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    • 22. 发明授权
    • Casing construction for electronic equipment
    • 电子设备外壳施工
    • US4553674A
    • 1985-11-19
    • US344185
    • 1982-01-28
    • Hiroshi YoshikawaTetsuya HattoriHideaki Sato
    • Hiroshi YoshikawaTetsuya HattoriHideaki Sato
    • H05K7/14H05K7/18A47F5/00
    • H05K7/18H05K7/1425H05K7/1449
    • A casing construction including a left post and a right post, each of the left post and the right post being large in width and formed at its front surface with a mounting portion for mounting a plurality of shelves in a plurality of vertically arranged layers, at its rear surface with a mounting portion for mounting a back board, a mounting portion at its upper end for mounting a ceiling board and a mounting portion at its lower end for mounting a floor board. The left post and right post having a variety of functions to perform have the shelves, back board, ceiling board and floor board threadably connected thereto. In this casing construction, the left post and right post perform the function of separating the shelves from cables. A plurality of such casings can be arranged in side-by-side relation to provide a series of casings depending on the size of the electronic equipment intended.
    • 一种包括左柱和右柱的套管结构,每个左柱和右柱的宽度大,并在其前表面形成有用于将多个搁架安装在多个垂直布置的层中的安装部分, 其后表面具有用于安装背板的安装部分,用于安装顶板的上端的安装部分和用于安装底板的下端的安装部分。 具有各种功能的左后柱和右柱具有与其螺纹连接的搁板,背板,天花板和地板。 在这种套管结构中,左柱和右柱执行将货架与电缆分开的功能。 多个这样的壳体可以并排布置,以根据预期的电子设备的尺寸提供一系列壳体。
    • 25. 发明授权
    • Measuring apparatus, measuring method, and program
    • 测量装置,测量方法和程序
    • US09046355B2
    • 2015-06-02
    • US13387653
    • 2010-07-28
    • Shiki TakabayashiHiroshi Yoshikawa
    • Shiki TakabayashiHiroshi Yoshikawa
    • G01B11/24G01B11/30G01B11/25G06T7/00
    • G01B11/2536G06T7/521
    • A measuring apparatus includes a projection control unit configured to cause a projection unit to project, onto an object, a first light pattern with light and dark portions, a second light pattern, which is smaller in distance between the light and dark portions than that of the first light pattern and has a boundary position between the light and dark portions common to the first light pattern, and a third light pattern in which the light and dark portions of the second light pattern are reversed to each other, an acquisition unit configured to acquire a first captured image of the object onto which the first light pattern is projected, a second captured image of the object onto which the second light pattern is projected, and a third captured image of the object onto which the third light pattern is projected, and a calculation unit configured to calculate the boundary position between the light and dark portions of the first captured image based on the second and the third captured image to measure the position of the object.
    • 一种测量装置,包括:投影控制单元,被配置为使投影单元向物体突出具有光和暗部分的第一光图案,第二光图案,其在明暗部分之间的距离小于 第一光图案,并且具有第一光图案共同的亮部和暗部之间的边界位置,以及第三光图案,其中第二光图案的明暗部分彼此反转;获取单元,被配置为 拍摄投影有第一光图案的物体的第一拍摄图像,投影有第二光图案的物体的第二拍摄图像和投影有第三光图案的物体的第三拍摄图像, 以及计算单元,被配置为基于所捕获的第二和第三来计算第一捕获图像的亮部和暗部之间的边界位置 图像来测量对象的位置。
    • 28. 发明申请
    • DATA UPDATE PROCESSING METHOD AND VEHICLE OPERATION CONTROL DEVICE
    • 数据更新处理方法和车辆操作控制装置
    • US20110224867A1
    • 2011-09-15
    • US12672184
    • 2008-08-06
    • Hiroshi Yoshikawa
    • Hiroshi Yoshikawa
    • G06F7/00
    • F02D41/2425F02D41/2451F02D41/2477F02D41/28G07C5/085
    • To reliably perform updating of maximum values and minimum values of measurement data with a simple procedure without incurring an increase in the computational load of an arithmetic processing element such as a microcomputer. When processing is started, a most recent maximum value stored in a nonvolatile storage element 4 is written to a maximum value-use variable Xmax and a positive maximum value is written to a minimum value-use variable Xmin (step S404), and each time temperature data are acquired, a value of acquired data Xk and a most recent minimum value Xmin are compared and the smaller value is set as a new minimum value Xmin (step S408), and each time updating of this minimum value is repeated a predetermined number of times of processing Ns, the minimum value Xmin at that point in time and the maximum value Xmax are compared and the larger value is set as a new maximum value Xmax, whereby updating is performed (steps S406 and S410).
    • 以简单的程序可靠地执行测量数据的最大值和最小值的更新,而不会增加诸如微计算机之类的算术处理元件的计算负担。 当开始处理时,将存储在非易失性存储元件4中的最新最大值写入最大值使用变量Xmax,并将正最大值写入最小值使用变量Xmin(步骤S404),并且每次 获取温度数据,比较获取数据Xk和最近最小值Xmin的值,并将较小值设置为新的最小值Xmin(步骤S408),并且每次将该最小值的更新重复预定数量 的处理次数Ns,在该时刻的最小值Xmin和最大值Xmax进行比较,将较大的值设定为新的最大值Xmax,由此进行更新(步骤S406和S410)。