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    • 41. 发明授权
    • Gate driver and display panel utilizing the same
    • 门驱动器和显示面板使用它
    • US08174480B2
    • 2012-05-08
    • US12137596
    • 2008-06-12
    • Chih-Wei ChenHan-Shui Hsueh
    • Chih-Wei ChenHan-Shui Hsueh
    • G09G3/36
    • G09G3/3677G09G2310/0286
    • A gate driver including a shift register, a level shifter, an output buffer, and a processing unit. The shift register generates a shifted signal. The level shifter generates a level signal according to a first operation voltage, a second operation voltage and the shifted signal. The output buffer provides a scan signal according to the level signal. The processing unit controls the level signal to follow the second operation voltage when the first operation voltage equals to a first preset value and the second operation voltage is higher than a second preset value less than the first preset value.
    • 包括移位寄存器,电平移位器,输出缓冲器和处理单元的栅极驱动器。 移位寄存器产生移位信号。 电平移位器根据第一操作电压,第二操作电压和移位信号产生电平信号。 输出缓冲器根据电平信号提供扫描信号。 当第一操作电压等于第一预设值并且第二操作电压高于小于第一预设值的第二预设值时,处理单元控制电平信号跟随第二操作电压。
    • 43. 发明授权
    • Multi-level memory cell
    • 多级存储单元
    • US08067766B2
    • 2011-11-29
    • US12335538
    • 2008-12-16
    • Yen-Ya HsuChih-Wei Chen
    • Yen-Ya HsuChih-Wei Chen
    • H01L29/08
    • G11C11/5678G11C11/5685G11C13/0004G11C13/0007G11C2213/32H01L45/04H01L45/145
    • A multi-level memory cell having a bottom electrode, a first dielectric layer, a plurality of memory material layers, a plurality of second dielectric layers, and an upper electrode is provided. The bottom electrode is disposed in a substrate. The first dielectric layer is disposed on the substrate and has an opening exposing the bottom electrode. The memory material layers are stacked on a sidewall of the first dielectric layer exposed by the opening and are electrically connected to the bottom electrode. The second dielectric layers are respectively disposed between every adjacent two memory material layers and are located on the sidewall of the first dielectric layer. The upper electrode is disposed on the memory material layers. A manufacturing method of the multi-level memory cell is further provided. A multi-bit data can be stored in a single memory cell, and both the process complexity and the cost are reduced.
    • 提供具有底部电极,第一电介质层,多个存储材料层,多个第二电介质层和上部电极的多层存储单元。 底部电极设置在基板中。 第一电介质层设置在基板上,并且具有暴露底部电极的开口。 存储材料层层叠在由开口暴露的第一电介质层的侧壁上,并与底部电极电连接。 第二电介质层分别设置在每个相邻的两个存储材料层之间,并且位于第一介电层的侧壁上。 上电极设置在记忆材料层上。 还提供了多级存储单元的制造方法。 多位数据可以存储在单个存储器单元中,并且减少了处理复杂性和成本。
    • 44. 发明申请
    • Touch Display Panel and Touch Sensing Method Thereof
    • 触摸显示面板和触摸感应方法
    • US20110157059A1
    • 2011-06-30
    • US12979447
    • 2010-12-28
    • Chih-Wei ChenHai-En TsaiFu-Cheng Fan
    • Chih-Wei ChenHai-En TsaiFu-Cheng Fan
    • G06F3/041
    • G06F3/041G06F3/0412G06F3/0416
    • This disclosure relates to a touch display panel and more specifically to a borderless touch display panel. The touch display panel includes a Fresnel lens, a touch-sensing panel and a coordinate transforming module, wherein the flat display panel and the Fresnel lens are spaced apart by a distance. The flat display panel outputs an original image having an original coordinate system. The Fresnel lens is used to transform the original image into a display image to be viewed by the user, wherein the display image has a display coordinate system. The touch sensing panel will sense the user's touch and output a touch coordinate of a touch and the coordinate transforming module will transform the touch coordinate into an action coordinate based on a transformation parameter set. The transformation parameter set includes a magnification parameter and a shift parameter for compensating for the positional difference between the touch coordinate and the action coordinate due to the distance between the flat display panel and the Fresnel lens.
