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    • 2. 发明申请
    • MATRIX TOUCH PANEL DEVICE
    • 矩阵触控面板设备
    • US20090303196A1
    • 2009-12-10
    • US12373612
    • 2006-08-31
    • Yoshihisa Furukawa
    • Yoshihisa Furukawa
    • G06F3/041
    • G06F3/045G06F3/047G06F2203/04104
    • A matrix touch panel device includes input resistive films formed on a first substrate, and output resistive films formed on a second substrate placed face to face with the first substrate and intersecting with the input resistive films in a matrix with a gap therebetween, and by detecting whether any of the input resistive films and any of the output resistive films are in contact at a crossing of the input and output resistive films, detects that the first substrate is pressed against the second substrate at the crossing. The matrix touch panel device includes a voltage applying unit that applies voltage for detecting contact to each input resistive film, a voltage acquiring unit that acquires an output voltage value from each output resistive film, and a determining unit that, for each crossing, based on the acquired output voltage value, determines whether the output is attributed to a contact state.
    • 矩阵式触摸屏装置包括形成在第一基板上的输入电阻膜,以及形成在第二基板上的电阻膜,该第二基板与第一基板面对面放置,并与输入电阻膜以矩形间隔开,并且通过检测 在输入和输出电阻膜的交叉处,输入电阻膜和输出电阻膜中的任一个是否接触,检测到第一基板在交叉处被压靠在第二基板上。 矩阵式触摸屏装置包括施加用于检测与每个输入电阻膜的接触的电压的电压施加单元,从每个输出电阻膜获取输出电压值的电压获取单元,以及基于每个交叉的基于 所获取的输出电压值确定输出是否归因于接触状态。
    • 3. 发明申请
    • EXTERNAL BOOT DEVICE, EXTERNAL BOOT METHOD, INFORMATION PROCESSING APPARATUS, AND NETWORK COMMUNICATION SYSTEM
    • 外部引导装置,外部引导方法,信息处理装置和网络通信系统
    • US20130061032A1
    • 2013-03-07
    • US13697868
    • 2010-05-20
    • Junko SuginakaYoshihisa Furukawa
    • Junko SuginakaYoshihisa Furukawa
    • G06F15/177
    • G06F9/4401G06F21/575
    • An external boot device includes a storage unit (23 and 25) that stores a loader and an extended BIOS to read the loader, an extended BIOS reading processor (201) that reads the extended BIOS onto a RAM (12) of a terminal (1) in response to a read request from system BIOS of the terminal (1), a DMAC (24) that in a bus master scheme transfers the loader to a startup memory region (120) of the RAM (12) in the terminal (1) in response to a transfer request from the extended BIOS read onto the RAM (12) in the terminal (1), and a DMA transfer commander (202). Even if malware hides in BIOS in the terminal (1), a highly secure environment that prevents the malware from appearing in a use environment of the terminal (1) is set.
    • 外部引导装置包括存储装载器和扩展BIOS以读取装载器的存储单元(23和25),将扩展BIOS读取到终端(1)的RAM(12)上的扩展BIOS读取处理器(201) )响应于来自终端(1)的系统BIOS的读取请求,在总线主机方案中的DMAC(24)将加载程序传送到终端(1)中的RAM(12)的启动存储区域(120) )响应于从所述扩展BIOS读取到所述终端(1)中的RAM(12)的传送请求,以及DMA传送命令器(202)。 即使恶意软件隐藏在终端(1)的BIOS中,设置了防止恶意软件出现在终端(1)的使用环境中的高度安全的环境。
    • 4. 发明申请
    • NETWORK COMMUNICATION SYSTEM, SERVER SYSTEM, AND TERMINAL
    • 网络通信系统,服务器系统和终端
    • US20120210177A1
    • 2012-08-16
    • US13502635
    • 2010-10-04
    • Junko SuginakaYoshihisa Furukawa
    • Junko SuginakaYoshihisa Furukawa
    • G06F11/00
    • G06F21/123G06F21/34
    • A network communication system includes a network, a system of authentication servers, and a terminal. The system of the authentication servers includes a plurality of servers that execute a predetermined process in response to an authentication request from the terminal. The terminal includes a connection destination list storage unit that stores information concerning a preset prioritized connection order of connection with the server, fault determining means that, when an authentication request is made to the server, determines whether a traffic fault occurs on the server, and priority order setting means that, if the fault determining means determines that a traffic fault occurs on the server, changes connection to a next server in accordance with the connection order.
