DocumentCode :
1177186
Title :
A wideband frequency-shift keying wireless link for inductively powered biomedical implants
Author :
Ghovanloo, Maysam ; Najafi, Khalil
Author_Institution :
Dept. of Electr. & Comput. Eng., North Carolina State Univ., Raleigh, NC, USA
Volume :
51
Issue :
12
fYear :
2004
Firstpage :
2374
Lastpage :
2383
Abstract :
A high data-rate frequency-shift keying (FSK) modulation protocol, a wideband inductive link, and three demodulator circuits have been developed with a data-rate-to-carrier-frequency ratio of up to 67%. The primary application of this novel FSK modulation/demodulation technique is to send data to inductively powered wireless biomedical implants at data rates in excess of 1 Mbps, using comparable carrier frequencies. This method can also be used in other applications such as radio-frequency identification tags and contactless smartcards by adding a back telemetry link. The inductive link utilizes a series-parallel inductive-capacitance tank combination on the transmitter side to provide more than 5 MHz of bandwidth. The demodulator circuits detect data bits by directly measuring the duration of each received FSK carrier cycle, as well as derive a constant frequency clock, which is used to sample the data bits. One of the demodulator circuits, digital FSK, occupies 0.29 mm2 in the AMI 1.5-μm, 2M/2P, standard CMOS process, and consumes 0.38 mW at 5 V. This circuit is simulated up to 4 Mbps, and experimentally tested up to 2.5 Mbps with a bit error rate of 10-5, while receiving a 5/10-MHz FSK carrier signal. It is also used in a wireless implantable neural microstimulation system.
Keywords :
CMOS integrated circuits; biomedical communication; biomedical electronics; coupled circuits; demodulators; frequency shift keying; prosthetics; radio equipment; CMOS process; FSK carrier signal; FSK modulation/demodulation technique; back telemetry link; carrier frequencies; contactless smartcards; demodulator circuits; high data-rate frequency-shift keying modulation protocol; inductive coupling; inductively powered biomedical implants; radio-frequency identification tags; series-parallel inductive-capacitance tank combination; wideband frequency-shift keying wireless link; wideband inductive link; wireless implantable neural microstimulation system; Circuit testing; Demodulation; Frequency modulation; Frequency shift keying; Implants; Protocols; Radio frequency; Radiofrequency identification; Telemetry; Wideband; 65; Biomedical implants; CMOS; FSK; RF; RF idenitifcation; RFID; data rate; demodulator; frequency-shift keying; inductive coupling; radio frequency; wireless;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2004.838144
Filename :
1364109
Link To Document :
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