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    • 4. 发明授权
    • Radio frequency circuit
    • 射频电路
    • US09135940B2
    • 2015-09-15
    • US13441296
    • 2012-04-06
    • Xiao-Dong WangHang DongYa-Nan ChenJian-Yan Feng
    • Xiao-Dong WangHang DongYa-Nan ChenJian-Yan Feng
    • H02G5/06G11B7/24038G11B7/2492
    • G11B7/24038G11B7/2492
    • A radio frequency (RF) circuit includes a first microchip for transmitting RF signal, a second microchip, two resistors and at least two signal lines. Each signal line has opposite first and second ends, and each first end of each signal line is connected to the first microchip and each second end of each signal line is connected to the second microchip. Each signal line defines first and second gaps, the first gaps are adjacent to the first microchip and the second gaps are adjacent to the second microchip. The two resistors are selectively located at the gaps of any one signal line, whereby the first microchip and the second microchip are connected to each other through the signal line and the resistors to form a connection path.
    • 射频(RF)电路包括用于发送RF信号的第一微芯片,第二微芯片,两个电阻器和至少两个信号线。 每个信号线具有相对的第一和第二端,并且每个信号线的每个第一端连接到第一微芯片,并且每条信号线的每个第二端连接到第二微芯片。 每个信号线限定第一和第二间隙,第一间隙与第一微芯片相邻,第二间隙与第二微芯片相邻。 两个电阻器选择性地位于任何一个信号线的间隙处,由此第一微芯片和第二微芯片通过信号线和电阻器彼此连接以形成连接路径。
    • 5. 发明授权
    • Communication device and communication method employing the same
    • 通信装置及采用该通信装置的通信方法
    • US08543067B2
    • 2013-09-24
    • US12694411
    • 2010-01-27
    • Jian-Yan Feng
    • Jian-Yan Feng
    • H04B1/00
    • H04B1/0067H04B1/48
    • An exemplary embodiment of communication device includes a signal communication module, a first switch module, a processor, a second switch module, and a power amplifying module. The signal communication module, the first switch module, the processor, the second switch module, and the power amplifying module are electrically connected in series. The signal transceiver receives and sends a wireless communication signal. The first switch module and the second switch module are used for switching on corresponding receiving and sending paths of the wireless communication signal under the control of the processor. The power amplifying module is configured for amplifying and adjusting signal strength of the broadcast signal from the second switch module controlled by the processor.
    • 通信设备的示例性实施例包括信号通信模块,第一开关模块,处理器,第二开关模块和功率放大模块。 信号通信模块,第一开关模块,处理器,第二开关模块和功率放大模块串联电连接。 信号收发器接收和发送无线通信信号。 第一开关模块和第二开关模块用于在处理器的控制下切换相应的无线通信信号的接收和发送路径。 功率放大模块被配置为放大和调整来自由处理器控制的第二开关模块的广播信号的信号强度。
    • 6. 发明授权
    • Testing circuit board
    • 测试电路板
    • US08305276B2
    • 2012-11-06
    • US12755480
    • 2010-04-07
    • Ying YangYan-Feng YangLing-Yu HuangLong-Yong LiuGuo-Min Luo
    • Ying YangYan-Feng YangLing-Yu HuangLong-Yong LiuGuo-Min Luo
    • G01R29/10
    • G01R29/10
    • An exemplary testing circuit board is used for testing an antenna performance and includes a signal circuit layer, a base layer electrically connected to the signal circuit layer, and a test unit. The signal circuit layer can transmit test signals from the antenna. The base layer is fixed with the signal circuit layer and used as a ground section to shield the test signals. The test unit is electrically connected to the signal circuit layer and the base layer and includes a signal inception port. The signal inception port is positioned on the signal circuit layer and protrudes from the base layer, and the signal inception port is capable of receiving the test signals and transmitting the test signals to the signal circuit layer.
    • 示例性测试电路板用于测试天线性能,并且包括信号电路层,电连接到信号电路层的基极层和测试单元。 信号电路层可以从天线发送测试信号。 基层用信号电路层固定,用作接地部分来屏蔽测试信号。 测试单元电连接到信号电路层和基层,并包括信号起始端口。 信号初始端口位于信号电路层上,从基层突出,信号初始端口能够接收测试信号并将测试信号发送到信号电路层。
    • 7. 发明授权
    • Testing system for flip type electronic device
    • 翻盖式电子设备测试系统
    • US08302493B2
    • 2012-11-06
    • US12760655
    • 2010-04-15
    • Ying YangLing-Yu HuangYan-Feng YangZhan-Wei Huang
    • Ying YangLing-Yu HuangYan-Feng YangZhan-Wei Huang
    • G01L5/00
    • G01L5/0042
    • A testing system is used to testing a flip type electronic device having a main body, and a cover. The testing system includes a fixing structure, a flipping structure, a sensing device, a rotating mechanism, and a control device. The fixing structure positions the main body. The fixing structure flips the cover until a rotation degree of the cover and the main body reaches a threshold degree. The sensing device senses is pressed by the cover when the cover automatically rotates relative to the main body and generates electrical pressure signals according to the mount of pressure. The control device controls the rotating mechanism to drive the flipping structure to rotate and judges whether the flipping performance of the electronic device is normal according to the electrical pressure signals.
    • 测试系统用于测试具有主体和盖的翻盖式电子设备。 测试系统包括固定结构,翻转结构,感测装置,旋转机构和控制装置。 固定结构使主体定位。 固定结构翻转盖,直到盖和主体的旋转度达到阈值。 当盖子相对于主体自动旋转时,传感装置感测被盖子按压,并根据压力的安装产生电压信号。 控制装置控制旋转机构以驱动翻转结构旋转,并根据电压信号判断电子装置的翻转性能是否正常。
    • 8. 发明申请
    • TRANSMITTING SYSTEM AND METHOD THEREOF
    • 发送系统及其方法
    • US20120066305A1
    • 2012-03-15
    • US13192700
    • 2011-07-28
    • HSU-WEI CHENGYAN-FENG SI
    • HSU-WEI CHENGYAN-FENG SI
    • G06F15/16
    • H04L47/193H04L47/12H04L47/263H04L69/164
    • A datagram transmitting system includes a server and a client. The client includes a first transmitting module and a detecting module. The server includes a management module and a second transmitting module. The detecting module detects whether network congestion and generates a status signal. If network is congested, the detecting module generates a first status signal. The first transmitting module transmits the status signal to the management module. The management module packages a first predetermined length of data into a datagram responding to the first status signal. The first predetermined signal is at most 65,507 bytes but more than 0 bytes in length. The second transmitting module transmits the datagram to the first transmitting module.
    • 数据报发送系统包括服务器和客户机。 客户端包括第一发送模块和检测模块。 服务器包括管理模块和第二传输模块。 检测模块检测网络是否拥塞并产生状态信号。 如果网络拥塞,则检测模块产生第一状态信号。 第一发送模块将状态信号发送到管理模块。 管理模块将第一预定长度的数据封装成响应于第一状态信号的数据报。 第一个预定信号长度最多为65,507字节但大于0字节。 第二发送模块将数据报发送到第一发送模块。