DocumentCode :
3603646
Title :
Functional and Consumption Analysis of Integrated Circuits Supplied by Inductive Power Transfer by Powering Modulation and Lock-In Infrared Imaging
Author :
Leon, J. ; Perpina, X. ; Sacristan, J. ; Vellvehi, M. ; Baldi, A. ; Jorda, X.
Author_Institution :
Centro Nac. de Microelectron., Inst. de Microelectron. de Barcelona, Barcelona, Spain
Volume :
62
Issue :
12
fYear :
2015
Firstpage :
7774
Lastpage :
7785
Abstract :
The functionality and consumption of a Radio Frequency IDentification Integrated Circuit (RFID IC) supplied by inductive power transfer has been noninvasively analyzed. This has been done by means of an InfraRed Lock-In Thermography (IR-LIT) system and frequency modulating the RFID IC powering scheme by biasing the external powering coil considering several amplitude modulation waveforms. This generates thermal harmonics at the beating frequency in all IC blocks, enabling their detection as heat sources by IR-LIT. The main aspects addressed in this investigation have been the following: the suitability study of the proposed modulation strategies, the characterization of the coupling between coils and its effects on the RFID blocks, the RFID IC functional analysis, and the dependence of the local energy consumption on the total power delivered to the die. In addition, it has been determined that the RFID IC presents a dysfunction due to the deactivation of some blocks during operation. Results suggest that this unexpected behavior is due to a desynchronization between some of the RFID blocks. Consequently, this stops the internal control signal, deactivates some specific RFID blocks, and ceases the back-telemetry block operation.
Keywords :
amplitude modulation; coils; energy consumption; inductive power transmission; infrared imaging; integrated circuit interconnections; radiofrequency identification; IR-LIT system; amplitude modulation waveform; back-telemetry block; consumption analysis; desynchronization; energy consumption; functional analysis; heat source; inductive power transfer; infrared lock-in thermography system; lock-in infrared imaging; powering coil; powering modulation; radio frequency identification integrated circuit; thermal harmonic; Couplings; Frequency modulation; Heating; Integrated circuits; Radiofrequency identification; Inductive Power Transfer; Inductive power transfer; Lock-in Infrared Imaging; Non-invasive Functional Analysis; RFID IC’s; RFID ICs; lock-in infrared imaging; noninvasive functional analysis;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2015.2455024
Filename :
7154491
Link To Document :
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