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    • 11. 发明授权
    • Image sensor having dual-gate transistors
    • 具有双栅极晶体管的图像传感器
    • US06642541B2
    • 2003-11-04
    • US09796676
    • 2001-03-02
    • Hisashi NagataYoshihiro Izumi
    • Hisashi NagataYoshihiro Izumi
    • H01L2904
    • H01L27/14609H01L27/12H01L27/14676H01L29/41733
    • On a transparent electrically insulating substrate, formed are a scanning line, and a gate electrode of a switching element, further formed are a gate insulating film, a semiconductor layer, an n+-Si layer to be formed into a source electrode and a drain electrode. After the patterning of the foregoing structure, the dielectric film is formed, and the portion corresponding to the contact hole is removed by etching, and photosensitive resin is applied to form the interlayer insulating film. Then, the transparent electrode is extended from the pixel electrode over the switching element, whereon a conversion layer and a gold layer for use in electrode are vapor-deposited. In this structure, an increase in capacitor between the pixel electrode and the signal line can be suppressed by the interlayer insulating film, and the transparent electrode functions as a top gate and release excessive electric charge. As a result, excessive electric charge can be released effectively in the double gate structure while suppressing an increase in capacitor between the pixel electrode and the signal line.
    • 在形成为扫描线的透明电绝缘基板上,还形成有栅极绝缘膜,半导体层,形成源电极的n + Si层,开关元件的栅电极, 漏电极。 在上述结构的图案化之后,形成电介质膜,通过蚀刻除去与接触孔对应的部分,并施加感光性树脂以形成层间绝缘膜。 然后,透明电极从开关元件上的像素电极延伸,在电极上使用用于电极的转换层和金层。 在这种结构中,可以通过层间绝缘膜来抑制像素电极和信号线之间的电容器的增加,并且透明电极用作顶栅并释放过多的电荷。 结果,可以在抑制像素电极与信号线之间的电容器的增加的同时,在双栅极结构中有效释放过多的电荷。
    • 12. 发明授权
    • External circuit packaging method and thermocompression bonding apparatus
    • 外部电路封装方法和热压接装置
    • US06562659B1
    • 2003-05-13
    • US09585365
    • 2000-06-02
    • Yoshihiro IzumiOsamu Teranuma
    • Yoshihiro IzumiOsamu Teranuma
    • H01L2244
    • H05K3/361
    • When TCP substrates serving as external circuits are packaged by thermocompression bonding onto input/output terminals on an active-matrix substrate including an a-Se film serving as an amorphous semiconductor layer, a cooling operation is performed by a cooling medium discharging nozzle on at least a part between the a-Se film and a thermocompression bonding part disposed between the TCP substrates and the input/output terminals on the active-matrix substrate. Thus, during the thermocompression bonding, a temperature of the a-Se film is maintained below its crystallizing temperature so as to prevent exfoliation of the amorphous semiconductor film and deterioration in characteristics thereof, upon packaging the external circuits by thermocompression bonding onto the input/output terminals on the substrate including the amorphous semiconductor film.
