Vertical coupling structure for non-adjacent resonators
    1.
    发明授权
    Vertical coupling structure for non-adjacent resonators 有权
    非相邻谐振器的垂直耦合结构

    公开(公告)号:US07872550B2

    公开(公告)日:2011-01-18

    申请号:US12689219

    申请日:2010-01-18

    Abstract: A vertical coupling structure for non-adjacent resonators is provided. The vertical coupling structure has a first resonator and a second resonator. At least one side of the first resonator is formed as a first bent extension structure, and the first bent extension structure includes a slot. The second resonator is not adjacent to the first resonator, and the side of the second resonator opposite to the first bent extension structure of the first resonator further includes a slot, such that the two sides are electrically connected.

    Abstract translation: 提供了一种用于非相邻谐振器的垂直耦合结构。 垂直耦合结构具有第一谐振器和第二谐振器。 第一谐振器的至少一侧形成为第一弯曲延伸结构,第一弯曲延伸结构包括槽。 第二谐振器不与第一谐振器相邻,并且与第一谐振器的第一弯曲延伸结构相反的第二谐振器的侧面还包括狭槽,使得两侧电连接。

    WEB TRANSPORTATION GUIDING APPARATUS AND METHOD
    2.
    发明申请
    WEB TRANSPORTATION GUIDING APPARATUS AND METHOD 有权
    WEB运输指导装置及方法

    公开(公告)号:US20100072244A1

    公开(公告)日:2010-03-25

    申请号:US12273049

    申请日:2008-11-18

    CPC classification number: B65H23/038 B65H2406/334

    Abstract: A guiding apparatus and method for a shift generated by a web during web transportation is provided, in which a coarse position guiding module and a fine position guiding module function to directly adjust the web so as to compensate the shift occurred during the process of transportation according to a position of the web. By means of monitoring a location of the fine position guiding module at any time, a reference of the coarse position guiding module will be adjusted when the location of the fine position guiding module satisfies the condition defined in the guiding method, so as to change a position where the web enters into the fine position guiding module.

    Abstract translation: 提供了一种在纸幅输送过程中由纸幅产生的移位的引导装置和方法,其中粗略位置引导模块和精细位置引导模块用于直接调节纸幅,以补偿在运输过程中发生的偏移 到网络的位置。 通过在任何时间监视精细位置引导模块的位置,当精细位置引导模块的位置满足指导方法中定义的条件时,将调整粗略位置引导模块的基准,以便改变 纸幅进入精细位置导向模块的位置。

    Flexible backlight module and system for manufacturing the same
    3.
    发明申请
    Flexible backlight module and system for manufacturing the same 审中-公开
    灵活的背光模块和系统制造相同

    公开(公告)号:US20070147067A1

    公开(公告)日:2007-06-28

    申请号:US11477369

    申请日:2006-06-30

    CPC classification number: G02F1/133615 G02B6/001 G02B6/0053 G02B6/0065

    Abstract: A flexible backlight module and a system for manufacturing the same. The flexible backlight module comprises: a bottom flexible panel, having a plurality of troughs arranged thereon; at least a light guide device, each being disposed in one of the troughs corresponding thereto, capable of guiding light to be discharged from the opening of the corresponding trough; and a top flexible panel, laid over the bottom flexible panel to receive the light discharged from each trough while emitting the received light therefrom. The system for manufacturing the flexible backlight module is capable of mass-producing the aforesaid flexible backlight module in an automatic fashion. The flexible backlight module of the invention can not only overcome the problems of high power consumption and heat dissipating in conventional backlight modules, but also be used as the light source of high brightness liquid crystal displays.

    Abstract translation: 柔性背光模块及其制造系统。 柔性背光模块包括:底部柔性板,其上布置有多个槽; 至少一个导光装置,每个导光装置设置在与其相对应的一个槽中,能够引导从相应槽的开口排出的光; 和顶部柔性板,放置在底部柔性板上以接收从每个槽排出的光,同时从其中发射接收的光。 用于制造柔性背光模块的系统能够以自动方式批量生产上述柔性背光模块。 本发明的柔性背光源模块不仅可以克服传统背光模块中的高功耗和散热问题,而且可以用作高亮度液晶显示器的光源。

    Web transportation guiding apparatus and method
    4.
    发明授权
    Web transportation guiding apparatus and method 有权
    网路运输指导设备及方法

    公开(公告)号:US07708176B2

    公开(公告)日:2010-05-04

    申请号:US12273049

    申请日:2008-11-18

    CPC classification number: B65H23/038 B65H2406/334

    Abstract: A guiding apparatus and method for a shift generated by a web during web transportation is provided, in which a coarse position guiding module and a fine position guiding module function to directly adjust the web so as to compensate the shift occurred during the process of transportation according to a position of the web. By means of monitoring a location of the fine position guiding module at any time, a reference of the coarse position guiding module will be adjusted when the location of the fine position guiding module satisfies the condition defined in the guiding method, so as to change a position where the web enters into the fine position guiding module.

