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    • 3. 发明申请
    • GRAPHIC FLOW HAVING UNLIMITED NUMBER OF CONNECTIONS BETWEEN SHAPES
    • 图形流动形式之间无连接数量的连接
    • US20130139106A1
    • 2013-05-30
    • US13307720
    • 2011-11-30
    • Ping SongChao Tian
    • Ping SongChao Tian
    • G06F3/048
    • G06F3/0482G06F3/04812G06F3/04842G06F17/50G06F17/509
    • Techniques are described herein that are capable of generating a graphic flow having an unlimited number of connections between shapes. The shapes are provided in a visual representation of a workspace defined by pixels. For instance, a first shape may have an outer perimeter defined by a first subset of the pixels; a second shape may have an outer boundary defined by a second subset of the pixels, and so on. Any pixel in each subset may serve as a connection point. For example, a first pixel of the first subset may serve as a first connection point based on any of a variety of first criteria, and a second pixel of the second subset may serve as a second connection point based on any of a variety of second criteria. In accordance with this example, a connection may be provided between the first and second connection points.
    • 本文描述了能够生成具有无限数量的形状之间的连接的图形流的技术。 形状以由像素定义的工作空间的视觉表示形式提供。 例如,第一形状可以具有由像素的第一子集限定的外周界; 第二形状可以具有由像素的第二子集限定的外边界,等等。 每个子集中的任何像素可以用作连接点。 例如,第一子集的第一像素可以用作基于各种第一标准中的任何一个的第一连接点,并且第二子集的第二像素可以用作基于各种第二标准中的任何一个的第二连接点 标准 根据该示例,可以在第一和第二连接点之间提供连接。
    • 5. 发明申请
    • METHOD, DEVICE, AND SYSTEM FOR MEASURING AND REPORTING AUTOMATIC NEIGHBOUR RELATION
    • 测量和报告自动邻里关系的方法,装置和系统
    • US20120009919A1
    • 2012-01-12
    • US13234645
    • 2011-09-16
    • Ying HUANGPing Song
    • Ying HUANGPing Song
    • H04W24/00
    • H04W36/0083H04W76/19
    • The present invention relates to the communications field and discloses a method, a device, and a system for measuring and reporting an automatic neighbour relation (ANR), which are capable of completing an ANR function during a radio link failure (RLF), therefore saving measurement time and improving network performance. The solution is: when an RLF occurs, receiving a radio resource control (RRC) link reestablishment failure message, where the RRC link reestablishment failure message carries control information instructing a user equipment (UE) to perform an ANR measurement; performing the ANR measurement according to the control information in the RRC link reestablishment failure message to obtain an ANR measurement result; and after receiving an RRC link establishment response message, reporting the ANR measurement result by using an RRC link establishment complete message.
    • 本发明涉及通信领域,并且公开了一种能够在无线电链路故障(RLF)期间完成ANR功能的自动相邻关系(ANR)的测量和报告的方法,设备和系统,因此节省 测量时间,提高网络性能。 解决的办法是:当发生RLF时,接收无线电资源控制(RRC)链路重建失败消息,无线链路重建失败消息携带指示用户设备(UE)执行ANR测量的控制信息; 根据RRC链路重建失败消息中的控制信息进行ANR测量,得到ANR测量结果; 并且在接收到RRC链路建立响应消息之后,通过使用RRC链路建立完成消息来报告ANR测量结果。
    • 6. 发明申请
    • Cry1F and Cry1Ac transgenic cotton lines and event-specific identification thereof
    • US20070143876A1
    • 2007-06-21
    • US11704418
    • 2007-02-09
    • Ping SongLaura TaglianiJohn Pellow
    • Ping SongLaura TaglianiJohn Pellow
    • A01H5/00C12Q1/68C07H21/04
    • C12N15/8286C07K14/325C12Q1/6895Y02A40/162
    • This invention relates to plant breeding and the protection of plants from insects. More specifically, this invention includes novel transformation events of cotton plants comprising one or more polynucleotide sequences, as described herein, inserted into specific site(s) within the genome of a cotton cell. In highly preferred embodiments, said polynucleotide sequences encode “stacked” Cry1F and Cry1Ac lepidopteran insect inhibitory proteins. However, the subject invention includes plants having single cry1F or cry1Ac events, as described herein. Additionally, the invention is related to cotton plants derived from that transformation event and to assays for detecting the presence of the event in a sample. More specifically, the present invention provides DNA and related assays for detecting the presence of certain insect-resistance events in cotton. The assays are based on the DNA sequences of recombinant constructs inserted into the cotton genome and of the genomic sequences flanking the insertion sites. These sequences are unique. Based on these insert and border sequences, event-specific primers were generated. PCR analysis demonstrated that these cotton lines can be identified in different cotton genotypes by analysis of the PCR amplicons generated with these event-specific primer sets. Thus, these and other related procedures can be used to uniquely identify these cotton lines. Kits and conditions useful in conducting the assays are also provided. These materials and methods can also be used to assist breeding programs to further develop traits in cotton.
