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    • 1. 发明授权
    • Electron gun for cathode-ray tube
    • 阴极射线管用电子枪
    • US06674227B2
    • 2004-01-06
    • US09878179
    • 2001-06-12
    • Tae-Kyu KimHyun-Cheol Kim
    • Tae-Kyu KimHyun-Cheol Kim
    • H01J2950
    • H01J29/503H01J2229/4872
    • There is provided an electron gun for a cathode-ray tube, comprising a triode having a control electrode and an accelerating electrode for controlling the amount of electron beams emitted from a plurality of cathodes and accelerating the electron beams, a front focusing lens part configured of a plurality of electrodes focusing and accelerating a predetermined amount of the electron beams, and a main lens part configured of a plurality of electrodes for focusing the electron beams on a screen, in which the diameter of beam passage hole of the accelerating electrode of the triode corresponds to 140-220% of that of the control electrode. The thickness of the control electrode corresponds to 20-30% of the diameter of beam passage hole of the control electrode, and the distance between the control electrode and the accelerating electrode corresponds to 40-80% of the beam passage hole diameter of the control electrode. Accordingly, the spot size of the electron beam in a high current region is reduced to realize picture quality with high resolution.
    • 提供了一种用于阴极射线管的电子枪,包括具有控制电极和加速电极的三极管,用于控制从多个阴极发射的电子束的量并加速电子束,前聚焦透镜部分由 聚焦并加速预定量的电子束的多个电极以及由电子束聚集在屏幕上的多个电极构成的主透镜部分,其中三极管的加速电极的光束通过孔的直径 对应于控制电极的140-220%。 控制电极的厚度对应于控制电极的光束通过孔的直径的20-30%,控制电极和加速电极之间的距离对应于控制电极的光束通过孔直径的40-80% 电极。 因此,大电流区域中的电子束的光斑尺寸减小,以高分辨率实现图像质量。
    • 2. 发明授权
    • Cathode ray tube apparatus
    • 阴极射线管装置
    • US06486624B2
    • 2002-11-26
    • US09910736
    • 2001-07-24
    • Junichi KimiyaShunji Ookubo
    • Junichi KimiyaShunji Ookubo
    • H01J2946
    • H01J29/488H01J29/503H01J2229/4841H01J2229/4865H01J2229/4872
    • An electron gun structure includes a first non-axial-symmetrical lens portion which is arranged in the vicinity of an electron beam formation portion, and a second non-axial-symmetrical lens portion formed to a main lens portion, the first non-axial symmetrical lens portion has a lens action in the vertical direction that a focusing action relative to the electron beams becomes stronger as a quantity of deflection of the electron beams increases, and a lens action in the horizontal direction which substantially rarely acts on the electron beams, and a comprehensive lens system of the second non-axial-symmetrical lens portion and the main lens portion has a lens action in the vertical direction that a divergence action relative to the electron beams becomes stronger as a quantity of deflection of the electron beams increases, and a lens action in the horizontal direction which substantially rarely acts on the electron beams.
    • 电子枪结构包括布置在电子束形成部分附近的第一非轴对称透镜部分和形成于主透镜部分的第二非轴对称透镜部分,第一非轴对称透镜部分 透镜部分在垂直方向上具有透镜作用,使得随着电子束的偏转量的增加,相对于电子束的聚焦作用变强,并且在水平方向上的透镜作用基本上很少作用在电子束上,以及 第二非轴对称透镜部分和主透镜部分的综合透镜系统在垂直方向上具有透镜作用,使得随着电子束的偏转量的增加,相对于电子束的发散作用变强;以及 在水平方向上的透镜作用基本上很少作用在电子束上。
    • 3. 发明申请
    • Color cathode ray tube
    • 彩色阴极射线管
    • US20010035708A1
    • 2001-11-01
    • US09836568
    • 2001-04-17
    • Yoshiaki TakahashiMasayoshi FuruyamaTakeshi MeraKen Kagabu
    • H01J029/50
    • H01J29/503H01J2229/4872
    • The present invention provides a color cathode ray tube which can make the focusing of a center electron beam and side electron beams uniform by reducing the non-uniformity of the spot shape of electron beams depending on a deflection quantity. The second electrode G2 includes three electron beam apertures made of one center electron beam aperture and two side electron beam apertures which are arranged in an in-line array. Each one of three electron beam apertures is formed of a rectangular recessed portion which has long sides in an in-line direction and a circular aperture which penetrates a center portion of the rectangular recessed portion. The depth of the recessed portion arranged at the center electron beam aperture is set larger than the depth of the recessed portions arranged at side electron beam apertures.
