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PRODUCT INFORMATION CLINICIAN
Guidance and Manufacturer’s Declaration–Electromagnetic Immunity
The Chattanooga Continuum is intended for use in the electromagnetic environment specified in the table below.
The user of the Chattanooga Continuum should assure that it is used in such an environment.
Immunity Test IEC 60601 Test Level Compliance Level
Electromagnetic Environment -
Guidance
RF emissions
CISPR 11
Group 1
The Chattanooga Continuum uses RF
energy only for its internal function.
Therefore, its RF emissions are very
low and are not likely to cause any
interference in nearby electronic
equipment
RF emissions
CISPR 11
Class B
The Chattanooga Continuumt is
suitable for use in all establishments,
including domestic establishments and
those directly connected to the public
low-voltage power supply network that
supplies buildings used for domestic
purposes.
Harmonic emissions
IEC 61000-3-2
N/A - Battery
Operated Device
Voltage fluctuations/
Flicker Emissions
IEC 61000-3-3
N/A - Battery
Operated Device
NOTE: UT is the a.c.
• NOTE : At MHz and MHz, the higher frequency range applies.
• NOTE : These guidelines may not apply in all situations. Electromagnetic propagation is aected 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 Chattanooga Continuum is used exceeds the applicable RF compliance
level above, the Chattanooga Continuum should be observed to verify normal operation. If abnormal performance is observed,
additional measures may be necessary, such as reorienting or relocating the Chattanooga Continuum.
b Over the frequency range kHz to MHz, field strengths should be less than V/m.