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    • 3. 发明申请
    • Liquid Crystal Display Device and Liquid Crystal Display Driving Circuit
    • 液晶显示装置和液晶显示驱动电路
    • US20080012840A1
    • 2008-01-17
    • US11792039
    • 2006-01-30
    • Hiroyuki HigashinoTetsuya UmeharaYasuki Mori
    • Hiroyuki HigashinoTetsuya UmeharaYasuki Mori
    • G06F3/038
    • G09G3/3688G09G2310/027
    • A gradation voltage adjustment section for increasing a positive gradation voltage VHX of an X-th gradation and a negative gradation voltage of the X-th gradation so that the increment corresponds to a charge pull-in amount ΔV is provided in a gradation voltage generation circuit of each source driver. In at least one embodiment, a center value between the positive and negative gradation voltages is adjusted for each driver in accordance with a slant of the charge pull-in amount ΔV in a direction of a gate signal line, thereby suppressing a flicker without varying a gradation characteristic. Further, a center value between the positive and negative gradation voltages is adjusted for each horizontal line or for every plural lines in a single frame in accordance with a horizontal direction deviation and a vertical direction deviation of the charge pull-in amount ΔV in a transfer block, thereby suppressing a flicker without varying a gradation characteristic.
    • 灰度电压调节部分,用于增加第X灰度的正灰度电压VHX和第X灰度的负灰度电压,使得增量对应于电荷引入量ΔV被提供在灰度电压产生电路 的每个源驱动程序。 在至少一个实施例中,根据栅极信号线的方向上的电荷引入量ΔV的斜率,针对每个驱动器调整正和负灰度电压之间的中心值,从而抑制闪烁而不改变 灰度特征。 此外,根据转印中的电荷引入量DeltaV的水平方向偏差和垂直方向偏差,针对每个水平线或单个帧中的每一行调整正和负灰度电压之间的中心值 从而抑制闪烁而不改变灰度特性。
    • 5. 发明授权
    • Electroforming method and electroforming apparatus
    • 电铸法和电铸装置
    • US4696721A
    • 1987-09-29
    • US944513
    • 1986-12-22
    • Hiroyuki HigashinoHideki Ohkawa
    • Hiroyuki HigashinoHideki Ohkawa
    • C25D1/00
    • C25D1/00
    • An electroforming method comprising the steps of immersing a conductive matrix and an insoluble electrode having a high oxygen overvoltage, in an electroforming solution containing sulfamate ions, applying a voltage between said conductive matrix and insoluble electrode, to electrolyze said electroforming solution, depositing a metal layer on the surface of said matrix, and emitting electromagnetic radiation, having a wavelength shorter than 400 nm, to said electroforming solution. An electroforming apparatus comprising an electroforming tank holding an electroforming solution containing sulfamate ions, a conductive matrix and an insoluble electrode having a high oxygen overvoltage, both immersed in said electroforming solution, a power source for applying voltage between said conductive matrix and insoluble electrode having a high oxygen overvoltage, and a source of electromagnetic radiation for emitting electromagnetic radiation having a wavelength shorter than 400 nm.
    • 一种电铸方法,包括以下步骤:将导电基体和具有高氧过电压的不溶性电极浸入含氨基磺酸根离子的电铸溶液中,在所述导电基质和不溶性电极之间施加电压,以电解所述电铸溶液,沉积金属层 在所述电铸表面上,并且将波长短于400nm的电磁辐射发射到所述电铸溶液。 一种电铸装置,包括:电铸槽,其保持含有氨基磺酸根离子的电铸溶液,导电基体和具有高氧过电压的不溶性电极,两者均浸入所述电铸溶液中;电源,用于在所述导电基体和不溶性电极之间施加电压,所述电源具有 高氧过电压,以及用于发射波长短于400nm的电磁辐射的电磁辐射源。
    • 7. 发明申请
    • COOLING DEVICE FOR UNDER-FLOOR DEVICE FOR VEHICLE
    • 用于车辆的地面装置的冷却装置
    • US20140318736A1
    • 2014-10-30
    • US14361519
    • 2012-11-22
    • Hiroyuki HigashinoYukio NakashimaShigetoshi Ipposhi
    • Hiroyuki HigashinoYukio NakashimaShigetoshi Ipposhi
    • F01P1/06
    • F01P1/06B61C17/00H05K7/20918H05K7/20936
    • A cooling device includes a base plate to a rear surface side of which an under-floor device is attached; a heat radiating unit attached to a front surface side of the base plate and radiating heat conducted from the under-floor device via the base plate; a cover surrounding the heat radiating unit and including a side opening capable of causing traveling wind to flow therein and thereout, in opposite side surfaces facing a traveling direction of a vehicle; and an guide plate guiding traveling wind flowing in from the side opening to the heat radiating unit by blocking at least part of a gap area between a surface connecting the opposite side surfaces and the heat radiating unit, the guide plate being provided in a side gap area between a side surface of the cover and the heat radiating unit on a traveling-wind flow-in side.
