Somha, Worawit
Loading...
Preferred name
Somha, Worawit
Main Affiliation
Email
worawit.so@kmitl.ac.th
3 results
Now showing 1 - 3 of 3
- Some of the metrics are blocked by yourconsent settings
Item type:Publication, A noise suppressing filter design for reducing deconvolution error of both-directions downward sloped asymmeric RTN long-tail distributions(2016-04-19) ;Yamauchi, HiroyukiA noise suppressing filter design technique to reduce deconvolution error of both-directions downward sloped asymmetrical long-tail distribution of the Random Telegraph Noise (RTN) is proposed. The filter is used in Lucy-Richardson-deconvolution (LRDec) iteration process. The deconvolution is required for inversely analyzing RTN long tail distribution effects on VLSI time-dependent operating margin. The proposed noise suppressing filters avoid unwanted phase misalignment between the distribution curves of feedback gain and deconvolution target for right and left tails. This results in reduction of its relative deconvolution errors by about 12-fold compared with the conventional LRDec. The accuracy of the fail-bit-count (FBC) prediction is increased by about 100-fold. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, A filter design to increase accuracy of Lucy-Richardson deconvolution for analyzing RTN mixtures effects on VLSI reliability margin(2016-02-12) ;Yamauchi, Hiroyuki; Song, Yuan QiangA filter design to improve convergence characteristics in the Lucy-Richardson-deconvolution (LRDec) iterations is proposed, which is required for inversely analyzing log-mixtures 7-segmented Random Telegraph Noise (RTN) distribution effects on VLSI reliability margin. The proposed filter alleviates unwanted phase misalignment between the two distribution curves of feedback gain and deconvoluted RTN. This contributes to reduce its relative deconvolution errors by 1.5-orders of magnitude compared with the conventional LRDec. The accuracy of the fail-bit-count (FBC) prediction is increased by 10-folds while accelerating its convergence speed by 7 times of the conventional one. This contributes not to give up on a benefit of smaller iteration cycles from LRDec. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Feedback gain phase alignment effects on convergence characteristics in Lucy-Richardson deconvolution for inversely predicting complex-shaped RTN distributions(2015-09-28) ;Yamauchi, HiroyukiA technique to prevent deconvolution object from ringing errors in Lucy-Richardson-deconvolution (LRDec) iteration cycles is proposed, which is required for inversely analyzing complex-shaped Random Telegraph Noise (RTN) effects on SRAM margin variations. The proposed feedback gain phase alignment successfully circumvents the unwanted errors and makes it possible to avoid the need to give up on a benefit (smaller iteration cycles) from LRDec. The ringing elimination in a real LRDec analysis for the complex-shaped RTN distribution comprising three different sloped segments has been demonstrated for the first time, while exploiting a quicker convergence benefit of LRDec algorithm. The proposed technique reduces its relative errors of the complex-shaped RTN deconvolution by about 10 times, compared with the conventional LRDec.
