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    • 2. 发明申请
    • BEAM SHAPING AND CONTROL APPARATUS
    • 光束形成和控制装置
    • US20130182332A1
    • 2013-07-18
    • US13825213
    • 2012-07-04
    • Philip R. StaverMichael J. Shaw
    • Philip R. StaverMichael J. Shaw
    • G02B27/09
    • G02B27/0905
    • A method and apparatus for laser beam splitting and shaping is disclosed wherein two beam splitters are used to split one input laser beam into four beams in a generally rectangular pattern. Half-wave plates are used to adjust the power of the input laser beam between v four laser beams. A variable power optical telescope comprising negative and positive lens pairs for the four laser beams is used to adjust the divergence of the four beams, and pointing control prism wedges are used to point or steer the four beams to he parallel to each other and to adjust their relative spacing to create a flat top profile.
    • 公开了一种用于激光束分裂和成形的方法和装置,其中两个分束器用于将一个输入激光束以大致矩形的图案分成四个光束。 半波片用于调整v个激光束之间的输入激光束的功率。 使用包括用于四个激光束的负透镜对和正透镜对的可变功率光学望远镜来调节四个光束的发散度,并且使用指向控制棱镜楔形物来指向或转向四个光束以彼此平行并且调整 它们的相对间距以形成平坦的顶部轮廓。
    • 4. 发明授权
    • Thermal microphotonic sensor and sensor array
    • 热敏微传感器和传感器阵列
    • US07667200B1
    • 2010-02-23
    • US11950821
    • 2007-12-05
    • Michael R. WattsMichael J. ShawGregory N. NielsonAnthony L. Lentine
    • Michael R. WattsMichael J. ShawGregory N. NielsonAnthony L. Lentine
    • G01J5/00
    • G01J5/44G01J5/08G01J5/0821
    • A thermal microphotonic sensor is disclosed for detecting infrared radiation using heat generated by the infrared radiation to shift the resonant frequency of an optical resonator (e.g. a ring resonator) to which the heat is coupled. The shift in the resonant frequency can be determined from light in an optical waveguide which is evanescently coupled to the optical resonator. An infrared absorber can be provided on the optical waveguide either as a coating or as a plate to aid in absorption of the infrared radiation. In some cases, a vertical resonant cavity can be formed about the infrared absorber to further increase the absorption of the infrared radiation. The sensor can be formed as a single device, or as an array for imaging the infrared radiation.
    • 公开了一种用于利用由红外线辐射产生的热量来检测红外辐射的热微振子传感器,以移动热耦合到的光谐振器(例如,环形谐振器)的谐振频率。 谐振频率的偏移可以通过ev逝耦合到光学谐振器的光波导中的光来确定。 可以在光波导上设置红外线吸收器作为涂层或板,以帮助吸收红外辐射。 在一些情况下,可以围绕红外线吸收体形成垂直谐振腔,以进一步增加红外辐射的吸收。 传感器可以形成为单个装置,或者形成用于对红外线辐射进行成像的阵列。
    • 7. 发明申请
    • PREFERENTIAL ROUTING OF SECURED CALLS
    • 安全呼叫的优先路由
    • US20100215033A1
    • 2010-08-26
    • US12389600
    • 2009-02-20
    • Michael J. ShawKenneth Wnuck
    • Michael J. ShawKenneth Wnuck
    • H04L12/66H04K1/00
    • H04L63/20H04M7/0057
    • Installed in an IGAR gateway is intelligence for determining the capabilities of an endpoint. Many older generation secure phones are not IP capable and are thus not directly capable of operating in a VOIP environment. The intelligence allows backwards compatibility of IGAR to legacy phones by recognizing that the endpoint is not IP capable and forcing the secure connection to be routed over PSTN. IGAR could also be included between independent instances of a communications manager (CM). Currently IGAR is supported on only a single CM controlling PSTN gateways, and not between independent CMs. This embodiment recognizes that incoming PSTN call based on a DN and once answered, in-band digits are passed from the originating PBX to the destination PBX in order to route the call within the answering PBX.
    • 安装在IGAR网关中的是确定端点功能的智能。 许多老一代安全电话不具备IP能力,因此不能直接在VOIP环境中运行。 该智能通过识别端点不是IP能力并强制通过PSTN路由安全连接,允许IGAR向传统电话向后兼容。 IGAR也可以包含在通信管理器(CM)的独立实例之间。 目前,只有一个CM控制PSTN网关支持IGAR,而不是在独立CM之间。 该实施例认识到,基于DN的呼入PSTN呼叫并且一旦应答,带内数字从始发PBX传递到目的地PBX,以便在应答PBX内路由呼叫。
    • 9. 发明授权
    • Water and solvent resistant coated paper and method for making the same
    • 耐水和耐溶剂的涂布纸及其制造方法
    • US4341839A
    • 1982-07-27
    • US217523
    • 1980-12-17
    • Michael J. ShawRobert J. Thiessen
    • Michael J. ShawRobert J. Thiessen
    • B41N1/14G03G5/10G03G5/14B32B21/06
    • B41N1/14G03G5/101G03G5/142G03G5/144Y10T428/277Y10T428/31895Y10T428/31899Y10T428/31902Y10T428/31906Y10T428/31982
    • The present invention resides broadly in a method for the preparation of paper having improved water and/or solvent resistance which comprises applying to a base paper a plastic particle containing formulation, and then wetting the formed coating with a solvent to which the plastic particles are sensitive. The present invention is particularly applicable to the preparation of electrostatic paper masters of improved water resistance for lithographic printing having a photoconductive layer and a barrier coat to which the photoconductive layer is applied. The barrier coat contains a binding amount of a binder resin and filler at least a portion of which is an amount of said plastic particles sensitive to the solvent system of the photoconductive layer, the amount of plastic particles and sensitivity being sufficient to materially increase water resistance.The present invention is particularly directed to a novel water and/or solvent resistant coated paper product wherein the coating comprises a binder and filler, a sufficient amount of the filler comprising plastic particles in a coalesced state to provide a thin, substantially continuous plastic film, the binder being hydrophobic.
    • 本发明广泛地涉及一种制备具有改善的耐水和/或耐溶剂性的纸的方法,该方法包括向原纸施加含塑料颗粒的制剂,然后用塑料颗粒敏感的溶剂润湿所形成的涂层 。 本发明特别适用于具有光电导层和施加有光电导层的阻挡层的平版印刷用改善耐水性的静电纸主机的制备。 阻隔层含有粘合剂树脂和填料的结合量,其至少一部分是对光导电层的溶剂体系敏感的所述塑料颗粒的量,塑料颗粒的量和敏感性足以显着增加耐水性 。 本发明特别涉及一种新型的耐水和/或耐溶剂的涂布纸产品,其中涂层包含粘合剂和填料,足量的填料包括聚结状态的塑料颗粒以提供薄的基本上连续的塑料膜, 粘合剂是疏水性的。