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    • 23. 发明申请
    • Printer apparatus, control method and control program therefor, and computer-readable storage medium containing the control program
    • 打印机装置,控制方法及其控制程序以及包含控制程序的计算机可读存储介质
    • US20060017972A1
    • 2006-01-26
    • US11235251
    • 2005-09-27
    • Kazuya Sakamoto
    • Kazuya Sakamoto
    • G06F3/12
    • G06K15/02
    • A printer apparatus terminates printing and discharges paper when an interface is disconnected during a printing process, whereby the next print data is received and is appropriately printed. In particular, when a printer apparatus that selectively uses a plurality of interfaces to receive print data from one of plurality of host units so that the print data can be printed by a single printing mechanism has an error such as interface disconnection during a process for printing print data received via the selected interface, the printer apparatus terminates the printing and discharges paper, whereby when print data is received via another interface and is printed, the printing can be smoothly performed without requiring the user to perform any operation.
    • 打印机装置在打印处理期间当接口断开时终止打印和排出纸张,从而接收下一个打印数据并被适当地打印。 特别地,当选择性地使用多个接口从多个主机单元之一接收打印数据以使得打印数据可以由单个打印机构打印的打印机设备在打印处理期间具有诸如接口断开之类的错误 经由所选择的接口接收的打印数据,打印机装置终止打印和排出纸张,由此当通过另一个接口接收打印数据并打印时,可以平滑地执行打印,而不需要用户执行任何操作。
    • 24. 发明授权
    • Phase difference detection device and method for a position detector
    • 相位差检测装置及位置检测器的方法
    • US06885310B2
    • 2005-04-26
    • US10379269
    • 2003-03-03
    • Atsutoshi GotoYasuhiro YuasaShuichi TanakaNobuyuki AkatsuKazuya SakamotoHiroshi SakamotoAkio Yamamoto
    • Atsutoshi GotoYasuhiro YuasaShuichi TanakaNobuyuki AkatsuKazuya SakamotoHiroshi SakamotoAkio Yamamoto
    • G01B7/02G01D5/22H02H1/00H04L12/28H04L12/56H04L29/06G08C19/12G08C19/06
    • G01B7/02G01D5/2216H02H1/0061H04L12/5692H04L69/08
    • Two A.C. output signals amplitude-modulated in accordance with two function values (sine and cosine) differing from each other in correspondence to a position-to-be-detected are received from a position sensor such as a resolver. By performing an addition or subtraction between a signal derived by shifting the electric phase of one of the received A.C. output signals by a predetermined angle, and the other received signal, two electric A.C. signals (sin(ωt±d+θ), sin((ωt±d−θ)) are electrically synthesized which have electric phase angles (θ) corresponding to the position-to-be-detected and are phase-shifted in opposite directions. “±d” here represents phase variation error caused by factors, other than the position-to-be-detected, such as temperature change. In the synthesized two signals, the phase variation errors (±d) appear in the same direction, while the phase differences (θ) corresponding to the position are shifted in opposite, positive and negative, directions. Thus, by measuring the respective phase shift amounts (±d+θ, ±d−θ) and performing appropriate operation, it is allowed to cancel out or extract the error (±d) so that an accurate phase difference (θ) can be detected. Position detection data indicative of the detected phase difference (θ) is converted into a pulse-width-modulated signal and transmitted in the pulse-width-modulated form.
    • 从诸如旋转变压器的位置传感器接收根据与待检测位置彼此不同的两个功能值(正弦和余弦)进行幅度调制的两个交流输出信号。 通过在所接收的AC输出信号之一的电相位移动预定角度而得到的信号与另一个接收信号之间进行加法或减法,将两个电交流信号(sin(ωg±d + theta),sin( (omega±d-θ))电气合成,其具有与待检测位置相对应的电相角(t​​heta),并且在相反方向上相移。“±d”表示由因子引起的相位变化误差 在合成的两个信号中,相位变化误差(±d)出现在相同的方向,而与位置对应的相位差(theta)偏移 因此,通过测量各自的相移量(±d +θ,±d-θ)并执行适当的操作,允许其抵消或提取误差(±d),使得 精确的相位差(theta)可以 被检测。 指示检测到的相位差(θ)的位置检测数据被转换成脉冲宽度调制信号,并以脉冲宽度调制形式发送。
    • 28. 发明授权
    • Induction-type linear position detector device
    • 感应式线性位置检测装置
    • US6034624A
    • 2000-03-07
    • US818974
    • 1997-03-14
    • Atsutoshi GotoYasuhiro YuasaShuichi TanakaNobuyuki AkatsuKazuya SakamotoHiroshi SakamotoAkio Yamamoto
    • Atsutoshi GotoYasuhiro YuasaShuichi TanakaNobuyuki AkatsuKazuya SakamotoHiroshi SakamotoAkio Yamamoto
    • G01B7/02G01D5/22G08C19/06
    • G01B7/02G01D5/2216
    • A winding section includes a primary winding to be excited by a single-phase A.C. signal, and a plurality of secondary windings provided at different locations with respect to a predetermined direction of linear movement. A variable magnetic coupling section includes a plurality of magnetic response members provided in repetition at a predetermined pitch along the direction of linear movement, and allows inductive A.C. output signals, amplitude-modulated in accordance with a varying linear position of an object of detection, to be produced in the individual secondary windings with amplitude function characteristics differing depending on positional differences between the secondary windings. Each of the inductive A.C. output signals produced in the secondary windings varies in its amplitude function in periodic cycles each corresponding to the pitch length of the magnetic response members. The variable magnetic coupling section may include a core section made of a wire, and the magnetic response members in the form of metal pieces provided at the predetermined pitch and secured by caulking to the core section.
