SENSOR SIGNAL DETECTOR
    241.
    发明申请
    SENSOR SIGNAL DETECTOR 有权
    传感器信号检测器

    公开(公告)号:US20150369655A1

    公开(公告)日:2015-12-24

    申请号:US14740707

    申请日:2015-06-16

    CPC classification number: G01H11/08 G01B7/012 G06F3/03545 G06F3/0433 H03K5/088

    Abstract: A contact detector circuit that detects a change in a DC sensor signal based on a change in a physical amount to be detected includes: a reference signal generation circuit that generates a reference signal based on the DC sensor signal; a trigger signal output circuit that compares the DC sensor signal with the reference signal and outputs a trigger signal based on a result of the comparison; and a sampling-and-holding circuit that holds the reference signal when the trigger signal is started to be outputted and outputs the held reference signal to the trigger signal output circuit while the trigger signal is outputted. The trigger signal output circuit uses the reference signal outputted by the sampling-and-holding circuit for the comparison with the DC sensor signal while the trigger signal is outputted.

    Abstract translation: 基于待检测物理量的变化来检测DC传感器信号的变化的接触检测器电路包括:基于所述DC传感器信号生成参考信号的参考信号生成电路; 触发信号输出电路,其将所述DC传感器信号与所述参考信号进行比较,并且基于所述比较的结果输出触发信号; 以及当触发信号开始输出时保持参考信号的采样和保持电路,并且在触发信号被输出的同时将保持的参考信号输出到触发信号输出电路。 触发信号输出电路在输出触发信号的同时,使用由采样保持电路输出的参考信号与直流传感器信号进行比较。

    DIGITAL COMPARATOR
    242.
    发明申请
    DIGITAL COMPARATOR 有权
    数字比较器

    公开(公告)号:US20150328738A1

    公开(公告)日:2015-11-19

    申请号:US14700990

    申请日:2015-04-30

    Inventor: Yuji FUJIKAWA

    CPC classification number: G01B3/18 B23Q17/20 B23Q35/04 G01B21/00

    Abstract: Provided is a comparator including: a substantially U-shaped frame; an anvil supported at one end of the frame in an advanceable and retractable manner; a spindle supported at another end of the frame coaxially with the anvil in an advanceable and retractable manner; a measurement unit that measures the advancement and retraction of the anvil; and a display unit that displays a measurement result of the measurement unit. The measurement unit includes: an anvil contact portion that rotates around a support shaft in accordance with the advancement and retraction of the anvil; an interlocking portion that is formed to have a length greater than the length of the anvil contact portion, is supported so as to be rotatable around the support shaft, and is coupled to the anvil contact portion; and a detection unit that detects a displacement of rotation of the interlocking portion.

    Abstract translation: 提供了一种比较器,包括:大致U形的框架; 砧座以可推进和可伸缩的方式支撑在框架的一端; 主轴以可推进和可伸缩的方式支撑在与砧座同轴的框架的另一端; 测量砧座的前进和后退的测量单元; 以及显示测量单元的测量结果的显示单元。 测量单元包括:根据砧座的前进和后退围绕支撑轴旋转的砧座接触部分; 形成为具有大于所述砧接触部分的长度的长度的互锁部分被支撑成能够围绕所述支撑轴旋转,并且联接到所述砧座接触部分; 以及检测单元,其检测所述互锁部的旋转位移。

    COORDINATE MEASURING SYSTEM, COORDINATE MEASURING METHOD, AND PROBE
    243.
    发明申请
    COORDINATE MEASURING SYSTEM, COORDINATE MEASURING METHOD, AND PROBE 有权
    协调测量系统,坐标测量方法和探头

    公开(公告)号:US20150323308A1

    公开(公告)日:2015-11-12

    申请号:US14700514

    申请日:2015-04-30

    CPC classification number: G01B11/005 G01B5/004 G01B11/002

    Abstract: A coordinate measuring system includes a probe provided with first to ninth infrared LEDs, and an image capture apparatus and calculation controller detecting the position of the probe. The probe includes a distance obtainer acquiring distance data for a distance from the probe to the image capture apparatus; and an illumination controller controlling an illumination time of the first to ninth infrared LEDs based on the distance represented by the distance data.

