DocumentCode :
1968053
Title :
On-chip multi-GHz clocking with transmission lines
Author :
Mizuno, M. ; Anjo, K. ; Surni, Y. ; Wakabayashi, H. ; Mogami, T. ; Horiuchi, T. ; Yamashina, M.
Author_Institution :
NEC Corp., Sagamihara, Japan
fYear :
2000
fDate :
9-9 Feb. 2000
Firstpage :
366
Lastpage :
367
Abstract :
In the production of high-speed LSIs, clocking becomes a performance limiter when the clock frequency increases to one gigahertz and beyond. The major obstacles to the reduction of clock-skew are: (1) clock-skew sensitivity to variations in device parameters, supply voltages, and temperatures, (2) inductive effects, which are complicated by the resistance reduction needed for faster signal transmission in such networks as grid or fish-bone clocking networks and (3) power consumption. Taking advantage of the effect of inductance and using a 100 mm/sup 2/ 5 GHz clocking network overcomes these obstacles. The network is notable for (1) 20 ps pp clock skew due to a clock tree/grid structure that takes light speed into consideration, (2) controllability of characteristic impedance due to a multilayered and patterned ground plane microstrip structure, (3) high immunity to process and power supply variations due to use of impedance-controlled transmission line effects, and (4) 66% power reduction due to reflected wave recycling.
Keywords :
clocks; high-speed integrated circuits; inductance; integrated circuit interconnections; large scale integration; transmission lines; 5 GHz; characteristic impedance; clock frequency; clock skew; clock tree/grid structure; device parameters; fish-bone clocking networks; high-speed LSIs; impedance-controlled transmission line effects; inductive effects; microstrip structure; on-chip multigigahertz clocking; patterned ground plane; power consumption; power supply variations; reflected wave recycling; resistance reduction; signal transmission; supply voltages; transmission lines; Clocks; Energy consumption; Frequency; Impedance; Inductance; Power transmission lines; Production; Temperature sensors; Transmission lines; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference, 2000. Digest of Technical Papers. ISSCC. 2000 IEEE International
Conference_Location :
San Francisco, CA, USA
ISSN :
0193-6530
Print_ISBN :
0-7803-5853-8
Type :
conf
DOI :
10.1109/ISSCC.2000.839818
Filename :
839818
Link To Document :
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