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- W2553388259 endingPage "01AH03" @default.
- W2553388259 startingPage "01AH03" @default.
- W2553388259 abstract "Abstract The power sources of wearable sensors play a key role in sensing-system architecture. As potential power sources for sensors monitoring physiological signals near the human body, biofuel cells, which generate energy from the biological environment through chemical methods, have attracted much attention. However, the insufficient open-circuit voltage of biofuel cells owing to thermodynamic limitation is a basic issue. Thus, the use of biofuel cells as a power supply for a sensor imposes a strict limitation upon the power budget. In this report, we propose a design methodology for a low-voltage supply-sensing CMOS biosensor using biofuel cells. To explore the design methodology for performance optimization, a SPICE simulation was conducted. The simulated results reveal an optimum energy-efficient point in the biosensor design parameters. A fabricated 250 nm CMOS test chip was used to verify the validity of the design methodology and the measurement results matched the simulated results." @default.
- W2553388259 created "2016-11-30" @default.
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- W2553388259 date "2016-11-08" @default.
- W2553388259 modified "2023-10-17" @default.
- W2553388259 title "Energy-efficient and low-voltage design methodology for a supply-sensing CMOS biosensor using biofuel cells for energy-autonomous healthcare applications" @default.
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- W2553388259 doi "https://doi.org/10.7567/jjap.56.01ah03" @default.
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