LED-lamp heat-dissipation device
    151.
    发明申请
    LED-lamp heat-dissipation device 审中-公开
    LED灯散热装置

    公开(公告)号:US20080246383A1

    公开(公告)日:2008-10-09

    申请号:US11783231

    申请日:2007-04-06

    Abstract: The present invention discloses an LED-lamp heat-dissipation device, which comprises LED lamps, an aluminum baseplate and a hollow heat-dissipation module. The hollow heat-dissipation module further comprises a hollow accommodation unit and a cooling fin unit, and the hollow accommodation unit has a plurality of heat-dissipation strips. The LED lamps are soldered on the aluminum baseplate. The aluminum baseplate together with the LED lamps is applied onto one side of the hollow heat-dissipation module; then liquid is filled into the hollow accommodation unit of the hollow heat-dissipation module. When the LED lamps are turned on, heat will be conducted to the aluminum baseplate and then conducted to the cooling fin unit via the liquid inside the hollow accommodation unit, which the aluminum baseplate is applied onto. Then, the cooling fin unit will dissipate heat out. Thereby, the present invention can achieve a fast heat-dissipation effect.

    Abstract translation: 本发明公开了一种LED灯散热装置,其包括LED灯,铝基板和中空散热模块。 中空散热模块还包括中空收纳单元和冷却翅片单元,并且中空收纳单元具有多个散热条。 LED灯被焊接在铝基板上。 铝基板与LED灯一起应用于中空散热模块的一侧; 然后将液体填充到中空散热模块的中空容纳单元中。 当LED灯开启时,热量将传导到铝基板,然后通过铝基板施加的中空容纳单元内的液体传导到散热片单元。 然后,散热片将散热。 由此,本发明能够实现快速的散热效果。

    SYSTEM AND METHOD FOR PRESENTING SUPPLEMENTARY PROGRAM DATA UTILIZING PRE-PROCESSING SCHEME
    153.
    发明申请
    SYSTEM AND METHOD FOR PRESENTING SUPPLEMENTARY PROGRAM DATA UTILIZING PRE-PROCESSING SCHEME 审中-公开
    使用预处理方案提供补充程序数据的系统和方法

    公开(公告)号:US20080175564A1

    公开(公告)日:2008-07-24

    申请号:US11624702

    申请日:2007-01-19

    Applicant: Chi-Chun Lin

    Inventor: Chi-Chun Lin

    CPC classification number: H04N9/8233 H04N21/4307 H04N21/4884

    Abstract: A system for pre-processing supplementary program data is provided. The system includes: a storage device, for storing at least one supplementary program data unit; a parser, coupled to the storage device, for storing the supplementary program data unit in the storage device, and determining a presentation timing corresponding to the supplementary program data unit, the presentation timing including a presentation-on time; and a Presentation Unit (PU), coupled to the parser and the storage device, for pre-processing the supplementary program data unit to generate presentation content of the supplementary program data unit before the presentation-on time is reached, and for presenting the supplementary program data unit according to the presentation timing and the presentation content.

    Abstract translation: 提供了一种用于预处理补充程序数据的系统。 该系统包括:存储装置,用于存储至少一个补充程序数据单元; 耦合到所述存储装置的用于将所述补充程序数据单元存储在所述存储装置中的解析器,以及确定与所述补充程序数据单元相对应的呈现定时,所述呈现定时包括呈现导入时间; 以及耦合到所述解析器和所述存储装置的表示单元(PU),用于对所述补充程序数据单元进行预处理,以在达到所述呈现接通时间之前生成所述补充程序数据单元的呈现内容,并且用于呈现所述补充 程序数据单元根据呈现时间和呈现内容。

    Adaptively de-blocking circuit and associated method
    154.
    发明申请
    Adaptively de-blocking circuit and associated method 有权
    自适应解块电路及相关方法

    公开(公告)号:US20080166060A1

    公开(公告)日:2008-07-10

    申请号:US12007458

    申请日:2008-01-10

    CPC classification number: H04N19/86 H04N19/42 H04N19/61

    Abstract: The present invention discloses an adaptively de-blocking circuit and associated method. A mean is derived according to the neighboring pixels surrounding a central pixel of an image. A blending factor is determined according to a flatness of the image. An updated pixel value of the central pixel is determined by blending the original pixel value of the central pixel and the mean according to the blending factor. Finally, alternatively output the updated pixel value and the original pixel value of the central pixel in response to a block border signal.

