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    • 1. 发明授权
    • Index-type color cathode ray tube
    • 索引型彩色阴极射线管
    • US5952767A
    • 1999-09-14
    • US861225
    • 1997-05-21
    • Yuji KuwabaraToru TakahashiEiji Kamohara
    • Yuji KuwabaraToru TakahashiEiji Kamohara
    • H01J29/89H01J9/34H01J29/34H01J31/00H01J31/20H04N3/16H04N9/24
    • H01J31/203H01J9/34H04N3/16H04N9/24H01J2231/121H01J2231/1255
    • First and second index signal phosphor layers are formed on a phosphor screen that is formed on the inner surface of a face plate. A rear plate is provided with first and second light sensing units for detecting signal lights from the first and second index signal phosphor layers, respectively. Each first light sensing unit includes a first light collecting plate, which radiates absorbing light having a radiation peak wavelength substantially equal to or shorter than the radiation wavelength of each first index signal phosphor layer. Each second light sensing unit includes a second light collecting plate, which radiates absorbing light having a radiation peak wavelength substantially equal to or shorter than the radiation wavelength of each second index signal phosphor layer. Arranged between each second collecting plate and the rear plate is a filter, which transmits the index signal light from the second index signal phosphor layer and shades the index signal light from the first index signal phosphor layer.
    • 第一和第二指示信号荧光体层形成在形成在面板的内表面上的荧光屏上。 后板设置有分别用于检测来自第一和第二折射率信号荧光体层的信号光的第一和第二光感测单元。 每个第一光检测单元包括第一聚光板,其辐射具有基本上等于或短于每个第一折射率信号荧光体层的辐射波长的辐射峰值波长的吸收光。 每个第二光检测单元包括第二聚光板,其辐射具有基本上等于或短于每个第二折射率信号荧光体层的辐射波长的辐射峰值波长的吸收光。 在每个第二收集板和后板之间布置的是滤光器,其将来自第二折射率信号荧光体层的折射率信号光透过并遮蔽来自第一折射率信号荧光体层的折射率信号光。
    • 3. 发明授权
    • Plural gun color CRT with inclined index phosphor layers
    • 多枪彩色CRT,倾斜指数荧光粉层
    • US5694003A
    • 1997-12-02
    • US595480
    • 1996-02-01
    • Toru TakahashiYuji KuwabaraEiji Kamohara
    • Toru TakahashiYuji KuwabaraEiji Kamohara
    • H01J31/20H04N9/24H01J29/51
    • H01J31/203H04N9/24H01J2231/121H01J2231/1255
    • A color cathode-ray tube comprises a phosphor screen formed on an inner surface of a face plate and having a plurality of three-color phosphor layers. A plurality of first index phosphor layers are provided on the phosphor screen and extending in parallel to the three-color phosphor layers, and a plurality of second index phosphor layers are provided on the phosphor screen and inclined to the three-color phosphor layers at a predetermined angle. Electron guns are provided in an envelope and emit electron beams to the screen section so as to dividedly scan a plurality of regions of the screen section. Photoelectric conversion devices are provided on the envelope and detect first index signals and second index signals generated from the first and second index phosphor layers by scanning of the electron beams, respectively. Deflection devices for deflecting the electron beams are controlled by a controller in response to the detected first and second index signals.
    • 彩色阴极射线管包括形成在面板的内表面上并具有多个三色荧光体层的荧光屏。 在荧光屏上设置多个第一指示荧光体层并平行于三色荧光体层延伸,并且在荧光屏上设置多个第二指示荧光体层,并在三色荧光体层上倾斜 预定角度。 电子枪设置在外壳中,并向屏幕部分发射电子束,以分割扫描屏幕部分的多个区域。 光电转换装置设置在外壳上,分别通过扫描电子束来检测从第一和第二指示荧光体层产生的第一索引信号和第二索引信号。 用于偏转电子束的偏转装置由控制器响应于检测到的第一和第二索引信号而被控制。
    • 4. 发明授权
    • Rotation detecting device and bearing equipped with rotation detecting device
    • 旋转检测装置和轴承配有旋转检测装置
    • US09234908B2
    • 2016-01-12
    • US13378238
    • 2010-06-10
    • Kiyotake ShibataToru TakahashiTakayuki Norimatsu
    • Kiyotake ShibataToru TakahashiTakayuki Norimatsu
    • G01B7/30G01P3/487G01D5/14G01D5/245G01P3/44F16C41/00
    • G01P3/487F16C41/007G01D5/145G01D5/2451G01P3/443
    • A rotation detecting device, which is compatible regardless of whether a process control device for processing an output signal of the rotation detecting device is standard one or new one having high input signal resolving power, and, also, a rotation detecting device equipped bearing assembly having such rotation detecting device, are provided. The rotation detecting device includes an encoder provided rotatably and having a plurality of circumferentially equidistantly arranged to-be-detected poles, and a sensor for detecting the to-be-detected poles. The use is made of a multiplying unit for multiplying the phase of the to-be-detected poles from an output of the sensor. The use is also made of a pulse outputting unit for receiving an output of the multiplying unit or both the output of the multiplying unit and an output of the sensor and output pulses having two multiplying powers different from each other.
    • 无论用于处理旋转检测装置的输出信号的处理控制装置是具有高输入信号分辨能力的标准的还是新的,旋转检测装置都是兼容的,以及具有旋转检测装置的轴承组件,其具有 提供这种旋转检测装置。 旋转检测装置包括可旋转地设置并且具有多个周向等距布置的待检测磁极的编码器和用于检测待检测磁极的传感器。 使用乘法单元,用于将待检测的极点的相位与传感器的输出相乘。 还使用脉冲输出单元,用于接收乘法单元的输出或乘法单元的输出和传感器的输出以及具有彼此不同的两个乘法功率的输出脉冲。
    • 6. 发明申请
    • MAGNETIC LOAD SENSOR UNIT
    • 磁力负载传感器单元
    • US20140224038A1
    • 2014-08-14
    • US14235818
    • 2012-07-27
    • Yui MasudaMakoto YasuiToru Takahashi
    • Yui MasudaMakoto YasuiToru Takahashi
    • G01L1/12
    • G01L1/12F16D2066/005G01L1/122
    • A magnetic load sensor unit is provided which can detect a load with a minute movement of its part, and which is durable and less likely to be influenced by temperature. The sensor unit includes a flange member (1) deflectable when an axial load is applied, a support member (2) supporting the flange member (1), a magnetic target (3) which generates a magnetic field, and a magnetic sensor (4) for detecting the magnetic field generated by the magnetic target (3). The magnetic target (3) and the magnetic sensor (4) are fixed to the flange member (1) and the support member (2), respectively, such that when the flange member (1) is deflected, the magnetic target (3) and the magnetic sensor (4) move relative to each other, whereby magnitude of the load can be detected based on the magnetic field detected by the magnetic sensor (4).
    • 提供一种磁性负载传感器单元,其可以通过其部件的微小移动来检测负载,并且其耐久性并且不太可能受温度的影响。 传感器单元包括当施加轴向载荷时可偏转的凸缘构件(1),支撑凸缘构件(1)的支撑构件(2),产生磁场的磁性靶(3)和磁性传感器(4) ),用于检测由磁性靶(3)产生的磁场。 磁性靶(3)和磁性传感器(4)分别固定在凸缘部件(1)和支撑部件(2)上,使得当凸缘部件(1)偏转时,磁性靶(3) 并且磁传感器(4)相对于彼此移动,由此可以基于由磁传感器(4)检测的磁场来检测负载的大小。