    Abstract translation: 坐标测量系统包括设置有第一至第九红外LED的探针,以及检测探头位置的图像捕获装置和计算控制器。 探头包括距离获取器获取距离探头到图像捕获设备一定距离的距离数据; 以及基于由所述距离数据表示的距离来控制所述第一至第九红外LED的照明时间的照明控制器。

    DISPLAY DEVICE FOR MEASURING INSTRUMENT, MEASURING INSTRUMENT, METHOD OF ANALOGICALLY DISPLAYING MEASURED VALUE, AND PROGRAM OF ANALOGICALLY DISPLAYING MEASURED VALUE
    244.
    发明申请
    DISPLAY DEVICE FOR MEASURING INSTRUMENT, MEASURING INSTRUMENT, METHOD OF ANALOGICALLY DISPLAYING MEASURED VALUE, AND PROGRAM OF ANALOGICALLY DISPLAYING MEASURED VALUE 有权
    用于测量仪器,测量仪器的显示装置,模拟显示测量值的方法和模拟显示测量值的程序

    公开(公告)号:US20150302833A1

    公开(公告)日:2015-10-22

    申请号:US14683571

    申请日:2015-04-10

    Inventor: Hiroyuki HIDAKA

    Abstract: A display device for a measuring instrument, includes: a display screen of a graphic display module; and a processing unit for drawing on the display screen a figure changed in position or shape in response to change in measured value, the processing unit is configured to: calculate first coordinates on the display screen based on a pre-changed value of the measured value; draw at least a part of the figure on the display screen based on the first coordinate; calculate second coordinates on the display screen based on a post-changed value of the measured value; acquire as a redrawing region a region on the display screen based on the first coordinates and the second coordinates; and redraw the redrawing region based on a redrawing function for redrawing only a specified region on the display screen.

    Abstract translation: 一种用于测量仪器的显示装置,包括:图形显示模块的显示屏; 以及处理单元,用于在显示屏幕上绘制响应于测量值的变化而改变位置或形状的图形,处理单元被配置为:基于测量值的预先改变的值来计算显示屏幕上的第一坐标 ; 基于第一坐标在显示屏幕上绘制图的至少一部分; 基于测量值的改变后的值来计算显示屏幕上的第二坐标; 基于所述第一坐标和所述第二坐标,在所述显示屏幕上获取重绘区域的区域; 并根据重绘功能重绘重绘区域,仅重绘显示屏幕上的指定区域。

    INDUCTION DETECTING TYPE ROTARY ENCODER
    245.
    发明申请
    INDUCTION DETECTING TYPE ROTARY ENCODER 有权
    感应检测型旋转编码器

    公开(公告)号:US20150292910A1

    公开(公告)日:2015-10-15

    申请号:US14677228

    申请日:2015-04-02

    Inventor: Kouji Sasaki

    CPC classification number: G01D5/2046

    Abstract: An induction detecting type rotary encoder includes: a stator; a rotor disposed opposite the stator; a first transmitting coil that is provided in the stator and includes a first inner circumference coil and a first outer circumference coil; a second transmitting coil that is provided in the stator and includes a second inner circumference coil and a second outer circumference coil; first and second receiving coils provided in the stator; and first and second magnetic flux coupling bodies provided in the rotor. The closest distance between the first inner circumference coil and the second magnetic flux coupling body is shorter than that between the first outer circumference coil and the second magnetic flux coupling body. The closest distance between the second inner circumference coil and the first magnetic flux coupling body is shorter than that between the second outer circumference coil and the first magnetic flux coupling body.

