DOWNLOAD Harman Kardon NOVA (serv.man5) Service Manual ↓ Size: 1.81 MB | Pages: 16 in PDF or view online for FREE

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NOVA (serv.man5)
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EMC - CB Certificate
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nova-sm5.pdf
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Harman Kardon NOVA (serv.man5) EMC - CB Certificate ▷ View online

Report No.: 
EM201300303-2
                      Application No.:
 ZJ00029905   
                  Page 5 of 16 
 
 
 
2. LABORATORY AND ACCREDITATIONS  
2.1 LABORATORY 
The tests and measurements refer to this report were performed by Guangzhou GRG Metrology and 
Test CO., LTD. 
         Add. 
  :    163 Pingyun Rd, West of Huangpu Ave, Guangzhou, 510656, P. R. China 
         Telephone:   +86-20-38699959, 38699960, 38699961 
Fax 
  :   +86-20-38695185 
2.2 ACCREDITATIONS 
Our laboratories are accredited and approved by the following approval agencies according to 
ISO/IEC 17025. 
USA 
FCC Listed Lab (No. 688188) 
China 
CNAS (No.L0446) 
China 
DILAC (No.DL175) 
Canada 
Registration No.:8355A-1 
 
2.3 MEASUREMENT UNCERTAINTY 
Where relevant, the following measurement uncertainty levels have been estimated for tests 
performed on the EUT as specified in CISPR 16-4-2: 
Measurement 
Frequency 
Uncertainty 
Radiated 
Emission 
Horizontal 
30MHz~1000MHz 4.2dB 
1GHz~12.75GHz 4.2dB 
Vertical 
30MHz~1000MHz 4.4dB 
1GHz~12.75GHz 4.4dB 
This uncertainty represents an expanded uncertainty factor of
 
k=2. 
Report No.: 
EM201300303-2
                      Application No.:
 ZJ00029905   
                  Page 6 of 16 
 
 
 
2.4 
LIST OF TEST EQUIPMENT USED AT GRGT 
 
equivalent isotropic radiated power 
Name of Equipment 
Manufacturer 
Model 
Serial Number  Calibration Due
Receiver R&S 
ESU40 
100106 
2014-01-24 
Loop antenna 
R&S 
HFH2-Z2 
881058/58 
2014-05-26 
Biconical Log-periodic 
Antenna 
ETS.LINDGREN 3142C  00075971 
2014-05-26 
Signal Generator 
R&S 
SML03 
103002 
2013-11-13 
Biconical antenna 
ELECTRO-METRICS 
BIA-30S 
166 
2014-05-26 
log-periodical antenna  ELECTRO-METRICS LPA-30 
383 
2014-05-26 
Horn antenna 
ETS.LINDGREN 
3117 
00075824 
2013-08-19 
Horn antenna 
SCHWARZBECK 
BBHA9120D D752 
2013-10-14 
Per-Amplifier 
(0.1-26.5GHz) 
Compliance Directions 
systems Inc. 
PAP-0126 25002 
2014-01-05 
Semi-anechoic 
chamber 
ETS 
966(RFD-F/
A-100) 
3730 2014-03-25 
 
Report No.: 
EM201300303-2
                      Application No.:
 ZJ00029905   
                  Page 7 of 16 
 
 
3
. TECHNICAL REQUIREMENTS SPECIFICATION IN EN 62479 
3.1 RF EXPOSURE EVALUATION 
According to EN 62479:2010 clause 4.2 if the average power emitted by the apparatus operating in the 
frequency range 10 MHz to 300 GHz is less than or equal top 20 mW and the transmitting peal power is 
less than 20 W then the apparatus is deemed to comply with the basic restrictions without testing.. 
3.2 EFFECTIVE RADIATED POWER 
3.2.1 TEST PROCEDURE 
EIRP emission test method as below  
1.  The EUT shall be performed at the highest power level at which the transmitter is intended to 
operate.and Interface cables, loads, and devices should be connected to at least one of each type 
of the interface ports of the EUT and, where practical, each cable shall be terminated in a device 
typical for its actual use. EUT shall be placed at the 1.5m support on the turntable. 
2.  The test antenna at a horizontal distance of 3 m .It shall be raised and lowered from 1m to 4m 
until a maximum signal level is detected by the measuring receiver. Then the turntable should 
be rotated through 360° in the horizontal plane, until the maximum signal level is detected by 
the measuring receiver. in both the vertical and the horizontal polarization. Record the reading 
level, antenna position, polarization and turntable position. 
3.  Remove the transmitter and replace it with a substitution antenna (the antenna should be 
half-wavelength for each frequency involved). The center of the substitution antenna should be 
approximately at the same location as the center of the transmitter. For frequencies of 80 MHz 
and above, the dipoles should have their arm lengths set for resonance at the frequency of test. 
Below 80 MHz, shortened arm lengths are recommended. For measurements above 1 000 MHz, 
a waveguide horn is recommended. The centre of this antenna should coincide with either the 
phase centre or volume centre. 
4.  Feed the substitution antenna at the transmitter end with a signal generator connected to the 
antenna by a cable. With the antennas at both ends vertically polarized, and with the signal 
generator tuned to a particular test frequency, raise and lower the test antenna to obtain a 
maximum reading at the spectrum analyzer. Adjust the level of the signal generator output until 
the previously recorded maximum reading for this set of conditions is obtained. This should be 
done carefully repeating the adjustment of the test antenna and generator output. 
EIRP(dBm) = Pg(dBm) – cable loss (dB) + antenna gain (dBd) 
where: 
Pg is the generator output power into the substitution antenna. 
Report No.: 
EM201300303-2
                      Application No.:
 ZJ00029905   
                  Page 8 of 16 
 
 
3.2.2 TEST SETUP 
 
3.2.3 TEST RESULTS 
For GFSK 
Operating Mode with Modulation 
Frequency 
EIRP Level  
(dBm) 
EIRP Level  
(mW) 
2402MHz 10.80 
12.02 
2441MHz 9.85 
9.66 
2480MHz 8.60 
7.24 
Test conclusion: 
According this requirement the SAR-measurement has not to be conducted when the 
sending level is < 20 mW. 
 
For 8DPSK 
Operating Mode with Modulation 
Frequency 
EIRP Level  
(dBm) 
EIRP Level  
(mW) 
2402MHz 9.56 
9.04 
2441MHz 8.52 
7.11 
2480MHz 7.17 
5.21 
Test conclusion: 
According this requirement the SAR-measurement has not to be conducted when the 
sending level is < 20 mW. 
 
 
--------------------This is the last page of the report. ----------------------- 
EUT
 
Ground Plane
 
3 m
1.5
m
Cable
Test table & Turntable 
 
1m~4m 
 
EMI 
Receiver 
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