会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • MARINE ROPEWAY
    • 海上线缆
    • US20130064605A1
    • 2013-03-14
    • US13566614
    • 2012-08-03
    • Eric G. JOHNSON
    • Eric G. JOHNSON
    • E02B15/06A01K61/02B66D1/60E02B3/00
    • E02B15/06A01K61/80B63B21/56B63B21/64B63B2021/566B66D1/60E02B3/00
    • An apparatus is provided for moving a floating or submerged marine structure. Embodiments include a track fixedly mounted near or under the waterline surface, extending from a first point to a second point for defining a path of motion of the marine structure. A riser cable has a first end movably attached to the track between the first and second points, and a second end fixedly attached to the marine structure. A trolley is attached to the first end of the riser cable between the first end and the track, and has a roller for engaging the track for distributing environmental forces of the marine structure to the track. A drive unit is attached to the marine structure (or to the trolley) for moving the marine structure (or the trolley) such that the marine structure or one end of the marine structure moves along the path of the track.
    • 提供一种用于移动浮式或浸没式海洋结构的装置。 实施例包括固定地安装在水线表面附近或下方的轨道,其从第一点延伸到第二点以限定海洋结构的运动路径。 提升缆线具有可移动地连接到第一和第二点之间的轨道的第一端和固定地连接到海洋结构的第二端。 手推车在第一端和轨道之间连接到提升板电缆的第一端,并且具有用于接合轨道的辊,用于将海洋结构的环境力分配给轨道。 驱动单元连接到海洋结构(或台车)上,用于移动海洋结构(或手推车),使得海洋结构或海洋结构的一端沿着轨道的路径移动。
    • 4. 发明申请
    • COMMUNICATION SYSTEM PROVIDING HYBRID OPTICAL/WIRELESS COMMUNICATIONS AND RELATED METHODS
    • 提供混合光学/无线通信的通信系统及相关方法
    • US20090232508A1
    • 2009-09-17
    • US12472586
    • 2009-05-27
    • Raymond Charles RumpfEric G. Johnson
    • Raymond Charles RumpfEric G. Johnson
    • H04B10/04H04W4/00
    • H04B10/25752
    • A communication system includes at least one optical-wireless device coupled to a longitudinal side of an optical fiber. The optical-wireless device may include an optical fiber power unit for converting optical power into electrical power, and a wireless communication unit electrically powered by the optical fiber power unit. The optical-wireless device may include a substrate mounting the optical fiber power unit and the wireless communication unit to the longitudinal side of the optical fiber. The wireless communication unit may include a radio frequency transmitter, and a signal optical grating coupling the transmitter to the longitudinal side of the optical fiber. The radio frequency transmitter in some embodiments may include an ultra-wideband transmitter. A dipole antenna may also be provided including first and second portions extending in opposite directions along the longitudinal side of the optical fiber.
    • 通信系统包括耦合到光纤的纵向侧的至少一个光学无线设备。 光无线装置可以包括用于将光功率转换成电力的光纤功率单元,以及由光纤功率单元供电的无线通信单元。 光无线装置可以包括将光纤功率单元和无线通信单元安装到光纤的纵向侧的基板。 无线通信单元可以包括射频发射器和将发射器耦合到光纤的纵向侧的信号光栅。 在一些实施例中,射频发射机可以包括超宽带发射机。 还可以提供偶极天线,其包括沿着光纤的纵向侧沿相反方向延伸的第一和第二部分。
    • 5. 发明授权
    • Micro-sculpting using phase masks for projection lithography
    • 使用投影光刻相位掩模进行微雕刻
    • US07585596B1
    • 2009-09-08
    • US10961928
    • 2004-10-08
    • Eric G. JohnsonMahesh PitchumaniJin Won SungHeidi J. Hockel
    • Eric G. JohnsonMahesh PitchumaniJin Won SungHeidi J. Hockel
    • G03F1/00
    • G03F7/0005G03F1/34
    • Methods and systems of creating a photo-mask to form continuous relief micro-structures in photo-active material. This technology uses a basic amplitude mask or electron-beam to create a binary phase grating with pi-phase depth on a transparent reticle coated with photo-active material. The reticle is then used as a phase mask for the fabrication of analog micro-elements. The mask is used in an image reduction machine such as an optical stepper. The period and duty cycle of the phase gratings can be varied to create the proper analog intensity for the desired micro-profile on the photo-active material. The design, analysis, and fabrication procedure of this invention for prisms and positive micro-lenses has been demonstrated.
    • 创建光掩模以在光活性材料中形成连续浮雕微结构的方法和系统。 该技术使用基本幅度掩模或电子束在涂覆有光活性材料的透明掩模上产生具有相位深度的二相相位光栅。 然后将掩模版用作制造模拟微元件的相位掩模。 该掩模用于诸如光学步进机的图像压缩机中。 可以改变相位光栅的周期和占空比,以为光活性材料上的期望的微观轮廓产生适当的模拟强度。 已经证明了本发明的棱镜和正微透镜的设计,分析和制造程序。