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    • 21. 发明授权
    • Electron beam machining apparatus of the dynamic seal type
    • 动态密封型电子束加工装置
    • US4080526A
    • 1978-03-21
    • US762402
    • 1977-01-26
    • Shiso KiharaHiroshi KonoMasaharu MinamiMasaru Higuchi
    • Shiso KiharaHiroshi KonoMasaharu MinamiMasaru Higuchi
    • H01J37/30B23K15/00B23K15/06H01J37/18H01J37/301H01J37/315B23K9/00
    • H01J37/301H01J37/18
    • Electron beam machining apparatus of the dynamic seal type, characterized by upper and lower fixed plates for fixedly clamping a workpiece therebetween, which plates define upper and lower vacuum chambers; a movable plate disposed on said upper fixed plate so as to be movable in the working direction, said plate defining a movable chamber which communicates with said upper vacuum chamber, said upper and lower vacuum chambers and the movable chamber providing a working chamber of the apparatus; inflatable seal members for said upper and lower vacuum chambers; said upper and lower plates defining auxiliary vacuum chambers located outwardly of and encircling their respective fixed vacuum chambers, an upper wall of said upper vacuum chamber defining an opening in the form of a V-shaped groove which extends in the working direction of V-belt seal, and by a belt seal guide tube mounted on said movable plate and extending in the working direction, to enclose the electron gun, said V-belt fitting into said groove in front of and to the rear of said guide tube, but passing upwardly out of the vacuum chamber and through said guide tube whereby an effective seal is maintained around the electron gun during movement of the movable plate for a machining operation.
    • 动力密封型电子束加工装置,其特征在于用于在其间固定夹紧工件的上固定板和下固定板,该板限定上下真空室; 可动板,其设置在所述上​​固定板上,以在所述工作方向上可移动;所述板限定与所述上真空室连通的可移动室,所述上下真空室和所述可移动室提供所述装置的工作室 ; 用于所述上真空室和下真空室的充气密封件; 所述上板和下板限定了辅助真空室,所述辅助真空室位于它们各自固定的真空室的外面并且环绕它们各自的固定的真空室,所述上部真空室的上壁限定了V形槽的形式的开口,V形槽在V形带的工作方向上延伸 密封,并且通过安装在所述可移动板上并沿着工作方向延伸的带密封引导管将所述电子枪包围,所述V形皮带配件进入所述导管的前面和后面的所述凹槽中,但是向上 离开真空室并通过所述导管,由此在用于机械加工操作的可移动板的移动期间,电子枪周围保持有效的密封。
    • 26. 发明授权
    • Display device, display method, and electronic device
    • 显示设备,显示方式和电子设备
    • US08264452B2
    • 2012-09-11
    • US12503462
    • 2009-07-15
    • Eiho YouSusumu KimuraHiromasa SuzukiMasaru Higuchi
    • Eiho YouSusumu KimuraHiromasa SuzukiMasaru Higuchi
    • G09G3/36
    • G09G3/3413G02F1/133603G02F2001/133614G09G3/2025G09G3/3648G09G2310/0235G09G2320/043
    • There is provided a display device, including a display panel; a first light emitting unit for inputting a first input light to the display panel based on a first light emitting signal; a second light emitting unit for inputting second input light to the display panel based on a second light emitting signal; and light emitting control unit for outputting the first light emitting signal, the second light emitting signal, the image signal corresponding to the first input light, and the image signal corresponding to the second input light; where the light emitting control unit performs output of the first light emitting signal and the image signal of the color corresponding to the first input light in synchronization in a first sub-frame, and performs output of the second light emitting signal and the image signal of the color corresponding to the second input light in synchronization in a second sub-frame.
    • 提供了一种显示装置,包括显示面板; 第一发光单元,用于基于第一发光信号将第一输入光输入到显示面板; 第二发光单元,用于基于第二发光信号将第二输入光输入到显示面板; 以及发光控制单元,用于输出第一发光信号,第二发光信号,对应于第一输入光的图像信号和对应于第二输入光的图像信号; 其中所述发光控制单元在第一子帧中同步地执行所述第一发光信号的输出和对应于所述第一输入光的颜色的图像信号,并且执行所述第二发光信号的输出和所述第二发光信号的图像信号 在第二子帧中同步地对应于第二输入光的颜色。
    • 27. 发明授权
    • Display device and optical device
    • 显示设备和光学设备
    • US07905649B2
    • 2011-03-15
    • US12267091
    • 2008-11-07
    • Ying Bao YangMasaru HiguchiHiromasa SuzukiSusumu Kimura
    • Ying Bao YangMasaru HiguchiHiromasa SuzukiSusumu Kimura
    • F21V7/04
    • G02B6/0021G02B6/0068G02B6/0073
    • Disclosed herein is a display device including, a visual target, and a backlight adapted to illuminate the visual target from the rear, the backlight including, a plurality of first light sources, second light sources, and a light guide plate, wherein the light guide plate has a plurality of projecting portions on a side surface portion thereof upon which the light, produced by the plurality of first and second light sources is incident, the projecting portions being arranged, along the side surface portion and project toward the one side of the given direction, the plurality of first light sources are disposed to be opposed to the tip surfaces of the plurality of projecting portions, and the second light sources are disposed to be opposed to the bottom surfaces of recessed portions formed between the plurality of projecting portions.
