介绍了一种基于FPGA技术的TDC(Time to Digital Convertor)的实现,利用FPGA中加法器固有的进位链的延迟实现时间内插电路来完成TDC中的细计数部分。此TDC结构是一种基于最新的WUTDC(Wave Union TDC)技术,通过再次细分进位链中的超宽码...介绍了一种基于FPGA技术的TDC(Time to Digital Convertor)的实现,利用FPGA中加法器固有的进位链的延迟实现时间内插电路来完成TDC中的细计数部分。此TDC结构是一种基于最新的WUTDC(Wave Union TDC)技术,通过再次细分进位链中的超宽码来提高测量精度。经过板级测试和在线调试,证明该转换电路线性度良好,RMS精度好于40 ps。展开更多
The focusing and scanning of the acoustic beam in solid have been carried out by using the Fresnel transducer array of ZnO thin film with a bandwidth of 200MHz. Some useful properties were observed experimentally by t...The focusing and scanning of the acoustic beam in solid have been carried out by using the Fresnel transducer array of ZnO thin film with a bandwidth of 200MHz. Some useful properties were observed experimentally by the acousto-optic method and analysed phenomenologically.展开更多
文摘介绍了一种基于FPGA技术的TDC(Time to Digital Convertor)的实现,利用FPGA中加法器固有的进位链的延迟实现时间内插电路来完成TDC中的细计数部分。此TDC结构是一种基于最新的WUTDC(Wave Union TDC)技术,通过再次细分进位链中的超宽码来提高测量精度。经过板级测试和在线调试,证明该转换电路线性度良好,RMS精度好于40 ps。
文摘The focusing and scanning of the acoustic beam in solid have been carried out by using the Fresnel transducer array of ZnO thin film with a bandwidth of 200MHz. Some useful properties were observed experimentally by the acousto-optic method and analysed phenomenologically.