Antimicrobial personal computer aggregation
    81.
    发明申请
    Antimicrobial personal computer aggregation 审中-公开
    抗菌个人电脑聚合

    公开(公告)号:US20050052410A1

    公开(公告)日:2005-03-10

    申请号:US10949492

    申请日:2004-09-24

    Applicant: Ga-Lane Chen

    Inventor: Ga-Lane Chen

    CPC classification number: G06F1/16 A61L2/232 G06F3/01

    Abstract: A personal computer suite (1) includes a computer (10), a monitor (20), a mouse (30), and a keyboard (40). The monitor, the keyboard and the mouse are electrically connected with the computer. The computer includes a plurality of manual switches (11) for respectively controlling a power source and various functions of the computer. The monitor has a display screen (21) for displaying images. The switches, the display screen, the mouse and the keyboard each include a photocatalyst layer portion at a surface thereof. The photocatalyst layer portion can react with water and oxygen molecules that are in contact with surfaces thereof to produce hydrogen ions, hydroxyl radicals and free oxygen radicals. Thus, sterilization of the personal computer suite is provided. In addition, the photocatalyst layer portions are super hydrophilic, which makes cleaning of the surfaces of the switches, the display screen, the mouse and the keyboard easy.

    Abstract translation: 个人计算机套件(1)包括计算机(10),监视器(20),鼠标(30)和键盘(40)。 显示器,键盘和鼠标与计算机电连接。 计算机包括用于分别控制电源和计算机的各种功能的多个手动开关(11)。 显示器具有用于显示图像的显示屏幕(21)。 开关,显示屏,鼠标和键盘各自包括在其表面的光催化剂层部分。 光催化剂层部分可以与与其表面接触的水分子和氧分子反应,产生氢离子,羟基自由基和游离氧自由基。 因此,提供了个人计算机套件的灭菌。 此外,光催化剂层部分是超亲水的,这使得开关,显示屏,鼠标和键盘的表面的清洁变得容易。

    Method for laser machining
    82.
    发明申请
    Method for laser machining 审中-公开
    激光加工方法

    公开(公告)号:US20050029238A1

    公开(公告)日:2005-02-10

    申请号:US10914955

    申请日:2004-08-09

    Applicant: Ga-Lane Chen

    Inventor: Ga-Lane Chen

    Abstract: A method for laser machining includes the steps of: providing a workpiece (10); coating a protective layer (102) of polyimide on the workpiece; machining the workpiece with laser; and removing the protective layer with acetone solution or hydroxybenzene solution.

    Abstract translation: 一种用于激光加工的方法包括以下步骤:提供工件(10); 在工件上涂覆聚酰亚胺的保护层(102); 用激光加工工件; 并用丙酮溶液或羟基苯溶液除去保护层。

    Reflective plate and illumination module with same
    83.
    发明申请
    Reflective plate and illumination module with same 审中-公开
    反光板和照明模块相同

    公开(公告)号:US20050024846A1

    公开(公告)日:2005-02-03

    申请号:US10903684

    申请日:2004-07-30

    CPC classification number: G02B6/0043 F21V7/22 G02B6/0055

    Abstract: The present invention relates to a reflective plate (23) and a backlight system (2) using the same. The reflective plate includes a substrate (232) and a reflective film (233). The reflective plate has a plurality of dots (231) formed thereon to diffuse light beams impinging thereon.

    Abstract translation: 本发明涉及一种使用其的反射板(23)和背光系统(2)。 反射板包括基板(232)和反射膜(233)。 反射板具有形成在其上的多个点(231),以漫射入射在其上的光束。

    Image obtaining apparatus with selectable filters
    84.
    发明申请
    Image obtaining apparatus with selectable filters 审中-公开
    具有可选择滤光片的图像获取装置

    公开(公告)号:US20050018070A1

    公开(公告)日:2005-01-27

    申请号:US10899565

    申请日:2004-07-26

    CPC classification number: H04N5/2254

    Abstract: An image obtaining apparatus comprises a securing frame securing frame (22) with a hollow center, a lens portion (21) secured in a top of the securing frame, a rotating means (23) comprising a turnplate (232) and a plurality of filters (23) embedded in the turnplate, and an image pick-up unit (24). The turnplate can be rotated to locate a selected one of the filters between the lens portion and the image pick-up unit.

    Abstract translation: 图像获取装置包括具有中空中心的固定框架固定框架(22),固定在固定框架顶部的透镜部分(21),旋转装置(23),包括转板(232)和多个过滤器 (23)和图像拾取单元(24)。 旋转板可以旋转以在透镜部分和图像拾取单元之间定位所选择的一个滤光器。

    Field emission display device
    86.
    发明授权
    Field emission display device 有权
    场致发射显示装置

    公开(公告)号:US06825607B2

    公开(公告)日:2004-11-30

    申请号:US10194681

    申请日:2002-07-12

    Applicant: Ga-Lane Chen

    Inventor: Ga-Lane Chen

    CPC classification number: H01J1/3044 H01J2329/00 Y10S977/952

    Abstract: A field emission display device (1) includes a cathode plate (20), a resistive buffer (30) in contact with the cathode plate, a plurality of electron emitters (40) formed on the buffer, and an anode plate (50) spaced from the electron emitters. Each electron emitter includes a rod-shaped first part (401) and a conical second part (402). The buffer and first parts are made from silicon carbide. The combined buffer and first parts has a gradient distribution of electrical resistivity such that highest electrical resistivity is nearest the cathode plate and lowest electrical resistivity is nearest the anode plate. The second parts are made from niobium. When emitting voltage is applied between the cathode and anode plates, electrons emitted from the electron emitters traverse an interspace region and are received by the anode plate. Because of the gradient distribution of electrical resistivity, only a very low emitting voltage is needed.

