5.test report - rfu-c-7ghz ip10 extract version
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Hermon Laboratories Ltd.Harakevet Industrial Zone, Binyamina 30500,IsraelTel. +972-4-6288001Fax. +972-4-6288277E-mail: mail@hermonlabs.com
Electrical839.01
TEST REPORT
ACCORDING TO: EN 302 217-2-2 V1.2.3:2007 with deviation according todraft EN 302 217-2-2 V1.3.1 (V0.0.1)
FOR
CERAGON Networks Ltd.
Point to point radio terminal
Model: FibeAir RFU-C-7with FibeAir IP-10
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Report ID: CERRAD_EN.18806.docDate of Issue: 6/25/2008
Table of contents
1
Applicant information....... ............. ........... ............ ............. ........... ............ ............. ............ .............. ........... ............. ....... 3
2
Equipment under test attributes .................................................................................................................................... 3
3
Manufacturer information .............................................................................................................................................. 3
4
Test details.................................................................................................................................................................... 3
5
Tests summary..............................................................................................................................................................4
6
EUT description............................................................................................................................................................. 5
6.1
General information.......................................................................................................................................................5
6.2 Ports and lines .............................................................................................................................................................. 5
6.3 Support equipment........................................................................................................................................................5
6.4 Changes made in the EUT............................................................................................................................................ 5
6.5 Test configuration.......................................................................................................................................................... 6
6.6
Transmitter characteristics ............................................................................................................................................ 7
7 Transmitter tests............................................................................................................................................................ 8
7.1 Transmitter power range............................................................................................................................................... 8
7.2 RF spectrum mask......................................................................................................................................................13
7.3 Transmitter spurious emissions......... ........... ............ ............. ............ ........... ............ ........... ............... ........... ............. . 44
7.4 Frequency tolerance.......... ............. ............. ............. ............. ............. .............. ............. .............. ............. ............ ....... 94
8 Receiver characteristics .............................................................................................................................................. 99
8.1 Receiver spurious emissions......... ............ ........... ............. ............ ........... ............ ............. ............. ........... ............ ...... 99
8.2
BER versus Receive Signal Level............. ........... ............. ............ ........... ............ ............. ............. ........... ............. ... 126
8.3 Co-channel interference sensitivity.......... ............. ............ ........... ............. ............ ............. ............. ........... ............. ... 131
8.4 Adjacent channel interference sensitivity ............ ............ ........... ............. ............ ........... ............. ............. ............ ..... 135
8.5
Continuous Wave (CW) spurious interference.......................................................................................................... 139
9
EUT photographs...................................................................................................................................................... 143
9.1
ODU external photographs........ ............. ............. ............. ............. ............. ............. ............ ............... ........... ............ 143
9.2
ODU internal photographs............ ............. ........... ............. ............ ........... ............. ............ ............... ............ ............ . 144
9.3
IDU photographs....................................................................................................................................................... 151
10
APPENDIX A Test equipment and ancillaries used for tests............. .............. ........... ............. ............. .............. ....... 153 11
APPENDIX B Measurement uncertainties.......... ............. ............ ............. ............. ............. ............. ............. ............. 154
12 APPENDIX C Test laboratory description ............ .............. ............... .............. .............. .............. ............. ............ ..... 155
13
APPENDIX D Specification references ........... ............. ............. ............. ............. ............. ............ ............. ............. ... 155
14 APPENDIX E Abbreviations and acronyms......... ............. ............. ............. ............. ............ ............. ............... .......... 156
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Report ID: CERRAD_EN.18806.docDate of Issue: 6/25/2008
1 Applicant information
Client name: CERAGON Networks Ltd.
Address: 24 Raul Walenberg Street, Ramat-Hachayal, Tel Aviv, 69710, Israel
Telephone: +972-3645 5595
Fax: +972-3645 5499
E-mail: eyalgonen@ceragon.com
Contact name: Mr. Eyal Gonen
2 Equipment under test attributes
Product name: Point to point radio terminal
Model(s): FibeAir RFU-C-7 with FibeAir IP-10
Serial number: FC428369
Hardware version: EA-0320-1A.00Receipt date 5/19/2008
3 Manufacturer information
Manufacturer name: Flextronics International Ltd.
