The present invention relates to a magnetic resonance examination system
(10) and to a method of operating such a magnetic resonance examination
system (10). In particular the present invention relates to a magnetic
resonance examination system (10) comprising a superconducting main
magnet (20) surrounding an examination region (18) and generating a main
magnetic field in the examination region (18), and further comprising a
magnetic field gradient system (30) selectively causing alternating
gradient magnetic fields in the examination region (18), said magnetic
field gradient system (30) being coupled to the main magnet (20). In
order to provide a technique to reliably detect a quench of the
superconducting main magnet (20) of such a magnetic resonance examination
system (10) a detecting device (91) is suggested for detecting an
emerging quench of the main magnet (20), said detecting device (91) being
adapted to operate in different modes depending on the mode of operation
of the magnetic resonance examination system (e.g. ramp-up, ramp-down or
continuous operation).