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    • 1. 发明授权
    • Reflective optical element
    • 反光光学元件
    • US06665120B2
    • 2003-12-16
    • US09394320
    • 1999-09-13
    • Hideyuki HatakeyamaMasanobu Ohgane
    • Hideyuki HatakeyamaMasanobu Ohgane
    • G02B110
    • G02B5/0866G02B5/0858Y10T428/3154
    • The present invention provides a reflective optical element being excellent in reflectivity and transmittance having a metallic thin film being excellent in durability and abrasion resistance wherein, in the reflective optical element in which light impinges in the transparent substrate and projects out after repeating reflection on the back plane, the reflection plane is formed by laminating the transparent substrate, metallic thin film and amorphous fluorocarbon resin in this order while forming a layer of the amorphous fluorocarbon resin on the incident and projection planes simultaneously with forming the layer on the outermost layer to allow durability and abrasion resistance to be improved with the amorphous fluorocarbon resin on the reflection plane, silver being deposited on the metallic layer by electroless plating in depositing the films while the amorphous fluorocarbon resin being preferably deposited by a wet film-deposition method such as a dip-coating method.
    • 本发明提供一种具有优异的反射率和透射率的反射光学元件,其具有耐久性和耐磨性优异的金属薄膜,其中在反射光学元件中,其中光照射在透明基板中并在背面反复反射之后突出出来 在反射面上依次层叠透明基板,金属薄膜和无定形碳氟树脂,同时在入射面和投影面上同时形成非晶氟碳树脂层,同时在最外层形成层,从而使耐久性 并且通过反射平面上的无定形氟碳树脂改善耐磨性,在沉积薄膜的同时通过无电解电镀将银沉积在金属层上,而非晶氟碳树脂优选通过湿式薄膜沉积方法如浸渍 - 涂布方法。
    • 5. 发明授权
    • Communication apparatus
    • 通讯设备
    • US08959342B2
    • 2015-02-17
    • US12964041
    • 2010-12-09
    • Hideyuki Hatakeyama
    • Hideyuki Hatakeyama
    • H04L9/32H04L9/08
    • H04L9/0844H04L9/3271
    • A communication apparatus performs data communication with a communication device, and includes an authentication processing portion configured to perform authentication processing, including a round trip time (RTT) test on authentication requests received from one or more unauthenticated communication devices and a data communication portion configured to perform data communications with the communication device authenticated by the authentication processing portion. If, in authentication processing of a current authentication request, a prior RTT test is being performed corresponding to a prior authentication request originating from the same communication device, the current RTT test is not performed, and authentication processing waits for the completion of the prior RTT test. If the result of the prior RTT test is successful, authentication processing uses the result of the prior RTT test as the result corresponding to the current authentication request.
    • 通信装置与通信装置进行数据通信,具备认证处理部,被配置为执行认证处理,包括从一个以上未认证通信装置接收的认证请求的往返时间(RTT)检验,以及配置为 与通过认证处理部认证的通信装置进行数据通信。 如果在当前认证请求的认证处理中,对应于来自同一通信设备的先前认证请求正在执行先前的RTT测试,则不执行当前RTT测试,并且认证处理等待完成先前的RTT 测试。 如果先前RTT测试的结果成功,则认证处理使用先前RTT测试的结果作为对应于当前认证请求的结果。
    • 6. 发明授权
    • Communication apparatus
    • 通讯设备
    • US08213450B2
    • 2012-07-03
    • US12730030
    • 2010-03-23
    • Hideyuki Hatakeyama
    • Hideyuki Hatakeyama
    • H04L12/28
    • H04L12/40058
    • A CR/CMP layer sets up isochronous channels, the number of which is that of data streams to be transferred, and sets channel numbers associated with the isochronous channels in IT packet processing units of IT processing units of bus control LSI units connected to data streams of AV devices. The IT processing units of the bus control LSI units are caused to perform transmission/reception of isochronous packets using isochronous channels having the set channel numbers. The IT packet processing unit of the IT processing unit of each stealth bus control LSI unit sets, in an SID field of the CIP header of an isochronous packet to be transmitted, the node ID of the representative bus control LSI unit instead of its own node ID.
