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    • 1. 发明申请
    • Calibrating automatic test equipment
    • 校准自动测试设备
    • US20060236157A1
    • 2006-10-19
    • US11095755
    • 2005-03-31
    • Li HuangTimothy DerksenXiaoxi ZhangCharles CrapuchettsStephen Hauptman
    • Li HuangTimothy DerksenXiaoxi ZhangCharles CrapuchettsStephen Hauptman
    • G11B20/20G06K5/04G11B5/00
    • G01R31/3191
    • Calibrating automatic test equipment (ATE) includes determining an offset between a reference timing event and a channel event, where the channel event is associated with a communication channel of the ATE, and adjusting signal transmission over the communication channel based on the offset. Determining the offset may include obtaining a first time at which a reference timing signal is received at a device associated with a reference timing source, obtaining a second time at which the reference timing signal is received at a device associated with the communication channel, obtaining a third time at which a channel signal is received at the device associated with the communication channel, obtaining a fourth time at which the channel signal is received at the device associated with the reference timing source, and calculating the offset using the first time, the second time, the third time, and the fourth time.
    • 校准自动测试设备(ATE)包括确定参考定时事件和信道事件之间的偏移,其中信道事件与ATE的通信信道相关联,并且基于偏移调整通过通信信道的信号传输。 确定偏移可以包括获得在与参考定时源相关联的设备处接收参考定时信号的第一时间,获得在与通信信道相关联的设备处接收参考定时信号的第二时间,获得 在与通信信道相关联的设备处接收信道信号的第三次,获得在与参考定时源相关联的设备处接收信道信号的第四时间,并且使用第一次来计算偏移量,第二时间 时间,第三次,第四次。
    • 2. 发明授权
    • Calibrating automatic test equipment
    • 校准自动测试设备
    • US07957461B2
    • 2011-06-07
    • US11095755
    • 2005-03-31
    • Li HuangTimothy DerksenXiaoxi ZhangCharles Evans CrapuchettesStephen Hauptman
    • Li HuangTimothy DerksenXiaoxi ZhangCharles Evans CrapuchettesStephen Hauptman
    • H04B3/46
    • G01R31/3191
    • Calibrating automatic test equipment (ATE) includes determining an offset between a reference timing event and a channel event, where the channel event is associated with a communication channel of the ATE, and adjusting signal transmission over the communication channel based on the offset. Determining the offset may include obtaining a first time at which a reference timing signal is received at a device associated with a reference timing source, obtaining a second time at which the reference timing signal is received at a device associated with the communication channel, obtaining a third time at which a channel signal is received at the device associated with the communication channel, obtaining a fourth time at which the channel signal is received at the device associated with the reference timing source, and calculating the offset using the first time, the second time, the third time, and the fourth time.
    • 校准自动测试设备(ATE)包括确定参考定时事件和信道事件之间的偏移,其中信道事件与ATE的通信信道相关联,并且基于偏移调整通过通信信道的信号传输。 确定偏移可以包括获得在与参考定时源相关联的设备处接收参考定时信号的第一时间,获得在与通信信道相关联的设备处接收参考定时信号的第二时间,获得 在与通信信道相关联的设备处接收信道信号的第三次,获得在与参考定时源相关联的设备处接收信道信号的第四时间,并且使用第一次来计算偏移量,第二时间 时间,第三次,第四次。
    • 4. 发明申请
    • CALIBRATION DEVICE
    • 校准装置
    • US20080125998A1
    • 2008-05-29
    • US11771389
    • 2007-06-29
    • Li HuangGeorge W. Conner
    • Li HuangGeorge W. Conner
    • G01R35/00G06F19/00
    • G01R31/3191
    • A calibration device is provided for use with automatic test equipment (ATE). The calibration device includes circuitry having a fanout circuit. The compare-side fanout circuit has an input connected to a first channel of the ATE and outputs connected to N (N>1) channels of the ATE, where the N channels do not include the first channel. The ATE propagates an edge on the first channel, and the fanout circuit transmits the edge to the N channels. Optionally, a calibration device for use with automatic test equipment includes a drive-side circuit. The drive-side circuit includes circuitry having multiple inputs connected to N (N>1) channels of the ATE and an output connected to a second channel of the ATE that is not one of the N channels. The ATE propagates an edge on each of the N-channels and the circuitry propagates each edge to the second channel of the ATE.