    Abstract translation: 感应检测型旋转编码器包括:定子; 与定子相对设置的转子; 第一发送线圈,其设置在所述定子中,并且包括第一内周线圈和第一外周线圈; 第二发送线圈,其设置在所述定子中并且包括第二内周线圈和第二外周线圈; 设置在定子中的第一和第二接收线圈; 以及设置在转子中的第一和第二磁通量耦合体。 第一内圆周线圈和第二磁通耦合体之间的最近距离比第一外圆周线圈和第二磁通耦合体之间的距离短。 第二内圆周线圈和第一磁通耦合体之间的最近距离比第二外圆周线圈和第一磁通耦合体之间的距离短。

    Reference signal generation apparatus and reference signal generation system
    246.
    发明授权
    Reference signal generation apparatus and reference signal generation system 有权
    参考信号发生装置和参考信号发生系统

    公开(公告)号:US09157769B2

    公开(公告)日:2015-10-13

    申请号:US14270721

    申请日:2014-05-06

    Inventor: Akihide Kimura

    CPC classification number: G01D5/347 G01D5/24438 G01D5/366 G01D5/38

    Abstract: A reference point detection light-receiving unit receives light from a reference point detection pattern by first to fifth light-receiving elements. The first to fifth light-receiving elements are arranged in a first direction and outputs first to fifth signals, respectively. A reference signal generation circuit outputs a reference signal that starts at a period where a level of a signal, which is obtained by adding first and second signals, and a level of a signal, which is obtained by adding third and fourth signals, will become equal, and ends at a period where a level of a signal, which is obtained by adding the second and third signals, and a level of a signal, which is obtained by adding fourth and fifth signals, become equal.

    Abstract translation: 参考点检测光接收单元通过第一至第五光接收元件从参考点检测图案接收光。 第一至第五光接收元件分别布置在第一方向上并输出第一至第五信号。 参考信号发生电路输出参考信号,该参考信号在通过添加第一和第二信号获得的信号的电平和通过添加第三和第四信号而获得的信号电平将变为 相等,并且在通过将第二和第三信号相加获得的信号的电平和通过增加第四和第五信号获得的信号电平变得相等的时段结束。

    COORDINATE MEASURING MACHINE AND METHOD FOR CALCULATING CORRECTION MATRIX BY COORDINATE MEASURING MACHINE
    247.
    发明申请
    COORDINATE MEASURING MACHINE AND METHOD FOR CALCULATING CORRECTION MATRIX BY COORDINATE MEASURING MACHINE 有权
    坐标测量机和坐标测量机计算校正矩阵的方法

    公开(公告)号:US20150241194A1

    公开(公告)日:2015-08-27

    申请号:US14621926

    申请日:2015-02-13

    CPC classification number: G01B5/008 G01B21/042 G01B21/045

    Abstract: A first correction component calculation processing unit calculates diagonal components of a correction matrix based on first and second detection values. The first and second detection values are obtained by measurement in which a calibration reference body and the probe are moved relatively to each other in a normal direction on a surface of the calibration reference body so as to bring a measurement tip into contact with the surface of the calibration reference body at one point. A second correction component calculation processing unit calculates non-diagonal components of the correction matrix based on third and fourth detection values. The third and fourth detection values are obtained by scanning measurement using the measurement tip on the surface of the calibration reference body while maintaining a constant relative distance between the center of the measurement tip and a reference point or a reference line of the calibration reference body.

    Abstract translation: 第一校正分量计算处理单元基于第一和第二检测值来计算校正矩阵的对角分量。 第一检测值和第二检测值通过在校准基准体的表面上相对于校准基准体相对移动的测量得到,从而使测定头与表面接触 校准参考体一点。 第二校正分量计算处理单元基于第三和第四检测值来计算校正矩阵的非对角分量。 第三和第四检测值通过使用校准基准体的表面上的测量尖端扫描测量,同时保持测量尖端的中心与校准基准体的参考点或参考线之间的恒定的相对距离来获得。

    Interchangeable chromatic range sensor probe for a coordinate measuring machine
    248.
    发明授权
    Interchangeable chromatic range sensor probe for a coordinate measuring machine 有权
    用于坐标测量机的可互换色差传感器探头

    公开(公告)号:US09115982B2

    公开(公告)日:2015-08-25

    申请号:US14286913

    申请日:2014-05-23

    Abstract: An interchangeable chromatic range sensor (CRS) probe for a coordinate measuring machine (CMM). The CRS probe is capable of being automatically connected to a CMM under program control. In one embodiment, in order to make the CRS probe compatible with a standard CMM auto exchange joint, all CRS measurement light transmitting and receiving elements (e.g., the light source, wavelength detector, optical pen, etc.) are included in the CRS probe assembly. The CRS probe assembly also includes an auto exchange joint element that is attachable through a standard auto exchange joint connection to a CMM. In one embodiment, in order to provide the required signals through the limited number of connections of the standard CMM auto exchange joint (e.g., 13 pins), a low voltage differential signaling (LVDS) serializer may be utilized for providing additional control and data signals on two signal lines.

