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    • 71. 发明申请
    • Heat pipe
    • 热管
    • US20050077660A1
    • 2005-04-14
    • US10925372
    • 2004-08-25
    • Frank MucciardiJohn GruzleskiGuohui ZhengChunhui ZhangZhongsen Yuan
    • Frank MucciardiJohn GruzleskiGuohui ZhengChunhui ZhangZhongsen Yuan
    • F28D15/02F28D15/04F28D15/06F28F13/06C21C5/48
    • F28F13/06F28D15/0266F28D15/043F28D15/06
    • A heat pipe assembly (10/110), under vacuum and having a working substance charged therein, comprising generally an evaporator (12/112) adapted to evaporate the working fluid and a condenser (16/116). The heat exchanging condenser is in fluid flow communication with the evaporator. The condenser is adapted to condense evaporated working substance received from the evaporator and has a reservoir (30/130), located at a higher elevation than the evaporator, for collecting liquid working fluid therein. A discrete, impermeable liquid return passage (36/136, 20/120) permitting the flow, by gravity, of the liquid working substance from the reservoir to the evaporator. The liquid return passage extends through the evaporator and terminates near the closed leading end thereof, and is fitted with a vent line (38/138) that diverts ascending vapor to the top of the condenser. A flow modifier (24/124) is positioned within the evaporator, causing swirling working fluid flow in the evaporator, whereby the flow modifier ensures that un-vaporized liquid entrained with evaporated working substance is propelled against inner surfaces (23/123) of the evaporator by centrifugal force to ensure liquid coverage of the inner surfaces, thereby delaying onset of film boiling.
    • 在真空下并且其中装载有工作物质的热管组件(10/110)通常包括适于蒸发工作流体和冷凝器(16/116)的蒸发器(12/112)。 热交换冷凝器与蒸发器流体连通。 冷凝器适于冷凝从蒸发器接收的蒸发的工作物质,并且具有位于比蒸发器更高的高度的用于在其中收集液体工作流体的储存器(30/130)。 离散的,不可渗透的液体返回通道(36/136,20/120)允许液体工作物质从储存器到蒸发器的重力流动。 液体返回通道延伸穿过蒸发器并在其封闭的前端附近终止,并且配有将上升蒸气转移到冷凝器顶部的排气管线(38/138)。 流动调节器(24/124)定位在蒸发器内,使蒸发器中的工作流体旋转,由此流动调节器确保夹带有蒸发的工作物质的未蒸发的液体被推向内部表面(23/123) 蒸发器通过离心力确保内表面的液体覆盖,从而延迟膜沸腾的开始。
    • 72. 发明授权
    • Base station subsystem, a RBS part and a TMA part and methods thereof for synchronizing the RBS part and the TMA part
    • 基站子系统,RBS部分和TMA部分及其与RBS部分和TMA部分同步的方法
    • US09215024B2
    • 2015-12-15
    • US13882253
    • 2010-12-13
    • Shan LuYong ShenYouping SuChunhui Zhang
    • Shan LuYong ShenYouping SuChunhui Zhang
    • H04J3/00H04L5/14H04J3/06H04W56/00
    • H04J3/06H04W56/00
    • A base station subsystem (1000), a TMA part (100) and a RBS part (150) of a communication system employing TDD; and respective methods are provided for synchronizing the RBS part of the base station subsystem (1000) with the TMA part (100) The RBS part (150) comprises an RBS modem (160) adapted to generate a switch signal comprising a switch command word, and to further send the switch signal to a TMA modem (110). The TMA modem (110) is adapted to demodulate the switch signal and to compare the switch command word with switch command words stored in a register. When any of the switch command words in the register (111) matches the switch command word of the demodulated switch signal, the TMA modem (110) is configured to generate a control signal for controlling a switch of the TMA part for synchronizing the RBS part (150) with the TMA part.
    • 一种采用TDD的通信系统的基站子系统(1000),TMA部分(100)和RBS部分(150) 并且提供各自的方法以使基站子系统(1000)的RBS部分与TMA部分(100)同步.RBS部分(150)包括适于产生包括切换命令字的切换信号的RBS调制解调器(160) 并且将切换信号进一步发送到TMA调制解调器(110)。 TMA调制解调器(110)适于解调开关信号并将开关命令字与存储在寄存器中的开关命令字进行比较。 当寄存器(111)中的任何一个开关命令字与解调开关信号的开关命令字匹配时,TMA调制解调器(110)被配置为产生用于控制TMA部分的开关以控制RBS部分同步的控制信号 (150)与TMA部分。
    • 73. 发明授权
    • Method and system for determining a time synchronization offset between radio base stations
    • 用于确定无线电基站之间的时间同步偏移的方法和系统
    • US09055527B2
    • 2015-06-09
    • US12991022
    • 2010-05-06
    • Chunhui ZhangYouping SuJacob Österling
    • Chunhui ZhangYouping SuJacob Österling
    • H04J3/06H04W56/00
    • H04W56/0035H04W56/0045
    • The present invention relates to a method and a device for time synchronization of an RBS which has lost its GPS signal. The method in the time synchronization device comprises retrieving from the first radio base station a first timing advance value (710) used by the user equipment to adjust its transmission timing before the handover, and a measurement of a reception timing (720) of a random access preamble. The random access preamble is transmitted from the user equipment to the second radio base station during synchronization. The method also comprises retrieving (730) from the second radio base station a second timing advance value used by the user equipment to adjust its transmission timing after the handover, and determining (740) a time synchronization offset between the first and second radio base station based on the retrieved first timing advance value, the second timing advance value, and the measurement of the reception timing.
