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    • 1. 发明专利
    • Analyzer
    • 分析仪
    • JP2014002054A
    • 2014-01-09
    • JP2012137805
    • 2012-06-19
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • ISHITOBI TAKESHIISHIKAWA RYUICHI
    • G01N35/00
    • PROBLEM TO BE SOLVED: To provide an analyzer which is capable of flexibly coping with a request for peak cut which is varied in accordance with situations of power demand and power supply, by effectively using a general interruptible power supply installed in preparation for power failure, even during the non-occurrence of power failure.SOLUTION: The analyzer includes an UPS (interruptible power supply) 30 which uses power of a commercial power supply 100 when being fed from the commercial power supply 100 but uses charged power of a battery 32 to supply power when being cut off from the commercial power supply 100, and supplies the output power of the UPS 30 to an analysis unit 40. In the analyzer, a breaker 20 is provided in a feed path from the commercial power supply 100 to the UPS 30. The analysis unit 40 outputs a feed cut-off signal S for intentionally cutting off the feed from the commercial power supply 100 to the UPS 30, to the breaker 20. Thus, the feed from the commercial power supply 100 to the UPS 30 can be cut off in accordance with situations and charged power of the battery 32 in the UPS 30 can be supplied to the analysis unit 40 after converted to AC power.
    • 要解决的问题:为了提供能够灵活应对根据电力需求和电力供应情况而变化的峰值切断请求的分析器,通过有效地使用安装在停电准备中的一般中断电源, 即使在不发生停电的情况下也可以使用。分析器包括UPS(可中断电源)30,其在从商用电源100馈送时使用商用电源100的电力,但是使用电池32的充电电力 当从商用电源100断开时供电,并将UPS 30的输出功率提供给分析单元40.在分析器中,断路器20设置在从商用电源100到UPS的馈送路径 分析单元40输出用于故意切断从商用电源100到UPS 30的供给到断路器20的进给切断信号S.因此,来自商业p 可以根据情况切断对UPS 30的供应100,并且UPS 30中的电池32的充电功率可以在转换成AC电力之后被提供给分析单元40。
    • 2. 发明专利
    • Water quality analyzer
    • 水质分析仪
    • JP2009115557A
    • 2009-05-28
    • JP2007287720
    • 2007-11-05
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • DAN KOICHIROISHITOBI TAKESHI
    • G01N33/18
    • PROBLEM TO BE SOLVED: To provide a water quality analyzer having a high flexibility in the extending direction of piping, when extension piping is connected to analysis part connecting piping, such as, water discharging piping and the like for connecting external piping to an analysis part.
      SOLUTION: The water quality analyzer 1 comprises an analysis part 10 analyzing water quality; a support base 30 attached with the analysis part 10; and analysis part connecting piping 40, 50, 60 for connecting the external piping to the analysis part 10. The analysis part connecting piping 40, 50, 60 are attached to the support base 30 along the substantially orthogonal direction at the lower side of the analysis part 10 so that the lower end 40a, 50a, 60a are positioned under the lower end 30a of the support base 30.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种在管道的延伸方向上具有高柔性的水质分析器,当延长管道连接到分析部分连接管道,例如排水管道等,用于将外部管道连接到 分析部分。 解决方案:水质分析仪1包括分析水质的分析部分10; 与分析部件10连接的支撑基座30; 以及用于将外部管道连接到分析部分10的连接管道40,50,60的分析部分。分析部分连接管道40,50,60沿着基本正交的方向在分析的下侧附接到支撑基座30 部分10,使得下端40a,50a,60a位于支撑基座30的下端30a之下。版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Measuring instrument, container and device for measuring water quality
    • 用于测量水质的仪器,容器和装置
    • JP2007101419A
    • 2007-04-19
    • JP2005292999
    • 2005-10-05
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • SHINNO TETSUHISAISHITOBI TAKESHIHARADA YASUYUKI
    • G01N33/18G01N27/06G01N27/26G01N27/28G01N27/404G01N27/416
    • PROBLEM TO BE SOLVED: To provide a measuring instrument, a container and a device for measuring water quality, capable of improving maintainability. SOLUTION: A sensor module 3 includes a body part 31, a partition member 33 positioned on the lower end, and a detection part 34 for performing water quality measurement positioned between the body part 31 and the partition member 33. A measuring part 4 is equipped with a calibration liquid tank 41 into which calibration liquid is introduced, a test water tank 42 into which test water is introduced, a tube 43 for partitioning the calibration liquid tank 41 from the test water tank 42, and a cleaning member 44 for cleaning the detection part 34 of the sensor module 3. When the air having a prescribed pressure is injected into the tube 43, the tube 43 is expanded and abuts on the sensor module 3. When air injection is stopped, the tube 43 is contracted, and the abutting state on the sensor module 3 is released. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供能够提高可维护性的测量仪器,容器和用于测量水质的装置。 解决方案:传感器模块3包括主体部分31,位于下端的分隔部件33和用于进行位于主体部分31和分隔部件33之间的水质测量的检测部分34.测量部分 4装备有校准液体引入到其中的校准液体容器41,测试水被引入测试水箱42,用于将校准液体容器41与测试水箱42隔开的管43和清洁构件44 用于清洁传感器模块3的检测部分34.当具有规定压力的空气被注入管43中时,管43膨胀并邻接传感器模块3.当空气注入停止时,管43收缩 并且传感器模块3上的抵接状态被释放。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Optical water quality measuring instrument
    • 光学水质测量仪器
    • JP2006153739A
    • 2006-06-15
    • JP2004346850
    • 2004-11-30
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • HASHIZUME YUKIROISHITOBI TAKESHIWATANABE MASUHITOKASAI SHINYA
    • G01N21/15G01N21/49
    • PROBLEM TO BE SOLVED: To surely prevent dew condensation on a cell window surface to enhance measuring precision, to prolong a life of a desiccant to reduce a frequency of replacement, and to reduce maintenance work and a cost, in an optical water quality measuring instrument such as a turbidimeter with an integrating sphere.
