Electrical device with a low reflectivity layer
    211.
    发明申请
    Electrical device with a low reflectivity layer 审中-公开
    具有低反射率层的电气设备

    公开(公告)号:US20060138946A1

    公开(公告)日:2006-06-29

    申请号:US11025102

    申请日:2004-12-29

    CPC classification number: H01L51/5281

    Abstract: An electrical device has a substrate including a transmissive low reflectivity layer; a first conductor on the substrate; an active material on the first conductor; and a second conductor on the active material. The transmissive low reflectivity layer may be moisture penetrating. The substrate may be flexible or rigid.

    Abstract translation: 电气装置具有包括透射低反射层的基板; 衬底上的第一导体; 第一导体上的活性材料; 和活性材料上的第二导体。 透射性低反射层可以是透湿的。 衬底可以是柔性的或刚性的。

    Electronic devices comprising conductive members that connect electrodes to other conductive members within a substrate and processes for forming the electronic devices
    212.
    发明申请
    Electronic devices comprising conductive members that connect electrodes to other conductive members within a substrate and processes for forming the electronic devices 有权
    电子设备包括将电极连接到衬底内的其它导电构件并且用于形成电子器件的导电构件

    公开(公告)号:US20060138401A1

    公开(公告)日:2006-06-29

    申请号:US11025110

    申请日:2004-12-29

    CPC classification number: H01L27/3276 H01L2227/323

    Abstract: An electronic device includes a substrate including a pixel driving circuit, a first conductive member, and a second conductive member. The first and second conductive members are spaced apart, the first conductive member is connected to the pixel driving circuit, and the second conductive member can be part of a power transmission line. The electronic device also includes an electronic component that includes a first electrode that contacts the first conductive member, a second electrode that is connected to but does not contact the second conductive member, and an organic layer lying between the first and second electrodes. The electronic device also includes a third conductive member that is connected to the second electrode and the second conductive member, and contacts the second conductive member. In one embodiment, a process for forming the electronic device uses the second electrode as a hardmask when removing portions of the first organic layer.

    Abstract translation: 电子装置包括:基板,包括像素驱动电路,第一导电部件和第二导电部件。 第一和第二导电构件间隔开,第一导电构件连接到像素驱动电路,并且第二导电构件可以是输电线路的一部分。 电子设备还包括电子部件,其包括接触第一导电部件的第一电极,与第二导电部件连接但不与第二导电部件接触的第二电极以及位于第一和第二电极之间的有机层。 电子设备还包括连接到第二电极和第二导电构件并与第二导电构件接触的第三导电构件。 在一个实施例中,当去除第一有机层的部分时,用于形成电子器件的工艺使用第二电极作为硬掩模。

    Thin-film transistors and processes for forming the same
    213.
    发明申请
    Thin-film transistors and processes for forming the same 审中-公开
    薄膜晶体管及其形成工艺

    公开(公告)号:US20060118869A1

    公开(公告)日:2006-06-08

    申请号:US11003171

    申请日:2004-12-03

    Abstract: A TFT includes a substrate and a first semiconductor layer overlying the substrate. A portion of the first semiconductor layer is a channel region of the TFT. The TFT also includes spaced-apart first and second source/drain structures overlying the first semiconductor layer. From a plan view of the TFT, the channel region lies between the first source/drain structure and the second source/drain structure. The TFT further includes a gate dielectric layer overlying the channel region and the first and second source/drain structures, and a gate electrode overlying the first gate dielectric layer. A process for forming the TFT includes forming first and second metal-containing structures over first and second semiconductor layers. The process also includes removing the portion of the second semiconductor layer lying between the first and second source/drain structures. A gate dielectric layer and a gate electrode are formed within the spaced-apart first and second source/drain structures.

    Abstract translation: TFT包括衬底和覆盖衬底的第一半导体层。 第一半导体层的一部分是TFT的沟道区。 TFT还包括覆盖在第一半导体层上的间隔开的第一和第二源极/漏极结构。 从TFT的平面图,沟道区域位于第一源极/漏极结构和第二源极/漏极结构之间。 TFT还包括覆盖沟道区和第一和第二源极/漏极结构的栅极电介质层和覆盖第一栅极介电层的栅电极。 用于形成TFT的工艺包括在第一和第二半导体层上形成第一和第二含金属结构。 该方法还包括去除位于第一和第二源极/漏极结构之间的第二半导体层的部分。 在间隔开的第一和第二源极/漏极结构内形成栅极电介质层和栅电极。

    Electronic device having a temperature control system including a ductwork assembly
    214.
    发明申请
    Electronic device having a temperature control system including a ductwork assembly 有权
    具有包括管道组件的温度控制系统的电子设备

    公开(公告)号:US20060034051A1

    公开(公告)日:2006-02-16

    申请号:US10914871

    申请日:2004-08-10

    Applicant: Jian Wang Gang Yu

    Inventor: Jian Wang Gang Yu

    CPC classification number: H05K7/20145 H05K7/20209

    Abstract: A ductwork assembly can be used with an electronic device wherein the electronic device includes a fan and the ductwork assembly is configured to receive a heat transfer fluid from the fan. A disperser lies within the ductwork assembly and is attached thereto in order to affect at least a portion of a flow of the heat transfer fluid. The duckwork assembly may also include a first channel and the first channel is characterized by a first average fluid veloicty that is a hightest average fluid velocity of all channels within the ductwork assembly. The ductwork assembly may include a second channel that is characterized by a second average fluid veloicty that is a lowest average fluid velocity of all channels within the ductwork assembly. The second averaged fluid velocity may be no less than 90% of the first averaged fluid velocity.

