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    • 2. 发明授权
    • Methods and apparatus for aligning a set of patterns on a silicon substrate
    • 用于在硅衬底上对准一组图案的方法和装置
    • US08048814B2
    • 2011-11-01
    • US12468540
    • 2009-05-19
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • H01L21/47
    • H01L31/1804H01L22/12H01L31/022425Y02E10/547Y02P70/521
    • A method of aligning a set of patterns on a substrate, the substrate including a substrate surface, is disclosed. The method includes depositing a set of silicon nanoparticles on the substrate surface, the set of nanoparticles including a set of ligand molecules including a set of carbon atoms, wherein a first set of regions is formed where the silicon nanoparticles are deposited and the remaining portions of the substrate surface define a second set of regions. The method also includes densifying the set of silicon nanoparticles into a thin film wherein a set of silicon-organic zones are formed on the substrate surface, wherein the first set of regions has a first reflectivity value and the second set of regions has a second reflectivity value. The method further includes illuminating the substrate surface with an illumination source, wherein the ratio of the second reflectivity value to the first reflectivity value is greater than about 1.1.
    • 公开了一种在衬底上对准一组图案的方法,该衬底包括衬底表面。 该方法包括在衬底表面上沉积一组硅纳米颗粒,所述纳米颗粒组包括一组包含一组碳原子的配体分子,其中形成第一组区域,其中沉积硅纳米颗粒,其余部分 衬底表面限定第二组区域。 所述方法还包括将所述一组硅纳米颗粒致密化成薄膜,其中在基底表面上形成一组硅 - 有机区,其中所述第一组区具有第一反射率值,并且所述第二组区具有第二反射率 值。 该方法还包括用照明源照射衬底表面,其中第二反射率值与第一反射率值的比值大于约1.1。
    • 3. 发明申请
    • METHODS AND APPARATUS FOR ALIGNING A SET OF PATTERNS ON A SILICON SUBSTRATE
    • 用于对准硅基板上的一组图案的方法和装置
    • US20100136718A1
    • 2010-06-03
    • US12468540
    • 2009-05-19
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • H01L21/66B05C19/00
    • H01L31/1804H01L22/12H01L31/022425Y02E10/547Y02P70/521
    • A method of aligning a set of patterns on a substrate, the substrate including a substrate surface, is disclosed. The method includes depositing a set of silicon nanoparticles on the substrate surface, the set of nanoparticles including a set of ligand molecules including a set of carbon atoms, wherein a first set of regions is formed where the silicon nanoparticles are deposited and the remaining portions of the substrate surface define a second set of regions. The method also includes densifying the set of silicon nanoparticles into a thin film wherein a set of silicon-organic zones are formed on the substrate surface, wherein the first set of regions has a first reflectivity value and the second set of regions has a second reflectivity value. The method further includes illuminating the substrate surface with an illumination source, wherein the ratio of the second reflectivity value to the first reflectivity value is greater than about 1.1.
    • 公开了一种在衬底上对准一组图案的方法,该衬底包括衬底表面。 该方法包括在衬底表面上沉积一组硅纳米颗粒,所述纳米颗粒组包括一组包含一组碳原子的配体分子,其中形成第一组区域,其中沉积硅纳米颗粒,其余部分 衬底表面限定第二组区域。 所述方法还包括将所述一组硅纳米颗粒致密化成薄膜,其中在基底表面上形成一组硅 - 有机区,其中所述第一组区具有第一反射率值,并且所述第二组区具有第二反射率 值。 该方法还包括用照明源照射衬底表面,其中第二反射率值与第一反射率值的比值大于约1.1。
    • 4. 发明授权
    • Method for manufacturing a photovoltaic cell
    • 光伏电池的制造方法
    • US08288176B2
    • 2012-10-16
    • US13239814
    • 2011-09-22
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • H01L21/66
    • H01L31/1804H01L22/12H01L31/022425Y02E10/547Y02P70/521
    • The disclosure relates to a method of aligning a set of patterns on a substrate, which includes depositing on the substrate's surface a set of silicon nanoparticles, which includes a set of ligand molecules including a set of carbon atoms. The method involves forming a first set of regions where the nanoparticles are deposited, while the remaining portions of the substrate surface define a second set of regions. The method also includes densifying the set of nanoparticles into a thin film to form a set of silicon-organic zones on the substrate's surface, wherein the first and the second set of regions have respectively first and second reflectivity values, such that the ratio of the second reflectivity value to the first reflectivity value is greater than about 1.1.