    • 本公开涉及触摸显示面板,更具体地涉及无边界触摸显示面板。 触摸显示面板包括菲涅尔透镜,触摸感测面板和坐标变换模块,其中平面显示面板和菲涅耳透镜间隔一定距离。 平面显示面板输出具有原始坐标系的原始图像。 菲涅尔透镜用于将原始图像变换为用户观看的显示图像,其中显示图像具有显示坐标系。 触摸感测面板将感测用户的触摸并输出触摸的触摸坐标,并且坐标变换模块将基于变换参数集将触摸坐标转换为动作坐标。 变换参数集合包括用于补偿由于平面显示面板和菲涅耳透镜之间的距离而导致的触摸坐标与动作坐标之间的位置差的放大参数和偏移参数。
    • 45. 发明申请
    • SERVER AND UPDATE METHOD THEREOF
    • 服务器和更新方法
    • US20110113177A1
    • 2011-05-12
    • US12649731
    • 2009-12-30
    • Lin YuChih-Wei Chen
    • Lin YuChih-Wei Chen
    • G06F13/00
    • G06F8/65G06F11/2033G06F11/2038
    • A server is provided, and the server includes an embedded management board (EMB), a management backplane and a plurality of independent motherboards. The management backplane is coupled to the EMB. The plurality of motherboards respectively coupled to the management backplane and issues a command for performing a data-update on the EMB. Each motherboard of the plurality of independent motherboards includes a network interface and a management controller. The network interface receives a control command issued from a far-end device. The baseboard management controller coupled to the network interface for receives the control command and sends the command to the plurality of independent motherboards, wherein the each motherboard of the plurality of independent motherboards includes an individual on/off function. When the EMB is working, the EMB switches to connect with the plurality of motherboards through the management backplane by an polling method.
    • 提供服务器,服务器包括嵌入式管理板(EMB),管理背板和多个独立主板。 管理背板耦合到EMB。 多个主板分别耦合到管理背板并发布用于在EMB上执行数据更新的命令。 多个独立主板的每个主板包括网络接口和管理控制器。 网络接口接收从远端设备发出的控制命令。 所述基板管理控制器,耦合到所述网络接口,用于接收所述控制命令,并将所述命令发送到所述多个独立主板,其中所述多个独立主板的每个主板包括单独的开/关功能。 当EMB工作时,EMB通过轮询方法通过管理背板切换到与多个主板连接。
    • 46. 发明授权
    • Method of specifying access sequence of a storage device
    • 指定存储设备的访问顺序的方法
    • US07818520B2
    • 2010-10-19
    • US11709753
    • 2007-02-23
    • Chih-Wei Chen
    • Chih-Wei Chen
    • G06F12/00G06F3/00G06F9/46
    • G06F13/387
    • The present invention is to provide a method of specifying access sequence of a storage device, wherein queues with different priority are created in the storage device for recording access requests from at least one server at the front-end of the storage device to manage the access operation, and are recorded corresponding to the front-end servers and the priority thereof respectively via a priority table. When the front-end server makes an access request, the request will be added to the corresponding queue according to the source front-end server, and each queue will be processed according to the priority thereof. The maximum workload of the access request processed every single time of each queue is set respectively. Thus, the access requests of the queues with higher priority will be processed within a shorter time.
