DocumentCode
1114111
Title
A 9 b, 1.25 ps Resolution Coarse–Fine Time-to-Digital Converter in 90 nm CMOS that Amplifies a Time Residue
Author
Lee, Minjae ; Abidi, Asad A.
Author_Institution
Univ. of California, Los Angeles
Volume
43
Issue
4
fYear
2008
fDate
4/1/2008 12:00:00 AM
Firstpage
769
Lastpage
777
Abstract
This paper presents the design of a coarse-fine time-to-digital converter (TDC) that amplifies a time residue to improve time resolution, similar to a coarse-fine analog-to-digital converter (ADC). A new digital circuit has been developed to amplify the time residue with a higher gain (>16) and larger range (>80 ps) than existing solutions do. However, adapting the conventional coarse-fine architecture from ADCs is not an appropriate solution for TDCs: input time cannot be stored, and the gain of a time amplifier (TA) cannot be controlled precisely. This paper proposes a new coarse-fine TDC architecture by using an array of time amplifiers and two identical fine TDCs that compensate for the variation of the TA gain during the conversion process. The measured DNL and INL are plusmn0.8 LSB and plusmn3 LSB, respectively, with a value of 1.25 ps per 1 LSB, while the standard deviation of output code for constant inputs remains below 1 LSB across the TDC range. Although the nonlinearity is larger than 1 LSB, using an INL lookup table or better matched delays in the coarse TDC delay chain will improve the linearity further.
Keywords
CMOS integrated circuits; amplifiers; analogue-digital conversion; CMOS; coarse-fine analog-to-digital converter; coarse-fine architecture; coarse-fine time-to-digital converter; digital circuit; size 90 nm; time amplifier; time residue; time resolution; Analog-digital conversion; Calibration; Delay effects; Delay lines; Digital circuits; Linearity; Phase locked loops; Phase noise; Signal resolution; Time measurement; Coarse–fine architecture; open-loop residue amplification; subrange normalization; time amplifier; time-to-digital converter (TDC);
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/JSSC.2008.917405
Filename
4476497
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