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    • 75. 发明授权
    • Magnetic field sensor device
    • 磁场传感器装置
    • US08610429B2
    • 2013-12-17
    • US12999272
    • 2009-06-08
    • Yasuhiko NagasakiToshifumi MatsuokaAkira SaitoKoichi Okuzumi
    • Yasuhiko NagasakiToshifumi MatsuokaAkira SaitoKoichi Okuzumi
    • G01R33/02G01R33/12G01N27/72
    • G01R33/063G01R33/18
    • A magnetic field sensor device 1 includes a sensor section 100 that includes a magneto-impedance device 110 having a magnetic amorphous structure, and rod-shaped core sections 130 and 131 that guide a magnetic field to the magnetic amorphous structure in a longitudinal direction with respect to the magnetic amorphous structure. The core sections 130 and 131 may be provided on either side of the magnetic amorphous structure in the longitudinal direction. The core sections 130 and 131 may be disposed so that the longitudinal direction of the magnetic amorphous structure coincides with the longitudinal direction of the core sections 130 and 131. The magnetic field sensor device 1 may include environmental magnetic field cancellation means 140 and 141 that generate a correction magnetic field that cancels the environmental magnetic field input to the magnetic amorphous structure.
    • 磁场传感器装置1包括传感器部分100,该传感器部分100包括具有磁性无定形结构的磁阻抗装置110和杆状磁芯部分130和131,其相对于纵向引导磁性非晶结构 到磁性无定形结构。 芯部130和131可以在纵向方向上设置在磁性无定形结构的两侧。 芯部130和131可以被布置成使得非晶磁性结构的纵向方向与芯部分130和131的纵向方向一致。磁场传感器装置1可以包括环境磁场消除装置140和141,其产生 校正磁场,其抵消输入到磁性无定形结构的环境磁场。
    • 77. 发明授权
    • Image processing circuit, display device, and printing device
    • 图像处理电路,显示装置和打印装置
    • US08326083B2
    • 2012-12-04
    • US12222422
    • 2008-08-08
    • Yoshiyuki OnoTakashi SawasakiAkira Saito
    • Yoshiyuki OnoTakashi SawasakiAkira Saito
    • G06K9/36
    • G09G5/37G06F3/13G06F3/14G06T11/203G06T11/40G09G5/024G09G5/24G09G5/30G09G5/363G09G5/393
    • An image processing circuit includes: a memory that stores the location and pixel values that compose graphical images; a calculation unit that calculates the difference between a target location to which the graphical images is aligned in binary image data and an initial location designated in the graphical images; an output unit that outputs pixel values at locations distanced from the locations of the pixel values by an amount equivalent to the calculated difference; a first multiplier that multiplies the output pixel value with the pixel value included in the binary image data; an inverter that inverts the pixel value in the binary image data; a second multiplier that multiplies the pixel values in the binary image data or the pixel values included in background image data with the inverted pixel values; and an adder that adds the result of the multiplications performed by the first and second multipliers.
    • 图像处理电路包括:存储构成图形图像的位置和像素值的存储器; 计算单元,其计算图形图像在二值图像数据中对准的目标位置与图形图像中指定的初始位置之间的差; 输出单元,其在与像素值的位置相距的位置处输出与计算出的差相当的量的像素值; 将输出像素值与包含在二值图像数据中的像素值相乘的第一乘法器; 反转二值图像数据中的像素值的反相器; 第二乘法器,将二值图像数据中的像素值或背景图像数据中包含的像素值与反相像素值相乘; 以及加法器,其将由第一和第二乘法器执行的乘法的结果相加。
    • 78. 发明授权
    • Method for creating profile data used to process non-circular workpiece
    • 创建用于处理非圆形工件的轮廓数据的方法
    • US08265783B2
    • 2012-09-11
    • US12471943
    • 2009-05-26
    • Akira Saito
    • Akira Saito
    • G06F19/00
    • G05B19/40937G05B19/184G05B2219/45218G05B2219/50053
    • Lift data in which a lift amount is set based on a lift data rotation angle is read to identify the shape of a non-circular workpiece, and a profile point group that is formed of a plurality of profile points, each of which indicates a tool reciprocation position that corresponds to a spindle rotation angle, is calculated based on the read lift data. Then, the calculated profile point group is divided into a plurality of groups each of which is formed of the profile points that satisfy a group division condition, the two groups that satisfy a group comparison condition are selected, and the profile point that satisfies a specific point deletion condition that is set in advance for the combination of the selected two groups is deleted.
