Casio OMC811 Manuale Utente

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237
Safety
power required to reach the network. In general, the closer you are to 
a wireless base station antenna, the lower the power output. Before a 
phone model is available for sale to the public, it must be tested and 
certified to the FCC that it does not exceed the limit established by 
the government adopted requirement for safe exposure. The tests are 
performed in positions and locations (e.g., at the ear and worn on the 
body) as required by the FCC for each model.
For body worn operation, this phone has been tested and meets 
the FCC RF exposure guidelines when used with an accessory that 
contains no metal and that positions the handset a minimum of 1.0 cm 
cm from the body. Non-compliance with the above restrictions may 
result in violation of FCC RF Exposure guidelines.
The highest SAR value for this model phone when tested for use at the 
head is 1.08 W/kg and when worn on the body, as described in this 
guide, is 1.08 W/kg. (Body-worn measurements differ among phone 
models, depending upon available accessories and FCC requirements). 
While there may be differences between the SAR levels of various 
phones and at various positions, they all meet the government 
requirement for safe exposure.
The FCC has granted an Equipment Authorization for this model phone 
with all reported SAR levels evaluated as in compliance with the FCC RF 
exposure guidelines. SAR information on this model phone is on file with 
the FCC and can be found under the Display Grant section of 
http://www.fcc.gov/oet/ea/fccid after searching on TYK-JDS9507.
Additional information on Specific Absorption Rates (SAR) can be found 
on the Cellular Telecommunications & Internet Association (CTIA) web-
site at http://www.ctia.org.
*  In the United States and Canada, the SAR limit for mobile phones 
used by the public is 1.6 watts/kg (W/kg) averaged over one gram 
of tissue. The standard incorporates a substantial margin of safety 
to give additional protection for the public and to account for any 
variations in measurements.