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    • 32. 发明申请
    • High power high pulse repetition rate gas discharge laser system bandwidth management
    • US20060114956A1
    • 2006-06-01
    • US11000571
    • 2004-11-30
    • Richard SandstromWilliam PartloDaniel BrownJ. Martin AlgotsFedor Trintchouk
    • Richard SandstromWilliam PartloDaniel BrownJ. Martin AlgotsFedor Trintchouk
    • H01S3/22
    • H01S3/08009H01S3/08031H01S3/08059H01S3/097H01S3/1055
    • A line narrowing apparatus and method for a narrow band DUV high power high repetition rate gas discharge laser producing output laser light pulse beam pulses in bursts of pulses is disclosed, which may comprise a dispersive center wavelength selection optic contained within a line narrowing module, selecting at least one center wavelength for each pulse determined at least in part by the angle of incidence of the laser light pulse beam containing the respective pulse on a dispersive wavelength selection optic dispersive surface; a first dispersive optic bending mechanism operatively connected to the dispersive center wavelength selection optic and operative to change the curvature of the dispersive surface in a first manner; and, a second dispersive optic bending mechanism operatively connected to the dispersive center wavelength selection optic and operative to change the curvature of the dispersive surface in a second manner. The first manner may modify a first measure of bandwidth and the second manner may modify a second measure of bandwidth such that the ratio of the first measure to the second measure substantially changes. The first measure may be a spectrum width at a selected percentage of the spectrum peak value (FWX % M) and the second measure may be width within which some selected percentage of the spectral intensity is contained (EX %). The first dispersive optic bending mechanism may change the curvature of the dispersive surface in a first dimension and the second in a second dimension generally orthogonal to the first dimension. The laser system may comprise a beam path insert comprising a material having an different index of refraction and an index of refraction thermal gradient opposite from that of a neighboring optical element. The first dispersive optic bending mechanism may change the curvature of the dispersive surface in a first dimension and the second a second dimension generally parallel to the first dimension. An optical beam twisting element in the lasing cavity may optically twist the laser light pulse beam to present a twisted wavefront to the dispersive center wavelength selection optic. Bending may change the curvature and wavelength selection, e.g., in a burst may create two center wavelength peaks to select FWX % M and EX % independently.
    • 36. 发明申请
    • Solid-state memory device storing program code and methods for use therewith
    • 存储程序代码的固态存储器件和与其一起使用的方法
    • US20050223243A1
    • 2005-10-06
    • US11021238
    • 2004-12-23
    • Christopher MooreRoger MarchDaniel Brown
    • Christopher MooreRoger MarchDaniel Brown
    • G06F21/00G11C7/24G06F3/00
    • G06F21/78G11C7/24
    • The preferred embodiments described herein provide a solid-state memory device storing program code and methods for use therewith. In one preferred embodiment, a solid-state memory device storing program code is provided that enables a host device to read data from or store data to the solid-state memory device. In another preferred embodiment, a solid-state memory device storing an identifier and encrypted program code is provided. When the solid-state memory device is connected to a host device, the host device decrypts the encrypted program code using the identifier. In another preferred embodiment, program code stored in a solid-state memory device is provided to a host device, and the program code allows the host device to store data only in the solid-state memory device. In another preferred embodiment, a method for distributing program code is provided. In this method, program code is stored in a solid-state memory device comprising a three-dimensional array of memory cells, and the solid-state memory device storing the program code is then distributed.
    • 本文描述的优选实施例提供了存储程序代码的固态存储器件和与其一起使用的方法。 在一个优选实施例中,提供存储程序代码的固态存储器件,其使得主机设备能够从固态存储器件读取数据或将数据存储到固态存储器件中。 在另一优选实施例中,提供存储标识符和加密程序代码的固态存储器件。 当固态存储设备连接到主机设备时,主机设备使用标识符解密加密的程序代码。 在另一个优选实施例中,将存储在固态存储器件中的程序代码提供给主机设备,并且程序代码允许主机设备仅在固态存储器件中存储数据。 在另一优选实施例中,提供了一种用于分发程序代码的方法。 在该方法中,将程序代码存储在包括存储单元的三维阵列的固态存储器件中,然后分配存储程序代码的固态存储器件。
    • 40. 发明授权
    • Universal host interface for data acquisition systems
    • 用于数据采集系统的通用主机接口
    • US6115678A
    • 2000-09-05
    • US255663
    • 1999-02-23
    • Robert LiebNicholas BuongervinoPatrick MauroMichael RizziEllen OppenheimJoseph BoriottiRobert MaySara KarcherAnthony BiusoPaul R. PoloniewiczDaniel BrownAnthony FamaRobert SteinCary ChuMichael CatalanoAltaf Mulla
    • Robert LiebNicholas BuongervinoPatrick MauroMichael RizziEllen OppenheimJoseph BoriottiRobert MaySara KarcherAnthony BiusoPaul R. PoloniewiczDaniel BrownAnthony FamaRobert SteinCary ChuMichael CatalanoAltaf Mulla
    • G06F3/00G06K7/00G06K17/00H03M5/06
    • G06K17/0022
    • A universal interface system for use with a data acquisition system including a data acquisition device such as a bar code scanner or scanner integrated terminal for providing digital data signals indicative of acquired data for transmission to a host device such as a computer, and a host device having host-specific input/output data format requirements. The universal interface system comprises universal data exchange means located in the data acquisition device for providing digital data signals in a universal data exchange format independent of the data format requirements of the host device; and a host interface cable coupled to the data acquisition device and to said host device, for transmitting acquired digital data from the data acquisition device to the host device, the interface cable comprising means for translating digital data from the universal data exchange format to the host-specific input/output data format requirements. The interface cable comprises a buffer for storing a host parameter data word used in communications with the host device. The universal data exchange means comprises a memory for storing a plurality of host parameter data words, each of the host parameter data words being associated with one of a plurality of different host interface modules; and means for reading from the memory and transmitting to the host interface module the host parameter data word associated with the particular host interface module operatively connected thereto.
    • 一种用于数据采集系统的通用接口系统,包括诸如条形码扫描器或扫描仪集成终端的数据采集装置,用于提供指示用于传送到诸如计算机的主机设备的获取数据的数字数据信号,以及主机设备 具有主机特定的输入/输出数据格式要求。 通用接口系统包括位于数据采集设备中的通用数据交换装置,用于以与主机设备的数据格式要求无关的通用数据交换格式提供数字数据信号; 以及主机接口电缆,其耦合到所述数据采集设备和所述主机设备,用于将所获取的数字数据从所述数据采集设备发送到所述主机设备,所述接口电缆包括用于将数字数据从通用数据交换格式转换到所述主机的装置 特定的输入/输出数据格式要求。 接口电缆包括用于存储与主机设备通信中使用的主机参数数据字的缓冲器。 通用数据交换装置包括用于存储多个主机参数数据字的存储器,每个主机参数数据字与多个不同的主机接口模块之一相关联; 以及用于从存储器读取并向主机接口模块发送与可操作地连接到其的特定主机接口模块相关联的主机参数数据字的装置。