      SOLUTION: This optical water quality measuring instrument is provided with a detection cell 3 stored in a sealed space in a detector 1 and supplied with a water sample, and measures water quality of the water sample using light emitted via one cell window 32B, by emitting the light toward the water sample in the detection cell 3 via the other cell window 32A. The measuring instrument is provided with the desiccant stored in desiccant storage chambers 6A, 6B arranged in the sealed space, gas pumps 7A, 7B and pipes 8A, 8B as force feed means for feeding forcibly dried air generated by passing the desiccant, and nozzles 9A, 9B as injection means for injecting the dried air forcibly fed by the force feed means toward a surface of a nonsample water side of the cell windows 32A, 32b.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了确保防止电池窗表面上的结露,提高测量精度,延长干燥剂的使用寿命,降低更换次数,降低维护工作和成本,在光学水中 质量测量仪器,如具有积分球的浊度计。 解决方案:该光学水质量测量仪器设置有存储在检测器1的密封空间中并被提供有水样的检测单元3,并且使用经由一个单元窗口32B发出的光来测量水样的水质 通过经由另一个单元窗口32A向检测单元3中的水样发射光。 测量仪器具有存储在布置在密封空间中的干燥剂存储室6A,6B中的干燥剂,气体泵7A,7B和管道8A,8B,作为用于供给通过干燥剂而产生的强制干燥空气的力供给装置和喷嘴9A 9B作为注射装置,用于将由力供给装置强制供给的干燥空气朝向电池窗32A,32b的非取样水侧的表面喷射。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Integrating sphere type turbidimeter
    • 集成式球面涡轮发动机
    • JP2006153738A
    • 2006-06-15
    • JP2004346849
    • 2004-11-30
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • WATANABE MASUHITOHASHIZUME YUKIROISHITOBI TAKESHIKASAI SHINYA
    • G01N21/49G01N21/15
    • G01N21/15G01N2021/152G01N2201/065
    • PROBLEM TO BE SOLVED: To provide an integrating sphere type turbidimeter having a simple structure and capable of automatically realizing calibration or the washing of a cell window.
      SOLUTION: The integrating sphere type turbidimeter is equipped with a detection cell 131 constituted so as to irradiate internal sample water with the light from a light source 11 through one cell window 133 to emit the scattered light and transmitted light, which occur from the sample water through another cell window 133 and an integrating sphere 15 for collecting the scattered light and transmitted light emitted from another cell window 133. The turbidity of the sample water is measured on the basis of the ratio of the respective detection currents obtained by photoelectric conversion of the scattered light and transmitted light collected by the integrating sphere 15. A calibration filter 138 for calibrating the ratio of the respective detection currents is arranged between another cell window 133 and the light incident port 15A of the integrating sphere 15 in a detachable manner and a washing wiper 136C coming into contact with the inner surface of the cell window 133 to move is provided.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种具有简单结构并能够自动实现单元窗口的校准或洗涤的积分球型浊度计。 解决方案:积分球型浊度计配备有检测单元131,该检测单元131被构造成用来自光源11的光通过一个单元窗口133照射内部样品水,以发射散射光和透射光, 样品水通过另一个单元窗口133和用于收集散射光的积分球15和从另一个单元窗口133发射的透射光。测量样品水的浊度是基于通过光电获得的各个检测电流的比率 由积分球15收集的散射光和透射光的转换。用于校准各个检测电流的比率的校准滤光器138以可拆卸的方式布置在另一个单元窗口133和积分球15的光入射口15A之间 并且与电池窗133的内表面接触以移动的清洗刮水器136C 提供。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Thin plate fixation method and oil film detection device using the same
    • 薄板固定方法和使用其的油膜检测装置
    • JP2013210302A
    • 2013-10-10
    • JP2012081091
    • 2012-03-30
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • OKUMURA TAKEHITOISHITOBI TAKESHI
    • G01N21/47
    • PROBLEM TO BE SOLVED: To provide a thin plate fixation method for fixing a thin plate with a mechanism for performing position adjustment to a column, and an oil film detection device using the same.SOLUTION: In a thin plate fixation method for fixing a thin plate 10 to a column 30 by using a male screw 20 for thin plates having the head 21, the thin plate 10 includes an approximately T-shaped notch into which the screw 20 for thin plates can be inserted, the column 30 includes a slit 31 which is long in the longitudinal direction, and the slit 31 includes a female screw which can be screwed into the male screw 20 for thin plates. Since the thin plate 10 is fixed to the column 30 so that position adjustment is possible by inserting the thin plate 10 into the slit 31 of the column 30, and screwing the male screw 20 for thin plates into the female screw in the slit 31 so that a bearing surface of the male screw 20 for thin plates presses 'thickness' of the thin plate 10 in the approximately T-shaped notch in a direction of the column 30, the thin plate 10 can be fixed to the column 30 while simply performing the position adjustment.