    • 绕组部分包括由单相交流信号激励的初级绕组,以及设置在相对于线性运动的预定方向的不同位置处的多个次级绕组。 可变磁耦合部分包括沿着线性运动方向以预定间距重复设置的多个磁响应部件,并且允许根据检测对象的变化线性位置进行幅度调制的感应AC输出信号 在具有根据次级绕组之间的位置差异的幅度函数特性的各个次级绕组中产生。 在次级绕组中产生的每个电感式交流输出信号在其振幅函数中以每个对应于磁响应构件的音调长度的周期周期变化。 可变磁耦合部分可以包括由导线制成的芯部分和以预定间距设置的金属片形式的磁响应部件,并且通过铆接固定到芯部。
    • 29. 发明授权
    • Phase difference detection device for an inductive position detector
    • 用于感应位置检测器的相位差检测装置
    • US5710509A
    • 1998-01-20
    • US550358
    • 1995-10-30
    • Atsutoshi GotoYasuhiro YuasaShuiti TanakaNobuyuki AkatsuKazuya SakamotoHiroshi SakamotoAkio Yamamoto
    • Atsutoshi GotoYasuhiro YuasaShuiti TanakaNobuyuki AkatsuKazuya SakamotoHiroshi SakamotoAkio Yamamoto
    • G01B7/00G01B7/30G01D5/20G01D5/245H03M1/64G01D5/243
    • G01D5/2073H03M1/645
    • Two A.C. output signals amplitude-modulated in accordance with two function values (sine and cosine) differing from each other in correspondence to a position-to-be-detected are received from a position sensor such as a resolver. By performing an addition or subtraction between a signal derived by shifting the electric phase of one of the received A.C. output signals by a predetermined angle, and the other received signal, two electric A.C. signals (sin(.omega.t .+-.d.+-..theta.), sin(.omega.t.+-.d-.theta.)) are electrically synthesized which have electric phase angles (.theta.) corresponding to the position-to-be-detected and are phase-shifted in opposite directions. ".+-.d" here represents phase variation error caused by factors, other than the position-to-be-detected, such as temperature change. In the synthesized two signals, the phase variation errors (.+-.d) appear in the same direction, while the phase differences (.theta.) corresponding to the position are shifted in opposite, positive and negative, directions. Thus, by measuring the respective phase shift amounts (.+-.d.+-..theta., .+-.d-.theta.) and performing appropriate operation, it is allowed to cancel out or extract the error (.+-.d) so that an accurate phase difference (.theta.) can be detected.
    • 从诸如解析器的位置传感器接收根据与要检测的位置相对应的彼此不同的两个功能值(正弦和余弦)进行幅度调制的两个交流输出信号。 通过在通过将接收的AC输出信号之一的电相位移位预定角度而得到的信号与另一个接收信号之间执行加法或减法,则两个电AC信号(sin(ω+Δ+/- d +/- theta ),sin(ω-t +/-dθ))被电合成,其具有对应于要被检测的位置的电相角(θ)并且在相反方向上相移。 这里的“+/- d”表示除了要检测的位置之外的因素(如温度变化)引起的相位变化误差。 在合成的两个信号中,相位变化误差(+/- d)出现在相同的方向,而与位置对应的相位差(θ)在相反的正负方向上移动。 因此,通过测量各自的相移量(+/- d +/-θ,+/-dθ)并执行适当的操作,允许其抵消或提取误差(+/- d),使得准确 可以检测相位差(theta)。
    • 30. 发明授权
    • Position detecting and time measuring device providing measurement finer
than a clock signal period
    • 位置检测和时间测量装置提供比时钟信号周期更精细的测量
    • US5382899A
    • 1995-01-17
    • US978782
    • 1992-11-19
    • Mitsuhiro FunatsuKazuya Sakamoto
    • Mitsuhiro FunatsuKazuya Sakamoto
    • G01B7/00G01B7/30G01B21/00G01B21/22G01D5/243G01D5/244G01D5/245G01B7/14G08C19/06
    • G01D5/24404
    • First absolute position detecting section generates an A.C. output signal having a phase electrically shifted in accordance with a position of a moving object, and samples a counted value of a counter circuit in response to an electrical phase change at a zero cross time point of the A.C. output signal, so as to output the sampled counted value of the counter circuit as absolute position data of the moving object. Second absolute position detecting section generates one or more delayed clock signals that are delayed from a clock signal on the basis of which the counter circuit counts up by an amount of time smaller than one period of the clock signal, and utilizes the one or more delayed clock signals to measure the zero cross time point of the A.C. output signal in accordance with a unit time smaller than the one period of the clock signal, so as to output, as the absolute position data, the measured time point after having been added to the sampled counted value.
    • 第一绝对位置检测部分根据移动物体的位置产生具有电位偏移的交流输出信号,并且响应于交流电流的零交叉点处的电相位变化对计数器电路的计数值进行采样 输出信号,以输出计数器电路的采样计数值作为移动对象的绝对位置数据。 第二绝对位置检测部分产生从时钟信号延迟的一个或多个延迟时钟信号,其中计数器电路基于该延迟时钟信号递增小于时钟信号的一个周期的时间量,并利用一个或多个延迟 时钟信号,以根据小于时钟信号的一个周期的单位时间来测量AC输出信号的零交叉时间点,以便输出作为绝对位置数据的已被添加到的测量时间点 采样计数值。