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    • 81. 发明申请
    • Gas barrier film, and display substrate and display using the same
    • 阻气膜,显示基板和使用其的显示器
    • US20060093758A1
    • 2006-05-04
    • US11166773
    • 2005-06-24
    • Osamu SakakuraMinoru KomadaShinya Sato
    • Osamu SakakuraMinoru KomadaShinya Sato
    • B32B27/36B32B19/00C09K19/00
    • H05B33/04H01L27/322H01L51/5256H01L2251/5338Y10T428/1086Y10T428/31667Y10T428/31786
    • There are provided a gas barrier film, which can undergo winding processing, is less likely to cause elongation or deflection upon exposure to heat or the like during processing or use, has a high level of dimensional stability, is less likely to be attacked by chemicals or the like during processing or use, can form a stable gas barrier layer, and has a high level of gas barrier properties against water vapor, oxygen and the like, and a display substrate and a display using said gas barrier film. The gas barrier film comprises: a base material film 11 having a deflection temperature under load of 150° C. or above; and at least a gas barrier layer 13A and a smoothing layer 15A in that order, or a smoothing layer 15A and a gas barrier layer 13A in that order provided on the base material film 11. Preferably, the base material film 11 is polyethylene naphthalate, the gas barrier layer 13A is formed of an inorganic oxide, an inorganic oxynitride, an inorganic oxycarbide, or an inorganic oxycarbonitride, and the smoothing layer 15A formed of a cardo polymer, sol-gel, or a material containing an acryl structure.
    • 提供可以进行卷绕处理的阻气膜,在加工或使用期间暴露于热等时不太可能引起伸长或偏转,具有高水平的尺寸稳定性,不太可能被化学物质侵蚀 可以在加工或使用过程中形成稳定的阻气层,并且对水蒸气,氧气等具有高水平的阻气性,以及显示基板和使用所述阻气膜的显示器。 气体阻隔膜包括:负载挠曲温度为150℃以上的基材膜11; 以及依次设置在基材膜11上的至少阻气层13A和平滑化合物层15A,或平滑层15A和阻气层13A。优选地,基材膜11 是聚萘二甲酸乙二醇酯,阻气层13A由无机氧化物,无机氮氧化物,无机碳氧化物或无机碳氮氧化物形成,以及由聚合物,溶胶 - 凝胶或含有 丙烯酸结构。
    • 83. 发明授权
    • Test apparatus
    • 测试仪器
    • US06990613B2
    • 2006-01-24
    • US10840018
    • 2004-05-06
    • Masaru DoiShinya Sato
    • Masaru DoiShinya Sato
    • G06F11/00G11B20/18G01R13/32G01R13/26
    • G11C29/56004G01R31/31922G01R31/31928G01R31/31937G11C29/56
    • A test apparatus for testing an electronic device includes a pattern generating unit for generating a test pattern to test the electronic device, a reference clock generating unit for generating a reference clock, a timing generator for generating a timing signal, an output signal sampling circuit for sampling the output signal outputted by the electronic device in response to the test pattern at the timing based on the timing signal generated by the timing generator, wherein the timing generator includes a variable delay circuit unit for receiving, delaying and outputting the reference clock, and a delay control unit for controlling the delay amount of the variable delay circuit unit, and the delay control unit controls the delay amount based on the basic timing data and the variable delay amount which is smaller than the basic timing data.
