Service Bearer Method and Apparatus, Service Data Receiving Method and Receiving Terminal
    421.
    发明申请
    Service Bearer Method and Apparatus, Service Data Receiving Method and Receiving Terminal 有权
    服务承载方法和装置,服务数据接收方法和接收终端

    公开(公告)号:US20120140778A1

    公开(公告)日:2012-06-07

    申请号:US13390457

    申请日:2010-05-13

    CPC classification number: H04W72/005

    Abstract: A service bearer method and apparatus, a service data receiving method and a receiving terminal are provided. The method includes: a network side converts a Multimedia Broadcast and Multicast Service (MBSFN) sub-frame to a unicast service sub-frame and bears the unicast service on the converted unicast sub-frame. The method improves the utilization ratio of the wireless resources.

    Abstract translation: 提供了业务承载方法和装置,业务数据接收方法和接收终端。 该方法包括:网络侧将多媒体广播和组播服务(MBSFN)子帧转换为单播服务子帧,并在转换的单播子帧上承载单播服务。 该方法提高了无线资源的利用率。

    Manufacturing and Detecting Device and Method of Birefringent Lens Grating
    422.
    发明申请
    Manufacturing and Detecting Device and Method of Birefringent Lens Grating 有权
    双折射透镜光栅的制造和检测装置及方法

    公开(公告)号:US20120003380A1

    公开(公告)日:2012-01-05

    申请号:US12905988

    申请日:2010-10-15

    Applicant: Bin Yu

    Inventor: Bin Yu

    CPC classification number: G02B5/3083 G02B3/0031 G02B3/0037 G02B27/2214

    Abstract: The present disclosure provides a detecting device of a birefringent lens grating. The detecting device includes a projection pattern disposed adjacent to the birefringent lens grating; an illuminating light source for projecting light onto the projection pattern and the birefringent lens grating; an image capturing device for capturing the light out from the birefringent lens grating and obtaining a projection pattern image of the projection pattern; and a controller for comparing the projection pattern image with a reference to determine a refractive index matching degree of the birefringent lens grating. The present disclosure further provides a detecting method, a manufacture method and a manufacture device of the birefringent lens grating.

    Abstract translation: 本公开提供了双折射透镜光栅的检测装置。 检测装置包括与双折射透镜光栅相邻布置的投影图案; 用于将光投射到投影图案和双折射透镜光栅上的照明光源; 用于捕获来自双折射透镜光栅的光并获得投影图案的投影图案图像的图像捕获装置; 以及控制器,用于将投影图案图像与基准进行比较,以确定双折射透镜光栅的折射率匹配度。 本公开还提供了双折射透镜光栅的检测方法,制造方法和制造装置。

    SILICON-BASED ELECTRO-OPTIC DEVICE
    423.
    发明申请
    SILICON-BASED ELECTRO-OPTIC DEVICE 有权
    硅基电光设备

    公开(公告)号:US20110211786A1

    公开(公告)日:2011-09-01

    申请号:US13036244

    申请日:2011-02-28

    Abstract: In an electro-optic device, a stack structure including a first silicon layer of a first conductivity type and a second silicon layer of a second conductivity type has a rib waveguide shape so as to form an optical confinement area, and a slab portion of a rib waveguide includes an area to which a metal electrode is connected. The slab portion in the area to which the metal electrode is connected is thicker than a surrounding slab portion. The area to which the metal electrode is connected is set so that a range of a distance from the rib waveguide to the area to which the metal electrode is connected is such that when the distance is changed, an effective refractive index of the rib waveguide in a zeroth-order mode does not change.