    • 当作为外部电路的TCP基板通过热压接被封装在包括用作非晶半导体层的a-Se膜的有源矩阵基板上的输入/输出端子上时,至少冷却介质排出喷嘴执行冷却操作 a-Se膜和设置在TCP基板和有源矩阵基板上的输入/输出端子之间的热压接部分之间的部分。 因此,在热压接时,将a-Se膜的温度维持在其结晶温度以下,以防止通过热压接将外部电路封装在输入/输出上时,非晶半导体膜的剥离及其特性的劣化 在包括非晶半导体膜的基板上的端子。
    • 14. 发明授权
    • Active matrix substrate, method of manufacturing same, and flat-panel image sensor
    • 有源矩阵基板,制造方法和平板图像传感器
    • US06480577B1
    • 2002-11-12
    • US09542485
    • 2000-04-03
    • Yoshihiro IzumiHisashi NagataYuichi Saito
    • Yoshihiro IzumiHisashi NagataYuichi Saito
    • G09G336
    • G02F1/136227G02F1/136213H01L27/124H01L27/1255
    • In an active matrix substrate, a glass substrate is provided with TFTs having gate electrodes connected to scanning lines also provided on the glass substrate. The glass substrate is further provided with auxiliary capacitance lines, formed on the same layer as the scanning lines. Further, pixel electrodes connected to drain electrodes of the TFTs are formed on the same layer as signal lines connected to source electrodes of the TFTs. An insulating layer is provided between the layer forming the signal lines and pixel electrodes and the layer forming the drain and source electrodes. Since the insulating film is present between the signal lines and the scanning and auxiliary capacitance lines, influence on the auxiliary capacitance value can be reduced, as can a signal line capacitance value. As a result, even when the auxiliary capacitance value is increased, the signal line capacitance value remains small.
    • 在有源矩阵基板中,玻璃基板设置有TFT,其栅极连接到也设置在玻璃基板上的扫描线。 玻璃基板还设置有与扫描线形成在同一层上的辅助电容线。 此外,连接到TFT的漏电极的像素电极形成在与TFT的源电极连接的信号线的同一层上。 在形成信号线的层与像素电极之间设置绝缘层,形成漏极和源电极的层。 由于绝缘膜存在于信号线与扫描辅助电容线之间,所以可以减小辅助电容值的影响,信号线电容值也可以。 结果,即使当辅助电容值增加时,信号线电容值仍然很小。
    • 17. 发明授权
    • Liquid crystal display device provided with seal material and spacer
made of resist
    • 液晶显示装置设有密封材料和由抗蚀剂制成的间隔物
    • US6078379A
    • 2000-06-20
    • US94966
    • 1998-06-12
    • Nobukazu NagaeYoshihiro Izumi
    • Nobukazu NagaeYoshihiro Izumi
    • G02F1/1333G02F1/1339G02F1/1347
    • G02F1/13394G02F1/1339G02F1/13336
    • With respect to a single large substrate, a seal material and a spacer made of the same resist having pressure tightness are formed in one step using a photomask, and a plurality of small substrates are combined independently with the large substrate, the spacer being formed within a region of non-transmissive pattern on the large substrate. This prevents the seal material and the spacer from spreading from a predetermined pattern width, and maintains a constant value for a cell gap with respect to the entire liquid crystal layer. Alternatively, instead of the spacer, a fine first seal material may be formed by photolithography within a display region using a photoresist having adhesion, and a second seal material may be formed outside the display region using a heat curable adhesive. With this arrangement, the strength of the combined substrates is increased, and a highly reliable and high quality display screen is realized.
    • 对于单个大的基板,使用光掩模在一个步骤中形成由具有压力密封性的同一抗蚀剂制成的密封材料和间隔件,并且多个小基板与大基板独立地组合,间隔件形成在 在大基板上的非透射图案的区域。 这防止密封材料和间隔物从预定图案宽度扩展,并且相对于整个液晶层保持恒定的单元间隙的值。 或者,代替间隔物,可以使用具有粘附性的光致抗蚀剂在显示区域内通过光刻形成精细的第一密封材料,并且可以使用热固化性粘合剂在显示区域的外部形成第二密封材料。 通过这种布置,组合的基板的强度增加,并且实现了高可靠性和高质量的显示屏。
    • 19. 发明授权
    • Active matrix LCD having an electric wiring not crossing a seal member
    • 有源矩阵LCD具有不穿过密封构件的电线
    • US5754267A
    • 1998-05-19
    • US818752
    • 1997-03-14
    • Yoshihiro Izumi
    • Yoshihiro Izumi
    • G02F1/1333G02F1/1339G02F1/1362G02F1/1347G02F1/1343
    • G02F1/136286G02F1/13336G02F1/1339
    • A liquid crystal display panel has an electric wiring provided at least on one of a pair of substrates, a seal member, applied to the substrate so as to partially cross the electric wiring, the seal member being made of a ultraviolet ray hardening resin or a ultraviolet ray hardening resin used in combination with heat hardening, wherein the electric wiring has a line width narrower in an area where the seal member crosses the electric wiring than in an area where the seal member does not cross the electric wiring. With the arrangement, when the ultraviolet ray is externally projected onto the seal member from the substrate side, the substrate being provided with the electric wiring, the ultraviolet ray can be fully projected even onto the seal member on the electric wiring which has a narrow line width. It is thus avoided that the liquid crystal orientation is disturbed due to the inadequate hardening of the seal member and the inadequate filling of the liquid crystal occurs. Since the fine line seal member is accurately provided in the vicinity of the pixel, when the liquid crystal display apparatus is made by connecting a plurality of such liquid crystal display panels, it is possible to provide the liquid crystal display apparatus in which the connecting part is not noticeable and the displaying quality is excellent.
