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    • 1. 发明专利
    • Gas meter
    • 气体计
    • JP2006145321A
    • 2006-06-08
    • JP2004334174
    • 2004-11-18
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • SATO RIICHIAIHARA TOSHIYUKISHOJI MASASHI
    • G01F3/22H05K3/28
    • PROBLEM TO BE SOLVED: To omit coating processing after the packaging of parts, by filling a resin in through holes for electrically connecting both surfaces in a printed circuit board to be used for a gas meter and performing resist processings on the resin.
      SOLUTION: The through holes are formed in an insulating substrate where an electrically conductive layer of a copper foil etc. is formed in both surfaces, and the inner walls of the through holes are copper-plated (S1). A circuit is formed (S2); a resin such as an acrylic resin is printed and filled in the through holes (S3); the filled resin is thermally set (S4). Resist processing is performed over it to form a resist layer (S5). Since it is possible to omit coating processing, after the packaging of parts to a printed circuit board (PCB) by this resist processing, the load required for coating processing can be reduced.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:在部件包装之后,通过在用于电气连接用于气表的印刷电路板的两个表面的通孔中填充树脂并对树脂进行抗蚀剂处理,来省略涂覆处理。 解决方案:通孔形成在两个表面上形成铜箔等的导电层的绝缘基板中,并且通孔的内壁被镀铜(S1)。 形成电路(S2); 将丙烯酸树脂等树脂印刷并填充在通孔(S3)中。 填充树脂被热定形(S4)。 在其上进行抗蚀剂处理以形成抗蚀剂层(S5)。 由于可以省略涂布处理,所以在通过该抗蚀剂处理将部件封装到印刷电路板(PCB)之后,可以减少涂布处理所需的负荷。 版权所有(C)2006,JPO&NCIPI
    • 2. 发明专利
    • Printed circuit board and gas meter
    • 印刷电路板和气体计
    • JP2006145322A
    • 2006-06-08
    • JP2004334175
    • 2004-11-18
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • SATO RIICHIAIHARA TOSHIYUKISHOJI MASASHI
    • G01F3/22H05K1/02
    • PROBLEM TO BE SOLVED: To share a display means for displaying measurement results of the quantity of flow of gas by a plurality of types of gas meters in a printed circuit board, capable of being built in a gas meter for measuring the quantity of gas flow.
      SOLUTION: A circuit shared by gas meters of two types, a mechanical type counter for mechanically displaying the counted value of the quantity of flow of gas and a liquid crystal type counter for displaying the counted value of the quantity of flow of gas in a liquid crystal display, is formed in the printed circuit board (PCB) 30. In the case of the mechanical counter type, a liquid crystal display part 31 for displaying security information (and a sub-counter) is mounted. In the case of the liquid crystal counter type, a liquid crystal display part 32 for displaying a liquid crystal counter and security information is mounted. By selectively mounting the liquid crystal display parts to the PCB 30, the PCB 30 can be commonized by the two types of gas meters.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:共享用于显示印刷电路板中的多种类型的气体计量器的气体流量的测量结果的显示装置,其能够内置在用于测量数量的气量计中 的气流。

      解决方案:两种气体计量仪共享的电路,用于机械显示气体流量的计数值的机械式计数器和用于显示气体流量计数值的液晶式计数器 在液晶显示器中,形成在印刷电路板(PCB)30中。在机械计数器型的情况下,安装用于显示安全信息的液晶显示部分31(和子计数器)。 在液晶计数器的情况下,安装用于显示液晶计数器的液晶显示部分32和安全信息。 通过将液晶显示部件选择性地安装到PCB 30,PCB 30可以通过两种类型的气体计量仪进行通用。 版权所有(C)2006,JPO&NCIPI

    • 3. 发明专利
    • Gas meter
    • 气体计
    • JP2010266231A
    • 2010-11-25
    • JP2009115631
    • 2009-05-12
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • SHOJI MASASHI
    • G01F3/22
    • PROBLEM TO BE SOLVED: To provide such a gas meter as spares a consumer inconvenience by reducing erroneous shutoff that occurs when gas usage varies for a short time.
