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    • 31. 发明专利
    • Security system for gas-using facility
    • 使用设施的安全系统
    • JP2006243990A
    • 2006-09-14
    • JP2005056867
    • 2005-03-02
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDENISHIDA JUNICHI
    • G08B25/04G08B25/10G08C15/00H04M11/00
    • PROBLEM TO BE SOLVED: To propose a security system for making it unnecessary for a resident to switch a mode.
      SOLUTION: The security system 1 is provided with a residence side device 5 and a centralized monitor device 3 connected through a general communication line 6 to the residence side device 5. The residence side device 5 is provided with a gas meter 11, a gas non-use monitoring device 12, a sensor group 13 for detecting the abnormality of a general residence 4 and the abnormality of a resident and a transmitting device 14 for communicating through the general communication line 6 to the centralized monitor device 3. The centralized monitor device 3 uses a time zone when it is estimated that the resident goes out as a monitor time zone among gas non-use time zones to be calculated from the detection result of the gas non-use monitoring device 12, and monitors whether or not the abnormality of the general house 4 and the resident has occurred based on the output of the sensor group 13 of the general residence 4 in this time zone.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提出安全系统,使得居民不需要切换模式。 解决方案:安全系统1设置有通过通用通信线路6连接到居住侧设备5的居住侧设备5和集中监控设备3。居住侧设备5设置有气量计11, 气体不使用监视装置12,用于检测一般住宅4的异常的传感器组13和用于通过通用通信线路6通信到集中监视装置3的驻车和发送装置14的异常。集中 当根据气体不使用监视装置12的检测结果计算出在气体不使用时间段中估计居民作为监视时间段出来时,监视装置3使用时区,并监视是否 一般住宅4和居民的异常基于该时区的总公寓4的传感器组13的输出而发生。 版权所有(C)2006,JPO&NCIPI
    • 33. 发明专利
    • Flowmeter
    • 流量计
    • JP2006058267A
    • 2006-03-02
    • JP2004243310
    • 2004-08-24
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDEKOIZUMI AKIRAKARASAWA SHINTAROHARA KATSUMI
    • G01F1/075
    • PROBLEM TO BE SOLVED: To provide a flowmeter provided with a bearing mechanism capable of supporting a magnet gear in a proper condition for a long period.
      SOLUTION: A magnet 11 is embedded in a tip of an impeller 4 of a city water meter 1, the portion herein is opposed coaxially to the magnet gear 12 inside a unit case 8, with a bottom wall portion 8a of the synthetic resin-made unit case 8 therebetween. A lower end part 13a of a rotary shaft 13 of the magnet gear 12 is supported rotatably by a flat bearing face 16a of a synthetic resin-made bearing plate 16 fixed embeddedly in a surface of the bottom wall portion 8a. When the impeller 4 is rotated in response to a flow rate, the magnet gear 12 coupled magnetically thereto is also rotated followed thereto to measure the flow rate. The bearing plate 16 is made of a synthetic resin, a thermal expansion difference with respect to the the bottom wall portion 8a is substantially zero, and a thermal stress and thermal deformation are low thereby. The flowmeter is easy to form a protrusion such as a detent, and is attached surely and firmly to the bottom wall portion 8a. Durability of a bearing portion is improved.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种具有能够在适当条件下长时间地支撑磁齿轮的轴承机构的流量计。 解决方案:将磁体11嵌入城市水表1的叶轮4的顶端,其中的部分与单元壳体8内的磁齿轮12同轴地对置,合成的底壁部分8a 树脂制单元壳体8。 磁铁齿轮12的旋转轴13的下端部13a可旋转地由嵌入在底壁部8a的表面上的合成树脂制轴承板16的平坦的支承面16a支撑。 当叶轮4响应于流量而旋转时,与其一起磁耦合的磁齿轮12也随之旋转以测量流速。 支承板16由合成树脂制成,相对于底壁部8a的热膨胀差大致为零,由此产生热应力和热变形。 流量计易于形成诸如棘爪的突起,并且牢固地附接到底壁部8a。 轴承部的耐久性提高。 版权所有(C)2006,JPO&NCIPI
    • 34. 发明专利
    • Meter reading method for electronic water meter, and meter reading system
    • 电子水表仪表读取方法和仪表读数系统
    • JP2005326985A
    • 2005-11-24
    • JP2004142979
    • 2004-05-13
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDENISHIDA JUNICHI
    • G08C15/00G08C17/00
    • PROBLEM TO BE SOLVED: To propose a meter reading system allowing easy meter reading of an electronic water meter without using a wireless master unit or a wireless slave unit.
      SOLUTION: In this meter reading system 1 for the electronic water meter, an installation part 13 of the electronic water meter 4 is detachably installed with a meter-reading IC tag unit 5. When performing data requirement to the meter-reading IC tag unit 5 by wireless communication from a meter-reading wireless handy terminal 6, the requirement is transferred to the electronic water meter 4, and measurement data 50 held in a storage part 43 thereof are read, are temporarily stored in an IC tag 23 of the meter-reading IC tag unit 5, are transferred to the meter-reading wireless handy terminal 6 by the wireless communication by a wireless communication function, and are collected by the handy terminal 6.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提出一种抄表系统,允许在不使用无线主单元或无线从单元的情况下轻松读取电子水表。