    • 液晶显示面板具有设置在一对基板中的至少一个基板上的电线,密封构件,其被施加到基板以部分地穿过电布线,密封构件由紫外线硬化树脂或 与热硬化组合使用的紫外线硬化树脂,其中,所述电线在所述密封构件与所述电布线交叉的区域中的线宽度比所述密封构件不穿过所述电线的区域窄。 通过该结构,当从基板侧将紫外线从外部突出到密封部件上时,基板设置有电线,紫外线能够全部投影到具有窄线的电线的密封部件上 宽度。 因此避免了由于密封构件的硬化不充分而导致液晶取向受到干扰,并且发生液晶不充分。 由于细线密封构件精确地设置在像素附近,所以当通过连接多个这样的液晶显示面板来制造液晶显示装置时,可以提供液晶显示装置,其中连接部分 不显眼,显示质量非常好。
    • 20. 发明申请
    • DISPLAY APPARATUS AND ELECTRONIC DEVICE PROVIDED WITH THE SAME
    • 显示设备和电子设备
    • US20090122039A1
    • 2009-05-14
    • US11912814
    • 2006-04-20
    • Hiromi KatohTomoyuki NagaiYoshihiro Izumi
    • Hiromi KatohTomoyuki NagaiYoshihiro Izumi
    • G09G5/00
    • G02F1/136227G02F1/13318G02F2001/13312G02F2201/086G02F2201/50
    • In a display apparatus having an active matrix substrate, a counter substrate provided so as to be opposed to a pixel array region of the active matrix substrate, and a display medium provided in a gap between the active matrix substrate and the counter substrate, an optical sensor (11) is provided in a peripheral region of the pixel array region in the active matrix substrate. In order to make it difficult for the optical sensor (11) to change with time, and suppress the influence of electromagnetic noise on the optical sensor (11), in an upper layer of the optical sensor (11), a surface protective film (24) is formed of a transparent insulation layer (20a) made of the same material as that of an interlayer insulation film in the pixel array region and having an effect of attenuating a UV-light transmittance and a transparent conductive layer (7a) formed of the same material as that of the pixel electrode in an upper layer of the transparent insulation layer (20a).
    • 在具有有源矩阵基板的显示装置中,设置为与有源矩阵基板的像素阵列区域相对设置的对置基板和设置在有源矩阵基板和对置基板之间的间隙中的显示介质,光学 传感器(11)设置在有源矩阵基板中的像素阵列区域的外围区域中。 为了使光传感器(11)难以随时间变化,并且抑制电磁噪声对光学传感器(11)的影响,在光学传感器(11)的上层中,表面保护膜( 24)由与像素阵列区域中的层间绝缘膜相同材料制成的透明绝缘层(20a)形成,并具有衰减紫外线透射率的效果和由 与透明绝缘层(20a)的上层中的像素电极的材料相同。