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    • 91. 发明专利
    • Intensive meter reader, water meter and intensive meter read system
    • 强力表读取器,水表和强力表读取系统
    • JP2008227566A
    • 2008-09-25
    • JP2007058320
    • 2007-03-08
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • HASEBE MASAKI
    • H04Q9/00G08C15/00
    • PROBLEM TO BE SOLVED: To surely and quickly set the ID number of a water meter without the need of using dedicated communication terminal equipment or the like.
      SOLUTION: When receiving an activation message with the ID number from the intensive meter reader (S11), the water meter discriminates whether or not the ID number registered in itself is coincident with the received ID number (S12), and returns a response to the intensive meter reader when coincidence is obtained (S13). On the other hand, when coincidence is not obtained, whether or not an automatic ID registration function is made effective is discriminated by performing a prescribed operation to the water meter(S14). When it is effective, the ID number imparted to the activation message is registered in itself (S15) and the response is returned to the intensive meter reader. When there is no prescribed operation and the automatic ID registration function is made invalid, the water meter does not return the response to the activation message with the ID number (S16).
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:无需使用专用通信终端设备等,能够确切地快速地设置水表的ID号。 解决方案:当从密集读表器(S11)接收到具有ID号的激活消息时,水表识别本身登记的ID号码是否与接收的ID号一致(S12),并返回 当重合时响应密集式仪表读取器(S13)。 另一方面,当通过对水表执行规定的操作来判断是否获得符合自动ID登记功能是否有效时(S14)。 当其有效时,赋予激活消息的ID号本身登记(S15),并且响应返回给密集的读表器。 当没有规定的操作,并且自动ID登记功能无效时,水表不返回具有ID号的激活消息的响应(S16)。 版权所有(C)2008,JPO&INPIT
    • 92. 发明专利
    • Flow measuring device
    • 流量测量装置
    • JP2008216033A
    • 2008-09-18
    • JP2007053714
    • 2007-03-05
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • KONDO HISAKAGE
    • G01F3/22H01H13/02
    • PROBLEM TO BE SOLVED: To surely recognize the position of a restoring switch without being affected by the directivity of the light of a light source, and moreover, to surely acquire clicking sensation, when the restoring switch is depressed. SOLUTION: The isolation valve of a gas meter which is an example of a flow measuring device is a valve which is closed to prevent supply of a gas, when a microcomputer detects an occurrence of an abnormal situation or an abnormality signal is input from gas fittings, during the use of the gas. The isolation valve which is closed is opened, by pressing a rubber member 11 of a restoring switch portion 6 provided in a lower cover 4 and can restore the valve to its original state. If the gas is interrupted here, the restoring switch 6 turns on a light-transmitting ring 16 provided in an annular shape around the rubber member 11. Consequently, sure recovery operation becomes possible, even in works that are performed at night and in a dark place, and so on. Moreover, since the recovery switch is pressed directly by the rubber member 11, operator can surely obtain clicking sensation. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了确切地识别恢复开关的位置而不受光源的光的方向性的影响,此外,当确定恢复开关被按下时,确实获得咔嗒声。 解决方案:作为流量测量装置的一个例子的气量计的隔离阀是当微计算机检测到异常情况的发生或异常信号被输入时关闭以防止气体供应的阀 在天然气配件使用过程中。 关闭的隔离阀通过按压设置在下盖4中的恢复开关部6的橡胶构件11而打开,并且可以将阀恢复到其原始状态。 如果气体在这里被中断,则恢复开关6打开围绕橡胶构件11设置成环形的透光环16.因此,即使在夜间和黑暗中进行的工作也可以确保恢复操作 地方等等。 此外,由于恢复开关被橡胶构件11直接按压,操作者可以确定地获得咔哒声。 版权所有(C)2008,JPO&INPIT
    • 93. 发明专利
    • Device for detecting liquid discharge failure, and inkjet recorder
    • 用于检测液体排放故障的装置和喷墨记录仪
    • JP2008207338A
    • 2008-09-11
    • JP2007043268
    • 2007-02-23
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • HAYASHI HIRONAOITO KAZUMASA
    • B41J2/175B41J2/18B41J2/185
    • PROBLEM TO BE SOLVED: To detect a liquid discharge failure with a reliability on the detection result at a low cost by neither complicating the structure nor moving both a nozzle side and an optical device side.