      SOLUTION: This gas meter includes a flow measuring part for measuring the use status of a gas including the flow rate of the gas, a learning processor for learning/holding optimum shutoff conditions to shut off gas supply according to the measured use status of the gas by learning initial values of the shutoff conditions set in order to shut off the gas supply correspondingly to an anomalous use status of the gas, and a shutoff part for shutting off a flow of the gas when the use status of the gas corresponds to the shutoff conditions. The gas meter comprises a calendar storage for therein storing a unique day when the use status of the gas changes. The held shutoff conditions are changed to the initial values by the learning processor when the present date and time is the unique day stored in the calendar storage and the measured use status of the gas meets prescribed conditions.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供这样的气量计,通过减少当气体使用在短时间内变化时发生的错误关闭来消除消费者的不便。 解决方案:该气量计包括用于测量包括气体流量的气体的使用状态的流量测量部分,用于学习/保持最佳切断条件的学习处理器,以根据测量的使用状态切断气体供应 通过学习设定的关闭条件的初始值,以便相应于气体的异常使用状态来切断气体供应,以及当气体的使用状态对应于关闭气体的流动的截止部分时, 到关闭条件。 燃气表包括一个日历存储器,用于在气体的使用状态改变时存储独特的一天。 当当前日期和时间是日历存储器中存储的唯一日期并且气体的测量使用状态满足规定条件时,学习处理器将所保持的关闭条件改变为初始值。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Gas cut-off device and gas meter
    • 气体切断装置和气体计
    • JP2006177903A
    • 2006-07-06
    • JP2004374135
    • 2004-12-24
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • SATO RIICHISHOJI MASASHIAIHARA TOSHIYUKI
    • G01F3/22F16K31/04
    • PROBLEM TO BE SOLVED: To provide a gas cut-off device capable of eliminating wasteful consumption when driving a stepping motor cut-off valve, and capable of reducing a battery using capacity.
      SOLUTION: This gas cut-off device equipped in a gas meter to stop supply of gas in emergency or the like includes the stepping motor cut-off valve 1 provided in a gas passage (gas flow passage) to cut off the gas, a valve driving IC 2 for driving the valve 1, a microcomputer 3 for controlling the valve driving IC 2, and an A/D conversion IC 5 or the like for measuring a voltage of a battery. The motor valve 1 is driven using the battery as an electric power source. The microcomputer 3 changes a driving frequency of the valve driving IC 2, based on the voltage measured by the A/D conversion IC 5.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够在驱动步进电动机截止阀时消除浪费的气体截断装置,并且能够减少电池使用能力。 解决方案:配置在燃气表中的用于在紧急情况下等待气体供应的气体截止装置包括设置在气体通道(气体流路)中以切断气体的步进电动机截止阀1 ,用于驱动阀1的阀驱动IC2,用于控制阀驱动IC2的微型计算机3和用于测量电池电压的A / D转换IC 5等。 使用电池作为电源驱动电动阀1。 微型计算机3基于由A / D转换IC5测量的电压来改变阀驱动IC2的驱动频率。(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Flowmeter
    • 流量计
    • JP2010266230A
    • 2010-11-25
    • JP2009115628
    • 2009-05-12
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • SHOJI MASASHI
    • G01F3/22F23K5/00F23N5/18
    • PROBLEM TO BE SOLVED: To provide such a gas meter as is prevented from inconveniencing a consumer by reducing erroneous shutoff occurring when gas usage varies in the short term.
