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Home > english-chinese > "串扰噪声" in Chinese

Chinese translation for "串扰噪声"

crosstalk noise

Related Translations:
微扰样品:  perturbation sample
:  Ⅰ动词1.(连贯) string together 短语和例子贯串 run through; permeate; 把珠子串起来 string the beads together2.(勾结) conspire; gang up 短语和例子串骗 gang up and swindle sb.3.(错误地连接) get things mixed up 短语和例子电话串线 get
记忆串串:  colorful memortmemories
串串金:  jasminum nudiflorum
串 串操作:  serial serial operation
公式串:  string of formulas
串接线:  tandem transit routing
串场:  the joint
信息串:  information series
串接:  base downbase upcascade connectionconcatenationconnect in seriesjoining up inseriestandem connection
Example Sentences:
1.Cross point assignment algorithm with crosstalk constraint
串扰噪声约束下的过点分配算法
2.19 he l , chang n , lin s , nakagawa o s . an efficient inductance modeling for on - chip interconnects . in proc
我们提出了三种新的方法,在满足串扰噪声约束的前提下有效地减少了屏蔽线面积。
3.Experiment results show that this algorithm can identify static crosstalk that destroy circuits function and provide accurate information for ic back - end optimization
实验表明,通过验证噪声幅值和宽度指标,算法准确地识别出对电路逻辑功能产生影响的静态串扰噪声,为ic设计的后端优化提供了准确信息。
4.Traditional static crosstalk identification methods identify crosstalk targets only using coupling capacitance and noise amplitude information , which lead to the pessimistic results and induce a long time to ic design convergence
摘要传统的静态串扰噪声识别算法只验证耦合电容和噪声幅值信息,没有考虑噪声宽度对电路逻辑功能的影响,所以给出的结果过于保守,导致设计收敛的时间被延长。
5.An algorithm to resolve the coupling effect problem is proposed during the cross point assignment ( cpa ) stage . in the algorithm , the priority queue concept and the rip - up and reroute strategy are combined to control crosstalk noise caused by interconnect coupling capacitance . first , the nets are arranged into different priority queues according to their weighted sum of their length and criticality . then , the cpa problem for one queue of nets is translated into a linear assignment problem . after the assignment of one queue of nets , a post - cpa checking routine is performed to check and rip up the net pairs which violate the crosstalk noise constraint and then push them into the next queue to be reassigned . the algorithm is tested by a set of bench mark examples , and the experimental results are promising
提出了一种在过点分配阶段解决噪声耦合效应问题的算法.该算法采用优先队列同拆线重布策略相结合的方法,控制由互连线耦合电容引起的串扰噪声.算法中,首先按照线长和约束限制,将线网划分到若干个优先队列中.然后,将每个优先队列的过点分配问题转换为线性分配问题.在完成一个线网队列的分配后,通过过点分配后处理过程检查串扰约束满足情况,对违反约束的线网对进行拆除,放入后续线网队列进行重新分配.实验数据表明,该算法能够取得好的效果
6.A algorithm is presented to identify dynamic crosstalk noise . in the course of dynamic crosstalk noise identification , hybrid timing analysis is used to provide accurate signal arrival time , which can provide more accurate timing information than static timing analysis . at the same time , a novel test generation is chosen to verify the correlation of signals . so dynamic crosstalk noise can be identified by these accurate timing and logic information
提出了动态串扰噪声的识别算法.针对基于传统静态时序分析的结果过于保守的缺点,本算法引入了混合时序分析,缩小了时间窗区间,为动态串扰噪声的识别提供了准确的时序信息,与此同时,通过测试生成来验证信号间的逻辑关系,根据这些准确的时序及逻辑信息,识别出动态串扰噪声
7.Abstract : an algorithm to resolve the coupling effect problem is proposed during the cross point assignment ( cpa ) stage . in the algorithm , the priority queue concept and the rip - up and reroute strategy are combined to control crosstalk noise caused by interconnect coupling capacitance . first , the nets are arranged into different priority queues according to their weighted sum of their length and criticality . then , the cpa problem for one queue of nets is translated into a linear assignment problem . after the assignment of one queue of nets , a post - cpa checking routine is performed to check and rip up the net pairs which violate the crosstalk noise constraint and then push them into the next queue to be reassigned . the algorithm is tested by a set of bench mark examples , and the experimental results are promising
文摘:提出了一种在过点分配阶段解决噪声耦合效应问题的算法.该算法采用优先队列同拆线重布策略相结合的方法,控制由互连线耦合电容引起的串扰噪声.算法中,首先按照线长和约束限制,将线网划分到若干个优先队列中.然后,将每个优先队列的过点分配问题转换为线性分配问题.在完成一个线网队列的分配后,通过过点分配后处理过程检查串扰约束满足情况,对违反约束的线网对进行拆除,放入后续线网队列进行重新分配.实验数据表明,该算法能够取得好的效果
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