    • 8. 发明授权
    • Method, device, and system for measuring and reporting automatic neighbour relation
    • 用于测量和报告自动邻居关系的方法,设备和系统
    • US08548458B2
    • 2013-10-01
    • US13234645
    • 2011-09-16
    • Ying HuangPing Song
    • Ying HuangPing Song
    • H04W24/00H04W36/00H04W4/00H04M1/00H04M3/00H04L12/26
    • H04W36/0083H04W76/19
    • The present invention relates to the communications field and discloses a method, a device, and a system for measuring and reporting an automatic neighbor relation (ANR), which are capable of completing an ANR function during a radio link failure (RLF), therefore saving measurement time and improving network performance. The solution is: when an RLF occurs, receiving a radio resource control (RRC) link reestablishment failure message, where the RRC link reestablishment failure message carries control information instructing a user equipment (UE) to perform an ANR measurement; performing the ANR measurement according to the control information in the RRC link reestablishment failure message to obtain an ANR measurement result; and after receiving an RRC link establishment response message, reporting the ANR measurement result by using an RRC link establishment complete message.
    • 本发明涉及通信领域,并且公开了一种能够在无线电链路故障(RLF)期间完成ANR功能的自动相邻关系(ANR)的测量和报告的方法,设备和系统,因此节省 测量时间,提高网络性能。 解决的办法是:当发生RLF时,接收无线电资源控制(RRC)链路重建失败消息,无线链路重建失败消息携带指示用户设备(UE)执行ANR测量的控制信息; 根据RRC链路重建失败消息中的控制信息进行ANR测量,得到ANR测量结果; 并且在接收到RRC链路建立响应消息之后,通过使用RRC链路建立完成消息来报告ANR测量结果。
    • 9. 发明授权
    • Trifila balun for wireless transceiver
    • 用于无线收发器的Trifila balun
    • US08279018B1
    • 2012-10-02
    • US12724836
    • 2010-03-16
    • Ping SongPoh Boon Leong
    • Ping SongPoh Boon Leong
    • H03H7/42H03H5/00
    • H03H7/38H03F1/565H03F2200/06H03F2200/09H04B1/581
    • In one embodiment, an apparatus for transmitting and receiving wireless communications is provided. A balun is coupled to an antenna. The antenna transmits and receives radio frequency signals. The balun includes a first inductor including a first set of ports coupled to the antenna. The balun includes a second inductor with a second set of ports coupled to a power amplifier through a first circuit. The power amplifier transmits a first signal to the antenna. The balun also includes a third inductor with a third set of ports coupled to a low noise amplifier through a second circuit. The low noise amplifier receives a second signal from the antenna. The second set of ports is coupled to the first circuit and the third set of ports is coupled to the second circuit. Also, the first circuit is separate from the second circuit.
    • 在一个实施例中,提供了用于发送和接收无线通信的装置。 平衡 - 不平衡转换器耦合到天线。 天线发射和接收射频信号。 平衡 - 不平衡变压器包括第一电感器,其包括耦合到天线的第一组端口。 平衡 - 不平衡变压器包括具有通过第一电路耦合到功率放大器的第二组端口的第二电感器。 功率放大器将第一信号发射到天线。 平衡 - 不平衡转换器还包括第三电感器,其具有通过第二电路耦合到低噪声放大器的第三组端口。 低噪声放大器从天线接收第二信号。 第二组端口耦合到第一电路,第三组端口耦合到第二电路。 此外,第一电路与第二电路分离。
    • 10. 发明申请
    • TECHNIQUES TO IMPROVE THE STRESS ISSUE IN CASCODE POWER AMPLIFIER DESIGN
    • 改进CASCODE功率放大器设计中的应力问题的技术
    • US20120161879A1
    • 2012-06-28
    • US13336857
    • 2011-12-23
    • Poh Boon LeongPing SongSehat Sutardja
    • Poh Boon LeongPing SongSehat Sutardja
    • H03F3/04
    • H03F3/265H03F1/223H03F3/193H03F3/245H03F2200/306H03F2200/408H03F2200/534H03F2200/537H03F2200/541
    • An amplifier includes a first transistor, and a first inductor disposed between the first transistor and a voltage source. A first output node is between the first transistor and the first inductor. The amplifier further includes a second inductor disposed between the first transistor and ground. The amplifier further includes a second transistor, and a third inductor disposed between the second transistor and a ground. A second output node is between the second transistor and the third inductor. The amplifier further includes a fourth inductor disposed between the second transistor and the voltage source. The amplifier further includes a first capacitor disposed between the first output node and the second output node, and a second capacitor disposed between a first mid-node, which is between the first transistor and the first inductor, and a second mid-node, which is between the second transistor and fourth inductor.
    • 放大器包括第一晶体管和设置在第一晶体管和电压源之间的第一电感器。 第一输出节点位于第一晶体管和第一电感器之间。 放大器还包括设置在第一晶体管和地之间的第二电感器。 放大器还包括第二晶体管,以及设置在第二晶体管和地之间的第三电感器。 第二输出节点在第二晶体管和第三电感之间。 放大器还包括设置在第二晶体管和电压源之间的第四电感器。 所述放大器还包括设置在所述第一输出节点和所述第二输出节点之间的第一电容器,以及设置在所述第一晶体管和所述第一电感器之间的第一中间节点和第二中间节点之间的第二电容器, 在第二晶体管和第四电感之间。