An NFC-Enabled CMOS IC for a Wireless Fully Implantable Glucose Sensor.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 26372659.
- Also identified by DOI 10.1109/JBHI.2015.2475236.
- No licence information is recorded for this record.
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Abstract
This paper presents an integrated circuit (IC) that merges integrated optical and temperature transducers, optical interface circuitry, and a near-field communication (NFC)-enabled digital, wireless readout for a fully passive implantable sensor platform to measure glucose in people with diabetes. A flip-chip mounted LED and monolithically integrated photodiodes serve as the transduction front-end to enable fluorescence readout. A wide-range programmable transimpedance amplifier adapts the sensor signals to the input of an 11-bit analog-to-digital converter digitizing the measurements. Measurement readout is enabled by means of wireless backscatter modulation to a remote NFC reader. The system is able to resolve current levels of less than 10 pA with a single fluorescent measurement energy consumption of less than 1 μJ. The wireless IC is fabricated in a 0.6-μm-CMOS process and utilizes a 13.56-MHz-based ISO15693 for passive wireless readout through a NFC interface. The IC is utilized as the core interface to a fluorescent, glucose transducer to enable a fully implantable sensor-based continuous glucose monitoring system.
Medical subject headings
- Glucose
- Prostheses and Implants
- Signal Processing, Computer-Assisted
- Telemetry
- Wireless Technology