DocumentCode
2123810
Title
A 12-bit 4-kHz incremental ADC with loading-free extended counting technique
Author
I-Jen Chao ; Chia-Chun Huang ; Ying-Cheng Wu ; Bin-Da Liu ; Chun-Yueh Huang ; Jai-Ming Lin
Author_Institution
Nat. Cheng Kung Univ., Tainan, Taiwan
fYear
2013
fDate
25-26 Feb. 2013
Firstpage
29
Lastpage
32
Abstract
In this design, a low-power incremental ADC employing the loading-free architecture for the extended counting technique is proposed. The proposed topology uses a multi-bit SAR ADC to complete the extended counting conversion, but the integrator of the preceding incremental ADC is not loaded by the DAC array of the SAR ADC, which means the opamp power can be reduced. This work adopts an incremental ADC to convert the first 5-bit MSB and a synchronous SAR ADC to convert the last 7-bit LSB, and thus totally 12-bit resolution can be obtained without calibration. The proposed topology is capable of achieving high resolution, and furthermore holds the power efficient advantage of SAR ADCs. The proposed ADC is implemented in a 0.18-μm 1P6M CMOS process. Under 4-kHz input signal bandwidth and 23.07-μW power consumption, the peak signal-to-noise and distortion ratio is 69.38 dB. The active core area including clock generator occupies of 0.33 mm2.
Keywords
analogue-digital conversion; calibration; clocks; counting circuits; digital-analogue conversion; low-power electronics; operational amplifiers; power consumption; DAC array; LSB; MSB; active core area; calibration; clock generator; distortion ratio; extended counting conversion; frequency 4 kHz; input signal bandwidth; integrator; loading-free architecture; loading-free extended counting technique; low-power incremental ADC; multibit SAR ADC; noise figure 69.38 dB; opamp power; peak signal-to-noise ratio; power 23.07 muW; power consumption; power efficient advantage; size 0.18 mum; synchronous SAR ADC; word length 12 bit; Arrays; Capacitors; Clocks; Equations; Loading; Next generation networking; Topology;
fLanguage
English
Publisher
ieee
Conference_Titel
Next-Generation Electronics (ISNE), 2013 IEEE International Symposium on
Conference_Location
Kaohsiung
Print_ISBN
978-1-4673-3036-7
Type
conf
DOI
10.1109/ISNE.2013.6512278
Filename
6512278
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