    • 提供校准装置用于自动测试设备(ATE)。 校准装置包括具有扇出电路的电路。 比较侧扇出电路具有连接到ATE的第一通道的输入和连接到ATE的N(N> 1)个通道的输出,其中N个通道不包括第一通道。 ATE在第一个通道上传播边缘,扇出电路将边缘传输到N个通道。 可选地,与自动测试设备一起使用的校准装置包括驱动侧电路。 驱动侧电路包括具有连接到ATE的N(N> 1)个通道的多个输入的电路,以及连接到不是N个通道中的一个的ATE的第二通道的输出。 ATE在每个N通道上传播边缘,电路将每个边沿传播到ATE的第二个通道。
    • 5. 发明授权
    • Mobile communication device with receiver speaker
    • 带接收扬声器的移动通信设备
    • US08699963B2
    • 2014-04-15
    • US13239485
    • 2011-09-22
    • Chao ChenLi HuangDan Kaufman
    • Chao ChenLi HuangDan Kaufman
    • H04B1/40
    • H04M1/03H04M1/0214H04M1/0235H04M1/6016H04M1/6041H04M1/72558Y02D70/1224Y02D70/142Y02D70/144Y02D70/162Y02D70/23
    • An audio subsystem in a mobile communication device has a speaker. In one implementation, the audio subsystem has a higher-gain power amplifier, a lower-gain power amplifier, and a switching system configured to route signals produced by the lower-gain power amplifier to the speaker while the device is operative in a first mode and configured to route signals produced by the higher-gain power amplifier to the speaker while the device is operative in a second mode. In another implementation, the audio subsystem has a power amplifier coupled to the speaker and a power supply control controlled to provide voltage at a first voltage level to the power amplifier while the device is operative in a first mode and controlled to provide voltage at a second, higher, voltage level to the power amplifier while the device is operative in a second mode.
    • 移动通信设备中的音频子系统具有扬声器。 在一个实现中,音频子系统具有较高增益功率放大器,较低增益功率放大器和配置成将该低增益功率放大器产生的信号路由到扬声器的开关系统,同时器件以第一模式工作 并且被配置为在所述设备在第二模式下操作时将由所述较高增益功率放大器产生的信号路由到所述扬声器。 在另一实施方式中,音频子系统具有耦合到扬声器的功率放大器和被控制为在功率放大器处提供第一电压电平的电源控制器,同时该装置以第一模式工作并被控制以在第二模式下提供电压 当器件在第二模式下工作时,对功率放大器的电压电平更高。
    • 10. 发明申请
    • Method for Implementing Distribution of Link State Information in an Optical Network
    • 实现光网络链路状态信息分配的方法
    • US20080044176A1
    • 2008-02-21
    • US10593934
    • 2006-02-21
    • Min ZhaoJunjie FengLi Huang
    • Min ZhaoJunjie FengLi Huang
    • H04J14/00
    • H04J3/14H04L45/00H04L45/125H04L45/62
    • A method for implementing distribution of link state information in an optical network includes: determining information of each link protection attribute section included in a Traffic Engineering (TE) link; carrying the information of each link protection attribute section in a customized TLV, respectively; distributing the TLV in the optical network via Traffic Engineering Link State Advertisement (TE LSA). With this invention, all the link state information such as multiple kinds of protection types included in one TE link can be carried in the customized TLV to distribute. Therefore, in the implementation of this invention, one TE link corresponding to one optical fiber can be configured with multiple kinds of protection types.
    • 一种用于实现光网络中链路状态信息分配的方法包括:确定包括在流量工程(TE)链路中的每个链路保护属性部分的信息; 分别在定制的TLV中携带每个链路保护属性部分的信息; 通过流量工程链路状态广播(TE LSA)在光网络中分配TLV。 利用本发明,可以在定制的TLV中携带包括在一个TE链路中的多种保护类型的所有链路状态信息以进行分发。 因此,在本发明的实现中,对应于一根光纤的一个TE链路可以配置有多种类型的保护类型。