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Two-Finger InP HEMT Design for Stable Cryogenic Operation of Ultra-Low-Noise Ka- and Q-Band LNAs

机译:两指InP HEMT设计可实现超低噪声Ka和Q波段LNA的稳定低温运行

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摘要

We investigate the cryogenic stability of two-finger 100-nm gate-length InP HEMTs aimed for Ka- and Q-band ultra-low noise amplifiers (LNAs). InP HEMTs with unit gate widths ranging between 30 and 50 $mu text{m}$ exhibit unstable cryogenic behavior with jumps in drain current and discontinuous peaks in transconductance. We also find that shorter gate length enhances the cryogenic instability. We demonstrate that the instability of two-finger transistors can be suppressed by either adding a source air bridge, connecting the back end of gates, or increasing the gate resistance. A three-stage 24-40 GHz and a four-stage 28-52-GHz monolithic microwave-integrated circuit LNA using the stabilized InP HEMTs are presented. The Ka-band amplifier achieves a minimum noise temperature of 7 K at 25.6 GHz with an average noise temperature of 10.6 K at an ambient temperature of 5.5 K. The amplifier gain is 29 dB ± 0.6 dB. The Q-band amplifier exhibits minimum noise temperature of 6.7 K at 32.8 GHz with average noise temperature of 10 K at ambient temperature of 5.5 K. The amplifier gain is 34 dB ± 0.8 dB. To our knowledge, the Ka- and Q-band amplifiers demonstrate the lowest noise temperature reported so far for InP cryogenic LNAs.
机译:我们研究了针对Ka和Q波段超低噪声放大器(LNA)的两指100纳米栅极长度InP HEMT的低温稳定性。 InP HEMT的单位栅宽在30到50μM之间,表现出不稳定的低温行为,其漏电流跃变,跨导的峰值不连续。我们还发现,较短的闸门长度会增强低温不稳定性。我们证明,通过添加源空气桥,连接栅极的后端或增加栅极电阻,可以抑制两指晶体管的不稳定性。提出了使用稳定的InP HEMT的三级24-40 GHz和四级28-52-GHz单片微波集成电路LNA。 Ka频段放大器在25.6 GHz时的最低噪声温度为7 K,在环境温度为5.5 K时的平均噪声温度为10.6K。放大器增益为29 dB±0.6 dB。 Q波段放大器在32.8 GHz时的最低噪声温度为6.7 K,在环境温度为5.5 K时的平均噪声温度为10K。放大器增益为34 dB±0.8 dB。据我们所知,Ka和Q波段放大器展示了迄今为止报道的InP低温LNA的最低噪声温度。

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