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    • 6. 发明申请
    • DUAL-DRAINAGE SWITCHING MECHANISM OF WATER TANK
    • 水箱双排水开关机构
    • US20130161333A1
    • 2013-06-27
    • US13593379
    • 2012-08-23
    • Rongyu ZHANGXingdong WangBing Wang
    • Rongyu ZHANGXingdong WangBing Wang
    • B65D90/02
    • E03D1/14E03D1/35
    • A dual-drainage switching mechanism of water tank has: a water container with bottom opening of the inner cavity, an air vent communicating with the inner cavity is arranged on the sealed top; a valve unit used for controlling opens or closes of the air vent; a drain valve controller comprising a partial flush button and a full flush button, and he air vent is opened through the linking and coupling of the full flush button and the valve unit, and the air vent is closed through the linking and coupling of the partial flush button and the valve unit. The dual-draining switch is achieved through hermetically storing or non-hermetically controlling part of water body in the inner cavity of the water container, traditional one-pressing drain valve can be transformed into the draining control mechanism with dual-draining function.
    • 水箱双排水切换机构具有:内腔底部开口的水容器,密封顶部设有与内腔连通的排气口; 用于控制通风口的打开或关闭的阀单元; 一个排水阀控制器,包括一个部分冲洗按钮和一个完全齐平的按钮,并且通过连接和连接完整的冲洗按钮和阀门单元打开排气孔,通过连接和连接部分 冲洗按钮和阀门单元。 双排水开关通过水箱内水腔的气密储存或非气密控制部分实现,传统的单压排水阀可以转化为具有双排水功能的排水控制机构。
    • 10. 发明申请
    • Load Balance Connections Per Server In Multi-Core/Multi-Blade System
    • 多核/多刀片系统中每个服务器的负载均衡连接
    • US20100325280A1
    • 2010-12-23
    • US12489366
    • 2009-06-22
    • Avinash JindalDeepak BansalSam Htin MoyDavid CheungBing WangMani KancherlaSridhar Devarapalli
    • Avinash JindalDeepak BansalSam Htin MoyDavid CheungBing WangMani KancherlaSridhar Devarapalli
    • G06F15/173G06F9/46
    • G06F9/5083
    • A network device includes a plurality of blades, each having a plurality of CPU cores that process requests received by the network device. Each blade further includes an accumulator circuit. Each accumulator circuit periodically aggregates the local counter values of the CPU cores of the corresponding blade. One accumulator circuit is designated as a master, and the other accumulator circuit(s) are designated as slave(s). The slave accumulator circuits transmit their aggregated local counter values to the master accumulator circuit. The master accumulator circuit aggregates the sets of aggregated local counter values to create a set of global counter values. The master accumulator circuit transmits the global counter values to a management processor (for display), to the CPU cores located on its corresponding blade, and to each of the slave accumulator circuits. Each slave accumulator circuit then transmits the global counter values to the CPU cores located on its corresponding blade.
    • 网络设备包括多个刀片,每个刀片具有处理由网络设备接收的请求的多个CPU内核。 每个叶片还包括一个蓄电池电路。 每个累加器电路周期性地聚集相应刀片的CPU内核的本地计数器值。 一个累加器电路被指定为主机,另一个累加器电路被指定为从机。 从累加器电路将其聚合的本地计数器值发送到主累加器电路。 主累加器电路聚合本地计数器值集合以创建一组全局计数器值。 主累加器电路将全局计数器值发送到管理处理器(用于显示),发送到位于其相应刀片上的CPU核心以及从属累加器电路中的每一个。 然后,每个从属累加器电路将全局计数器值发送到位于其相应刀片上的CPU核心。