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    • 61. 发明授权
    • Communication sheet structure
    • 通讯单结构
    • US08570240B2
    • 2013-10-29
    • US12996839
    • 2008-06-27
    • Akira TanakaMachiko OouchidaHiroyuki Mori
    • Akira TanakaMachiko OouchidaHiroyuki Mori
    • H01Q1/36
    • H04B13/00
    • A communication sheet structure for transmitting electromagnetic waves, and thereby performing communication, is characterized in that the communication sheet structure includes a planar base material with a relative dielectric constant at a frequency of from 800 MHz to 10 GHz of from 1.0 to 15.0, and one side of the base material includes conductor A existing portion and non-existing portion, and the other side of the base material includes a conductor B existing over 90% or more thereof. The communication sheet structure enables communication in two dimensions, and the communication sheet structure is extremely excellent in communication performances.
    • 用于传送电磁波,从而进行通信的通信片结构的特征在于,通信片结构包括平面基底材料,其相对介电常数在800MHz至10GHz的频率范围为1.0至15.0,一个 基体材料的一侧包括导体A存在部分和不存在部分,并且基材的另一侧包括存在于其中90%以上的导体B. 通信片结构使得能够在二维方面进行通信,并且通信片结构在通信性能方面非常优异。
    • 63. 发明申请
    • VIBRATION MEDIATED NETWORKS FOR PHOTOVOLTAIC ARRAYS
    • 用于光伏阵列的振动介质网络
    • US20110132424A1
    • 2011-06-09
    • US12634515
    • 2009-12-09
    • Selim Shlomo Rakib
    • Selim Shlomo Rakib
    • H01L31/042
    • H04B13/00H02J3/385H02S50/00H04B11/00Y02D70/22Y02D70/48Y02E10/58
    • A system and method to optimize the overall power output of a photovoltaic solar array. The solar panels are connected to software adjustable power optimizing devices, which in turn are connected to a mesh network with individual router devices. The individual router devices will send and receive data packets by creating or detecting vibrations in a solid vibration conducting media (such as the solar power wiring) that connects the individual photovoltaic solar panels. Often at least one centralized control device is used to periodically request sensor data packets from the individual router devices and solar panels. The centralized control device will typically compute the proper adjustments for the individual adjustable power optimizing devices that will optimize the overall power output from the photovoltaic solar array. The control device will then send adjustment data packets back to the individual router devices through the mesh network, thus optimizing overall power output.
    • 一种用于优化光伏太阳能阵列的总功率输出的系统和方法。 太阳能电池板连接到软件可调节功率优化设备,而这些设备又连接到具有单独路由器设备的网状网络。 单个路由器设备将通过连接各个光伏太阳能电池板的固体振动传导介质(例如太阳能电力布线)中的振动来产生或检测振动来发送和接收数据分组。 通常使用至少一个集中控制装置来周期性地请求来自各个路由器装置和太阳能电池板的传感器数据包。 集中式控制装置通常将为各个可调节功率优化装置计算出适当的调整,这些调整功率优化装置将优化来自光伏太阳能阵列的总功率输出。 然后,控制设备将通过网状网络将调整数据包发送回各个路由器设备,从而优化总体功率输出。
    • 66. 发明授权
    • Data communication system
    • 数据通信系统
    • US07737834B2
    • 2010-06-15
    • US11455890
    • 2006-06-20
    • Shinichi KawaseYouichi OkuboYasuhisa TsujitaSyuji Aoyama
    • Shinichi KawaseYouichi OkuboYasuhisa TsujitaSyuji Aoyama
    • B60Q1/00
    • H04B5/02B60C23/0432B60C23/0433H04B5/0043H04B13/00Y02D70/144Y02D70/166Y02D70/42
    • A data communication system installed in an electric machine includes a transmission terminal and a reception terminal both mounted on the electric machine, a transmission-side opposed conductive member disposed on the transmission terminal, a transmission circuit for applying voltage between the transmission-side conductive member and the conductive body, thereby changing electric field generated on the entire surface of the conductive body, the voltage being changed according to information to be transmitted, a reception-side opposed conductive member provided on the reception terminal, thereby being capable of generating potential difference according to the electric field between the conductive body and the reception-side opposed conductive member, and a reception circuit for receiving the information based on a change in the potential difference between the conductive body and the reception-side opposed conductive member.
