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    • 9. 发明申请
    • Multi-Coated Hybrid Optical Film Structure
    • 多层混合光学膜结构
    • US20110176213A1
    • 2011-07-21
    • US12690760
    • 2010-01-20
    • Seng-Lu YangHua Chieh ChenPo Chao HuangChao Li Su
    • Seng-Lu YangHua Chieh ChenPo Chao HuangChao Li Su
    • G02B1/10
    • G02B5/0231G02B5/0221
    • An optical film has multi-coated layers. Diffusion layers are used to scatter light. Each diffusion layer has an interface microstructure. A condensing optical layer is used to concentrating light. A design of a multi-coating technology is thus used for scattering and concentrating light. By integrating scattering and concentrating materials in a single optical film, cost is effectively reduced. By using diffusion layers having interface microstructures, interface-dominating mechanism, not only hybrid optical performance with luminance and haze is effectively enhanced; but also quality variations owing to particles added or film warp and scoring on the beneath optical film owing to particles coated are reduced.
    • 光学膜具有多层涂层。 扩散层用于散射光。 每个扩散层具有界面微结构。 聚光光学层用于聚光。 因此,多涂层技术的设计用于散射和集中光。 通过将散射和浓缩材料整合在单个光学膜中,可以有效降低成本。 通过使用具有界面微观结构的扩散层,界面主导机制,不仅有效地提高了亮度和雾度的混合光学性能; 而且由于涂覆颗粒而导致的由于添加的颗粒引起的质量变化或由于涂覆颗粒而在下面的光学膜上的薄膜翘曲和刻痕被减少。
    • 10. 发明授权
    • Wirelesss communication device and method
    • 无线通信设备及方法
    • US07983204B2
    • 2011-07-19
    • US11945373
    • 2007-11-27
    • Li SuFeng QianBrett L RobertsonBrian D Storm
    • Li SuFeng QianBrett L RobertsonBrian D Storm
    • G08C17/00H04B1/16
    • H04W52/029Y02D70/1222Y02D70/1224Y02D70/1226Y02D70/1244Y02D70/1262Y02D70/146
    • A wireless communication device (200), including: a housing (210); a controller (220), the controller (220) configured to control the operations of the wireless communication device; memory (270) coupled to the controller (220); a transceiver (250) coupled to the controller (220), the transceiver (250) configured to send and receive wireless signals; the receive signal includes at least a control channel and a packet data channel, the control channel being configured to provide the modulation and encoding and/or decoding information necessary to process a subsequent packet of data received by the transceiver (250) or in preparation for transmission by the transceiver (250); a monitoring module (290) for monitoring the control channel and controlling a dynamic scaling module (295), the monitoring module (290) reads a parameter field from the control channel which is used to determine that the data message has certain processing needs meeting a certain threshold; the dynamic scaling module (295) is configured to provide energy savings by varying the voltage and frequency of a controller, substantially real-time, according to processing needs, including: (i) a performance mode when the certain threshold is met; and (ii) a default mode when the certain threshold is not met.
    • 一种无线通信设备(200),包括:壳体(210); 控制器(220),所述控制器(220)被配置为控制所述无线通信设备的操作; 存储器(270),耦合到所述控制器(220); 耦合到所述控制器(220)的收发器(250),所述收发器(250)被配置为发送和接收无线信号; 所述接收信号至少包括控制信道和分组数据信道,所述控制信道被配置为提供对由所述收发机(250)接收的后续数据包进行处理所需的调制和编码和/或解码信息,或准备 由收发器(250)传输; 监视模块(290),用于监视所述控制信道并控制动态缩放模块(295),所述监控模块(290)从所述控制信道读取用于确定所述数据消息具有某些处理需求的参数字段 一定的门槛; 动态缩放模块(295)被配置为通过根据处理需要基本上实时地改变控制器的电压和频率来提供能量节省,包括:(i)满足特定阈值时的演奏模式; 和(ii)当不满足某个阈值时的默认模式。