Title :
An integrated smart driver for inductive loads with self-monitoring/diagnostic capability
Author :
Pasetti, G. ; Saponara, S. ; Tinfena, F. ; Serventi, R. ; D´Abramo, P. ; Fanucci, L.
Author_Institution :
Austriamicrosystems AG, Navacchio, Austria
Abstract :
This work presents a single-chip integrated Smart Driver, especially suited for inductive loads, although it can be used also for capacitive or resistive loads. The proposed smart driver has been realized in a 0.35 μm HVMOS technology. Besides the power MOS device and the relevant gate driving circuitry, the smart driver has integrated self-monitoring/diagnostic capability, it can sustain the large temperature and battery voltage variations of automotive applications, and can be directly connected through a CAN or LIN interface to a vehicle network or to a control host, thus realizing a single-chip actuator control unit. With respect to the state of the art the proposed circuit topology avoids integrating power diodes, occupying large chip area, or zener diodes. The latter are not available in low-cost HVMOS technology typically used for large volume market applications.
Keywords :
MIS devices; power semiconductor diodes; CAN interface; LIN interface; automotive applications; battery voltage variations; capacitive loads; circuit topology; inductive loads; integrated self-monitoring-diagnostic capability; integrating power diode avoidance; low-cost HVMOS technology; power MOS device; relevant gate driving circuitry; resistive loads; single-chip actuator control unit; single-chip integrated smart driver; size 0.35 mum; volume market applications; zener diodes; Automotive engineering; Batteries; Equations; Integrated circuits; Logic gates; Transient analysis; Vehicles; Automotive Electronics; High Voltage (HV) Integrated Circuits (ICs); Inductive load; Power Electronics; Smart Driver ICs;
Conference_Titel :
Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), 2012 International Symposium on
Conference_Location :
Sorrento
Print_ISBN :
978-1-4673-1299-8
DOI :
10.1109/SPEEDAM.2012.6264556