    • 读取基于提升数据旋转角度设定提升量的提升数据,以识别非圆形工件的形状,以及由多个轮廓点形成的轮廓点组,每个轮廓点表示工具 基于读取升程数据计算与主轴旋转角度对应的往复运动位置。 然后,将计算出的轮廓点组划分为多个组,每组由满足组分条件的轮廓点形成,选择满足组比较条件的两组,并且满足特定的轮廓点 针对所选择的两组的组合预先设置的点删除条件被删除。
    • 79. 发明授权
    • Miniature switch
    • 微型开关
    • US08207463B2
    • 2012-06-26
    • US12510757
    • 2009-07-28
    • Akira Saito
    • Akira Saito
    • H01H13/00H01H3/00
    • H01H23/06H01H9/181H01H23/025H01H23/145H01H23/30H01H2219/037
    • A miniature switch with a switch operating unit having a swinging motion about a fulcrum on the side opposing the pressed side, instead of a spindle in the switch operating unit. The miniature switch includes: a switch operating unit composed of a holder 9 and an operational button 2 fixed to the holder 9; and a switch mechanism unit composed of a printed circuit board 6, a connector 5, and switch elements 7 arranged in a case 4, and coil springs 8 which engage between the switch elements 7 and the holder 9, wherein the switch operating unit and the switch mechanism unit are coupled to each other by a first packing 10 made of a resilient material, and the switch mechanism unit and the switch operating unit are disposed in a housing 1.
    • 一种具有开关操作单元的微型开关,其在相对于按压侧的一侧具有围绕支点的摆动运动,而不是开关操作单元中的主轴。 微型开关包括:开关操作单元,其由保持器9和固定到保持器9的操作按钮2组成; 以及由印刷电路板6,连接器5和布置在壳体4中的开关元件7组成的开关机构单元,以及接合在开关元件7和保持器9之间的螺旋弹簧8,其中开关操作单元和 开关机构单元通过由弹性材料制成的第一填料10彼此连接,并且开关机构单元和开关操作单元设置在壳体1中。
    • 80. 发明授权
    • Module for detecting poorly differentiated cancers and pathological image diagnosis support apparatus, program and recording medium including the same
    • 用于检测分化不良的癌症和病理图像诊断支持装置,程序和记录介质的模块
    • US08199998B2
    • 2012-06-12
    • US12265292
    • 2008-11-05
    • Kenji OkajimaYoshiko YamashitaAkira Saito
    • Kenji OkajimaYoshiko YamashitaAkira Saito
    • G06K9/00
    • G06K9/00127
    • The detection accuracy of poorly differentiated cancers in adenocarcinoma is improved by restricting false detection. Cell nucleus detection means 1 receives a digitized pathological image as an input and extracts the region of a cell nucleus therefrom. Gland duct detection means 2 detects a gland duct structure in the image. Poorly differentiated cancer detection means 4 detects poorly differentiated cancers only in the region other than the gland duct region. False detection rejection means 7 compares the detection density of poorly differentiated cancer in the vicinity of a detection point with a threshold that is predetermined depending on gland duct density in the vicinity of the detection point, at each detection point detected by poorly differentiated cancer detection means 4 and rejects the detection point as a false detection if the detection density of a poorly differentiated cancer is smaller than the threshold.
    • 通过限制假检测可以提高腺癌分化不良的癌症的检测准确性。 细胞核检测装置1接收数字化的病理图像作为输入,并从中提取细胞核的区域。 腺体管检测装置2检测图像中的腺体管结构。 分化不良的癌症检测手段4仅在腺体管区域以外的区域检测分化不良的癌症。 假检测抑制装置7将检测点附近的分化不良的癌症的检测密度与根据检测点附近的腺体密度预先确定的阈值,在低分辨率癌症检测手段检测的各检测点进行比较 4,如果分化不良的癌症的检测密度小于阈值,则将检测点拒绝为假检测。