    • 要解决的问题:提供一种用于将具有用于对柱进行位置调整的机构的薄板固定的薄板固定方法,以及使用其的油膜检测装置。解决方案:在用于固定薄板的薄板固定方法 板10通过使用具有头部21的薄板的外螺纹20,薄板10包括大致T形的切口,用于薄板的螺钉20可以插入其中,柱30包括狭缝31 其长度方向长,狭缝31包括可以拧入用于薄板的阳螺纹20的内螺纹。 由于薄板10固定在立柱30上,所以能够通过将薄板10插入柱30的狭缝31中来进行位置调整,并将薄板用的外螺纹20拧入狭缝31内的内螺纹中 用于薄板的外螺纹20的支承表面沿着柱30的方向在大致T形的切口中挤压薄板10的“厚度”,薄板10可以固定到柱30,同时简单地执行 位置调整。
    • 8. 发明专利
    • Cleaning device, device for measuring water quality and cleaning method
    • 清洁装置,用于测量水质和清洁方法的装置
    • JP2007101420A
    • 2007-04-19
    • JP2005293009
    • 2005-10-05
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • SHINNO TETSUHISAHARADA YASUYUKIISHITOBI TAKESHIMORITO HIROSHI
    • G01N27/38B08B3/02B08B3/10G01N27/06G01N27/416G01N33/18
    • PROBLEM TO BE SOLVED: To provide a cleaning device, a device for measuring water quality and a cleaning method, from which a high cleaning effect can be expected with a simple configuration. SOLUTION: After moving a sensor module vertically inside the cylindrical inner surface of a measuring part (S101), an operation/control part supplies pressurized water to a cleaning member (S102). Hereby, the pressurized water is jetted out from a plurality of nozzles of the cleaning member. The plurality of nozzles are formed over the whole periphery inside the cylindrical inner surface. When determined that cleaning is finished by the operation/control part (S103), supply of the pressurized water is stopped (S104), and then the air is supplied to the cleaning member (S105). Hereby, draining of the sensor module can be performed. When draining is finished (S106), the operation/control part stops air supply (S107), and stops vertical movement of the sensor module (S108). COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种清洁装置,用于测量水质的装置和清洁方法,由此可以以简单的结构预期高清洁效果。 解决方案:将传感器模块垂直移动到测量部件的圆柱形内表面(S101)内,操作/控制部件向清洁部件供应加压水(S102)。 因此,加压水从清洁部件的多个喷嘴喷出。 多个喷嘴形成在圆筒形内表面的整个周边上。 当确定由操作/控制部分完成清洁(S103)时,停止供给加压水(S104),然后将空气供给到清洁部件(S105)。 因此,可以执行传感器模块的排水。 排水结束(S106)时,操作/控制部停止供气(S107),停止传感器模块的垂直移动(S108)。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Detector and jig
    • 检测器和JIG
    • JP2011075432A
    • 2011-04-14
    • JP2009227922
    • 2009-09-30
    • Dkk Toa Corp東亜ディーケーケー株式会社
    • OKUMURA TAKEHITOISHITOBI TAKESHI
    • G01N21/47
    • PROBLEM TO BE SOLVED: To provide a detector capable of readily performing the positional adjustment and/or calibration work to a detection surface, and to provide a jig. SOLUTION: At positional adjustment and/or calibration of an oil film detector, a target plate 6 and the jig 7 are attached to a hood. When a scanning laser beam L3 advances into the inside 7a of the jig 7 from the opening section 61 of the target plate 6, it is reflected by the detection surface Ws of a container 74. The reflected light L4s projects a predetermined scanning locus on the surface 6b of the target plate 6. The inside of the jig 7 restricts the incidence of the external light of the jig 7. Accordingly, a worker can visually and readily confirm the position of the scanning locus with respect to the opening section 61 via the mirror 8 arranged in a window section 78. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够容易地对检测表面执行位置调整和/或校准工作的检测器,并提供夹具。 解决方案:在油膜检测器的位置调整和/或校准中,将靶板6和夹具7附接到罩上。 当扫描激光束L3从目标板6的开口部分61进入夹具7的内部7a时,它被容器74的检测表面Ws反射。反射光L4s在预定的扫描轨迹上突出 目标板6的表面6b。夹具7的内部限制了夹具7的外部光的入射。因此,作业者可以通过视觉上容易地确认扫描轨迹相对于开口部61的位置 布置在窗户部分78中的镜子8.版权所有(C)2011,JPO&INPIT