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    • 2. 发明申请
    • TWO-DIMENSIONAL CODE READING DEVICE, TWO-DIMENSIONAL CODE READING METHOD, METHOD OF CONTROLLING MANUFACTURING HISTORY INFORMATION OF MEMBER HAVING SUBSTANTIALLY CIRCULAR SECTION ORTHOGONAL TO THE CENTRAL AXIS THEREOF, AND METHOD OF MANUFACTURING THE MEMBER USING THE CONTROL METHOD
    • 二维码读取装置,二维码读取方法,控制具有实质正交部分到其中心轴的成员的制造历史信息的方法以及使用控制方法制造成员的方法
    • US20120022680A1
    • 2012-01-26
    • US12996637
    • 2009-06-23
    • Mutsumi TanidaMasami SakiyamaMasayuki Yoshida
    • Mutsumi TanidaMasami SakiyamaMasayuki Yoshida
    • G06F19/00G06K7/10
    • G05B19/128G05B2219/31033G05B2219/31424G05B2219/36371G06K7/10792G06K19/06037G06K19/06046G06K19/06159
    • [Problem to be Solved]Provided are a two-dimensional code reading device and a two-dimensional code reading method for reading a two-dimensional code carved in a member having a substantially circular section orthogonal to the central axis thereof, as well as a method of controlling manufacturing history information using the reading device and a method of manufacturing the member using the control method.[Solution]A concave portion 11 carved in the member on which a two-dimensional code 10 is formed has a pair of a first inclined portion 12 and a second inclined portion 13 which are inclined so as to form an angle β with respect to a normal-line direction R of a surface of the member. A two-dimensional code reading device 20 is provided with image pickup means 22 which receives light reflected from either of the first inclined portion 12 and the second inclined portion 13 in a direction forming an angle θ satisfying expression (1) with respect to the normal-line direction R, and illumination means 21 which irradiates either of the inclined portions from a direction forming an angle α satisfying expression (2) with respect to the normal-line direction R: 30°≦θ≦35°  (1) Δθ=θ−180°+α+2β  (2) where β is less than 90°,Δθ is not less than −10° but not more than 10°, andθ and α are angles in a turn direction reverse to a turn direction at which either of the inclined portions forms the angle β with respect to the normal-line direction R.
    • [待解决的问题]提供一种二维码读取装置和二维码读取方法,用于读取雕刻在具有与其中心轴正交的大致圆形截面的部件中的二维码,以及 使用读取装置控制制造历史信息的方法以及使用该控制方法制造构件的方法。 在形成有二维码10的构件中雕刻的凹部11具有倾斜形成角度& bgr的一对第一倾斜部12和第二倾斜部13; 相对于构件的表面的法线方向R. 二维码读取装置20设置有摄像装置22,其在形成角度&角度的方向上接收从第一倾斜部分12和第二倾斜部分13中的任一个反射的光; 满足表达式(1)相对于法线方向R的照明装置21以及相对于法线方向R为30°的从形成满足式(2)的角度α的方向照射任一倾斜部的照明装置21 ≦̸&thetas;≦̸ 35°(1)&Dgr;&thetas; =&thetas; -180°+α+ 2&bgr; (2)其中&bgr 小于90°,​​&Dgr;&thetas; 不小于-10°但不超过10°,而且; α是与倾斜部中的任意一个形成角度< bgr的转弯方向相反的转动方向的角度; 相对于法线方向R.
    • 3. 发明授权
    • Travelling control apparatus of compaction vehicle
    • 压实车辆行驶控制装置
    • US08479861B2
    • 2013-07-09
    • US12532069
    • 2008-03-18
    • Nobuyuki HaruyamaTakabumi TezukaMasayuki Yoshida
    • Nobuyuki HaruyamaTakabumi TezukaMasayuki Yoshida
    • B60K28/16
    • B60K17/10B60K28/165B60W2520/263B60W2520/28B60Y2200/413E01C19/26
    • A travelling control apparatus 1 includes: rotational speed ratio detection units 2 configured to output signals S1, S2 of respective rotational speeds of front and rear wheels; a rotational speed ratio calculation measure 3 for calculating data Da of a rotational speed ratio of the wheels from the signals S1, S2; a rotational speed ratio sort measure 4 for sorting the data Da into data D1 within a range of a set range T1 and data D2 out of the range; a reference data generation measure 5 for averaging the data D1 and generating an average value thereof as reference data Ds; and a slip determination measure 6 for comparing data Da1 of the rotational speed ratio of the wheels with the reference data Ds, and in a case of the data Da1 being out of a set range T2, for determining that one of the wheels is slipping.
    • 行驶控制装置1包括:转速比检测单元2,被配置为输出前轮和后轮的各个转速的信号S1,S2; 用于从信号S1,S2计算车轮的转速比的数据Da的转速比计算步骤3; 用于将数据Da分类成在设定范围T1和数据D2的范围内的数据D1中的转速比分类度量4; 用于对数据D1进行平均并产生其平均值作为参考数据Ds的参考数据生成测量5; 以及用于将车轮的转速比的数据Da1与参考数据Ds进行比较,并且在数据Da1超出设定范围T2的情况下,用于确定车轮之一滑动。
    • 6. 发明授权
    • Multilayer ceramic electronic part, circuit board and method for producing ceramic green sheet used for manufacturing those part and circuit board
    • 多层陶瓷电子部件,电路板以及用于制造这些部件和电路板的陶瓷生片的制造方法
    • US07232496B2
    • 2007-06-19
    • US11068781
    • 2005-03-02
    • Masayuki YoshidaShunji AokiJunichi SutohGenichi Watanabe
    • Masayuki YoshidaShunji AokiJunichi SutohGenichi Watanabe
    • B32B37/00B32B38/00H01F41/00H01G13/00
    • H05K3/4667C04B35/6269H01G4/30H05K1/0306H05K3/0023H05K2201/09881H05K2203/0514
    • The present invention provides a method for manufacturing an electronic part that can cope with downsizing, improvement in performance and quality of a multilayer electronic part. A ceramic green sheet is produced by forming on a substrate or on a layer formed on a substrate an internal electrode having a predetermined thickness by a discretional process, forming a photosensitive ceramic slurry on a surface of the substrate or the layer and the internal electrode in such a way that its thickness just before exposure will be substantially equal to or smaller than the thickness of the internal electrode from the surface of the substrate or the layer, irradiating the photosensitive ceramic slurry with light from the upper side of the substrate to perform exposure while masking the internal electrode pattern, to selectively harden the surface of the photosensitive ceramic slurry, the exposure amount being controlled in such a way that the surface of the photosensitive ceramic slurry is hardened, and removing the portion of the photosensitive ceramic slurry that has not been exposed by a development process to expose a surface of the internal electrode pattern.
    • 本发明提供一种能够应对小型化,提高多层电子部件的性能和质量的电子部件的制造方法。 通过在基板上或在基板上形成具有预定厚度的内部电极的层来形成陶瓷生片,在基板或层和内部电极的表面上形成感光陶瓷浆料 使其刚刚曝光之前的厚度将基本上等于或小于从基板或层的表面的内部电极的厚度,用来自基板的上侧的光照射感光陶瓷浆料以进行曝光 同时掩蔽内部电极图案,以选择性地硬化感光陶瓷浆料的表面,曝光量被控制为使得感光陶瓷浆料的表面硬化,并且去除不具有感光陶瓷浆料的部分感光陶瓷浆料 通过显影处理曝光以暴露内部电极图案的表面。