DocumentCode :
1761092
Title :
Circuits for a Cubic-Millimeter Energy-Autonomous Wireless Intraocular Pressure Monitor
Author :
Ghaed, Mohammad Hassan ; Chen, Gang ; Haque, Razi-ul ; Wieckowski, Michael ; Yejoong Kim ; Gyouho Kim ; Yoonmyung Lee ; Inhee Lee ; Fick, David ; Daeyeon Kim ; Mingoo Seok ; Wise, K.D. ; Blaauw, D. ; Sylvester, Dennis
Author_Institution :
Univ. of Michigan, Ann Arbor, MI, USA
Volume :
60
Issue :
12
fYear :
2013
fDate :
Dec. 2013
Firstpage :
3152
Lastpage :
3162
Abstract :
Circuit blocks for a 1.5 mm3 microsystem enable continuous monitoring of intraocular pressure. Due to power and form-factor limitations, circuit blocks are designed at nanowatt power levels not completely explored before. The system includes a 75% efficient 90 nW DC-DC converter which is the most efficient reported sub- μW converter in literature. It also includes a novel 4.7 nJ/bit FSK radio that achieves 10 cm of transmission range at 10 -6 BER which is also the lowest number reported for short-range through-tissue wireless links for biomedical implants. A MEMS capacitive sensor and ΣΔ capacitance-to-digital converter measure IOP with 0.5 mmHg accuracy. A microcontroller processes and saves IOP data and stores it in a 2.4 fW/bitcell SRAM. The microsystem harvests a maximum power of 80 nW in sunlight with a light irradiance of 100 mW/cm2 AM 1.5 from an integrated 0.07 mm2 solar cell to recharge a 1 mm2 1 μAh thin-film battery and power the load circuits. The design achieves zero-net-energy operation with 1.5 hours of sunlight or 10 hours of bright indoor lighting daily.
Keywords :
CMOS memory circuits; DC-DC power convertors; SRAM chips; bioMEMS; biological tissues; biomedical equipment; capacitive sensors; error statistics; frequency shift keying; microcontrollers; microsensors; patient monitoring; prosthetic power supplies; solar cells; thin film devices; DC-DC converter; FSK radio; IOP data; MEMS capacitive sensor; biomedical implants; capacitance-digital converter; circuit blocks; cubic-millimeter energy-autonomous wireless intraocular pressure monitor; fW-bitcell SRAM; form-factor limitations; intraocular pressure; load circuits; microcontroller processes; microsystem enable continuous monitoring; nanowatt power levels; power 80 nW; power 90 nW; power circuits; power limitations; short-range through-tissue wireless links; solar cell; thin-film battery; time 1.5 hour; time 10 hour; zero-net-energy operation; Capacitance; Clocks; Microprocessors; Monitoring; Random access memory; Transceivers; Wireless communication; Biomedical monitoring; CMOS memory integrated circuits; digital signal processors; photovoltaic power systems; radio transceivers; sensor systems;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2013.2265973
Filename :
6585815
Link To Document :
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