      解决方案:在该电子水表的读数系统1中,电子水表4的安装部13可拆卸地安装有读表IC标签单元5.当对读表IC进行数据要求时 标签单元5通过来自读表无线手持终端6的无线通信,将要求传送到电子水表4,并且保持在其存储部分43中的测量数据50被暂时存储在IC标签23中 抄表IC标签单元5通过无线通信功能的无线通信被传送到抄表无线手持终端6,并由便利终端6收集。(C)2006年,JPO&NCIPI

    • 40. 发明专利
    • Gas flow measuring method using ultrasonic gas meter
    • 使用超声波气体计的气体流量测量方法
    • JP2004251686A
    • 2004-09-09
    • JP2003040768
    • 2003-02-19
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDENISHIDA JUNICHI
    • G01F1/00G01F1/66G01F3/22
    • PROBLEM TO BE SOLVED: To provide a method for measuring a gas flow rate by using a same ultrasonic gas meter even if the pipe diameter of a pipe of gas which is a measuring object is different.
      SOLUTION: This ultrasonic gas meter 1 for a small caliber equipped with a small-caliber measuring passage is prepared, and a part where the measuring passage 4 is formed is inserted into the inside of the gas pipe 11 from an aperture 12 formed on a medium-caliber or large-caliber gas pipe 11. Then, gas is made to flow in the gas pipe 11, and the corresponding relation between an indicated value Q
      0 of the ultrasonic gas meter 1 for a small caliber and a gas flow rate Q flowing in the gas pipe 11 is stored and held in the form of a linear approximate expression or the like. At the actual gas flow measuring time, the gas flow rate is calculated based on the indicated value Q
      0 of the ultrasonic gas meter 1 for a small caliber and the linear approximate expression. The gas flow rate can be measured only by installing an ultrasonic meter for a small caliber of the same kind relative to a gas pipe having a different pipe diameter, and a design change such as a specification change of the ultrasonic gas meter is not required, to thereby realize this measuring method of the gas flow rate having wide versatility.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:为了提供一种通过使用相同的超声波燃气表来测量气体流量的方法,即使作为测量对象的气体管的管径不同。

      解决方案:制备具有小口径测量通道的小口径超声波燃气表1,并且将形成有测量通道4的部分从形成的孔12插入气体管道11的内部 在中等口径或大口径气体管道11上,然后使气体在气体管道11中流动,并且超声波燃气表1的指示值Q 0 之间的对应关系用于 在气体管道11中流动的小口径和气体流量Q被存储并保持为线性近似表达式等。 在实际气体流量测量时间,基于小口径超声波燃气表1的指示值Q 0 和线性近似表达式计算气体流量。 气体流量可以仅通过相对于具有不同管径的气体管安装相同种类的小口径的超声波仪表来测量,并且不需要诸如超声波燃气表的规格变化的设计变化, 从而实现具有广泛性的气体流量的这种测量方法。 版权所有(C)2004,JPO&NCIPI