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    • 1. 发明申请
    • Ring plasma jet method and apparatus for making an optical fiber preform
    • 环等离子体喷射法和制造光纤预制件的装置
    • US20070169698A1
    • 2007-07-26
    • US11644870
    • 2006-12-26
    • Mikhail GuskovMohd AslamiEvgueni DanilovDau Wu
    • Mikhail GuskovMohd AslamiEvgueni DanilovDau Wu
    • B05D7/22H05H1/24C23C4/00B05D1/08C23C16/00
    • C03B37/01884C03B37/0183H05H1/30
    • A method and apparatus for making an optical fiber preform, including injecting a plasma gas source into the first end of a tubular member; generating a ring plasma flame with the plasma gas source flowing through a plasma gas feeder nozzle, the plasma gas feeder nozzle including: an inner tube, an outer tube, wherein the plasma gas source is injected between the inner tube and the outer tube to produce the ring plasma flame, such that at least a portion of the ring plasma flame is directed radially toward the inner surface of the tubular member; traversing the tubular member along the longitudinal axis relative to the plasma flame; depositing at least one soot layer on the interior surface of the tubular member by introducing reagent chemicals into the plasma flame; and fusing all of the soot layers into a glass material on the interior surface of the tubular member.
    • 一种用于制造光纤预制棒的方法和装置,包括将等离子体气体源注入管状构件的第一端; 在等离子体气体源流过等离子体气体供给喷嘴的同时产生环形等离子体火焰,等离子体气体供给喷嘴包括:内管,外管,其中等离子体气体源被注入内管和外管之间以产生 环等离子体火焰,使得至少一部分环等离子体火焰径向地朝向管状构件的内表面; 沿着纵向轴线相对于等离子体火焰穿过管状构件; 通过将试剂化学品引入等离子体火焰中,将至少一个烟灰层沉积在管状构件的内表面上; 并将所有烟灰层熔合到管状构件的内表面上的玻璃材料中。
    • 3. 发明申请
    • Plasma torch for making synthetic silica
    • 用于制造合成二氧化硅的等离子火炬
    • US20070169516A1
    • 2007-07-26
    • US11646362
    • 2006-12-28
    • Mikhail GuskovMohd AslamiDau Wu
    • Mikhail GuskovMohd AslamiDau Wu
    • F23D11/10C03B37/018F23D14/62
    • C03B37/01426C03B2207/81H05H1/30H05H1/42Y02P40/57
    • The improved plasma torch for making synthetic silica includes use of nitrogen screen gas from outer quartz tubing to provide active environment isolation. In addition, the present induction plasma torch includes a ring disk for more compact but complete environmental protection (360 degree coverage). It also includes offsetting and switching the position of the chemical injection nozzles for allowing improved deposition in both directions, when operated in a horizontal mode. Further, the present induction plasma torch maintains laminar flow for the injected chemicals and the middle quartz tube is provided with a concave section for increasing the average enthalpy of plasma jet, thus improving the efficiency of the plasma torch. In addition, it may utilize more plasma gas inlets. It also includes chemical injection nozzles having a downward angular inclination.
    • 用于制造合成二氧化硅的改进的等离子体焰炬包括使用来自外部石英管的氮气屏蔽气体来提供主动环境隔离。 此外,本感应等离子体焰炬包括用于更紧凑但完全环境保护(360度覆盖)的环形盘。 它还包括当以水平模式操作时,偏移和切换化学喷嘴的位置,以允许在两个方向上改善沉积。 此外,本发明的感应等离子体焰炬维持注入的化学品的层流,并且中间石英管设置有用于增加等离子体射流的平均焓的凹部,从而提高等离子体焰炬的效率。 此外,它可以利用更多的等离子体气体入口。 它还包括具有向下角度倾斜的化学喷嘴。
    • 4. 发明申请
    • Plasma deposition apparatus and method for making solar cells
    • 等离子体沉积装置及制造太阳能电池的方法
    • US20070243338A1
    • 2007-10-18
    • US11783969
    • 2007-04-13
    • Mohd AslamiDau Wu
    • Mohd AslamiDau Wu
    • H05H1/24C23C16/00
    • C23C16/507C23C16/513C23C16/54H01L31/0322H01L31/202H01L31/206Y02B10/10Y02E10/541Y02P70/521
    • A plasma deposition apparatus for making solar cells comprising a conveyor having a longitudinal axis for supporting at least one substrate; at least two modules each having at least one plasma torch for depositing a layer of a reaction product on the at least one substrate, the at least one plasma torch located a distance from the at least one substrate; a chamber for containing the conveyor and the at least two modules; and an exhaust system. In another embodiment, the plasma deposition apparatus for making solar cells comprises: means for supporting a substrate; means for supplying reactants; plasma torch means for depositing a product on the substrate, the plasma torch means located a distance from the substrate; and means for oscillating the plasma torch means relative to the substrate.
