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    • 21. 发明专利
    • Millimeter wave transmission device, millimeter wave transmission method, and millimeter wave transmission system
    • 毫米波传输设备,毫米波传输方法和毫米波传输系统
    • JP2010103982A
    • 2010-05-06
    • JP2009214046
    • 2009-09-16
    • Sony Corpソニー株式会社
    • KAWASAKI KENICHI
    • H04B13/00H01P3/12H04B3/02H04B5/02
    • H04B3/52H01L2224/16227H01P3/121H04B1/38H04B3/20H04B3/46
    • PROBLEM TO BE SOLVED: To execute high-speed communication processing only in a certain local range of a board, and to reduce interference to the outside of the local range of the board. SOLUTION: This millimeter wave transmission device waves includes: a signal generating unit 21 that generates a millimeter wave signal by the signal processing of an input signal Sin; a coupling circuit 205 that transmits an electromagnetic wave S' based on the millimeter wave signal that is generated by the signal generating unit 21 to one end of a board 10; a coupling circuit 207 that receives the electromagnetic wave S' based on the millimeter wave signal from the other end of the board 10; and a signal generating unit 22 that generates an output signal Sout by the signal processing of the millimeter wave signal based on the electromagnetic wave S' that is received by the coupling circuit 207. Preferably, the board 10 is formed of a dielectric material with a relatively large dielectric loss tangent, and a transmission line 206 that functions as a millimeter wave transmission path is constituted within the board 10. By this structure, extremely high-speed signals can be transmitted through the board 10 having a prescribed dielectric constant ε representing a large loss. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:仅在板的某个局部范围内执行高速通信处理,并且减少对板的局部范围的外部干扰。 该毫米波传输装置波包括:通过输入信号Sin的信号处理产生毫米波信号的信号产生单元21; 耦合电路205,其将基于由信号生成单元21产生的毫米波信号的电磁波S'发送到板10的一端; 基于来自板10的另一端的毫米波信号接收电磁波S'的耦合电路207; 以及信号生成单元22,其基于由耦合电路207接收的电磁波S',通过对毫米波信号进行信号处理来生成输出信号Sout。优选地,电路板10由具有 相对较大的介质损耗角正切以及用作毫米波传输路径的传输线206构成在板10内。通过这种结构,可以通过具有规定的介电常数ε的板10透射极高速的信号, 大损失 版权所有(C)2010,JPO&INPIT
    • 23. 发明专利
    • Semiconductor element coupling device, semiconductor element, high frequency module, and semiconductor element coupling method
    • 半导体元件耦合器件,半导体元件,高频模块和半导体元件耦合方法
    • JP2007312220A
    • 2007-11-29
    • JP2006140593
    • 2006-05-19
    • Sony Corpソニー株式会社
    • KAWASAKI KENICHI
    • H01P5/08H03H7/075H03H7/12
    • H01P1/20
    • PROBLEM TO BE SOLVED: To provide a semiconductor element coupling device which makes interconnection easy even if an input and output signal to a semiconductor integrated circuit is a high frequency signal.
      SOLUTION: The semiconductor element coupling device 10 is provided with a part of a bandpass filter 11 which passes a high frequency signal of a millimeter wave band by an LC resonant circuit, and a remaining part of the bandpass filter 12. The part of the bandpass filter 11 and the remaining part 12 are separated by a capacitive part 13, the filter 11 is formed in the semiconductor element 14, and the remaining part 12 is formed in an exterior part 15 of the semiconductor element 14.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种半导体元件耦合器件,即使对半导体集成电路的输入和输出信号是高频信号,也使互连变得容易。 解决方案:半导体元件耦合器件10设置有通过LC谐振电路通过毫米波段的高频信号的带通滤波器11的一部分和带通滤波器12的剩余部分。该部分 带通滤波器11和其余部分12由电容部分13分开,滤波器11形成在半导体元件14中,其余部分12形成在半导体元件14的外部部分15中。 版权所有(C)2008,JPO&INPIT
    • 28. 发明专利
    • MICROWAVE CIRCUIT
    • JPS63176005A
    • 1988-07-20
    • JP765087
    • 1987-01-16
    • SONY CORP
    • KAWASAKI KENICHIHORISAWA KATSUZO
    • H03D9/06
    • PURPOSE:To extract only a desired signal without causing the reflection of a disturbing signal to a signal source and the radiation of the disturbing signal into space by decomposing a desired signal and the disturbing signal by means of a directional filter and using a resistor so as to terminate the disturbing signal. CONSTITUTION:Since the line length of a resonator 12 is made equal to the wavelength of the disturbing signal, when a desired signal including the disturbing signal is inputted to an input terminal 13a of an input line 13, the disturbing signal is outputted to a signal output terminal 14a of an output line 14. Since the desired signal is outputted at an output terminal 13b of the input line 13, the reflection of the disturbing signal to the signal source of the desired signal is not caused. Moreover, since the signal output terminal 14a of the output line 14 is terminated by a termination resistor 15 of the nearly same value as the characteristic impedance of the output line 14, the radiation of the disturbing signal into space is not caused.