Gas spectroscopy system at 245 and 500 GHz using transmitters and receivers in SiGe BiCMOS

K. Schmalz, J. Borngraber, P. Neumaier, N. Rothbart, D. Kissinger, H. Hubers
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引用次数: 7

Abstract

A compact gas spectroscopy system is demonstrated, which contains a transmitter (TX) and a receiver (RX) in SiGe BiCMOS, as well as a gas absorption cell. The sensitivity of this spectroscopy system is demonstrated by measuring the high-resolution 2f absorption spectrum (second harmonic detection) of gaseous methanol (CH3OH) at 238-252 GHz, and at 495-497 GHz. The 245 GHz TX consists of a 120 GHz local oscillator (LO) and a frequency doubler, and the 245 GHz RX includes a low noise amplifier (LNA), a LO, and an active subharmonic mixer. A 245 GHz TX-array increases significantly the sensitivity of the sensor system. The 500 GHz system includes a TX-array, and a subharmonic RX with a transconductance mixer. The 500 GHz TX contains a frequency quadrupler, and the RX uses a frequency doubler for the LO. The LOs of the RX and the TX are controlled by two external phase-locked loops (PLLs).
使用SiGe BiCMOS发射机和接收机的245 GHz和500 GHz气体光谱系统
演示了一种紧凑的气体光谱系统,该系统包含SiGe BiCMOS中的发射器(TX)和接收器(RX),以及气体吸收电池。通过测量气态甲醇(CH3OH)在238 ~ 252 GHz和495 ~ 497 GHz的高分辨率2f吸收光谱(二次谐波检测),证明了该光谱系统的灵敏度。245 GHz的TX由一个120 GHz的本振(LO)和一个倍频器组成,245 GHz的RX包括一个低噪声放大器(LNA)、一个LO和一个有源次谐波混频器。245 GHz x射线阵列显著提高了传感器系统的灵敏度。500 GHz系统包括一个tx阵列和一个带跨导混频器的次谐波RX。500 GHz TX包含频率四倍器,RX使用LO倍频器。RX和TX的LOs由两个外部锁相环(pll)控制。
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