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1)  lagging strand
后随链,延迟链
2)  delay chain
延迟链
1.
Frequency measurement method based on delay chain;
基于延迟链的频率测量方法
2.
A factorjzation algorithm for linear-phase paraunitary filter banks with optimized delay chains;
一种优化延迟链结构的线性相位准正交数字滤波器组的算法
3.
It collects output signals from the delay chain at the same time in order to enhance the randomness of the output sequence.
本文分析和实现了一种基于FPGA的真随机数发生器,采用对延迟链各级输出同时采样的方法来增加输出序列的随机性。
3)  link delay
链路延迟
1.
Modeling internet link delay based on measurement
测量的Intnernet链路延迟建模
2.
By dealing with the raw giant data samples authorized by CAIDA,we obtain one-way link delay.
通过对CAIDA机构授权的原始海量样本数据处理得到单向链路延迟,在此基础上计算了路径上最大的链路延迟对端到端延迟的比例以及路径上链路个数分布,基于此定义了支配延迟。
3.
Furthermore,a research on the relationship between the traveling diameter and the traveling time from the whole and local data samples supposed that link delay was the leading cause for the great variance of the traveling time,and a revising algorithm was proposed to process the raw data samples to .
在此基础上对Internet的访问直径与访问时间之间的关系从整体和局部样本进行研究,认为链路延迟是导致相近的访问直径其访问时间相差较大的主要原因,并提出修正算法从样本数据得到链路延迟。
4)  delay line
延迟链
1.
Traditional DLL design using only one layer of delay line faces the contradiction between the number of delay units and precision,resulting in huge amount of logic resource and chip area.
新设计创新性地采用多层次延迟链的结构,分粗、细、微调3级逐次进行延迟补偿。
2.
Experiments show that the proposed method has solved the problem of the traditional multi-phase sampling approach,to which phase shift resolution is decreased with the frequency increasing,so that the fine resolution can be obtained by limiting delay lines and no increase of counting clocks.
该方法在现场可编程门阵列(FPGA)中实现了脉冲计数法、多相采样法和延迟链法的结合。
5)  lagging strand
后随链
6)  data link delay
数据链延迟
1.
A digital simulation to investigate data link delay effects on the accuracy of the weapon guided via human operator is described.
在分析武器操作员在捕控指令末制导阶段操作的基础上,进行了人在回路的全数字仿真,分析了数据链延迟对捕控指令电视末制导精度的影响。
补充资料:后随链
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性质:又称滞后链。在DNA复制过程中,以复制叉向前移动的方向为标准,一条模板链是3′→5′走向,在其上DNA能以5′→3′方向连续合成,成为前导链;另一条模板链,是5′→3′走向,在其上也是从5′→3′方向合成,但是与复制叉移动的方向正好相反,所以随着复制叉的移动,形成许多不连续的片段。最后这些片段被连成一条完整的DNA链。该链称之为后随链。

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