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    • 2. 发明授权
    • Display panel alignment system
    • 显示面板对齐系统
    • US08419496B1
    • 2013-04-16
    • US12726947
    • 2010-03-18
    • Brian K. SmithJames D. SampicaGary N. PriorTracy J. Barnidge
    • Brian K. SmithJames D. SampicaGary N. PriorTracy J. Barnidge
    • H01J9/26H01J9/32
    • G02F1/1333G02F2001/133354
    • Attaching a first display panel and a second display panel can utilize a method that aligns the first display panel and the second display panel. The method provides the first display panel on a first stage and the second display panel on a second stage. The position of the second display panel is adjustable relative to the first display panel in at least two dimensions. The method can also include disposing the first display panel above the second display panel, aligning the first display panel with respect to the second display panel using an optical device, and adhering the first display panel to the second display panel. The method can be utilized including an apparatus comprising two stages and an optical or sensing system.
    • 安装第一显示面板和第二显示面板可以利用对准第一显示面板和第二显示面板的方法。 该方法在第一阶段上提供第一显示面板,在第二阶段提供第二显示面板。 第二显示面板的位置在至少两个维度上相对于第一显示面板是可调节的。 该方法还可以包括将第一显示面板布置在第二显示面板上方,使用光学装置将第一显示面板相对于第二显示面板对准,并将第一显示面板粘附到第二显示面板。 可以使用该方法,包括包括两个级的装置和光学或感测系统。
    • 3. 发明申请
    • MANAGING MEMORY OVERLOAD OF JAVA VIRTUAL MACHINES IN WEB APPLICATION SERVER SYSTEMS
    • 在WEB应用程序服务器系统中管理JAVA虚拟机的内存过载
    • US20120137290A1
    • 2012-05-31
    • US13281757
    • 2011-10-26
    • Douglas C. BergHai Shan WuBrian K. SmithMichael J. Spreitzer
    • Douglas C. BergHai Shan WuBrian K. SmithMichael J. Spreitzer
    • G06F9/455
    • G06F12/0284G06F9/45504G06F12/023G06F12/0253G06F2212/151G06F2212/163
    • The invention relates to memory overload management for Java virtual machines (JVMs) in Web application sever systems. Disclosed is a method and system of memory overload management for a Web application sever system, wherein the Web application sever system comprises multiple JVMs, the method comprising: determining one or more replica shards for which replacement shall be performed; determining one or more target JVMs for storing a corresponding replica shard set including at least one replica shard from the one or more replica shards; and for each target JVM, performing the following: judging whether the free memory of the target JVM is adequate for storing the corresponding replica shard set; if the judging result is negative, performing the following: causing the target JVM to suspend the creation of session until the free memory of the target JVM becomes adequate for storing the corresponding replica shard set.
    • 本发明涉及Web应用程序服务器系统中的Java虚拟机(JVM)的内存过载管理。 公开了一种用于Web应用服务器系统的存储器过载管理的方法和系统,其中所述Web应用服务器系统包括多个JVM,所述方法包括:确定要执行替换的一个或多个复制分片; 确定用于存储来自所述一个或多个副本分片的包括至少一个复本分片的相应副本分片集的一个或多个目标JVM; 对于每个目标JVM,执行以下操作:判断目标JVM的可用内存是否足以存储相应的复制分片集; 如果判断结果为否定,则执行以下操作:使目标JVM暂停创建会话,直到目标JVM的可用内存变得足以存储相应的副本碎片集。
    • 5. 发明授权
    • Adaptive RF link failure handler
    • 自适应RF链路故障处理器
    • US07489928B2
    • 2009-02-10
    • US10334472
    • 2002-12-31
    • Brian K. Smith
    • Brian K. Smith
    • H04Q7/20
    • H04W24/04H04B17/23H04B17/391H04W24/00
    • A method for preventing radio frequency (RF) link failures in a radio telecommunication network. The network includes at least one base station (402) and at least one subscriber unit (SU) (406) which are capable of sending and receiving RF link signals. The method provides for monitoring the RF link between the base station (402) and the SU (406) and determining if the RF link is failing (216), and if so, taking corrective action to maintain the RF Link. The method provides for storing information about the RF Link failure and the corrective action taken (224) and utilizes the corrective action taken in prior RF Link failures to prevent future RF Link failures. The method provides for determining that an old corrective action for improving the RF Link channel quality no longer improves the RF Link channel quality and, therefore, provides for discarding the old corrective action in favor of a new corrective action (234).