    • 一种用于制造太阳能电池的等离子体沉积设备,包括具有用于支撑至少一个基板的纵向轴线的输送机; 至少两个模块,其每个具有至少一个等离子体焰炬,用于在所述至少一个衬底上沉积反应产物层,所述至少一个等离子体焰炬与所述至少一个衬底相距一定距离; 用于容纳所述输送机和所述至少两个模块的室; 和排气系统。 在另一个实施例中,用于制造太阳能电池的等离子体沉积装置包括:用于支撑基板的装置; 提供反应物的手段; 用于在衬底上沉积产品的等离子体焰炬装置,等离子体焰炬装置位于离衬底一定距离处; 以及用于相对于衬底振荡等离子体焰炬装置的装置。
    • 6. 发明授权
    • Fiber optic pressure sensor
    • 光纤压力传感器
    • US4701614A
    • 1987-10-20
    • US624259
    • 1984-06-25
    • Raymond E. JaegerMohd Aslami
    • Raymond E. JaegerMohd Aslami
    • G01L1/24G08B13/186H01J5/16
    • G01L1/245G08B13/186
    • An arrangement for an optical fiber pressure sensor is described. This sensor is comprised of two coating layers concentrically clad to and coaxially oriented with an optical fiber. The first coating layer is comprised of a relatively hard optically lossy material which absorbs any light radiating outwardly from the optical fiber. The second coating layer is comprised of a compliant material in which granular particles have been uniformly dispersed. In response to any pressure laterally applied to the sensor, the compliant coating layer imparts micro-bends, onto the optical fiber, which, in turn, couple light from propagating modes to non-propagating modes. As a result, the amplitude (or power) of the light exiting the optical fiber advantageously decreases in response to this pressure.
    • 对光纤压力传感器的布置进行说明。 该传感器由两个涂覆层组成,它们同心地用光纤包覆并同轴取向。 第一涂层由相对硬的光学损耗材料组成,其吸收从光纤向外辐射的任何光。 第二涂层由其中粒状颗粒均匀分散的顺应性材料构成。 响应于横向施加到传感器的任何压力,顺应性涂层将微弯曲施加到光纤上,光纤又将来自传播模式的光耦合到非传播模式。 结果,离开光纤的光的振幅(或功率)有利地响应于该压力而减小。
    • 7. 发明授权
    • Plasma vapor deposition system and method for making multi-junction silicon thin film solar cell modules and panels
    • 等离子体气相沉积系统和制造多结硅薄膜太阳能电池模块和面板的方法
    • US08613984B2
    • 2013-12-24
    • US13428445
    • 2012-03-23
    • Mohd Aslami
    • Mohd Aslami
    • C23C16/458
    • C23C16/513C23C16/458H01L31/076H01L31/18Y02E10/548
    • A plasma vapor deposition system for making multi-junction silicon thin film solar cell modules and panels including a flexible substrate disposed about and removably supported by a dual-walled cylindrical substrate support for axially rotating the flexible substrate about its longitudinal axis, the dual-walled cylindrical substrate support comprising an inner wall spaced apart by an outer wall to define a coaxial cavity; a plasma vapor deposition torch located substantially adjacent to the flexible substrate for depositing at least one thin film material layer on an outer surface of the flexible substrate; and a traversing platform for supporting the rotatable substrate support relative to the plasma vapor deposition torch, the rotatable substrate support being traversed along its longitudinal axis by the traversing platform.