    • 本文公开了一种显示装置,包括视觉目标和适于从后方照射视觉目标的背光,所述背光包括多个第一光源,第二光源和导光板,其中所述光导 板在其侧表面部分上具有多个突出部分,多个第一和第二光源产生的光入射到该多个突出部分上,突出部分沿着侧表面部分布置并朝向 所述多个第一光源被设置为与所述多个突出部的前端面相对,并且所述第二光源被配置为与形成在所述多个突出部之间的凹部的底面相对。
    • 28. 发明授权
    • Illumination panel and display device using the same
    • 照明面板和使用其的显示装置
    • US06224223B1
    • 2001-05-01
    • US09215008
    • 1998-12-17
    • Masaru HiguchiMinoru FujiwaraTetsuo MutoYasuhiro Daiku
    • Masaru HiguchiMinoru FujiwaraTetsuo MutoYasuhiro Daiku
    • F21V800
    • G02B6/0048G02B6/002G02B6/0041G02B6/0051G02B6/0053G02B6/0065
    • An illumination panel comprises a light source, a photoconductor for guiding light from the light source, and an optical film for emitting light emitted from the photoconductor ahead of an observer. The photoconductor comprises a stepwise face having an incident end face onto which the light from the light source is projected, step faces, and step differentiating faces for emitting the light guided from the light source and connecting the step faces, and reflective films formed on the step faces. The optical film is arranged at the front side of the photoconductor, and has projected incident portions which are opposite to the step differentiating faces in a light emitting direction. The optical film emits the light emitted from the step differentiating faces ahead, and causes the light that is projected from the front to be reflected ahead on reflective faces on the step faces. In the incident portions, one of side faces opposite to the step differentiating faces of the photoconductor makes an incident face for receiving the light emitted from the step differentiating faces, and the other makes a refractive face for reflecting/refracting the light taken in the incident face toward its front face. A liquid crystal display element is arranged at the front of this illumination panel so that they constitute a liquid crystal display device.
    • 照明面板包括光源,用于引导来自光源的光的光电导体以及用于从观察者前面的光电导体发射的光的光学膜。 光电导体包括具有入射端面的阶梯面,来自光源的光投射到入射端面上,台阶面和用于发射从光源引导的光并且连接台阶面的台阶微分面,以及形成在该光源上的反射膜 步骤面。 光学膜布置在感光体的前侧,并且在发光方向上具有与台阶差分面相对的投影部分。 光学薄膜从步进差分面向前发射光,使从前方突出的光在台阶面上的反射面上向前反射。 在入射部分中,与感光体的差分面相反的一个侧面形成用于接收从台阶微分面发射的光的入射面,另一个形成用于反射/折射在事件中摄取的光的折射面 面向其前脸。 液晶显示元件配置在该照明面板的前方,构成液晶显示装置。
    • 29. 发明授权
    • Distance measuring apparatus
    • 距离测量仪
    • US4514084A
    • 1985-04-30
    • US352066
    • 1982-02-24
    • Hiroshi MakinoMasaru HiguchiKazuou Murata
    • Hiroshi MakinoMasaru HiguchiKazuou Murata
    • G01C3/06G01C3/00G01C3/08
    • G01C3/08
    • In a distance measuring apparatus in accordance with the present invention, a light beam of a wide solid angle is projected on a photographic object by means of a strobo light source, and reflected rays are received by a photoelectric device array which has a predetermined number of photoelectric devices each with narrow directivity which are comparable to solid angles necessary to see the object from the photoelectric devices disposed with their optical axes at predetermined angular pitches. When the output of a photoelectric device, which is issuing maximum amplitude output, is selected by means of a maximum value detector circuit, and a distance signal is discriminated from background noises such as sun light or electric illumination light by passing through a differentiating circuit, and then being processed by a function circuit and fed to a lens driving system or indicator.
    • 在根据本发明的距离测量装置中,通过闪光光源将宽立体角的光束投射在摄影对象上,并且通过光电装置阵列接收反射光线,该光电装置阵列具有预定数量的 每个光电器件具有窄的方向性,其可以与从其光轴以预定角度间​​距设置的光电器件观察物体所需的立体角相当。 当通过最大值检测器电路选择出现最大振幅输出的光电装置的输出时,通过通过微分电路将距离信号与诸如太阳光或电照明光的背景噪声区分开, 然后由功能电路处理并馈送到透镜驱动系统或指示器。