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    • 41. 发明授权
    • Deflection detector for ink jet printing apparatus
    • 用于喷墨打印设备的偏转检测器
    • US4434428A
    • 1984-02-28
    • US384133
    • 1982-06-01
    • Masanori HorikeYutaka Ebi
    • Masanori HorikeYutaka Ebi
    • B41J2/125G01N27/62G01D15/18G01D18/00
    • B41J2/125
    • A deflection detector for an ink jet printer comprises first and second plates made of an insulating material and bonded to each other. The first insulator plate is provided with at least two separate detection electrodes on its one surface and a shield electrode at its other surface, while the second insulator plate is provided with a shield plate on its one surface and bonded to the first plate at the other surface. The first and second plates are formed with aligned slots which also extend throughout the electrodes to pass ink droplets therethrough. The thickness of each detection electrodes corresponds to an interval between successive ink droplets. The deflection detector is positioned such that the plate containing the detection electrodes is substantially perpendicular to a specific reference path for deflection.
    • 用于喷墨打印机的偏转检测器包括由绝缘材料制成并彼此结合的第一和第二板。 第一绝缘板在其一个表面上设置有至少两个单独的检测电极,在其另一表面上设置有屏蔽电极,而第二绝缘板在其一个表面上设置有屏蔽板,并在另一个表面上与第一板结合 表面。 第一和第二板形成有对齐的狭槽,其也贯穿电极延伸以使墨滴通过。 每个检测电极的厚度对应于连续墨滴之间的间隔。 偏转检测器被定位成使得包含检测电极的板基本上垂直于用于偏转的特定参考路径。
    • 42. 发明授权
    • Deflection compensated ink ejection printing apparatus
    • 偏转补偿喷墨打印装置
    • US4281332A
    • 1981-07-28
    • US106801
    • 1979-12-26
    • Masanori Horike
    • Masanori Horike
    • B41J2/12G01D15/18
    • B41J2/12
    • Prior to printing, ink drops are ejected from an ink ejection head or nozzle (28) and an amount of deflection is sweepingly varied until the ink drops hit a target (57), thereby providing a reference which compensates for variations in an amount of charge of the ink drops, a deflection voltage and an ink drop velocity. The ink is caused to fall in drops from a container (48) having a predetermined volume and the number of drops per unit time, corresponding to the ink viscosity, is counted. The temperature of the ink is raised when the number of drops is below a predetermined number and vice-versa.
    • 在印刷之前,墨滴从喷墨头或喷嘴(28)喷射,并且一定量的偏转被彻底改变,直到墨滴撞击目标(57),从而提供补偿电荷量变化的参考 的墨滴,偏转电压和墨滴速度。 使墨水从具有预定体积的容器(48)滴落下来,对应于墨水粘度计算每单位时间的液滴数。 当液滴数量低于预定数量时,墨水的温度升高,反之亦然。
    • 44. 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
    • 光调制器,光调制器制造方法,包括光调制器的光信息处理装置,包括光调制器的图像形成装置,以及包括光调制器的图像投影和显示装置
    • US07166486B2
    • 2007-01-23
    • US11195695
    • 2005-08-03
    • Kouichi OhtakaSeiichi KatohTakeshi NanjyoMasanori HorikeEiichi Ohta
    • Kouichi OhtakaSeiichi KatohTakeshi NanjyoMasanori HorikeEiichi Ohta
    • H01L21/00
    • 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。
    • 47. 发明授权
    • Liquid jet recording head having improved radiator member
    • 具有改进的散热器构件的液体喷射记录头
    • US5600356A
    • 1997-02-04
    • US365069
    • 1994-12-28
    • Takuro SekiyaTakashi KimuraMasanori HorikeShuji MotomuraMasami Kadonaga
    • Takuro SekiyaTakashi KimuraMasanori HorikeShuji MotomuraMasami Kadonaga
    • B41J2/14B41J2/05
    • B41J2/14129B41J2/14072
    • A liquid jet recording head includes a liquid path member having a plurality of liquid flow paths, each of the liquid flow paths being filled with a recording liquid, an orifice being formed at an end of each of the liquid flow paths, and a heater base member having a plurality of heater members and a plurality of radiator members. The heater base member is connected to the liquid path member, each of the heater members having a heater portion, the heater portion generating heat in accordance with a power supplied to it. Each of the radiator members is thermally coupled to the heater portion of one of the heater members so that the amount of heat transmitted from the heater portion to the recording liquid on the heater portion changes in a predetermined direction. When a power is supplied to the heater portion, a bubble is generated in the recording liquid and located at an area on the heater portion, the area having a size corresponding to the power supplied to the heater portion, the bubble causing a recording liquid droplet to be jetted from the orifice.
    • 液体喷射记录头包括具有多个液体流动路径的液体通道部件,每个液体流动路径填充有记录液体,在每个液体流动路径的端部形成有孔口,加热器基座 构件具有多个加热器构件和多个散热器构件。 加热器基部件连接到液体通道部件,每个加热器部件具有加热器部分,加热器部分根据供应给其的电力产生热量。 每个散热器构件热耦合到一个加热器构件的加热器部分,使得从加热器部分传递到加热器部分上的记录液体的热量在预定方向上变化。 当向加热器部分供电时,在记录液体中产生气泡并且位于加热器部分的区域上,该区域具有与供给加热器部分的功率相对应的尺寸,该气泡引起记录液滴 从孔口喷出。