    Abstract translation: 提供了一种在纸幅输送过程中由纸幅产生的移位的引导装置和方法,其中粗略位置引导模块和精细位置引导模块用于直接调节纸幅,以补偿在运输过程中发生的偏移 到网络的位置。 通过在任何时间监视精细位置引导模块的位置,当精细位置引导模块的位置满足指导方法中定义的条件时,将调整粗略位置引导模块的基准,以便改变 纸幅进入精细位置导向模块的位置。

    FILTERING CIRCUIT AND STRUCTURE THEREOF
    5.
    发明申请
    FILTERING CIRCUIT AND STRUCTURE THEREOF 有权
    滤波电路及其结构

    公开(公告)号:US20090045890A1

    公开(公告)日:2009-02-19

    申请号:US11964714

    申请日:2007-12-27

    CPC classification number: H01P1/203

    Abstract: A filtering circuit and a structure thereof are provided. The filtering circuit includes an input terminal, an output terminal, a resonant circuit, a first coupling portion, and a second coupling portion. The resonant circuit is coupled between the input terminal and the output terminal and includes M resonators which are arranged in sequence. A signal received by the input terminal can be transmitted to the output terminal by the resonant circuit through inter-coupling between adjacent resonators. The first coupling portion and the second coupling portion are respectively coupled to non-adjacent resonators. A part of the signal received by the input terminal is transmitted to the second coupling portion via the first coupling portion through cross-couple. Thereby, sideband interference can be further suppressed.

    Abstract translation: 提供了一种滤波电路及其结构。 滤波电路包括输入端子,输出端子,谐振电路,第一耦合部分和第二耦合部分。 谐振电路耦合在输入端子和输出端子之间,并且包括依次排列的M个谐振器。 由输入端子接收的信号可以通过谐振电路通过相邻谐振器之间的相互耦合传输到输出端子。 第一耦合部分和第二耦合部分分别耦合到不相邻的谐振器。 由输入端子接收的信号的一部分经由第一耦合部分通过交叉耦合传输到第二耦合部分。 由此,能够进一步抑制边带干扰。

    METHOD OF FORMING VERTICAL COUPLING STRUCTURE FOR NON-ADJACENT RESONATORS
    6.
    发明申请
    METHOD OF FORMING VERTICAL COUPLING STRUCTURE FOR NON-ADJACENT RESONATORS 有权
    形成非相干谐振器的垂直耦合结构的方法

    公开(公告)号:US20090000106A1

    公开(公告)日:2009-01-01

    申请号:US11969922

    申请日:2008-01-07

    Abstract: A method for forming a vertical coupling structure for non-adjacent resonators is provided to have a first and a second resonators, a dielectric material layer, a first and a second high-frequency transmission lines and at least one via pole. The first and the second resonators respectively have a first and a second opposite metal surfaces. The dielectric material layer is disposed between the opposite second metal surfaces of the first and the second resonators. The first and the second transmission lines are respectively arranged at sides of the first metal surfaces of the first resonator and the second resonator. The first high-frequency transmission line is vertically connected to the second high-frequency transmission line by the via pole.

    Abstract translation: 提供了一种用于形成用于非相邻谐振器的垂直耦合结构的方法,以具有第一和第二谐振器,电介质材料层,第一和第二高频传输线以及至少一个通孔。 第一和第二谐振器分别具有第一和第二相对的金属表面。 介电材料层设置在第一和第二谐振器的相对的第二金属表面之间。 第一和第二传输线分别布置在第一谐振器和第二谐振器的第一金属表面的侧面。 第一高频传输线通过通极垂直连接到第二高频传输线。

    OPTICAL FIBER AND THE MANUFACTURING METHOD THEREOF
    7.
    发明申请
    OPTICAL FIBER AND THE MANUFACTURING METHOD THEREOF 审中-公开
    光纤及其制造方法

    公开(公告)号:US20080158905A1

    公开(公告)日:2008-07-03

    申请号:US11759826

    申请日:2007-06-07

    CPC classification number: G02B6/001 C03C25/6208

    Abstract: An optical fiber is disclosed, which is comprised of: a core, having a plurality of microstructures formed thereon; and a cladding layer, surrounding the core. In a preferred embodiment, as light is transmitting along the axis of the aforesaid optical fiber and strikes on the plural microstructures, it is scattered and reflected out of the optical fiber through a side wall thereof so as to achieve a side-emitting effect. As the microstructures are formed inside the core of the aforesaid optical fiber, not only they are prevented from being damaged by normal usage, contacting to adhesive directly, but also they can lower the risk of the optical fiber being snapped/deformed while the optical fiber is subjecting to an external force and bended. In addition, by controlling the shape, quantity, size, distribution density and location of the microstructure, the brightness of the side-emitting optical fiber can be adjusted correspondingly.

