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    • 7. 发明公开
    • OPTICAL MEASUREMENT APPARATUS
    • 光学测量装置
    • EP3267148A1
    • 2018-01-10
    • EP17177299.9
    • 2017-06-22
    • Omron Corporation
    • KANETANI, YoshihiroKONDO, TomonoriSUZUKI, Yuta
    • G01B11/24G01B11/06G01B11/02G01B11/00G01B21/04G05B19/05
    • G01J1/4228G01B11/005G01B11/0608G01B11/24G01B21/045G05B19/054G05B2219/37117
    • The optical measurement apparatus includes an interface unit and a measuring unit. The interface unit is configured to receive a synchronization signal transmitted from a PLC to a fieldbus at a constant communication cycle, and output, in synchronization with the synchronization signal, a result of measurement (a measured value) by the optical measurement apparatus and a synchronization supervisory signal. The measuring unit is configured to execute optical measurement at a measurement cycle irrelevant to the communication cycle and generate a result of the measurement and a synchronization supervisory signal. The measuring unit sets the synchronization supervisory signal into an ON state in synchronization with receipt of the synchronization signal by the interface unit after start of the measurement, and sets the synchronization supervisory signal into an OFF state in synchronization with receipt of the synchronization signal by the interface unit when the interface unit outputs the measurement result.
    • 光学测量装置包括接口单元和测量单元。 接口单元被配置为以恒定通信周期接收从PLC发送到现场总线的同步信号,并且与同步信号同步地输出光学测量设备的测量结果(测量值)和同步 监控信号。 测量单元被配置为以与通信周期无关的测量周期执行光学测量,并产生测量结果和同步监控信号。 测量单元在测量开始后通过接口单元接收同步信号同步地将同步监控信号设置为ON状态,并且与通过接收单元接收同步信号同步地将同步监控信号设置为OFF状态 当接口单元输出测量结果时接口单元。
    • 8. 发明公开
    • THREE-DIMENSIONAL COORDINATE MEASUREMENT APPARATUS
    • 三维坐标测量装置
    • EP3239649A1
    • 2017-11-01
    • EP16743570.0
    • 2016-01-29
    • Tokyo Seimitsu Co., Ltd.
    • KANNO, YukioGOMI, KeiichiroFUJITA, Takashi
    • G01B5/00G01B5/008G01B21/00
    • G01B11/005G01B5/0004G01B5/0009G01B5/0014G01B5/008G01D5/34746
    • There is provided a three-dimensional coordinate measurement apparatus capable of reducing shaking of a Y carriage and improving measurement accuracy. A groove 40 is formed along a Y-axis direction in a right side part of a surface plate 10 made of stone, and a Y guide 42 is formed between the groove 40 and a right side surface 10R of the surface plate 10 to support a Y carriage in a portal shape in a movable manner in the Y-axis direction. A support section 50 is provided at a lower end of a right Y carriage 16 on the right side of the Y carriage, and the support section 50 is supported by the surface plate 10 through air pads 62F, 64F, 66F, 68F,..., which are disposed by two air pads back and forth on the corresponding one of a top surface 10T, a right side surface 10R, and a bottom surface 10B, of the surface plate 10, and a right side surface 40R of the groove 40.
    • 提供了一种三维坐标测量设备,其能够减少Y滑架的晃动并提高测量精度。 在由石头制成的平台10的右侧部分沿Y轴方向形成凹槽40,并且在凹槽40与平台10的右侧表面10R之间形成Y引导件42以支撑 Y型滑架在Y轴方向上以可移动的方式呈门形。 支撑部分50设置在Y滑架右侧的右Y滑架16的下端,并且支撑部分50通过气垫62F,64F,66F,68F ...由平台10支撑。 它们通过两个气垫来回放置在平台10的顶面10T,右侧面10R和底面10B中的相应一个上,并且凹槽40的右侧面40R 。