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Design of a 2-18 GHz Differential Phase Invariant Low Noise Variable Gain Amplifier in 0.18-μm SiGe BiCMOS Technology
Conference proceeding

Design of a 2-18 GHz Differential Phase Invariant Low Noise Variable Gain Amplifier in 0.18-μm SiGe BiCMOS Technology

Mai Luo, Yibo Cui, Sijia Bai, Siyu Zeng, Fanyi Meng and IEEE
2024 IEEE MTT-S International Wireless Symposium (IWS), pp.1-3
16/05/2024

Abstract

Bandwidth BiCMOS integrated circuits cascode current-steering Gain LNVGA mutual compensation Noise Noise figure phase invariance Phased arrays resistance feedback SiGe BiCOMS Silicon germanium Tuning Ultra wideband technology UWB Wireless communication
This paper presents a fully integrated differential ultra-wideband low noise variable gain amplifier (LNVGA) for 2-18 GHz applications in HHNEC 0.18-μm SiGe BiCMOS technology. To achieve the broadband response and in-band gain flatness, a resistive feedback loop and a mutual gain compensation technique are adopted in both amplification stages. In addition, a phase invariant method using opposite phase variations cancellation is proposed, analyzed, and implemented in the current-steering VGA blocks to miniaturize the phase shifts in all gain states. The proposed LNVGA exhibits 18-dB gain tuning range and <1dB gain flatness with 2-18 GHz operation bandwidth. The noise figure is 3.2 dB-4.7 dB in all gain states, and the phase variation across different gain states is <3° with a 0.15 mm 2 compact core area.

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