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    • 1. 发明申请
    • Home Phoneline Network Alliance Responder for IPTV Installations
    • 家庭电话网络联盟IPTV安装响应者
    • US20090161550A1
    • 2009-06-25
    • US11963137
    • 2007-12-21
    • Jason SavardPaul WhiteheadNathan Edwards
    • Jason SavardPaul WhiteheadNathan Edwards
    • H04L12/26
    • H04L12/2838H04L43/50H04L2012/2845
    • A device for testing a home phoneline network alliance performance of a local network is disclosed. The device includes a first network interface, a second network interface, a test module, and a processor. The first network interface is adapted to connect with the local network through a first type of cable. The second network interface is adapted to connect with the local network through a second type of cable. The test module is connected to the first network interface and to the second network interface, the test module is adapted to receive a test signal transmitted over a cable in the local network. The processor is connected to the test module and is adapted to execute a plurality of program instructions to determine a signal quality for the test signal received over the cable and to output a performance result signal for the cable in the local network based on the signal quality.
    • 公开了一种用于测试本地网络的家庭电话网络联盟性能的设备。 该设备包括第一网络接口,第二网络接口,测试模块和处理器。 第一个网络接口适用于通过第一种类型的电缆与本地网络连接。 第二网络接口适于通过第二类电缆与本地网络连接。 测试模块连接到第一网络接口和第二网络接口,测试模块适于接收通过本地网络中的电缆传输的测试信号。 处理器连接到测试模块,并且适于执行多个程序指令以确定通过电缆接收的测试信号的信号质量,并且基于信号质量输出本地网络中的电缆的性能结果信号 。
    • 2. 发明授权
    • Home phoneline network alliance responder for IPTV installations
    • 家庭电话网络联盟响应者为IPTV安装
    • US07826383B2
    • 2010-11-02
    • US11963137
    • 2007-12-21
    • Jason SavardPaul WhiteheadNathan Edwards
    • Jason SavardPaul WhiteheadNathan Edwards
    • H04J1/16
    • H04L12/2838H04L43/50H04L2012/2845
    • A device for testing a home phoneline network alliance performance of a local network is disclosed. The device includes a first network interface, a second network interface, a test module, and a processor. The first network interface is adapted to connect with the local network through a first type of cable. The second network interface is adapted to connect with the local network through a second type of cable. The test module is connected to the first network interface and to the second network interface, the test module is adapted to receive a test signal transmitted over a cable in the local network. The processor is connected to the test module and is adapted to execute a plurality of program instructions to determine a signal quality for the test signal received over the cable and to output a performance result signal for the cable in the local network based on the signal quality.
    • 公开了一种用于测试本地网络的家庭电话网络联盟性能的设备。 该设备包括第一网络接口,第二网络接口,测试模块和处理器。 第一个网络接口适用于通过第一种类型的电缆与本地网络连接。 第二网络接口适于通过第二类电缆与本地网络连接。 测试模块连接到第一网络接口和第二网络接口,测试模块适于接收通过本地网络中的电缆传输的测试信号。 处理器连接到测试模块,并且适于执行多个程序指令以确定通过电缆接收的测试信号的信号质量,并且基于信号质量输出本地网络中的电缆的性能结果信号 。
    • 4. 发明申请
    • WATER PURIFICATION APPARATUS
    • 水净化装置
    • US20110197660A1
    • 2011-08-18
    • US13123882
    • 2009-10-14
    • Lee UnderwoodPaul Whitehead
    • Lee UnderwoodPaul Whitehead
    • G01N33/487G01R27/28G01J3/00
    • G01N33/1846Y02A20/206
    • A method of determining the TOC of a purified water stream is disclosed comprising at least the steps of: passing a supply water stream through a water purification apparatus including an oxidiser to provide a purified water stream, and dispensing at least a portion of the purified water stream; stopping the dispense of the purified water stream and recirculating the purified water stream as a recirculating water stream through at least a portion of the water purification apparatus including the oxidiser to provide a re-oxidised water stream; and measuring the conductivity value of the re-oxidised water stream to determine the TOC of the purified water stream. In this way, a determination of the TOC of the purified water stream of can be provided without requiring a dedicated TOC monitor at the point of dispense of the purified water stream.
