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    • 1. 发明授权
    • Electronic balance
    • 电子天平
    • US06563060B2
    • 2003-05-13
    • US09864247
    • 2001-05-25
    • Akira Komoto
    • Akira Komoto
    • G01G2124
    • G01G21/244
    • By using a second Roberval mechanism having beams orthogonal to beams of a first Roberval mechanism for supporting a weighing dish by a movable pillar and integrating a movable pillar of the second Roberval mechanism with a movable pillar of the first Roberval mechanism, longitudinal and crosswise one-sided loads are shouldered by first and second Roberval mechanisms and. Furthermore, by forming flexible portions flexible for one-sided loads (right and left one-sided loads) about the axis of the first Roberval mechanism on the first Roberval mechanism, torsions due to one-sided loads in the crosswise directions are prevented and influences of the torsions can be reduced. Moreover, by forming flexible portions flexible for a longitudinal one-sided load on the second Roberval mechanism, a torsion due to the longitudinal one-sided load is prevented and influences of the torsion can be reduced.
    • 通过使用具有与第一罗泊威尔(Roberval)机构的梁正交的梁的第二罗泊威(Roberval)机构,用于通过可移动的支柱支撑称重盘,并将第二罗泊威尔(Roberval)机构的可动支柱与第一罗泊威尔(Roberval)机构的可动支柱整合, 第一和第二罗伯威尔机制肩负着双面负荷。 此外,通过在第一罗伯威尔机构上形成围绕第一罗泊威尔机构的轴线的单面载荷(左右单侧载荷)柔性的柔性部分,可以防止横向上的单面载荷引起的扭转和影响 的扭转可以减少。 此外,通过在第二罗泊威尔机构上形成柔性的用于纵向单侧载荷的挠性部分,防止由于纵向单侧载荷引起的扭转,并且可以减小扭转的影响。
    • 3. 发明授权
    • Electronic balance
    • 电子天平
    • US4666005A
    • 1987-05-19
    • US828497
    • 1986-02-11
    • Akira KomotoKunio Shimauchi
    • Akira KomotoKunio Shimauchi
    • G01G23/00G01G21/28G01G21/30G01G23/48
    • G01G21/286G01G21/30G01G23/48
    • An electronic balance devised so that the weighing pan of the balance may settle down fast to make the balance indicate a correct value of measurement quickly without being long disturbed by the air turbulence arising when the door of the weighing pan protecting chamber of the balance is opened and continuing for a while after the door has been closed. This electronic balance is provided witha heater on the base portion of the weighing pan protecting chamber so that the heater is located just below the door of the chamber. The heater generates hot air streams rising upward therefrom along the outer surface of the door. When the door is opened, the air streams play a role of an air curtain to prevent a possible air exchange between the hotter chamber warmed by the electronic circuit of the balance and the cooler surrounding atmosphere.
    • 设计了一种电子天平,使得天平的称重盘可以快速沉降,使得天平快速地显示出正确的测量值,而不会在天平的称重盘保护室的门打开时引起的空气湍流长时间不安 并在门关闭后持续一段时间。 该电子天平在称重盘保护室的基座部分设有加热器,使得加热器位于室的门的正下方。 加热器产生沿着门的外表面向上升起的热气流。 当门打开时,空气流起到气幕的作用,以防止由天平的电子电路加热的较热室与较冷的周围环境之间的可能的空气交换。
    • 4. 发明授权
    • Weighing scale with a load cell
    • 用称重传感器称重秤
    • US4577709A
    • 1986-03-25
    • US565019
    • 1983-12-22
    • Yoshihumi ShibaharaAkira Komoto
    • Yoshihumi ShibaharaAkira Komoto
    • G01G3/14G01G21/23G01G3/08G01G21/24G01L1/22
    • G01G21/23G01G3/1402
    • There is disclosed a weighing scale in which a non-Roberval type load cell is used to detect a weight to be measured. The load cell used consists of two parallel cantilevers with the free ends connected to each other through a connecting means and of four strain gauges applied to the cantilevers by sticking every two of the four strain gauges on two separate positions in the longitudinal direction of each of the cantilevers. The four strain gauges constitute a bridge circuit which outputs the weight value of a weight placed on a weighing tray connected to the two cantilevers so that the center of the tray is positioned above the center of the plane made by the two cantilevers. According to this invention the weighing errors due to an eccentric or uneven weight loading on the tray are automatically eliminated on account of the structural symmetry of the load cell used. The difficulties in manufacturing a Roberval type precision load cell have finally be put out of the way by the present invention.