    • 本发明提供一种指定存储设备的访问顺序的方法,其中在存储设备中创建具有不同优先级的队列,用于记录来自存储设备前端的至少一个服务器的访问请求以管理访问 并且分别通过优先级表对应于前端服务器及其优先级记录。 当前端服务器进行访问请求时,该请求将根据源前端服务器添加到相应的队列中,并且每个队列将根据其优先级进行处理。 分别设置每个队列每一个处理的访问请求的最大工作负载。 因此,具有较高优先级的队列的访问请求将在更短的时间内被处理。
    • 48. 发明申请
    • LED FIXTURE AND MASK STRUCTURE THEREOF
    • LED灯具及其结构
    • US20100110691A1
    • 2010-05-06
    • US12265384
    • 2008-11-05
    • Zu-Chao HsuChih-Wei Chen
    • Zu-Chao HsuChih-Wei Chen
    • F21V29/00
    • F21V29/004F21K9/23F21K9/60F21V29/773F21V29/89F21Y2115/10
    • An LED fixture include a mask structure and an LED module. The mask structure includes a cooling fin set of buckling type, an upper socket and a lower socket. The cooling fin set is constituted by a plurality of cooling fins that are encircled and inter-buckled to each other. An interior enclosed by the cooling fin set is formed into an accommodating space and a fitting hole connecting the accommodating space. The upper socket is assembled to one side of the fitting hole, while the lower socket is assembled to another side of the fitting hole. Meanwhile, the upper socket and the lower socket are respectively fastened by the cooling fin set through a clipping-and-abutting manner. The LED module is arranged by accommodating in the accommodating space and is connected to the cooling fin set as well. Accordingly, the entirely cooling effectiveness is promoted and the using lifetime is prolonged.
    • LED灯具包括掩模结构和LED模块。 掩模结构包括一个翘曲型冷却翅片组,上部插座和下部插座。 冷却翅片组由多个冷却翅片构成,其彼此包围并互相夹紧。 由冷却翅片组封闭的内部形成为容纳空间和连接容纳空间的装配孔。 上部插座组装到装配孔的一侧,而下部插座组装到装配孔的另一侧。 同时,上插座和下插座分别由冷却翅片组通过夹紧和邻接的方式固定。 LED模块通过容纳在容纳空间中并且连接到冷却片组而被布置。 因此,促进了完全的冷却效果,并延长了使用寿命。
    • 50. 发明授权
    • System for sharing storage device among controllers and method thereof
    • 用于在控制器之间共享存储设备的系统及其方法
    • US07496717B2
    • 2009-02-24
    • US11519023
    • 2006-09-12
    • Chih-Wei Chen
    • Chih-Wei Chen
    • G06F12/06
    • G06F3/0637G06F3/0613G06F3/0622G06F3/0632G06F3/0689
    • The present invention discloses a system for sharing a storage device among controllers, which includes a first controller and a second controller connected with each other, and both connected to a storage device including a plurality of logical unit numbers. The controllers detect their respective logical unit numbers and define the respective logical unit number detected by an opposite party as a virtual logical unit number. The controllers separately have a resource allocation unit for specifying the logical unit numbers to perform data accesses for the controllers and define a virtual identification for each virtual logical unit number based on an identification number thereof. If the first controller accesses data in a logical unit number detected by the second controller and requests the second controller to perform a data access of the respective virtual logical unit number thereof based on the virtual identification number, the second controller will search for a matched virtual logical unit number to perform the data access and return the access result to the first controller.
    • 本发明公开了一种用于共享控制器之间的存储装置的系统,其包括彼此连接的第一控制器和第二控制器,并且两者都连接到包括多个逻辑单元号的存储装置。 控制器检测其各自的逻辑单元号,并将对方检测到的相应逻辑单元号定义为虚拟逻辑单元号。 控制器分别具有资源分配单元,用于指定对控制器执行数据访问的逻辑单元号,并根据其识别号定义每个虚拟逻辑单元号的虚拟标识。 如果第一控制器以第二控制器检测到的逻辑单元号访问数据,并且请求第二控制器基于虚拟标识号执行其相应的虚拟逻辑单元号的数据访问,则第二控制器将搜索匹配的虚拟 执行数据访问的逻辑单元号,并将访问结果返回给第一个控制器。