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    • 1. 发明授权
    • System and method for peripheral device detection on mobile handset serial port
    • 手机串口外围设备检测系统及方法
    • US09090939B1
    • 2015-07-28
    • US11696109
    • 2007-04-03
    • Kotaro MatsuoYasuhiro Ito
    • Kotaro MatsuoYasuhiro Ito
    • H04B1/00C12Q1/68
    • C12Q1/6883C12Q2600/106C12Q2600/156H04M1/72527H04M1/7253
    • A device and method for providing a portable wireless communication device having an external device interface, and which is capable of intelligently configuring itself to operate according to one of a plurality of operating modes according to the needs of an individual user are disclosed. An exemplary device comprises an interface configured to communicatively couple the portable wireless communication device with an external device, and circuitry configured to record an instance of a first operation configuration, detect a coupled external device, predict a most likely next operation mode responsive to recording the instance of the first operation configuration, configure the portable wireless communication device to operate according to a first operating mode in response to the predicted the most likely next operation mode, and communicate with the external device.
    • 公开了一种用于提供具有外部设备接口的便携式无线通信设备的设备和方法,其能够根据个体用户的需要智能地配置自身以根据多种操作模式之一进行操作。 示例性设备包括被配置为将便携式无线通信设备与外部设备通信地耦合的接口,以及被配置为记录第一操作配置的实例的电路,检测耦合的外部设备,响应于记录所述外部设备来预测最可能的下一个操作模式 第一操作配置的实例,根据预测的最可能的下一个操作模式,将便携式无线通信设备配置为根据第一操作模式进行操作,并与外部设备进行通信。
    • 2. 发明授权
    • Puncture repair kit
    • 穿刺修复工具包
    • US08997801B2
    • 2015-04-07
    • US13505883
    • 2010-10-20
    • Yoshihide KojimaWen San ChouYasuhiro Ito
    • Yoshihide KojimaWen San ChouYasuhiro Ito
    • B29C73/16B60S5/04B29C73/02B29L30/00
    • B29C73/166B29C73/025B29L2030/00B60S5/04
    • Disclosed is a puncture repair kit in which a bottle unit is positioned with greater stability. A puncture repair kit (1) comprises a compressor device (2), and a bottle unit (3) in which a cap (6) is attached to an opening (5) in a bottle container (4) which houses a puncture sealing agent. The compressor device (2) comprises a compressed air discharge port (8). The cap (6) comprises an air intake port (27) for feeding compressed air from the compressed air discharge port (8) into the bottle container (4), and a sealing agent/compressed air removal port (7) for removing puncture sealing agent and compressed air in succession from the bottle container (4) by feeding in compressed air. The compressed air discharge port (8) and the air intake port (27) can be directly connected.
    • 公开了一种穿刺修复套件,其中瓶单元被定位成具有更大的稳定性。 一种穿刺修复用具(1),包括压缩机装置(2)和瓶单元(3),其中,在容纳穿刺密封剂的瓶容器(4)中的开口(5)上安装有盖(6) 。 压缩机装置(2)包括压缩空气排出口(8)。 盖(6)包括用于将压缩空气从压缩空气排出口(8)供给到瓶容器(4)中的进气口(27)和用于去除穿刺密封的密封剂/压缩空气排出口(7) 药剂和压缩空气通过进入压缩空气从瓶容器(4)连续地进行。 压缩空气排出口(8)和进气口(27)可以直接连接。
    • 4. 发明授权
    • Thermally-assisted magnetic recording head capable of reducing the number of binding wires
    • 热辅助磁记录头,能够减少装订线的数量
    • US08374061B2
    • 2013-02-12
    • US12190381
    • 2008-08-12
    • Kosuke TanakaKoji ShimazawaYasuhiro Ito
    • Kosuke TanakaKoji ShimazawaYasuhiro Ito
    • G11B11/00
    • G11B5/314G11B5/02G11B5/6088G11B2005/0005G11B2005/0021
    • A slider has a slider substrate, an electromagnetic transducer, a waveguide for receiving light from a surface on the side opposite from a medium-opposing surface and guiding the light to the medium-opposing surface side, and a device electrode electrically connected to the electromagnetic transducer. A light source unit includes a light source supporting substrate, a light source, and a lead extending from the slider side to the side opposite from the slider and having both end parts exposed at a surface of the light source unit. The device electrode of the slider is exposed at the surface of the slider on the side opposite from the medium-opposing surface without being covered with the light source unit. An end part on the slider side of the lead of the light source unit is soldered to the device electrode of the slider.
    • 滑块具有滑块基板,电磁换能器,用于从与介质相对表面相对的一侧上的表面接收光并将光引导到介质相对表面侧的波导,以及电连接到电磁 传感器。 光源单元包括光源支撑基板,光源和从滑块侧延伸到与滑块相对的一侧的引线,并且两端部露出在光源单元的表面。 滑块的器件电极在与中间相对表面相对的一侧的滑块的表面处被暴露,而不被光源单元覆盖。 将光源单元的引线的滑块侧的端部焊接到滑块的器件电极。
    • 6. 发明申请
    • Computer System, Simulation Method and Program
    • 计算机系统,仿真方法和程序
    • US20120102175A1
    • 2012-04-26
    • US13277356
    • 2011-10-20
    • Yasuhiro ITO
    • Yasuhiro ITO
    • G06F15/173
    • G06F17/5022G06F2217/04
    • In a computer environment in which different types of simulations run, a speculative communication method can be performed on a combination of any model and any simulator. The simulations are divided into one or more groups and mounted on an execution node in which a virtual OS runs. A communication protocol simulation device which is a control program of inter-simulation communication and a virtual OS execution management server device which is an execution control program of a virtual OS group run on a management node separately from the virtual OS group that executes the simulations. When the communication protocol simulation device of the management node detects a WAR hazard, the virtual OS execution management server device instructs a virtual OS execution management client device so that a virtual OS in which the WAR hazard occurs returns to a stored intermediate state and re-executes the simulation to a predetermined time.
    • 在运行不同类型的模拟的计算机环境中,可以对任何模型和任何模拟器的组合执行推测性通信方法。 模拟被划分成一个或多个组并且安装在虚拟OS运行的执行节点上。 作为模拟间通信的控制程序的通信协议模拟装置和作为与执行模拟的虚拟OS组分开地在管理节点上运行的虚拟OS组的执行控制程序的虚拟OS执行管理服务器装置。 当管理节点的通信协议模拟装置检测到WAR危险时,虚拟OS执行管理服务器装置指示虚拟OS执行管理客户端装置,使得出现WAR危险的虚拟OS回到存储的中间状态, 将模拟执行到预定时间。