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    • 71. 发明授权
    • OPTICAL MODULATOR, OPTICAL MODULATOR MANUFACTURING METHOD, LIGHT INFORMATION PROCESSING APPARATUS INCLUDING OPTICAL MODULATOR, IMAGE FORMATION APPARATUS INCLUDING OPTICAL MODULATOR, AND IMAGE PROJECTION AND DISPLAY APPARATUS INCLUDING OPTICAL MODULATOR
    • 光学调制器,光学调制器制造方法,包括光学调制器的光信息处理装置,包括光学调制器的图像形成装置,以及包括光学调制器的图像投影和显示装置
    • US06947195B2
    • 2005-09-20
    • US10050865
    • 2002-01-18
    • Kouichi OhtakaSeiichi KatohTakeshi NanjyoMasanori HorikeEiichi Ohta
    • Kouichi OhtakaSeiichi KatohTakeshi NanjyoMasanori HorikeEiichi Ohta
    • G02B26/02G02B26/00
    • G02B26/02
    • A center beam which is formed out of a thin film constituted to be combined with a light reflection film provided on one surface of the center beam, which has both ends fixed and which is deformed by an electronic force; a substrate electrode which is opposed to the center beam through a gap formed on the other surface of the center beam; an opposed surface which is a surface of the substrate electrode opposed to the center beam modulating the incident light on the light reflection film, the opposed surface restricting deformation of the center beam due to application of a driving voltage to the substrate electrode by abutting on the center beam; and a substrate which has the substrate electrode having the opposed surface, formed in a concave section, and which holds a to-be-held section of the center beam, are provided. As a result, the structure of modulating light by changing the reflection direction of the incident light is simple, response is fast, the wavelength of the incident light to be used is not limited, operation is stable, reliability is high, the number of manufacturing steps is small and cost reduction can be achieved.
    • 中心光束,其由薄膜形成,该薄膜构成为与设置在中心光束的一个表面上的光反射膜组合,所述光反射膜的两端固定并且通过电子力而变形; 基板电极,其通过形成在中心光束的另一个表面上的间隙与中心光束相对; 与基板电极相对的表面的相对表面,该表面与调制光反射膜上的入射光的中心光束相对,相对表面限制由于通过抵靠基板电极施加驱动电压而导致的中心光束的变形 中心梁; 以及具有形成在凹部中并且保持中心光束的被保持部分的具有相对表面的基板电极的基板。 结果,通过改变入射光的反射方向来调制光的结构简单,响应快,所使用的入射光的波长不受限制,操作稳定,可靠性高,制造数量 步骤小,可以实现成本降低。
    • 74. 发明授权
    • Ink jet deaeration apparatus
    • 喷墨脱气装置
    • US4502055A
    • 1985-02-26
    • US489299
    • 1983-04-28
    • Masanori HorikeChuji Ishikawa
    • Masanori HorikeChuji Ishikawa
    • B41J2/19G01D15/18
    • B41J2/19
    • An apparatus for removing air from ink which is fed under pressure to a nozzle of an ink ejection head is disclosed. A first solenoid-operated valve is disposed between an ink pressurizing source and the nozzle. Located between the valve and the nozzle is a deaerating unit which has therein a bore for causing air entrained by the ink to surface. An air outlet is formed in an upper portion of the bore and opened and closed by a second solenoid-operated valve. Upon a stop of ink ejection, the first valve is closed (ink supply blocked) while the second valve is opened. Heaters are installed in the bore of the deaerating unit to heat ink inside the bore to a predetermined temperature, so that air in the ink is expanded to become readily separable from the ink.
    • 公开了一种用于从压力下供给喷墨头的喷嘴的油墨中排出空气的装置。 第一电磁阀设置在油墨加压源和喷嘴之间。 位于阀和喷嘴之间的是除气单元,其中具有用于使由墨水夹持的表面的空气的孔。 空气出口形成在孔的上部并由第二电磁阀打开和关闭。 在喷墨停止时,第二个阀打开时第一个阀关闭(供墨堵塞)。 加热器安装在脱气单元的孔中以将孔内的油墨加热到预定温度,使得油墨中的空气膨胀成易于与油墨分离。