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    • 34. 发明公开
    • Flat-spread force measuring device
    • Flache Kraftmessvorrichtung。
    • EP0230315A2
    • 1987-07-29
    • EP87100805.8
    • 1987-01-21
    • Pfister GmbH
    • Häfner, Hans W.
    • G01L1/00G01L1/04G01L1/02G01L1/20G01G5/06
    • G01G21/22G01G3/13G01L1/02G01L1/205
    • A flat-spread force measuring apparatus comprising a stiff rigid main body having an essentially plane top surface (111) for re­ceiving a load; a plurality of flat cavities provided (145) in said body spaced to each other and extending in parallel to said top surface; essentially bubblefree elastomeric material (142) con­tained in said cavities; a plurality of pressure sensors (114) one each arranged in contact to said elastomeric material in each of said cavities; a plurality of force introduction members one each arranged in an essentially vertical alignment to said pressure sensors and below them; and evaluation means electric­ally connected to said pressure sensors for combining electrical signals received therefrom and representing local force com­ponents transmitted from said load receiving body through said elastomeric material to said pressure sensors.
    • 一种平展力测量装置,包括刚性主体,其具有用于接收负载的基本上平面的上表面(111); 多个平坦空腔,其在所述主体中设置成彼此间隔开并平行于所述顶表面延伸; 基本上无气泡的弹性体材料(142)包含在所述空腔中; 多个压力传感器(114),每个压力传感器各自布置成与每个所述空腔中的所述弹性体材料接触; 多个力导入构件,每个力导入构件以与所述压力传感器基本上垂直对准的方式布置在其下方; 以及评估装置,电连接到所述压力传感器,用于组合从其接收的电信号,并将表示从所述负载接收体通过所述弹性材料传递到所述压力传感器的局部力分量。
    • 35. 发明公开
    • Fluidlagerung eines Kolbens einer Druckmesseinrichtung
    • 流体轴承的压力测量装置的一个活塞。
    • EP0203364A2
    • 1986-12-03
    • EP86105579.6
    • 1986-04-22
    • Pfister GmbH
    • Häfner, Hans W.
    • G01L9/00G01F23/14G01G5/06
    • G01L13/02G01F23/165G01G9/00G01G17/04G01L9/0089
    • Einrichtung zum Messen einer über ein gasförmiges Medium auf einen Kolben ausgeübten Drucks, wobei der Kolben in einen Zylinder dadurch praktisch reibungsfrei in Lagern geführt ist, daß die Lager unter Druck mit einem Fluid versorgt werden, und der Kolben auf eine Kraftmeßeinrichtung wirkt. Wird als Lagerfluid eine Flüssigkeit verwendet, dann wird in einen Zylinderraum, in dem sich das gegen den Kolben drükkende Gas befindet, austretende Lagerflüssigkeit kontrolliert abgeführt. Wird als Lagerfluid ein Gas verwendet, dann wird in einen Zylinderraum, in dem sich das gegen den Kolben drükkende Gas befindet, austretende Gas zum Druckaufbau in einer an den Zylinderraum angeschlossenen Leitung verwendet.
