Information Synchronizing System
    1.
    发明申请
    Information Synchronizing System 审中-公开
    信息同步系统

    公开(公告)号:US20090009299A1

    公开(公告)日:2009-01-08

    申请号:US12087901

    申请日:2007-02-20

    CPC classification number: H04L67/1095

    Abstract: An information synchronizing system includes a wireless communication terminal including a first information storage device having a first wireless communication range and a second information storage device having a second wireless communication range, the second wireless communication range being larger than the first wireless communication range; a read/write device that reads information from and writes information to the first information storage device; a wireless communication base station capable of performing wireless communication with the wireless communication terminal; and a synchronization controlling device that writes information stored in the first information storage device, the information being read using the read/write device, to the second information storage device via the wireless communication base station and the wireless communication terminal.

    Abstract translation: 信息同步系统包括:无线通信终端,包括具有第一无线通信范围的第一信息存储装置和具有第二无线通信范围的第二信息存储装置,所述第二无线通信范围大于所述第一无线通信范围; 读/写设备,用于从第一信息存储设备读取信息并向其写入信息; 能够与无线通信终端进行无线通信的无线通信基站; 以及同步控制装置,其通过无线通信基站和无线通信终端,将存储在第一信息存储装置中的信息,使用读/写装置读取的信息写入第二信息存储装置。

    Oscillator Including Phase Frequency Detectors For Detecting a Phase Difference Between Two Input Signals and Outputting a Control Command Signal
    2.
    发明申请
    Oscillator Including Phase Frequency Detectors For Detecting a Phase Difference Between Two Input Signals and Outputting a Control Command Signal 失效
    包括用于检测两个输入信号之间的相位差并输出控制指令信号的相位检波器的振荡器

    公开(公告)号:US20060181354A1

    公开(公告)日:2006-08-17

    申请号:US11404762

    申请日:2006-04-17

    CPC classification number: H03L7/18 H03L7/087 H03L7/0891 H03L7/095 H03L7/23

    Abstract: An oscillator includes phase frequency detectors, each detecting the phase difference between two input signals (output signal and external reference signal) and outputting a control command signal for controlling the output signal to achieve a desired frequency on the basis of the phase difference. A plurality of ICs, each including a phase frequency detector, frequency dividers, a charge pump, and a lock detection circuit, is operated in parallel. A composite control command signal generated by combining outputs of the phase frequency detectors is output via a loop filter to a voltage-controlled oscillator. Whether phase noise is reduced sufficiently is determined on the basis of detection results by an amplitude detection circuit for detecting the amplitude of an AC component of the composite control command signal and the lock detection circuits. The phase frequency detectors are repeatedly reactivated until the phase noise is reduced sufficiently.

    Abstract translation: 振荡器包括相位频率检测器,每个相位检测器检测两个输入信号(输出信号和外部参考信号)之间的相位差,并且输出用于控制输出信号的控制命令信号,以基于相位差实现期望的频率。 并行地操作多个IC,每个IC包括相位频率检测器,分频器,电荷泵和锁定检测电路。 通过组合相位频率检测器的输出而产生的复合控制指令信号通过环路滤波器输出到压控振荡器。 基于用于检测复合控制指令信号的AC分量的振幅的振幅检测电路和锁定检测电路,确定相位噪声是否充分降低。 相位频率检测器被重新激活,直到相位噪声充分降低。

    Negative Resistance Input Amplifier Circuit and Oscillation Circuit
    3.
    发明申请
    Negative Resistance Input Amplifier Circuit and Oscillation Circuit 审中-公开
    负电阻输入放大器电路和振荡电路

    公开(公告)号:US20090134941A1

    公开(公告)日:2009-05-28

    申请号:US11883927

    申请日:2006-02-02

    CPC classification number: H03B5/187

    Abstract: The present invention provides a negative resistance input amplifier including: a microstrip line having one end connected to a collector of a transistor and the other end being open with a length of ¼ of a wavelength λ at a predetermined frequency f; and a microstrip line having one end connected to an emitter of the transistor and the other end grounded with a length of ¼ of the wavelength λ at the predetermined frequency f so that impedance viewed from a base of the transistor becomes negative only at around a target frequency, and an oscillator using the negative resistance input amplifier.

