A low power 10-bit CMOS cyclic D/A converter with an improved Johnson counter and a capacitor swapping technique

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초록

A 10-bit CMOS cyclic D/A converter based on an improved Johnson counter and a capacitor swapping technique is described. In order to reduce the capacitor mismatching errors, we propose that two capacitors are alternately swapped depending on the input data. Further, a half differential architecture to reduce offset errors and an improved Johnson counter are also discussed. With a 0.35 A mu m Samsung CMOS technology, the measured SFDR is about 65 dB, when the input frequency is 1 MHz at a clock frequency of 2 MHz. The power consumption is only 240 A mu W at 3.3 V power supply. The measured INL and DNL are within +/- 0.7 and +/- 0.7 LSB, respectively.

키워드

Cyclic D/A converter (DAC)Improved Johnson counterCapacitor swapping techniqueDAC
제목
A low power 10-bit CMOS cyclic D/A converter with an improved Johnson counter and a capacitor swapping technique
저자
Lee, SeongjooSong, Minkyu
DOI
10.1007/s10470-014-0380-3
발행일
2014-10
유형
Article
저널명
Analog Integrated Circuits and Signal Processing
81
1
페이지
165 ~ 172