A programmable high precision multiplying DAC (MDAC) is proposed. The MDAC incorporates a frequency-current converter (FCC) to adjust the power versus sampling rate and a programmable operational am- plifier (POT...A programmable high precision multiplying DAC (MDAC) is proposed. The MDAC incorporates a frequency-current converter (FCC) to adjust the power versus sampling rate and a programmable operational am- plifier (POTA) to achieve the tradeoff between resolution and power of the MDAC, which makes the MDAC suitable for a 12 bit SHA-less pipelined ADC. The prototype of the proposed pipelined ADC is implemented in an SMIC CMOS 0.18 μm 1P6M process. Experimental results demonstrate that power of the proposed ADC varies from 15.4 mW (10 MHz) to 63 mW (100 MHz) while maintaining an SNDR of 60.5 to 63 dB at all sampling rates. The differential nonlinearity and integral nonlinearity without any calibration are no more than 2.2/-1 LSB and 1.6/-1.9 LSB, respectively.展开更多
为研究多间隙灭弧结构遭雷电过电压击穿后熄灭工频续流电弧的能力,分析了多间隙灭弧室内的灭弧过程及可能的熄弧方式,并基于Mayr电弧模型理论,针对10 k V电压等级,建立了多间隙灭弧结构击穿后的电弧动态模型,计算了工频续流过零时电弧...为研究多间隙灭弧结构遭雷电过电压击穿后熄灭工频续流电弧的能力,分析了多间隙灭弧室内的灭弧过程及可能的熄弧方式,并基于Mayr电弧模型理论,针对10 k V电压等级,建立了多间隙灭弧结构击穿后的电弧动态模型,计算了工频续流过零时电弧的熄灭过程,对影响熄弧效果的因素进行了分析;最后利用冲击与工频续流试验相结合的联合试验平台对具有多间隙结构的装置进行了联合试验。仿真与试验结果表明:较小的时间常数以及较高的耗散功率有利于工频续流电弧的熄灭,而多间隙灭弧结构能拉长电弧的特点能同时满足以上两点要求;联合试验时,多间隙灭弧结构能在闪络后的续流阶段快速熄灭电弧,熄弧发生在续流的第一个过零点时刻,熄弧后随着工频电压的恢复,该结构不会发生再次击穿;由于电弧在工频续流阶段存在一定的弧道压降,可保证输电线路不会发生短路性过流保护引发的跳闸事故。展开更多
基金supported by the National Natural Science Foundation of China(Nos.61234002,61006028)the National High-Tech Program of China(Nos.2012AA012302,2013AA014103)the PhDProgram Foundation of Ministry of Education of China(No.20120203110017)
文摘A programmable high precision multiplying DAC (MDAC) is proposed. The MDAC incorporates a frequency-current converter (FCC) to adjust the power versus sampling rate and a programmable operational am- plifier (POTA) to achieve the tradeoff between resolution and power of the MDAC, which makes the MDAC suitable for a 12 bit SHA-less pipelined ADC. The prototype of the proposed pipelined ADC is implemented in an SMIC CMOS 0.18 μm 1P6M process. Experimental results demonstrate that power of the proposed ADC varies from 15.4 mW (10 MHz) to 63 mW (100 MHz) while maintaining an SNDR of 60.5 to 63 dB at all sampling rates. The differential nonlinearity and integral nonlinearity without any calibration are no more than 2.2/-1 LSB and 1.6/-1.9 LSB, respectively.
文摘为研究多间隙灭弧结构遭雷电过电压击穿后熄灭工频续流电弧的能力,分析了多间隙灭弧室内的灭弧过程及可能的熄弧方式,并基于Mayr电弧模型理论,针对10 k V电压等级,建立了多间隙灭弧结构击穿后的电弧动态模型,计算了工频续流过零时电弧的熄灭过程,对影响熄弧效果的因素进行了分析;最后利用冲击与工频续流试验相结合的联合试验平台对具有多间隙结构的装置进行了联合试验。仿真与试验结果表明:较小的时间常数以及较高的耗散功率有利于工频续流电弧的熄灭,而多间隙灭弧结构能拉长电弧的特点能同时满足以上两点要求;联合试验时,多间隙灭弧结构能在闪络后的续流阶段快速熄灭电弧,熄弧发生在续流的第一个过零点时刻,熄弧后随着工频电压的恢复,该结构不会发生再次击穿;由于电弧在工频续流阶段存在一定的弧道压降,可保证输电线路不会发生短路性过流保护引发的跳闸事故。