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    • 13. 发明授权
    • DSL automatic protocol detection system
    • DSL自动协议检测系统
    • US07483419B2
    • 2009-01-27
    • US10877851
    • 2004-06-25
    • William R. BullmanScott L. McCurdy
    • William R. BullmanScott L. McCurdy
    • H04L12/66H04L12/28H04M1/24
    • H04L12/2883H04L12/2856
    • A CPE application automatically detects an intermediate-layer protocol used at a DSL-connection head end and configures the DSL modem driver for that protocol. The application sets the driver to a possible driver protocol and attempts to connect to a head-end server. If a response is received from the head end, then the application reads the headers on the responsive message to determine whether the protocol at the head end is consistent with the protocol that the DSL modem is set to. If so, then the settings are loaded into the driver. If no response is received from the head end, then the application initiates a series of commands to elicit a response from the head end. If the protocol is not consistent or no response is elicited, then the DSL modem is set to another protocol, and the application again attempts to connect to the server at the head end.
    • CPE应用程序自动检测在DSL连接头端使用的中间层协议,并为该协议配置DSL调制解调器驱动程序。 应用程序将驱动程序设置为可能的驱动程序协议,并尝试连接到头端服务器。 如果从头端接收到响应,则应用程序读取响应消息上的报头,以确定头端协议是否与DSL调制解调器设置的协议一致。 如果是这样,那么设置将被加载到驱动程序中。 如果从头端没有收到响应,则应用程序启动一系列命令以从头端引出响应。 如果协议不一致或没有引起响应,则将DSL调制解调器设置为另一个协议,并且应用程序再次尝试在头端连接到服务器。
    • 14. 发明授权
    • Adaptive power management in portable entertainment device
    • 便携式娱乐设备中的自适应电源管理
    • US07313711B2
    • 2007-12-25
    • US11002656
    • 2004-12-03
    • William R. Bullman
    • William R. Bullman
    • G06F1/00G06F1/26G06F1/32
    • G06F1/324G06F1/3203G06F1/3243Y02D10/126Y02D10/152Y02D50/20
    • Battery life in portable entertainment devices that play fixed-length music or video files (e.g., MP3 music files) is extended by adaptively adjusting the speed of a processor in the device such that only a minimum number of MIPS are performed to playback the music or video files. Slowing the processor clock provides significant savings in power usage. A use profile containing required MIPS for each song may be stored on the device, or use profile information may be inserted into the data stream or embedded within the data file. Power savings occurs on every subsequent replay of the same entertainment data file or data stream by adaptively adjusting the processor clock to the desired speed as determined by the use profile information (plus design margin based on the particular playback device).
    • 通过自适应地调整设备中的处理器的速度来扩展播放固定长度音乐或视频文件(例如,MP3音乐文件)的便携式娱乐设备中的电池寿命,使得仅执行最少数量的MIPS以播放音乐或 视频文件 减少处理器时钟可显着节省电力使用。 可以在设备上存储包含每个歌曲所需MIPS的使用配置文件,或者使用配置文件信息可以被插入到数据流中或嵌入到数据文件中。 通过使用配置文件信息(加上基于特定播放设备的设计余量)确定的自适应地将处理器时钟调整到期望的速度,在相同娱乐数据文件或数据流的每个后续重放上发生功率节省。
    • 15. 发明授权
    • Link integrity duality for network devices in cold power state
    • 网络设备在冷电状态下的链路完整性二元性
    • US06981164B2
    • 2005-12-27
    • US09760752
    • 2001-01-17
    • William R. BullmanMatthew HenryRyan S. HolmqvistSteven E. Strauss
    • William R. BullmanMatthew HenryRyan S. HolmqvistSteven E. Strauss
    • G06F1/32G06F1/26H04L12/10H04L12/28G06F1/28G06F1/30
    • H04L12/10
    • A data-based software type link integrity module is implemented separately in hardware (e.g., using physical gates, using a microcontroller, etc.) and separated from core CPU functionality in a network device, such that the link integrity module may remain powered in a cold power mode (e.g., when core functionality is powered down). The separately powered data-based link integrity module is powered by an auxiliary backup power source. Thus, when in a power down mode (e.g., when in an ACPI defined D3 type cold state) a minimal power source may be used to power the separate link integrity module separate from the power source to the core network device functionality. The separately powered data-based link integrity module may be redundant to a software driver type data-based link integrity module implemented in core memory and enabled or disabled as desired. Alternatively, the separately powered data-based link integrity module may be in lei of the otherwise conventional software driver implemented in core memory and permanently enabled.
    • 基于数据的软件类型链路完整性模块在硬件中单独实现(例如,使用物理门,使用微控制器等)并与网络设备中的核心CPU功能分离,使得链路完整性模块可以保持为 冷电源模式(例如,当核心功能关闭时)。 单独供电的基于数据的链路完整性模块由辅助备用电源供电。 因此,当处于断电模式时(例如,当处于ACPI定义的D3型冷态时),可以使用最小功率源来将分离的链路完整性模块与电源分离到核心网络设备功能。 单独供电的基于数据的链路完整性模块对于在核心存储器中实现并且根据需要启用或禁用的基于软件驱动器类型的基于数据的链路完整性模块可能是冗余的。 或者,单独供电的基于数据的链路完整性模块可以是在核心存储器中实现并且永久启用的另外常规的软件驱动器。
    • 16. 发明授权
    • DSL automatic protocol detection system
    • DSL自动协议检测系统
    • US06778505B1
    • 2004-08-17
    • US09599682
    • 2000-06-22
    • William R. BullmanScott L. McCurdy
    • William R. BullmanScott L. McCurdy
    • H04L1226
    • H04L12/2883H04L12/2856
    • An application implemented at customer premises equipment automatically detects the network-layer protocol used at the head end of a DSL connection and configures the DSL modem driver for that protocol. The application sets the DSL modem driver to one of the possible protocols for the type (e.g., WAN or LAN) of driver being used and attempts to connect to a server at the head end. If a response is received from the head end, then the application reads the headers on the responsive message to determine whether the protocol at the head end is consistent with the protocol that the DSL modem is set to. If the protocols are consistent, then the settings are loaded onto the driver. If no response is received from the head end when the application attempts to connect to the server, then the application initiates a series of commands for the purpose of eliciting a response from the head end. If the protocol is not consistent or no response is elicited, then the DSL modem is set to another protocol, and the application again attempts to connect to the server at the head end. These steps are repeated until either the correct head-end network-layer protocol is found, or the possible protocols are exhausted.
    • 在客户端设备上实现的应用程序自动检测在DSL连接头端使用的网络层协议,并为该协议配置DSL调制解调器驱动程序。 应用程序将DSL调制解调器驱动程序设置为正在使用的驱动程序类型(例如,WAN或LAN)的可能协议之一,并尝试连接到头端的服务器。 如果从头端接收到响应,则应用程序读取响应消息上的报头,以确定头端协议是否与DSL调制解调器设置的协议一致。 如果协议一致,那么设置将被加载到驱动程序中。 如果当应用程序尝试连接到服务器时,从头端没有收到响应,则应用程序启动一系列命令,以从头端引出响应。 如果协议不一致或没有引起响应,则将DSL调制解调器设置为另一个协议,并且应用程序再次尝试在头端连接到服务器。 重复这些步骤,直到找到正确的前端网络层协议,或者可能的协议被耗尽。