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    • 4. 发明申请
    • SEMICONDUCTOR LASER DEVICE
    • 半导体激光器件
    • US20120033700A1
    • 2012-02-09
    • US13198443
    • 2011-08-04
    • Kazuhiro SoejimaTakuya NagaiToru Yoshida
    • Kazuhiro SoejimaTakuya NagaiToru Yoshida
    • H01S5/026
    • H01S5/02212H01S3/0078H01S3/025H01S3/0621H01S3/0627H01S3/09415H01S3/109H01S3/1312H01S5/02296H01S5/0287
    • A semiconductor laser device includes a semiconductor laser element configured to emit a fundamental wave; a transducer configured to receive the fundamental wave incident thereon and convert a wavelength of the fundamental wave to emit wavelength converted light; a filter configured to selectively transmit wavelength range light having a desired wavelength range of the wavelength converted light; a sealing member including a light-transmitting member and configured to enclose the semiconductor laser element, the light-transmitting member being configured to receive the wavelength range light transmitted through the filter and incident on the light-transmitting member, specularly reflect part of the wavelength range light, and substantially transmit the remaining part of the wavelength range light; and a photoreceptor configured to receive the specularly reflected light from the light-transmitting member.
    • 半导体激光器件包括:发射基波的半导体激光器元件; 被配置为接收入射到其上的基波并转换基波的波长以发射波长转换的光的换能器; 滤波器,被配置为选择性地发射具有所述波长转换的光的所需波长范围的波长范围的光; 密封构件,包括透光构件并且被构造成包围半导体激光元件,所述透光构件被配置为接收透射过滤器并入射到透光构件上的波长范围光,镜面反射部分波长 并且基本上透射波长范围光的剩余部分; 以及被配置为接收来自所述光透射部件的镜面反射光的感光体。
    • 6. 发明申请
    • COATING LAYER FOR SOLAR BATTERIES, AND ITS PRODUCTION PROCESS
    • 太阳能电池涂层及其生产工艺
    • US20110256375A1
    • 2011-10-20
    • US12830635
    • 2010-07-06
    • Toru YOSHIDAYasukazu Kishimoto
    • Toru YOSHIDAYasukazu Kishimoto
    • C08L33/06
    • C03C17/32C03C17/007C03C17/3678C03C17/38C03C2217/445C03C2217/478C03C2217/732G02B1/105G02B1/111G02B1/14H01L31/0481Y02E10/50
    • The invention has for its object to coat a single layer form of low-refractive organic thin-film layer on a cover glass of a solar battery to enhance the light-collection efficiency of a solar battery module by a simple method, thereby enhancing the ability of collect sunlight.The invention provides a coating layer for solar batteries which can be formed directly on a protective layer of a solar battery module and used in direct contact with the air. The fluorine-containing coating layer for solar batteries is characterized by having a fluorine content of 5% by weight or greater. This coating layer or protective layer is formed by polymerizing and curing a composition comprising a methacrylate compound and/or an acrylate compound containing a fluoroalkyl group and/or a fluorine-containing polymer dissolved or dispersed in an organic solvent, a fluorine-free organic compound containing 1 to 5 acryloyl groups or methacryloyl groups, and a photo-polymerization initiator, optionally with the addition of fumed silica to it.
    • 本发明的目的是在太阳能电池的盖玻璃上涂覆单层低折射有机薄膜层,以通过简单的方法提高太阳能电池组件的集光效率,从而提高太阳能电池模块的光收集效率 收集阳光。 本发明提供一种能够直接形成在太阳能电池模块的保护层上并用于与空气直接接触的太阳能电池用涂层。 用于太阳能电池的含氟涂层的特征在于氟含量为5重量%以上。 该涂层或保护层通过聚合和固化包含甲基丙烯酸酯化合物和/或含有溶解或分散在有机溶剂中的氟代烷基和/或含氟聚合物的丙烯酸酯化合物,无氟有机化合物 含有1至5个丙烯酰基或甲基丙烯酰基,以及光聚合引发剂,任选地向其中加入热解法二氧化硅。
    • 7. 发明申请
    • COMPOSITIONS FOR LOW REFRACTIVE-INDEX FILMS
    • 低折射率薄膜的组成
    • US20110253951A1
    • 2011-10-20
    • US12830799
    • 2010-07-06
    • Toru YOSHIDAYasukazu KISHIMOTO
    • Toru YOSHIDAYasukazu KISHIMOTO
    • F21V9/06
    • C08F220/22C09D133/14C08L35/00
    • The present invention relates to a composition for low-refractive-index films, components (b) and (c), and an organic solvent. Component (b) is a fluorine-containing polymer. Component (c) is one or more of acrylic acid derivatives and methacrylic acid derivatives having 1 to 5 acryloyl groups or methacryloyl groups. Component (b) is a copolymer comprising 10 to 50 parts by mole of one or more of fluorine-containing polymers having cyclic structures as represented by formulae (1), (2) and (3), and tetrafluoroethylene; 0 to 50 parts by mole of hexafluoropropylene; 90 to 10 parts by mole of vinylidene fluoride; and 10 to 100 parts by mole of vinyl fluoride and component (b) is one or more of methacrylate compounds and acrylate compounds containing a fluoroalkyl group having 1 to 10 carbon atoms.