    Abstract translation: 本发明公开了一种自适应解块电路及相关方法。 根据围绕图像的中心像素的相邻像素导出平均值。 根据图像的平坦度确定混合因子。 通过根据混合因子混合中心像素的原始像素值和平均值来确定中心像素的更新像素值。 最后,响应于块边界信号替代地输出更新的像素值和中心像素的原始像素值。

    Method of automatically and fairly playing a die game and machine for the same
    155.
    发明授权
    Method of automatically and fairly playing a die game and machine for the same 有权
    自动和公平地玩模具游戏和机器的方法相同

    公开(公告)号:US07361090B2

    公开(公告)日:2008-04-22

    申请号:US11222946

    申请日:2005-09-12

    Applicant: Yueh-Chun Lin

    Inventor: Yueh-Chun Lin

    Abstract: A method of automatically and fairly playing a die game has acts of actuating a die game machine, shaking multiple dice by a die-shaking device in an opaque cap, recognizing pips on the dice with a detecting device, predicting numbers and placing stakes by players through player-interfaces, calculating scores of the players by a central control device, revealing the pips on the dice to the players by removing the opaque cap and showing the scores of the players on displays of the player-interfaces.

    Abstract translation: 一种自动和公平地玩模拟游戏的方法具有致动游戏机的动作,通过不透明帽中的抖动装置摇动多个骰子,用检测装置识别骰子上的点,预测玩家数量和放置赌注 通过播放器界面,通过中央控制装置计算玩家的分数,通过去除不透明帽并在玩家界面的显示器上显示玩家的得分,向玩家揭示骰子上的点数。

    Time counting assembly with a display for world time zones
    156.
    发明申请
    Time counting assembly with a display for world time zones 失效
    具有世界时区显示的计时装配

    公开(公告)号:US20080056070A1

    公开(公告)日:2008-03-06

    申请号:US11783899

    申请日:2007-04-12

    Applicant: Wen-Chun Lin

    Inventor: Wen-Chun Lin

    CPC classification number: G04G9/0076 G04B19/223

    Abstract: A time counting assembly with a display for world time zones comprised of a power source, a second counter, a minute counter, an hour counter, and a time zone display for displaying a correct time over a faceplate. Stir the time zone adjustable ring with the hand to align a first landmark of a local time zone with a fixed point and then calibrate the time counting assembly in accordance with the local time, and then stir the time zone adjustable ring with the hand to align a second landmark of another locating time zone with the fixed point such that the inner gear ring moves the planetary idle gear set and the planetary base wheel to shift engagement of the engaging hooks in the ratchet holes, and the front hour wheel is rotated on the planetary base wheel with a planetary movement along the minute wheel set to cause rotation of a meshed hour wheel so as to turn a hour hand to the time in accordance with the time zone corresponding to the second landmark. The direct time zone adjustment design greatly reduces the thickness of the assembly so that the time counting assembly is usable in a watch or low-profile timer while maintaining world time zone display and adjustable functions, and providing a modularized design function for ultra-thin time recording device.

    Abstract translation: 具有用于世界时区的显示器的时间计数组件,包括电源,第二计数器,分钟计数器,小时计数器和用于在面板上显示正确时间的时区显示。 用手搅拌时区可调节环,将本地时区的第一个地标与固定点对齐,然后根据当地时间校准时间计数组件,然后用手搅拌时区可调圈 具有固定点的另一个定位时区的第二标记,使得内齿圈移动行星空转齿轮组和行星基轮,以使接合钩在棘轮孔中的接合,并且前小时轮在 行星齿轮轮沿着分轮设置行星运动,以使啮合的小时轮转动,以便根据对应于第二标记的时区将时针转到时间。 直接时区调整设计大大降低了组件的厚度,使得计时组件可用于手表或薄型定时器,同时保持世界时区显示和可调功能,并为超薄时间提供模块化设计功能 录音设备