    • 本公开涉及一种在衬底上对准一组图案的方法,其包括在衬底表面上沉积一组硅纳米颗粒,其包括一组包含一组碳原子的配体分子。 该方法包括形成沉积纳米颗粒的第一组区域,而衬底表面的其余部分限定第二组区域。 该方法还包括将该组纳米颗粒致密化成薄膜以在基底表面上形成一组硅 - 有机区域,其中第一和第二组区域分别具有第一和第二反射率值,使得 第一反射率值的第二反射率值大于约1.1。
    • 5. 发明授权
    • Methods of using a silicon nanoparticle fluid to control in situ a set of dopant diffusion profiles
    • 使用硅纳米颗粒流体原位控制一组掺杂剂扩散分布的方法
    • US08163587B2
    • 2012-04-24
    • US12506811
    • 2009-07-21
    • Giuseppe ScarderaDmitry PoplavskyyMichael BurrowsSunil Shah
    • Giuseppe ScarderaDmitry PoplavskyyMichael BurrowsSunil Shah
    • H01L21/22
    • H01L21/2255H01L31/068Y02E10/547
    • A method of forming a multi-doped junction on a substrate is disclosed. The method includes providing the substrate doped with boron atoms, the substrate comprising a front substrate surface, and depositing an ink on the front substrate surface in an ink pattern, the ink comprising a set of nanoparticles and a set of solvents. The method further includes heating the substrate in a baking ambient to a first temperature of between about 200° C. and about 800° C. and for a first time period of between about 3 minutes and about 20 minutes in order to create a densified film ink pattern. The method also includes exposing the substrate to a dopant source in a diffusion furnace with a deposition ambient, the deposition ambient comprising POCl3, a carrier N2 gas, a main N2 gas, and a reactive O2 gas, wherein a ratio of the carrier N2 gas to the reactive O2 gas is between about 1:1 to about 1.5:1, at a second temperature of between about 700° C. and about 1000° C., and for a second time period of about 5 minutes to about 35 minutes. The method also includes heating the substrate in a drive-in ambient to a third temperature of between about 800° C. and about 1100° C.
    • 公开了一种在衬底上形成多掺杂结的方法。 所述方法包括提供掺杂有硼原子的衬底,所述衬底包括前衬底表面,以及以油墨图案在所述前衬底表面上沉积墨,所述油墨包括一组纳米颗粒和一组溶剂。 该方法还包括将烘烤环境中的基材加热至约200℃至约800℃的第一温度和约3分钟至约20分钟的第一时间段,以便产生致密化的膜 墨水图案。 该方法还包括在具有沉积环境的扩散炉中将衬底暴露于掺杂剂源,沉积环境包括POCl 3,载体N2气体,主N 2气体和反应性O 2气体,其中载气N2气体 至反应性O 2气体的摩尔比为约1:1至约1.5:1,第二温度为约700℃至约1000℃,第二时间为约5分钟至约35分钟。 该方法还包括将驱动环境中的衬底加热至约800℃至约1100℃的第三温度。
    • 6. 发明授权
    • Dual cookie security system
    • 双重Cookie安全系统
    • US07779103B1
    • 2010-08-17
    • US11609841
    • 2006-12-12
    • Andrew B. FikesMichael BurrowsMarius SchilderRobert C. Pike
    • Andrew B. FikesMichael BurrowsMarius SchilderRobert C. Pike
    • G06F15/16
    • G06F21/6263
    • One or more servers receive requests from clients and send responses. At least a subset of the responses including cookies produced by the one or more servers, and at least a subset of the received requests including cookies that were previously produced by the one or more servers and sent to the clients with responses to previously processed requests. Each of the cookies includes a respective user identifier. The one or more servers analyzing the received cookies to detect a first condition, which indicates that a respective plurality of clients may be using cookies that have a shared user identifier. Upon detecting the first condition, the one or more servers send at least one of the clients of the respective plurality of clients a response that includes a new cookie having a user identifier that is distinct from the shared user identifier.
