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    • 11. 发明申请
    • Image processing device, image processing method, and program
    • 图像处理装置,图像处理方法和程序
    • US20060132875A1
    • 2006-06-22
    • US11284355
    • 2005-11-21
    • Toru MiyamotoOsamu ShinkawaHitoshi YamakadoYu GuToru Takahashi
    • Toru MiyamotoOsamu ShinkawaHitoshi YamakadoYu GuToru Takahashi
    • H04N1/46G06F3/12
    • H04N1/4015B41J2/2128B41J2/2139
    • The invention provides an image processing device, comprising: an N-level quantization unit, where N is a natural number equal to or greater than 2, the unit converting multi-level image data into N-level image data, the multi-level image data including a plurality of pixels, each pixel having a value corresponding to one of a multi-level gradation, and the N-level image data including a size of an ideal ink dot to be formed; a memory that stores error information, the error information corresponding to a difference between an ideal ink dot and an actual ink dot, the actual ink dot being formed by an image forming device, the image forming device having a plurality of nozzles, and each of the plurality of nozzles being associated with an ideal ink dot and an actual ink dot, and being capable of ejecting M-number of ink dot sizes, where M is a natural number equal to or greater than 2 and satisfies M≧N); an error information obtaining unit that obtains from the memory error information corresponding to an identified one of the plurality of nozzles, the identified nozzle being used for image processing; a dot size determining unit that determines a size of an ink dot on the basis of the error information, the ink dot being ejected by the identified nozzle, and a size of the ink dot being determined such that a density of the ejected ink dot is approximately equal to a required density, the required density being determined by the N-level image data; and an output unit that outputs to the image forming device an instruction for causing ejection of an ink dot from the identified nozzle, the size of the ejected ink dot being determined by the dot size determining unit.
    • 本发明提供了一种图像处理装置,包括:N级量化单元,其中N是等于或大于2的自然数,单位将多级图像数据转换为N级图像数据,多级图像 包括多个像素的数据,每个像素具有对应于多级灰度之一的值,以及包括要形成的理想墨点的尺寸的N级图像数据; 存储误差信息的存储器,对应于理想墨点和实际墨点之间的差的误差信息,由图像形成装置形成的实际墨点,具有多个喷嘴的图像形成装置,以及每个 多个喷嘴与理想墨点和实际墨点相关联,并且能够喷射M个墨点尺寸,其中M是等于或大于2的自然数并满足M> = N); 错误信息获取单元,从所述存储器中获取与所识别的所述多个喷嘴中的一个相对应的错误信息,所识别的喷嘴用于图像处理; 点尺寸确定单元,其基于误差信息确定墨点的尺寸,墨点由识别的喷嘴喷射,并且墨点的尺寸被确定为使得喷射墨点的浓度为 大约等于所需密度,所需密度由N级图像数据确定; 以及输出单元,其向所述图像形成装置输出用于从所识别的喷嘴喷射墨点的指令,所述喷射墨点的尺寸由所述点尺寸确定单元确定。
    • 15. 发明授权
    • Rotation detecting device and bearing equipped with rotation detecting device
    • 旋转检测装置和轴承配有旋转检测装置
    • US09234908B2
    • 2016-01-12
    • US13378238
    • 2010-06-10
    • Kiyotake ShibataToru TakahashiTakayuki Norimatsu
    • Kiyotake ShibataToru TakahashiTakayuki Norimatsu
    • G01B7/30G01P3/487G01D5/14G01D5/245G01P3/44F16C41/00
    • G01P3/487F16C41/007G01D5/145G01D5/2451G01P3/443
    • A rotation detecting device, which is compatible regardless of whether a process control device for processing an output signal of the rotation detecting device is standard one or new one having high input signal resolving power, and, also, a rotation detecting device equipped bearing assembly having such rotation detecting device, are provided. The rotation detecting device includes an encoder provided rotatably and having a plurality of circumferentially equidistantly arranged to-be-detected poles, and a sensor for detecting the to-be-detected poles. The use is made of a multiplying unit for multiplying the phase of the to-be-detected poles from an output of the sensor. The use is also made of a pulse outputting unit for receiving an output of the multiplying unit or both the output of the multiplying unit and an output of the sensor and output pulses having two multiplying powers different from each other.
    • 无论用于处理旋转检测装置的输出信号的处理控制装置是具有高输入信号分辨能力的标准的还是新的,旋转检测装置都是兼容的,以及具有旋转检测装置的轴承组件,其具有 提供这种旋转检测装置。 旋转检测装置包括可旋转地设置并且具有多个周向等距布置的待检测磁极的编码器和用于检测待检测磁极的传感器。 使用乘法单元,用于将待检测的极点的相位与传感器的输出相乘。 还使用脉冲输出单元,用于接收乘法单元的输出或乘法单元的输出和传感器的输出以及具有彼此不同的两个乘法功率的输出脉冲。
    • 17. 发明申请
    • MAGNETIC LOAD SENSOR UNIT
    • 磁力负载传感器单元
    • US20140224038A1
    • 2014-08-14
    • US14235818
    • 2012-07-27
    • Yui MasudaMakoto YasuiToru Takahashi
    • Yui MasudaMakoto YasuiToru Takahashi
    • G01L1/12
    • G01L1/12F16D2066/005G01L1/122
    • A magnetic load sensor unit is provided which can detect a load with a minute movement of its part, and which is durable and less likely to be influenced by temperature. The sensor unit includes a flange member (1) deflectable when an axial load is applied, a support member (2) supporting the flange member (1), a magnetic target (3) which generates a magnetic field, and a magnetic sensor (4) for detecting the magnetic field generated by the magnetic target (3). The magnetic target (3) and the magnetic sensor (4) are fixed to the flange member (1) and the support member (2), respectively, such that when the flange member (1) is deflected, the magnetic target (3) and the magnetic sensor (4) move relative to each other, whereby magnitude of the load can be detected based on the magnetic field detected by the magnetic sensor (4).
    • 提供一种磁性负载传感器单元,其可以通过其部件的微小移动来检测负载,并且其耐久性并且不太可能受温度的影响。 传感器单元包括当施加轴向载荷时可偏转的凸缘构件(1),支撑凸缘构件(1)的支撑构件(2),产生磁场的磁性靶(3)和磁性传感器(4) ),用于检测由磁性靶(3)产生的磁场。 磁性靶(3)和磁性传感器(4)分别固定在凸缘部件(1)和支撑部件(2)上,使得当凸缘部件(1)偏转时,磁性靶(3) 并且磁传感器(4)相对于彼此移动,由此可以基于由磁传感器(4)检测的磁场来检测负载的大小。