    Thin film transistor array substrate and repairing method thereof
    157.
    发明授权
    Thin film transistor array substrate and repairing method thereof 有权
    薄膜晶体管阵列基板及其修复方法

    公开(公告)号:US07324183B2

    公开(公告)日:2008-01-29

    申请号:US10906891

    申请日:2005-03-11

    CPC classification number: G02F1/136213 G02F1/136259

    Abstract: A thin film transistor array substrate and repairing methods thereof are disclosed. The thin film transistor array substrate comprises openings in each pixel electrode, each capacitor electrode and each common line. The openings of the capacitor electrode and the common line are located in the opening of the pixel electrode. The opening of the capacitor electrode exposes a portion area of the capacitor electrode and the common line. The pixel electrode is coupled to the common line through a connecting conductive layer. The MII storage capacitor Cst is formed by the pixel electrode and the capacitor electrode. When the MII storage capacitor Cst fails, the MII storage capacitor Cst can be switched to the MIM storage capacitor Cst by laser repairing.

    Abstract translation: 公开了一种薄膜晶体管阵列基板及其修复方法。 薄膜晶体管阵列基板包括每个像素电极中的开口,每个电容器电极和每条公共线。 电容器电极和公共线的开口位于像素电极的开口中。 电容器电极的开口暴露电容器电极和公共线的部分区域。 像素电极通过连接导电层耦合到公共线。 MII存储电容器Cst由像素电极和电容器电极形成。 当MII存储电容器Cst失效时,MII存储电容器Cst可以通过激光修复切换到MIM存储电容器Cst。

    Adaptive Quantization Method and Apparatus For An OFDM Receiver
    158.
    发明申请
    Adaptive Quantization Method and Apparatus For An OFDM Receiver 有权
    OFDM接收机的自适应量化方法和装置

    公开(公告)号:US20070258531A1

    公开(公告)日:2007-11-08

    申请号:US11381625

    申请日:2006-05-04

    CPC classification number: H04L27/2647 H04L25/067 H04L27/0008

    Abstract: A quadrature frequency division multiplexing (“OFDM”) wireless receiver, including methods and devices for adaptive quantization of OFDM signals according to modulation and coding schemes and sub-carrier frequency responses, is provided. Efficient quantization may be utilized to reduce the large dynamic range of signals to achieve circuit simplification and chip area reduction. In one embodiment, a quantization circuit includes a quantization selector to select quantization thresholds according to modulation and coding schemes and sub-carrier frequency responses, and a non-uniform quantizer to reduce input dynamic range so that an output is represented by fewer bits than an input.

    Abstract translation: 提供了一种正交频分复用(“OFDM”)无线接收机,包括用于根据调制和编码方案以及子载波频率响应的OFDM信号的自适应量化的方法和装置。 可以利用高效量化来减小信号的大动态范围,以实现电路简化和芯片面积减小。 在一个实施例中,量化电路包括量化选择器,以根据调制和编码方案和子载波频率响应来选择量化阈值,以及不均匀量化器,以减少输入动态范围,使得输出由比 输入。

    BUILT-IN WEBCAM
    159.
    发明申请
    BUILT-IN WEBCAM 有权
    内置WEBCAM

    公开(公告)号:US20070253703A1

    公开(公告)日:2007-11-01

    申请号:US11464031

    申请日:2006-08-11

    CPC classification number: G03B17/02 G06F1/1616 G06F1/1686 H04N5/2251 H04N7/142

    Abstract: A webcam built in an electronic device includes a housing, a video camera, and a latching mechanism. The video camera is movable between a first location in the housing and a second location outside the housing. The latching mechanism maintains the video camera at the first location and the second location.

    Abstract translation: 内置在电子设备中的网络摄像机包括外壳,摄像机和锁定机构。 摄像机可以在壳体中的第一位置和壳体外部的第二位置之间移动。 锁定机构将摄像机保持在第一位置和第二位置。

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