    • 一种用于制造多结硅薄膜太阳能电池模块和面板的等离子体气相沉积系统,其包括柔性基板,该柔性基板设置在双壁圆柱形基板支撑件周围并可移除地支撑,用于使柔性基板绕其纵向轴线轴向旋转,双壁 圆柱形衬底支撑件包括由外壁隔开以限定同轴腔的内壁; 等离子体气相沉积炬,其基本上邻近柔性基底设置,用于在柔性基板的外表面上沉积至少一个薄膜材料层; 以及用于相对于等离子体气相沉积炬支撑可旋转衬底支撑件的横动平台,可旋转衬底支撑件通过横动平台沿其纵向轴线横移。
    • 8. 发明申请
    • PLASMA VAPOR DEPOSITION SYSTEM AND METHOD FOR MAKING MULTI-JUNCTION SILICON THIN FILM SOLAR CELL MODULES AND PANELS
    • 用于制造多层硅薄膜太阳能电池模块和面板的等离子体蒸气沉积系统和方法
    • US20120178202A1
    • 2012-07-12
    • US13428445
    • 2012-03-23
    • Mohd Aslami
    • Mohd Aslami
    • H01L31/18
    • C23C16/513C23C16/458H01L31/076H01L31/18Y02E10/548
    • A plasma vapor deposition system for making multi-junction silicon thin film solar cell modules and panels including a flexible substrate disposed about and removably supported by a dual-walled cylindrical substrate support for axially rotating the flexible substrate about its longitudinal axis, the dual-walled cylindrical substrate support comprising an inner wall spaced apart by an outer wall to define a coaxial cavity; a plasma vapor deposition torch located substantially adjacent to the flexible substrate for depositing at least one thin film material layer on an outer surface of the flexible substrate; and a traversing platform for supporting the rotatable substrate support relative to the plasma vapor deposition torch, the rotatable substrate support being traversed along its longitudinal axis by the traversing platform.
    • 一种用于制造多结硅薄膜太阳能电池模块和面板的等离子体气相沉积系统,其包括柔性基板,该柔性基板设置在双壁圆柱形基板支撑件周围并可移除地支撑,用于使柔性基板绕其纵向轴线轴向旋转,双壁 圆柱形衬底支撑件包括由外壁隔开以限定同轴腔的内壁; 等离子体气相沉积炬,其基本上邻近柔性基底设置,用于在柔性基板的外表面上沉积至少一个薄膜材料层; 以及用于相对于等离子体气相沉积炬支撑可旋转衬底支撑件的横动平台,可旋转衬底支撑件通过横动平台沿其纵向轴线横移。
    • 9. 发明授权
    • Optical communication system and method electrical power transmission
for thereof
    • 光通信系统及其电力传输方法
    • US5369518A
    • 1994-11-29
    • US993257
    • 1992-12-18
    • Mohd AslamiRonald L. Lavallee
    • Mohd AslamiRonald L. Lavallee
    • H04B10/00H04M19/00
    • H04B10/808H04M19/00
    • A system and a method for providing electrical power to an optical communication system, in particular a telephone system, between a local or central station and a remote station incorporates a conventional fiber optical cable having an electrical conductor or electrically conductive sheath connected to the local station and the remote station already used for transmitting optical signal. A power source is electrically connected to earth ground and to the electrical conductor or sheath at the local station. A power supply is provided at the remote station and electrically connected to the electrical conductor or sheath and to the earth ground thereat. The power supply receives electrical power from the power source located at the local station via the conductor or sheath and the earth ground, the earth ground serving as a return path. The power supply means can thus provide electrical power to an interface device or any other devices provided in the remote station. The power supply preferably includes a power storage devices such as one or more batteries.
    • 向本地或中心站和远程站之间的光通信系统,特别是电话系统提供电力的系统和方法包括具有连接到本地站的电导体或导电护套的常规光纤光缆 远程站已经用于发送光信号。 电源与地面电连接,并与本地站的电导体或护套电连接。 在远程站提供电源,并且电连接到电导体或护套,并在其上连接到地面。 电源通过导体或护套和地面接地来自位于本地站的电源,地线用作返回路径。 因此,电源装置可以向接口装置或远程站中提供的任何其他装置提供电力。 电源优选地包括诸如一个或多个电池的蓄电装置。