Address: 1 Hatasia Street, Ramat Gavriel Industr ial Zone, Migdal Haemek 23108, Israel
Telephone: +972-542 310 280
Fax: +972-4604 0850
E-Mail: Yitzhak.manor@il.flextronics.com
Contact name: Mr. Yitzhak Manor
4 Test details
Project ID: 18806
Location: Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel
Test started: 5/25/2008
Test completed: 6/11/2008
Test specification(s): EN 302 217-2-2 V1.2.3 (2007-09); EN 301 126-1 V1.1.2 (1999-09)
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Report ID: CERRAD_EN.18806.docDate of Issue: 6/25/2008
5 Tests summary
Test Status
EN 302 217-2-2 V1.2.3:2007
Transmitter parameters
Transmitter power range, Section 5.2.1 Pass
Transmitter power tolerance, Section 5.2.3 Pass
RF spectrum mask, Section 5.2.4 Pass*
Transmitter spurious emissions, Section 5.2.6 Pass
Frequency tolerance, Section 5.2.8 Pass
Receiver parameters
Receiver spurious emissions, Section 5.3.1 Pass
BER versus receive signal level RSL, Section 5.3.2 Pass
Co-channel "external" interference sensitivity, Section 5.3.3 Pass
Adjacent channel interference sensitivity, Section 5.3.4 Pass
Continuous wave (CW) spurious interference, Section 5.3.5 Pass
* - the EUT with type of modulation and channel spacing: QPSK/7 MHz; 16QAM/7 MHz; 128QAM/28 MHz; 256QAM/7 MHz;the EUT of QPSK modulation with 28 MHz channel spacing does withstand to draft EN 302 217-2-2 V1.3.1 (V0.0.1) limits forRF spectrum mask.
The test results relate only to the items tested. Pass/ fail decision was based on nominal values.
Name and Title Date Signature
Tested by: Mrs. E. Pitt, test engineer June 11, 2008
Reviewed by: Mrs. M. Cherniavsky, certification engineer June 26, 2008
Approved by: Mr. M. Nikishin, EMC and radio group leader June 30, 2008
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Report ID: CERRAD_EN.18806.docDate of Issue: 6/25/2008
6.6 Transmitter characteristics
Type of equipment
V Stand-alone (Equipment with or without its own control provisions)
Combined equipment (Equipment where the radio part is fully integrated within another type of equipment)
Plug-in card (Equipment intended for a variety of host systems)
Intended use Condition of use
V fixed Always at a distance more than 2 m from all people
mobile Always at a distance more than 20 cm from all peopleportable May operate at a distance closer than 20 cm to human body
Assigned frequency range 7454.5 – 7513.5 MHz
Operating frequency range 7454.5 – 7513.5 MHz
Receive mode frequencies 7608.5 MHz, 7638 MHz, 7667.5 MHz
RF channel spacing 7 MHz, 28 MHz
Maximum rated output power At transmitter 50 Ω RF output connector 26 dBm
No
continuous variable
V stepped variable with stepsize 1 dBminimum RF power 4 dBm
Is transmitter output power
variable? V Yes
maximum RF power 26 dBm
Antenna connection
with temporary RFconnectorunique coupling V
standardconnector
Integralwithout temporary RFconnector
Antenna/s technical characteristics
Type Manufacturer Model number Gain
NA NA NA NA
Transmitter 99% power bandwidth Transmitter aggregate datarate/s
Spectrum efficiencyclasses
Type of modulation
10 Mbps 2 QPSK 20 Mbps 4 16QAM 7 MHz
39 Mbps 5B 256QAM
38 Mbps 2 QPSK28 MHz
155 Mbps 5B 128QAM
Type of multiplexing TDMA
Transmitter power source
Nominal rated voltage Battery typeV DC Nominal rated voltage -48 V
Voltage range -60 V ÷ -40.5 V
AC mains Nominal rated voltage Frequency
Common power source for transmitter and receiver V yes no
