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    • 24. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20100026632A1
    • 2010-02-04
    • US12576995
    • 2009-10-09
    • Hideyuki ISHIDAMasami AIHARATsuyoshi HAYAMANaoki ITO
    • Hideyuki ISHIDAMasami AIHARATsuyoshi HAYAMANaoki ITO
    • G06F3/02G09G3/00
    • H04M1/22H01H2219/03H01H2219/039H01H2219/06H04M1/23
    • A reflective display portion includes indication and background portions. A first reflective layer is formed on the indication portion, and a second reflective layer is formed on the background portion on an outer surface of a translucent sheet. Each of the indication and the background portions has a different reflectance value. A light limiting layer is formed on an inner surface of the sheet at an inner side of the second reflective layer so as to reduce a difference of a light transmittance between the indication portion and the background portion. When the external light reflects, the indication portion and the background portion of the reflective display portion are observable owing to the difference of the light reflectance. The light from the light emitting display portion transmits the indication and background portions such that the display content of the light emitting display portion is observable.
    • 反射显示部分包括指示和背景部分。 第一反射层形成在指示部上,第二反射层形成在透光性片的外表面的背景部上。 每个指示和背景部分具有不同的反射率值。 在第二反射层的内侧的片材的内表面上形成限光层,以减少指示部分和背景部分之间的透光率差异。 当外部光反射时,反射显示部分的指示部分和背景部分由于光反射率的差异而可观察到。 来自发光显示部分的光透射指示和背景部分,使得发光显示部分的显示内容是可观察的。
    • 26. 发明申请
    • METHOD OF MANUFACTURING SEMICONDUCTOR LIGHT-EMITTING ELEMENT
    • 制造半导体发光元件的方法
    • US20090081821A1
    • 2009-03-26
    • US12275823
    • 2008-11-21
    • Masami Aihara
    • Masami Aihara
    • H01L33/00
    • H01L33/0079H01L33/22
    • A semiconductor layer is provided on a surface of a sapphire substrate, the sapphire substrate having smooth surfaces. A support substrate is mounted on an electrode formation surface of the semiconductor layer. A surface portion of the semiconductor layer is melted, and the sapphire substrate is separated from the semiconductor layer at an interface between the sapphire substrate and the semiconductor layer, thereby exposing the semiconductor layer. While the surface portion of the exposed semiconductor layer is melted, the holding substrate with projections/depressions or stripe grooves is pressed against the surface portion of the semiconductor layer, so that the projections/depressions or stripe grooves formed in the holding substrate are transferred onto the surface portion of the semiconductor layer. The support substrate is separated from the semiconductor layer at an interface between the semiconductor layer and the support substrate.
    • 在蓝宝石衬底的表面上设置半导体层,蓝宝石衬底具有光滑的表面。 支撑基板安装在半导体层的电极形成表面上。 半导体层的表面部分被熔化,并且蓝宝石衬底在蓝宝石衬底和半导体层之间的界面处与半导体层分离,从而暴露半导体层。 当暴露的半导体层的表面部分熔化时,具有凸起/凹陷或条纹沟槽的保持基板被压在半导体层的表面部分上,使得形成在保持基板上的凸起/凹槽或条纹沟槽被转移到 半导体层的表面部分。 支撑衬底在半导体层和支撑衬底之间的界面处与半导体层分离。
    • 27. 发明申请
    • Storage device, control method thereof and program
    • 存储设备及其控制方法和程序
    • US20070130391A1
    • 2007-06-07
    • US11325669
    • 2006-01-04
    • Masami Aihara
    • Masami Aihara
    • G06F5/00
    • G11B21/12
    • The storage device of the invention has a ramp mechanism which shakes out the head onto the disk medium, and causes the head to evacuate from the medium to hold it. The command queuing processing unit stores input/output commands into the command queue in the order of issuance by the host, and then, executes the commands in arrangement in the increasing order of the medium access time. Completion of commands is responded to the host in the order of completion of execution. The end of command is responded to the host in the order of end of execution. The emergency evacuation processing unit interrupts, upon receipt of an emergency evacuation command from the host during operation of the command queuing processing unit, operation of the command queuing processing unit and protects the head by causing the head to evacuate from the medium to the ramp mechanism.
    • 本发明的存储装置具有将头部摇动到盘介质上的斜坡机构,并使头从介质中排出以保持其。 命令排队处理单元按照主机发布的顺序将输入/输出命令存储到命令队列中,然后按照媒体访问时间的增加顺序执行命令。 按照完成执行的顺序对主机完成命令的响应。 命令结束按照执行结束的顺序对主机进行响应。 紧急疏散处理单元在命令排队处理单元的动作期间接收到来自主机的紧急撤离命令时,中断命令排队处理单元的动作,并通过使头部从介质排出到斜坡机构来保护头部 。
    • 30. 发明授权
    • Hardware and software co-simulator and its method
    • 硬件和软件协同仿真器及其方法
    • US5987243A
    • 1999-11-16
    • US919779
    • 1997-08-29
    • Masami Aihara
    • Masami Aihara
    • G06F11/28G06F17/50
    • G06F17/5022
    • The disclosed hardware and software co-simulator can execute two simulations effectively between two simulators each for executing simulation independently, by eliminating the idle times for waiting the execution end of the opposite simulator. The co-simulator is constructed in such a way that the time data generated at which the events transferred between a fist simulator and a second simulator occur can be extracted by analyzing the simulation data; and the expected occurrence times of the events to be transferred between the simulators are previously indicated to each simulator on the basis of the event occurrence time data.
    • 所公开的硬件和软件协同仿真器可以在两个模拟器之间有效地执行两个模拟器,用于独立地执行仿真,通过消除等待相对模拟器的执行端的空闲时间。 协同仿真器的构造方式是通过分析模拟数据来提取在第一模拟器和第二模拟器之间传送的事件所产生的时间数据; 并且根据事件发生时间数据预先向每个模拟器指示要在模拟器之间传送的事件的预期发生时间。