Kozioł J, Rajda P, Rumian R, Oleś T, Budzioch P, Gurbiel R J, Froncisz W
Jagiellonian University, Faculty of Biochemistry, Biophysics and Biotechnology, Department of Molecular Biophysics, 7 Gronostajowa St., 30-387 Krakow, Poland.
AGH University of Science and Technology, Faculty of Computer Science, Electronics and Telecommunications, Department of Electronics, al. Mickiewicza 30, 30-059 Krakow, Poland.
J Magn Reson. 2021 Jan;322:106870. doi: 10.1016/j.jmr.2020.106870. Epub 2020 Nov 7.
This article describes a novel digital L-band EPR spectrometer. The spectrometer uses direct digital detection with time-locked subsampling (TLSS). The device consists of a microwave bridge equipped with a microwave source based on direct digital synthesis (DDS) and a digital receiver. DDS technology combined with an ultra-low noise 1 GHz master clock allowed the development of a digitally controlled microwave source with exceptionally good phase noise characteristics. The obtained level of phase noise is as low as -140 dBc/Hz at 30.5 kHz from the carrier frequency of 1.15 GHz, which is important when registering the EPR dispersion signal. The receiver is equipped with a high-speed A/D converter that enables direct digitalization of the L-band microwave signal. The obtained discrete data are then buffered and averaged in a programmable logic FPGA device. Data packets from FPGA are transferred to a DSP microcontroller that correlates them with the appropriate reference signals. This detection algorithm requires time locking of the generator and the receiver, which is ensured by clocking both devices from the same reference source. This procedure allows the simultaneous detection of the absorption and dispersion signals at the magnetic field modulation frequency and at any of its harmonics. The software to control the spectrometer was designed in the LabView programming environment. The program also allows further data processing. To the best of our knowledge, the described spectrometer is one of the first full implementation of the direct digital detection technique which could replace conventional analog CW spectrometers that utilize magnetic field modulation. For an 11 µm aqueous TEMPOL solution, the new spectrometer obtained a S/N ratio greater than 160 for an EPR spectrum registered in 69 s.
本文介绍了一种新型数字L波段电子顺磁共振光谱仪。该光谱仪采用带有时锁子采样(TLSS)的直接数字检测。该设备由一个配备基于直接数字合成(DDS)的微波源和数字接收器的微波桥组成。DDS技术与超低噪声1 GHz主时钟相结合,使得能够开发出具有异常良好相位噪声特性的数控微波源。在距离1.15 GHz载波频率30.5 kHz处获得的相位噪声水平低至-140 dBc/Hz,这在记录电子顺磁共振色散信号时很重要。接收器配备了高速A/D转换器,可实现L波段微波信号的直接数字化。然后,所获得的离散数据在可编程逻辑FPGA设备中进行缓冲和平均。来自FPGA的数据包被传输到DSP微控制器,使其与适当的参考信号相关。这种检测算法需要发生器和接收器的时间锁定,这通过从同一参考源为两个设备提供时钟来确保。该过程允许在磁场调制频率及其任何谐波处同时检测吸收和色散信号。控制光谱仪的软件是在LabView编程环境中设计的。该程序还允许进一步的数据处理。据我们所知,所描述的光谱仪是直接数字检测技术的首批全面实现之一,它可以取代利用磁场调制的传统模拟连续波光谱仪。对于11 µm的水性TEMPOL溶液,新光谱仪在69秒内记录的电子顺磁共振光谱的信噪比大于160。