Gima HOSPI PLUS Manual De Istrucciones página 15

Aspirador quirúrgico 2 x 4 l - 230 v con pedal
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RISK OF ELECTROMAGNETIC INTERFERENCE AND POSSIBLE REMEDIES
The HOSPI PLUS SUCTION ASPIRATOR is an electro-medical device that requires particular precautions regarding electro-magnetic
This section contains information regarding the conformity of the compliance with the EN 60601-1-2 Standard.
compatibility and which must be installed and commissioned according to the electro-magnetic compatibility information supplied.
Portable and mobile radio communication devices (mobile phones, transceivers, etc.) may interfere with the medical device and
should not be used in close proximity with, adjacent to or on top of the medical device.
If such use is necessary and unavoidable, special precautions should be taken so that the electro-medical device functions properly in
its intended operating configuration (for example, constantly and visually checking for the absence of anomalies or malfunctions).
The use of accessories, transducers and cables different to those specified, with the exception of transducers and cables sold by the
appliance and system manufacturer as spare parts, can lead to an increase in emissions or in a decrease of the immunity of the device
or system. The following tables supply information regarding the EMC (Electromagnetic Compatibility) characteristics of the electro-
medical device.
The HOSPI PLUS SUCTION ASPIRATOR is intended for use in the electromagnetic environment specified below. The
customers or the user of the HOSPI PLUS SUCTION ASPIRATOR should assure that it's used in such an environment.
Emissions Test
Irradiated / Conducted
emissions CISPR11
Irradiated / Conducted
emissions CISPR11
Harmonic emissions
EN 61000-3-2
Voltage fluctuations / flicker
emissions EN 61000-3-3
The HOSPI PLUS SUCTION ASPIRATOR is intended for use in the electromagnetic environment specified below. The
customers or the user of the HOSPI PLUS SUCTION ASPIRATOR should assure that it's used in such an environment.
Immunity Test
Electrostatic discharge
(ESD)
EN 61000-4-2
Electrical fast
transient / burst
EN 61000-4-4
Surge
EN 61000-4-5
Volgate dips, short
interruptions and
voltage variations on
power supply input
lines
EN 61000-4-11
Magnetic field
EN 61000-4-8
Note U
is the value of the power supply voltage
T
Guidance and manufacturer's declaration – Electromagnetic Emissions
Compliance
Group 1
Class [B]
Class [A]
Complies
Guidance and manufacturer's declaration – Immunity Emissions
Level indicated by
Compliance
the EN 60601-1-2
± 6kV on contact
± 8kV in air
doesn't change
± 2kV power supply
lines
doesn't change
± 1kV for input /
output lines
± 1kV differential
mode
doesn't change
5%U
(>95% dip U
)
T
T
for 0.5 cycle
40%U
(>60% dip
T
U
) for 5 cycle
T
70%U
(>30% dip
T
U
) for 25 cycle
T
<5%U
(>95% dip
T
U
) for 5 sec
T
3A/m
doesn't change
The HOSPI PLUS SUCTION ASPIRATOR only used RF energy only for its
Electromagnetic environment - guidance
internal functioning. Therefore its RF emissions are very low and are
not likely to cause any interference in nearby electronic equipment.
The appliance is suitable fopr use in alla establishments included
domestic establishments and those directly connected to the public low-
voltage power supply network that supplies buildings used for domestic
purposes.
Electromagnetic environments - guidance
Level
The device
Floors should be wood, concrete or ceramic tile. If floors are
covered with synthetic material, the relative humidity
its state
should be at least 30%.
The device
Mains power quality should be that of a typical commercial
or hospital environment.
its state
The device
Mains power quality should be that of a typical commercial
or hospital environment.
its state
or hospital environment. If the user of the HOSPI PLUS
-
Mains power quality should be that of a typical commercial
SUCTION ASPIRATOR requires continued operation during
power mains interruptions, it is recommended that the
device be powered from an uninterruptible power supply
or a battery.
The device
The power frequency magnetic field should be measured in
the intended installation location to assure that it's
its state
sufficiently low.
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