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    • 5. 发明授权
    • Methods and circuits for common mode stability and bandwidth broadening in transistor amplifiers
    • 晶体管放大器共模稳定性和带宽拓宽的方法和电路
    • US08593221B1
    • 2013-11-26
    • US13300500
    • 2011-11-18
    • Liping ZhangThomas W. KrawczykAndrew J. BonthronDavid A. Rowe
    • Liping ZhangThomas W. KrawczykAndrew J. BonthronDavid A. Rowe
    • H03F3/45
    • H03F3/45085H03F3/45484H03F2203/45244
    • Examples of circuits and methods are provided for common mode stability and bandwidth broadening. A current generator circuit may include a first and a second transistor. Each of the first and second transistors includes a first, second, and third terminal. The first and second transistors provide a first and a second output current at their corresponding third terminals. A first branch including a first resistor and a first capacitor coupled in series is coupled between the third terminal of the first transistor and the first terminal of the second transistor. A second branch including a second resistor and a second capacitor coupled in series is coupled between the third terminal of the second transistor and the first terminal of the first transistor. The first and the second branches are configured to enable the current generator circuit to provide the first and second currents with improved common mode stability.
    • 提供了电路和方法的示例,用于共模稳定性和带宽拓宽。 电流发生器电路可以包括第一和第二晶体管。 第一和第二晶体管中的每一个包括第一,第二和第三端子。 第一和第二晶体管在其相应的第三端提供第一和第二输出电流。 包括第一电阻器和串联耦合的第一电容器的第一支路耦合在第一晶体管的第三端子和第二晶体管的第一端子之间。 包括串联耦合的第二电阻器和第二电容器的第二支路耦合在第二晶体管的第三端子和第一晶体管的第一端子之间。 第一和第二分支被配置为使得电流发生器电路能够提供改善的共模稳定性的第一和第二电流。
    • 8. 发明申请
    • Automated Communications Device Field Testing, Performance Management, And Resource Allocation
    • 自动通信设备现场测试,性能管理和资源分配
    • US20110151863A1
    • 2011-06-23
    • US12643284
    • 2009-12-21
    • Venson ShawSteven CarlsonLeland YuLiping Zhang
    • Venson ShawSteven CarlsonLeland YuLiping Zhang
    • H04W24/08
    • H04W24/08H04W24/02
    • Field testing, performance monitoring, and resource management are performed via a communications device, automatically and autonomously, without user intervention. Abnormal conditions are automatically detected while the communications device is performing a service and adjustments are automatically made to network resources in order to improve service performance. Upon initiation of a request for service (e.g., IM, MMS, SMS, etc.), the communications device automatically begins to monitor the performance of the service session (e.g., send time, receive time, etc.). During or after the service session, the communications device stores the performance data associated with the performance of the service. The performance data is analyzed in accordance with a subscriber's user profile information, to detect any problems with the service. If problems are detected, necessary adjustments and/or reallocation of resources are made automatically and autonomously, without user intervention.
    • 通过通信设备自动和自主地进行现场测试,性能监控和资源管理,无需用户干预。 在通信设备执行服务时自动检测到异常情况,并自动对网络资源进行调整,以提高服务性能。 在启动服务请求(例如,IM,MMS,SMS等)时,通信设备自动开始监视服务会话的性能(例如,发送时间,接收时间等)。 在服务会话期间或之后,通信设备存储与服务性能相关联的性能数据。 根据用户的用户简档信息分析性能数据,以检测服务的任何问题。 如果检测到问题,则自动和自主地进行必要的调整和/或重新分配资源,无需用户干预。
    • 9. 发明授权
    • Automated communications device field testing, performance management, and resource allocation
    • 自动通信设备现场测试,性能管理和资源分配
    • US09462496B2
    • 2016-10-04
    • US12643284
    • 2009-12-21
    • Venson ShawSteven CarlsonLeland YuLiping Zhang
    • Venson ShawSteven CarlsonLeland YuLiping Zhang
    • H04W72/00H04W24/08H04W24/02
    • H04W24/08H04W24/02
    • Field testing, performance monitoring, and resource management are performed via a communications device, automatically and autonomously, without user intervention. Abnormal conditions are automatically detected while the communications device is performing a service and adjustments are automatically made to network resources in order to improve service performance. Upon initiation of a request for service (e.g., IM, MMS, SMS, etc.), the communications device automatically begins to monitor the performance of the service session (e.g., send time, receive time, etc.). During or after the service session, the communications device stores the performance data associated with the performance of the service. The performance data is analyzed in accordance with a subscriber's user profile information, to detect any problems with the service. If problems are detected, necessary adjustments and/or reallocation of resources are made automatically and autonomously, without user intervention.
    • 通过通信设备自动和自主地进行现场测试,性能监控和资源管理,无需用户干预。 在通信设备执行服务时自动检测到异常情况,并自动对网络资源进行调整,以提高服务性能。 在启动服务请求(例如,IM,MMS,SMS等)时,通信设备自动开始监视服务会话的性能(例如,发送时间,接收时间等)。 在服务会话期间或之后,通信设备存储与服务性能相关联的性能数据。 根据用户的用户简档信息分析性能数据,以检测服务的任何问题。 如果检测到问题,则自动和自主地进行必要的调整和/或重新分配资源,无需用户干预。