Title :
A mixed-signal ASIC in CMOS technology for industrial AC current sensing with galvanic isolation
Author :
Frick, V. ; Poure, Philippe ; Hebrard, Luc ; Braun, Fabian
Author_Institution :
LEPSI, Univ. Louis Pasteur, Strasbourg
Abstract :
Numerous industrial applications such as power control or automotive appliances require low cost and reduced-size current measurement systems. Measuring current with galvanic isolation mainly rhymes with sensing the magnetic field produced by this current. However, integrated on the same substrate the sensing device together with its conditioning electronics is challenging. This paper presents an alternative to conventional current transformer widely used for industrial range current sensing. It proposes a low cost mixed-signal ASIC in CMOS technology for 5A nominal AC current measurement with 5kV galvanic isolation and 0.5% accuracy over 1.5kHz bandwidth, which allows up to 30th (25th) harmonic detection in 50Hz (60Hz) applications. It features an AC current sensing front-end based on Hall effect devices with its self-balancing differential analog signal conditioning. First, the current measurement principle and the resulting ASIC architecture are discussed. Then, the embedded self-balancing control unit achieving the auto-balancing sequence is detailed and functional simulation results using VHDL-AMS language are presented. Finally, the final ASIC prototype is presented with experimental auto-balancing and current measurement results.
Keywords :
CMOS integrated circuits; application specific integrated circuits; electric current measurement; electric sensing devices; mixed analogue-digital integrated circuits; 1.5 kHz; 5 A; 5 kV; 50 Hz; 60 Hz; AC current measurement; CMOS technology; Hall effect devices; VHDL-AMS language; automotive appliances; embedded self-balancing control unit; galvanic isolation; harmonic detection; industrial AC current sensing; industrial applications; mixed-signal ASIC; power control; self-balancing differential analog signal conditioning;
Conference_Titel :
Industrial Electronics, 2002. ISIE 2002. Proceedings of the 2002 IEEE International Symposium on
Print_ISBN :
0-7803-7369-3
DOI :
10.1109/ISIE.2002.1026048