Lighting apparatus and liquid crystal display
    51.
    发明专利
    Lighting apparatus and liquid crystal display 有权
    照明装置和液晶显示器

    公开(公告)号:JP2005332680A

    公开(公告)日:2005-12-02

    申请号:JP2004149680

    申请日:2004-05-19

    CPC classification number: G02F1/133603 G02F1/133609

    Abstract: PROBLEM TO BE SOLVED: To light a liquid crystal panel by efficiently utilizing the light from light-emitting diodes. SOLUTION: Red light separating plates 52R, green light separating plates 52R, and blue light separating plates 52B are arranged on a substrate 51 with a pitch of w alternately in a row. Furthermore, red LEDs 53R are arranged at the center of the green light separating plate 52G and the blue light separating plate 52B by one piece at every other place, green LEDs 53G are arranged at the center of the blue light separating plate and the red light separating plate 52R by one piece at every other place, and blue LEDs 53B are arranged at the center of the red light separating plate 52R and the green light separating plate 52G by one piece at every other place. COPYRIGHT: (C)2006,JPO&NCIPI

    Abstract translation: 要解决的问题:通过有效地利用来自发光二极管的光来照亮液晶面板。 解决方案:将红色光分离板52R,绿​​色光分离板52R和蓝色光分离板52B以间隔交替排列在基板51上。 此外,红色LED53R在绿色分离板52G和蓝色分离板52B的中心在每隔一个地方一个一个地布置,绿色LED 53G布置在蓝色光分离板的中心,红色光 在每隔一个地方分隔板52R一个,蓝色LED53B在红色分离板52R和绿色分离板52G的中心每隔一个地设置一个。 版权所有(C)2006,JPO&NCIPI

    Display device
    52.
    发明专利
    Display device 有权
    显示设备

    公开(公告)号:JP2005114771A

    公开(公告)日:2005-04-28

    申请号:JP2003344910

    申请日:2003-10-02

    Abstract: PROBLEM TO BE SOLVED: To provide a display device capable of easily displaying a stereoscopic image. SOLUTION: The display device 10 is equipped with a light emitting unit capable of rotating around a rotary shaft 15, and a screen 11 arranged around the light emitting unit and having shape which forms at least a part of an axially symmetric rotating body on the rotary shaft 15, for example, cylindrical shape, and a light emitting part whose light radiation angle is limited to a prescribed range is arranged on the side of the light emitting unit opposed to the screen 11. By providing many light emitting parts where many directions 19A to 19X different from each other are set as their light radiation directions, rotating the light emitting unit around the rotary shaft 15 so as to rotate the light emitting parts to perform scanning, and also modulating the emitted light quantities of the light emitting parts according to given information, the image is displayed in the display device 10. COPYRIGHT: (C)2005,JPO&NCIPI

    Abstract translation: 要解决的问题:提供能够容易地显示立体图像的显示装置。 解决方案:显示装置10配备有能够围绕旋转轴15旋转的发光单元和布置在发光单元周围的屏幕11,并且具有形成轴向对称旋转体的至少一部分的形状 在旋转轴15上,例如是圆筒形状,并且将光辐射角度限制在规定范围的发光部分配置在与屏幕11相对的发光单元侧。通过提供许多发光部件,其中 将彼此不同的许多方向19A至19X设置为它们的光辐射方向,使发光单元围绕旋转轴15旋转,以便使发光部分旋转以执行扫描,并且还调制发光的发光量 部分根据给定的信息,图像显示在显示装置10中。(C)版权所有(C)2005,JPO&NCIPI

    ORGANIC ELECTROLUMINESCENCE DEVICE AND PRODUCTION PROCESS THEREOF

    公开(公告)号:JP2002063991A

    公开(公告)日:2002-02-28

    申请号:JP2000251493

    申请日:2000-08-22

    Applicant: SONY CORP

    Abstract: PROBLEM TO BE SOLVED: To permit a device to be easily sealed and make it possible to provide a large-scale display using said device as a luminescence device. SOLUTION: The device comprises a transparent substrate, an electrode film, a transparent electrode film, a first insulating film having an opening, an organic electroluminescence film, a metallic electrode film and a second insulating film. The first and second electrodes have gas barrier properties, and the opening is in a tapered form that the size of the opening become greater as it becomes distant from the transparent electrode film side. The transparent electrode film is electrically connected to a first electrode formed so as to be passed through the first and second insulating films and exposed on the second insulating film through the electrode film, and the metallic electrode film is electrically connected to a second electrode formed so as to be passed through the second insulating film and exposed on the second insulating film.