    • 一种用于测试电子设备的测试设备包括:一个产生测试电路的测试图形的模式产生单元,一个用于产生一个参考时钟的基准时钟产生单元,一个用于产生定时信号的定时发生器,一个用于 基于由定时发生器产生的定时信号的定时,响应于测试模式对电子设备输出的输出信号进行采样,其中定时发生器包括用于接收,延迟和输出参考时钟的可变延迟电路单元,以及 延迟控制单元,用于控制可变延迟电路单元的延迟量,并且延迟控制单元基于基本定时数据和小于基本定时数据的可变延迟量来控制延迟量。
    • 84. 发明申请
    • Testing apparatus and a testing method
    • 测试仪器和测试方法
    • US20050249001A1
    • 2005-11-10
    • US11097982
    • 2005-04-01
    • Kouichi TanakaMasaru DoiShinya Sato
    • Kouichi TanakaMasaru DoiShinya Sato
    • G01R31/28G01R31/3183G01R31/319G11C29/56G11C29/00
    • G01R31/31928G01R31/31922
    • A testing apparatus for performing a setup testing or a hold testing on a device under test (“DUT”) storing a given data signal according to a given clock signal is provided, wherein the testing apparatus includes a timing generating unit for generating sequentially a plurality of timing signals having different timings during the setup testing or the hold testing on the basis of a fist offset value given before starting the setup testing or the hold testing; a pattern generating unit for generating the clock signal and the data signal; a pattern formatting unit for shifting the phase of the data signal with respect to the clock signal sequentially according to the timing signals sequentially generated and providing the DUT with the clock signal and the phase-shifted data signal sequentially; and a determining module for acquiring a setup time or a hold time of the DUT on the basis of storage data which are the data signals stored by the DUT.
    • 提供了一种用于根据给定的时钟信号在被测设备(“DUT”)上执行设置测试或保持测试的测试设备,其中测试设备包括定时产生单元,用于顺序地产生多个 基于在开始建立测试或保持测试之前给出的第一偏移值,在设置测试或保持测试期间具有不同定时的定时信号; 模式产生单元,用于产生时钟信号和数据信号; 模式格式化单元,用于根据顺序生成的定时信号顺序地移动数据信号相对于时钟信号的相位,并且顺序地向DUT提供时钟信号和相移数据信号; 以及确定模块,用于基于作为由DUT存储的数据信号的存储数据获取DUT的建立时间或保持时间。
    • 86. 发明授权
    • Liquid crystal optical element and an optical device
    • 液晶光学元件和光学器件
    • US06876431B2
    • 2005-04-05
    • US10293256
    • 2002-11-14
    • Nobuyuki HashimotoShinya Sato
    • Nobuyuki HashimotoShinya Sato
    • G02F1/1335G02F1/1343G02F1/13
    • G02F1/133512G02F1/134309
    • A compact liquid crystal optical element for optical modulation and a compact optical device. A liquid crystal optical element for optical modulation is prepared by connecting two transparent substrates, each formed with a transparent electrode and an orientation film, with a sealing member, leaving a clearance between the two transparent substrates. On at least one surface of at least one of these transparent substrates, a diaphragm is formed using a shielding member. With this arrangement, it is possible to provide a more compact liquid crystal optical element than has been conventionally available. At the same time, it is possible to substantially reduce the occurrence of noise. Therefore, it is possible to provide a liquid crystal optical element and an optical device having excellent performance.
    • 一种用于光调制的紧凑型液晶光学元件和紧凑型光学器件。 通过将两个形成有透明电极和取向膜的透明基板与密封构件连接,在两个透明基板之间留有间隙来制备用于光学调制的液晶光学元件。 在这些透明基板中的至少一个的至少一个表面上,使用屏蔽构件形成隔膜。 通过这种布置,可以提供比传统可用的更紧凑的液晶光学元件。 同时,可以显着地减少噪声的发生。 因此,可以提供具有优异性能的液晶光学元件和光学装置。
    • 87. 发明授权
    • Delay clock generating apparatus and delay time measuring apparatus
    • 延迟时钟发生装置和延迟时间测量装置
    • US06807243B2
    • 2004-10-19
    • US10421497
    • 2003-04-23
    • Toshiyuki OkayasuShinya Sato
    • Toshiyuki OkayasuShinya Sato
    • H04L2538
    • H03L7/0995G01R31/31922
    • A standard clock 34 is input to a phase comparator 52 and a phase controller 56. The ring oscillator 50 oscillates a shift clock 70 having a same cycle as the standard clock 34. The phase comparator 52 matches the downward shift of the shift clock 70 with the downward shift of the standard clock 34 to output a shift clock 72. The shift clock 72 is supplied to the pulse inserter 54. The phase controller 56 receives the standard clock 34 and generates a phase control signal 74 indicating cycles of the shift clock 72 to which the insert-pulses are inserted among a plurality of cycles of the shift clock 72. The pulse inserter 54 inserts the insert-pulses to the cycles of the shift clock indicated by the phase control signal 74. The phase-lock unit 58 generates a delay clock 82 by delaying the phase of the shift clock 70 oscillated by the ring oscillator 50 with respect to the phase of the standard clock, based on the standard clock and the shift clock 76 including the insert-pulses.
