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    • 11. 发明申请
    • OPTICAL WAVEGUIDE AND OPTICAL TOUCH PANEL
    • 光波导和光触控面板
    • US20100128006A1
    • 2010-05-27
    • US12625976
    • 2009-11-25
    • Yusuke Shimizu
    • Yusuke Shimizu
    • G06F3/042G02B6/10
    • G02B6/10G06F3/0421
    • An optical waveguide 30 having a bending groove 34 parallel to two long sides of a rectangular shape thereof. The optical waveguide 30 is bent along the bending groove 34 so as to come into close contact with a frame of an optical touch panel. This makes it possible to attach the optical waveguide 30 to the frame without misalignment during assembly. Therefore, the optical waveguide 30 can emit light beams in a direction perpendicular to one side of a rectangular display screen opposed to one long side of the rectangular shape thereof. Further, the width of the frame of the optical touch panel 30 can be made smaller than that of the optical waveguide 30. This makes it possible to achieve reduction in the width of the frame of the optical touch panel.
    • 具有平行于其长方形的两个长边的弯曲槽34的光波导30。 光波导30沿着弯曲槽34弯曲以与光学触摸面板的框架紧密接触。 这使得可以在组装期间将光波导30附接到框架而没有错位。 因此,光波导30可以在与矩形显示屏的与其长方形的一个长边相对的矩形显示屏的一侧的垂直方向上发射光束。 此外,可以使光学触摸面板30的框架的宽度小于光学波导30的宽度。这使得可以实现光学触摸面板的框架的宽度的减小。
    • 12. 发明申请
    • METHOD OF MANUFACTURING OPTICAL WAVEGUIDE DEVICE
    • 制造光波导装置的方法
    • US20100092893A1
    • 2010-04-15
    • US12575112
    • 2009-10-07
    • Junichi FujisawaYusuke Shimizu
    • Junichi FujisawaYusuke Shimizu
    • G03F7/20
    • G02B6/138
    • A method of manufacturing an optical waveguide device capable of suppressing the surface roughening of core side surfaces of an optical waveguide. Forming an under cladding layer on the front surface of a substrate; forming a photosensitive resin layer for core formation on a surface of the under cladding layer; wherein, in forming the cores, (A) irradiation light transmitted through the photosensitive resin layer, reaching the front surface of the substrate having an arithmetic mean roughness (Ra) in the range of 1 to 2 nm, or (B) irradiation light transmitted through the photosensitive resin layer and reflected from the bottom surface, where the front surface and back surface both have an arithmetic mean roughness (Ra) in the range of 1 to 2 nm.
    • 一种制造能够抑制光波导的芯侧表面粗糙化的光波导装置的方法。 在基板的前表面上形成下敷层; 在下敷层的表面形成用于芯形成的感光性树脂层; 其中,在形成芯时,(A)透过感光性树脂层的照射光,到达具有1〜2nm范围的算术平均粗糙度(Ra)的基板的前表面,或(B)透射的照射光 通过感光性树脂层并从底面反射,其中前表面和后表面均具有在1至2nm范围内的算术平均粗糙度(Ra)。
    • 13. 发明申请
    • MANUFACTURING METHOD OF OPTICAL WAVEGUIDE DEVICE AND OPTICAL WAVEGUIDE DEVICE OBTAINED THEREBY
    • 光波导器件及其获得的光波导器件的制造方法
    • US20100067849A1
    • 2010-03-18
    • US12562284
    • 2009-09-18
    • Takami HikitaJunichi FujisawaYusuke Shimizu
    • Takami HikitaJunichi FujisawaYusuke Shimizu
    • G02B6/12G03F7/20
    • G02B6/1221G02B6/138
    • A manufacturing method of an optical waveguide device and an optical waveguide device obtained thereby. An under cladding layer is formed on the front surface of a colored-layer-coated PET substrate including a PET substrate portion and a colored layer of a color that absorbs irradiation light and formed on the back surface of the PET substrate portion, and then a photosensitive resin layer for the formation of cores is formed thereon. In forming the cores, when the irradiation light reaches the bottom surface of the PET substrate portion, most of the irradiation light is absorbed by the colored layer, so that there is little irradiation light reflected from the bottom surface of the PET substrate portion. This significantly reduces the irradiation light reflected diffusely from the PET substrate portion and reaching the photosensitive resin layer to thereby effectively suppress the surface roughening of the side surfaces of the cores.
