DocumentCode :
3477370
Title :
A 140µA 34ppm/°C 30MHz Clock Oscillator in 28nm CMOS Bulk Process
Author :
Lahiri, Amitabha ; Tiwari, Anish
Author_Institution :
Technol. R&DGroup, STMicroelectron., Noida, India
fYear :
2013
fDate :
5-10 Jan. 2013
Firstpage :
173
Lastpage :
178
Abstract :
This paper presents a 30MHz ring based clock oscillator in 28nm CMOS bulk process embedded in a negative feedback loop achieving 0.57% peak-to-peak temperature spread (worst case process corners) from - 40°C to 125°C and consuming 140μA current from 1.8V regulated voltage supply. Since the oscillation frequency of the ring oscillator is locked to Icomp/(C*Vref) by the loop, the bias current (Icomp) and voltage (Vref) can be independently temperature compensated to achieve very low temperature spread of the frequency in our implementation. The presented design achieves a temperature spread which is 10x lower than conventional RC oscillator in spite of high temperature coefficient (363 ppm/°C) of precision resistor available in the technology and absence of complementary temperature coefficient resistors. SPICE simulation results of the designed oscillator in 28nm CMOS bulk process along with performance summary and comparisons with other works have been included.
Keywords :
CMOS integrated circuits; oscillators; CMOS bulk process; RC oscillator; SPICE simulation; bias current; current 140 muA; frequency 30 MHz; negative feedback loop; oscillation frequency; performance summary; precision resistor; ring based clock oscillator; size 28 nm; temperature -40 degC to 125 degC; temperature spread; voltage 1.8 V; worst case process corners; CMOS integrated circuits; Clocks; Oscillators; Resistors; Temperature control; Temperature sensors; Voltage control; CMOS oscillator; RC oscillator; oscillator; temperature compensation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
VLSI Design and 2013 12th International Conference on Embedded Systems (VLSID), 2013 26th International Conference on
Conference_Location :
Pune
ISSN :
1063-9667
Print_ISBN :
978-1-4673-4639-9
Type :
conf
DOI :
10.1109/VLSID.2013.184
Filename :
6472635
Link To Document :
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