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    • 2. 发明申请
    • TRANSPARENT CONDUCTIVE ARTICLES AND METHODS OF MAKING SAME
    • 透明传导性文章及其制作方法
    • US20080008893A1
    • 2008-01-10
    • US11859581
    • 2007-09-21
    • Clark Bright
    • Clark Bright
    • B32B15/08B05D1/08
    • C23C16/0272C23C16/545G02F1/133305G02F1/133345H01L51/0097H01L51/5206H01L51/5215H01L51/5256H01L2251/5338Y02E10/549Y02P70/521Y10T428/12576Y10T428/31667Y10T428/31678Y10T428/31681Y10T428/31692Y10T428/31794Y10T428/31935
    • A lightweight, flexible, plastic substrate used to construct displays, including flat panel displays, to package materials and for electro luminescence lamps is coated with at least one layer, such that the substrate has desired barrier and electrode characteristics. The display medium of the flat panel display is protected from oxygen and moisture in order to avoid degradation with the coating. The layer with barrier and electrode characteristics has both a low enough resistance to function as an electrode for the display, and low oxygen and moisture permeability. For lower permeability and/or higher conductivity, multiple alternating layers of barrier materials and conductive materials are applied. The barrier material includes at least one of a thin metallic film, an organic polymer, a thin transparent dielectric, a thin transparent metal nitride, and a thin transparent conductive oxide. The conductive material includes at least one of a thin transparent conductive oxide, a thin transparent metallic film, and a thin transparent metal nitride. Preferably there is a Polymer Multi Layer (PML) processed base coat deposited over the substrate. The base coat produces substrate smoothing, and more importantly, in combination with another layer, the base coat improves vapor barrier properties. In the preferred embodiment, a PML processed top coat barrier layer is deposited before the coating contacts a surface, such as a roller. The PML processed top coat also excludes moisture (water vapor) and atmospheric gases that chemically degrade the device performance.
    • 用于构造显示器(包括平板显示器)到封装材料和电致发光灯的轻质,柔性塑料基板被涂覆有至少一层,使得该基板具有期望的阻挡层和电极特性。 保护平板显示器的显示介质免受氧气和湿气的影响,以避免涂层的劣化。 具有阻挡层和电极特性的层具有足够低的电阻以用作显示器的电极,并且具有低的氧气和透湿性。 为了降低渗透性和/或较高的导电性,施加阻挡材料和导电材料的多个交替层。 阻挡材料包括薄金属膜,有机聚合物,薄透明电介质,薄透明金属氮化物和薄透明导电氧化物中的至少一种。 导电材料包括薄透明导电氧化物,薄透明金属膜和薄透明金属氮化物中的至少一种。 优选地,在基底上沉积有聚合物多层(PML)处理的基底涂层。 基底涂层产生基底平滑,更重要的是,与另一层结合,底涂层改善了蒸气阻隔性能。 在优选实施例中,在涂层接触诸如辊子的表面之前,沉积PML加工的顶涂层阻挡层。 PML加工的外套也不包括化学降解设备性能的水分(水蒸气)和大气。
    • 6. 发明授权
    • Power generating apparatus
    • 发电设备
    • US3974395A
    • 1976-08-10
    • US582613
    • 1975-06-02
    • Clark Bright
    • Clark Bright
    • F03D7/02G05F1/67H02P9/04
    • G05F1/67F03D7/0272F03D9/12F05B2220/706F05B2270/20H02P2101/15Y02E10/723Y02E10/725Y02E60/16
    • A control system for obtaining maximum power output from electrical generating water pumping, flywheel storage and like systems comprising a wind-driven prime mover coupled to an electrical generator over an extended range of wind velocities is described. The maximum electrical output power is obtained by synchronizing the speed of the generator, and hence the speed of the prime mover, with the maximum power output of the prime mover. Since the maximum output power of a wind-driven prime mover is proportional to the third power of the wind velocity, and is a function of an angular velocity-dependent power coefficient, means are provided for detecting the angular velocity of the prime mover and generating a signal proportional to the cube of said wind velocity. The singal thus generated is used for controlling the magnitude of the excitation field current in the electrical generating apparatus whereby the electrical output varies approximately as a cubic function of the wind velocity and, consequently, as a linear function of the output power of the prime mover. For this purpose the control-signal generating means employs a solid state device or the like which is biased to operate along the third power portion of its characteristic operating curve.
    • 描述了一种用于从发电水泵送,飞轮存储和类似系统获得最大功率输出的控制系统,其包括在延长的风速范围内耦合到发电机的风力原动机。 最大电力输出功率是通过将发电机的速度和原动机的速度与原动机的最大功率输出同步来获得的。 由于风力原动机的最大输出功率与风速的第三功率成比例,并且是角速度相关功率系数的函数,因此提供了用于检测原动机的角速度并产生 与所述风速的立方成正比的信号。 由此产生的信号用于控制发电装置中的励磁电流的大小,由此电输出大致作为风速的三次函数而变化,因此,作为原动机的输出功率的线性函数 。 为此,控制信号发生装置采用被固定状态的装置等,该固态装置等被偏置成沿其特征性操作曲线的第三功率部分工作。