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Guidance and manufacturer’s declaration – Electromagnetic immunity
The Translux Wave is intended for use in the electromagnetic environment specified below.
The customer or the user of the Translux Wave should ensure that it is used in such an environment.
Immunity
test
IEC 60601
test level
Compliance
level
Electromagnetic environment – Guidance
Conducted RF
IEC 61000-4-6
Radiated RF
IEC 61000-4-3
3 V
eff
150 kHz
to 80 MHz
3 V / m 80 MHz
to 2.5 GHz
The device
continues to
work regularly
and in safety.
Portable and mobile RF communications equipment should be used no
closer to any part of the disposal including cables, than the recommen-
ded separation distance calculated from the equation applicable to the
frequency of the transmitter.
Recommended separation distance
d = 1.2 √P
d = 1.2 √P 80 MHz to 800 MHz
d = 2.3 √P 800 MHz to 2.5 GHz
where (
P
) is the maximum output power rating of the transmitter in
watts (
W
) according to the transmitter manufacturer and (
d
) is the
recommended separation distance in metres (
m
). Field strengths from
fixed RF transmitters, as determined by an electromagnetic site survey,
should be less than the compliance level in each frequency
range (
b
). Interference may occur in the vicinity of equipment
marked with the following symbol:
Notes:
(1) At 80 MHz and 800 MHz, the higher frequency range applies.
(2) These guidelines may not apply in all situations. Electromagnetic propagation is affected by absorption and reflection
from structures, objects and people.
a) Field strengths from fixed transmitters, such as base stations for radio (cellular / cordless) telephones and land mobile
radios, amateur radio, AM and FM radio broadcast and TV broadcast cannot be predicted theoretically with accuracy.
To assess the electromagnetic environment due to fixed RF transmitters, an electromagnetic site survey should be
considered. If the measured field strength in the location in which the Translux Wave is used exceeds the applicable
RF compliance level above, the Translux Wave should be observed to verify normal operation. If abnormal performance is
observed, additional measures may be necessary, such as re-orienting or relocating the Translux Wave.
b) Over the frequency range 150 kHz to 80 MHz field strengths should be less than 3 V / m.
Recommended separation distances between portable and mobile RF communications equipment and
the Translux Wave
The Translux Wave is intended for use in an electromagnetic environment in which radiated RF disturbances are controlled.
The customer or the user of the Translux Wave can help prevent electromagnetic interference by maintaining a minimum
distance between portable and mobile RF communications equipment (transmitters) and the Translux Wave as recommen-
ded below, according to the maximum output power of the communications equipment.
Rated maximum output
power of transmitter (
W
)
Separation distance according to frequency of transmitter (
m
)
150 kHz to 80 MHz
d = 1.2 √P
80 MHz to 800 MHz
d = 1.2 √P
800 MHz to 2.5 GHz
d = 2.3 √P
0.01
0.12
0.12
0.23
0.1
0.38
0.38
0.73
1
1.2
1.2
2.3
10
3.8
3.8
7.3
100
12
12
23
For transmitters rated at a maximum output power not listed above, the recommended separation distance (
d
) in metres (
m
)
can be estimated using the equation applicable to the frequency of the transmitter, where (
P
) is the maximum output power
rating of the transmitter in watts (
W
) according to the transmitter manufacturer.
Notes:
(1) At 80 MHz and 800 MHz the separation distance for the higher frequency range applies.
(2) These guidelines may not apply in all situations. Electromagnetic propagation is affected by absorption and reflection
from structures, objects and people.
Summary of Contents for Translux Power Blue
Page 4: ...HKG Layout 99000943_01 Cover innen 4 8 GBA Translux Wave EU 5 5 6 2 5 4 2 2 8...
Page 5: ...HKG Layout 99000943_01 Cover innen 5 8 GBA Translux Wave EU...
Page 9: ......
Page 304: ...9 GR 4 2 4 10 1 1 LED 10 20 1 1 1 1 10 1 LED 20 1 2 2 1 30 LED LED LED 3 4 LED 10s 20s...
Page 311: ...16 GR 7 5 Translux Wave 2 2 8 8 1 8 2 1 2 pH pH 7 8 2 1 8 3 pH pH 7...
Page 313: ...18 GR pH pH7 8 6 pH pH7 8 6 1 2x...
Page 314: ...19 GR 8 6 2 Heraeus Kulzer 1 2 3 4 5 2 12 6 7 9 5 10 Heraeus Kulzer WEEE ElektroG 2x...
Page 321: ...26 GR 14 14 1 15 2012 08 2013 09 2014 03 2 1 3 2 1 7 2 10 11 12 12 2 1x 2014 03...
Page 330: ...9 RU 4 2 4 10 1 1 10 20 1 1 1 1 10 1 20 1 2 2 30 3 4 10 20...
Page 337: ...16 RU 7 5 Translux Wave 2 2 8 8 1 8 2 1 2 7 8 2 1 8 3 7...
Page 339: ...18 RU pH7 8 6 pH7 8 6 1 2x...
Page 340: ...19 RU 8 6 2 Heraeus Kulzer 1 2 3 4 5 2 12 6 7 9 5 10 Heraeus Kulzer WEEE ElektroG 2x...
Page 347: ...26 RU 14 14 1 15 2012 08 2013 09 2014 03 2 1 3 2 1 7 2 10 11 12 12 2 1x 2014 03...