会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 131. 发明公开
    • Flow counter
    • Flusszähler
    • EP2388559A1
    • 2011-11-23
    • EP11166708.5
    • 2011-05-19
    • Enplas Corporation
    • Chen, Huiqing
    • G01F1/06G01F1/075G01F1/10G01F1/115G01F15/06G01F15/075
    • G01F1/065G01F1/075G01F1/103G01F1/115G01F15/063G01F15/0755
    • A flow counter capable of correctly checking an operating state of the flow counter and leakage and correctly indicating a total amount of flow by allowing the rotation of a pointer to be learned accurately in the form of numerical data. In this flow counter (1), rotation of a flow detection driving gear (5) is transmitted to a flow indication section (4) composed of a plurality of digit wheels (4a1 to 4a8) by a main gear train section (2). The rotation of the flow detection driving gear (5) is also transmitted to a first pointer (6) by a branch gear section (3) branched from the main gear train section (2). The first pointer (6) indicates the operating state of the flow detection driving gear (5). The flow indication section (4) indicates a total amount of flow. A rotation detection member, which is a component of a rotation sensor, is integrally rotatably mounted on a rotating shaft of the first pointer (6). An amount of rotation of the rotating shaft is electrically detected by a rotation sensor.
    • 流量计,能够正确地检查流量计的运行状态和泄漏,并通过允许以数字数据的形式准确地学习指针的旋转来正确地指示总的流量。 在该流量计(1)中,流量检测用驱动齿轮(5)的旋转通过主齿轮系(2)传递到由多个数字轮(4a1〜4a8)构成的流量指示部(4)。 流量检测用驱动齿轮(5)的旋转也通过从主齿轮组(2)分支的分支齿轮部(3)传递到第一指针(6)。 第一指针(6)表示流量检测用驱动齿轮(5)的动作状态。 流量指示部(4)表示流量的总量。 作为旋转传感器的部件的旋转检测部件一体地可旋转地安装在第一指针(6)的旋转轴上。 通过旋转传感器对旋转轴的旋转量进行电检测。
    • 133. 发明公开
    • Durchflusszähler
    • EP2270438A2
    • 2011-01-05
    • EP10168304.3
    • 2010-07-02
    • QUNDIS GmbH
    • Dobeneck, WolfgangLeipold, Jörg
    • G01F1/06
    • G01F1/065G01F1/103G01F15/06
    • Die Erfindung betrifft einen Durchflusszähler mit einer optischen Erfassungseinheit (1), wobei die optische Erfassungseinheit (1) eine von dem Durchflusszähler in Abhängigkeit von einer Durchflussmenge angetriebene rotierende Scheibe (2), zumindest ein optisches Sendeelement (4) und zumindest ein optisches Empfangselement (5) umfasst, wobei eine Oberfläche (3) der rotierenden Scheibe (2) zumindest einen ebenen reflektierenden Bereich (3.1) und zumindest einen nicht reflektierenden Bereich (3.2) aufweist, wobei durch eine Signalverarbeitung eines von dem optischen Empfangselement (5) empfangenen optischen Signals eine Anzahl von Umdrehungen der rotierenden Scheibe (2) ermittelbar ist.
      Erfindungsgemäß ist das optische Sendeelement (4) in einem ersten Brennpunkt (B 11) eines ersten Reflexionselementes (RE1) angeordnet und das optische Empfangselement (5) ist in einem ersten Brennpunkt (B 12) eines zweiten Reflexionselementes (RE2) angeordnet, wobei die Reflexionselemente (RE1, RE2) asphärisch und konkav ausgebildet sind und zweite Brennpunkte (B21, B22) der Reflexionselemente (RE1, RE2) derart auf der Oberfläche (3) der rotierenden Scheibe (2) außerhalb einer Scheibenmitte (M) positioniert sind, dass ein von dem optischen Sendeelement (4) ausgesendetes und von dem reflektierenden Bereich (3.1) der Oberfläche (3) der rotierenden Scheibe (2) reflektiertes optisches Signal das optische Empfangselement (5) erreicht.
    • 仪表具有光学检测单元(1),其具有根据流量由仪表驱动的旋转盘(2)。 盘的表面(3)包括平坦的反射区域(3.1)。 光传输元件(4)布置在反射元件(RE1)的焦点(B11)中。 光接收元件(5)设置在另一个反射元件(RE2)的焦点(B12)中。 反射元件的其他焦点(B21,B22)位于盘中心(M)的外侧,使得由透射元件发送并被该区域反射的光信号到达接收元件。 光传输元件和光接收元件被设计为表面贴装器件(SMD)元件。 光传输元件被设计为红外光透射元件,并且光接收元件被设计为红外光接收元件。
    • 139. 发明公开
    • Flowmeter
    • EP1136794A3
    • 2003-04-23
    • EP01302262.9
    • 2001-03-12
    • Johnson Dwight N.Saar, David A.Smith, Wade W.Siebert, Christian
    • Johnson Dwight N.Saar, David A.Smith, Wade W.Siebert, Christian
    • G01F15/00G01F1/06
    • G01F1/06G01F1/075G01F15/063G01F15/066
    • A system for monitoring the flow of water through a pipe includes a pipe section (30) intended to be located in a water supply line. The pipe section includes a box-like frame (21) having a cylindrical central portion (51) which houses a metering device (13). The portion (51) is integral with the rear wall (28) of the box-like frame (21). A transmitting unit including a sensor (34) is contained within housing (10) which has a front vertical face (39). A "U" shaped frame (38) includes upper and lower brackets each defined by a pair of spaced vertical struts (40), projecting horizontally outwardly from the front vertical face (39), and a pair of vertical panels (25), which serve as a mounting for the sensor (34), extend outwardly from the front vertical face (39) intermediate and integral with the vertical struts. The box-like frame (21) is located between the brackets with upper and lower openings in the box-like frame (21) adjacent the upper and lower brackets. The rear wall portion (44) of the box-like frame (21) is located adjacent the "U" shaped frame. A clip (50) having an elongated band and a "U" shaped clasp (52) at either end has an inner clasp portion (53) selectively sized for insertion through a first opening in one of the brackets and into an opening in the box-like frame, simultaneously engaging a locking bar (46) and an inner surface (47) of the rear wall (28) of the box-like frame, and an outer catch portion (55) for insertion through a second opening to lockingly engage a catch surface (49) of one of the locking bars (46). The second opening is sized to inhibit access to the free end of the outer catch portion (55) when it is lockingly engaging a catch surface (49).
    • 140. 发明公开
    • Improvements to flowmeters
    • 改进的流量计
    • EP1001253A3
    • 2002-08-28
    • EP99121658
    • 1999-11-02
    • GICAR SRL
    • ARLATI GIUSEPPE
    • G01F1/06G01F15/00
    • G01F1/06G01F15/006
    • The flowmeter (10) for measuring a flow rate of a liquid, particularly a liquid used for food purposes, comprises a metal body (11) hermetically enclosing a chamber (12) coated by an insulating material, containing a rotor (13) and provided with inlet and outlet conduits (20,21,25) for the passage of a liquid through this chamber (12) so that it can operate the rotor (13). The insulating material used for coating the rotor containing chamber (12) is formed of a fluorinated polymer and means (22,23,24,26) are provided fitted in said conduits (20,21,25), adapted to prevent any contact between the liquid and the walls of said conduits (20,21,25). The insulating material is formed of a fluorinated polymer, preferably Teflon. The means (22,23,24,26) adapted to prevent the contact between the liquid and the walls of the conduits (20,21,25) are formed of tubular elements (22,23,24,26) made in stainless steel, ceramic, Teflon, etc.