    • 一个或多个服务器接收来自客户端的请求并发送响应。 响应的至少一部分包括由一个或多个服务器产生的cookie,以及至少一个接收到的请求的子集,包括先前由一个或多个服务器生成并发送给具有对先前处理的请求的响应的客户端的cookie。 每个Cookie包括相应的用户标识符。 一个或多个服务器分析接收到的cookie以检测第一条件,其指示相应的多个客户端可以使用具有共享用户标识符的cookie。 在检测到第一条件时,一个或多个服务器向相应多个客户端中的至少一个客户端发送包括具有与共享用户标识符不同的用户标识符的新cookie的响应。
    • 9. 发明授权
    • Decompression of block-sorted data
    • 块排序数据的解压缩
    • US07254689B1
    • 2007-08-07
    • US10892988
    • 2004-07-15
    • Sean M. DorwardSean QuinlanMichael Burrows
    • Sean M. DorwardSean QuinlanMichael Burrows
    • G06F12/00G06F13/00G06F13/28
    • G06F12/0802G06F2212/401
    • In an embodiment of the present invention, the computational efficiency of decoding of block-sorted compressed data is improved by ensuring that more than one set of operations corresponding to a plurality of paths through a mapping array T are being handled by a processor. This sequence of operations, including instructions from the plurality of sets of operations, ensures that there is another operation in the pipeline if a cache miss on any given lookup operation in the mapping array results in a slower main memory access. In this way, the processor utilization is improved. While the sets of operations in the sequence of operations are independent of another other, there will be an overlap of a plurality of the main memory access operations due to the long time required for main memory access.
    • 在本发明的一个实施例中,通过确保通过映射阵列T的多个路径对应的多于一组的操作正由处理器处理,来提高对块分类压缩数据的解码的计算效率。 包括来自多组操作的指令的操作序列确保如果在映射阵列中的任何给定的查找操作上的高速缓存未命中导致较慢的主存储器访问,则存在流水线中的另一操作。 以这种方式,处理器利用率得到改善。 虽然操作序列中的操作集合独立于另一操作,但是由于主存储器访问所需的长时间,将存在多个主存储器访问操作的重叠。
    • 10. 发明申请
    • Super-resolution based on frequency domain interferometric processing of sparse multi-sensor measurements
    • 基于稀疏多传感器测量的频域干涉处理的超分辨率
    • US20060077091A1
    • 2006-04-13
    • US11130746
    • 2005-05-17
    • Pei-Rin WuMichael BurrowsGordon Dryden
    • Pei-Rin WuMichael BurrowsGordon Dryden
    • G01S13/90
    • G01S13/88G01S13/89G01S15/87G01S17/87
    • A system for obtaining frequency domain interferometric super-resolution of a target scatterer, having a first and a second coherent transceivers, a mutual coherent sub-system and an estimation system. The first and second coherent transceivers are operative to produce a plurality of first and second sampling signals separated from each other by a predetermined frequency difference within the first and second sub-band, respectively. The mutual coherent sub-system is coupled to the first and second coherent transceivers to receive phase and amplitude of the first and second sampling signals, so as to evaluate an ambiguous range estimate from a pair of the first and second sampling signals and an unambiguous range estimate from a pair of the first and/or second sampling signals. The estimation system follows the mutual coherent sub-system to reconcile the ambiguous and unambiguous range estimates so as to obtain a target signature with a super-resolution defined by a frequency offset between the first and second sub-bands.
    • 一种用于获得具有第一和第二相干收发器,相互相干子系统和估计系统的目标散射体的频域干涉超分辨率的系统。 第一和第二相干收发器可操作以分别产生在第一和第二子带内彼此分离预定频率差的多个第一和第二采样信号。 相互相干子系统耦合到第一和第二相干收发器以接收第一和第二采样信号的相位和幅度,以便从一对第一和第二采样信号和无歧义范围中评估模糊范围估计 从一对第一和/或第二采样信号估计。 估计系统遵循相互相干子系统以协调不明确和明确的范围估计,以便获得具有由第一和第二子带之间的频率偏移定义的超分辨率的目标签名。