    • 标准时钟34输入到相位比较器52和相位控制器56.环形振荡器50振荡具有与标准时钟34相同周期的移位时钟70.相位比较器52将移位时钟70的向下移位与 标准时钟34向下移动以输出移位时钟72.移位时钟72被提供给脉冲插入器54.相位控制器56接收标准时钟34并产生指示移位时钟72的周期的相位控制信号74 插入脉冲在移位时钟72的多个周期之间插入到其中。脉冲插入器54将插入脉冲插入由相位控制信号74指示的移位时钟的周期。相位锁定单元58产生 通过基于标准时钟和包括插入脉冲的移位时钟76,延迟由环形振荡器50相对于标准时钟的相位振荡的移位时钟70的相位的延迟时钟82。
    • 88. 发明授权
    • Period generating device
    • 周期生成装置
    • US5734662A
    • 1998-03-31
    • US849145
    • 1997-05-29
    • Shinya Sato
    • Shinya Sato
    • G01R31/28G01R31/3183G01R31/3185H03K3/78G06F11/00
    • G01R31/318552
    • The present invention makes it possible that a period generating device required to operate at high rate can be implemented as an IC of a CMOS structure. Shift registers each operating as a pipeline are provided at the previous stage and the subsequent stage to a period memory for storing period data, respectively. Each shift register is constituted by a plurality of flip-flops, and a switching circuit is provided at the previous stage to each of the flip-flops. The switching circuits are controlled to provide a cascade connection of the flip-flops to perform a shift operation in response to a reference clock applied to the trigger terminals of the flip-flops only during the time interval that coincidence detecting means outputs a coincidence signal, which detects a coincidence between a period data and an output from a counter for counting the reference clock. As a result, when the coincidence detecting means does not output the coincidence signal, each shift register maintains data stored therein, whereas when the coincidence signal is outputted, each shift register performs a shift operation reliably in response to the reference clock.
    • PCT No.PCT / JP96 / 02825 Sec。 371日期1997年5月29日 102(e)日期1997年5月29日PCT提交1996年9月27日PCT公布。 出版物WO97 / 12255 日期1997年04月3日本发明使得可以实现以高速率工作的周期发生装置作为CMOS结构的IC。 分别作为流水线运行的移位寄存器分别被提供在前一级和后一级到用于存储周期数据的周期存储器。 每个移位寄存器由多个触发器构成,并且在前一级向每个触发器提供开关电路。 开关电路被控制以提供触发器的级联连接,以便仅在符合检测装置输出一致信号的时间间隔期间响应于施加到触发器的触发端子的参考时钟执行移位操作, 其检测周期数据和用于计数参考时钟的计数器的输出之间的一致性。 结果,当符合检测装置不输出一致信号时,每个移位寄存器保持其中存储的数据,而当输出一致信号时,每个移位寄存器响应于参考时钟可靠地执行移位操作。
    • 89. 发明授权
    • Running control device for electric vehicle
    • 电动车运行控制装置
    • US08744656B2
    • 2014-06-03
    • US13296777
    • 2011-11-15
    • Shinya SatoNaoyuki TashiroKentaro MakiAtsushi Yokoyama
    • Shinya SatoNaoyuki TashiroKentaro MakiAtsushi Yokoyama
    • B60L11/00
    • B60L15/20B60L7/14B60L11/1803B60L2240/12B60L2240/421B60L2240/423Y02T10/645Y02T10/7005Y02T10/72Y02T10/7275Y02T10/92
    • A running control device for an electric vehicle includes: a first calculation unit that calculates a predetermined reference torque required for braking/driving the motor that provides a beneficial effect with regard to power consumption of the electric vehicle; a second calculation unit that calculates interval allocation between a first interval in which the electric vehicle is propelled by braking/driving the motor at the predetermined reference torque and a second interval in which the electric vehicle is coasted without the motor being braked or driven; a third calculation unit that calculates a control requested torque for braking/driving the motor intermittently, so as alternatingly to repeat running of the electric vehicle in the first intervals and coasting of the electric vehicle in the second intervals; and a running control unit that performs running control of the electric vehicle by braking/driving the motor intermittently according to the control requested torque.
