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MILLIMETER-WAVE TRANSMITTING APPARATUS AND MILLIMETER-WAVE TRANSMITTING/RECEIVING SYSTEM

机译:毫米波传输设备和毫米波传输/接收系统

摘要

PROBLEM TO BE SOLVED: To control the level difference between a television broadcast signal and a local oscillation signal to be wirelessly transmitted to a proper value, in a millimeter-wave transmitting apparatus that uses the local oscillation signal of a millimeter-wave band to up-convert the television broadcast signal and wirelessly transmits the up-converted television broadcast signal and the local oscillation signal.;SOLUTION: In order to allow a self-heterodyne type receiving apparatus 30 to normally restore a CATV signal before being up-converted by a transmitting apparatus 10, it is necessary to control a level difference between the CATV signal and a local oscillation signal in a reception signal to a proper value (about 15 dB). Then, the transmitting apparatus 10 comprises an AGC circuit 14 for performing level adjustment on the CATV signal, in such a way that the level difference between a pilot signal, corresponding to the CATV signal before up-converting and the local oscillation signal, becomes the targeted level difference. As a result, the level difference between the up-converted CATV signal and the local oscillation signal is controlled to a proper value, so that the receiving apparatus 30 can carry out down-conversion in a normal manner.;COPYRIGHT: (C)2010,JPO&INPIT
机译:解决的问题:在使用毫米波段的本地振荡信号的毫米波发送设备中,为了将电视广播信号和要无线发送的本地振荡信号之间的电平差控制到适当的值,转换电视广播信号并无线发送上转换的电视广播信号和本地振荡信号。解决方案:为了使自外差型接收设备30在被CA进行上转换之前正常恢复CATV信号。在发送装置10中,必须将接收信号中的CATV信号与本地振荡信号之间的电平差控制为适当的值(约15dB)。然后,发送设备10包括用于对CATV信号进行电平调整的AGC电路14,以使得与上转换之前的CATV信号相对应的导频信号与本地振荡信号之间的电平差变为:目标水平差异。结果,将上转换后的CATV信号和本地振荡信号之间的电平差控制为适当的值,从而接收设备30可以以正常方式进行下转换。版权所有:(C)2010 ,JPO&INPIT

著录项

  • 公开/公告号JP2010050816A

    专利类型

  • 公开/公告日2010-03-04

    原文格式PDF

  • 申请/专利权人 MASPRO DENKOH CORP;

    申请/专利号JP20080214155

  • 发明设计人 KOBAYASHI TAKESHI;

    申请日2008-08-22

  • 分类号H04B1/04;H04B1/26;H04B7/15;H04N7/10;H04N7/16;H04N7/20;

  • 国家 JP

  • 入库时间 2022-08-21 19:00:54

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