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    • 1. 发明授权
    • Multi-point cell type weighing machines
    • 多点电池式称重机
    • US6013879A
    • 2000-01-11
    • US923060
    • 1997-09-03
    • Yoshihiro NakamuraYukio WakasaKazufumi Naito
    • Yoshihiro NakamuraYukio WakasaKazufumi Naito
    • G01G23/01G01G3/14G01G11/00G01G23/10G01G19/22G01G19/00G01G21/10
    • G01G23/10G01G3/1414
    • A multi-point cell type weighing machine has a plural number of scale cells set on a floor to support a table and to output weight signals indicative of weights measured thereby of a target object placed on the table. One or more floor vibration detecting cells are set on the same floor and output floor vibration detection signals indicative of the vibrations of the floor. The weight signals are corrected on the basis of vibration components of the floor vibration detection signals. A standard weight is placed at a larger plural number of places on the table than there are scale cells and output sensitivity ratios among the scale cells are calculated from outputted values from the scale cells, and the weight signals are further corrected on the basis of the output sensitivity ratios. These weight signals are added together and the weight of the target object is obtained from the added signal. A plurality of floor vibration detecting cells may be set on the floor, each near different one of the scale cells, or they may be set anywhere on the floor and a mode of floor vibrations may calculated from their outputs. A single floor vibration detecting cell may be set between the scale cells. The table is supported by the scale cells through elastic pieces such that only vertical forces are communicated to the scale cells.
    • 多点电池型称量机具有设置在地面上的多个电池型称重机,以支撑桌子并输出表示由放置在桌子上的目标物体所测量的重量的重量信号。 一个或多个地板振动检测单元设置在相同的楼层上,并且输出表示地板振动的楼层振动检测信号。 基于地板振动检测信号的振动分量校正重量信号。 标准重量放置在桌子上的数量比在比例单元上的多个位置,并且按比例单元的输出值计算尺度单元之间的输出灵敏​​度比,并且基于 输出灵敏度比。 这些加权信号被加在一起,并且从所添加的信号中获得目标对象的权重。 多个楼层振动检测单元可以设置在地板上,每个靠近不同的一个秤单元,或者它们可以设置在地板的任何地方,并且可以根据它们的输出计算地板振动的模式。 可以在秤单元之间设置单层振动检测单元。 该表由秤单元通过弹性件支撑,使得只有垂直的力传递到秤单元。
    • 3. 发明授权
    • Weighing apparatus
    • 称重设备
    • US5515737A
    • 1996-05-14
    • US436496
    • 1995-05-08
    • Kenji ImaiKazufumi Naito
    • Kenji ImaiKazufumi Naito
    • G01G3/14G01B7/16G01G3/18G01G23/37G01L1/22
    • G01G23/3707G01G3/18
    • To facilitate the adjustment of the accuracy and servicing maintenance of the electronic weighing apparatus, the weighing apparatus comprises a load cell and a signal processing circuit for processing a load signal from the load cell to provide a weight signal indicative of the load. The load cell includes a strain inducing element capable of producing strains in proportion to the load imposed thereon, and a bridge circuit, having a pair of strain gauges fixed on the stain inducing element and a plurality of resistors. A load signal is taken from a junction between the strain gauges and reference voltage signals are taken from junctions between the resistors. The load signal and the reference voltage signals are supplied to the signal processing circuit. If each of the strain gauges is employed in the form of a temperature compensating resistor having a characteristic effective to compensate for both of the temperature coefficient of thermal expansion of the strain inducing element and the temperature coefficient of the Young's modulus, the number of necessary component parts can be reduced.
    • 为了便于电子称重装置的精度和维修维护的调整,称重装置包括负载传感器和信号处理电路,用于处理来自称重传感器的负载信号,以提供指示负载的加权信号。 负载传感器包括能够产生与施加在其上的负载成比例的应变诱发元件,以及桥接电​​路,其具有固定在污染诱导元件上的一对应变计和多个电阻器。 负载信号取自应变计之间的接点,参考电压信号取自电阻之间的结。 负载信号和参考电压信号被提供给信号处理电路。 如果每个应变计采用温度补偿电阻器的形式,其具有有效补偿应变诱发元件的温度系数和杨氏模量的温度系数的特性,必要部件的数量 零件可以减少。
    • 5. 发明授权
    • Span adjusting system of electronic weighing apparatus
    • 电子称重装置跨距调整系统
    • US4545445A
    • 1985-10-08
    • US628305
    • 1984-07-06
    • Kazufumi Naito
    • Kazufumi Naito
    • G01G23/01G01G23/37G01G23/22G01G19/52G01G23/14G01L25/00
    • G01G23/015G01G23/012G01G23/3707
    • There is provided a system for adjusting the span of an electronic scale having a double-integrating A/D converter for converting a weight signal into a digital signal. The double-integrating A/D converter has a software-implemented timer for controlling a primary integrating time. The operation time of the software-implemented timer is adjusted linearly or in steps so that a digital value at the time a weight is placed on the scalepan of the scale will correspond to the weight. The adjustment of the operation time of the software-implemented timer is utilized to adjust the differences between gravitational accelerations corresponding to different weights in geographical areas on the earth.