    Abstract translation: 公开了一种光纤,其包括:在其上形成有多个微结构的芯; 以及围绕芯的包覆层。 在一个优选实施例中,当光沿着上述光纤的轴线传播并撞击到多个微结构时,它通过其侧壁被散射并从光纤中反射出来,以达到侧面发射效果。 由于微细结构形成在上述光纤的芯部内部,因此不仅可以防止正常使用而直接与粘合剂接触,而且可以降低光纤被卡扣/变形的风险,同时光纤 受到外力和弯曲。 此外,通过控制微结构的形状,数量,尺寸,分布密度和位置,可以相应地调整侧发光纤的亮度。

    Method of forming vertical coupling structure for non-adjacent resonators
    8.
    发明授权
    Method of forming vertical coupling structure for non-adjacent resonators 有权
    形成非相邻谐振器的垂直耦合结构的方法

    公开(公告)号:US07877855B2

    公开(公告)日:2011-02-01

    申请号:US11969922

    申请日:2008-01-07

    Abstract: A method for forming a vertical coupling structure for non-adjacent resonators is provided to have a first and a second resonators, a dielectric material layer, a first and a second high-frequency transmission lines and at least one via pole. The first and the second resonators respectively have a first and a second opposite metal surfaces. The dielectric material layer is disposed between the opposite second metal surfaces of the first and the second resonators. The first and the second transmission lines are respectively arranged at sides of the first metal surfaces of the first resonator and the second resonator. The first high-frequency transmission line is vertically connected to the second high-frequency transmission line by the via pole.

    Abstract translation: 提供了一种用于形成用于非相邻谐振器的垂直耦合结构的方法,以具有第一和第二谐振器,电介质材料层,第一和第二高频传输线以及至少一个通孔。 第一和第二谐振器分别具有第一和第二相对的金属表面。 介电材料层设置在第一和第二谐振器的相对的第二金属表面之间。 第一和第二传输线分别布置在第一谐振器和第二谐振器的第一金属表面的侧面。 第一高频传输线通过通极垂直连接到第二高频传输线。

    VERTICAL COUPLING STRUCTURE FOR NON-ADJACENT RESONATORS
    9.
    发明申请
    VERTICAL COUPLING STRUCTURE FOR NON-ADJACENT RESONATORS 有权
    非相干谐振器的垂直耦合结构

    公开(公告)号:US20100117768A1

    公开(公告)日:2010-05-13

    申请号:US12689219

    申请日:2010-01-18

    Abstract: A vertical coupling structure for non-adjacent resonators is provided. The vertical coupling structure has a first resonator and a second resonator. At least one side of the first resonator is formed as a first bent extension structure, and the first bent extension structure includes a slot. The second resonator is not adjacent to the first resonator, and the side of the second resonator opposite to the first bent extension structure of the first resonator further includes a slot, such that the two sides are electrically connected.

    Abstract translation: 提供了一种用于非相邻谐振器的垂直耦合结构。 垂直耦合结构具有第一谐振器和第二谐振器。 第一谐振器的至少一侧形成为第一弯曲延伸结构,第一弯曲延伸结构包括槽。 第二谐振器不与第一谐振器相邻,并且与第一谐振器的第一弯曲延伸结构相反的第二谐振器的侧面还包括狭槽,使得两侧电连接。

    Vertical coupling structure for non-adjacent resonators
    10.
    发明授权
    Vertical coupling structure for non-adjacent resonators 有权
    非相邻谐振器的垂直耦合结构

    公开(公告)号:US07675391B2

    公开(公告)日:2010-03-09

    申请号:US11969920

    申请日:2008-01-07

    Abstract: A vertical coupling structure for non-adjacent resonators is provided to have a first and a second resonators, a dielectric material layer, a first and a second high-frequency transmission lines and at least one via pole. The first and the second resonators respectively have a first and a second opposite metal surfaces. The dielectric material layer is disposed between the opposite second metal surfaces of the first and the second resonators. The first and the second transmission lines are respectively arranged at sides of the first metal surfaces of the first resonator and the second resonator. The first high-frequency transmission line is vertically connected to the second high-frequency transmission line by the via pole.

    Abstract translation: 提供了一种用于非相邻谐振器的垂直耦合结构,以具有第一和第二谐振器,电介质材料层,第一和第二高频传输线以及至少一个通孔极。 第一和第二谐振器分别具有第一和第二相对的金属表面。 介电材料层设置在第一和第二谐振器的相对的第二金属表面之间。 第一和第二传输线分别布置在第一谐振器和第二谐振器的第一金属表面的侧面。 第一高频传输线通过通极垂直连接到第二高频传输线。

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