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A 12-bit 100 MSPS Full-Swing Current-Steering Digital-to-Analog Converter with Half-Power Supply Calibration Techniqueopen access

Authors
Park, KwangjinChoi, Seung GuKim, JintaeKim, MyungsikSong, HyunjinSong, MinkyuKim, Soo Youn
Issue Date
Oct-2025
Publisher
MDPI
Keywords
digital-to-analog converter; full-swing DAC; differential non-linearity; foreground calibration
Citation
Electronics, v.14, no.19, pp 1 - 13
Pages
13
Indexed
SCIE
SCOPUS
Journal Title
Electronics
Volume
14
Number
19
Start Page
1
End Page
13
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/61902
DOI
10.3390/electronics14193955
ISSN
2079-9292
2079-9292
Abstract
We present a digital-to-analog converter (DAC) with full-swing DAC output and a proposed half-power supply calibration technique. To generate a full-swing DAC output, symmetric thermometer decoders and an output selector are implemented to select the appropriate current cell according to the output voltage range. Furthermore, to improve the linearity, we propose a half-power supply calibration circuit consisting of comparators and calibration counters to control the current of the current cells at the half-power supply voltage point, where the voltage mismatch typically occurs. The DAC was fabricated in a 28 nm CMOS process, with a full chip area of 0.95 mm x 0.93 mm. The measurement results demonstrate a maximum voltage mismatch improvement of 95% when using the proposed half-power supply calibration technique, with DNL and INL values of 0.39 and 1.15 LSB. The total power consumption was 73.8 mW at 100 MSPS, with analog and digital supply voltages of 1.8 and 1.0 V, respectively.
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