    • 网络通信系统包括网络,认证服务器系统和终端。 认证服务器的系统包括响应于来自终端的认证请求而执行预定处理的多个服务器。 终端包括连接目的地列表存储单元,其存储关于与服务器的预设优先连接顺序的信息;故障确定装置,当向服务器发出认证请求时,确定服务器上是否发生流量故障, 优先顺序设定意味着,如果故障确定装置确定在服务器上发生交通故障,则根据连接顺序改变到下一个服务器的连接。
    • 5. 发明申请
    • Network system and authentication method thereof
    • 网络系统及其认证方法
    • US20110320813A1
    • 2011-12-29
    • US13138442
    • 2009-03-10
    • Junko SuginakaYoshihisa Furukawa
    • Junko SuginakaYoshihisa Furukawa
    • H04L9/32G06F15/16
    • H04L9/32H04L63/0428H04L63/08H04L2209/56
    • A management server includes an encryption processor for individually scrambling a control program and authentication information in response to a transmission request from a terminal, a merging unit for merging the control program and the authentication information subsequent to scrambling, a communication control unit for transmitting the merge information to the terminal, and a permission signal generator for checking decrypted authentication information from the terminal against the original authentication information, and generating a permission signal that permits the control program to be installed if the decrypted authentication signal matches the original authentication signal. The terminal includes a communication control unit for transmitting the transmission request to the management server, a decryption processor unit for separating the control program and the authentication information from the merge signal from the management server, and individually decrypting the control program and the authentication information, the communication control unit for returning the decrypted authentication information to the management server, and an installation processor unit for starting installing the control program in response to a reception of the permission signal from the management server.
    • 管理服务器包括:加密处理器,用于响应于来自终端的发送请求单独地加扰控制程序和认证信息;合并单元,用于合并控制程序和加扰后的认证信息;通信控制单元,用于发送合并 向终端提供信息,以及允许信号发生器,用于根据原始认证信息检查来自终端的解密的认证信息,并且如果解密的认证信号与原始认证信号匹配,则生成允许安装控制程序的许可信号。 终端包括用于向管理服务器发送传输请求的通信控制单元,用于从管理服务器从合并信号中分离控制程序和认证信息的解密处理器单元,并且分别解密控制程序和认证信息, 用于将解密的认证信息返回到管理服务器的通信控制单元,以及响应于来自管理服务器的许可信号的接收而开始安装控制程序的安装处理器单元。
    • 6. 发明授权
    • Deflection correcting method for a robot
    • 机器人偏转校正方法
    • US5418441A
    • 1995-05-23
    • US920476
    • 1992-08-24
    • Yoshihisa Furukawa
    • Yoshihisa Furukawa
    • B25J9/10B25J9/16B25J9/18B25J13/00G05B19/18G05B19/404G06F15/46
    • B25J9/1641
    • A method for correcting deflection intended to easily determine displacement of an endpoint of the robot caused by deflection of the robot, or the like, as well as to make accurate correction according to a respective configuration of the robot on the basis of deflection angles of individual axes of the robot. In this method, joint torques acting on the axes (W axis, U axis, . . . ) of the robot 1 are first determined, and the deflection angles of the axes are then determined on the basis of the joint torques. Command values for the axes are corrected on the basis of the deflection angle of each axis, whereby the endpoint position of the robot is accurately corrected to a command position Xd0. Further, on the basis of determined deflection angles of the individual axes, the robot 1 is made to recognize the actual position Xd1 of its deflected endpoint.
