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    • 12. 发明授权
    • Signal field design for WLAN
    • WLAN的信号场设计
    • US09078169B2
    • 2015-07-07
    • US13587681
    • 2012-08-16
    • Hongyuan ZhangRaja BanerjeaYong LiuSudhir Srinivasa
    • Hongyuan ZhangRaja BanerjeaYong LiuSudhir Srinivasa
    • H04L29/02H04W28/18H04L29/06H04L29/08H04W84/12
    • H04W28/18H04L69/22H04L69/323H04W84/12
    • A method of generating packets for transmission in a wireless communication system, wherein each packet includes a SIG field that includes a first SIG subfield, includes generating a data packet and a null data packet. Generating the data packet includes generating information bits of the first SIG subfield of the data packet and generating the data portion of the data packet. The information bits of the first SIG subfield of the data packet indicate, to a receiving device, a length corresponding to a data portion of the data packet. Generating the null data packet includes generating information bits of the first SIG subfield of the null data packet. The information bits of the first SIG subfield of the null data packet indicate, to a receiving device, a first physical layer (PHY) parameter value associated with the null data packet. The first PHY parameter value is not a length value.
    • 一种在无线通信系统中生成用于发送的分组的方法,其中每个分组包括包括第一SIG子字段的SIG字段,包括生成数据分组和空数据分组。 产生数据分组包括生成数据分组的第一SIG子字段的信息比特并生成数据分组的数据部分。 数据分组的第一SIG子字段的信息比特向接收设备指示对应于数据分组的数据部分的长度。 生成空数据分组包括产生空数据分组的第一SIG子字段的信息比特。 空数据分组的第一SIG子字段的信息位向接收设备指示与空数据分组相关联的第一物理层(PHY)参数值。 第一个PHY参数值不是长度值。
    • 14. 发明授权
    • Accessing channels in a multi-channel communication system
    • 在多通道通信系统中访问通道
    • US08971350B1
    • 2015-03-03
    • US13440214
    • 2012-04-05
    • Yong Liu
    • Yong Liu
    • H04L12/413H04L5/00
    • H04L5/0094H04L5/001H04L5/0023H04L5/0076H04L5/0087H04L27/0006
    • In a method of determining channel availability in a wireless communication network utilizing at least first and second sub-channels, a first signal is received via a first channel. The first signal includes first access control information indicating expected utilization of the first channel. The first channel includes the first sub-channel. A first sub-channel availability indicator is updated based on the first access control information. The first sub-channel availability indicator indicates expected utilization of the first sub-channel. A second signal is received via a second channel. The second signal includes second access control information indicating expected utilization of the second channel. The second channel includes the second sub-channel. A second sub-channel availability indicator is updated based on the second access control information. The second sub-channel availability indicator indicates expected utilization of the second sub-channel. A transmission channel is determined based on the first and second sub-channel availability indicators.
    • 在利用至少第一和第二子信道确定无线通信网络中的信道可用性的方法中,经由第一信道接收第一信号。 第一信号包括指示第一信道的预期利用的第一接入控制信息。 第一个频道包括第一个子频道。 基于第一访问控制信息来更新第一子信道可用性指示符。 第一子信道可用性指示符指示第一子信道的预期利用率。 经由第二通道接收第二信号。 第二信号包括指示第二信道的预期利用的第二接入控制信息。 第二通道包括第二子通道。 基于第二访问控制信息来更新第二子信道可用性指示符。 第二子信道可用性指示符指示第二子信道的预期利用率。 基于第一和第二子信道可用性指示符来确定传输信道。
    • 16. 发明申请
    • IMAGING BASED BARCODE SCANNER ENGINE WITH MULTIPLE ELEMENTS SUPPORTED ON A COMMON PRINTED CIRCUIT BOARD
    • 基于成像的条形码扫描器发动机,支持普通印刷电路板上的多个元件
    • US20140346233A1
    • 2014-11-27
    • US14342544
    • 2011-09-09
    • Yong LiuXi TaoYnjiun Paul Wang
    • Yong LiuXi TaoYnjiun Paul Wang
    • G06K7/10
    • G06K7/10732G06K7/10722G06K7/10831G06K7/10851G06K7/1098H05K7/06
    • An apparatus for use in decoding a bar code symbol may include an image sensor integrated circuit having a plurality of pixels, timing and control circuitry for controlling an image sensor, gain circuitry for controlling gain, and analog to digital conversion circuitry for conversion of an analog signal to a digital signal. The apparatus may also include a printed circuit board for receiving the image sensor integrated circuit. The connection between the image sensor integrated circuit and the printed circuit board characterized by a plurality of conductive adhesive connectors disposed between a plurality of electrode pads and a plurality of contact pads, where the conductive adhesive connectors provide electrical input/output and mechanical connections between the image sensor integrated circuit and the printed circuit board. The apparatus may be operative for processing image signals generated by the image sensor integrated circuit for attempting to decode the bar code symbol.
    • 用于解码条形码符号的装置可以包括具有多个像素的图像传感器集成电路,用于控制图像传感器的定时和控制电路,用于控制增益的增益电路和用于转换模拟信号的模数转换电路 信号到数字信号。 该装置还可以包括用于接收图像传感器集成电路的印刷电路板。 图像传感器集成电路和印刷电路板之间的连接,其特征在于设置在多个电极焊盘和多个接触焊盘之间的多个导电粘合剂连接器,其中导电粘合剂连接器提供电输入/输出和机械连接 图像传感器集成电路和印刷电路板。 该装置可以用于处理由图像传感器集成电路产生的图像信号,用于尝试解码条形码符号。
    • 20. 发明授权
    • Timing recovery method and apparatus for an input/output bus with link redundancy
    • 具有链路冗余的输入/输出总线的定时恢复方法和装置
    • US08774228B2
    • 2014-07-08
    • US13157968
    • 2011-06-10
    • John F. BulzacchelliTimothy O. DicksonDaniel J. FriedmanYong LiuSergey V. Rylov
    • John F. BulzacchelliTimothy O. DicksonDaniel J. FriedmanYong LiuSergey V. Rylov
    • H04J3/06
    • H04L7/10H04L7/0337
    • Methods and apparatus are provided for timing recovery for an input/output bus with link redundancy. A parallel input/output interface receiver includes a plurality of data receivers, each configured to respectively receive input data from a respective one of n+m channels, where n is an integer greater than one and m is an integer greater than or equal to one. The input data is non-calibration data for the n channels and is calibration data for the m channels. The interface receiver further includes a first phase adjustor configured to provide a first clock signal to the plurality of data receivers for sampling of only the non-calibration data at any given time, and a second phase adjustor configured to provide a second clock signal to the plurality of data receivers for sampling of only the calibration data at any given time.
    • 提供了用于具有链路冗余的输入/输出总线的定时恢复的方法和装置。 并行输入/输出接口接收器包括多个数据接收器,每个数据接收器被配置为分别从n + m个通道中的相应一个通道接收输入数据,其中n是大于1的整数,并且m是大于或等于1的整数 。 输入数据是n个通道的非校准数据,是m个通道的校准数据。 接口接收器还包括第一相位调节器,其被配置为向多个数据接收器提供第一时钟信号,用于在任何给定时间仅对非校准数据进行采样,以及第二相位调整器,被配置为向第 多个数据接收器,用于在任何给定时间仅对校准数据进行采样。