      SOLUTION: In the device for detecting the liquid discharge failure 20, a light beam 31 such as a laser light emitted from a laser diode/LED or the like light emitting element 30 is hit to an inspection liquid droplet such as an ink droplet discharged from a nozzle nx or a cleaning liquid, and the scattering light is received by a photo-diode or the like photo-detecting element 33. The liquid discharge failure is detected from photo-detection data of the photo-detecting element. In the device for detecting the liquid discharge failure, a liquid discharge speed of the inspection liquid droplet is made outside the range of a normal liquid discharge speed determined according to a liquid viscosity of the inspection liquid droplet.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过既不使结构复杂化也不使喷嘴侧和光学装置侧移动,以低成本检测出具有可靠性的液体排出故障。 解决方案:在用于检测液体排出故障的装置20中,诸如从激光二极管/ LED等发射的发光元件30发射的激光的光束31撞击到诸如墨水的检查液滴 从喷嘴nx或清洁液体排出的液滴,并且散射光被光电二极管等光电检测元件33接收。从光检测元件的光检测数据检测液体排出故障。 在用于检测液体排出故障的装置中,将检查液滴的液体排出速度设定在根据检查液滴的液体粘度确定的正常液体排出速度的范围之外。 版权所有(C)2008,JPO&INPIT
    • 94. 发明专利
    • Apparatus for detecting liquid poor discharge, and inkjet recorder
    • 用于检测液体排放不良的装置和喷墨记录仪
    • JP2008194825A
    • 2008-08-28
    • JP2007011578
    • 2007-01-22
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • HAYASHI HIRONAOITO KAZUMASA
    • B41J2/175B41J2/165
    • PROBLEM TO BE SOLVED: To provide an apparatus for detecting liquid poor discharge which is improved in reliability by enabling correct detection of deflection in every direction of a liquid such as an ink droplet discharged from a nozzle regardless of the deflection direction, from a decrease of an optical output of a photo-detecting element. SOLUTION: In the apparatus for detecting liquid poor discharge which detects liquid poor discharge from photo-detection data by generating scattering light S by colliding the liquid droplet such as the ink droplet 13 discharged from the nozzle nN of a head surface 11 against an optical beam 15 emitted from a light emitting element 14 such as a laser diode, and receiving the scattering light by the photo-detecting element 17 such as a photo-diode, the light emitting element is placed to eject the optical beam reversely from the downstream in a discharge direction of the liquid droplet towards the upstream. The scattering light is generated by colliding the liquid droplet discharged from the nozzle of the head surface against the optical beam emitted from the light emitting element. The scattering light is received by the photo-detecting element. The liquid poor discharge is detected from the photo-detection data. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于检测液体不良放电的装置,其通过能够正确地检测诸如从喷嘴排出的墨滴的液体的每个方向上的偏转而改善可靠性,而不管偏转方向如何 光检测元件的光输出的减小。 解决方案:在用于检测液体不良放电的装置中,通过产生散射光S产生散射光S来检测液体不良的放电,该液滴使得从头表面11的喷嘴nN排出的墨滴13等液滴与头表面11的喷嘴相反 从诸如激光二极管的发光元件14发射的光束15,并且通过诸如光电二极管的光检测元件17接收散射光,发光元件被放置成将光束从 在液滴朝向上游的排出方向下游。 通过将从头表面的喷嘴排出的液滴与从发光元件发射的光束相撞而产生散射光。 散射光被光检测元件接收。 从光检测数据检测出液体不良的放电。 版权所有(C)2008,JPO&INPIT
    • 95. 发明专利
    • Sheet punching device
    • 薄板打孔装置
    • JP2008137100A
    • 2008-06-19
    • JP2006324302
    • 2006-11-30
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • KANEKO TAMAKI
    • B26F1/04
    • PROBLEM TO BE SOLVED: To simply and inexpensively construct a sheet punching device switchable with the kind of punched hole row.
