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    • 1. 发明申请
    • Standby mode for use in a device having a multiple channel physical layer
    • 待机模式用于具有多通道物理层的设备
    • US20050030808A1
    • 2005-02-10
    • US10882389
    • 2004-07-02
    • Kevin BrownRichard ThousandJohn Creigh
    • Kevin BrownRichard ThousandJohn Creigh
    • G11C7/00H04L12/12H04L12/40H04L12/64
    • H04L12/12H04L12/40052H04L12/40097Y02D50/20Y02D50/40Y02D50/42
    • The present invention provides a way of placing a physical layer device into a standby mode. After a link is established between multiple devices, a determination is made whether the device has data to transmit or whether a standby request was received from a link partner. If a standby request was received or the device has no data to transmit, standby mode is entered. In standby mode, unneeded circuitry is powered down. A transmitter in a channel and a receive path in a separate channel remain powered. While operating in standby mode, the PHY layer continuously transmits a standby code on the one or more channels that are not powered down. Standby mode is discontinued when a transceiver has data to transmit or when energy is detected on the powered down channels. Standby mode is also discontinued when no standby code is received, indicating a disconnect between devices.
    • 本发明提供了将物理层设备置于待机模式的方式。 在多个设备之间建立链路之后,确定设备是否具有要发送的数据,还是从链路伙伴接收到待机请求。 如果接收到待机请求或设备没有要发送的数据,则进入待机模式。 在待机模式下,不需要的电路掉电。 信道中的发射机和单独信道中的接收路径保持供电。 在待机模式下工作时,PHY层在一个或多个未断电的通道上连续发送待机代码。 当收发器具有要传输的数据或在掉电通道上检测到能量时,待机模式将停止。 当没有接收到待机代码时,待机模式也被停止,指示设备之间断开连接。
    • 3. 发明申请
    • Apparatus and method for implementing a Suspend mode in an Ethernet-based communications system
    • 在基于以太网的通信系统中实现挂起模式的装置和方法
    • US20050105545A1
    • 2005-05-19
    • US10986666
    • 2004-11-12
    • Richard ThousandKevin ChanKevin Brown
    • Richard ThousandKevin ChanKevin Brown
    • H04L12/10H04L12/413H04B7/212H04L12/66
    • H04L12/10H04L12/40078
    • The present invention describes a communications system having a first link partner and a second link partner that are connected by a communications link having at least four pairs of conductors. According to IEEE Standard 802.3 (e.g. Ethernet) for 1000Base-T, a data link is maintained (in a period absent data transmission) by sending idle signals over four pairs of conductors of the cable to maintain a logical connection. This idle signal scheme is replaced with an alternate idle signaling scheme that uses only two pairs of conductors to maintain a logical connection and therefore can operate with using lower power. The other two pairs of conductors of the four pairs of conductors are unused to maintain a logical connection absent data transfer, and therefore can be used to implement a Suspend Mode of operation. During Suspend Mode, the physical layer of each link partner powers down unnecessary circuitry so as to operate in a low power environment. To initiate the Suspend Mode, idle signals are sent on one of the un-used pairs of the conductors mentioned above. To exit Suspend mode, idle signals are sent on respective conductors simultaneously.
    • 本发明描述了具有通过具有至少四对导体的通信链路连接的第一链路伙伴和第二链路伙伴的通信系统。 根据用于1000Base-T的IEEE标准802.3(例如以太网),通过在电缆的四对导体上发送空闲信号来维持数据链路(在没有数据传输的时段内)以维持逻辑连接。 该空闲信号方案被替换为仅使用两对导线来维持逻辑连接的替代空闲信令方案,因此可以使用较低的功率来操作。 四对导体的另外两对导体未被使用以维持没有数据传输的逻辑连接,因此可用于实现暂停工作模式。 在挂起模式期间,每个链路伙伴的物理层会关闭不必要的电路,以便在低功耗环境中工作。 要启动挂起模式,空闲信号将在上述未使用的一对导线上发送。 要退出挂起模式,空闲信号将同时发送到相应的导体上。
    • 8. 发明授权
    • Sonar rendering systems and associated methods
    • 声纳渲染系统及相关方法
    • US09182486B2
    • 2015-11-10
    • US13313574
    • 2011-12-07
    • Kevin BrownAaron Coleman
    • Kevin BrownAaron Coleman
    • G01S15/00G01S15/89G01S7/62G01S15/02G01S15/50
    • G01S15/8902G01S7/6281G01S7/629G01S15/025G01S15/50
    • Sonar rendering systems and methods are described herein. One example is an apparatus that includes a transducer element, position sensing circuitry, processing circuitry, and a display device. The processing circuitry may be configured to receive raw sonar data and positioning data, convert the raw sonar data into range cell data based at least on amplitudes of the return echoes, make a location-based association between the raw sonar data and the positioning data, plot the range cell data based on respective positions derived from the positioning data and rotate the range cell data based on a direction of movement of the watercraft to generate adjusted range cell data. The processing circuitry may be further configured to convert the adjusted range cell data into sonar image data, and cause the display device to render the sonar image data with a presentation of a geographic map.
    • 本文描述了声纳渲染系统和方法。 一个示例是包括换能器元件,位置感测电路,处理电路和显示装置的装置。 处理电路可以被配置为接收原始声纳数据和定位数据,至少基于返回回波的幅度将原始声纳数据转换成范围单元数据,在原始声纳数据和定位数据之间进行基于位置的关联, 基于从定位数据导出的相应位置绘制范围单元数据,并且基于船舶的运动方向旋转范围单元数据以生成调整范围单元数据。 处理电路还可以被配置为将调整的范围单元数据转换成声纳图像数据,并且使得显示设备用地图的呈现来呈现声纳图像数据。