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Report ID: CERRAD_EN.18806.doc
Date of Issue: 6/25/2008
Test specification: Transmitter power range, Sections 5.2.1, 5.2.3Test procedure: EN 300 126-1, Section 5.2.1
Test mode: Compliance
Date & Time: 6/5/2008 2:33:49 PMVerdict: PASS
Temperature: 23ºC Air Pressure: 1010 hPa Relative Humidity: 61% Power Supply: -48 VDC
Remarks:
Photograph 7.1.1 Setup for conducted power of carrier measurements
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Table 7.1.2 Carrier power test results
OPERATING FREQUENCY: 7454.5 - 7513.5 MHzDETECTOR USED: Power meter
NOMINAL POWER VOLTAGE: -48 VDCTRANSMITTER OUTPUT POWER SETTINGS: MaximumMODULATION: 16 QAMCHANNEL SPACING: 7 MHz
Frequency,MHz
Temp.,ºC
Voltage,V
Power meterreading,
dBm
Attenuator,dB
Cableloss, dB
RF power,dBm
Declaredpower,dBm
Margin,dB*
Limit,dB
Verdict
Low frequency
-35/-5 Nominal -7.22 30 1.7 24.48 25 -0.52 ±2 Pass
23/23 Nominal -7.07 30 1.7 24.63 25 -0.37 ±1 Pass7454.5
55/55 Nominal -7.34 30 1.7 24.36 25 -0.64 ±2 Pass
Mid frequency-35/-5 Nominal -6.75 30 1.7 24.95 25 -0.05 ±2 Pass
23/23 Nominal -7.17 30 1.7 24.53 25 -0.47 ±1 Pass7484
55/55 Nominal -7.26 30 1.7 24.44 25 -0.56 ±2 Pass
High frequency
-35/-5 Nominal -7.08 30 1.7 24.62 25 -0.38 ±2 Pass
23/23 Nominal -7.20 30 1.7 24.50 25 -0.50 ±1 Pass7513.5
55/55 Nominal -7.41 30 1.7 24.29 25 -0.71 ±2 Pass
*- Margin = RF power – manufacturer declared power
Table 7.1.3 Carrier power test results
OPERATING FREQUENCY: 7454.5 - 7513.5 MHzDETECTOR USED: Power meterNOMINAL POWER VOLTAGE: -48 VDCTRANSMITTER OUTPUT POWER SETTINGS: MaximumMODULATION: 256 QAMCHANNEL SPACING: 7 MHz
Frequency,MHz
Temp.,ºC
Voltage,V
Power meterreading,
dBm
Attenuator,dB
Cableloss, dB
RF power,dBm
Declaredpower,dBm
Margin,dB*
Limit,dB
Verdict
Low frequency
-35/-5 Nominal -10.21 30 1.7 21.49 22 -0.51 ±2 Pass
23/23 Nominal -10.14 30 1.7 21.56 22 -0.44 ±1 Pass7454.5
55/55 Nominal -10.67 30 1.7 21.03 22 -0.97 ±2 Pass
Mid frequency
-35/-5 Nominal -9.64 30 1.7 22.06 22 0.06 ±2 Pass
23/23 Nominal -10.26 30 1.7 21.44 22 -0.56 ±1 Pass7484
55/55 Nominal -10.64 30 1.7 21.06 22 -0.94 ±2 Pass
High frequency
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Table 7.1.4 Carrier power test results
OPERATING FREQUENCY: 7454.5 - 7513.5 MHzDETECTOR USED: Power meter
NOMINAL POWER VOLTAGE: -48 VDCTRANSMITTER OUTPUT POWER SETTINGS: MaximumMODULATION: QPSKCHANNEL SPACING: 28 MHz
Frequency,MHz
Temp.,ºC
Voltage,V
Power meterreading,
dBm
Attenuator,dB
Cableloss, dB
RF power,dBm
Declaredpower,dBm
Margin,dB*
Limit,dB
Verdict
Low frequency
-35/-5 Nominal -5.35 30 1.7 26.35 26 0.35 ±2 Pass
23/23 Nominal -5.55 30 1.7 26.15 26 0.15 ±1 Pass7454.5
55/55 Nominal -5.51 30 1.7 25.99 26 -0.01 ±2 Pass
Mid frequency-35/-5 Nominal -5.30 30 1.7 26.40 26 0.40 ±2 Pass
23/23 Nominal -5.41 30 1.7 26.29 26 0.29 ±1 Pass7484
55/55 Nominal -5.42 30 1.7 26.28 26 0.28 ±2 Pass
High frequency
-35/-5 Nominal -5.38 30 1.7 26.32 26 0.32 ±2 Pass
23/23 Nominal -5.49 30 1.7 26.21 26 0.21 ±1 Pass7513.5
55/55 Nominal -5.56 30 1.7 26.14 26 0.14 ±2 Pass
*- Margin = RF power – manufacturer declared power
Table 7.1.5 Carrier power test results
OPERATING FREQUENCY: 7454.5 - 7513.5 MHzDETECTOR USED: Power meterNOMINAL POWER VOLTAGE: -48 VDCTRANSMITTER OUTPUT POWER SETTINGS: MaximumMODULATION: 128 QAMCHANNEL SPACING: 28 MHz
Frequency,MHz
Temp.,ºC
Voltage,V
