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    • 53. 发明申请
    • LIGHT CONVERGENCE DEVICE, MANUFACTURING METHOD THEREOF AND SOLAR BATTERY SYSTEM
    • 光合并器件及其制造方法及太阳能电池系统
    • US20130000698A1
    • 2013-01-03
    • US13635336
    • 2010-04-23
    • Mingjie ZhouJie HuangLei Wang
    • Mingjie ZhouJie HuangLei Wang
    • H01L31/055H01L31/18G02F2/02
    • G02B5/10H01L31/0547H01L31/0549H01L31/055Y02E10/52
    • A light convergence device, a manufacturing method thereof and a solar battery system are provided. The light convergence device (10) includes a light convergence substrate (100). The light convergence substrate (100) includes a rotating paraboloid (101). A photonic crystal layer (300) is formed on the rotating paraboloid (101). The photonic crystal layer (300) is used to reflect a light with a special frequency, and totally reflect all the visible light, such that photoelectric conversion efficiency of a solar battery system is greatly increased. An up-conversion layer (200) is formed on the photonic crystal layer (300). The up-conversion layer (200) includes up-conversion material with up-conversion function for spectrum. The up-conversion material is used to increase absorbing efficiency of the light convergence device (10) for solar energy.
    • 提供了一种聚光装置及其制造方法以及太阳能电池系统。 光会聚装置(10)包括光聚光基板(100)。 光汇聚基板(100)包括旋转抛物面(101)。 在旋转抛物面(101)上形成光子晶体层(300)。 光子晶体层(300)用于反射具有特殊频率的光,并且完全反射所有可见光,使得太阳能电池系统的光电转换效率大大增加。 在光子晶体层(300)上形成上转换层(200)。 上转换层(200)包括具有用于频谱的上转换功能的向上转换材料。 上转换材料用于提高太阳能聚光装置(10)的吸收效率。
    • 55. 发明申请
    • GLITCH POWER REDUCTION
    • 降低功率
    • US20120266120A1
    • 2012-10-18
    • US13365972
    • 2012-02-03
    • Thomas BuechnerMarkus BuehlerMarkus OlbrichPhilipp PanitzLei Wang
    • Thomas BuechnerMarkus BuehlerMarkus OlbrichPhilipp PanitzLei Wang
    • G06F17/50
    • G06F17/505G06F2217/78
    • A method comprises reducing power consumption of an electronic circuit, wherein the electronic circuit comprises at least one logic cone with at least one gate having a single output net, wherein representations of the at least one gate are instances of elements from a standard cell library. Reducing of the power consumption comprises determining an upper bound for dynamic power consumption by calculating transition metrics and power metrics for each gate. Reducing of the power consumption comprises selecting gates with an upper bound for power consumption greater than a predetermined threshold value. For each selected gate, performing operations comprising: testing multiple configurations from the standard cell library for the selected gate by calculating respective upper bound for power consumption for each of the multiple configurations; selecting gate configuration with minimum upper bound for power consumption; and modifying the gate-level design representation according to the selected gate configuration.
    • 一种方法包括降低电子电路的功耗,其中电子电路包括至少一个具有至少一个具有单个输出网的门的逻辑锥,其中至少一个门的表示是来自标准单元库的元件的实例。 降低功耗包括通过计算每个门的转换度量和功率度量来确定动态功耗的上限。 降低功耗包括选择具有大于预定阈值的功耗上限的门。 对于每个所选择的门,执行操作包括:通过针对所述多个配置中的每一个计算相应的功耗上限来测试来自所选择的门的标准单元库的多个配置; 选择门极配置,最小上限为功耗; 以及根据选择的门配置修改门级设计表示。