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    • 1. 发明授权
    • Coordinate measuring machine
    • 坐标测量机
    • US08229694B2
    • 2012-07-24
    • US12651082
    • 2009-12-31
    • Hideyuki NakagawaNobuhiro Ishikawa
    • Hideyuki NakagawaNobuhiro Ishikawa
    • G01C17/38
    • G01B21/045
    • A coordinate measuring machine includes: a probe that has a contact point capable of movement within a predetermined range; a movement mechanism for moving the probe; and a controller for controlling the movement mechanism. The controller has a measurement value calculating unit for calculating a position of the contact point based on a displacement of the movement mechanism and a displacement of the probe. The measurement value calculating unit includes: a correction parameter calculator for calculating a correction parameter for correcting the displacement of the probe based on a measurement condition in measuring an object; a corrector for correcting the displacement of the probe based on the correction parameter; and a displacement synthesizing unit that synthesizes the displacement of the movement mechanism and the displacement of the probe corrected by the corrector to calculate the position of the contact point.
    • 坐标测量机包括:具有能够在预定范围内移动的接触点的探头; 用于移动探针的移动机构; 以及用于控制移动机构的控制器。 控制器具有测量值计算单元,用于基于移动机构的位移和探头的位移来计算接触点的位置。 测量值计算单元包括:校正参数计算器,用于基于测量对象中的测量条件来计算用于校正探针的位移的校正参数; 校正器,用于基于校正参数校正探针的位移; 以及位移合成单元,其合成所述移动机构的位移和由所述校正器校正的所述探头的位移,以计算所述接触点的位置。
    • 2. 发明申请
    • COORDINATE MEASURING MACHINE
    • 坐标测量机
    • US20100174504A1
    • 2010-07-08
    • US12651082
    • 2009-12-31
    • Hideyuki NakagawaNobuhiro Ishikawa
    • Hideyuki NakagawaNobuhiro Ishikawa
    • G01B5/008G06F19/00
    • G01B21/045
    • A coordinate measuring machine includes: a probe that has a contact point capable of movement within a predetermined range; a movement mechanism for moving the probe; and a controller for controlling the movement mechanism. The controller has a measurement value calculating unit for calculating a position of the contact point based on a displacement of the movement mechanism and a displacement of the probe. The measurement value calculating unit includes: a correction parameter calculator for calculating a correction parameter for correcting the displacement of the probe based on a measurement condition in measuring an object; a corrector for correcting the displacement of the probe based on the correction parameter; and a displacement synthesizing unit that synthesizes the displacement of the movement mechanism and the displacement of the probe corrected by the corrector to calculate the position of the contact point.
    • 坐标测量机包括:具有能够在预定范围内移动的接触点的探头; 用于移动探针的移动机构; 以及用于控制移动机构的控制器。 控制器具有测量值计算单元,用于基于移动机构的位移和探头的位移来计算接触点的位置。 测量值计算单元包括:校正参数计算器,用于基于测量对象中的测量条件来计算用于校正探针的位移的校正参数; 校正器,用于基于校正参数校正探针的位移; 以及位移合成单元,其合成所述移动机构的位移和由所述校正器校正的所述探头的位移,以计算所述接触点的位置。
    • 5. 发明授权
    • Profile measuring instrument
    • 型材测量仪器
    • US08567084B2
    • 2013-10-29
    • US13182027
    • 2011-07-13
    • Motonori OgiharaHideyuki Nakagawa
    • Motonori OgiharaHideyuki Nakagawa
    • G01B5/008G01B7/008
    • G01B21/045
    • A coordinate measuring machine includes a probe having a measurement unit, a movement mechanism for moving the probe and a host computer for controlling the movement mechanism. The host computer includes: a compensation-amount calculating unit for calculating a compensation amount for compensating an error in the position of the measurement unit caused by the movement of the probe; and a compensator for compensating the error in the position of the measurement unit based on the compensation amount calculated by the compensation-amount calculating unit. The compensation-amount calculating unit calculates a translation-compensation amount for compensating a translation error of the probe and a rotation-compensation amount for compensating a rotation error of the probe based on a rotation frequency of the movement of the probe.