    • CR / CMP层设置同步信道,其数量是要传输的数据流的等时信道,并且在连接到数据流的总线控制LSI单元的IT处理单元的IT分组处理单元的IT分组处理单元中设置与等时信道相关联的信道号 的AV设备。 使总线控制LSI单元的IT处理单元使用具有设定的通道号的等时通道来执行同步分组的发送/接收。 每个隐形总线控制LSI单元的IT处理单元的IT分组处理单元在要发送的同步分组的CIP报头的SID字段中设置代表总线控制LSI单元的节点ID而不是其自己的节点 ID。
    • 7. 发明申请
    • COMMUNICATION APPARATUS
    • 通讯设备
    • US20110026707A1
    • 2011-02-03
    • US12730045
    • 2010-03-23
    • Hideyuki Hatakeyama
    • Hideyuki Hatakeyama
    • H04L9/18G06F3/00
    • H04L12/40058H04L12/40104H04L63/0428H04L2012/2849
    • A communication apparatus includes a plurality of isochronous transfer processing units, each of which is configured to perform isochronous transfer using an isochronous channel set thereto; a security ensuring processing unit coupled to each of the plurality of isochronous transfer processing units, and configured to perform security ensuring processing to ensure the security of isochronous transfer performed by the corresponding isochronous transfer processing unit; and a security ensuring control unit configured to, in response to a request from a second communication apparatus for ensuring security of isochronous transfer, cause the security ensuring processing unit corresponding to the isochronous transfer processing unit which performs the isochronous transfer using an isochronous channel having been notified from the second communication apparatus along with or in advance of the request for ensuring security of isochronous transfer to perform the security ensuring processing.
    • 通信装置包括多个等时传送处理单元,每个等时传送处理单元被配置为使用设置的同步信道来执行同步传送; 安全确保处理单元,其耦合到所述多个同步传送处理单元中的每一个,并且被配置为执行安全性确保处理以确保由对应的同步传送处理单元执行的同步传送的安全性; 以及安全保证控制单元,被配置为响应于来自第二通信装置的用于确保同步传输的安全性的请求,使得使用等时信道执行同步传送的同步传送处理单元对应的安全确保处理单元 从第二通信装置通知或者提前确保等时传输的安全性的请求以执行安全确保处理。
    • 8. 发明申请
    • Polygon mirror and method of manufacturing the same, optical scanner and electrophotograph
    • 多边形镜及其制造方法,光学扫描仪和电子照相
    • US20050002077A1
    • 2005-01-06
    • US10635543
    • 2003-08-07
    • Hideyuki HatakeyamaYasuhiro Matsuo
    • Hideyuki HatakeyamaYasuhiro Matsuo
    • B41J2/44B41J2/47G02B1/10G02B5/08G02B5/09G02B26/12H04N1/036H04N1/113G02B26/08
    • G02B5/09Y10S359/90
    • A polygon mirror that can be manufactured at low cost and high productivity and a method of manufacturing the same, a polygon mirror that can be manufactured at low cost and presents little variations in reflectance in a wide range of angles of incident, an optical scanner and electrophotographic equipment that are less expensive and compact is provided. The polygon mirror has a single layer film formed of a substance having an index of reflection of 1.45 or below on the reflecting surface. The method of manufacturing the prism shaped polygon mirror having a film on the reflecting surface comprises a step of application for applying a solution containing a substance for forming a film on the reflecting surface, and a step of forming a coated film of the solution on the reflecting surface by rotating the polygon mirror, and the solution is applied only in the area of which the distance from the axis of rotation of the polygon mirror is at least Ri in the application step, where Ri is the minimum distance between the reflecting surface and the axis of rotation. The polygon mirror preferably has a film having the distribution of film thickness on the reflecting surface. Such a polygon mirror is included in the optical scanner and electrophotographic equipment.
    • 可以以低成本和高生产率制造的多面镜及其制造方法,可以以低成本制造并且在大范围的入射角度下的反射率几乎不变化的多面镜,光学扫描仪和 提供了较便宜和紧凑的电照相设备。 多面镜具有由反射面上的反射指数为1.45以下的物质形成的单层膜。 制造在反射面上具有膜的棱镜形多面反射镜的方法包括在反射面上涂布含有形成膜的物质的溶液的步骤,以及在该反射面上形成溶液的被覆膜的工序 通过旋转多面镜来反射表面,并且溶液仅施加在应用步骤中距多棱镜的旋转轴线的距离至少为Ri的区域中,其中Ri是反射表面与反射面之间的最小距离 旋转轴。 多面镜优选具有在反射面上具有膜厚分布的膜。 这种多面镜包括在光学扫描仪和电子照相设备中。