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8.2 Dealing with electromagnetic in-
teractions
Although electromagnetic interference of
the ASSKEA secretion aspirators M- and S-
series has been reduced to a minimum, elec-
tromagnetic disturbances between the ASS-
KEA secretion aspirators M- and S-series and
other devices cannot be excluded. Therefore
you should comply with the specified re-
quirements and instructions regarding the
permissible electromagnetic environment in
any case and monitor the ASSKEA secretion
aspirators M- and S-series in order to ensu-
re proper operation and to prevent adverse
events for patients and users. Select another
location for the ASSKEA secretion aspirators
M- and S-series if the permissible electro-
magnetic environment cannot be ensured
or if you have observed functioning of the
ASSKEA secretion aspirators M- and S-se-
ries or of other devices in the vicinity that is
not intended.
8.3 List of all cables and transformers
replaceable by the user
a) ASSKEA S-series
Name
Specification
Maximum
length
Mains cable
Type: H05VV-F
2x1,0 mm²
Technical data:
230 V~, 50 Hz
2.5 m
b) ASSKEA M-series
Name
Specification
Maximum
length
Power
supply unit
incl.
connecting
cable
Type: GTM91099-
6015-3.0-T2
Technical data:
100-240 V~, 50-
60 Hz, 1.5 A (in)
12 V DC, 5 A (out)
1.20 m
Mains cable
Type: H03VVH2-F
Technical data:
250 V~, 2.5 A
1.80 m
Since electromagnetic propagation is affec-
ted by absorption and reflection from struc-
tures, objects and people and since the field
strength from fixed transmitters cannot be
predicted in advance with accuracy, a site
survey of the electromagnetic phenomena
at the location at which the ASSKEA sec-
retion aspirators M- and S-series shall be
operated should be considered to assess the
existing electromagnetic environment at this
location. If unusual performance is detected,
additional measures may be required, for
example a modified orientation or another
location for the ASSKEA secretion aspirators
M- and S-series. If the essential functions of
the ASSKEA secretion aspirators M- and S-
series are impaired by electromagnetic dis-
turbances, a reduced or non-existent flow
rate and vacuum may be expected.