    • 本发明涉及一种失去其GPS信号的RBS的时间同步的方法和装置。 时间同步装置中的方法包括从第一无线电基站检索用户设备使用的第一定时提前值(710),以便在切换之前调整其发送定时,以及对随机的接收定时(720)进行测量 访问前导码。 在同步期间,随机接入前导码从用户设备发送到第二无线基站。 该方法还包括从第二无线电基站检索(730)由用户设备使用的第二定时提前值,以便在切换之后调整其传输定时,以及确定(740)第一和第二无线电基站之间的时间同步偏移 基于检索到的第一定时提前值,第二定时提前值和接收定时的测量。
    • 79. 发明申请
    • Graphical communication user interface
    • 图形通信用户界面
    • US20080309617A1
    • 2008-12-18
    • US11818919
    • 2007-06-15
    • Randy Yuan KongChunhui ZhangQiong Yang
    • Randy Yuan KongChunhui ZhangQiong Yang
    • G06F3/033
    • G06F3/04842G06F3/04817G06F3/0482H04M1/27455
    • New devices, systems and methods are hereby provided that enable a user to open a communication channel by selecting an image on a monitor. A device that includes a monitor and a graphical position user input mechanism is configured to display one or more images on the monitor, to receive a graphical position user input selecting one of the images, and to open a communication channel directed to a contact information element associated with the selected image. For example, this may include placing a phone call to a selected recipient, or opening an email, instant messaging, or text message composition panel addressed to a selected recipient, by touching, clicking on, or otherwise selecting an image of the recipient, or an image that is associated with the recipient.
    • 因此提供了新的设备,系统和方法,其使得用户能够通过在监视器上选择图像来打开通信信道。 包括监视器和图形位置用户输入机构的装置被配置为在监视器上显示一个或多个图像,以接收选择图像之一的图形位置用户输入,并且打开指向联系人信息元素的通信信道 与所选择的图像相关联。 例如,这可以包括通过触摸,点击或以其他方式选择接收者的图像来打电话给所选择的接收者,或打开寻址到所选接收者的电子邮件,即时消息或文本消息组合面板,或者 与收件人关联的图像。
    • 80. 发明授权
    • Heat pipe
    • 热管
    • US07115227B2
    • 2006-10-03
    • US10925372
    • 2004-08-25
    • Frank MucciardiJohn GruzleskiGuohui ZhengChunhui ZhangZhongsen Yuan
    • Frank MucciardiJohn GruzleskiGuohui ZhengChunhui ZhangZhongsen Yuan
    • C21C5/32C21C5/30
    • F28F13/06F28D15/0266F28D15/043F28D15/06
    • A heat pipe assembly (10/110), under vacuum and having a working substance charged therein, comprising generally an evaporator (12/112) adapted to evaporate the working fluid and a condenser (16/116). The heat exchanging condenser is in fluid flow communication with the evaporator. The condenser is adapted to condense evaporated working substance received from the evaporator and has a reservoir (30/130), located at a higher elevation than the evaporator, for collecting liquid working fluid therein. A discrete, impermeable liquid return passage (36/136, 20/120) permitting the flow, by gravity, of the liquid working substance from the reservoir to the evaporator. The liquid return passage extends through the evaporator and terminates near the closed leading end thereof, and is fitted with a vent line (38/138) that diverts ascending vapor to the top of the condenser. A flow modifier (24/124) is positioned within the evaporator, causing swirling working fluid flow in the evaporator, whereby the flow modifier ensures that un-vaporized liquid entrained with evaporated working substance is propelled against inner surfaces (23/123) of the evaporator by centrifugal force to ensure liquid coverage of the inner surfaces, thereby delaying onset of film boiling.
    • 在真空下并且其中装载有工作物质的热管组件(10/110)通常包括适于蒸发工作流体和冷凝器(16/116)的蒸发器(12/112)。 热交换冷凝器与蒸发器流体连通。 冷凝器适于冷凝从蒸发器接收的蒸发的工作物质,并且具有位于比蒸发器更高的高度的用于在其中收集液体工作流体的储存器(30/130)。 离散的,不可渗透的液体返回通道(36/136,20/120)允许液体工作物质从储存器到蒸发器的重力流动。 液体返回通道延伸穿过蒸发器并在其封闭的前端附近终止,并且配有将上升蒸气转移到冷凝器顶部的排气管线(38/138)。 流动调节器(24/124)定位在蒸发器内,使蒸发器中的工作流体旋转,由此流动调节器确保夹带有蒸发的工作物质的未蒸发的液体被推向内部表面(23/123) 蒸发器通过离心力确保内表面的液体覆盖,从而延迟膜沸腾的开始。