    Abstract translation: 管道组件可以与电子设备一起使用,其中电子设备包括风扇,并且管道组件被构造成从风扇接收传热流体。 分散器位于管道组件内并附接到其上以便影响传热流体的流动的至少一部分。 鸭组件还可以包括第一通道,第一通道的特征在于第一平均流体质量,其是管道组件内所有通道的平均流体速度的最高平均值。 管道组件可以包括第二通道,其特征在于第二平均流体涡轮机,其是管道组件内的所有通道的最低平均流体速度。 第二平均流体速度可以不小于第一平均流体速度的90%。

    Circuits including parallel conduction paths and methods of operating an electronic device including parallel conduction paths
    215.
    发明申请
    Circuits including parallel conduction paths and methods of operating an electronic device including parallel conduction paths 失效
    包括并行传导路径的电路和操作包括并行传导路径的电子设备的方法

    公开(公告)号:US20060012587A1

    公开(公告)日:2006-01-19

    申请号:US10892992

    申请日:2004-07-16

    Abstract: In one embodiment, a circuit for driving an electronic component includes a first conduction path and a second conduction path connected in parallel. Each of the first and second conduction paths includes a field-effect transistor. The first field-effect transistor lies along the first conduction path, and the second field-effect transistor lies along the second conduction path. The circuit can be used in an electronic device that includes a radiation-emitting electronic component or a radiation-responsive electronic component. During a first time period, current flows through the first conduction path and the first electronic component while a second conduction path of a driving unit is off. During a second time period, current flows through the second conduction path and the first electronic component while the first conduction path of the driving unit is off.

    Abstract translation: 在一个实施例中,用于驱动电子部件的电路包括并联连接的第一导电路径和第二导电路径。 第一和第二导电路径中的每一个包括场效应晶体管。 第一场效应晶体管沿着第一导电路径,并且第二场效应晶体管沿着第二导电路径。 该电路可以用于包括发射辐射电子部件或辐射响应电子部件的电子设备中。 在第一时间段期间,当驱动单元的第二传导路径关闭时,电流流过第一传导路径和第一电子部件。 在第二时间段期间,当驱动单元的第一传导路径关闭时,电流流过第二传导路径和第一电子部件。

    Organic electronic device comprising conductive members and processes for forming and using the organic electronic device
    217.
    发明申请
    Organic electronic device comprising conductive members and processes for forming and using the organic electronic device 有权
    包括导电构件的有机电子器件和用于形成和使用有机电子器件的工艺

    公开(公告)号:US20050230678A1

    公开(公告)日:2005-10-20

    申请号:US11025265

    申请日:2004-12-29

    Abstract: An organic electronic device includes electronic components within an array. In one embodiment, the organic electronic device includes a substrate and a first conductive member overlying the substrate and lying at least partly within the array. The first conductive member is at least part of a first power transmission line. The organic electronic device further includes a second conductive member overlying the substrate and lying at least partly within the array. The second conductive member is at least part of a first electrode and is electrically connected to the first conductive member. In another embodiment, an organic active layer has at least a portion lying between the first and second conductive members. In yet another embodiment, a process for using an organic electronic device including an array of radiation-emitting components allows radiation to be emitted from the array at an intensity of at least 1100 cd/m2.

    Abstract translation: 有机电子器件包括阵列内的电子元件。 在一个实施例中,有机电子器件包括衬底和覆盖衬底并且至少部分地位于阵列内的第一导电构件。 第一导电构件是第一输电线的至少一部分。 有机电子器件还包括覆盖衬底并且至少部分地位于阵列内的第二导电构件。 第二导电构件是第一电极的至少一部分,并且电连接到第一导电构件。 在另一个实施例中,有机活性层具有位于第一和第二导电构件之间的至少一部分。 在另一个实施例中,使用包括发射辐射元件阵列的有机电子器件的方法允许以至少1100cd / m 2的强度从阵列发射辐射。

    Crew optimization engine for repair of pairings during irregular airline operations
    219.
    发明授权
    Crew optimization engine for repair of pairings during irregular airline operations 有权
    船员优化引擎,用于在不规则航空公司运营期间进行配对维修

    公开(公告)号:US06408276B1

    公开(公告)日:2002-06-18

    申请号:US09364156

    申请日:1999-07-30

    Applicant: Gang Yu Gao Song

    Inventor: Gang Yu Gao Song

    CPC classification number: G06Q10/06 G06Q10/063116

    Abstract: An automated real time crew optimization engine for repairing crew problems including open flights, open pairings, and broken crews in airline operations, which generates multiple solutions in conformance with solution constraints by preprocessing the crew problems to generate potential solutions, and optimizing the potential solutions to provide optimized solutions. The preprocessing includes the use of self-connection methods, skipping-leg methods, and an extend-out-broken crew method. Potential solutions are generated by swap methods including a one-way swap method, a two-way swap method, and a three-way swap method. A depth-search-first algorithm and a shortest path algorithm are applied to the potential solutions to find optimal solutions.

    Abstract translation: 一个自动化的实时机组优化引擎,用于修复机组问题,包括航空公司运营中的公开航班,公开配对和破坏船员,根据解决方案约束生成多种解决方案,预处理船员问题以产生潜在解决方案,并优化潜在解决方案 提供优化的解决方案。 预处理包括使用自连接方法,跳过方法以及延伸出来的机组方法。 潜在的解决方案是通过交换方法生成的,包括单向交换法,双向交换法和三向交换法。 将深度搜索优先算法和最短路径算法应用于潜在解决方案以找到最优解。

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