    • PCT No.PCT / JP91 / 01778 Sec。 371日期:1992年8月24日 102(e)日期1992年8月24日PCT 1991年12月26日PCT公布。 第WO92 / 12473号公报 日期1992年7月23日。一种用于校正挠曲的方法,其用于容易地确定由机器人的偏转引起的机器人的端点的位移等,并且根据机器人的相应构造进行精确的校正 机器人各个轴的偏转角的基础。 在该方法中,首先确定作用于机器人1的轴线(W轴,U轴等)的关节转矩,然后基于关节转矩来确定轴的偏转角度。 基于每个轴的偏转角校正轴的指令值,由此将机器人的端点位置精确地校正到指令位置Xd0。 此外,基于各个轴的确定的偏转角度,使机器人1识别其偏转端点的实际位置Xd1。
    • 7. 发明申请
    • INFORMATION PROCESSING APPARATUS, TRANSMISSION INFORMATION ENCRYPTION METHOD, AND TRANSMISSION INFORMATION ENCRYPTION PROGRAM
    • 信息处理设备,传输信息加密方法和传输信息加密程序
    • US20110296165A1
    • 2011-12-01
    • US13138391
    • 2009-02-25
    • Junko SuginakaYoshihisa Furukawa
    • Junko SuginakaYoshihisa Furukawa
    • H04L9/28
    • G09C1/02
    • An information processing apparatus of the invention includes a virtual geometric structure (7) including a virtual three-dimensional body having n cubes in each axis direction, each cube rotatable about a central axis in each axis direction with an initial address set in each cube prior to rotation, the initial address being successively shifted in a spiral fashion in response to the rotation of the cube about the central axis, an address conversion unit (3021) for rotating the virtual geometric structure (7) successively about each of the central axes in accordance with a predetermined scrambling rule with a pitch of an integer multiple of ¼(n−1) and calculating a final address responsive to each of the initial addresses subsequent to the shifting, an information segmentation unit (3022) for segmenting transmission target information into a plurality of information units, and a scrambling unit (3023) for re-arranging, prior to the transmission, a sequence of the information units in accordance with the order of the final addresses, instead of the initial addresses assigned prior to the rotation.
    • 本发明的信息处理装置包括虚拟几何结构(7),其包括在每个轴方向上具有n个立方体的虚拟三维体,每个立方体可以围绕每个轴线方向的中心轴旋转,并且在每个立方体中设置初始地址 响应于关于中心轴的立方体的旋转,初始地址以螺旋方式连续移位,用于使虚拟几何结构(7)围绕每个中心轴线依次旋转的地址转换单元(3021) 根据具有¼(n-1)的整数倍的音调的预定加扰规则,并且响应于移位之后的每个初始地址计算最终地址;信息分割单元(3022),用于将发送目标信息分割成 多个信息单元,以及用于在发送之前重新布置信息单元的序列的加扰单元(3023) 根据最终地址的顺序,而不是在旋转之前分配的初始地址。
    • 9. 发明申请
    • EXTERNAL BOOT DEVICE, PROGRAM PRODUCT, EXTERNAL BOOT METHOD, AND NETWORK COMMUNICATION SYSTEM
    • 外部引导设备,程序产品,外部引导方法和网络通信系统
    • US20130124846A1
    • 2013-05-16
    • US13696923
    • 2010-05-11
    • Junko SuginakaYoshihisa Furukawa
    • Junko SuginakaYoshihisa Furukawa
    • G06F21/57
    • G06F21/575G06F9/4401G06F21/85G06F2221/2153H04L63/145
    • A USB memory (2) includes an MBR memory (261), and a distribution processing processor (221). The MBR memory (261) stores an MBR. The MBR is set to start up with higher priority by BIOS of an information processing apparatus and reads a loader to map the loader to a startup memory region of the information processing apparatus. The MBR is a program that position-aligns a stack region in a predetermined stack relationship with an interrupt vector table set in the startup memory region of the information processing apparatus. Prior to a startup of the MBR, the distribution processing processor (221) segments the loader into loader segments of a predetermined number, and generates mapping information in accordance with which the loader segments are loaded to the startup memory region. In this way, the external booting controls activities of malware.
    • USB存储器(2)包括MBR存储器(261)和分发处理处理器(221)。 MBR存储器(261)存储MBR。 MBR被设置为由信息处理设备的BIOS以更高的优先级启动,并读取加载器以将加载器映射到信息处理设备的启动存储器区域。 MBR是将信息处理装置的启动存储区域中设定的中断向量表以与预定的堆叠关系对齐的堆栈区域的程序。 在MBR启动之前,分发处理处理器(221)将加载程序分割成预定数量的加载器段,并且根据加载器段加载到启动存储器区域生成映射信息。 这样,外部引导控制恶意软件的活动。