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    • 4. 发明授权
    • Display device
    • 显示设备
    • US07914195B2
    • 2011-03-29
    • US12369100
    • 2009-02-11
    • Atsushi SawadaToshimitsu FujiwaraYuji SakashitaYusuke Akioka
    • Atsushi SawadaToshimitsu FujiwaraYuji SakashitaYusuke Akioka
    • F21V7/04
    • G09F13/18G02B6/0036G02B6/004G02B6/0055G02B6/006G02B6/0076Y10S362/812
    • A display device has a light guide plate formed with a display pattern by a plurality of diffusion dots having translucency in a display pattern formed region, a light shielding layer, and a light source. A plurality of the light guide plates are arranged facing each other, and the light shielding layer is sandwiched between the light guide plates. Light from the light source is selectively introduced to one of the light guide plates to display the display pattern of the light guide plate. The light shielding layer has a surface facing an observer's side formed by a low reflectivity material and a surface facing a side opposite to the observer's side formed by a high reflectivity material. A region facing the display pattern of the light guide plate positioned on the side opposite to the observer's side than the light shielding layer is cut out.
    • 显示装置具有通过在显示图案形成区域中具有半透明度的多个扩散点,遮光层和光源形成有显示图案的导光板。 多个导光板彼此相对布置,并且遮光层夹在导光板之间。 来自光源的光被选择性地引入到一个导光板以显示导光板的显示图案。 遮光层具有由低反射率材料形成的面向观察者侧的表面和与由高反射率材料形成的与观察者侧相反的一侧的表面。 切割面对位于与遮光层相对的观察者侧的一侧的导光板的显示图案的区域。
    • 5. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20090219734A1
    • 2009-09-03
    • US12369100
    • 2009-02-11
    • Atsushi SawadaToshimitsu FujiwaraYuji SakashitaYusuke Akioka
    • Atsushi SawadaToshimitsu FujiwaraYuji SakashitaYusuke Akioka
    • F21V7/22
    • G09F13/18G02B6/0036G02B6/004G02B6/0055G02B6/006G02B6/0076Y10S362/812
    • A display device has a light guide plate formed with a display pattern by a plurality of diffusion dots having translucency in a display pattern formed region, a light shielding layer, and a light source. A plurality of the light guide plates are arranged facing each other, and the light shielding layer is sandwiched between the light guide plates. Light from the light source is selectively introduced to one of the light guide plates to display the display pattern of the light guide plate. The light shielding layer has a surface facing an observer's side formed by a low reflectivity material and a surface facing a side opposite to the observer's side formed by a high reflectivity material. A region facing the display pattern of the light guide plate positioned on the side opposite to the observer's side than the light shielding layer is cut out.
    • 显示装置具有通过在显示图案形成区域中具有半透明度的多个扩散点,遮光层和光源形成有显示图案的导光板。 多个导光板彼此相对布置,并且遮光层夹在导光板之间。 来自光源的光被选择性地引入到一个导光板以显示导光板的显示图案。 遮光层具有由低反射率材料形成的面向观察者侧的表面和与由高反射率材料形成的与观察者侧相反的一侧的表面。 切割面对位于与遮光层相对的观察者侧的一侧的导光板的显示图案的区域。
    • 9. 发明授权
    • Thickness detecting sensor
    • 厚度检测传感器
    • US07019539B2
    • 2006-03-28
    • US10843002
    • 2004-05-11
    • Toshimitsu FujiwaraHideyuki BingoMasahiro Kinoshita
    • Toshimitsu FujiwaraHideyuki BingoMasahiro Kinoshita
    • G01R27/26
    • G01B7/08
    • A thickness detecting sensor can widely set a dynamic range for detecting the thickness of a medium, and exactly detect the thickness of the medium even when the dynamic range is widely set in this way. Therefore, the thickness detecting sensor has a fixing electrode and a movable electrode arranged so as to be opposed to each other, a plunger for changing the gap between the electrodes by coming in contact with the medium, and a CR oscillating circuit and an FV converting circuit for converting electrostatic capacity stored between the electrodes into an electric signal for detecting the thickness of the medium. The rear end portion of the plunger comes in contact with the electrode face of the gap side of the movable electrode. The movable electrode is displaced in the direction separated from the fixing electrode correspondingly to the thickness of the medium.
    • 厚度检测传感器可以广泛地设置用于检测介质厚度的动态范围,并且即使当以这种方式广泛设置动态范围时,也能精确地检测介质的厚度。 因此,厚度检测传感器具有固定电极和布置成彼此相对的可动电极,用于通过与介质接触来改变电极之间的间隙的柱塞,以及CR振荡电路和FV转换 用于将存储在电极之间的静电电容转换成用于检测介质厚度的电信号的电路。 柱塞的后端部与可动电极的间隙侧的电极面接触。 对应于介质的厚度,可移动电极沿着与固定电极分离的方向移位。