首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Full-Duplex Single-Chip Transceiver With Self-Interference Cancellation in 0.13 μ m SiGe BiCMOS for Electron Paramagnetic Resonance Spectroscopy
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A Full-Duplex Single-Chip Transceiver With Self-Interference Cancellation in 0.13 μ m SiGe BiCMOS for Electron Paramagnetic Resonance Spectroscopy

机译:用于电子顺磁共振光谱的具有0.13μmSiGe BiCMOS自干扰消除功能的全双工单芯片收发器

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This paper presents a miniaturized EPR spectrometer based on a single-chip transceiver. Utilizing a novel on-chip self-interference cancellation circuit, the electromagnetic coupling from the transmitter (TX) to the receiver (RX) is minimized, allowing simultaneous achievement of large TX output power and low RX noise figure (NF). In the measurement, the RX achieves a NF of 3.1 dB/6.3 dB at 10 MHz/50 kHz baseband frequencies, when the TX and cancellation circuits are turned off. The measured flicker noise corner is 60 kHz, more than 10× lower than the prior work. Moreover, for the first time, the operation of the RX and cancellation circuit is demonstrated when a co-integrated TX is operating at the same time and frequency, while producing >20 dBm output power. When the TX and cancellation circuits are turned on, at -10 dBm interference power, the measured NF is 6.8 dB/11.1 dB at 10 MHz/50 kHz baseband frequencies. This is lower by 5.6 dB/9.6 dB at 10 MHz/50 kHz baseband frequencies, compared to the NF with the cancellation circuit off at the same interference power. The transceiver chip is implemented in IBM 0.13 μm BiCMOS process and consumes a power of 2 W. Utilizing this transceiver, an electron paramagnetic resonance (EPR) spectrometer is built and tested. It is observed, through measurement, that the interference cancellation circuit increases the signal-to-noise ratio (SNR) of the EPR signal by 7 dB at -10 dBm interference power. Compared to prior work, the reported EPR spectrometer improves the sensitivity of the system by 25 dB.
机译:本文提出了一种基于单芯片收发器的小型化EPR光谱仪。利用新颖的片上自干扰消除电路,可以最大程度地减少从发射器(TX)到接收器(RX)的电磁耦合,从而同时实现大的TX输出功率和低的RX噪声系数(NF)。在测量中,当TX和消除电路关闭时,RX在10 MHz / 50 kHz基带频率下的NF值为3.1 dB / 6.3 dB。测得的闪烁噪声角为60 kHz,比以前的工作低10倍以上。此外,首次展示了当一个集成的TX在相同的时间和频率下工作,同时产生> 20 dBm的输出功率时,RX和抵消电路的工作情况。当TX和抵消电路打开时,在-10 dBm干扰功率下,在10 MHz / 50 kHz基带频率下测得的NF为6.8 dB / 11.1 dB。与在相同干扰功率下消除电路关闭的NF相比,在10 MHz / 50 kHz基带频率下,该噪声降低了5.6 dB / 9.6 dB。该收发器芯片采用IBM 0.13μmBiCMOS工艺实现,功耗为2W。利用该收发器,构建并测试了电子顺磁共振(EPR)光谱仪。通过测量可以看出,干扰消除电路在-10 dBm干扰功率下将EPR信号的信噪比(SNR)提高了7 dB。与以前的工作相比,报告的EPR光谱仪将系统的灵敏度提高了25 dB。

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