    • 本发明提供一种彩色阴极射线管,其可以通过根据偏转量减小电子束的斑点形状的不均匀性,使中心电子束和侧面电子束的聚焦均匀。 第二电极G2包括由一个中心电子束孔径和两个侧向电子束孔径构成的三个电子束孔径,它们排成一列。 三个电子束孔中的每一个由矩形凹入部分形成,该矩形凹部具有沿着线方向的长边和穿过矩形凹入部分的中心部分的圆形孔。 布置在中心电子束孔处的凹部的深度设定为大于布置在侧面电子束孔径处的凹部的深度。
    • 4. 发明授权
    • Cathode ray tube with low dynamic correction voltage
    • 阴极射线管具有低动态校正电压
    • US06255788B1
    • 2001-07-03
    • US09499895
    • 2000-02-08
    • Shoji ShiraiKenichi Watanabe
    • Shoji ShiraiKenichi Watanabe
    • G09G104
    • H01J29/503H01J2229/4841H01J2229/4865H01J2229/4872H01J2229/4875H01J2229/4886H01J2229/5635
    • An electron gun of a cathode ray tube includes an electron beam generating unit and a main lens unit. The electron beam generating unit includes a cathode, a first grid electrode and a second grid electrode, and the main lens unit is formed of plural electrode members and a final accelerating electrode disposed downstream thereof and supplied with a high voltage. A final main lens is formed between the final accelerating electrode and one of the electrode members adjacent thereto. An electrostatic quadrupole lens is formed in a first space between adjacent ones of the electrode members, one of which is supplied with a first focus voltage of a fixed value, another of which is supplied with a second focus voltage synchronized with electron beam deflection, wherein the first and second focus voltages are higher than a second grid electrode voltage. The quadrupole lens focuses the electron beams horizontally and vertically and diverges them horizontally and vertically depending upon which is the higher of the first and second focus voltages. A third electrostatic lens is disposed between the final main lens and the quadrupole lens and formed in a second space between adjacent ones of the electrode members, one of which is supplied with the first focus voltage, and another of which is supplied with the second focus voltage, and the third electrostatic lens decreases horizontal and vertical focusing actions on the electron beams with increasing electron beam deflection.
    • 阴极射线管的电子枪包括电子束产生单元和主透镜单元。 电子束产生单元包括阴极,第一栅极和第二栅极,主透镜单元由多个电极构件和设置在其下游并提供高电压的最终加速电极形成。 最终的主透镜形成在最终加速电极和与其相邻的电极构件中的一个之间。 静电四极透镜形成在相邻的电极部件之间的第一空间中,其中一个被提供有固定值的第一聚焦电压,另一个被提供与电子束偏转同步的第二聚焦电压,其中 第一和第二聚焦电压高于第二栅极电压。 四极透镜水平和垂直地聚焦电子束,并根据第一和第二聚焦电压中较高者水平和垂直地发散。 第三静电透镜设置在最终主透镜和四极透镜之间,并形成在相邻电极构件之间的第二空间中,其中一个被提供第一聚焦电压,另一个被提供有第二焦点 电压,第三静电透镜减小电子束偏转电子束的水平和垂直聚焦作用。
    • 5. 发明授权
    • Election gun having specific focusing structure
    • 具有特定聚焦结构的电子枪
    • US06172450B2
    • 2001-01-09
    • US09135405
    • 1998-08-18
    • Makoto NatoriYasunobu Amano
    • Makoto NatoriYasunobu Amano
    • H01J2950
    • H01J29/503H01J2229/4841H01J2229/4865H01J2229/4872
    • In an inline 3-beam system color cathode-ray tube, an inline 3-beam system color cathode-ray tube electron gun is able to uniformise shapes of beam spots of three electron beams on the right and left end portion of a fluorescent screen as much as possible. In an electron gun (10) in which focusing electrodes (51), (52) are divided by four to provide at least a first focusing electrode (51A), a second focusing electrode (51B), a third focusing electrode (51C), a fourth focusing electrode (52) and a quadrupole lens action formed by the third focusing electrode (51C) and the fourth focusing electrode (52) is controlled by a quadrupole lens formed by the first focusing electrode (51A), the second focusing electrode (51B) and the third focusing electrode (51C), in the first focusing electrode (51A), the second focusing electrode (51B) and the third focusing electrode (51C), openings corresponding to right and left electron beams R, B have different aspect ratios in adjacent focusing electrodes of the first focusing electrode (51A), the second focusing electrode (51B) and the third focusing electrode (51C), and the aspect ratio of the openings is set in such a manner that a major diameter/minor diameter is greater than 1.05.
    • 在一直线三光束系统彩色阴极射线管中,一线三光束系统彩色阴极射线管电子枪能使荧光屏左右两端的三束电子束的光斑形状均匀化, 尽可能的 在聚焦电极(51),(52)被四分割以提供至少第一聚焦电极(51A)的电子枪(10)中,第二聚焦电极(51B),第三聚焦电极(51C) 由第三聚焦电极(51C)和第四聚焦电极(52)形成的第四聚焦电极(52)和四极透镜动作由由第一聚焦电极(51A),第二聚焦电极(51A)形成的四极透镜 51B)和第三聚焦电极(51C),在第一聚焦电极(51A),第二聚焦电极(51B)和第三聚焦电极(51C)中,对应于左右电子束R,B的开口具有不同的方面 第一聚焦电极(51A),第二聚焦电极(51B)和第三聚焦电极(51C)的相邻聚焦电极中的比率和开口的纵横比设置成使得大直径/小直径 大于1.05。