    Abstract translation: 本发明提供一种负电阻输入放大器,包括:微带线,其一端连接到晶体管的集电极,另一端以预定频率f的1/4波长的长度开放; 以及微带线,其一端连接到晶体管的发射极,另一端以预定频率f的波长λ的1/4的长度接地,使得从晶体管的基极观察到的阻抗仅在目标周围为负 频率和使用负电阻输入放大器的振荡器。

    Oscillator
    4.
    发明申请
    Oscillator 审中-公开
    振荡器

    公开(公告)号:US20080309422A1

    公开(公告)日:2008-12-18

    申请号:US11883318

    申请日:2006-05-22

    Abstract: An oscillator according to the present invention includes: an active element that oscillates at a predetermined frequency to output a signal of the predetermined frequency; and an impedance element having an impedance that is lower at a frequency lower than the predetermined frequency than at the predetermined frequency, the active element having signal terminals at least one of which is grounded through a series circuit composed of the impedance element and a capacitor.

    Abstract translation: 根据本发明的振荡器包括:以预定频率振荡以输出预定频率的信号的有源元件; 所述有源元件具有通过由所述阻抗元件和电容器构成的串联电路中的至少一个接地的信号端子,所述阻抗元件具有低于比所述预定频率低的预定频率的频率的阻抗。

    Methods for manufacturing porous dielectric substrates including patterned electrodes
    6.
    发明授权
    Methods for manufacturing porous dielectric substrates including patterned electrodes 有权
    制造包括图案化电极的多孔电介质基片的方法

    公开(公告)号:US07498076B2

    公开(公告)日:2009-03-03

    申请号:US11285067

    申请日:2005-11-23

    Abstract: A method for manufacturing a porous dielectric substrate including patterned electrodes includes a patterned electrode-forming step of preparing a support plate having a releasable flat face and then forming the patterned electrodes on the flat face, a porous dielectric substrate-forming step of feeding a material for forming the porous dielectric substrate onto the flat face having the patterned electrodes arranged thereon to form the porous dielectric substrate in which the patterned electrodes are embedded, and a separation step of separating the support plate from the porous dielectric substrate having the patterned electrodes embedded therein. In the patterned electrode-forming step, the patterned electrodes formed on the flat face are processed to have rough surfaces in the patterned electrode-forming step. Alternatively, after the flat face is coated with a releasing agent, the patterned electrodes are formed on the resulting flat face.

    Abstract translation: 一种制造包括图案化电极的多孔电介质基片的方法包括:图案化电极形成步骤,制备具有可释放平面的支撑板,然后在平坦面上形成图案化电极;多孔电介质基片形成步骤, 用于在其上布置有图案化电极的平面上形成多孔电介质基板以形成其中嵌入有图案化电极的多孔电介质基板,以及分离步骤,用于将支撑板与嵌入其中的图案化电极的多孔电介质基板分离 。 在图案化电极形成步骤中,形成在平面上的图案化电极在图案化电极形成步骤中被处理成具有粗糙表面。 或者,在平面涂布有脱模剂之后,在所得到的平面上形成图案化电极。

    Radio lan antenna
    7.
    发明申请
    Radio lan antenna 审中-公开
    无线局域网天线

    公开(公告)号:US20070004363A1

    公开(公告)日:2007-01-04

    申请号:US10556425

    申请日:2004-04-12

    Abstract: A high-frequency micro-strip line for transmitting a high-frequency wave for a wireless LAN system has a layered structure where, on a ground layer made of a conductive material, a dielectric layer made of a dielectric material and a signal line made of a conductive material are successively laid. The high-frequency micro-strip line further includes a patch antenna comprising a dielectric plate made of a dielectric material and a patch made of a conductive material, which are successively laid into a layered structure, the patch antenna being electrically connected to the signal line. A wireless-communication RF signal transmission device capable of being applied to such a line is also provided.

