow rate measuring section package used for them and flow rate measuring unit using them, and piping leakage inspection device using flowmeter
    • 流量测量方法和流量计,用于它们的流量测量部件和使用它们的流量测量单元,以及使用流量计的管道泄漏检测装置
    • US20060005620A1
    • 2006-01-12
    • US11198799
    • 2005-08-05
    • Atsushi KoikeToshiaki KawanishiToshimi NakamuraTakayuki TakahataKiyoshi Yamagishi
    • Atsushi KoikeToshiaki KawanishiToshimi NakamuraTakayuki TakahataKiyoshi Yamagishi
    • G01F1/68
    • G01M3/2807G01F1/68G01F1/6847G01F1/699G01F7/00
    • Measurements are obtained by a computing unit based on an output Vh from an indirectly-heated constant-temperature controlling flow rate measuring section (16) and an output Vout from a two-constant-point temperature difference detecting flow rate measuring sections (18a, 18b). In the flow rate measuring section (16), a heating element (163) is feedback-controlled based on a detected temperature by a heat sensing element (162) to obtain an output Vh based on the feedback-controlled condition. An output Vout is obtained from flow rate measuring sections (18a, 18b) based on the detected temperature difference between a heat sensing element (182) disposed on the liquid-flow-direction upstream side of the flow-rate measuring section (16) and a temperature sensing element disposed on the downstream side. A computing unit outputs as a measurement a flow rate obtained based on the output Vh in a flow rate region where a flow rate is larger than a predetermined boundary flow rate, and outputs as a measurement a flow rate obtained based on the output Vout in a flow rate region where it is less than a boundary flow rate. Accordingly, a flow rate is measured with good precision and sensitivity over a wide flow rate range from a trace-amount flow rate region to a comparatively large flow rate region.
    • 由计算单元基于来自间接加热的恒温控制流量测量部(16)的输出Vh和来自两个恒定点温度差检测流量测量部(18a, 18 b)。 在流量测量部分(16)中,基于检测到的温度由热敏元件(162)反馈控制加热元件(163),以基于反馈控制条件获得输出Vh。 基于流量测量部(16)的液流方向上游侧设置的感热元件(182)之间的检测温差,从流量测量部(18a,18b)获得输出Vout, )和设置在下游侧的温度感测元件。 计算单元作为测量输出在流量大于预定边界流量的流量区域中基于输出Vh获得的流量,并作为测量输出基于输出Vout获得的流量 流量区域小于边界流量。 因此,在从微量流量区域到较大流量区域的宽流量范围内,以高精度和高灵敏度测量流量。
    • 9. 发明申请
    • INSULIN RESISTANCE EVALUATION SUPPORTING SYSTEM, INSULIN RESISTANCE EVALUATION SUPPORTING METHOD, AND COMPUTER PROGRAM PRODUCT
    • 胰岛素抵抗评估支持系统,胰岛素抵抗评估支持方法和计算机程序产品
    • US20110166792A1
    • 2011-07-07
    • US12979985
    • 2010-12-28
    • Takayuki Takahata
    • Takayuki Takahata
    • G01N33/48G06F19/00
    • G16H50/50A61B5/14532
    • The present invention provides an insulin resistance evaluation supporting system, an insulin resistance evaluation supporting method, and a computer program product that can reduce the burden on a subject necessary to estimate biological information relating to the insulin resistance compared with that in conventional examples. An insulin resistance evaluation supporting system 1 includes an input/output interface 11f that receives input of information relating to a glucose concentration, an insulin concentration, and a free fatty acid concentration in blood obtained by measuring the subject, a CPU 11a that estimates a glucose uptake rate of the subject based on the information relating to the glucose concentration, the insulin concentration, and the free fatty acid concentration in the blood whose input has been received, and an image output interface 11g that outputs the estimated glucose uptake rate.
    • 本发明提供了一种胰岛素抵抗评估支持系统,胰岛素抵抗评估支持方法和计算机程序产品,其与现有实施例相比可以减少估计与胰岛素抵抗有关的生物学信息所必需的受试者的负担。 胰岛素抵抗力评价支援系统1包括:输入输出接口11f,其输入与通过测定对象而得到的血液中的葡萄糖浓度,胰岛素浓度,游离脂肪酸浓度有关的信息, 基于与已经接收到输入的血液中的葡萄糖浓度,胰岛素浓度和游离脂肪酸浓度相关的信息的受试者的摄取率和输出估计的葡萄糖摄取率的图像输出界面11g。
    • 10. 发明授权
    • Urea concentration identification device for urea solution
    • 尿素溶液尿素浓度鉴定装置
    • US07829024B2
    • 2010-11-09
    • US10571357
    • 2004-09-10
    • Kenjiro IzutaniTakayuki Takahata
    • Kenjiro IzutaniTakayuki Takahata
    • G01N33/00G01N25/00G01N15/06
    • F01N11/00F01N3/2066F01N2550/05F01N2610/02F01N2610/10F01N2610/148F01N2900/1818G01N25/18Y02T10/47
    • A urea concentration identification device comprising a concentration identification sensor unit (2) and a support unit (4) attached at the bottom end thereof with this sensor unit and provided at the top end thereof with a mounting unit (4a) to a urea solution tank opening. The concentration identification sensor unit (2) has an indirectly-heated concentration detector and liquid temperature detector provided with metal fins (21c),(22c), respectively, for heat-exchanging with urea solution. The concentration identification sensor unit (2) is provided with a cover member (2d) that forms an opposite-ends-opened urea solution induction passage so as to surround the metal fins (21c),(22c), and an enclosure (2e) that forms communication holes (26),(27) in the top and bottom end plate thereof (2e1),(2e2). A single-pulse voltage is applied to the heating element of the indirectly-heated concentration detector to heat it, and a urea concentration is identified at an identification operation unit based on an output from a concentration detection circuit including the temperature sensing element of the indirectly-heated concentration detector and the liquid temperature detector.
    • 一种尿素浓度识别装置,包括浓度识别传感器单元(2)和在其底端附接有该传感器单元的支撑单元(4),并且在其顶端处设置有安装单元(4a)到尿素溶液罐 开放 浓度识别传感器单元(2)具有间接加热的浓度检测器和液温检测器,分别具有用于与尿素溶液进行热交换的金属翅片(21c),(22c)。 浓度识别传感器单元(2)设置有形成围绕金属翅片(21c),(22c)的外壳(2e)的两端开口的尿素溶液导入通路的盖部件(2d) 在其顶板和底端板(2e1),(2e2)中形成连通孔(26),(27)。 将单脉冲电压施加到间接加热浓度检测器的加热元件以加热,并且基于来自包括间接地温度感测元件的浓度检测电路的输出在识别操作单元处识别尿素浓度 - 加热浓度检测器和液体温度检测器。