학술논문

Analysis and optimization of a SAR ADC with attenuation capacitor
Document Type
Conference
Source
2014 37th International Convention on Information and Communication Technology, Electronics and Microelectronics (MIPRO) Information and Communication Technology, Electronics and Microelectronics (MIPRO), 2014 37th International Convention on. :68-73 May, 2014
Subject
Bioengineering
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Robotics and Control Systems
Signal Processing and Analysis
Capacitance
Arrays
Capacitors
Switches
Standards
Power demand
Topology
ADC
analog-to-digital conversion
nonlinearity
mismatch
asynchronous logic
successive approximation register
Language
Abstract
The conventional binary weighted array SAR ADC is the common topology adopted to achieve high efficiency conversion, i.e. with less than 10 fJ/conversion-step, even requiring extra effort to design and simulate full custom sub-fF capacitors. This paper presents the design and the optimization of an asynchronous SAR ADC with attenuation capacitor achieving an efficiency similar to conventional binary weighted array converters but adopting standard MiM capacitors. A monotonic switching algorithm further reduces the capacitive array consumption while an asynchronous and fully-differential dynamic logic minimizes the digital power consumption. A 10-bit prototype has been fabricated in a 0.13-μm CMOS technology. At 0.5-V supply and 200-kSps sampling frequency, the ADC achieves a SNDR of 52.6 dB, an ENOB of 8.45, and a power consumption of 420 nW, corresponding to a figure-of-merit (FOM) of 6 fJ/conversion-step. This efficiency is comparable to the best results published so far and it's the lowest among ADCs in 130-nm or less scaled technology. The ADC core occupies an area of only 0.045 mm 2 .