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    • 3. 发明授权
    • Optical reflection sensor
    • 光学反射传感器
    • US06891625B2
    • 2005-05-10
    • US10109568
    • 2002-03-27
    • Kohei TomitaKiyoshi ImaiNaoya NakashitaHiroyuki Inoue
    • Kohei TomitaKiyoshi ImaiNaoya NakashitaHiroyuki Inoue
    • G01B11/00G01C3/06G01J3/50G01S17/02G01V8/12G02B7/32G01B11/24
    • G01V8/12G01B11/026
    • An optical reflection sensor emits light and its reflection from a target object is received. A signal processor carries out a measurement on the received reflected light such as the distance to the target object each time the reflected light is received. Repeatability of measured values is calculated and displayed on a display device incorporated into the housing of the sensor. The display device may have two display areas such that the calculated repeatability and the measured value can be displayed simultaneously. The calculated repeatability may be compared with a specified threshold value, with the result of the comparison displayed. The housing may also incorporate an input device through which a required level of accuracy may be set.
    • 光反射传感器发射光,并且其目标物体的反射被接收。 信号处理器对接收到的反射光进行测量,例如每次接收到反射光时到目标对象的距离。 计算测量值的重复性并将其显示在结合到传感器壳体中的显示装置上。 显示装置可以具有两个显示区域,使得计算出的重复性和测量值可以同时显示。 可以将计算出的重复性与指定的阈值进行比较,并显示比较结果。 壳体还可以包括输入装置,通过该输入装置可以设定所需的精度水平。
    • 8. 发明授权
    • Method for estimating state of ultraviolet curing resin material
    • 用于估计紫外线固化树脂材料的状态的方法
    • US07785524B2
    • 2010-08-31
    • US11717785
    • 2007-03-14
    • Kiyoshi ImaiHiroyuki InoueTadashi SengaKenichi NakamuneYoji Hasebe
    • Kiyoshi ImaiHiroyuki InoueTadashi SengaKenichi NakamuneYoji Hasebe
    • B29C35/18G01N21/64
    • G01N21/6408C08J3/248G01N33/442
    • A CPU provides a fluorescent light detecting head with an irradiation instruction, in response to which the fluorescent light detecting head irradiates an ultraviolet ray for detection on an ultraviolet curing resin material to be examined. The CPU then acquires from the fluorescent light detecting head an intensity of a fluorescent light emitted from a photo polymerization initiator included in the ultraviolet curing resin material when receiving the ultraviolet ray for detection. The CPU retrieves a predetermined number of past data of the intensity of the fluorescent light from a storage unit and performs a (moving) average calculation processing to calculate the intensity of the fluorescent light at the current time. The CPU performs an estimation processing of a state of the ultraviolet curing resin material based on the calculated intensity of the fluorescent light.
    • CPU提供具有照射指示的荧光检测头,响应于此,荧光检测头照射用于检测的紫外线固化树脂材料的紫外线。 然后,CPU在接收到用于检测的紫外线时,从荧光检测头获取从包含在紫外线固化树脂材料中的光聚合引发剂发射的荧光的强度。 CPU从存储单元检索预定数量的荧光强度的过去数据,并执行(移动)平均计算处理以计算当前时间的荧光强度。 CPU根据计算出的荧光强度对紫外线固化树脂材料的状态进行估计处理。
    • 9. 发明授权
    • Sensor unit for use in a multiple sensor unit array
    • 用于多传感器单元阵列的传感器单元
    • US06492650B1
    • 2002-12-10
    • US09869194
    • 2001-06-25
    • Kiyoshi ImaiTakashi KameiHiroyuki InoueKiyohiko GondoKazunori Osako
    • Kiyoshi ImaiTakashi KameiHiroyuki InoueKiyohiko GondoKazunori Osako
    • G02B2700
    • G08C23/06H04B10/803
    • The sensor unit (1) of the present invention comprises a housing (2) which is adapted to be mounted on a DIN rail (10) closely one next to another as a sensor unit array, and to be connected to a sensor head (4a and 5a) via a cable (4 and 5). The housing (2) accommodates a sensing circuit system (101, 102; 201 to 205) for achieving a desired sensing function in cooperation with the sensor head (4a and 5a), a first optical communication circuit system (210, 211) including a light emitting device (206) and a light receiving device (207) for conducting an optical bi-directional communication with one of the adjacent sensor units in the multiple sensor unit array, and a second optical communication circuit system (212, 213) including a light emitting device (208) and a light receiving device (209) for conducting an optical bi-directional communication with the other of the adjacent sensor units, whereby the sensor unit (1,1) is enabled to conduct an optical bi-directional communication with each of the adjacent sensor units in the multiple sensor unit array.
    • 本发明的传感器单元(1)包括壳体(2),该壳体(2)适于安装在靠近另一个的DIN导轨(10)上作为传感器单元阵列,并且连接到传感器头部(4a) 和5a)经由电缆(4和5)。 壳体(2)容纳用于与传感器头(4a和5a)协作实现期望的感测功能的感测电路系统(101,102,201至205),第一光通信电路系统(210,211),包括 发光装置(206)和用于与多个传感器单元阵列中的相邻传感器单元之一进行光学双向通信的光接收装置(207),以及第二光通信电路系统(212,213),包括 发光装置(208)和用于与相邻传感器单元中的另一个进行光学双向通信的光接收装置(209),由此传感器单元(1,1)能够进行光学双向通信 其中每个相邻的传感器单元在多个传感器单元阵列中。