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A CMOS Microcoil-Associated Preamplifier for NMR Spectroscopy

机译:用于NMR光谱的CMOS微线圈相关前置放大器

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For improving sensitivity of nuclear magnetic resonance (NMR) measurements, an in-field preamplifier in a low-cost CMOS process is presented. It is based on a second-generation positive current conveyor (CCII+), with an impedance-matching output stage. The circuit has been designed with optimization of key performances, such as bandwidth, noise, and offset voltage. There have also been precautions taken against potential effect of strong magnetic field under which the circuit should operate. The designed preamplifier has a voltage gain of 15 dB and a bandwidth of 100 MHz. After fabrication of the circuit, we have carried out testing work, including in-field circuit test and characterization of MOS transistors. Under 2-T magnetic field, there have not been substantial changes in overall circuit performances compared to results obtained by post-layout simulations. For an experiment of NMR measurements with and without in-field preamplifier, the circuit is coupled with a receiver micro-coil. The experiment has been to detect protons at 85.13-MHz resonance frequency under 2-T magnetic field with water sample. The obtained results have shown a 14-dB signal-to-noise ratio improvement when the preamplifier is associated with the receiver coil.
机译:为了提高核磁共振(NMR)测量的灵敏度,提出了一种低成本CMOS工艺中的场内前置放大器。它基于具有阻抗匹配输出级的第二代正电流传送器(CCII +)。该电路的设计优化了关键性能,例如带宽,噪声和失调电压。还采取了预防措施,以防止电路应在其作用下的强磁场的潜在影响。设计的前置放大器的电压增益为15 dB,带宽为100 MHz。制作完电路后,我们进行了测试工作,包括现场电路测试和MOS晶体管的特性分析。在2-T磁场下,与通过布局后仿真获得的结果相比,总体电路性能没有实质性变化。对于使用和不使用现场前置放大器进行NMR测量的实验,该电路均与接收器微线圈耦合。实验是在水样的2T磁场下检测共振频率为85.13MHz的质子。当前置放大器与接收器线圈关联时,获得的结果显示出14 dB的信噪比改善。

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