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    • 21. 发明申请
    • ELECTRICAL DEVICE
    • 电气设备
    • US20150333567A1
    • 2015-11-19
    • US14761158
    • 2014-01-17
    • TECHNETIX B.V.
    • Gert BronkhorstJan Ariesen
    • H02J9/06H03F3/19
    • H02J9/06H02J11/00H03F3/19H03F2200/451H04N7/102
    • There is provided an electrical device (10) comprising electrical elements communicating with an integral power supply (12), wherein a power connection means (22) associated with the electrical elements (13, 13′ and 14) is adapted to receive a temporary external source of electrical power such as a battery (24) to allow removal and replacement of the integral power supply without interrupting power to the electrical elements. The integral power supply (12) is adapted to receive an enduring external power source, with a second switch (32) provided to disable connection of the integral power supply (12) to the enduring power source whilst the battery (24) is connected.
    • 提供了一种电气设备(10),其包括与整体电源(12)通信的电气元件,其中与电气元件(13,13'和14)相关联的电力连接装置(22)适于接收暂时的外部 诸如电池(24)的电力源,以允许整体电源的移除和更换,而不中断对电气元件的电力。 集成电源(12)适于接收持久的外部电源,其中设置有第二开关(32),以在电池(24)连接时禁止整体电源(12)与持久电源的连接。
    • 23. 发明申请
    • SYSTEM FOR INTERCONNECTING DEVICES FOR CREATING AUTOMATION SYSTEMS
    • 用于互连自动化系统的设备的系统
    • US20140376386A1
    • 2014-12-25
    • US14376350
    • 2013-02-05
    • KFX CIRCUITS AND SYSTEMS PRIVATE LIMITED
    • Nishil Thomas Koshy
    • H04L12/28H04L12/26H04L29/06
    • H04B3/30H04B3/00H04B3/50H04L12/2836H04L25/0278H04L25/028H04L25/0286H04L25/0292H04L43/0817H04L43/12H04L69/08H04M11/066H04N7/102
    • The various embodiments provide a system for interconnecting a plurality of devices for budding automation systems. The system comprising on or more sensor units to transmit data along with a sensor device address an a network, one or more actuator units to receive the transmitted data, a monitoring unit to receive, monitor and record the transmitted data, a control unit to monitor functioning of devices on the network and transmit data to the actuators, a link unit to extend range of the network by retransmitting the signals received from one cable to other cables and an interface unit to convert signals to and from the network into a format of another communication protocol. The network comprises a plurality of devices connected to a single cable to communicate with other devices on the network by generating charge disturbances and detecting the charge disturbances propagated over the cable.
    • 各种实施例提供用于互连用于发芽自动化系统的多个设备的系统。 该系统包括用于传送数据的传感器单元以及传感器设备的地址,网络,一个或多个致动器单元以接收传送的数据,用于接收,监视和记录所发送的数据的监视单元,监视器 网络上的设备的功能和向致动器发送数据的链路单元,链路单元,通过将从一个电缆接收的信号重新发送到其他电缆来扩展网络的范围,以及接口单元,用于将信号转换成网络和从网络转换成另一个格式 通讯协议。 网络包括连接到单个电缆的多个设备,以通过产生电荷干扰并检测通过电缆传播的电荷干扰来与网络上的其他设备通信。
    • 24. 发明申请
    • VARIABLE IMPEDANCE SCHEME FOR PROVIDING A WIRED COMMUNICATION
    • 用于提供有线通信的可变阻抗方案
    • US20140362981A1
    • 2014-12-11
    • US14376363
    • 2012-05-31
    • Nishil Thomas Koshy
    • Nishil Thomas Koshy
    • H04M11/06
    • H04B3/30H04B3/00H04B3/50H04L12/2836H04L25/0278H04L25/028H04L25/0286H04L25/0292H04L43/0817H04L43/12H04L69/08H04M11/066H04N7/102
    • The various embodiments herein provide a system and method to provide a high speed data transmission over a wired network. The system comprising a transmitting end, a first electrical circuitry provided at the transmitting end to generate an electrical disturbance according to an input signal received from a source network, a receiving end, a second electrical circuitry provided at the receiving end to detect a signal disturbance, to amplify the signal and to regenerate the transmitted signal data from the received signal and a wired network interconnecting the transmitting end and the receiving end. The generated disturbance is transmitted over the wired network using a single conductor as positive spikes, negative spikes or as signals closely resembling the input signal. The receiving end employs a line disturbance detection scheme without: necessarily requiring a common ground connection.
    • 本文的各种实施例提供了通过有线网络提供高速数据传输的系统和方法。 该系统包括发送端,设置在发送端的根据从源网络接收的输入信号产生电力干扰的第一电路,接收端,设置在接收端的第二电路以检测信号干扰 放大信号并从接收到的信号再生发送的信号数据,以及将发送端和接收端互连的有线网络。 所产生的干扰通过有线网络使用单个导体作为正尖峰,负尖峰或类似于输入信号的信号传输。 接收端采用线路干扰检测方案,不需要公共接地连接。
    • 27. 发明申请
    • Low Distortion Signal Amplifiers Having Extended Upstream Bandwidths and Related Methods
    • 具有扩展上行带宽和相关方法的低失真信号放大器
    • US20130347049A1
    • 2013-12-26
    • US13531613
    • 2012-06-25
    • Robert Ryan Riggsby
    • Robert Ryan Riggsby
    • H04N21/61
    • H04B3/38H04N7/102
    • Radio frequency (“RF”) signal amplifiers include an RF input, at least one RF output and communications paths therebetween. The communications paths include a downstream path that is configured to pass signals in a downstream frequency band, a first upstream path that is configured to pass signals in a first upstream frequency band that encompasses frequencies that are lower than the frequencies included within the downstream frequency band and a second upstream path that is configured to pass signals in a second upstream frequency band that encompasses frequencies that are between the frequencies included within the downstream frequency band and the frequencies included within the first upstream frequency band. These RF signal amplifiers further include a downstream power amplifier on the downstream path, a first upstream power amplifier on the first upstream path and a second upstream power amplifier on the second upstream path.
    • 射频(“RF”)信号放大器包括RF输入,至少一个RF输出和它们之间的通信路径。 通信路径包括被配置为在下游频带中传递信号的下游路径,第一上游路径被配置为在第一上行频带中传递信号,所述第一上行频带包含低于包括在下游频带内的频率的频率 以及第二上游路径,其被配置为传递包含在包括在所述下行频带内的频率与包括在所述第一上行频带内的频率之间的频率的第二上行频带中的信号。 这些RF信号放大器还包括下游路径上的下行功率放大器,第一上游路径上的第一上游功率放大器和第二上游路径上的第二上游功率放大器。