A novel optical analog-to-digital converter based on optical time division multiplexing(OTDM) is described which uses electrooptic sampling and time-demultiplexing together with multiple electronic analog-to-digital c...A novel optical analog-to-digital converter based on optical time division multiplexing(OTDM) is described which uses electrooptic sampling and time-demultiplexing together with multiple electronic analog-to-digital converter(ADC). Compared with the previous scheme, the time-division multiplexer and the time-division demultiplexer are applied in the optical analog-to-digital converter(OADC) at the same time, the design of the OADC is simplified and the performance of the OADC based on time-division demultiplexer is improved. A core optical part of the system is demonstrated with a sample rate of 10 Gs/s. The signals in three channels are demultiplexed from the optical pulses.The result proves our scheme is feasible.展开更多
文章设计一种应用于金刚石氮空位(nitrogen-vacancy,NV)系综量子实验的数字锁相放大器。为实现高速模拟与数字信号的采样、输出以及软硬件协同与同步处理能力,设计采用ZYNQ-7010芯片作为核心器件,基于现场可编程门阵列(field programmab...文章设计一种应用于金刚石氮空位(nitrogen-vacancy,NV)系综量子实验的数字锁相放大器。为实现高速模拟与数字信号的采样、输出以及软硬件协同与同步处理能力,设计采用ZYNQ-7010芯片作为核心器件,基于现场可编程门阵列(field programmable gate array,FPGA)与精简指令集计算机(reduced instruction set computer,RISC)微处理器(advanced RISC machines,ARM)内核的基本架构,同时搭载双路高采样率的模数转换器(analog to digital converter,ADC)和数模转换器(digital to analog converter,DAC)。整套系统可以同时进行多路锁相放大处理,输入模拟噪声低至1 nV/Hz 1/2,采样率高达125 MS/s,数据传输带宽可达800 Mib/s,具有集成化程度高、易操控、锁相准确性较高等特点。该设计成功应用在NV系综实验平台上,光探测磁共振(optically detected magnetic resonance,ODMR)实验及后续计算结果表明,使用文中锁相放大器的磁强计灵敏度可以达到1.23 nT/Hz 1/2。展开更多
为标定光交叉芯片驱动电压,控制光交叉芯片实现光路由功能,提出并搭建了基于多通道DAC(Digital to Analog Converter)阵列的控制驱动电路系统。系统主要由控制系统模块、多路驱动电路模块及上位机控制模块构成。控制电路和驱动电路具有...为标定光交叉芯片驱动电压,控制光交叉芯片实现光路由功能,提出并搭建了基于多通道DAC(Digital to Analog Converter)阵列的控制驱动电路系统。系统主要由控制系统模块、多路驱动电路模块及上位机控制模块构成。控制电路和驱动电路具有调校简单、可双极性输出、输出路数多、加电精确度较高的特点,解决了当前驱动电路工作繁琐、加电极性单一、加电路数少、精度差的问题。上位机控制模块除了可控制驱动电路施加控制电压外,还可接收来自数据采集装置采集到的光功率信号作为控制驱动系统的反馈信号。通过分析控制电压与光功率之间的关系,可得到最佳的光交叉芯片控制驱动电压。系统测试实验结果表明,该系统能提供高精确度的双极性驱动电压,有效地对光交叉芯片进行驱动。可在较短的时间内标定出光开关的控制电压,完全可以满足有源光交叉芯片控制中对驱动电压的需求。该系统在光交叉芯片控制方面具有一定的应用价值。展开更多
文摘A novel optical analog-to-digital converter based on optical time division multiplexing(OTDM) is described which uses electrooptic sampling and time-demultiplexing together with multiple electronic analog-to-digital converter(ADC). Compared with the previous scheme, the time-division multiplexer and the time-division demultiplexer are applied in the optical analog-to-digital converter(OADC) at the same time, the design of the OADC is simplified and the performance of the OADC based on time-division demultiplexer is improved. A core optical part of the system is demonstrated with a sample rate of 10 Gs/s. The signals in three channels are demultiplexed from the optical pulses.The result proves our scheme is feasible.
文摘文章设计一种应用于金刚石氮空位(nitrogen-vacancy,NV)系综量子实验的数字锁相放大器。为实现高速模拟与数字信号的采样、输出以及软硬件协同与同步处理能力,设计采用ZYNQ-7010芯片作为核心器件,基于现场可编程门阵列(field programmable gate array,FPGA)与精简指令集计算机(reduced instruction set computer,RISC)微处理器(advanced RISC machines,ARM)内核的基本架构,同时搭载双路高采样率的模数转换器(analog to digital converter,ADC)和数模转换器(digital to analog converter,DAC)。整套系统可以同时进行多路锁相放大处理,输入模拟噪声低至1 nV/Hz 1/2,采样率高达125 MS/s,数据传输带宽可达800 Mib/s,具有集成化程度高、易操控、锁相准确性较高等特点。该设计成功应用在NV系综实验平台上,光探测磁共振(optically detected magnetic resonance,ODMR)实验及后续计算结果表明,使用文中锁相放大器的磁强计灵敏度可以达到1.23 nT/Hz 1/2。
文摘为标定光交叉芯片驱动电压,控制光交叉芯片实现光路由功能,提出并搭建了基于多通道DAC(Digital to Analog Converter)阵列的控制驱动电路系统。系统主要由控制系统模块、多路驱动电路模块及上位机控制模块构成。控制电路和驱动电路具有调校简单、可双极性输出、输出路数多、加电精确度较高的特点,解决了当前驱动电路工作繁琐、加电极性单一、加电路数少、精度差的问题。上位机控制模块除了可控制驱动电路施加控制电压外,还可接收来自数据采集装置采集到的光功率信号作为控制驱动系统的反馈信号。通过分析控制电压与光功率之间的关系,可得到最佳的光交叉芯片控制驱动电压。系统测试实验结果表明,该系统能提供高精确度的双极性驱动电压,有效地对光交叉芯片进行驱动。可在较短的时间内标定出光开关的控制电压,完全可以满足有源光交叉芯片控制中对驱动电压的需求。该系统在光交叉芯片控制方面具有一定的应用价值。