    • 由此获得的光波导器件和光波导器件的制造方法。 在具有PET基板部分和吸收照射光并形成在PET基板部分的背面上的彩色着色层的着色层涂布的PET基板的前表面上形成下包层,然后, 在其上形成用于形成芯的感光性树脂层。 在形成芯时,当照射光到达PET基板部分的底面时,大部分照射光被着色层吸收,使得从PET基板部分的底面反射的照射光很少。 这显着地降低了从PET基板部分漫反射反射并到达感光树脂层的照射光,从而有效地抑制了芯的侧表​​面的粗糙化。
    • 14. 发明授权
    • Semiconductor device using current mirror circuit
    • 半导体器件采用电流镜电路
    • US06897705B2
    • 2005-05-24
    • US10669304
    • 2003-09-24
    • Yoji IdeiYusuke Shimizu
    • Yoji IdeiYusuke Shimizu
    • H03K5/05G05F3/26G11C11/407G11C11/409H03L5/00
    • G05F3/262
    • The semiconductor device includes a first current mirror circuit combining analog power sources and digital power sources to receive small amplitude signals and constant-voltage input signals, a second current mirror circuit for receiving a signal output from the first current mirror circuit and for level-converting the signal from analog power source to digital power source, a first node provided in the first current mirror circuit, a second node provided in the second current mirror circuit, and an inverter circuit for receiving a signal output on the basis of the voltage levels of the first node and the second node and for outputting a CMOS level signal.
    • 半导体器件包括组合模拟电源和数字电源以接收小振幅信号和恒压输入信号的第一电流镜电路,用于接收从第一电流镜电路输出的信号和用于电平转换的第二电流镜电路 从模拟电源到数字电源的信号,设置在第一电流镜电路中的第一节点,设置在第二电流镜电路中的第二节点,以及反相器电路,用于基于电压电平 第一节点和第二节点,并用于输出CMOS电平信号。
    • 15. 发明授权
    • Image processing method and storage medium for storing image processing programs
    • 用于存储图像处理程序的图像处理方法和存储介质
    • US06734854B1
    • 2004-05-11
    • US09328187
    • 1999-06-09
    • Yusuke Shimizu
    • Yusuke Shimizu
    • G06T1500
    • G06T15/405
    • An image processing method whereby an image of object generated in real time in a pre-generated background image by giving operators an impression of depth or distance can be synthesized and a storage medium for storing the image processing program are provided. In the present invention, image data of a pre-generated image, such as a background image, includes image data, which is texture data or color data, and Z data indicating a depth in a screen. Then, the data of the pre-generated image like a background image is recorded on a storage medium in advance. The Z data of real timely generated image is compared with the Z data of the background image, and the image data, which is foremost in the screen, is written in a frame buffer. It becomes possible to synthesize the image of real timely generated object in the background image with giving an impression of depth or distance by adding the Z data to the data of pre-generated image.
    • 可以合成通过给予操作者深度或距离的印象而在预生成的背景图像中实时生成的对象的图像的图像处理方法,并且提供用于存储图像处理程序的存储介质。 在本发明中,诸如背景图像的预生成图像的图像数据包括作为纹理数据或颜色数据的图像数据和指示屏幕中的深度的Z数据。 然后,将预先生成的图像像背景图像的数据预先记录在存储介质上。 将实时及时生成的图像的Z数据与背景图像的Z数据进行比较,将屏幕中最重要的图像数据写入帧缓冲器。 通过将Z数据添加到预生成图像的数据,可以在背景图像中合成真实的及时生成的对象的图像,给出深度或距离的印象。
    • 16. 发明授权
    • Information processing system
    • 信息处理系统
    • US06535981B1
    • 2003-03-18
    • US09128199
    • 1998-08-03
    • Yusuke Shimizu
    • Yusuke Shimizu
    • G06F1130
    • A63F13/73A63F13/10A63F13/95A63F2300/201A63F2300/206G06F21/10G11B20/00086G11B20/10
    • The information processing system of the present invention is composed of a recording medium 2 and an information processing device 1. The recording medium 2 comprises a first recording region 21 and a second recording region 22. The information processing device 1 either regenerates data recorded in the first recording region 21 of the recording medium 2 or executes a program recorded in the first recording region 21 of the recording medium 2, and comprises recording means for recording specific information of its own into the second recording region 22 of the above-mentioned recording medium 2. The information processing device 1 comprises comparing means 101 for comparing specific information recorded from the recording means with specific information in the second recording region, and processing means 101 for changing the operation of regenerating data of the recording medium or the operation of executing a program in the recording medium 2 in accordance with the result of the comparison.
