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    • 4. 发明授权
    • Display device and control method of display device
    • 显示装置的显示装置和控制方法
    • US08593493B2
    • 2013-11-26
    • US13325592
    • 2011-12-14
    • Hiroshi Ohishi
    • Hiroshi Ohishi
    • G09G5/10
    • G09G3/3648G09G3/342G09G2310/0297G09G2320/0633G09G2320/0646G09G2360/16
    • A display device includes a liquid crystal panel including a plurality of regions, where each of the regions includes a plurality of liquid crystal pixels; a plurality of data driving units; and a plurality of timing controllers, where the data driving units is in a one-to-one correspondence with the regions, where each of the data driving units controls transmittance of light of the liquid crystal pixels in a corresponding region thereof, where the timing controllers is in a one-to-one correspondence with the data driving units, where each of the timing controllers acquires data of a partial image to be displayed at the corresponding region of the corresponding data driving unit thereof, generates control data for controlling transmittance of light of the liquid crystal pixels of the corresponding region of the corresponding data driving unit thereof, and outputs the control data to the corresponding data driving unit thereof.
    • 显示装置包括具有多个区域的液晶面板,其中每个区域包括多个液晶像素; 多个数据驱动单元; 以及多个定时控制器,其中数据驱动单元与区域一一对应,其中每个数据驱动单元控制其相应区域中的液晶像素的光的透射率,其中定时 控制器与数据驱动单元一一对应,其中每个定时控制器获取要在其相应数据驱动单元的相应区域显示的部分图像的数据,生成用于控制透射率的控制数据 对应数据驱动单元的相应区域的液晶像素的光,并将该控制数据输出到相应的数据驱动单元。
    • 5. 发明授权
    • Air-fuel ratio control system for an automotive engine
    • 汽车发动机空燃比控制系统
    • US4771753A
    • 1988-09-20
    • US82858
    • 1987-08-05
    • Hiroshi Ohishi
    • Hiroshi Ohishi
    • F02D41/00F02D41/14
    • F02D41/2454F02D41/2477
    • A first lookup table is provided for storing a plurality of basic fuel injection pulse widths from which one of pulse widths is derived in accordance with engine speed and intake-air pressure. A second lookup table is provided for storing a plurality of maximum correcting quantities for correcting a derived basic fuel injection pulse width in order to correct deviation of air-fuel ratio due to change of valve clearance of the engine. A necessary correcting quantity is obtained by multiplying a learning coefficient and a derived maximum correcting quantity. A desired fuel injection pulse width is obtained by adding the necessary correcting quantity to the derived basic fuel injection pulse width. The learning coefficient is updated by 1/2 at every updating.
    • 第一查询表被提供用于存储多个基本燃料喷射脉冲宽度,根据发动机速度和进气压力,脉冲宽度中的一个被推导出。 提供第二查找表用于存储用于校正导出的基本燃料喷射脉冲宽度的多个最大校正量,以便校正由于发动机的气门间隙的变化引起的空燃比的偏差。 通过将学习系数和导出的最大校正量相乘来获得必要的校正量。 通过将所需的校正量与所得到的基本燃料喷射脉冲宽度相加来获得期望的燃料喷射脉冲宽度。 每次更新时,学习系数将更新1/2。
    • 8. 发明授权
    • Housing structure for rotary connectors
    • 旋转连接器的外壳结构
    • US5772456A
    • 1998-06-30
    • US609384
    • 1996-03-01
    • Hiroshi Ohishi
    • Hiroshi Ohishi
    • B60R16/027B62D1/04H01R35/02H01R35/04
    • H01R35/025
    • A housing structure for rotary connectors that have a flexible cable 4 spirally received within a space formed by a stator housing 1 and a rotor housing 2. Terminals 51 connected to electric conductors 42 of the flexible cable 4 are supported by a supporter 11 mounted in the stator housing 1. The supporter 11 has a barrier 13 having a path 12 through which the flexible cable 4 can be passed. An angle .theta. of an opening 12a positioned at an end position of the path 12 is larger than 180.degree.. A gap width t1 of the path 12 is approximately equal to a thickness t2 of the flexible cable 4. The housing structure avoids a state wherein the conductors 42 of a disconnected flexible cable 4 are contacted again with the terminals 51, or wherein the disconnected sections of the adjacent terminals 51 are undesirably short-circuited by the conductors 42 of the disconnected flexible cable 4, in the case where the electrical connection between the conductors 42 of the flexible cable 4 and the terminals 51 is once disconnected.
    • 用于旋转连接器的壳体结构,其具有螺旋地容纳在由定子壳体1和转子壳体2形成的空间内的柔性电缆4.连接到柔性电缆4的导电体42的端子51由安装在 定子壳体1.支撑件11具有阻挡层13,该阻挡层13具有路径12,柔性电缆4可穿过该路径12通过。 位于路径12的端部位置的开口12a的角度θ大于180°。 路径12的间隙宽度t1近似等于柔性电缆4的厚度t2。外壳结构避免了断开的柔性电缆4的导体42再次与端子51接触的状态,或者其中断开的部分 在柔性电缆4的导体42与端子51之间的电连接一旦断开的情况下,相邻端子51的不连续的短路被不连接的柔性电缆4的导体42短路。