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    • 2. 发明授权
    • Projection lens system
    • 投影镜头系统
    • US5404246A
    • 1995-04-04
    • US80702
    • 1993-06-24
    • Toshihide KanekoEiichi ToideNaoki Kawamoto
    • Toshihide KanekoEiichi ToideNaoki Kawamoto
    • G02B9/62G02B13/18
    • G02B13/18G02B9/62
    • A projection lens system has a first lens to a sixth lens which are serially arranged in this order from a screen side. The first lens has a meniscus configuration in which a convex surface is directed toward the screen side and the power of the lens changes from positive to negative from the optical axis toward a peripheral portion of the lens. The first lens has two aspherical surfaces. The second lens has a positive power meniscus configuration in which a convex surface is directed toward the screen side. Both surfaces of the second lens are aspherical. The third lens has a positive power meniscus configuration in which a convex surface is directed toward the screen side. The fourth lens is disposed close to the third lens and has two convex surfaces. The fifth lens has a positive power meniscus configuration in which a concave surface is directed toward the screen side. Both surfaces of the fifth lens are aspherical. The sixth lens has a concave surface which has a large curvature directed toward the screen side. The surface of the sixth lens on the screen side is aspherical.
    • 投影透镜系统具有从屏幕侧按顺序排列的第一透镜至第六透镜。 第一透镜具有弯月面构造,其中凸表面指向屏幕侧,并且透镜的光焦度从光轴朝向透镜的周边部分从正向变为负。 第一透镜具有两个非球面。 第二透镜具有正的功率弯月形结构,其中凸面指向屏幕侧。 第二透镜的两个表面是非球面的。 第三透镜具有正的功率弯月形结构,其中凸面指向屏幕侧。 第四透镜靠近第三透镜设置并具有两个凸面。 第五透镜具有正的功率弯月形结构,其中凹面指向屏幕侧。 第五透镜的两个表面都是非球面的。 第六透镜具有朝向屏幕侧的大曲率的凹面。 屏幕侧的第六个透镜的表面是非球面的。
    • 4. 发明授权
    • Projection lens unit
    • 投影镜头单元
    • US5642229A
    • 1997-06-24
    • US260979
    • 1994-06-15
    • Toshihide KanekoEiichi Toide
    • Toshihide KanekoEiichi Toide
    • G02B13/16G02B13/18G02B3/00
    • G02B13/16
    • A projection lens unit includes, in accordance with the order of disposition from a screen side, a first lens group including a positive meniscus lens, a second lens group including a double convex lens, and a third lens group which corrects curvature of field, wherein the third lens group has two concave lenses. A projection lens unit includes, in accordance with the order of disposition from a screen side, a first lens having a positive meniscus form, a second lens having a negative meniscus form, a third lens which is double-convex lens having a light gathering function, a fourth lens which is disposed near the third lens and is a double-convex lens having a positive power, a fifth lens provided at its central portion with a convex surface directed to a screen and provided at its peripheral portion with a concave portion directed to the screen, and a sixth lens having a concave surface directed to the screen, wherein each of the second, fourth and fifth lenses has at least one aspherical surface.
    • 投影透镜单元根据从屏幕侧配置的顺序包括包括正弯月透镜的第一透镜组,包括双凸透镜的第二透镜组和校正曲率的第三透镜组,其中 第三透镜组具有两个凹透镜。 投影透镜单元根据从屏幕侧配置的顺序包括具有正弯月形状的第一透镜,具有负弯月形的第二透镜,具有聚光功能的双凸透镜的第三透镜 设置在第三透镜附近的第四透镜,是具有正光焦度的双凸透镜;第五透镜,在其中央部设置有凸面指向屏幕,并在其周边部分设置有指向 以及具有指向屏幕的凹面的第六透镜,其中第二透镜,第四透镜和第五透镜中的每一个具有至少一个非球面。
    • 5. 发明授权
    • Projection display apparatus
    • 投影显示装置
    • US5607216A
    • 1997-03-04
    • US465057
    • 1995-06-05
    • Toshihide KanekoEiichi Toide
    • Toshihide KanekoEiichi Toide
    • H04N5/74H04N9/31G03B21/14
    • H04N5/7408
    • A projection display apparatus comprises an image source having a rectangular image-displaying surface; a projecting lens assembly for magnifying and projecting the image onto a screen; and light-obstructing plate disposed in the vicinity of the nearest lens element of the projecting lens assembly to the image source. The light-obstructing plate is disposed in such a position that 0.1.ltoreq.R.sub.1 /R.sub.2 .ltoreq.0.8 where R.sub.1 is a radius of optical-axis light which is emitted toward the screen from a central point on the image-displaying surface through which the optical axis of the projecting lens assembly passes, and R.sub.2 is a radius of effective light which is emitted toward the screen from the image-displaying surface. The light-obstructing plate is provided with protrusions which are disposed at positions at a same distance from a first, or a second reference line on the light-obstructing plate so as to obstruct several pairs of flare beams, which are included in peripheral light emitted from the vicinity of four corners of the image-displaying surface and are traveling towards positions at a same distance from the first or the second reference line.