    PERMEABILITY EVALUATION METHOD OF THIN FILM AND PERMEABILITY EVALUATION DEVICE

    公开(公告)号:JP2001264237A

    公开(公告)日:2001-09-26

    申请号:JP2000078435

    申请日:2000-03-21

    Applicant: SONY CORP

    Abstract: PROBLEM TO BE SOLVED: To provide an evaluation method and an evaluation device capable of evaluating gas permeability of a thin film simply, accurately at low cost. SOLUTION: A substrate 11 for evaluation composed by forming a conductive detection layer 13 on a substrate 12 is prepared, and the thin film 14 which is an evaluation object is installed on the detection layer 13, and a carrier density or resistivity which is an electric characteristic of the detection layer 13 is measured. A phenomenon that the carrier number of the detection layer 13 which is a lower layer is changed by an influence of gas or liquid permeating the thin film 14 is detected as the electric characteristic of the detection layer 13, to thereby quantitate and evaluate indirectly the permeability of the thin film 14 relative to the gas or the liquid.

    FUNCTIONAL FILM HAVING ELECTRODE AND MANUFACTURING METHOD THEREFOR

    公开(公告)号:JP2001143644A

    公开(公告)日:2001-05-25

    申请号:JP32098699

    申请日:1999-11-11

    Applicant: SONY CORP

    Abstract: PROBLEM TO BE SOLVED: To provide a functional film having an electrode that may be connected with a conductive layer with high reliability and stable quality hardly changing the quality with time and that provide easy automated manufacturing facility and a method of fabricating it at low cost. SOLUTION: Sequentially formed over a substrate 20 are a conductive layer 12 and a low conductive layer 13 having a lower conductivity than the layer 12. The method comprises a step of subjecting the surface of the conductive layer 12 to corona discharge, a step of lowering a vacuum chamber 60 to contact its opening portion 65 with the surface of the low conductive layer 13, a step of evacuating the vacuum chamber 60 by opening the exhaust valve 61 to a prescribed vacuum state, and a step of introducing a sputtering gas into the vacuum chamber 60 by opening a gas inlet valve 63 to sputter an electrode film 14 on the surface of the low conductive layer 13. The electrode film 14 is connected through the low conductive layer 13 to the conductive layer 12.

    Thin-film transistor manufacturing method, thin-film transistor, and display device
    58.
    发明专利
    Thin-film transistor manufacturing method, thin-film transistor, and display device 有权
    薄膜晶体管制造方法,薄膜晶体管和显示装置

    公开(公告)号:JP2010153435A

    公开(公告)日:2010-07-08

    申请号:JP2008327332

    申请日:2008-12-24

    Abstract: PROBLEM TO BE SOLVED: To provide a thin-film transistor manufacturing method that simplifies the process. SOLUTION: The thin-film transistor manufacturing method is configured as follows. An oxide semiconductor film 30 having a shape including a channel formation scheduled region 31A, a source electrode formation scheduled region 32SA, and a drain electrode formation scheduled region 32DA is formed on a gate insulating film 13 so that the whole oxide semiconductor film has the same carrier concentration as that of the channel formation scheduled region 31A. A mask 33 for suppressing heat transfer is formed on the channel formation scheduled region 31A while the oxide semiconductor film 30 is heated at a temperature of ≥100°C and ≤200°C in the atmosphere. The channel formation scheduled region 31A becomes a channel region, in which the carrier concentration before the heating is maintained, by suppressing heat transfer by the mask 33. Alternatively, regions not covered with the mask 33 on the oxide semiconductor film 30 become a source electrode region and a drain electrode region which respectively have a high carrier concentration and a low resistance by the occurrence of oxygen loss or the like due to the heating. COPYRIGHT: (C)2010,JPO&INPIT

    Abstract translation: 解决的问题:提供简化工艺的薄膜晶体管制造方法。 解决方案:薄膜晶体管的制造方法如下构成。 在栅极绝缘膜13上形成具有沟道形成排列区域31A,源极形成排列区域32SA以及漏极形成排列区域32DA的形状的氧化物半导体膜30,使得整个氧化物半导体膜具有相同的 载流子浓度为通道形成调度区域31A的载流子浓度。 在氧化物半导体膜30在大气中以≥100℃和≤200℃的温度加热的同时,在沟道形成预定区域31A上形成用于抑制传热的掩模33。 沟道形成排列区域31A成为通过抑制掩模33的传热而保持加热前的载流子浓度的沟道区域。或者,氧化物半导体膜30上未被掩模33覆盖的区域成为源极 区域和由于加热而发生氧损失等而分别具有高载流子浓度和低电阻的漏电极区域。 版权所有(C)2010,JPO&INPIT

