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    • 3. 发明授权
    • Microwave harmonic mixer circuit of super conducting quantum
interference device
    • 超导量子干扰装置微波谐波混频电路
    • US5732343A
    • 1998-03-24
    • US676675
    • 1996-07-10
    • Hong Teuk KimByungdu Oh
    • Hong Teuk KimByungdu Oh
    • H03K3/00H03D9/06H04B1/26
    • H03D9/0608H04B1/26
    • Microwave harmonic mixer circuit of SQUID(Superconducting Quantum Interference Device) is disclosed, in which a magnetic flux to voltage conversion characteristics of SQUID is used for generating a higher harmonics from an LO(Local Oscillator) signal, and mixing the higher LO harmonics with a radio frequency(RF) signal, including an SQUID for adding a RF(Radio Frequency) signal to a magnetic flux of an LO(Local Oscillator) signal frequency for having a mixing of the frequencies done; a current applying part and a grounding part disposed on both sides of the SQUID and connected to a current source on one side and grounded on the other side respectively for supplying operation current to the SQUID; RF antenna parts one each disposed between the SQUID and the current applying part and the SQUID and the grounding part for feeding a RF signal into the SQUID; an LO signal source and antenna part for applying a flux of an LO signal frequency to the SQUID; and, an IF signal detecting part for detecting an IF(Intermediate Frequency) signal mixed in the SQUID, whereby a flux to voltage conversion characteristics of the SQUID of a superconducting junction is used in modulating the frequency and magnetic flux intensity of the LO signal for generating a dominant LO higher harmonics of very high order and mixing the higher harmonics with a high frequency RF signal in frequency base.
    • 公开了SQUID(超导量子干涉装置)的微波谐波混频电路,其中使用SQUID的磁通与电压转换特性从LO(本地振荡器)信号产生高次谐波,并将较高的LO谐波与 射频(RF)信号,包括用于将RF(射频)信号添加到LO(本地振荡器)信号频率的磁通量的SQUID,用于使所完成的频率混合; 电流施加部分和接地部分,其设置在SQUID的两侧,并分别连接到一侧的电流源,另一侧接地,以向SQUID提供工作电流; 每个放置在SQUID和电流施加部分之间的RF天线部分和SQUID和用于将RF信号馈送到SQUID中的接地部分; 用于向SQUID施加LO信号频率的磁通的LO信号源和天线部分; 以及用于检测混合在SQUID中的IF(中频)信号的IF信号检测部分,由此使用超导结的SQUID的磁通与电压转换特性来调制LO信号的频率和磁通强度,以便 产生超高次谐波的主要LO高次谐波,并将高次谐波与频率基站中的高频RF信号进行混频。