Title :
An on-chip programmable multichannel power supply for a lab-on-chip platform
Author :
Bouali, Moez ; Auclair, Benoit ; Sawan, Mohamad ; Miled, Amine
Author_Institution :
Dept. of Elec. Eng., Polytech. Montreal, Montreal, QC, Canada
Abstract :
This paper presents a reprogrammable low-voltage power-supply integrated circuit for low resistive load down to 180 Ω. The achieved chip is dedicated for biomedical lab-on-chip (LoC) platforms. The proposed system includes two positive and two negative fully independent output voltage channels. Each positive and negative channel provides a reprogrammable DC output which varies from 14.23 mV to 1.42 V and -1.54 V to 0 V, respectively. Each channel is controlled through a reprogrammable reference voltage circuit with an 8-bit digital to analog converter (DAC). A wireless real-time control of output signals amplitude is performed with LabVIEW and FPGA-based interface. The proposed architecture is implemented with 0.18 μm 3.3 V 1-poly 6-metal CMOS technology. The chip area is 1.5 mm2. Post-layout simulations show that the minimum voltage step is 12.21 mV. The accuracy of output voltage is 5 mV and the measured power consumption is 35 mW.
Keywords :
CMOS integrated circuits; biomedical electronics; digital-analogue conversion; field programmable gate arrays; lab-on-a-chip; medical signal processing; power supply circuits; virtual instrumentation; 1-poly 6-metal CMOS technology; FPGA-based interface; LabVIEW-based interface; biomedical lab-on-chip platforms; eight-bit digital-to-analog converter; low-resistive load; on-chip programmable multichannel power supply; power consumption; reprogrammable low-voltage power-supply integrated circuit; resistance 180 ohm; size 0.18 mum; voltage -1.54 V to 0 V; voltage 14.23 mV to 1.42 V; voltage 3.3 V; CMOS integrated circuits; Power supplies; Regulators; System-on-chip; Transistors; Voltage control; Voltage measurement; Complementary metal-oxide semiconductor (CMOS) integrated circuits; DAC; Low Dropout Voltage regulator; Reprogrammable power supply;
Conference_Titel :
Bioelectronics and Bioinformatics (ISBB), 2014 IEEE International Symposium on
Conference_Location :
Chung Li
Print_ISBN :
978-1-4799-2769-2
DOI :
10.1109/ISBB.2014.6820897