Title :
A two-step 5b logarithmic ADC with minimum step-size of 0.1% full-scale for MLC phase-change memory readout
Author :
Ji-Wook Kwon ; Dong-Hwan Jin ; Hyeon-June Kim ; Sun-Il Hwang ; Min-Chul Shin ; Jong-Ho Kang ; Seung-Tak Ryu
Author_Institution :
Korea Adv. Inst. of Sci. & Technol., Daejeon, South Korea
Abstract :
A compact two-step 5b logarithmic ADC is designed for the readout application of multi-level cell phase-change memory (PCM). A bleeding-current-assisted regulated-cascode stage accurately converts the wide-dynamic range resistance of a PCM cell into a current. The designed ADC is composed of a logarithmic 2b current-mode flash ADC as a coarse ADC and a logarithmic 3b time-to-digital converter as a fine ADC with redundancy, resulting in compact size and low power consumption. The minimum step-size of the ADC is 0.1% of the full scale and the conversion time is 100 ns. The chip was fabricated in a 65 nm CMOS and the width of a single channel ADC is 15 μm. Single-channel ADC consumes 108 μW at 10 MS/s conversion rate under a 1.2 V supply.
Keywords :
CMOS memory circuits; analogue-digital conversion; flash memories; low-power electronics; phase change memories; time-digital conversion; ADC design; CMOS; MLC phase-change memory readout; bleeding-current-assisted regulated-cascode stage; coarse ADC; compact size; compact two-step 5b logarithmic ADC; conversion rate; conversion time; fine ADC; logarithmic 2b current-mode flash ADC; logarithmic 3b time-to-digital converter; low-power consumption; multilevel cell PCM; multilevel cell phase-change memory; power 108 muW; single-channel ADC; size 15 mum; size 65 nm; time 100 ns; voltage 1.2 V; wide-dynamic range resistance; Accuracy; Computer architecture; Microprocessors; Mirrors; Phase change materials; Phase change memory; Resistance; logarithmic ADC; multi-level cell; phase-change memory; resistance-to-current converter (R2I);
Conference_Titel :
Custom Integrated Circuits Conference (CICC), 2014 IEEE Proceedings of the
Conference_Location :
San Jose, CA
DOI :
10.1109/CICC.2014.6946034