    Abstract translation: 场发射显示装置(1)包括阴极板(20),与阴极板接触的电阻缓冲器(30),形成在缓冲器上的多个电子发射器(40)和间隔开的阳极板 从电子发射器。 每个电子发射器包括棒状的第一部分(401)和圆锥形的第二部分(402)。 缓冲器和第一部分由碳化硅制成。 组合缓冲器和第一部件具有电阻率的梯度分布,使得最高电阻率最接近阴极板,最低电阻率最接近阳极板。 第二部分由铌制成。 当在阴极和阳极板之间施加发射电压时,从电子发射器发射的电子穿过空间区域并被阳极板接收。 由于电阻率的梯度分布,只需要非常低的发射电压。

    Sealed housing for field emission display
    87.
    发明授权
    Sealed housing for field emission display 有权
    密封外壳用于场发射显示

    公开(公告)号:US06787985B2

    公开(公告)日:2004-09-07

    申请号:US10289559

    申请日:2002-11-06

    Applicant: Ga-Lane Chen

    Inventor: Ga-Lane Chen

    CPC classification number: H01J29/865 H01J31/127

    Abstract: A field emission display package (1) includes an anode plate (30) coated with a phosphor layer (40), a resistive buffer (60) spaced from the phosphor layer (40), a plurality of electron emitters (50) formed on the resistive buffer (60), a cathode plate (70) in contact with the resistive buffer (60), a silicon thin film (80), and a sealed housing (5). The sealed housing includes a front plate (10), a back plate (20) and a plurality of side walls (90) affixed between the front plate and the back plate so that the front plate, the back plate and the side walls define an interspace region. The front plate and the back plate are preferably made from glass. The side walls are made from an Invar-36 alloy having a coefficient of thermal expansion similar to that of the glass.

    Abstract translation: 场发射显示封装(1)包括涂覆有荧光体层(40)的阳极板(30),与荧光体层(40)间隔开的电阻缓冲器(60),形成在所述荧光体层上的多个电子发射器 电阻缓冲器(60),与电阻缓冲器(60)接触的阴极板(70),硅薄膜(80)和密封壳体(5)。 密封壳体包括前板(10),后板(20)和固定在前板和后板之间的多个侧壁(90),使得前板,后板和侧壁限定一个 空间区域。 前板和后板优选由玻璃制成。 侧壁由具有类似于玻璃的热膨胀系数的Invar-36合金制成。

    Field emission display device
    90.
    发明授权
    Field emission display device 失效
    场致发射显示装置

    公开(公告)号:US06646282B1

    公开(公告)日:2003-11-11

    申请号:US10194564

    申请日:2002-07-12

    Applicant: Ga-Lane Chen

    Inventor: Ga-Lane Chen

    CPC classification number: H01J1/3044 H01J31/127 H01J2201/30446 Y10S977/952

    Abstract: A field emission display device (1) includes a cathode plate (20), a resistive buffer (30) in contact with the cathode plate, a plurality of electron emitters (40) formed on the buffer, and an anode plate (50) spaced from the electron emitters. Each electron emitter includes a rod-shaped first part (401) and a conical second part (402). The buffer and first parts are made from silicon oxide. The combined buffer and first parts has a gradient distribution of electrical resistivity such that highest electrical resistivity is nearest the cathode plate and lowest electrical resistivity is nearest the anode plate. The second parts are made from niobium. When emitting voltage is applied between the cathode and anode plates, electrons emitted from the electron emitters traverse an interspace region and are received by the anode plate. Because of the gradient distribution of electrical resistivity, only a very low emitting voltage is needed.

    Abstract translation: 场发射显示装置(1)包括阴极板(20),与阴极板接触的电阻缓冲器(30),形成在缓冲器上的多个电子发射器(40)和间隔开的阳极板 从电子发射器。 每个电子发射器包括棒状的第一部分(401)和圆锥形的第二部分(402)。 缓冲器和第一部分由氧化硅制成。 组合缓冲器和第一部件具有电阻率的梯度分布,使得最高电阻率最接近阴极板,最低电阻率最接近阳极板。 第二部分由铌制成。 当在阴极和阳极板之间施加发射电压时,从电子发射器发射的电子穿过空间区域并被阳极板接收。 由于电阻率的梯度分布,只需要非常低的发射电压。

Patent Agency Ranking