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    • 3. 发明授权
    • Wireless terminal device
    • 无线终端设备
    • US06721543B1
    • 2004-04-13
    • US09694671
    • 2000-10-24
    • Takatoshi KatsuraKenji ItohShinjirou FukuyamaMitsuru MochizukiHiroaki NaganoYoshinori Matsunami
    • Takatoshi KatsuraKenji ItohShinjirou FukuyamaMitsuru MochizukiHiroaki NaganoYoshinori Matsunami
    • H04Q700
    • H04B1/52H04B1/48
    • A wireless terminal device includes a transmitting circuit, an isolator, a band pass filter, a switch, a transmitting antenna, a receiving circuit, a band pass filter, a switch, a receiving antenna, a high-pass filter, a low-pass filter and an input/output port. A transmission wave of a frequency is conveyed from the transmitting circuit to the input/output port via the isolator, the band pass filter and the low pass filter, and further to a vehicle antenna. Here, the transmission wave in the direction towards the receiving circuit is blocked by the high-pass filter. On the other hand, a reception wave of a frequency is conveyed from the vehicle antenna to the input/output port, and to the receiving circuit via the high-pass filter and the band pass filter. Here, the reception wave in the direction towards the transmitting circuit is blocked by the low-pass filter. Thus, transmission and reception can simultaneously be performed via a single input/output port, so that the wireless terminal device of the invention is compatible with a general wireless terminal device which performs simultaneous transmission/reception by one transmitting/receiving share antenna.
    • 无线终端装置包括发送电路,隔离器,带通滤波器,开关,发送天线,接收电路,带通滤波器,开关,接收天线,高通滤波器,低通滤波器 滤波器和输入/输出端口。 频率的传输波通过隔离器,带通滤波器和低通滤波器从发射电路传送到输入/输出端口,并且进一步传输到车辆天线。 这里,朝向接收电路的方向的发送波被高通滤波器阻挡。 另一方面,频率的接收波从车载天线传送到输入/输出端口,并经由高通滤波器和带通滤波器传送到接收电路。 这里,朝向发送电路的方向的接收波被低通滤波器阻挡。 因此,可以通过单个输入/输出端口同时进行发送和接收,使得本发明的无线终端设备与通过一个发送/接收共享天线同时发送/接收的一般无线终端设备兼容。
    • 9. 发明授权
    • Transmitting and receiving apparatus
    • 发射和接收设备
    • US06721551B2
    • 2004-04-13
    • US09968773
    • 2001-10-03
    • Hiroaki NaganoKazuhiro MoriKenji Itoh
    • Hiroaki NaganoKazuhiro MoriKenji Itoh
    • H04B126
    • H03D7/163H03L7/23H04B1/00H04B1/403H04B1/406
    • A reception carrier wave, a first transmission carrier wave, and a second transmission carrier wave are generated. The reception carrier wave is mixed with the reception wave to produce a reception signal. The frequency of the first transmission carrier wave is halved, and the first transmission carrier wave is mixed with a transmission signal to produce a modulated wave. The second transmission carrier wave is mixed with the modulated wave to produce a transmission wave. Since neither the frequency of the first transmission carrier wave nor the frequency of the second transmission carrier wave agrees with each of the frequency of the modulated wave and the frequency fTX, the degradation of the modulation precision on a transmission side can be prevented. Also, because the frequency of the first transmission carrier wave is halved, the interference of the first transmission carrier wave with the transmission signal band can be reduced.
    • 产生接收载波,第一传输载波和第二传输载波。 接收载波与接收波混合以产生接收信号。 第一传输载波的频率减半,并且第一传输载波与传输信号混合以产生调制波。 第二传输载波与调制波混合以产生传输波。 由于第一发送载波的频率和第二发送载波的频率都不与调制波的频率和频率fTX一致,所以可以防止发送侧的调制精度的劣化。 此外,由于第一传输载波的频率减半,所以可以减少第一传输载波与传输信号频带的干扰。
    • 10. 发明授权
    • Transmitting and receiving apparatus
    • 发射和接收设备
    • US06324385B1
    • 2001-11-27
    • US09679449
    • 2000-10-04
    • Hiroaki NaganoKazuhiro MoriKenji Itoh
    • Hiroaki NaganoKazuhiro MoriKenji Itoh
    • H04B140
    • H03D7/163H03L7/23H04B1/00H04B1/403H04B1/406
    • A reception carrier wave, of which a frequency fL0 agrees with a frequency fRX of a reception wave, is generated, a first transmission carrier wave, of which a frequency fL1 is equivalent to twice of a difference value between the reception frequency and a frequency fTX of a transmission wave, is generated, and a second transmission carrier wave of which a frequency fL2 is equivalent to a difference value between the frequency fL0 and the frequency fL1, is generated. The reception carrier wave is mixed with the reception wave to produce a reception signal. The frequency of the first transmission carrier wave is halved, and the first transmission carrier wave is mixed with a transmission signal to produce a modulated wave. The second transmission carrier wave is mixed with the modulated wave to produce a transmission wave. Therefore, because either the frequency of the first transmission carrier wave or the frequency of the second transmission carrier wave does not agree with each of the frequency of the modulated wave and the frequency fTX, the degradation of the modulation precision on a transmission side can be prevented. Also, because the frequency of the first transmission carrier wave is halved, the interference of the first transmission carrier wave with the transmission signal band can be reduced.
    • 产生频率fL0与接收波的频率fRX一致的接收载波,其频率fL1等于接收频率和频率fTX之间的差值的两倍的第一传输载波 并且产生频率fL2等于频率fL0和频率fL1之间的差值的第二传输载波。 接收载波与接收波混合以产生接收信号。 第一传输载波的频率减半,并且第一传输载波与传输信号混合以产生调制波。 第二传输载波与调制波混合以产生传输波。 因此,由于第一发送载波的频率或第二发送载波的频率与调制波的频率和频率fTX不一致,所以发送侧的调制精度的劣化可以是 防止了 此外,由于第一传输载波的频率减半,所以可以减少第一传输载波与传输信号频带的干扰。