    • 提供了一种用于调整具有用于将加权信号转换为数字信号的双积分A / D转换器的电子秤的跨度的系统。 双积分A / D转换器具有软件实现的定时器,用于控制初级积分时间。 软件实现的定时器的操作时间线性地或逐步地调整,使得在刻度的刻度上放置一个权重时的数字值将对应于重量。 利用软件实现的定时器的操作时间的调整来调整地球上地理区域中与不同权重相对应的重力加速度之间的差异。
    • 6. 发明申请
    • COMPONENT FORCE DAMPING DEVICE AND PLATFORM SCALE USING SAME
    • 组件式阻尼装置和平台规模使用相同
    • US20120085586A1
    • 2012-04-12
    • US13376324
    • 2010-06-23
    • Kazufumi NaitoHiroshi Suzawa
    • Kazufumi NaitoHiroshi Suzawa
    • G01G23/06
    • G01G3/16G01G21/06G01G21/184G01G21/23G01G21/242
    • The present invention is to provide a platform scale including a plurality of component force damping devices assembled therein for making high precision weighing. The platform scale for weighing an object to be weighed by supporting a support member that supports the object to be weighed by a plurality of load detection units 301,302 includes at least four component force damping devices 321˜324, each comprising an arrangement of a plurality of needle bearings disposed in parallel and a pair of opposed plates for sandwiching the arrangement of the needle bearings 63 so that the pair of plates make a relative movement in a direction of the arrangement of the needle bearings. The four component force damping devices 321˜324 are in contact with the support member at four locations that form a rectangle. Directions of the relative movement of any two component force damping devices locating at the same side of the rectangle are different, while directions of the relative movement of any two component force damping devices at diagonal locations of the rectangle are identical. Even in case of bending of the support member in any direction, the component force damping devices are able to release the horizontal component force due to such bending.
    • 本发明提供一种平台秤,其包括组装在其中的多个分力抑制装置,用于进行高精度称重。 通过支撑由多个负载检测单元301,302支撑被测量物体的支撑构件来称重待称重物体的平台秤包括至少四个分力阻尼装置321〜324,每个包括多个 平行布置的滚针轴承和用于夹持滚针轴承63的布置的一对相对的板,使得该对板在滚针轴承的布置方向上进行相对运动。 四组分力阻尼装置321〜324在形成矩形的四个位置处与支撑构件接触。 定位在矩形同一侧的任何两个分量的力阻尼装置的相对运动的方向是不同的,而矩形对角线位置处的任何两个分力的阻尼装置的相对运动的方向相同。 即使在支撑构件沿任何方向弯曲的情况下,组件力阻尼装置也能够由于这种弯曲而释放水平分力。
    • 8. 发明授权
    • Load cell
    • 称重传感器
    • US5756943A
    • 1998-05-26
    • US657767
    • 1996-05-31
    • Kazufumi NaitoMichito UtsunomiyaHiroyuki KonishiShotaro Tamai
    • Kazufumi NaitoMichito UtsunomiyaHiroyuki KonishiShotaro Tamai
    • G01G3/14G01L1/22G01G3/08
    • G01L1/2243G01G3/1412
    • A load cell for use in detecting a load imposed thereon which includes a body (30) in which strain is induced in proportion to the imposed load, and a strain sensor (40) for detecting the strain induced in the body (30). The body (30) is a plate member having a longitudinal axis (X) and the strain sensor (40) is mounted on the body (30). The body (30) has an opening (31) defined therein at a location intermediate of the length of the body (30) so as to define a fixed rigid body forming region (70) at one end thereof, a movable rigid body forming region (71) at the opposite end thereof opposite to the fixed rigid body forming region (70) in the longitudinal direction (X), and side connecting strips (30b, 30b) spaced by the opening (31) from each other in a widthwise direction (Y) of the opening (31) and connecting the fixed rigid body forming region (70) and the movable rigid body forming region (71) together. The strain sensor (40) has opposite ends (41c) spaced in the longitudinal direction (X) and mounted on the body (30) with its opposite ends (41c) fixed to the fixed rigid body forming region (70) and the movable rigid body forming region (71).
