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Development of the data acquisition system for terahertz spectrometer

机译:太赫兹光谱仪数据采集系统的开发

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In most Terahertz time-domain spectrometer (THz-TDS) experiments, the lock-in amplifier works with trans-impedance pre-amplifier to amplitude the terahertz pulse accepted from detector. This paper discusses the development of data acquisition system for the transmission THz-TDS. In this system, the cross-correlation software algorithm in SR830 lock-in amplifier from Stanford Research Systems, that is usually used in THz-TDS, has been replaced by parallel hardware algorithm of Field Programmable Gate Array (FPGA) chip with the parallel processing ability. This chip has a faster processing speed and higher accuracy than others. A 24 bit Delta-Sigma Analog Digital (AD) was used in place of the 16 bit successive approximation ADC of SR830. The new AD convertor can reduce the complexity of trans-impedance pre-amplifier circuit and replace the SR555 current amplifiers that designed to work with SRS lock-in amplifiers. Besides trans-impedance pre-amplifier circuit, all function circuits, such as low-pass digital filter, phase-locked loop, Direct Digital Synthesis (DDS) reference source and the core algorithms, are integrated in a FPGA chip, which make the new designed lock-in amplifier with a small volume reduce a dozen times SR830 size.
机译:在大多数太赫兹时域光谱仪(THz-TDS)实验中,锁定放大器采用跨阻抗预放大器工作,以幅度幅度从检测器接受的太赫兹脉冲。本文讨论了传输THZ-TDS数据采集系统的开发。在该系统中,通常在TH-TDS中使用的STANFORD研究系统的SR830锁定放大器的互相关软件算法已被通过并行处理的平行硬件算法(FPGA)芯片的并联硬件算法所取代能力。该芯片具有更快的加工速度和比其他芯片更高的精度。使用24位Delta-Sigma模拟数字(AD)代替SR830的16位连续近似ADC。新型广告转换器可以降低跨阻抗预放大器电路的复杂性,并更换设计用于使用SRS锁定放大器的SR555电流放大器。除了跨阻抗预放大器电路外,所有功能电路,诸如低通数字滤波器,锁相环,直接数字合成(DDS)参考源和核心算法之外,还集成在FPGA芯片中,使新的FPGA芯片设计锁定放大器,体积小,减少了十几次SR830尺寸。

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