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    • 6. 发明申请
    • Composite construction building panel
    • 复合建筑面板
    • US20060179782A1
    • 2006-08-17
    • US11349816
    • 2006-02-07
    • James Cox
    • James Cox
    • E04H12/00
    • E04C2/22E04B1/14E04C2/384
    • The present invention relates to the Composite Construction Building Panel now present in the prior art, it provides an improved Composite Construction Building Panel. The present invention allows for the Composite Construction Building Panel to be mounted on varying configurations, ranging from vertical, horizontal or overhead securely without requiring any elaborate construction processes. The present invention allows for the Composite Construction Building Panel to be manufactured using simple, relatively inexpensive process equipment that is already available. The present invention allows for the Composite Construction Building Panel to be a complete structural component with the insulating factors for thermal and sound, plus an exterior finished surface that will protect the foam panels and the interior of the building from the elements and also complete the aesthetically pleasing exterior surface so that no other surface need be installed to the exterior of the building. The present invention allows for the Composite Construction Building Panel to allow for windows, doors or any other thru-way to be installed easily and without excessive impact to the cost or labor.
    • 本发明涉及现有技术中现有的复合施工建筑面板,它提供了一种改进的复合施工建筑面板。 本发明允许复合结构建筑面板安装在不同的构造上,从垂直,水平或顶部稳定地安装,而不需要任何精细的施工过程。 本发明允许使用已经可用的简单,相对便宜的工艺设备来制造复合结构建筑面板。 本发明允许复合结构建筑面板是具有用于热和声的绝缘因子的完整结构部件,以及外部成品表面,其将保护泡沫板和建筑物的内部免受元件的影响,并且在美学上完成 令人满意的外表面,使其他表面不需要安装在建筑物的外部。 本发明允许复合结构建筑面板允许窗户,门或任何其他通行方式容易地安装并且不会对成本或劳动产生过度的影响。
    • 9. 发明申请
    • Tunable detector
    • 可调谐探测器
    • US20050036533A1
    • 2005-02-17
    • US10948870
    • 2004-09-23
    • James CoxRobert Morgan
    • James CoxRobert Morgan
    • G02B6/34H01S5/183H01S5/40H01S5/42G02B6/26G02B6/42
    • H01S5/18386H01S5/18308H01S5/18319H01S5/18355H01S5/18358H01S5/18369H01S5/18377H01S5/18388H01S5/4087H01S5/423H01S2301/163
    • This disclosure is generally concerned with optical systems that employ guided-mode grating resonant reflector filters (“GMGRF”) to facilitate wavelength and/or polarization selectivity in the optical system. In one example, an optical system is provided that includes first and second tunable detectors. Each of the tunable detectors includes a GMGRF that is tuned to select a corresponding optical wavelength and/or polarization of an optical data channel, such that the optical wavelength and/or polarization associated with the first tunable detector is different from the optical wavelength and/or polarization associated with the second tunable detector. In this way, an array of tunable detectors can be employed to select some or all of the wavelengths and/or polarizations of an optical data signal having a plurality of data channels.
    • 本公开通常涉及采用导模光栅谐振反射器滤光器(“GMGRF”)以便于光学系统中的波长和/或极化选择性的光学系统。 在一个示例中,提供了包括第一和第二可调谐检测器的光学系统。 每个可调谐检测器包括被调谐以选择光学数据通道的对应光学波长和/或极化的GMGRF,使得与第一可调谐检测器相关联的光学波长和/或偏振不同于光学波长和/ 或与第二可调谐检测器相关的极化。 以这种方式,可以使用可调谐检测器阵列来选择具有多个数据信道的光学数据信号的一些或全部波长和/或极化。