    • 本发明涉及低折射率膜(b)和(c)成分的组合物和有机溶剂。 组分(b)是含氟聚合物。 组分(c)是具有1至5个丙烯酰基或甲基丙烯酰基的丙烯酸衍生物和甲基丙烯酸衍生物中的一种或多种。 组分(b)是包含10至50摩尔份由式(1),(2)和(3)表示的一种或多种具有环状结构的含氟聚合物和四氟乙烯的共聚物; 0〜50摩尔份的六氟丙烯; 90〜10摩尔的偏二氟乙烯; 和10〜100摩尔份的氟乙烯,(b)成分是含有碳原子数为1〜10的氟代烷基的甲基丙烯酸酯化合物和丙烯酸酯化合物中的一种以上。
    • 8. 发明授权
    • Image forming device with a manual darkness adjusting section
    • 具有手动黑度调节部分的图像形成装置
    • US07983578B2
    • 2011-07-19
    • US11266470
    • 2005-11-04
    • Toru YoshidaShigeru Tsukada
    • Toru YoshidaShigeru Tsukada
    • G03G15/00
    • G03G15/0131G03G15/502G03G15/5054G03G15/5058G03G2215/00059
    • An image forming device includes an image forming section; a storage section that stores a target darkness of a standard image; a measurement section that measures the darkness of the image formed by the image forming section; a user calibration section that causes the image forming section to form a standard image causes the measurement section to measure the darkness of that standard image, and if there is a discrepancy between the darkness of the standard image specified by the measurement of the physical quantity and the target darkness stored in the storage section, adjusts the image formation conditions to eliminate the discrepancy; a manual darkness adjustment section that changes the image formation conditions to content that is specified by the user; a control section that causes the image forming section to follow image formation conditions that do not reflect the content changed by the manual darkness adjustment section.
    • 图像形成装置包括图像形成部; 存储部,其存储标准图像的目标黑暗; 测量部分,其测量由图像形成部分形成的图像的黑暗; 使图像形成部形成标准图像的用户校准部使测量部测量该标准图像的黑暗,并且如果通过物理量的测量指定的标准图像的黑暗与 存储在存储部分中的目标黑暗,调整图像形成条件以消除差异; 手动黑暗调整部,其将图像形成条件改变为由用户指定的内容; 控制部,其使图像形成部追随不反映由手动黑暗调整部变化的内容的图像形成条件。
    • 9. 发明申请
    • Obstacle detection apparatus and method of controlling obstacle detection apparatus
    • 障碍物检测装置及障碍物检测装置的控制方法
    • US20100246327A1
    • 2010-09-30
    • US12661740
    • 2010-03-23
    • Toru Yoshida
    • Toru Yoshida
    • G01S15/08
    • G01S15/931G01S7/52003G01S7/52004G01S2015/936G01S2015/938
    • An obstacle detection apparatus includes an ultrasonic sensor and a control part. The ultrasonic sensor detects a presence of an obstacle around a vehicle and a distance to the obstacle by transmitting an ultrasonic wave and receiving the ultrasonic wave reflected by the obstacle. The control part includes at least one of a rainfall amount determining portion and a noise determining portion. When the rainfall determining portion determines that a rainfall amount is greater than a predetermined amount or when the noise determining portion determines that noise is present, the control part outputs a command signal to the ultrasonic sensor so that the ultrasonic sensor decreases a directivity compared with a case where the rainfall determining portion determines that the rainfall amount is less than or equal to the predetermined amount or a case where the noise determining portion determines that noise is not present.
    • 障碍物检测装置包括超声波传感器和控制部。 超声波传感器通过发送超声波并接收由障碍物反射的超声波来检测车辆周围的障碍物与障碍物的距离。 控制部分包括降雨量确定部分和噪声确定部分中的至少一个。 当降雨判定部判断为降雨量大于规定量时,或者噪声判定部判定为存在噪声的情况下,控制部向超声波传感器输出指令信号,使得超声波传感器与 降雨判定部判断为降雨量小于或等于规定量的情况,噪声判定部判定为不存在噪声的情况。