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    • 61. 发明申请
    • Low Chirp Coherent Light Source
    • 低啁啾相干光源
    • US20110134957A1
    • 2011-06-09
    • US12632625
    • 2009-12-07
    • Hui SuGenzao ZhangHenry A. Blauvelt
    • Hui SuGenzao ZhangHenry A. Blauvelt
    • H01S5/026
    • H01S5/0265H01S5/0261H01S5/0612H01S5/06251H01S5/12H01S5/20
    • A coherent light source having a semiconductor laser resonator and an optical amplifier which amplifies coherent light emitted by the semiconductor laser resonator in response to current injection, in which the amount of current injected into the semiconductor laser is controlled for conformity with a chirp requirement of an optical communication system. The optical amplifier, which introduces no chirp, may be controlled to match an optical power requirement of the optical communication system. A heater may be provided to introduce a low frequency chirp in order to suppress interferometric intensity noise and unwanted second-order effects such as stimulated Brillouin Scattering. The optical amplifier may be monolithically formed with the semiconductor laser resonator, with separate electrodes provided for injecting current into the semiconductor laser resonator and the optical amplifier.
    • 具有半导体激光谐振器和光放大器的相干光源,其响应于电流注入放大由半导体激光谐振器发射的相干光,其中注入到半导体激光器中的电流量被控制为符合半导体激光谐振器的啁啾要求 光通信系统。 可以控制不引入啁啾的光放大器,以匹配光通信系统的光功率要求。 可以提供加热器以引入低频啁啾,以便抑制干涉强度噪声和不期望的二阶效应,例如受激布里渊散射。 光放大器可以与半导体激光谐振器单片地形成,其中设置有用于将电流注入到半导体激光谐振器和光放大器中的单独电极。
    • 64. 发明申请
    • System for high throughput GPCR functional assay
    • 高通量GPCR功能测定系统
    • US20080207466A1
    • 2008-08-28
    • US11893506
    • 2007-08-16
    • Eric J. MozdyHui SuQi Wu
    • Eric J. MozdyHui SuQi Wu
    • C40B30/10C40B60/12
    • C40B60/12C40B30/10
    • A functional assay detection system for membrane bound proteins. The system comprises a biological array including a porous substrate having a plurality of membranes adhered thereto and a first side and a second side, a fluorescent labeling reagent configured to couple to the membrane bound proteins, a pulsed light assembly configured to excite the fluorescent labeling reagent, and a time-delayed imaging device configured to capture emitted fluorescence of the fluorescent labeling reagent. The pulsed light assembly is configured to excite the fluorescent labeling reagent from at least one of the first side and the second side of the porous substrate, and the fluorescent labeling reagent comprises a fluorophore that has an emission lifetime that is in the range of microseconds.
    • 用于膜结合蛋白的功能测定检测系统。 该系统包括生物阵列,其包括多孔基底,其具有附着于其上的多个膜,第一侧和第二侧,构造成耦合到膜结合蛋白的荧光标记试剂;脉冲光组件,其被配置为激发荧光标记试剂 以及被配置为捕获荧光标记试剂的发射荧光的时间延迟成像装置。 脉冲光组件被配置为从多孔基底的第一侧和第二侧中的至少一个激发荧光标记试剂,并且荧光标记试剂包含具有在微秒范围内的发光寿命的荧光团。
    • 66. 发明申请
    • METHOD AND SYSTEM FOR AVOIDANCE OF SOFTWARE CONFLICT
    • 避免软件冲突的方法和系统
    • US20070180441A1
    • 2007-08-02
    • US11615898
    • 2006-12-22
    • Yong DingXiao GuoHui SuZhepeng WangShiwan Zhao
    • Yong DingXiao GuoHui SuZhepeng WangShiwan Zhao
    • G06F9/44G06F9/45
    • G06F8/71G06F9/44552
    • A method/system for avoiding software conflicts, with library being divided into layer 1 to layer M and M≧1. The method including the following steps: before a program runs, prescanning calling functions of the binary executable code of the program and called functions that belong to libraries of layer 1 and are individually called by the calling functions of the binary executable code of the program, and if M>1, further prescanning calling functions that belong to libraries of layer 1 to layer M−1 and called functions that belong to libraries of layer 2 to layer M and are individually called by the calling functions that belong to libraries of layer 1 to layer M−1, so as to determine whether there exists any individual conflict between the calling functions and the corresponding called functions; if there exists at least one conflict, storing at least one piece of conflict information individually indicating the at least one conflict; and when the program calls a library directly called by the program, abandoning loading of the library if conflict information correspond to the library has been stored, or loading the library otherwise.
