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首页> 外文期刊>IEEE Transactions on Electron Devices >A mesoscopic ballistic electron mixer with efficient frequency conversion at radio frequency
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A mesoscopic ballistic electron mixer with efficient frequency conversion at radio frequency

机译:具有射频有效频率转换的介观弹道电子混合器

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摘要

The voltage-current characteristic of a four-terminal mesoscopic cross is grossly nonlinear, exhibiting two clear regions of negative differential resistance (NDR). This behavior is potentially useful in millimeter wave detectors since these small devices have very low parasitic capacitance and great sensitivity. The device exploits a planar GaAs technology which lends itself to integrated systems. We have exploited one of the NDR regions (at a current of only 1.9 /spl mu/A) to carry out frequency conversion. At low frequency we observed efficient frequency doubling, with the second harmonic exceeding the fundamental by up to 10 dB at the output. We have also operated the device at radio frequency (5 MHz) and demonstrated both asynchronous and heterodyne amplitude demodulation. The effect of DC current bias was examined and it was shown that biasing the device close to the NDR gave the optimum frequency conversion. A conversion loss in the heterodyne mixer circuit of 3 dB was achieved.
机译:四端子介观十字的电压-电流特性基本上是非线性的,具有两个清晰的负差分电阻(NDR)区域。这种行为在毫米波检测器中可能有用,因为这些小型设备的寄生电容非常低,灵敏度很高。该器件采用了平面砷化镓技术,可将其应用于集成系统。我们已经利用一个NDR区域(电流仅为1.9 / spl mu / A)进行频率转换。在低频下,我们观察到有效的倍频,二次谐波在输出端超过基频达10 dB。我们还以射频(5 MHz)操作该设备,并演示了异步和外差幅度解调。检查了直流电流偏置的影响,结果表明,将器件偏置到接近NDR的位置可获得最佳的频率转换。外差混频器电路中的转换损耗为3 dB。

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