    • 一种用于防止无线电通信网络中的射频(RF)链路故障的方法。 网络包括能够发送和接收RF链路信号的至少一个基站(402)和至少一个用户单元(SU)(406)。 该方法提供用于监测基站(402)和SU(406)之间的RF链路并确定RF链路是否失败(216),如果是,采取纠正措施来维持RF链路。 该方法提供存储有关RF链路故障和所采取的纠正措施的信息(224),并利用在先前RF链路故障中采取的纠正措施来防止将来的RF链路故障。 该方法提供用于确定用于改善RF链路信道质量的旧纠正措施不再提高RF链路信道质量,并因此提供丢弃旧纠正措施以有利于新的校正动作(234)。
    • 6. 发明授权
    • Method and system for providing adaptive probe requests
    • 提供自适应探测请求的方法和系统
    • US07460836B2
    • 2008-12-02
    • US10660066
    • 2003-09-11
    • Brian K. SmithFloyd D. Simpson
    • Brian K. SmithFloyd D. Simpson
    • H04B17/00
    • H04W24/00
    • A method of providing RF signal quality information which includes the step of a probe request generator (110) monitoring a channel for probe requests being transmitted by a station (115) and/or probe responses being transmitted by an access point (105). The probe request generator can determine a time period between the successive probe request transmissions received from the station or successive probe responses received from the AP. The probe request generator can generate a series of probe requests (150) having the determined time period between successive probe request transmissions. The series of probe requests signal an access point (105) to transmit probe responses (155) which are detectable by the station.
    • 一种提供RF信号质量信息的方法,其包括探测请求发生器(110)监控由站(115)发送的探测请求的信道和/或由接入点(105)发送的探测响应的步骤。 探测请求发生器可以确定从站接收的连续探测请求传输或从AP接收的连续的探测响应之间的时间段。 探测请求生成器可以生成在连续的探测请求传输之间具有确定的时间段的一系列探测请求(150)。 所述一系列探测请求用信号通知接入点(105)来传送由所述站可检测的探测响应(155)。
    • 7. 发明授权
    • Method and apparatus for pre-assembling optical components for use with
liquid crystal displays
    • 用于预组装用于液晶显示器的光学部件的方法和装置
    • US5592288A
    • 1997-01-07
    • US430966
    • 1995-04-28
    • James D. SampicaMelvin L. CampbellDonald L. BennBrian K. Smith
    • James D. SampicaMelvin L. CampbellDonald L. BennBrian K. Smith
    • G02F1/133G02F1/1335
    • G02F1/133
    • An optical component assembly is created with reduced defects in the adhesion and alignment between the optical components. A first rigid optical component is placed into a cavity. A second rigid optical component is placed into the cavity such that it is supported by a first support device which prevents a first end of the second rigid optical component from contacting a corresponding first end of the first rigid optical component. Air is evacuated from a chamber formed between the first and second rigid optical components. The support of the first support device is removed so that the first end of the second rigid optical component comes into contact with the first end of the first rigid optical component with a layer of adhesive material sandwiched therebetween. A force is applied to urge surfaces of the first and second rigid optical components toward one another to improve adhesion between the two.
    • 创建光学部件组件,其中光学部件之间的粘附和对准具有较少的缺陷。 将第一刚性光学部件放置在空腔中。 将第二刚性光学部件放置到空腔中,使得其由第一支撑装置支撑,该第一支撑装置防止第二刚性光学部件的第一端接触第一刚性光学部件的对应的第一端。 空气从形成在第一和第二刚性光学部件之间的室抽真空。 去除第一支撑装置的支撑,使得第二刚性光学部件的第一端与第一刚性光学部件的第一端接触,并且夹在其间的粘合材料层。 施加力以将第一和第二刚性光学部件的表面朝向彼此推动以改善两者之间的粘附。
    • 8. 发明授权
    • Enclosed arrow quiver
    • 封闭的箭头颤抖
    • US5409109A
    • 1995-04-25
    • US272818
    • 1994-07-11
    • Brian K. Smith
    • Brian K. Smith
    • F41B5/06B65D85/00A63B67/00
    • F41B5/063Y10S224/916
    • A quiver for safely storing and transporting hunting and target arrows including a symmetrically shaped two piece housing with means for selectively storing arrows and foam in the end of each section for preventing relative movement of the arrows. The two sections of the housing are joined by a rail and grove arrangement whereby the ends of the sections form a staggered interface, allowing convenient access to the arrows. A harness attached to the quiver allows it to be carried over the shoulder or in the hand as desired. When the quiver is joined and locked it is highly resistant to moisture and dampness.
    • 用于安全地存储和传送狩猎和目标箭头的颤抖器,包括对称形状的两件式外壳,其具有用于在每个部分的末端选择性地存储箭头和泡沫的装置,以防止箭头的相对移动。 壳体的两个部分通过轨道和槽道结构连接,由此部分的端部形成交错的界面,允许方便地接近箭头。 附着在颤音器上的线束允许其根据需要携带在肩膀或手中。 当颤抖被连接和锁定时,它具有高度的抗潮湿性。