    Abstract translation: 在电光装置中,包括第一导电类型的第一硅层和第二导电类型的第二硅层的堆叠结构具有肋波导形状以形成光限制区域,并且将板状部分 肋波导包括连接金属电极的区域。 金属电极连接的区域中的板坯部分比周围的板坯部分厚。 金属电极连接的区域被设定为使得从肋波导到连接金属电极的区域的距离的范围使得当距离变化时,肋波导的有效折射率在 零阶模式不会改变。

    Fully silicided gate structure for FinFET devices
    424.
    发明授权
    Fully silicided gate structure for FinFET devices 有权
    FinFET器件的全硅化栅极结构

    公开(公告)号:US08008136B2

    公开(公告)日:2011-08-30

    申请号:US11379435

    申请日:2006-04-20

    CPC classification number: H01L29/785 H01L29/4908 H01L29/66795 H01L29/7842

    Abstract: A method may include forming a gate electrode over a fin structure, depositing a first metal layer on a top surface of the gate electrode, performing a first silicide process to convert a portion of the gate electrode into a metal-silicide compound, depositing a second metal layer on a top surface of the metal-silicide compound, and performing a second silicide process to form a fully-silicided gate electrode.

    Abstract translation: 一种方法可以包括在鳍结构上形成栅电极,在栅电极的顶表面上沉积第一金属层,执行第一硅化工艺以将栅电极的一部分转化为金属硅化物, 在金属硅化物化合物的顶表面上的金属层,并且执行第二硅化物处理以形成全硅化物栅电极。

    METHOD FOR SENDING A SOUNDING REFERENCE SIGNAL OF UPLINK CHANNEL IN A TIME DIVISION DUPLEX SYSTEM
    425.
    发明申请
    METHOD FOR SENDING A SOUNDING REFERENCE SIGNAL OF UPLINK CHANNEL IN A TIME DIVISION DUPLEX SYSTEM 有权
    用于在时分双工系统中发送上行链路信道的参考信号的方法

    公开(公告)号:US20110013546A1

    公开(公告)日:2011-01-20

    申请号:US12920958

    申请日:2009-06-02

    CPC classification number: H04L5/0007 H04L5/005 H04L5/0091 H04W72/044

    Abstract: A method for sending a sounding reference signal (SRS) of uplink channel in a time division duplex system is provided, a terminal calculates the parameters of the resource for sending an SRS in an uplink pilot time slot (UpPTS) according to the configuration information related to the sounding reference signal (SRS) of the uplink channel, the parameters include the frequency domain start position of the resource, and then the SRS is sent over the resource; wherein when the frequency domain start position of the resource is calculated, it is necessary to determine the index of the first sub-carrier in the maximum SRS bandwidth; the terminal determines the index according to the frequency domain position of one PRACH or that of more PRACHs in the uplink pilot time slots, when the PRACH includes the sub-carrier at the lower boundary of the system bandwidth, the upper boundary of the system bandwidth is used as the end position of the maximum SRS bandwidth and the start position of the maximum SRS bandwidth is calculated; and when the PRACH includes the sub-carrier at the upper boundary of the system bandwidth, the lower boundary of the system bandwidth is used as the start position of the maximum SRS bandwidth, and then the index is determined through the start position of the maximum SRS bandwidth plus the offset parameter configured for the terminal. With the sending position of the maximum SRS bandwidth in the UpPTS, which is obtained by the method of the present invention, the interference between the SRS signal and the PARCH can be avoided, and it is possible to implement the channel sounding for more bandwidth.

    Abstract translation: 提供了一种用于在时分双工系统中发送上行链路信道的探测参考信号(SRS)的方法,终端根据相关配置信息计算上行链路导频时隙(UpPTS)中发送SRS的资源参数 到上行链路信道的探测参考信号(SRS),参数包括资源的频域起始位置,然后通过资源发送SRS; 其中,当计算出资源的频域起始位置时,需要确定最大SRS带宽中的第一子载波的索引; 当PRACH包括系统带宽下边界的子载波时,终端根据一个PRACH的频域位置或上行导频时隙中的更多PRACH的频域确定索引,系统带宽的上限 用作最大SRS带宽的最终位置,并计算最大SRS带宽的起始位置; 并且当PRACH在系统带宽的上边界处包括子载波时,系统带宽的下边界被用作最大SRS带宽的起始位置,然后通过最大值的起始位置确定索引 SRS带宽加上为终端配置的偏移参数。 通过本发明的方法获得的UPPTS中的最大SRS带宽的发送位置可以避免SRS信号与PARCH之间的干扰,并且可以实现更多带宽的信道探测。

