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    • 5. 发明申请
    • System for Improved Hybridization of Thermal Solar and Biomass and Fossil Fuel Based Energy Systems
    • 热太阳能和生物质和化石燃料基能源系统改进杂交系统
    • US20140182576A1
    • 2014-07-03
    • US14234997
    • 2012-07-26
    • Yehuda HaratsIan Brown
    • Yehuda HaratsIan Brown
    • F24J2/00
    • F24S20/40F01K3/004F01K3/12F22B1/006Y02E20/14Y02E50/11Y02P80/15
    • A hybridization system (15) for use in a hybrid energy plant (35, 50, 60, 70) that includes a first thermal energy unit (10) powered by solar energy and a second non-solar thermal energy unit (11) for providing thermal energy to a user (16) via first and second heat transfer fluids (HTF) respectively. The hybridization system includes a mixing unit (45) for mixing the thermal energy of the first and second heat transfer fluids either directly or indirectly so as to form a unified heat transfer fluid that is fed to the user. In some embodiments a thermal energy storage unit (28) and mixing unit (45) are coupled directly or indirectly to the first and second thermal energy units for receiving, storing and mixing thermal energy from the thermal energy units, so as to form either directly or indirectly a unified heat transfer fluid that is fed to the user.
    • 一种用于混合能量设备(35,50,60,70)的杂交系统(15),其包括由太阳能供电的第一热能单元(10)和用于提供太阳能的第二非太阳能热能单元(11) 分别经由第一和第二传热流体(HTF)向使用者(16)施加热能。 杂交系统包括用于直接或间接混合第一和第二传热流体的热能的混合单元(45),以形成供给用户的统一的传热流体。 在一些实施例中,热能存储单元(28)和混合单元(45)直接或间接地耦合到第一和第二热能单元,用于接收,存储和混合来自热能单元的热能,以便直接形成 或间接地传送给用户的统一传热流体。
    • 6. 发明申请
    • METHOD AND SYSTEM FOR PATTERNING A DIELECTRIC FILM
    • 用于绘制电介质膜的方法和系统
    • US20070238298A1
    • 2007-10-11
    • US11390197
    • 2006-03-28
    • Ian Brown
    • Ian Brown
    • H01L21/311
    • H01L21/31144H01L21/02063H01L21/31116H01L21/76802H01L21/76814
    • A method and system for patterning a dielectric film such as a low dielectric constant (low-k) material. A dry non-plasma etching process can be implemented to transfer a pattern from a photo-lithographic layer to a hard mask layer, while minimizing the evolution of surface roughness in the sidewall of the etched pattern in the hard mask layer. Once a pattern is transferred to the hard mask layer, the photo-lithographic layer can be removed in order to minimize the exposure of the underlying low-k dielectric film to the ashing or wet stripping process that facilitates removal of the photo-lithographic layer. The dry non-plasma removal process comprises a chemical treatment of the exposed hard mask layer, followed by a thermal treatment of the chemically treated exposed layer. The two steps, chemical and thermal treatment, can be repeated.
    • 用于图案化诸如低介电常数(低k)材料的电介质膜的方法和系统。 可以实施干式非等离子体蚀刻工艺以将图案从光刻层转移到硬掩模层,同时最小化硬掩模层中蚀刻图案的侧壁中的表面粗糙度的演变。 一旦将图案转移到硬掩模层,就可以去除光刻层,以便将底层低k电介质膜暴露于促进去除光刻层的灰化或湿剥离过程中最小化。 干燥的非等离子体去除方法包括对暴露的硬掩模层进行化学处理,然后对化学处理的暴露层进行热处理。 化学和热处理两个步骤可以重复。
    • 8. 发明授权
    • System for improved hybridization of thermal solar and biomass and fossil fuel based energy systems
    • 用于改善热太阳能和生物质和基于化石燃料的能源系统杂交的系统
    • US09360234B2
    • 2016-06-07
    • US14234997
    • 2012-07-26
    • Yehuda HaratsIan Brown
    • Yehuda HaratsIan Brown
    • F24J2/00F01K3/00F01K3/12F22B1/00
    • F24S20/40F01K3/004F01K3/12F22B1/006Y02E20/14Y02E50/11Y02P80/15
    • A hybridization system (15) for use in a hybrid energy plant (35, 50, 60, 70) that includes a first thermal energy unit (10) powered by solar energy and a second non-solar thermal energy unit (11) for providing thermal energy to a user (16) via first and second heat transfer fluids (HTF) respectively. The hybridization system includes a mixing unit (45) for mixing the thermal energy of the first and second heat transfer fluids either directly or indirectly so as to form a unified heat transfer fluid that is fed to the user. In some embodiments a thermal energy storage unit (28) and mixing unit (45) are coupled directly or indirectly to the first and second thermal energy units for receiving, storing and mixing thermal energy from the thermal energy units, so as to form either directly or indirectly a unified heat transfer fluid that is fed to the user.
    • 一种用于混合能量设备(35,50,60,70)的杂交系统(15),其包括由太阳能供电的第一热能单元(10)和用于提供太阳能的第二非太阳能热能单元(11) 分别经由第一和第二传热流体(HTF)向使用者(16)施加热能。 杂交系统包括用于直接或间接混合第一和第二传热流体的热能的混合单元(45),以形成供给用户的统一的传热流体。 在一些实施例中,热能存储单元(28)和混合单元(45)直接或间接地耦合到第一和第二热能单元,用于接收,存储和混合来自热能单元的热能,以便直接形成 或间接地传送给用户的统一传热流体。
    • 10. 发明授权
    • Quick change roll-fed high speed labeling system and methods for using same
    • 快速卷筒式高速贴标系统及其使用方法
    • US06883576B1
    • 2005-04-26
    • US10042130
    • 2001-10-18
    • Robert M. RelloIan BrownJames E. SimmonsRichard R. Gonzalo
    • Robert M. RelloIan BrownJames E. SimmonsRichard R. Gonzalo
    • B65C9/18B65C9/02B65C9/06B65C9/26
    • B65C9/1819Y10T156/1744Y10T156/1768Y10T156/1771
    • A quick change roll-fed high speed labeling system for improving labeling speed and precision label placement comprises a conveyor for moving articles to be labeled, and an infeed screw assembly for spacing and stabilizing the articles. The infeed screw assembly comprises a feedscrew having a plurality of pockets for receiving and properly spacing successive incoming articles, which has a gear drive, and means for pivoting the feedscrew both vertically and horizontally. Additional system elements include a rotatable starwheel assembly having a plurality of spaced pockets for receiving individual ones of the articles therein, a rotatable vacuum drum assembly, and a supply of roll fed labels, wherein the labels are dispensed singly onto a label receiving face of the rotatable vacuum drum assembly. The rotatable vacuum drum assembly comprises a unique three-ported valving system, for reducing or eliminating glue clogging problems during system operation.
    • 用于提高标签速度和精密标签放置的快速更换滚动式高速贴标系统包括用于移动要标记的物品的输送机和用于间隔和稳定物品的进给螺丝组件。 进料螺杆组件包括具有多个凹穴的进料螺杆,所述凹槽用于接收并适当地间隔连续的进入的物品,其具有齿轮传动装置,以及用于垂直和水平地枢转进给螺杆的装置。 附加的系统元件包括可旋转的星形轮组件,其具有用于接收其中的单个物品的多个间隔开的袋,可旋转的真空鼓组件和供给辊的标签,其中标签被单独分配到标签接收面 可旋转真空鼓组件。 可旋转真空鼓组件包括一个独特的三口阀门系统,用于在系统运行期间减少或消除胶水堵塞问题。