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
    • Retention assembly for retaining a panel in a window or a door
    • 用于将面板保持在窗户或门中的保持组件
    • US20070022680A1
    • 2007-02-01
    • US11484826
    • 2006-07-11
    • Peter GuntherRobert Daniels
    • Peter GuntherRobert Daniels
    • E06B1/04
    • E06B3/5878
    • A retention assembly is for retaining a panel in a window or a door. The assembly includes a surround, a frame, and a locking latch. The surround includes a first and a second pair of spaced segments which extend to define an opening. The frame includes a pair of first spaced sides and the panel is supported between the sides. The pair of first spaced sides are disposed between the first and second pair of segments. One of the first sides includes a floor and a catch which extends from the floor. The locking latch is movably supported by the surround and defines a retention recess for permitting locking engagement between the locking latch and the catch as the locking latch is moved relative to one of the first segments.
    • 保持组件用于将面板保持在窗户或门中。 该组件包括环绕,框架和锁定闩锁。 环绕件包括延伸以限定开口的第一和第二对隔开的段。 框架包括一对第一间隔开的侧面,并且该面板被支撑在两侧之间。 一对第一间隔开的侧面设置在第一和第二对段之间。 第一面中的一个包括从地板延伸的地板和卡子。 锁定闩锁由环绕件可移动地支撑,并且当锁定闩锁相对于第一段之一移动时,限定了用于允许锁定闩锁和卡扣之间的锁定接合的保持凹部。
    • 5. 发明申请
    • Vertical enterprise system
    • 垂直企业制度
    • US20050198121A1
    • 2005-09-08
    • US11031358
    • 2005-01-07
    • Robert DanielsClifford Audinet
    • Robert DanielsClifford Audinet
    • G06F15/16
    • G06Q10/10
    • Vertical enterprise systems and methods for integrating applications from one or more enterprises into a single interface for presentation to a user are disclosed. A vertical enterprise system in accordance with an illustrative embodiment of the present invention may include one or more client enterprises, one or more partner enterprises, and an active integration enterprise in communication with the one or more client and partner enterprises. The active integration enterprise may include a central integration platform operating on an application integration network adapted to host a number of core components including a portal system, a collaboration system, a database system, and/or a business system. In certain embodiments, the active integration enterprise can be configured to host a number of user-specific applications that provide specific functionality for a particular client. In use, the active integration enterprise can be configured to permit the one or more client and/or partner enterprises to be utilized in a distributed fashion. A single sign-on interface of the portal system can provide the user with application data from multiple enterprises as a single view.
    • 公开了用于将来自一个或多个企业的应用程序集成到用于呈现给用户的单个界面的垂直企业系统和方法。 根据本发明的说明性实施例的垂直企业系统可以包括一个或多个客户企业,一个或多个合作伙伴企业和与一个或多个客户和合作伙伴企业通信的主动集成企业。 主动集成企业可以包括在适于承载包括门户系统,协作系统,数据库系统和/或业务系统的许多核心组件的应用集成网络上运行的中央集成平台。 在某些实施例中,主动集成企业可被配置为托管为特定客户端提供特定功能的多个用户特定应用。 在使用中,主动集成企业可以配置为允许一个或多个客户端和/或合作伙伴企业以分布式方式使用。 门户系统的单一登录界面可以为用户提供来自多个企业的应用数据,作为单一视图。
    • 8. 发明申请
    • METHOD AND APPARATUS OF DRIVING TORSIONAL RESONANCE MODE OF A PROBE-BASED INSTRUMENT
    • 基于探头的仪器驱动力共振模式的方法与装置
    • US20070119241A1
    • 2007-05-31
    • US11669034
    • 2007-01-30
    • Chanmin SuRobert Daniels
    • Chanmin SuRobert Daniels
    • G12B21/02G01N13/10
    • G01Q10/06G01Q60/26G01Q60/32G01Q60/34G01Q60/38
    • A method of operating a scanning probe microscope includes using a probe having a cantilever, and oscillating the probe at a torsional resonance frequency thereof. In addition, the method includes substantially increasing torsional drive efficiency with dual actuators disposed on the probe or the probe base. First and second actuators may be driven by corresponding first and second drive signals, the first and second drive signals being about 180° out of phase. The maximizing step includes altering at least one of the amplitudes of the first and second drive signals to maximize torsional oscillation. Torsional and flexural oscillation of the cantilever probe can be excited concurrently, sequentially or independently by adjusting the phase of the corresponding drive signals. A pair of cantilever components can be used to form a nanotweezer by rotating the respective arms having corresponding tip portions at the distal ends.
    • 操作扫描探针显微镜的方法包括使用具有悬臂的探针,并以其扭转共振频率振动探针。 此外,该方法包括通过设置在探针或探针基座上的双重致动器显着提高扭转驱动效率。 第一和第二致动器可以由相应的第一和第二驱动信号驱动,第一和第二驱动信号相位相差180度。 最大化步骤包括改变第一和第二驱动信号的幅度中的至少一个以最大化扭转振荡。 可以通过调整相应的驱动信号的相位来同时,顺序地或独立地激励悬臂探头的扭转和弯曲振荡。 可以使用一对悬臂部件来通过在远端旋转具有相应末端部分的各个臂来形成纳米制造者。
    • 10. 发明申请
    • Method and apparatus of driving torsional resonance mode of a probe-based instrument
    • 驱动基于探针的仪器的扭转共振模式的方法和装置
    • US20050028583A1
    • 2005-02-10
    • US10937597
    • 2004-09-09
    • Chanmin SuRobert Daniels
    • Chanmin SuRobert Daniels
    • G01Q10/00G01Q10/06G01Q60/24G01Q60/26G01Q60/32G01Q60/34G01Q60/38G12B21/22G01N13/10G12B21/02G12B21/20
    • G01Q10/06G01Q60/26G01Q60/32G01Q60/34G01Q60/38
    • A method of operating a scanning probe microscope includes using a probe having a cantilever, and oscillating the probe at a torsional resonance frequency thereof. In addition, the method includes substantially increasing torsional drive efficiency with dual actuators disposed on the probe or the probe base. First and second actuators may be driven by corresponding first and second drive signals, the first and second drive signals being about 180° out of phase. The maximizing step includes altering at least one of the amplitudes of the first and second drive signals to maximize torsional oscillation. Torsional and flexural oscillation of the cantilever probe can be excited concurrently, sequentially or independently by adjusting the phase of the corresponding drive signals. A pair of cantilever components can be used to form a nanotweezer by rotating the respective arms having corresponding tip portions at the distal ends.
    • 操作扫描探针显微镜的方法包括使用具有悬臂的探针,并以其扭转共振频率振动探针。 此外,该方法包括通过设置在探针或探针基座上的双重致动器显着提高扭转驱动效率。 第一和第二致动器可以由相应的第一和第二驱动信号驱动,第一和第二驱动信号相位相差180度。 最大化步骤包括改变第一和第二驱动信号的幅度中的至少一个以最大化扭转振荡。 可以通过调整相应的驱动信号的相位来同时,顺序地或独立地激励悬臂探头的扭转和弯曲振荡。 可以使用一对悬臂部件来通过在远端旋转具有相应末端部分的各个臂来形成纳米制造者。