      SOLUTION: The gas meter 1 includes a measuring part 11 for measuring a gas flow amount, a shutoff part 14 for shutting off the flow of a gas when a total gas usage is larger than a shutoff setting, and a learning processor for updating the shutoff setting into a setting corresponding to a total gas usage measured from an initial setting by learning and holding the updated setting. The gas meter 1 is equipped with a calendar storage 10f for therein storing a special term during which the use status of gas changes, a temperature sensor 12d for acquiring information on temperature around the gas meter, and an indoor temperature acquirer for acquiring information on indoor temperature from an indoor operating device 2. The held shutoff setting for the total gas usage is changed to the initial setting by the learning processor in cases where the present date and time corresponds to the special term stored in the calendar storage 10f during which gas usage increases and the indoor temperature is higher as compared with the temperature around the gas meter by a value larger than a prescribed one.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供这样的气量计,以防止在短期内气体使用变化时发生的错误关闭,从而使消费者不便。 气体计1包括用于测量气体流量的测量部分11,当总气体使用量大于关闭设置时关闭气体流动的截止部分14,以及用于 通过学习和保持更新的设置,将关闭设置更新为与从初始设置测量的总气体使用相对应的设置。 燃气表1配备有用于存储气体的使用状态的特殊项目的日历存储器10f,用于获取关于燃气表周围的温度的信息的温度传感器12d以及用于获取室内信息的室内温度获取器 在当前日期和时间对应于存储在日历存储器10f中的特殊术语的情况下,通过学习处理器将用于总气体使用的保持关闭设置改变为初始设置,在此期间气体使用 与气量计周围的温度相比,室内温度升高了大于规定值的值。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Gas meter
    • 气体计
    • JP2006177902A
    • 2006-07-06
    • JP2004374122
    • 2004-12-24
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • SATO RIICHIAIHARA TOSHIYUKITAKAMIYA TOSHIYUKISHOJI MASASHI
    • G01F3/22
    • PROBLEM TO BE SOLVED: To regulate positions for attaching a plurality of magnets, based on a rotational fluctuation amount of a rotary shaft, in a gas meter for detecting magnetic fields from the plurality of magnets provided in a circumference of the rotary shaft rotated by a metering operation of a metering diaphragm, to measure a gas flow rate. SOLUTION: This gas meter includes the metering diaphragm reciprocation-moved by supply and discharge of gas, the rotary shaft 1 provided circumferentially with the magnets 2a-2d; a link mechanism 3 for converting the reciprocation motion of the metering diaphragm into the rotation motion of the rotary shaft 1; and a detecting means for detecting the magnetic fields emitted from the magnets 2a-2d when the rotary shaft 1 is rotated, and measures the gas flow rate, based on the detected magnetic fields. The attaching positions for attaching the magnets 2a-2d are regulated on the basis of the rotational fluctuation amount of the rotary shaft 1, when the link mechanism 3 is located in a prescribed stop position, and the magnets 2a-2d are attached shifted by a prescribed angle (about 15° in this embodiment) to detect the magnetic fields at a position where the rotational fluctuation amount of the rotary shaft 1 is relatively low. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了调节用于安装多个磁体的位置,基于旋转轴的旋转波动量,在用于检测来自设置在旋转轴的圆周中的多个磁体的磁场的气量计中 通过计量隔膜的计量操作旋转,以测量气体流量。 解决方案:该气量计包括通过气体供给和排出而移动的计量隔膜,旋转轴1与磁体2a-2d周向设置; 用于将计量隔膜的往复运动转换成旋转轴1的旋转运动的连杆机构3; 以及检测装置,用于当旋转轴1旋转时检测从磁体2a-2d发射的磁场,并且基于检测到的磁场来测量气体流量。 当连杆机构3位于规定的停止位置时,用于安装磁体2a-2d的安装位置是基于旋转轴1的旋转变动量来调节的,并且磁体2a-2d被安装在一个 在本实施例中为约15°的角度,以检测旋转轴1的旋转变动量相对较低的位置处的磁场。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • ULTRASONIC LEVEL GAUGE
    • JP2001272266A
    • 2001-10-05
    • JP2000086183
    • 2000-03-27
    • RICOH ELEMEX CORP
    • SHOJI MASASHIOMORI JUNJIOGASAWARA MASAKIMATSUBARA KIJUROIZUMI MASAHIKO
    • G01F23/28G08C15/00G08C17/00
    • PROBLEM TO BE SOLVED: To correctly calculate the remaining quantity of a liquid inside a storage tank or container, by correctly and simply detecting from outside of the storage tank or container a level of the liquid, e.g. a liquefied gas, a kerosene or the like stored inside the storage tank or container. SOLUTION: This ultrasonic level gauge is comprised of an ultrasonic sensor 20 and a controller 30 connected via cable or radio to the ultrasonic sensor in this example of constitution. A liquid such as liquefied gas, kerosene or the like is stored in the storage tank or a container 10. The ultrasonic sensor 20 is set in contact with a wall face of an outside bottom part of the storage tank or the container 10. An ultrasonic pulse emitted from the ultrasonic sensor 20 is reflected from a liquid level 11. The height of the level 11 is calculated from the reflected signal. The quantity of the liquid inside the storage tank or the container 10 can be calculated from the height of the level according to a held conversion expression. Information on the level, etc., is displayed on a display part 31, and a remaining quantity alarm or the like can be set arbitrarily. The sensor can be set in a single-action operation, without the need for working on the storage tank or the container 10.