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    • 39. 发明授权
    • Ion gate for dual ion mobility spectrometer and method thereof
    • 双离子迁移谱仪的离子门及其方法
    • US08013297B2
    • 2011-09-06
    • US12579719
    • 2009-10-15
    • Hua PengQingjun ZhangJin LinYuanjing LiZhiqiang ChenShaoji MaoZhude DaiDai Hua, legal representativeShiping CaoZhongxia ZhangYangtian ZhangDexu LinQinghua Wang
    • Hua PengQingjun ZhangJin LinYuanjing LiZhiqiang ChenShaoji MaoZhude DaiShiping CaoZhongxia ZhangYangtian ZhangDexu LinQinghua Wang
    • G01N27/64H01J49/06
    • H01J3/04H01J49/004H01J49/061
    • Disclosed is an ion gate for a dual IMS and method. The ion gate includes an ion source, a first gate electrode placed on one side of the ion source, a second gate electrode placed on the other side of the ion source, a third gate electrode placed on the side of the first gate electrode away from the ion source, a fourth gate electrode placed on the side of the second gate electrode away from the ion source, wherein during the ion storage, the potential at the position on the tube axis of the ion gate corresponding to the first gate electrode is different from the potentials at the positions on the tube axis corresponding to the ion source and the third gate electrode, and the potential at the position on the tube axis corresponding to the second gate electrode is different from the potentials at the positions on the tube axis corresponding to the ion source and the fourth gate electrode. According to the present invention, after sample gas enters the ion gates, charge exchange with reaction ions occurs between the first gate electrode and the second electrode, and positive and negative ions are continuously stored into the storage regions for the positive and negative ions. This leads to an improvement of utility rate of ions. Then, the ions are educed in a step-wise manner from the storage regions for the positive and negative ions by a simple control of a combination of the electrodes.
    • 公开了一种用于双重IMS和方法的离子门。 离子浇口包括离子源,位于离子源一侧的第一栅电极,位于离子源另一侧的第二栅电极,位于第一栅电极侧的第三栅电极, 离子源,第四栅极放置在远离离子源的第二栅电极侧,其中在离子存储期间,对应于第一栅电极的离子门的管轴上的位置的电位不同 从对应于离子源和第三栅电极的管轴上的位置的电位和对应于第二栅电极的管轴上的位置的电位与管轴对应的位置的电位不同 到离子源和第四栅电极。 根据本发明,在样品气体进入离子浇口之后,在第一栅电极和第二电极之间产生与反应离子的电荷交换,正离子和负离子被连续地存储在正离子和负离子的存储区中。 这导致了离子的利用率的提高。 然后,通过简单地控制电极的组合,从正离子和负离子的存储区域逐步地排出离子。
    • 40. 发明授权
    • Transmission of signaling messages using beacon signals
    • 使用信标信号传输信令消息
    • US09276787B2
    • 2016-03-01
    • US12411263
    • 2009-03-25
    • Kapil BhattadRavi PalankiDexu Lin
    • Kapil BhattadRavi PalankiDexu Lin
    • H04L27/10H04L5/00H04L25/49H04L27/30H04L1/00H04L27/26
    • H04L27/10H04L1/0057H04L5/0053H04L5/0091H04L25/4902H04L27/2647H04L27/30
    • Techniques for sending signaling messages with beacon signals in a wireless communication network are described. In one design, a transmitter station may map a signaling message (e.g., a reduce interference request) to multiple code symbols. The transmitter station may select multiple resource elements from among a plurality of resource elements based on the multiple code symbols. In one design, each code symbol may be sent across frequency by selecting one of multiple subcarriers in one symbol period. In another design, each code symbol may be sent across time by selecting one of multiple symbol periods on one subcarrier. The transmitter station may generate a beacon signal having transmit power on the selected resource elements and no transmit power on remaining resource elements. The transmitter station may send the beacon signal to at least one receiver station.
    • 描述了在无线通信网络中用信标信号发送信令消息的技术。 在一种设计中,发射机站可以将信令消息(例如,减少干扰请求)映射到多个码符号。 发射机站可以基于多个码符号从多个资源元素中选择多个资源元素。 在一种设计中,可以通过在一个符号周期中选择多个子载波中的一个来在频率上发送每个码元。 在另一种设计中,可以通过在一个子载波上选择多个符号周期之一来跨越时间发送每个码元。 发射机站可以生成具有在所选择的资源单元上的发射功率并且在剩余的资源单元上没有发射功率的信标信号。 发射机站可以将信标信号发送到至少一个接收机站。