    • 投影显示装置包括具有矩形图像显示面的图像源; 投影透镜组件,用于将图像放大和投影到屏幕上; 以及设置在投影透镜组件的最近的透镜元件附近的遮光板到图像源。 遮光板设置在0.1≤R/R≤0.8的位置,其中R1是从图像显示表面上的中心点向屏幕发射的光轴光的半径,通过 投影透镜组件的光轴通过,R2是从图像显示表面朝向屏幕发射的有效光的半径。 遮光板设置有突出部,其设置在与遮光板上的第一基准线或第二基准线相同的距离的位置处,以阻挡包含在周围光的多个火炬梁 从图像显示表面的四个角附近移动到与第一或第二参考线相同距离的位置。
    • 6. 发明授权
    • Projection lens system
    • 投影镜头系统
    • US5572364A
    • 1996-11-05
    • US263492
    • 1994-06-21
    • Eiichi ToideToshihide Kaneko
    • Eiichi ToideToshihide Kaneko
    • G02B13/18G02B3/00
    • G02B13/18
    • A projection lens system for projecting an enlarged image onto a display screen front an image appearing on a faceplate of a cathode ray tube utilizes at least six lens groups. The first lens group, from an end closest to the display screen, is in a form of a meniscus having a negative power. The second lens group has a weak positive power and a convex surface towards the display screen. The third lens group has a strong positive power. The fourth lens group is bi-convex and has a strong positive power. The fifth lens group has a weak positive power. The sixth lens group has a negative power and a pronounced concave surface away from the display screen. The second and fifth lens groups each are made with plastic lenses with at least aspheric surfaces on one side.
    • 投影透镜系统用于将放大的图像投影到显示屏前面,出现在阴极射线管的面板上的图像使用至少六个透镜组。 从最接近显示屏的一端的第一透镜组是具有负光焦度的弯液面的形式。 第二透镜组具有弱正功率和朝向显示屏的凸表面。 第三透镜组具有很强的正电力。 第四透镜组是双凸的,具有很强的正功率。 第五透镜组具有弱正功率。 第六透镜组具有负电源和远离显示屏的明显的凹面。 第二和第五透镜组各自由塑料透镜制成,在一侧具有至少非球面。
    • 8. 发明授权
    • Projection television system including a plurality of display elements
with corresponding optical axes incident to a screen at different
points offset from the screen center
    • 投影电视系统包括多个显示元件,其具有在与屏幕中心偏移的不同点处入射到屏幕的相应光轴
    • US5337093A
    • 1994-08-09
    • US98256
    • 1993-07-29
    • Toshihide KanekoEiichi Toide
    • Toshihide KanekoEiichi Toide
    • H04N9/31H04N5/74H04N9/78
    • H04N9/31
    • In a projection television system having display elements displaying images of respective colors, a screen on which a color image is formed by magnifying and synthesizing the images of the respective colors, projection lenses for magnifying the images on the respective display elements and projecting them onto the screen thereby to form the color image, with the optical axis of the projection lens for a first color being disposed at a right angle to the screen and the optical axes of the projection lenses for second and third colors being disposed at an angle with respect to the optical axis of the projection lens for the first color, color imbalance is reduced. This is achieved by disposing the projection lenses for the second and third colors so that their optical axes are incident on a point different from the point at which the optical axis of the projection lens for the first color is incident. In an alternative arrangement, at least one of the display elements is provided with a filler having a transmittance varied from one position to another.
    • 在具有显示各种颜色的图像的显示元件的投影电视系统中,通过放大和合成各种颜色的图像来形成彩色图像的屏幕,用于放大各显示元件上的图像的投影透镜并将其投影到 从而形成彩色图像,其中用于第一颜色的投影透镜的光轴以与屏幕成直角的方式设置,并且用于第二和第三颜色的投影透镜的光轴相对于 用于第一颜色的投影透镜的光轴,颜色不平衡减小。 这是通过将第二和第三颜色的投影透镜设置成使得它们的光轴入射在与第一颜色的投影透镜的光轴入射的点不同的点上来实现的。 在替代方案中,至少一个显示元件设置有具有从一个位置到另一个位置的透射率的填充物。