    • 公开了一种确定净化水流的TOC的方法,其至少包括以下步骤:使供水流通过包括氧化剂的水净化装置,以提供净化水流,并且分配至少一部分净化水 流; 停止净化水流的分配并且将净化水流作为再循环水流再循环通过包括氧化剂的水净化装置的至少一部分以提供再氧化水流; 并测量再氧化水流的电导率值以确定净化水流的TOC。 以这种方式,可以提供净化水流的TOC的确定,而不需要在净化水流的分配点处的专用TOC监测器。
    • 6. 发明授权
    • Apparatus and method of recirculating electrodeionization
    • 再循环电去离子的装置和方法
    • US06482304B1
    • 2002-11-19
    • US09720350
    • 2001-04-05
    • Nigel EmeryRoger WoodwardPaul Whitehead
    • Nigel EmeryRoger WoodwardPaul Whitehead
    • B01D6148
    • C02F1/4695B01D61/48B01J47/08C02F1/42C02F2201/46185
    • An electrodeionisation apparatus comprising a first deionising flow path and an integral second deionising flow path is described. The outflow from the first path is held in a holding tank prior to passage through the second flow path, and the outflow from the second path is available for use. Optionally, the second path outflow is partly or fully returned to the holding tank. Me recirculation of the already purified water in the holding tank maintains the water in the holding tank at a higher standard than otherwise “standing” purified water. The water in the holding tank could be separately made available for use. The apparatus requires the use of only a single pair of electrodes and hence one power supply. Moreover, the ion exchange materials in the first deionising flow path can be regenerated when water is not flowing through them such that they have a greater capacity for deionisation when required.
    • 描述了包括第一去离子流动路径和整体的第二去离子流动路径的电去电离装置。 来自第一路径的流出物在通过第二流动路径之前被保持在保持箱中,并且来自第二路径的流出可用于使用。 可选地,第二路径流出部分或完全返回到储存罐。 我在储罐中已经净化的水的再循环将储水罐中的水保持在比其他“静置”净化水更高的标准。 储罐中的水可以单独使用。 该装置仅需要使用一对电极,因此仅使用一个电源。 此外,当水不通过它们时,第一去离子流路中的离子交换材料可以再生,使得当需要时它们具有更大的去离子能力。
    • 8. 发明授权
    • Method of TOC monitoring
    • TOC监测方法
    • US08650935B2
    • 2014-02-18
    • US13123882
    • 2009-10-14
    • Lee UnderwoodPaul Whitehead
    • Lee UnderwoodPaul Whitehead
    • G01N27/08
    • G01N33/1846Y02A20/206
    • A method of determining the TOC of a purified water stream is disclosed comprising at least the steps of: passing a supply water stream through a water purification apparatus including an oxidizer to provide a purified water stream, and dispensing at least a portion of the purified water stream; stopping the dispense of the purified water stream and recirculating the purified water stream as a recirculating water stream through at least a portion of the water purification apparatus including the oxidizer to provide a re-oxidized water stream; and measuring the conductivity value of the re-oxidized water stream to determine the TOC of the purified water stream. In this way, a determination of the TOC of the purified water stream of can be provided without requiring a dedicated TOC monitor at the point of dispense of the purified water stream.
    • 公开了确定净化水流的TOC的方法,该方法至少包括以下步骤:使供水流通过包括氧化剂的水净化装置,以提供净化水流,并且分配至少一部分净化水 流; 停止净化水流的分配并且将净化水流作为再循环水流再循环通过包括氧化剂的水净化装置的至少一部分以提供再氧化水流; 并测量再氧化水流的电导率值,以确定净化水流的TOC。 以这种方式,可以提供净化水流的TOC的确定,而不需要在净化水流的分配点处的专用TOC监测器。