    • 一种用于电动车辆的行驶控制装置包括:第一计算单元,其计算关于电动车辆的功率消耗提供有益效果的制动/驱动电动机所需的预定参考转矩; 第二计算单元,其计算通过以预定的基准转矩制动/驱动电动机来推进电动车辆的第一间隔之间的间隔分配和电动车辆在没有电动机被制动或驱动的情况下滑行的第二间隔; 第三计算单元,其间歇地计算用于制动/驱动所述电动机的控制要求转矩,以交替地重复所述电动车辆在所述第一间隔中的行驶和所述电动车辆在所述第二间隔中的滑行; 以及运行控制单元,其通过根据所述控制要求转矩间歇地制动/驱动所述电动机来执行所述电动车辆的行驶控制。
    • 90. 发明申请
    • VOLUME HOLOGRAM TRANSFER FOIL
    • US20130182301A1
    • 2013-07-18
    • US13825413
    • 2011-07-13
    • Dai TsukadaKoji EtoNobuko OikawaMinoru AzakamiTakaki MiyachiShinya Sato
    • Dai TsukadaKoji EtoNobuko OikawaMinoru AzakamiTakaki MiyachiShinya Sato
    • G03H1/02
    • G03H1/02B42D25/328B44C1/1716G03H1/0248G03H1/0252G03H2250/10G03H2250/39G03H2250/43G03H2270/23
    • A primary object of the invention is to provide a volume hologram transfer foil which has good foil cutting characteristics and is used to manufacture a volume hologram laminate by transferring a volume hologram layer to an adherend by thermocompression. The above problem is solved by a volume hologram transfer foil comprising a base material, a protective layer formed on the base material, a volume hologram layer formed on the protective layer and having a volume hologram recorded, and a heat seal layer formed on the volume hologram layer, wherein the protective layer contains a hard coat component formed of an ionizing radiation-curable resin, a rupture elongation control component which improves the rupture elongation of the protective layer, and a foil cutting characteristic control component which has a thermal expansion coefficient different from those of the hard coat component and rupture elongation control component and is incompatible with the two components.
    • 本发明的主要目的是提供一种具有良好的箔切割特性的体积全息图转印箔,并用于通过热压缩将体积全息图层转移到被粘物上来制造体积全息图层叠体。 上述问题通过一种体积全息图转印箔来解决,该体积全息图转印箔包括基材,形成在基材上的保护层,形成在保护层上的具有体积全息图的体积全息图层,以及形成在体积上的热封层 全息图层,其中保护层含有由电离辐射固化树脂形成的硬涂层部件,改善保护层断裂伸长率的断裂伸长率控制部件和热膨胀系数不同的箔切割特性控制部件 与硬涂层组分和断裂伸长控制组分的那些组成并且与两种组分不相容。