    Antireflection film, heating method of metal film and heating device
    59.
    发明专利
    Antireflection film, heating method of metal film and heating device 审中-公开
    抗反射膜,加热金属膜和加热装置的方法

    公开(公告)号:JP2008032949A

    公开(公告)日:2008-02-14

    申请号:JP2006205518

    申请日:2006-07-28

    Abstract: PROBLEM TO BE SOLVED: To provide an antireflection film which reliably prevents incident light (or laser beam) which is made incident on a glass substrate and reaches a metal film, from being reflected by the metal film, and also to provide a heating method of a metal film, and a heating device. SOLUTION: The antireflection film 20 formed between a metal film 30 having complex refractive index N M =n M -i×k M and a glass substrate 11 having refractive index N G , is composed of: (A) a first dielectric layer 21 having a refractive index N 1 ; (B) a second dielectric layer 22 having a refractive index N 2 , formed on the first dielectric layer 21; and (C) a third dielectric layer 23 having a refractive index N 3 , formed on the second dielectric layer 22, in the order from the metal film side, whereby the antireflection film satisfies N 1 M , N 1 >N G , N 2 G , N 3 >N G and thus incident light which is made incident on the glass substrate 11 and reaches metal film 30, is prevented from being reflected by the metal film 30. COPYRIGHT: (C)2008,JPO&INPIT

    Abstract translation: 解决的问题:为了提供可靠地防止入射到玻璃基板上并到达金属膜的入射光(或激光束)的抗反射膜被金属膜反射,并且还提供一种 金属膜的加热方法和加热装置。 解决方案:形成在具有复折射率N的金属膜30之间的抗反射膜20 = n -i×k SB / 和具有折射率N G 的玻璃基板11由以下组成:(A)具有折射率N 1的第一介电层21; (B)形成在第一电介质层21上的具有折射率N 2 的第二电介质层22; 和(C)以金属膜侧的顺序形成在第二电介质层22上的具有折射率N 3 的第三电介质层23,由此防反射膜满足N 1 M ,N 1 > N G N 2 ,N 3 > N G ,从而防止入射到玻璃基板11上并到达金属膜30的入射光被 金属薄膜30.版权所有(C)2008,JPO&INPIT

    Zirconium oxide film, method for depositing the same, and antireflective film
    60.
    发明专利
    Zirconium oxide film, method for depositing the same, and antireflective film 审中-公开
    氧化锆薄膜,其沉积方法和抗反射膜

    公开(公告)号:JP2007297682A

    公开(公告)日:2007-11-15

    申请号:JP2006127444

    申请日:2006-05-01

    Abstract: PROBLEM TO BE SOLVED: To provide a method for depositing a zirconium oxide film, by which the zirconium oxide film having different reflective indices can be deposited; to provide the zirconium oxide film obtained by the same; and to provide an antireflective film which can reduce the change frequency of target material by using the zirconium oxide film. SOLUTION: In the method for depositing the zirconium oxide film, comprising depositing the zirconium oxide film on a substrate by sputtering a zirconium target by a sputtering gas in the presence of at least one reactive gas, the refractive index of the zirconium oxide film is controlled by using, as the reactive gas, one or more selected from O 2 , CO 2 , and CO and adjusting the flow rate ratio (reactive gas flow rate ratio) of the reactive gas to the sputtering gas. COPYRIGHT: (C)2008,JPO&INPIT

    Abstract translation: 要解决的问题:提供沉积氧化锆膜的方法,由此可以沉积具有不同反射率的氧化锆膜; 以提供由其获得的氧化锆膜; 并且提供可以通过使用氧化锆膜来降低目标材料的变化频率的抗反射膜。 解决方案:在沉积氧化锆膜的方法中,包括在至少一种反应性气体存在下,通过溅射气体溅射锆靶,将氧化锆膜沉积在基板上,氧化锆的折射率 通过使用选自O 2 ,CO 2 和CO中的一种或多种作为反应气体来控制膜,并且调节流速比(反应气体流速比 )到溅射气体的反应气体。 版权所有(C)2008,JPO&INPIT

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