      SOLUTION: Punches 21, 23, 25 are connected to a slide arm 51 through links 31, 33, 35. Punches 22, 24 are connected to a slide arm 52 through links 32, 34. The slide arms 51, 52 are provided with engagement pins 53, 54. The engagement pins 53, 54 engage with cam grooves 47a, 48a of cams 47, 48 provided on driving gears 44, 43. When the engagement pin 53 is engaged with a linear groove part 47a2 of the cam groove 47a, the engagement pin 54 engages with a curve groove part 48a1 of the cam groove 48a. When the engagement pin 54 is engaged with a linear groove part 48a2 of the cam groove 48a, the engagement pin 53 engages with a curve groove part 47a of the cam groove 47a.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:简单且廉价地构造可以用冲孔孔切换的片材冲孔装置。 解决方案:冲头21,23,25通过连杆31,33,35连接到滑动臂51.冲头22,24通过连杆32,34与滑动臂52连接。滑动臂51,52是 设置有接合销53,54。接合销53,54与设置在驱动齿轮44,43上的凸轮47,48的凸轮槽47a,48a接合。当接合销53与凸轮的直线槽部47a2接合时 凹槽47a,接合销54与凸轮槽48a的曲线槽部分48a1接合。 当接合销54与凸轮槽48a的直线槽部48a2接合时,接合销53与凸轮槽47a的曲线槽部47a接合。 版权所有(C)2008,JPO&INPIT
    • 97. 发明专利
    • Centralized meter-reading device and meter
    • 集中式仪表读取装置和仪表
    • JP2008085609A
    • 2008-04-10
    • JP2006262808
    • 2006-09-27
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • HASEBE MASAKIASAKURA YOSHIYUKI
    • H04Q9/00G08C15/00
    • PROBLEM TO BE SOLVED: To surely and quickly execute setting data migration before and after replacement and to reduce the addition of replacement work.
      SOLUTION: A centralized meter-reading device (A) used so far generates the same telegraphic message as a set telegraphic message received when storing a management table in a memory (S2) in the case of receiving a predetermined input operation (S1). The generated setting message is transmitted to a centralized meter-reading device (B) to be used from now on in a meter-reading sequence number order described in the management table (S3). The centralized meter-reading device (B) uses the received setting telegraphic message to copy the management table in its own memory (S4). Thus, a dedicated external communication apparatus or the like does not to have to be used, and the centralized meter-reading device (A) to be replaced and the centralized meter-reading device (B) to be used after replacement are connected to each other to thereby be able to directly copy the setting data of the management table.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:在更换之前和之后,确保并快速执行设置数据迁移,并减少替换工作的增加。 解决方案:在接收到预定的输入操作的情况下,将存储管理表存储在存储器(S2)中时,迄今使用的集中式读表装置(A)产生与设置的电报消息相同的电报消息(S1 )。 生成的设置消息被发送到从现在起使用的集中式读表装置(B),以管理表(S3)中描述的读表顺序号顺序。 集中式读表装置(B)使用接收到的设置电报消息将管理表复制在其自己的存储器中(S4)。 因此,不需要使用专用的外部通信装置等,要更换的集中式抄表装置(A)和更换后使用的集中抄表装置(B)连接到各个 从而能够直接复制管理表的设定数据。 版权所有(C)2008,JPO&INPIT
    • 98. 发明专利
    • Centralized meter reading system and device
    • 集中式仪表读取系统和设备
    • JP2008085608A
    • 2008-04-10
    • JP2006262806
    • 2006-09-27
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • HASEBE MASAKIASAKURA YOSHIYUKIMAEDA TOSHIKI
    • H04M11/00G08C15/00H04Q9/00
    • PROBLEM TO BE SOLVED: To inexpensively set data for executing a function possessed by a meter in a centralized meter reading system composed of a centralized meter reading device connected to a meter and a centralized monitoring center connected to the device.
      SOLUTION: The centralized meter reading system includes a centralized monitoring center 2; and a centralized meter reading device 1 connected to the centralized monitoring center 2 via a telephone line and including a plurality of communication function equipped meters (exemplarily illustrated by a water meter 3) connected thereto through a communication line. The centralized meter reading device 1 temporarily receives data set telegram message for setting data for executing a function possessed by a meter 3 based on a data set instruction from the centralized monitoring center 2 via a telephone circuit, and after interrupting the telephone circuit with the centralized monitoring center 2, sets setting data described in the data set telegram message for some or all of the plurality of the connected meters 3. It further dials the centralized monitoring center 2 after completion of the setting to connect the telephone circuit again and notice setting completion.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了廉价地设置在由连接到仪表的集中式仪表读取装置和连接到该装置的集中式监视中心组成的集中式抄表系统中执行仪表所具有的功能的数据。 解决方案:集中式抄表系统包括集中监控中心2; 和通过电话线连接到集中式监视中心2并且包括通过通信线路连接到其上的多个通信功能配备的仪表(由水表3示例性地示出)连接的集中式抄表装置1。 集中式仪表读取装置1基于来自集中监视中心2的电话电路的数据设定指令,临时接收用于设定用于执行仪表3所具有的功能的数据的数据组电报消息,并且在以集中式 监视中心2设置多个连接的仪表3中的一些或所有数据组电报消息中描述的设置数据。在完成设置之后,再次拨打集中式监控中心2,再次连接电话电路并通知设置完成 。 版权所有(C)2008,JPO&INPIT