    • 一种用于避免软件冲突的方法/系统,库被分为第1层到第M层,M> = 1。 该方法包括以下步骤:在程序运行之前,预处理程序的二进制可执行代码的调用函数,并调用属于第1层的库并由程序的二进制可执行代码的调用函数单独调用的函数, 如果M> 1,进一步将属于第1层的库的调用函数调用到M-1层,并将属于第2层的库的功能称为层M,并由属于第1层的库的调用函数单独调用 到层M-1,以便确定在调用函数和相应的被调用函数之间是否存在任何单独的冲突; 如果存在至少一个冲突,则存储至少一个冲突信息单独指示所述至少一个冲突; 当程序调用程序直接调用的库时,如果冲突信息对应于库,则放弃库的加载,否则加载库。
    • 67. 发明授权
    • NRZ pipeline servo while reading or writing
    • NRZ流水线伺服读取或写入
    • US07136239B2
    • 2006-11-14
    • US10453954
    • 2003-06-04
    • Kendall H FungHui SuDan J Coonen
    • Kendall H FungHui SuDan J Coonen
    • G11B20/10G11B5/09
    • G06F3/0608G06F3/0611G06F3/0656G06F3/0676G11B20/10009G11B2020/1284
    • A data storage device exhibiting reduced pad regions includes a read/write channel to convert transduced waveforms from a storage medium into recovered digital information. The recovered digital information is communicated from the read/write channel to a controller. The read/write channel includes an analog stage and a digital stage, which function independently. While the digital stage is engaged in the task of recovering servo data, the analog stage may be engaged in the task of recovering user data. Initially, the controller generates a control signal commanding the read/write channel to read and recover servo data. In the wake of the last unit of servo data having been processed by the analog stage of the read/write channel, the controller commands the read/write channel to read user data from the disc. Therefore, the analog stage of the read/write channel reads user data, while the digital stage finishes processing the servo data.
    • 显示减少焊盘区域的数据存储装置包括用于将转换的波形从存储介质转换成恢复的数字信息的读/写通道。 恢复的数字信息从读/写通道传送到控制器。 读/写通道包括独立工作的模拟级和数字级。 在数字化阶段从事恢复伺服数据的任务中,模拟级可以从事恢复用户数据的任务。 最初,控制器产生一个控制信号,命令读/写通道读取和恢复伺服数据。 在由读/写通道的模拟级处理了伺服数据的最后单元之后,控制器命令读/写通道从盘读取用户数据。 因此,读/写通道的模拟级读取用户数据,而数字级完成对伺服数据的处理。
    • 69. 发明申请
    • Migrating personality of computing environment from source platform to target platform
    • 将计算环境的个性从源平台迁移到目标平台
    • US20060026195A1
    • 2006-02-02
    • US11188371
    • 2005-07-25
    • Guang GuHui SuZhe WangXiao Guo
    • Guang GuHui SuZhe WangXiao Guo
    • G06F17/30
    • H04L41/0846H04L41/0233H04L67/303
    • Methods, and systems for migrating personality of a computing environment from a source machine platform to a target machine platform through a CIM-based system management infrastructure. A system includes: database wherein migration rules of CIM objects between a plurality of platforms are recorded; and migration tool for implementing migration according to the migration rules in the database, which includes: migration rule extractor, CIM object extractor, migration task producer and migration task executor. The extractor extracts CIM objects related to personality of the computing environment from source machine platform according to migration rule extracted from the database by rule extractor, and extracts from the target machine platform objects corresponding to the extracted CIM objects of the source machine platform. The migration task producer generates the migration tasks according to extracted migration rules. The migration task executor executes generated migration tasks on the CIM objects of the target platform.
    • 通过基于CIM的系统管理基础设施,将计算环境的个性从源计算机平台迁移到目标计算机平台的方法和系统。 系统包括:数据库,其中记录多个平台之间的CIM对象的迁移规则; 以及根据数据库迁移规则实现迁移的迁移工具,其中包括:迁移规则提取器,CIM对象提取器,迁移任务生成器和迁移任务执行器。 提取器根据规则提取器从数据库提取的迁移规则,从源机平台提取与计算环境个性相关的CIM对象,并从目标机平台提取与源机平台提取的CIM对象相对应的对象。 迁移任务生成器根据提取的迁移规则生成迁移任务。 迁移任务执行程序在目标平台的CIM对象上执行生成的迁移任务。
    • 70. 发明申请
    • Computer systems with several operating systems coexisting thereon and swapping between these operating systems
    • 具有多个操作系统的计算机系统共存并在这些操作系统之间进行交换
    • US20050182922A1
    • 2005-08-18
    • US11061396
    • 2005-02-18
    • Xiao GuoZhe WangTian WangHui Su
    • Xiao GuoZhe WangTian WangHui Su
    • G06F9/00G06F9/445G06F9/48G06F15/76
    • G06F9/4843G06F9/441
    • Computer systems in which at least two operating systems coexist independently from each other, and that swap between the operating systems. Provides methods to have at least two operating systems coexist independently of each other and swap the operating systems. A computer system includes a memory allocation component to be called by a power-on self test (POST) routine in order to allocate RAM for the operating systems when the computer system starts up, and backup and restore component to be called by a suspension routine in order to backup and restore the data specific to the operating systems, wherein each of the operating systems can transfer itself to the memory area belonging to itself, turn an allocated memory area into a physical RAM, and call the suspension routine to swap to other operating systems by setting swap parameters. The computer system can swap between operating systems easily and conveniently.
    • 其中至少两个操作系统彼此独立共存并且在操作系统之间交换的计算机系统。 提供使至少两个操作系统彼此独立并交换操作系统的方法。 计算机系统包括通过开机自检(POST)程序调用的内存分配组件,以便在计算机系统启动时为操作系统分配RAM,并通过暂停程序备份和恢复要调用的组件 为了备份和恢复特定于操作系统的数据,其中每个操作系统可以将自身传送到属于其自身的存储区域,将分配的存储区域转换成物理RAM,并调用暂停例程以交换到其他 操作系统通过设置交换参数。 计算机系统可以方便地在操作系统之间进行交换。