    • 装置,用于测量的力施加到活塞的压力的气体介质,其中,所述活塞在缸引导,并因而几乎没有轴承摩擦上,该轴承与供应加压流体,活塞作用在测力装置。 用作轴承流体是液体,然后退出存储液体排出在其中靠活塞气体drükkende位于汽缸空间控制。 用作轴承流体为气体,然后离开的气体被用来建立压力在连接到在其中靠活塞气体drükkende位于汽缸空间中的直线的圆筒空间。
    • 37. 发明公开
    • Insole pad having step-counting device
    • Einlegesohle mit Schritt-Zählvorrichtung
    • EP0916931A1
    • 1999-05-19
    • EP97309030.1
    • 1997-11-11
    • Huang, Tien-Tsai
    • Huang, Tien-Tsai
    • G01G5/06A43B3/00G01C22/00G01G19/44A61B5/103
    • G01C22/006A43B3/00A43B3/0005A43B17/026A43B17/03
    • An insole pad having a step-counting device includes an insole pad body (10), a fluid bag (20), a connecting portion (30), a pressure-sensitive sensor (45), a thermostat (50), a transmitting circuit (40), and a receiving circuit (70). The fluid bag has an outlet (25), and is filled with fluid. The connecting portion is connected to the outlet of the fluid bag. The pressure-sensitive sensor and the thermostat are disposed within the connecting portion to contact directly with the fluid to detect the variation of pressure and temperature, respectively. The detected variation of pressure and temperature can be converted into pressure and temperature signals respectively. The sensor and thermostat are connected to the transmitting circuit in which the pressure and temperature signals can be received and processed. The signals are further converted into a value that can be transmitted in an RF signal. The RF signal can be collected by a receiving circuit and is further modulated, decoded, controlled and finally displayed on a liquid crystal display.
    • 具有台阶计数装置的鞋垫垫包括内底垫体(10),流体袋(20),连接部(30),压敏传感器(45),恒温器(50),发送电路 (40)和接收电路(70)。 流体袋具有出口(25),并且填充有流体。 连接部分连接到流体袋的出口。 压敏传感器和恒温器设置在连接部分内,以直接与流体接触以分别检测压力和温度的变化。 检测到的压力和温度变化可以分别转换成压力和温度信号。 传感器和恒温器连接到可以接收和处理压力和温度信号的发送电路。 信号被进一步转换成可以在RF信号中传输的值。 RF信号可以由接收电路收集,并被进一步调制,解码,控制并最终显示在液晶显示器上。
    • 38. 发明公开
    • Improvements in weighing apparatus
    • Wiegeapparate。
    • EP0221736A2
    • 1987-05-13
    • EP86308280.6
    • 1986-10-24
    • APPLIANCE CONTROL SYSTEMS (HOLDINGS) PTY. LTD.
    • Larsen, Laurie E.
    • G01G5/04G01G5/06G01G19/413
    • G01G5/04
    • Apparatus for weighing an object comprising a weighing platform (10) which contains a flowable substance. The platform receives the object such that the flowable substance is subjected to pressure which is related to the weight of the object. The apparatus includes sensing means (11) coupled to the flowable substance and is adapted to provide a signal indicative of the pressure to which the flowable substance is subjected. A microprocessor (12) receives the signal and provides an output related to the weight of the object. A display is provided for displaying that output. The apparatus is operable in a variety of modes; for example in one mode it may be used for weighing babies.
    • 用于称重物体的设备,包括含有可流动物质的称重平台(10)。 平台接收物体,使得可流动物质受到与物体重量有关的压力。 该装置包括耦合到可流动物质的感测装置(11),并且适于提供指示可流动物质经受的压力的信号。 微处理器(12)接收信号并提供与物体的重量相关的输出。 提供了显示该输出的显示。 该装置可以各种模式操作; 例如在一种模式下,它可以用于称重婴儿。
    • 40. 发明专利
    • NO322991B1
    • 2006-12-18
    • NO20055021
    • 2005-10-27
    • IWS AS
    • KNUTSEN HANS
    • B63B85/00G01G5/06G01G20060101G01G5/00
    • The present invention relates to a system and a method for weighing a section of a structure (1). The system comprises at least one hydraulic weight sensor device (3), adapted to be placed in at least one slot (2) under the section, a pressure sensor (7) for measuring the pressure in the at least one weight sensor device (3), and a hydraulic system comprising at least one pump unit (5) and at least one valve unit (6) for pumping hydraulic fluid to and from the at least one hydraulic weight sensor device (3) through a hydraulic line (4). The system further comprises a distance sensor (10) for measuring the height of the slot (2), a control circuit device (20) for calculating the weight of the section based on measured data received from the pressure sensor (7), and for balancing the section on the basis of the measured data received from the pressure sensor (7) and the distance sensor (10) by controlling the pump unit (5) and the valve unit (6).