    • 本发明的信息处理系统由记录介质2和信息处理装置1组成。记录介质2包括第一记录区21和第二记录区22.信息处理装置1再生记录在 记录介质2的第一记录区域21或执行记录在记录介质2的第一记录区域21中的程序,并且包括用于将其自身的特定信息记录到上述记录介质的第二记录区域22中的记录装置 信息处理装置1包括比较装置101,用于将从记录装置记录的特定信息与第二记录区域中的特定信息进行比较;以及处理装置101,用于改变记录介质的再生数据的操作或执行 根据com的结果在记录介质2中编程 型坯
    • 18. 发明授权
    • Fixing apparatus provided with cleaning unit using cleaning fabric
    • 固定装置使用清洁织物设置清洁单元
    • US08977176B2
    • 2015-03-10
    • US13071988
    • 2011-03-25
    • Yusuke ShimizuKenji Takagi
    • Yusuke ShimizuKenji Takagi
    • G03G15/20
    • G03G15/2075G03G15/2025
    • A fixing apparatus for fixing a toner image formed on a recording material includes a rotatable member; a cleaning unit for cleaning the rotatable member, the cleaning unit including a cleaning fabric for cleaning the rotatable member, a feeding roller on which the cleaning fabric is wound, and a winding-up roller for winding up the cleaning fabric fed from the feeding roller; and a load applying mechanism for applying a retarding force against a winding-up operation of the winding-up roller such that when a frictional force between the rotatable member and the cleaning fabric which is in a standstill state and which is in contact with the rotatable member which is rotating exceeds the retarding force of the load applying mechanism, the winding-up roller rotates to wind up the cleaning fabric.
    • 用于固定形成在记录材料上的调色剂图像的定影装置包括可旋转构件; 用于清洁可旋转构件的清洁单元,所述清洁单元包括用于清洁可旋转构件的清洁织物,其上缠绕有清洁织物的进给辊和用于卷绕从进给辊馈送的清洁织物的卷绕辊 ; 以及负载施加机构,用于对所述卷绕辊的卷绕操作施加阻力,使得当所述可旋转构件和所述清洁织物之间的摩擦力处于停止状态并且与所述可旋转构件接触时 旋转的构件超过负载施加机构的阻力,卷绕辊旋转以卷绕清洁织物。
    • 19. 发明授权
    • Optical connector and method of manufacturing same
    • 光连接器及其制造方法
    • US08845208B2
    • 2014-09-30
    • US13275484
    • 2011-10-18
    • Yuichi TsujitaYusuke ShimizuRyusuke Naito
    • Yuichi TsujitaYusuke ShimizuRyusuke Naito
    • G02B6/36G02B6/38G02B6/138
    • G02B6/3885G02B6/138G02B6/3865G02B6/389G02B6/3893
    • An optical connector reduced in size and capable of reducing optical coupling losses when optical waveguides are connected to each other, and a method of manufacturing the same are provided. The optical connector comprises: an optical waveguide including cores for transmitting light, an under cladding layer provided under the cores, and an over cladding layer provided over the cores; and a ferrule section for optical connection provided in each end portion of the optical waveguide. Part of at least one of the over cladding layer and the under cladding layer lying in a location corresponding to each end portion of the optical waveguide is thick-walled to become the ferrule section for optical connection. A thin-walled part of the optical connector lying between the ferrule sections is an optical waveguide section. The optical connector requires no additional component as a ferrule, and is made small in size.
    • 光连接器的尺寸减小,并且当光波导彼此连接时能够减少光耦合损耗,并且提供其制造方法。 光连接器包括:包括用于透射光的芯的光波导,设置在芯下的下敷层和设置在芯上的上敷层; 以及设置在光波导的每个端部中的用于光学连接的套圈部分。 位于与光波导的每个端部对应的位置的上敷层和下敷层中的至少一个的一部分是厚壁的,成为用于光连接的套圈部。 位于套圈部之间的光连接器的薄壁部分是光波导部分。 光连接器不需要额外的部件作为套圈,并且尺寸小。