    Abstract translation: 用于坐标测量机(CMM)的可互换色差传感器(CRS)探头。 CRS探头能够在程序控制下自动连接到CMM。 在一个实施例中,为了使CRS探针与标准CMM自动交换接头兼容,所有CRS测量光发射和接收元件(例如光源,波长检测器,光笔等)都包括在CRS探针中 部件。 CRS探针组件还包括可通过与CMM的标准自动交换接头连接来连接的自动交换接头元件。 在一个实施例中,为了通过标准CMM自动交换接头(例如,13个引脚)的有限数量的连接来提供所需信号,可以使用低电压差分信号(LVDS)串行器来提供额外的控制和数据信号 在两条信号线上。

    LINEAR ENCODER
    249.
    发明申请
    LINEAR ENCODER 有权
    线性编码器

    公开(公告)号:US20150219475A1

    公开(公告)日:2015-08-06

    申请号:US14609802

    申请日:2015-01-30

    Abstract: A linear encoder includes a plate-type scale and a head which moves along the longitudinal direction of the scale. The scale has graduations formed on a surface of the scale and arranged along the longitudinal direction of the scale. The head includes a reading part which detects an amount of a relative movement of the head with respect to the scale by reading graduations formed on the scale. The head includes four bearings each having a rotation axis extending along the transverse direction of the scale. Each of the bearings is situated on the head so as to abut against a surface of the scale, to function as a spacer to maintain a distance between the scale and the head. The scale acts as a plate member interposed between the reading part and the graduations.

    Abstract translation: 线性编码器包括板式刻度尺和沿标尺的纵向方向移动的头部。 刻度具有在刻度表面上形成的刻度,并沿着刻度的纵向布置。 头部包括读取部,其通过读取刻度上形成的刻度来检测头部相对于刻度尺的相对移动量。 头部包括四个轴承,每个轴承具有沿着标尺的横向方向延伸的旋转轴线。 每个轴承位于头部上以便抵靠在刻度表面上,用作间隔件以保持刻度尺和头部之间的距离。 刻度尺作为插入在读取部分和刻度之间的板构件。

    Shape measuring machine and method of correcting shape measurement error
    250.
    发明授权
    Shape measuring machine and method of correcting shape measurement error 有权
    形状测量机和校正形状测量误差的方法

    公开(公告)号:US09097504B2

    公开(公告)日:2015-08-04

    申请号:US14066804

    申请日:2013-10-30

    CPC classification number: G01B5/008 G01B21/045

    Abstract: A shape measuring machine includes a slider that supports a scanning probe including a tip sphere. A scale unit detects a displacement of the slider. A tip sphere displacement detection unit detects a displacement of the tip sphere. A calculation unit includes a correction filter and an adder, and calculates a measurement value from the displacements of the slider and the tip sphere. The correction filter outputs a correction value that is obtained by correcting the displacement of the tip sphere detected by the tip sphere displacement detection unit based on an inverse characteristic of a frequency transfer characteristic from the scale unit to the tip sphere. The adder calculates the measurement value by adding the displacement of the slider detected by the scale unit and the correction value.

    Abstract translation: 一种形状测量机包括支撑包括尖端球体的扫描探针的滑块。 刻度单元检测滑块的位移。 尖端球体位移检测单元检测尖端球体的位移。 计算单元包括校正滤波器和加法器,并且根据滑块和尖端球体的位移来计算测量值。 校正滤波器输出校正值,其通过基于从刻度单元到尖端球体的频率传递特性的反特性来校正由尖端球体位移检测单元检测到的尖端球的位移而获得。 加法器通过将由比例单元检测到的滑块的位移和校正值相加来计算测量值。

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