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    • 12. 发明授权
    • Turnstile blocking apparatus with adjustable blocking width of gate leaf
    • 闸门挡板宽度可调的闸门阻塞装置
    • US08695276B2
    • 2014-04-15
    • US13703885
    • 2011-02-14
    • Liang ZhangQiying GuGenfang Xie
    • Liang ZhangQiying GuGenfang Xie
    • E01F13/00
    • E05F15/00E05F15/611E05Y2900/40
    • The invention discloses a scissor-type gate blocking apparatus with an adjustable blocking width of a gate leaf. According to its technical solutions, the apparatus comprises a shaft 1 and an initiative swing arm 4. It also comprises an eccentric disk 21 connected with the shaft 1 and eccentrically provided with a plurality of mounted holes 211 of the eccentric disk 21, an eccentric amount adjusting piece 22 connected with the eccentric disk 21 through the mounted hole 211 of the eccentric disk 21, a small shaft 223 eccentrically fixed at the eccentric amount adjusting piece 22, and a connecting rod mechanism adjusting its length retractably and connected with the initiative swing arm 4. The blocking apparatus has the advantages that it has a simple and practical structure and can adjust the blocking width of the gate leaf within a certain range.
    • 本发明公开了一种具有可调整的闸门叶片宽度的剪式门闸装置。 根据其技术方案,该装置包括轴1和主动摆臂4.它还包括与轴1连接并偏心地设置有偏心盘21的多个安装孔211的偏心盘21,偏心量 通过偏心盘21的安装孔211与偏心盘21连接的调节片22,偏心地固定在偏心量调节片22上的小轴223以及可伸缩地调整其长度并与主动摆臂连接的连杆机构 阻塞装置具有简单实用的结构,可以将门叶的阻挡宽度调整到一定范围内。
    • 14. 发明授权
    • Network apparatus and method for performing a handover in a network
    • 用于在网络中执行切换的网络装置和方法
    • US08676190B2
    • 2014-03-18
    • US13132485
    • 2008-12-05
    • Achim Von BrandtShun Liang ZhangYi ZhangWei Hua Zhou
    • Achim Von BrandtShun Liang ZhangYi ZhangWei Hua Zhou
    • H04W36/00H04W4/00
    • H04W36/08H04W8/20H04W36/36H04W84/12
    • According to an exemplary embodiment of the invention a network apparatus may be provided, which network apparatus may include a detecting device, a selecting device, a receiving device, a determining device and a sending device. The detecting device may be adapted to detect a condition for a handover. The selecting device may be adapted to select a first group, wherein the first group includes at least one first target apparatus member. The receiving device may be adapted to receive a second group, wherein the second group may include at least one second target apparatus member. The determining device may be adapted to determine a difference group of the first target apparatus members and the second target apparatus members. The selecting device may be adapted to select at least one target apparatus member of the difference group. The sending device may be adapted to send a preparation information to the at least one selected target apparatus member of the difference group.
    • 根据本发明的示例性实施例,可以提供网络设备,哪个网络设备可以包括检测设备,选择设备,接收设备,确定设备和发送设备。 检测装置可以适于检测切换的状况。 选择装置可以适于选择第一组,其中第一组包括至少一个第一目标装置构件。 接收设备可以适于接收第二组,其中第二组可以包括至少一个第二目标设备构件。 确定装置可以适于确定第一目标装置构件和第二目标装置构件的差分组。 选择装置可以适于选择差分组的至少一个目标装置成员。 所述发送装置可以适于向所述差分组的所述至少一个所选择的目标装置成员发送准备信息。
    • 19. 发明申请
    • Dynamic Configuration of Relay Nodes in a Cellular Communication System
    • 蜂窝通信系统中继电器节点的动态配置
    • US20130272190A1
    • 2013-10-17
    • US13994804
    • 2010-12-17
    • Lei DuShun Liang ZhangSimone Redana
    • Lei DuShun Liang ZhangSimone Redana
    • H04W16/26
    • H04W16/26H04B7/15542H04W28/16H04W84/047
    • An access node of a radio access network of a cellular communication system obtains first configuration information for at least one relay node which is capable of being wirelessly connected to the radio access network via the access node and is associated with the access node, wherein the first configuration information includes information on an interface between the access node and the at least one relay node, and transmits the first configuration information to at least one other access node of the radio access network. Alternatively or in addition, the access node receives second configuration information from the at least one other access node, for at least one other relay node which is capable of being wirelessly connected to the radio access network via the at least one other access node and is associated with the at least one other access node, wherein the second configuration information includes information on an interface between the at least one other access node and the at least one other relay node.
    • 蜂窝通信系统的无线电接入网络的接入节点获得至少一个中继节点的第一配置信息,所述中继节点能够经由接入节点无线连接到无线电接入网络,并与接入节点相关联,其中第一 配置信息包括关于接入节点和至少一个中继节点之间的接口的信息,并且将第一配置信息发送到无线电接入网络的至少一个其他接入节点。 或者或另外,接入节点从至少一个其他接入节点接收第二配置信息,对于能够经由至少一个其他接入节点无线连接到无线接入网络的至少一个其他中继节点,并且是 与所述至少一个其他接入节点相关联,其中所述第二配置信息包括关于所述至少一个其他接入节点和所述至少一个其他中继节点之间的接口的信息。
    • 20. 发明申请
    • PLASMA PROCESSING APPARATUS
    • 等离子体加工设备
    • US20130256129A1
    • 2013-10-03
    • US13876133
    • 2010-12-22
    • Peng ChenMengxin ZhaoGang WeiLiang ZhangBai YangGuilong WuPeijun Ding
    • Peng ChenMengxin ZhaoGang WeiLiang ZhangBai YangGuilong WuPeijun Ding
    • C23C14/35
    • A plasma processing apparatus includes a chamber (20) and a target (25) above the chamber (20). The surface of the target (25) contacts the processing area of the chamber (20). The chamber (20) includes an insulating sub-chamber (21) and a first conductive sub-chamber (22), which are superposed. The first conductive sub-chamber (22) is provided under the insulating sub-chamber (21). The insulating sub-chamber (21) is made of insulating material, and the first conductive sub-chamber (22) is made of metal material. A Faraday shield component (10) which is made of metal material or insulating material electroplated with conductive coatings and includes at least one slit is provided in the insulating sub-chamber (21). An inductance coil (13) surrounds the exterior of the insulating sub-chamber (21). The problem about the wafer contamination due to particles formed on the surface of the coil during the sputtering process can be solved by using the plasma processing apparatus.
    • 等离子体处理装置包括在室(20)上方的室(20)和目标(25)。 靶(25)的表面与腔室(20)的处理区域接触。 所述腔室(20)包括叠置的绝缘子室(21)和第一导电子室(22)。 第一导电子室(22)设置在绝缘子室(21)的下方。 绝缘子室(21)由绝缘材料制成,第一导电子室(22)由金属材料制成。 在绝缘子室(21)中设置由金属材料制成的法拉第屏蔽部件(10)或电镀有导电涂层并且包括至少一个狭缝的绝缘材料。 电感线圈(13)围绕绝缘子室(21)的外部。 通过使用等离子体处理装置可以解决由于在溅射过程中在线圈表面上形成的颗粒导致的晶片污染的问题。