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    • 13. 发明申请
    • MICROSECOND TIME-RESOLVED MASS SPECTROMETRY
    • MICROSECOND时间分辨质谱仪
    • US20140147921A1
    • 2014-05-29
    • US13697621
    • 2011-05-17
    • Hao ChenZhixin Miao
    • Hao ChenZhixin Miao
    • G01N27/68G01N33/487
    • G01N27/68G01N1/00G01N33/48707G01N33/6848H01J49/0445H01J49/045H01J49/145H01J49/165
    • A microsecond time-resolved mass spectrometry device and method of using desorption electrospray ionization (10) was described for the kinetic study of fast reactions. The device includes a liquid jet generator (64) that is configured to emit a continuous liquid jet (50) having a length. An ambient ionization source (10) is directed toward a selected variable location along the continuous liquid jet (50) to desorb at least a portion of the continuous liquid jet (50). A mass analyzer (30) analyzes a mass-to-charge ratio of an ionized sample that is within the desorbed portion of the continuous liquid jet (50). The acquired mass spectra reflect the reaction progress in different reaction times and, therefore, may be used to derive the reaction rate.
    • 描述了用于快速反应的动力学研究的微秒时间分辨质谱装置和使用解吸电喷雾电离的方法(10)。 该装置包括液体喷射发生器(64),其构造成发射具有长度的连续液体射流(50)。 环境电离源(10)沿着连续液体射流(50)指向选定的可变位置以解吸至少一部分连续液体射流(50)。 质量分析器(30)分析在连续液体射流(50)的解吸附部分内的电离样品的质荷比。 所获得的质谱反映了不同反应时间的反应进程,因此可用于得到反应速率。
    • 15. 发明申请
    • DOOR CLOSURE STRUCTURE FOR ROTARY DOOR AND SIDE-BY-SIDE REFRIGERATOR COMPRISING THE SAME
    • 旋转门和包含该旋转门的侧面冷冻机的门盖结构
    • US20140009056A1
    • 2014-01-09
    • US14006284
    • 2011-05-23
    • Hao ChenJun Yao
    • Hao ChenJun Yao
    • F25D23/02E06B3/36
    • E06B3/36E05B65/0042E05C19/04E05D11/1078E05Y2900/31F25D23/028F25D2323/024
    • A door closure structure for a rotary door and a side-by-side refrigerator comprising the same are provided. The rotary door is rotatably mounted on a main body. The door closure structure comprises: a hinge assembly comprising a hinge body, a hinge plate and a hinge shaft, via which the rotary door is mounted on the main body; a supporting plate extended in a lateral direction, provided with a first hole and connected with a front end of the hinge body; a mask body fixed on the rotary door, in which a mask cavity is defined and in a surface of which a second hole is disposed; and an engaging block retractably and movably disposed in the mask cavity. A part of the engaging block is exposable out of the mask body from the second hole and engagable with the first hole to make the rotary door close the main body.
    • 提供了一种用于旋转门的门盖结构和包括该门的并排冰箱。 旋转门可旋转地安装在主体上。 门关闭结构包括:铰链组件,其包括铰链主体,铰链板和铰链轴,旋转门经由该铰链主体安装在主体上; 支撑板,其沿横向方向延伸,设置有第一孔并与所述铰链主体的前端连接; 固定在所述旋转门上的面罩主体,其中限定了掩模腔,并且在其表面上设置有第二孔; 以及可收缩地且可移动地设置在掩模腔中的接合块。 接合块的一部分可从第二孔从面罩主体露出并与第一孔接合,以使旋转门关闭主体。
    • 19. 发明授权
    • Memory controller with QoS-aware scheduling
    • 具有QoS感知调度的内存控制器
    • US08314807B2
    • 2012-11-20
    • US12883864
    • 2010-09-16
    • Sukalpa BiswasHao Chen
    • Sukalpa BiswasHao Chen
    • G09G5/39
    • G06F9/5033G06F13/1668
    • In an embodiment, a memory controller includes multiple ports. Each port may be dedicated to a different type of traffic. In an embodiment, quality of service (QoS) parameters may be defined for the traffic types, and different traffic types may have different QoS parameter definitions. The memory controller may be configured to schedule operations received on the different ports based on the QoS parameters. In an embodiment, the memory controller may support upgrade of the QoS parameters when subsequent operations are received that have higher QoS parameters, via sideband request, and/or via aging of operations. In an embodiment, the memory controller is configured to reduce emphasis on QoS parameters and increase emphasis on memory bandwidth optimization as operations flow through the memory controller pipeline.
    • 在一个实施例中,存储器控制器包括多个端口。 每个端口可能专用于不同类型的流量。 在一个实施例中,可以为业务类型定义服务质量(QoS)参数,并且不同的业务类型可以具有不同的QoS参数定义。 存储器控制器可以被配置为基于QoS参数调度在不同端口上接收的操作。 在一个实施例中,当接收到具有较高QoS参数,经由边带请求和/或通过操作老化的后续操作时,存储器控制器可以支持QoS参数的升级。 在一个实施例中,存储器控制器被配置为当操作流过存储器控制器管线时,减少对QoS参数的强调并且增加对存储器带宽优化的重视。
    • 20. 发明申请
    • METHOD FOR SWITCHING SYSTEM STATE AND PORTABLE TERMINAL
    • 用于切换系统状态和便携式终端的方法
    • US20120260084A1
    • 2012-10-11
    • US13515778
    • 2010-12-13
    • Bin LiHao ChenQian Zhao
    • Bin LiHao ChenQian Zhao
    • G06F9/06
    • G06F9/4418G06F1/32G06F1/3287G06F9/441G06F9/461G06F11/2028G06F11/2038G06F11/2097H04W48/16H04W52/028H04W88/06Y02D10/44Y02D70/00
    • A method for switching system state and a portable terminal. The method is applied to a portable terminal comprising a first system and a second system. The second system has a second control module provided therein. The method comprises: obtaining, by the second system, state information of the first system through the second control module when at least one of the first system and the second system is in an inactive state; receiving, by the second control module, a system state switching event; switching, by the second control module, the second system to a state corresponding to the state information of the first system based on the state information of the first system. According to the embodiments of the present invention, when the system state is to be switched, it is not necessary that both systems are in the active state. Rather, the state information can be transmitted between the systems in the inactive state by using a control module provided in one or both of the systems, and the power consumption of the portable terminal can be reduced.
    • 一种用于切换系统状态和便携式终端的方法。 该方法应用于包括第一系统和第二系统的便携式终端。 第二系统具有设置在其中的第二控制模块。 该方法包括:当第一系统和第二系统中的至少一个处于非活动状态时,由第二系统获得通过第二控制模块的第一系统的状态信息; 由所述第二控制模块接收系统状态切换事件; 基于第一系统的状态信息,由第二控制模块将第二系统切换到与第一系统的状态信息对应的状态。 根据本发明的实施例,当要切换系统状态时,两个系统都不必处于活动状态。 相反,可以通过使用在一个或两个系统中提供的控制模块来在处于非活动状态的系统之间传送状态信息,并且可以减少便携式终端的功耗。