    • 一种用于检测施加在其上的负载的测力传感器,其包括与所施加的负载成比例地引起应变的体(30);以及用于检测在体(30)中诱发的应变的应变传感器(40)。 主体(30)是具有纵向轴线(X)的板件,并且应变传感器(40)安装在主体(30)上。 主体(30)在其主体(30)的长度的中间位置处具有限定在其中的开口(31),以便在其一端限定固定的刚体形成区域(70),可移动刚体形成区域 (70)的与所述固定的刚性体形成区域(70)的长度方向(X)相反的另一端的宽度方向(71)和由所述开口(31)在宽度方向上彼此隔开的侧连接条(30b,30b) (31)的开口(Y)并将固定的刚体形成区域(70)和可动刚体形成区域(71)连接在一起。 应变传感器(40)具有在纵向方向(X)上间隔开并安装在主体(30)上的相对端(41c),其相对端(41c)固定在固定的刚体形成区域(70)上, 身体形成区域(71)。
    • 9. 发明授权
    • Accurate and responsive weighing apparatus with drift compensation
    • 具有漂移补偿精度和响应的称重装置
    • US5656800A
    • 1997-08-12
    • US719032
    • 1996-09-24
    • Kazufumi NaitoKouji Itoh
    • Kazufumi NaitoKouji Itoh
    • G01G23/37G01G19/22G01G13/00
    • G01G23/3714
    • In order to increase both the weighing accuracy and the weighing speed of a weighing apparatus, a delta.multidot.sigma analog-to-digital converter (4) having a cut-off frequency higher than that of an analog filter (3) is connected with the output of the analog filter (3). Also, in order to perform a quick drift correction of an amplifier (2), the analog filter (3) is selectively switchable so as to perform a filtering function during a weighing mode and to perform a buffering function during a correction mode correcting means (52) is provided for storing the digital signal from the delta.multidot.sigma analog-to-digital converter (4) as a drift signal (df) during the correction mode and for providing a corrected digital weight signal (d2) by subtracting the drift signal (dr) from the digital weight signal (d1) obtained from the delta.multidot.sigma-type analog-to-digital converter (4) during the weighing mode.
    • 为了增加称重装置的称重精度和称重速度,具有比模拟滤波器(3)的截止频率更高的截止频率的三角洲模数转换器(4)与 模拟滤波器(3)。 此外,为了进行放大器(2)的快速漂移校正,可以选择性地切换模拟滤波器(3),以便在称重模式期间执行滤波功能,并且在校正模式校正装置期间执行缓冲功能 52)被提供用于在校正模式期间将来自三角洲模数转换器(4)的数字信号作为漂移信号(df)存储,并通过减去漂移信号(dr)来提供校正的数字加权信号(d2) )从称重模式期间从三角型模数转换器(4)获得的数字加权信号(d1)。
    • 10. 发明授权
    • Multiple input signal high-speed analog-digital converter circuit
    • 多路输入信号高速模数转换电路
    • US4677422A
    • 1987-06-30
    • US679999
    • 1984-12-10
    • Kazufumi Naito
    • Kazufumi Naito
    • H03M1/12H03M1/00
    • H03M1/1215
    • A multiple input signal high-speed analog-digital converter circuit for digitizing, by means of an A/D converter, an output signal from a multiplexer which successively delivers multiple input signals applied thereto. Two sample/hold circuits which receive the output signal from the multiplexer repeatedly sample and hold the signal, and a changeover switch keeps one of the sample/hold circuits on hold while the other sample/hold circuit samples the output signal from the multiplexer. While one of the sample/hold circuits is holding the signal, the other sample/hold circuit is sampling another signal so that the A/D conversion time of multiple input signals is capable of being reduced by the sampling time.
    • 一种用于通过A / D转换器数字化来自多路复用器的输出信号的多输入信号高速模拟 - 数字转换器电路,其连续递送施加到其上的多个输入信号。 接收来自多路复用器的输出信号的两个采样/保持电路反复采样和保持信号,而转换开关将采样/保持电路中的一个保持在保持状态,而另一个采样/保持电路从多路复用器采样输出信号。 当其中一个采样/保持电路保持信号时,另一个采样/保持电路对另一个信号进行采样,使得多个输入信号的A / D转换时间能够减少采样时间。