    • 坐标测量机包括具有测量单元的探头,用于移动探针的移动机构和用于控制移动机构的主计算机。 主机包括:补偿量计算单元,用于计算补偿量,用于补偿由探针的移动引起的测量单元位置的误差; 以及补偿器,用于基于由补偿量计算单元计算的补偿量来补偿测量单元的位置的误差。 补偿量计算单元基于探头的移动的旋转频率来计算用于补偿探头的平移误差的平移补偿量和用于补偿探头的旋转误差的旋转补偿量。
    • 6. 发明申请
    • ELECTRONIC APPARATUS AND COMMUNICATION CONTROL METHOD
    • 电子设备和通信控制方法
    • US20110117847A1
    • 2011-05-19
    • US12949344
    • 2010-11-18
    • Hideyuki Nakagawa
    • Hideyuki Nakagawa
    • H04B7/00
    • H04M1/7253H04M2250/04H04W76/38
    • According to one embodiment, a communication module executes close proximity wireless transfer. A connection control module establishes a connection between the communication module and an external device which are in a close proximity state when the communication module is in an unconnected state, and releases the connection when a period in which a response from the external device is absent exceeds a connection time-out value. A communication control module executes a service by close proximity wireless transfer. A detection module detects a start and a stop of the service. A change module changes the connection time-out value in response to detection of the start and the stop of the service, in such a manner that the connection time-out value during a period in which the service is being executed is greater than the connection time-out value during a period in which the service is not executed.
    • 根据一个实施例,通信模块执行近距离无线传输。 当通信模块处于非连接状态时,连接控制模块建立通信模块和处于非常接近状态的外部设备之间的连接,并且当来自外部设备的响应的周期不存在时释放连接 连接超时值。 通信控制模块通过近距离无线传送来执行服务。 检测模块检测服务的开始和停止。 响应于检测到服务的开始和停止,更改模块改变连接超时值,使得在执行服务的时段期间的连接超时值大于连接 在执行服务期间的超时值。
    • 7. 发明申请
    • VIDEO TRANSMISSION APPARATUS AND VIDEO TRANSMISSION METHOD
    • 视频传输设备和视频传输方法
    • US20080303956A1
    • 2008-12-11
    • US12135558
    • 2008-06-09
    • Hideyuki Nakagawa
    • Hideyuki Nakagawa
    • H04N5/38
    • H04N5/44H04N21/43637H04N21/44227
    • According to one embodiment, a video transmission apparatus includes a detection unit which detects a communication quality level of a wireless communication channel which wirelessly connects a display device and the video transmission apparatus, a start control unit which starts a process of transmitting video data to the display device via the wireless communication channel if the detected communication quality level exceeds a first threshold value and a hot plug detect signal is received in a state in which transmission of the video data to the display device is stopped, and a stop control unit which stops the transmission of the video data to the display device if the detected communication quality level falls below a second threshold value, which is lower than the first threshold value, in a state in which the process of transmitting the video data to the display device is being executed.
    • 根据一个实施例,视频传输装置包括:检测单元,其检测无线通信信道的通信质量水平,无线通信信道与显示设备无线连接;视频发送设备;开始控制单元,其开始向 如果检测到的通信质量等级超过第一阈值并且在停止显示设备的视频数据传输的状态下接收到热插拔检测信号,则通过无线通信信道显示设备;以及停止控制单元, 如果检测到的通信质量水平低于低于第一阈值的第二阈值,则在将视频数据发送到显示装置的处理的状态下,将视频数据传输到显示装置 执行。
    • 10. 发明授权
    • Electronic device and communication control method
    • 电子设备和通信控制方法
    • US08320831B2
    • 2012-11-27
    • US13315254
    • 2011-12-08
    • Ayumi HashimotoHideki OhkitaHideyuki NakagawaSatoshi Odakura
    • Ayumi HashimotoHideki OhkitaHideyuki NakagawaSatoshi Odakura
    • H04B5/00
    • H04M1/7253H04L67/04H04L69/24H04W76/14
    • According to one embodiment, an electronic device includes a communication module, a connection establishment module, a negotiation module, a service execution module, and an execution control module. The communication module executes close proximity wireless transfer. The connection establishment module establishes a connection between the communication module and an external device which are in a close proximity state. The negotiation module determines a service to be executed between the communication module and the external device through a negotiation process when the connection is established. The service execution module executes the service. The execution control module executes the negotiation process again in response to a user's request or a request from the external device if the connection is kept after the completion of the service.
    • 根据一个实施例,电子设备包括通信模块,连接建立模块,协商模块,服务执行模块和执行控制模块。 通信模块执行近距离无线传输。 连接建立模块建立通信模块与处于紧密接近状态的外部设备之间的连接。 当建立连接时,协商模块通过协商过程确定要在通信模块和外部设备之间执行的服务。 服务执行模块执行服务。 如果在服务完成之后保持连接,则执行控制模块响应于用户的请求或来自外部设备的请求再次执行协商过程。