DocumentCode :
154002
Title :
All-digital self-adaptive PVTA variation aware clock generation system for DFS
Author :
Perez-Puigdemont, Jordi ; Calomarde, Antonio ; Moll, Francesc
Author_Institution :
Dept. of Electron. Eng., Univ. Politec. de Catalunya, Barcelona, Spain
fYear :
2014
fDate :
Sept. 29 2014-Oct. 1 2014
Firstpage :
1
Lastpage :
4
Abstract :
An all-digital self-adaptive clock generation system capable of adapt the clock frequency to compensate the effects of PVTA variations on the IC propagation delay and satisfy an externally set propagation length condition is presented. The design uses time-to-digital converters (TDCs) to measure the propagation length and a variable length ring oscillator (VLRO) to synthesize the clock signal. The VLRO naturally adapts its frequency to the PVTA variations suffered by its logic gates while the TDCs are used to track these variations across the chip and modify the VLRO length in order to adapt the clock frequency to them. The system measurements, for a 45nm FPGA, show that it adapts the VLRO length, and therefore the clock frequency, to satisfy the propagation length condition. Measurements also prove the system capabilities to act as a dynamic frequency scaling clock source since the propagation length condition value act as a frequency selection input and a strong linear relation between the input value and the resultant clock period is present.
Keywords :
clock and data recovery circuits; integrated logic circuits; logic gates; time-digital conversion; DFS; IC propagation delay; all digital self adaptive PVTA variation aware clock generation system; clock frequency; logic gates; propagation length condition; size 45 nm; time to digital converters; variable length ring oscillator; Adaptive systems; Clocks; Delays; Propagation delay; Registers; Sensors; Table lookup;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
CMOS Variability (VARI), 2014 5th European Workshop on
Conference_Location :
Palma de Mallorca
Type :
conf
DOI :
10.1109/VARI.2014.6957084
Filename :
6957084
Link To Document :
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