    • 安装在电机中的数据通信系统包括安装在电机上的发送端子和接收端子,设置在发送端子上的发送侧相对的导电部件,用于在发送侧导电部件之间施加电压的发送电路 导电体,从而改变在导电体的整个表面上产生的电场,根据要发送的信息改变电压,设置在接收端上的接收侧相对的导电部件,从而能够产生电位差 根据导电体和接收侧相对的导电部件之间的电场,以及接收电路,用于基于导电体与接收侧相对的导电部件之间的电位差的变化来接收信息。
    • 68. 发明授权
    • System and method of data transmission in tension members of a fiber optical system
    • 光纤系统张力构件中数据传输的系统和方法
    • US07460786B2
    • 2008-12-02
    • US11087359
    • 2005-03-23
    • Rodney D. MillerCharles O'Roark
    • Rodney D. MillerCharles O'Roark
    • H04B10/20
    • H04B13/00G09G5/003G09G2370/04G09G2370/045G09G2370/22H04B10/25
    • A system and method transmits graphic data received at varying frequencies at a fixed data rate. The frequency dependent data and associated data clock signal are received and the frequency dependent data is converted to frequency independent data. A ratio of a number of data clock cycles to a number of reference clock cycles is determined and transmitted. The frequency independent data and header data are transmitted, at a fixed rate, to a receiver, the fixed rate being a frequency greater than the frequency of the associated data clock signal. The received the frequency independent data is converted to frequency dependent data based upon the received determined ratio. The communication channel may include an optical fiber and a tension member wherein control data is transmitted along the tension member and graphic data is transmitted along the optical fiber.
    • 系统和方法以固定数据速率发送以变化的频率接收的图形数据。 接收与频率相关的数据和相关数据时钟信号,并将频率相关数据转换为频率无关数据。 数据时钟周期数与多个参考时钟周期的比率被确定并传输。 频率无关数据和标题数据以固定速率传输到接收机,固定速率是大于相关数据时钟信号频率的频率。 接收的频率无关数据根据接收到的确定的比率被转换为频率相关数据。 通信信道可以包括光纤和张力构件,其中控制数据沿张力构件传输,并且图形数据沿着光纤传输。
    • 69. 发明申请
    • FLUID-OPERATED COMMUNICATION SYSTEM
    • 流体动力通信系统
    • US20080253541A1
    • 2008-10-16
    • US11774614
    • 2007-07-09
    • Moshe Kugel
    • Moshe Kugel
    • H04M1/60
    • E05B51/02E05B41/00H04B13/00Y10T70/8027
    • A communication system including a fluid-operated calling device mounted in a first location in a building, and a fluid-operated indicator mounted in a second location in a building and in fluid communication with the fluid-operated calling device, wherein actuation of the fluid-operated calling device causes the fluid-operated indicator to provide an indication that the fluid-operated calling device has been actuated. A fluid-operated lock may be mounted near the fluid-operated calling device and in fluid communication with a fluid-operated actuator, wherein actuation of the fluid-operated actuator causes opening of the fluid-operated lock.
    • 一种通信系统,包括安装在建筑物中的第一位置的流体操作的呼叫装置和安装在建筑物中的第二位置并与流体操作的呼叫装置流体连通的流体操作的指示器,其中驱动流体 操作的呼叫装置使流体操作的指示器提供流体操作的呼叫装置已被致动的指示。 流体操作的锁可以安装在流体操作的呼叫装置附近并且与流体操作的致动器流体连通,其中流体操作的致动器的致动导致流体操作的锁的打开。
    • 70. 发明申请
    • COMMUNICATION DEVICE FOR TWO-DIMENSIONAL DIFFUSIVE SIGNAL TRANSMISSION
    • 用于二维扩散信号传输的通信设备
    • US20070267713A1
    • 2007-11-22
    • US11748005
    • 2007-05-14
    • Tadashi MINAKUCHI
    • Tadashi MINAKUCHI
    • H01L29/00H04J3/08
    • H04B13/00
    • A communication device capable of transmitting a signal by two-dimensional diffusive signal transmission technology includes: a signal layer in which the signal is transmitted; a plurality of communication chips which are connected to the signal layer to transmit the signal by the two-dimensional diffusive signal transmission technology; a power supply layer which supplies electric power to each of the communication chips; a ground layer which is electrically connected to each of the communication chips as ground for the electric power; and an attenuation layer which is placed between the signal layer and the power supply layer, attenuates electric current that can flow between the signal layer and the power supply layer, and pulls up electric potential of the signal layer toward that of the power supply layer.
    • 能够通过二维扩散信号传输技术发送信号的通信装置包括:发送信号的信号层; 多个通信芯片,其连接到信号层,以通过二维扩散信号传输技术传输信号; 电源层,其向每个通信芯片提供电力; 电连接到每个通信芯片作为电力接地的接地层; 以及放置在信号层与电源层之间的衰减层,衰减能够在信号层和电源层之间流动的电流,并将信号层的电位拉向电源层的电位。