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    • 85. 发明授权
    • Numerical control device
    • 数控装置
    • US09002500B2
    • 2015-04-07
    • US13643413
    • 2010-04-27
    • Kosuke KuboMasayoshi SakakibaraMasato TsukamotoNobuyuki Takahashi
    • Kosuke KuboMasayoshi SakakibaraMasato TsukamotoNobuyuki Takahashi
    • G06F19/00G05B19/4061
    • G05B19/4061
    • A numerical control device including a collision determining unit that detects a possibility of collision between a machine and an area set as an entry prohibited area; an operation-continuation instructing unit that instructs whether to continue an operation when the collision determining unit detects the possibility of collision and shaft movement is temporarily stopped; a machining-information storage unit that stores internal operation information of the numerical control device regarding the temporary stop when the operation-continuation instructing unit instructs continuation of the operation; and a collision-determination processing unit that invalidates a collision determination on the basis of the operation information stored in the machining-information storage unit when executing the same machining program the next and subsequent times.
    • 一种数字控制装置,包括:碰撞判定单元,其检测机器与被设定为入口禁止区域的区域之间的碰撞的可能性; 当碰撞确定单元检测到碰撞和轴移动的可能性暂时停止时,指示是否继续操作的操作继续指示单元; 加工信息存储单元,当所述操作继续指示单元指示所述操作的继续时,存储关于所述临时停止的所述数字控制装置的内部操作信息; 以及碰撞判定处理单元,其在执行下一个和后续时间的相同加工程序时,基于存储在加工信息存储单元中的操作信息来使碰撞确定无效。
    • 87. 发明授权
    • Stand device for portable electronic device
    • 便携式电子设备支架设备
    • US08608123B2
    • 2013-12-17
    • US13201959
    • 2009-12-25
    • Nobuyuki TakahashiNobuyoshi Ishiwata
    • Nobuyuki TakahashiNobuyoshi Ishiwata
    • A47B91/00A47G29/00B65D19/00H05K5/00G06F1/16H05K7/00
    • H04M1/04H02J7/0044
    • To provide a stand device capable of improving workability in removing a portable electronic device. A stand device has a pedestal and a lever mechanism. The pedestal is supported movable between a support portion for supporting an electronic device mounted on the support surface and a removal position at which the pedestal is arranged through a movement thereof in which the pressing portion descends. The lever mechanism includes a pressed arm and a projection. The pressed arm is pressed by the pressing portion to thus move downward when the pedestal moves from the support position to the removal position. The projection moves upward along with the rotation of the fulcrum portion caused by the downward movement of the pressed arm to thus project from the support surface of the pedestal.
    • 提供能够提高移动便携式电子设备的可操作性的支架装置。 支架装置具有基座和杠杆机构。 基座支撑在支撑安装在支撑表面上的电子装置的支撑部分和通过其按压部分下降的运动之间布置基座的去除位置之间可移动。 杠杆机构包括按压臂和突起。 当基座从支撑位置移动到移除位置时,按压臂被按压部分按压从而向下移动。 随着按压臂的向下运动而引起支点旋转的突起向上移动,从而从基座的支撑表面突出。
    • 88. 发明申请
    • PROCESSING SIMULATION METHOD AND APPARATUS, AND PROGRAM MAKING COMPUTER EXECUTE THE METHOD
    • 处理模拟方法和装置,程序计算机执行方法
    • US20120016507A1
    • 2012-01-19
    • US13259004
    • 2009-05-20
    • Kenji IriguchiTakashi KamiyaMahito MatsuuraTakashi YonedaNobuyuki Takahashi
    • Kenji IriguchiTakashi KamiyaMahito MatsuuraTakashi YonedaNobuyuki Takahashi
    • G05B13/04
    • G05B19/4069G05B2219/49157
    • A processing simulation method and apparatus is provided, which can appropriately detect interference between a tool processing area and a shape model of a material without being affected by the accuracy of expression of a tool movement path and the shape model. A tool shape model for processing a material, that includes a strict tool shape, and a tool shape model for checking interference, that is included in the strict tool shape, are generated by tool model setting unit according to an error range set in consideration of the tool movement path and the expression accuracy of the shape model, and the processed material shape model is generated by generating a tool processing area shape model from the tool movement path during processing feed and the tool shape model for processing the material and removing the tool processing area shape model from the material shape model. The tool processing area shape model is generated from a tool movement path during fast feed and the tool shape model for detecting the interference, and the interference between the tool processing area shape model and the material shape model is detected.
    • 提供一种处理模拟方法和装置,其可以适当地检测工具处理区域和材料的形状模型之间的干扰,而不受工具移动路径和形状模型的表达精度的影响。 由工具模型设定单元根据考虑到的设定的误差范围,生成包含在严格的工具形状中的用于处理材料的工具形状模型(包括严格的工具形状)和用于检查干涉的工具形状模型 通过在处理进给期间从工具移动路径生成工具处理区域形状模型和用于处理材料并移除工具的工具形状模型来生成工具移动路径和形状模型的表达精度以及加工材料形状模型 加工区域形状模型从材料形状模型。 刀具加工区域形状模型由快速进给期间的刀具运动路径和用于检测干涉的刀具形状模型产生,并且检测刀具加工区域形状模型与材料形状模型之间的干涉。
    • 89. 发明授权
    • In-vehicle display device
    • 车载显示设备
    • US08049609B2
    • 2011-11-01
    • US12320776
    • 2009-02-04
    • Nobuyuki TakahashiKunimitsu AokiMasahiro Takamatsu
    • Nobuyuki TakahashiKunimitsu AokiMasahiro Takamatsu
    • B60Q1/00G09G5/00G06K9/00G03B21/56
    • G02B27/01B60K35/00B60Q3/78G02B2027/0127G02B2027/0138
    • An in-vehicle display device includes (a) a display unit provided on a surface of an instrument panel of a vehicle, opposed to a windshield of the vehicle, and configured to indicate a plurality of information dots V in a row or in a rectangular array on the windshield such that the necessary information dots are selectably displayed from among the plurality of the information dots and superposed upon a real image viewed through the windshield, (b) a target information acquisition unit that obtains target information of which a driver of the vehicle is to be notified, and (c) a display control unit that controls the display unit and makes the display unit indicate the predetermined information dots V that correspond to the target information that has been obtained by the target information acquisition unit.
    • 车载显示装置包括:(a)显示单元,其设置在与车辆的挡风玻璃相对的车辆的仪表板的表面上,并且被配置为指示多个信息点V成行或矩形 阵列,使得从多个信息点中可选择地显示必要的信息点,并叠加在通过挡风玻璃观察的实际图像上;(b)目标信息获取单元,其获取目标信息,其中, 要通知车辆,以及(c)显示控制单元,其控制显示单元并使显示单元指示与由目标信息获取单元获得的目标信息相对应的预定信息点V.