    Abstract translation: 用于传输无线LAN系统的高频波的高频微带线具有分层结构,其中在由导电材料制成的接地层上由电介质材料制成的电介质层和由 连续铺设导电材料。 高频微带线还包括贴片天线,其包括由介电材料制成的电介质板和由导电材料制成的贴片,其被依次铺设成层状结构,贴片天线电连接到信号线 。 还提供能够应用于这种线路的无线通信RF信号发送装置。

    Structure for Attaching RFID Tag and Method for Detecting RFID Tag
    8.
    发明申请
    Structure for Attaching RFID Tag and Method for Detecting RFID Tag 审中-公开
    RFID标签附件结构及RFID标签检测方法

    公开(公告)号:US20090231100A1

    公开(公告)日:2009-09-17

    申请号:US12226877

    申请日:2007-04-24

    Abstract: The present invention provides a structure for attaching an RFID tag in a disposition allowing an easy detection by an external RFID reader, the structure preventing the RFID tag from being broken for a normal specification, and a method for detecting an RFID tag. The structure for attaching an RFID tag to a hollow cylindrical metal body is characterized in that the RFID tag is attached to an inner side of the hollow cylindrical metal body via a spacer between it and a metal surface such that a direction in which an electric field of the RFID tag is generated is in a direction along a circumference of the hollow cylindrical metal body.

    Abstract translation: 本发明提供一种用于将RFID标签附着在容易通过外部RFID读取器检测的配置中的结构,防止RFID标签因正常规格而被破坏的结构以及RFID标签的检测方法。 用于将RFID标签附接到中空圆柱形金属体的结构的特征在于,RFID标签通过其与金属表面之间的间隔件附接到中空圆柱形金属体的内侧,使得电场 产生RFID标签的方向是沿着中空圆柱形金属体的圆周方向。

    Wireless Communication Device
    9.
    发明申请
    Wireless Communication Device 审中-公开
    无线通信设备

    公开(公告)号:US20080037507A1

    公开(公告)日:2008-02-14

    申请号:US11791676

    申请日:2005-05-23

    CPC classification number: H04B7/265 H04B1/005 H04B1/18 H04B1/52 H04W4/18 H04W88/04

    Abstract: Existing modems of time division duplex (TDD) type can be utilized without modification to perform a high speed wireless communication with stable communication quality in other frequency bands such as quasi-millimeter to millimeter wave bands. There are included a circulator (11) connected to TDD modems (1, 2) and receives signals transmitted thereby to output those signals from a first connection terminal (p1) and outputs signals received at a second connection terminal (p2) to the TDD modems (1, 2), and a frequency converter (2a) that raise the frequency of the signals from the circulator (11) by a predetermined frequency width and lowers the frequency of signals from a receive antenna (32) by a predetermined frequency width. It may be arranged that the frequency conversion width be made different between the uplink and downlink and that a filter, which blocks the transmitting wireless frequency and passes the receiving wireless frequency, is provided between the receive antenna (32) and a frequency converter (22a).

    Abstract translation: 可以利用现有的时分双工(TDD)类型的调制解调器,而无需修改即可在诸如准毫米至毫米波段的其他频带中执行具有稳定通信质量的高速无线通信。 包括连接到TDD调制解调器(1,2)的循环器(11),并且接收从其发送的信号以从第一连接端子(p 1)输出这些信号,并将在第二连接端子(p 2)接收的信号输出到 TDD调制解调器(1,2)和频率转换器(2a),其将来自循环器(11)的信号的频率提高预定的频率宽度,并且将来自接收天线(32)的信号的频率降低预定的 频率宽度。 可以设置在上行链路和下行链路之间使频率转换宽度不同,并且在接收天线(32)和频率转换器(22)之间提供阻塞发送无线频率并通过接收无线频率的滤波器 一个)。

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