    METHOD FOR ALLOCATING PHYSICAL HYBRID ARQ INDICATOR CHANNELS
    426.
    发明申请
    METHOD FOR ALLOCATING PHYSICAL HYBRID ARQ INDICATOR CHANNELS 有权
    分配物理混合ARQ指示器通道的方法

    公开(公告)号:US20110007674A1

    公开(公告)日:2011-01-13

    申请号:US12919665

    申请日:2009-02-13

    Abstract: The present disclosure provides a method for allocating physical hybrid ARQ indicator channels, which is used for sending indication information corresponding to multiple uplink sub-frames in the same downlink sub-frame in a TDD system. The method includes: in the TDD system, through an index of a physical resource block where uplink data resides as well as an index of an uplink sub-frame where the uplink data resides, determining an index of a physical hybrid ARQ indicator channel group where a physical hybrid ARQ indicator channel in an downlink sub-frame resides and an intra-group index of the physical hybrid ARQ indicator channel in the physical hybrid ARQ indicator channel group according to an indexing rule, and further determining an index of the physical hybrid ARQ indicator channel by using the index of the physical hybrid ARQ indicator channel group and the intra-group index. According to implicit mapping, the method of the present disclosure implements the allocation of the physical hybrid ARQ indicator channels over which the downlink indication messages corresponding to each uplink sub-frame are transmitted, thereby being capable of overcoming the problem potentially present in existing technologies that multiple indication messages reside on the same physical hybrid ARQ indicator channel.

    Abstract translation: 本公开提供了一种用于分配物理混合ARQ指示符信道的方法,用于在TDD系统中的相同下行链路子帧中发送对应于多个上行链路子帧的指示信息。 该方法包括:在TDD系统中,通过上行链路数据所在的物理资源块的索引以及上行链路数据所在的上行链路子帧的索引,确定物理混合ARQ指示符信道组的索引,其中 根据索引规则,下行子帧中的物理混合ARQ指示符信道驻留在物理混合ARQ指示符信道组中的物理混合ARQ指示符信道的组内索引,并进一步确定物理混合ARQ指示符信道的索引 指标通道采用物理混合ARQ指标通道组索引和组内指标。 根据隐式映射,本公开的方法实现物理混合ARQ指示符信道的分配,通过该配置,发送与每个上行链路子帧相对应的下行链路指示消息,从而能够克服现有技术中潜在存在的问题, 多个指示消息驻留在相同的物理混合ARQ指示符通道上。

    Method and Apparatus for Sequencing ZC Sequences of a Random Access Channel
    428.
    发明申请
    Method and Apparatus for Sequencing ZC Sequences of a Random Access Channel 有权
    用于排序随机接入信道的ZC序列的方法和装置

    公开(公告)号:US20100309993A1

    公开(公告)日:2010-12-09

    申请号:US12864653

    申请日:2008-12-02

    Abstract: The present invention provides a method and apparatus for sequencing ZC sequences of a random access channel. The method comprises: setting α as a logical index of each ZC sequence, and u as a physical index of said each ZC sequence, wherein 1≦u≦N−1, 0≦α≦N−2, and N is the length of said each ZC sequence; establishing a mapping relationship between the logical index and the physical index: u=N/2 is taken as a symmetry axis, α is mapped to u in a manner of longitudinal symmetry, and on the upper side of the symmetry axis, u monotonously decreases or increases, while on the lower side of the symmetry axis, u monotonously increases or decreases. This method ensures that the PRACHs of the UEs using different sequences in a same cell have similar coverage, thus the flexibility of cell planning is increased.

    Abstract translation: 本发明提供了一种用于对随机接入信道的ZC序列进行排序的方法和装置。 该方法包括:将α设置为每个ZC序列的逻辑索引,u作为所述每个ZC序列的物理索引,其中1≦̸ u≦̸ N-1,0≦̸α≦̸ N-2和N是 说每个ZC序列; 建立逻辑索引与物理指标之间的映射关系:u = N / 2作为对称轴,α以纵向对称方式映射到u,在对称轴的上侧,u单调减小 或增加,而在对称轴的下侧,u单调增加或减少。 该方法确保在同一小区中使用不同序列的UE的PRACH具有相似的覆盖,从而增加小区规划的灵活性。

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