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    • 11. 发明申请
    • Method for forming polysilicon plug of semiconductor device
    • 用于形成半导体器件的多晶硅插塞的方法
    • US20050142867A1
    • 2005-06-30
    • US10879220
    • 2004-06-30
    • Hyung ParkMin LeeSang LeeHyun Sohn
    • Hyung ParkMin LeeSang LeeHyun Sohn
    • H01L21/28H01L21/3205H01L21/336H01L21/44H01L21/4763H01L21/60H01L21/768
    • H01L21/76897H01L21/7684
    • Disclosed is a method for forming a polysilicon plug of a semiconductor device. The method comprises the steps of: forming a stacked pattern of a wordline and a hard mask film on a semiconductor substrate comprising a cell region and a peripheral circuit region; forming a spacer on a sidewall of the stacked pattern; forming an interlayer insulating film on the semiconductor substrate; polishing the interlayer insulating film via a CMP process using the hard mask film as a polishing barrier film; forming a barrier film on the semiconductor substrate including the interlayer insulating film; selectively etching the barrier film and the interlayer insulating film to form a landing plug contact hole; depositing a polysilicon film filling the landing plug contact hole on the semiconductor substrate; blanket-etching the polysilicon film using the barrier film as an etching barrier film; and polishing the polysilicon film and the barrier film using the hard mask film as a polishing barrier film to form a polysilicon plug.
    • 公开了一种用于形成半导体器件的多晶硅插塞的方法。 该方法包括以下步骤:在包括单元区域和外围电路区域的半导体衬底上形成字线和硬掩模膜的堆叠图案; 在所述堆叠图案的侧壁上形成间隔物; 在半导体衬底上形成层间绝缘膜; 通过使用硬掩模膜作为抛光阻挡膜的CMP工艺来研磨层间绝缘膜; 在包括层间绝缘膜的半导体衬底上形成阻挡膜; 选择性地蚀刻阻挡膜和层间绝缘膜以形成着陆塞接触孔; 在所述半导体衬底上沉积填充所述着地插头接触孔的多晶硅膜; 使用阻挡膜作为蚀刻阻挡膜对多晶硅膜进行绝缘蚀刻; 并使用硬掩模膜作为抛光阻挡膜研磨多晶硅膜和阻挡膜以形成多晶硅插塞。
    • 15. 发明申请
    • APPARATUS AND METHOD FOR TRANSMITTING SIGNAL IN COMMUNICATION SYSTEM
    • 用于在通信系统中发送信号的装置和方法
    • US20130107791A1
    • 2013-05-02
    • US13810172
    • 2011-07-14
    • Seong Keun OhMin Lee
    • Seong Keun OhMin Lee
    • H04W4/08
    • H04W4/08H04B7/0452H04B7/0697H04W72/121
    • Provided are an apparatus and method for grouping multiple user data and transmitting the grouped data in a multiple antenna system. According to the method, a plurality of user groups are configured, and at least one antenna group is assigned to the plurality of user groups. Then, user signals for each user group are combined using at least one user multiplexing method to generate a user group signal, and a plurality of user group signals are combined using at least one group multiplexing method. Then, the combined user group signal is transmitted to a plurality of users belonging to the plurality of user groups using the at least one antenna group.
    • 提供了一种用于分组多个用户数据并在多天线系统中发送分组数据的装置和方法。 根据该方法,配置多个用户组,并且至少一个天线组被分配给多个用户组。 然后,使用至少一个用户多路复用方法组合每个用户组的用户信号,以生成用户组信号,并且使用至少一个组复用方法组合多个用户组信号。 然后,使用至少一个天线组将组合的用户组信号发送到属于多个用户组的多个用户。
    • 16. 发明授权
    • Soft real-time load balancer
    • 软实时负载平衡器
    • US08161491B2
    • 2012-04-17
    • US12768458
    • 2010-04-27
    • Anjur Sundaresan KrishnakumarParameshwaran KrishnanMin LeeNavjot SinghShalini Yajnik
    • Anjur Sundaresan KrishnakumarParameshwaran KrishnanMin LeeNavjot SinghShalini Yajnik
    • G06F9/455G06F9/46G06F15/173
    • G06F9/4881
    • The present disclosure is based on a multi-core or multi-processor virtualized environment that comprises both time-sensitive and non-time-sensitive tasks. The present disclosure describes techniques that use a plurality of criteria to choose a processing resource that is to execute tasks. The present disclosure further describes techniques to re-schedule queued tasks from one processing resource to another processing resource, based on a number of criteria. Through load balancing techniques, the present invention both (i) favors the processing of soft real-time tasks arising from media servers and applications, and (ii) prevents “starvation” of the non-real-time general computing applications that co-exist with the media applications in a virtualized environment. These techniques, in the aggregate, favor the processing of soft real-time tasks while also reserving resources for non-real-time tasks. These techniques manage multiple processing resources to balance the competing demands of soft real-time tasks and of non-real-time tasks.
    • 本公开是基于包括时间敏感和非时间敏感任务的多核或多处理器虚拟化环境。 本公开描述了使用多个标准来选择要执行任务的处理资源的技术。 本公开进一步描述了基于多个标准将排队的任务重新调度为从一个处理资源到另一个处理资源的技术。 通过负载平衡技术,本发明(i)有利于由媒体服务器和应用产生的软实时任务的处理,以及(ii)防止共存的非实时通用计算应用的“饥饿” 媒体应用程序在虚拟化环境中。 总而言之,这些技术有利于处理软实时任务,同时为非实时任务预留资源。 这些技术管理多个处理资源,以平衡软实时任务和非实时任务的竞争需求。
    • 20. 发明申请
    • Child calming toy with rythmic stimulation
    • 儿童平静的玩具与节奏刺激
    • US20070037474A1
    • 2007-02-15
    • US11203570
    • 2005-08-12
    • Min Lee
    • Min Lee
    • A63H3/28
    • A63H3/28A63H3/02
    • An improved child calming device comprising, in accordance with the preferred embodiment, a stuffed animal (10) having a pocket (88) within which is contained a heart beat simulating transducer (12) is disclosed. The transducer is actuated, in a number of optional ways, by application of pressure to an actuator (22) which is coupled to a switch (30) which drives an electronic circuit (40) contained within the housing (14) of the simulator (12). The number and power of the “simulated” heart beats may be controlled by selective actuation of the actuator.
    • 公开了一种改进的儿童平静装置,其包括根据优选实施例的具有口袋(88)的填充动物(10),其内装有心跳模拟换能器(12)。 传感器以多种可选方式通过向致动器(22)施加压力,致动器(22)联接到驱动包含在模拟器的壳体(14)内的电子电路(40)的开关(30) 12)。 “模拟”心跳的数量和功率可以通过致动器的选择性致动来控制。