    • 99. 发明专利
    • Air cleaner management system and air cleaner
    • 空气净化器管理系统和空气净化器
    • JP2008082661A
    • 2008-04-10
    • JP2006265810
    • 2006-09-28
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • KANDA YUKIHIROIKARUGI HIROAKIKATO TETSUYA
    • F24F11/02
    • PROBLEM TO BE SOLVED: To provide an air cleaner management system and an air cleaner achieving an appropriate cleaning cycle and an optimum cleaning method for a dust collecting unit reused by cleaning or the like while maintaining the dust collecting function of the air cleaner. SOLUTION: The air cleaner management system has the air cleaner connected to a communication network 100, and a monitoring center 40 connected to the communication network 100 and capable of communicating with the air cleaner 3 through the communication network 100. The air cleaner 3 comprises the dust collecting unit for collecting dust existing in an installed dust collecting space; a dust collection amount detecting means for detecting data on the dust collection amount by the dust collecting unit; and a transmitting means for transmitting the data on the dust collection amount detected by the dust collection amount detecting means, to the monitoring center through the communication network. The monitoring center 40 comprises a receiving means for receiving the transmitted data on the dust collection amount in the air cleaner 3, and an output means for outputting the received data on the dust collection amount. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种空气净化器管理系统和空气净化器,其通过清洁等重复利用的灰尘收集单元,同时保持空气净化器的集尘功能,实现适当的清洁循环和最佳清洁方法 。 解决方案:空气净化器管理系统具有连接到通信网络100的空气净化器和连接到通信网络100并且能够通过通信网络100与空气滤清器3通信的监控中心40.空气净化器 3包括用于收集存在于安装的集尘空间中的灰尘的集尘单元; 灰尘收集量检测装置,用于通过灰尘收集单元检测灰尘收集量的数据; 以及发送装置,用于通过通信网络将由灰尘收集量检测装置检测到的除尘量的数据发送到监视中心。 监视中心40包括用于接收关于空气滤清器3中的灰尘收集量的传送数据的接收装置,以及用于输出接收到的关于灰尘收集量的数据的输出装置。 版权所有(C)2008,JPO&INPIT
    • 100. 发明专利
    • Support data provision system and program
    • 支持数据提供系统和程序
    • JP2008059039A
    • 2008-03-13
    • JP2006232153
    • 2006-08-29
    • Ricoh Elemex Corpリコーエレメックス株式会社
    • MIYAOKA TOSHIYUKIMIZUTA TOSHIAKI
    • G06Q10/00G06Q30/02G06Q50/00G06Q50/06
    • PROBLEM TO BE SOLVED: To provide a support data provision system that enables an operating company to provide gas dealers with support data by means of which the gas dealers present gas consumers with advice, proposals and information regarding gas consumption. SOLUTION: The support data provision system comprises centralized monitoring apparatus 5 installed at gas dealers to collect gas usage data on a plurality of gas meters 1, a data collection center apparatus 7 connected to the plurality of centralized monitoring apparatus 5 via communication lines to analyze the gas usage data, and terminal devices 2 to 4 for receiving the stored gas usage data from the gas meters 1 and sending it to the apparatus 5 or 7. The apparatus 7 has an input means for inputting and storing the gas usage data, an extraction means for analyzing the gas usage data stored for each gas meter to extract features of the usage status of each gas meter, and a generation means for generating support data for supporting the gas dealers' sales activities to gas consumers from the extracted features. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供支持数据提供系统,使运营公司能够向燃气经销商提供支持数据,通过这些数据,燃气经销商向燃气消费者提供有关天然气消费的建议,建议和信息。 解决方案:支持数据提供系统包括安装在燃气经销商处的集中监控装置5,以在多个燃气表1上收集气体使用数据,数据收集中心装置7,经由通信线路连接到多个集中监视装置5 分析气体使用数据,以及用于从燃气表1接收存储的气体使用数据并将其发送到装置5或7的终端装置2至4.装置7具有输入和存储气体使用数据的输入装置 提取装置,用于分析每个燃气表存储的气体使用数据,以提取每个燃气表的使用状态的特征;以及生成装置,用于从所提取的特征产生用于支持燃气经销商对燃气消费者的销售活动的支持数据 。 版权所有(C)2008,JPO&INPIT