    • 公开了一种称重秤,其中使用非Roberval型称重传感器来检测要测量的重量。 使用的称重传感器由两个平行的悬臂组成,其自由端通过连接装置相互连接,并通过将四个应变仪中的每两个在每个的纵向上的两个独立位置上粘贴到悬臂上来施加四个应变计 悬臂。 四个应变计构成一个桥接电路,输出重量值,该重量值放置在与两个悬臂连接的称重托盘上,使托盘的中心位于由两个悬臂制成的平面的中心之上。 根据本发明,由于所使用的称重传感器的结构对称性,由于托盘上的偏心或不均匀的重量加载而产生的称量误差被自动消除。 制造Roberval型精密称重传感器的困难终于被本发明推倒了。
    • 5. 发明授权
    • Electronic balance
    • 电子天平
    • US06307165B1
    • 2001-10-23
    • US09444415
    • 1999-11-22
    • Akira Komoto
    • Akira Komoto
    • G01G308
    • G01G3/1412
    • An electronic balance including a first Roberval's chain, a second Roberval's chain connected to the first Roberval's chain, and a detector. The first Roberval's chain includes a first fixed pillar, a plurality of first beams, and a first movable pillar supported by the first fixed pillar via the plurality of first beams. The first beams extends substantially in parallel with each other and in a first extending direction. The first movable pillar is configured to receive a load to be measured. The second Roberval's chain includes a second fixed pillar, a plurality of second beams, and a second movable pillar supported by the second fixed pillar via the plurality of second beams. The plurality of second beams extends substantially in parallel with each other and in a second extending direction substantially perpendicular to the first extending direction of the plurality of first beams. The second movable pillar is connected to the first movable pillar. The detector is configured to detect the load electrically via a movement of the first movable pillar.
    • 包括第一个Roberval链条,连接到第一个Roberval链条的第二个Roberval链条的电子天平和一个探测器。 第一罗伯威尔链包括第一固定柱,多个第一梁和通过多个第一梁由第一固定柱支撑的第一活动柱。 第一梁基本上彼此平行延伸并且沿第一延伸方向延伸。 第一可移动支柱构造成接收待测量的载荷。 第二罗伯威尔链包括第二固定柱,多个第二梁和通过多个第二梁由第二固定柱支撑的第二可动支柱。 多个第二光束基本上彼此平行地延伸,并且在大致垂直于多个第一光束的第一延伸方向的第二延伸方向上延伸。 第二活动支柱连接到第一活动支柱。 检测器被配置为经由第一可移动支柱的移动来检测负载。
    • 8. 发明授权
    • Force measuring instrument
    • 力测量仪
    • US5419204A
    • 1995-05-30
    • US217736
    • 1994-03-25
    • Toshiyuki YamaguchiAkira Komoto
    • Toshiyuki YamaguchiAkira Komoto
    • G01G7/04G01G23/37G01L1/08G01L11/00
    • G01L1/086G01L11/008
    • A force measuring instrument for determining the strength of an applied force by measuring the strength of an electromagnetic force developed so as to counterbalance the applied force, the instrument including a force coil, a displacement sensor for detecting any displacement occurring on a scale balance, an analog arithmetic unit for performing PD operation of analog detecting signals sent by the displacement sensor, a pulse converter for converting the analog signal into a signal having a frequency depending upon the magnitude of the analog signal, an up/down counter for counting up or down pulse signals from the pulse converter depending upon the polarity of the analog signal, a D/A (digital-to-analog) converter for converting the number of counts by the up/down counter into an analog signal, and wherein the sum of the output of the D/A converter and the output of the analog arithmetic unit is fed back to the force coil, thereby ensuring that the counts by the counter alone are used to determine the measurements.
    • 一种力测量仪器,用于通过测量产生的电磁力的强度来确定施加的力的强度,所述电磁力抵抗所施加的力,所述仪器包括力线圈,用于检测在刻度平衡上发生的任何位移的位移传感器, 用于对由位移传感器发送的模拟检测信号执行PD操作的模拟运算单元,用于将模拟信号转换为具有取决于模拟信号幅度的频率的信号的脉冲转换器,用于向上或向下计数的上/下计数器 取决于模拟信号的极性来自脉冲转换器的脉冲信号; D / A(数/模)转换器,用于将上/下计数器的计数数转换为模拟信号,其中, D / A转换器的输出和模拟运算器的输出被反馈到力线圈,从而确保仅使用计数器的计数 以确定测量。