    • 一种冷却装置,其特征在于,包括:底板,其背面侧设置有底板下的装置; 安装在所述基板的表面侧的散热单元,并且经由所述基板散发从所述底板下的设备传导的热; 围绕所述散热单元的盖,包括侧向开口,所述侧开口能够使行进的风在其中流动,并且在与车辆的行进方向相对的相对侧表面中; 以及引导板,其通过阻挡连接所述相对侧表面的表面与所述散热单元之间的间隙区域的至少一部分而将从所述侧开口流入的行进风导向所述散热单元,所述引导板设置在侧间隙 在行进风流入侧的盖的侧面与散热单元之间的区域。
    • 8. 发明授权
    • Optical disc drive and recording method
    • 光盘驱动器和记录方式
    • US08542562B2
    • 2013-09-24
    • US11624421
    • 2007-01-18
    • Hiroyuki Higashino
    • Hiroyuki Higashino
    • G11B5/09G11B11/00
    • G11B7/00456
    • An optical disc drive includes a memory stored a write strategy, a converting unit which converts a recording data into a recording pulse based on the write strategy stored in the memory, an inspection unit which inspects a state of the recording data from a reproducing signal, a recording controller which executes a recording operation to record the recording data by applying a laser beam corresponding to the recording pulse to an optical disc, suspends the recording operation, judges whether correction of the write strategy according to an inspection result of the inspection unit is necessary, and restarts the recording operation after the write strategy saved in the memory is collected, and a correction unit which corrects the write strategy saved in the memory when the correction of the write strategy according to an inspection result of the inspection unit is necessary.
    • 光盘驱动器包括存储写入策略的存储器,基于存储在存储器中的写入策略将记录数据转换成记录脉冲的转换单元,检测单元,其从再现信号检查记录数据的状态, 记录控制器,通过将对应于记录脉冲的激光束施加到光盘来执行记录操作以暂停记录操作,暂停记录操作,判断根据检查单元的检查结果对写入策略的修正是否为 并且在收集了存储在存储器中的写入策略之后重新启动记录操作,并且当需要根据检查单元的检查结果对写入策略进行校正时,校正保存在存储器中的写入策略的校正单元。
    • 10. 发明授权
    • Liquid crystal display device and liquid crystal display driving circuit
    • 液晶显示装置和液晶显示驱动电路
    • US08094108B2
    • 2012-01-10
    • US11792039
    • 2006-01-30
    • Hiroyuki HigashinoTetsuya UmeharaYasuki Mori
    • Hiroyuki HigashinoTetsuya UmeharaYasuki Mori
    • G09G3/36
    • G09G3/3688G09G2310/027
    • A gradation voltage adjustment section for increasing a positive gradation voltage VHX of an X-th gradation and a negative gradation voltage of the X-th gradation so that the increment corresponds to a charge pull-in amount ΔV is provided in a gradation voltage generation circuit of each source driver. In at least one embodiment, a center value between the positive and negative gradation voltages is adjusted for each driver in accordance with a slant of the charge pull-in amount ΔV in a direction of a gate signal line, thereby suppressing a flicker without varying a gradation characteristic. Further, a center value between the positive and negative gradation voltages is adjusted for each horizontal line or for every plural lines in a single frame in accordance with a horizontal direction deviation and a vertical direction deviation of the charge pull-in amount ΔV in a transfer block, thereby suppressing a flicker without varying a gradation characteristic.
    • 一种灰度电压调节部分,用于增加第X级灰度的正灰度电压VHX和第X级灰度的负灰度电压,使得增量对应于电荷吸入量&Dgr; V被提供在灰度电压 每个源驱动器的发电电路。 在至少一个实施例中,根据在栅极信号线的方向上的电荷引入量&Dgr; V的倾斜,针对每个驱动器调整正和负灰度电压之间的中心值,从而抑制闪烁而没有 改变灰度特性。 此外,根据水平方向偏差和电荷牵引量&Dgr; V的垂直方向偏差,针对每个水平线或每一行在单个帧中调整正和负灰度电压之间的中心值 传输块,从而抑制闪烁而不改变灰度特性。