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    • 2. 发明公开
    • X-RAY IMAGE TUBE AND METHOD FOR MANUFACTURING THE SAME
    • RÖNTGENBILDRÖHREUND HERSTELLUNGSVERFAHREN DIESELBE
    • EP0869533A4
    • 1998-11-25
    • EP97940412
    • 1997-09-18
    • TOSHIBA KKTOSHIBA ELECTRONIC ENG
    • TANNO KAZUTOSHISEKIJIMA YOSHINOBUYAMADA HITOSHINOJI TAKASHI
    • G21K4/00H01J29/38H01J31/50H01J31/49
    • H01J29/385G21K4/00G21K2004/06G21K2004/12H01J31/501H01J2231/50036H01J2231/50063H01J2231/5053
    • In order to give a sufficiently strong adhesive strength to the input screen of an X-ray image tube, to improve the resolution of the output picture of the image tube, and to secure the luminance uniformity of the output picture as necessary, the surface of the input substrate of the image tube composed of aluminum or an aluminum alloy is varnished so that fine recessing and projecting sections of the substrate material can be eliminated from the surface and nondirectional gentle recessing and projecting sections can be left as they are. Such gentle recessing and processing sections that the average distances between adjacent valleys fall within the range of 50-300 mu m and average heights between the crests and valleys fall within the range of 0.3-4.0 mu m are suitable for those to be left as they are. When the input substrate is varnished in the above-mentioned way, the resolution of the output picture of the image tube can be improved because the diffusion of light on the surface of the input substrate is suppressed, and the picture noise which is caused by the fine recessing and projecting sections is reduced.
    • 本发明通过将铝或铝合金基板21配置成具有微小不规则的凹面而确保X射线图像增强器的输入屏幕13,输出图像的高分辨率和亮度均匀性的令人满意的粘合性 通过抛光除去基板材料,除了由压制引起的没有方向性的平缓的凹凸21c。 基板21的缓和凹凸21c的平均长度L优选在相邻底部之间的平均长度L为50μm〜300μm,平均高度H在从峰到底的0.3μm〜4.0μm的范围内。 本发明通过抑制基板表面的光分散而提高分辨率,并且降低由微小不规则性引起的图像噪声。
    • 7. 发明专利
    • DE69111513T2
    • 1996-02-15
    • DE69111513
    • 1991-05-21
    • TOSHIBA KAWASAKI KKTOSHIBA ELECTRONIC ENG
    • ONO REIJI
    • H01L21/68B23Q3/18H01L21/687H01L33/62H01L21/00
    • The upper surface of a stage (20) has first, second and third surfaces (21, 22, 23) formed in a stepped configuration, the first and second surfaces (21, 22) are connected to each other by a first side surface (21a) and the second and third surfaces (22, 23) are connected to each other by a second side surface (22a). A circular arc-form concave portion (24) is formed in the side surface (21a) and a chip carrier (41) is disposed on the second surface (22) inside the concave portion (24). A depressing plate (26) is disposed on the second surface (22) so as to freely slide in a direction perpendicular to the first side surface (21a). The depressing plate (26) is fixed on a clamp member (27) which is connected to a rotor (30) rotatably mounted on the stage (20). The rotor (30) is biased by means of a spring so as to move the depressing plate (26) towards the concave portion (24). The depressing plate (26) has a depressing portion (25) which is set in parallel with the first side surface and the position of the chip carrier (41) is determined by the depressing portion of the depressing plate (26) and the internal surface of the concave portion (24).
    • 10. 发明专利
    • DE69111513D1
    • 1995-08-31
    • DE69111513
    • 1991-05-21
    • TOSHIBA KAWASAKI KKTOSHIBA ELECTRONIC ENG
    • ONO REIJI
    • H01L21/68B23Q3/18H01L21/687H01L33/62H01L21/00
    • The upper surface of a stage (20) has first, second and third surfaces (21, 22, 23) formed in a stepped configuration, the first and second surfaces (21, 22) are connected to each other by a first side surface (21a) and the second and third surfaces (22, 23) are connected to each other by a second side surface (22a). A circular arc-form concave portion (24) is formed in the side surface (21a) and a chip carrier (41) is disposed on the second surface (22) inside the concave portion (24). A depressing plate (26) is disposed on the second surface (22) so as to freely slide in a direction perpendicular to the first side surface (21a). The depressing plate (26) is fixed on a clamp member (27) which is connected to a rotor (30) rotatably mounted on the stage (20). The rotor (30) is biased by means of a spring so as to move the depressing plate (26) towards the concave portion (24). The depressing plate (26) has a depressing portion (25) which is set in parallel with the first side surface and the position of the chip carrier (41) is determined by the depressing portion of the depressing plate (26) and the internal surface of the concave portion (24).