Power meterreading,
dBm
Attenuator,dB
Cableloss, dB
RF power,dBm
Declaredpower,dBm
Margin,dB*
Limit,dB
Verdict
Low frequency
-35/-5 Nominal -8.00 30 1.7 23.70 24 -0.30 ±2 Pass
23/23 Nominal -8.15 30 1.7 23.55 24 -0.45 ±1 Pass7454.5
55/55 Nominal -8.39 30 1.7 23.31 24 -0.69 ±2 Pass
Mid frequency
-35/-5 Nominal -7.77 30 1.7 23.93 24 -0.07 ±2 Pass
23/23 Nominal -8.02 30 1.7 23.68 24 -0.32 ±1 Pass7484
55/55 Nominal -8.35 30 1.7 23.35 24 -0.65 ±2 Pass
High frequency
35/ 5 Nominal 7 80 30 1 7 23 90 24 0 10 ±2 Pass
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Table 7.1.6 Carrier power test results
OPERATING FREQUENCY: 7454.5 - 7513.5 MHzDETECTOR USED: Power meter
NOMINAL POWER VOLTAGE: -48 VDCTRANSMITTER OUTPUT POWER SETTINGS: MaximumMODULATION: QPSKCHANNEL SPACING: 7 MHz
Frequency,MHz
Temp.,ºC
Voltage,V
Power meterreading,
dBm
Attenuator,dB
Cableloss, dB
RF power,dBm
Declaredpower,dBm
Margin,dB*
Limit,dB
Verdict
Low frequency
-35/-5 Nominal -9.06 30 4.1 25.04 26 -0.96 ±2 Pass
23/23 Nominal -8.36 30 4.1 25.74 26 -0.26 ±1 Pass7454.5
55/55 Nominal -9.00 30 4.1 25.10 26 -0.90 ±2 Pass
Mid frequency-35/-5 Nominal -9.41 30 4.1 24.69 26 -1.31 ±2 Pass
23/23 Nominal -8.87 30 4.1 25.23 26 -0.77 ±1 Pass7484
55/55 Nominal -9.41 30 4.1 24.69 26 -1.31 ±2 Pass
High frequency
-35/-5 Nominal -9.35 30 4.1 24.75 26 -1.25 ±2 Pass
23/23 Nominal -8.75 30 4.1 25.35 26 -0.65 ±1 Pass7513.5
55/55 Nominal -9.47 30 4.1 24.63 26 -0.77 ±2 Pass
*- Margin = RF power – manufacturer declared power
Note 1: Extreme temperatures:ODU: +55ºC /-35ºCIDU: +55ºC /-5ºC
Note 2: According to the manufacturer declaration the EUT contains a DC regulator in the DC source therefore the testing atextreme voltages is considered not necessary.
Reference numbers of test equipment used
HL 2910 HL 2911 HL 3210 HL 3301 HL 3386 HL 3435 HL 3442
Full description is given in Appendix A.
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Report ID: CERRAD_EN.18806.doc
Date of Issue: 6/25/2008
Test specification: RF spectrum mask, Section 5.2.4Test procedure: EN 301 126-1, Section 5.2.6
Test mode: Compliance
Date & Time: 6/5/2008 2:20:08 PMVerdict: PASS
Temperature: 23ºC Air Pressure: 1010 hPa Relative Humidity: 61% Power Supply: -48 VDC
Remarks:
Photograph 7.2.1 Setup for spectrum mask measurements
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Table 7.2.6 RF spectrum mask test results
Type of modulation Test conditions Frequency Verdict Reference to plotnumber
Low Pass 7.2.16
Mid Pass 7.2.17IDU T= -5°C
ODU T= -35°CHigh Pass 7.2.18
Low Pass 7.2.43
Mid Pass 7.2.44IDU T= 23°C
ODU T= 23°CHigh Pass 7.2.45
Low Pass 7.2.13
Mid Pass 7.2.14
QPSK/ 7 MHz
IDU T= 55°C
ODU T= 55°CHigh Pass 7.2.15
Low Pass 7.2.19
Mid Pass 7.2.20
IDU T= -5°C
ODU T= -35°CHigh Pass 7.2.21
Low Pass 7.2.40
Mid Pass 7.2.41IDU T= 23°C
ODU T= 23°CHigh Pass 7.2.42
Low Pass 7.2.10
Mid Pass 7.2.11
16QAM/7 MHz
IDU T= 55°C
ODU T= 55°CHigh Pass 7.2.12
Low Pass 7.2.22
Mid Pass 7.2.23IDU T= -5°C
ODU T= -35°CHigh Pass 7.2.24
Low Pass 7.2.37
Mid Pass 7.2.38IDU T= 23°C
ODU T= 23°CHigh Pass 7.2.39
Low Pass 7.2.7
Mid Pass 7.2.8
256 QAM/7 MHz
IDU T= 55°C
ODU T= 55°CHigh Pass 7.2.9
Low Pass 7.2.25
Mid Pass 7.2.26IDU T= -5°C
ODU T= -35°CHigh Pass 7.2.27
Low Pass 7.2.34
Mid Pass 7.2.35IDU T= 23°C
ODU T= 23°C High Pass 7.2.36
Low Pass 7.2.4
Mid Pass 7.2.5
QPSK/28 MHz
IDU T= 55°C
ODU T= 55°CHigh Pass 7.2.6
Low Pass 7.2.28
Mid Pass 7.2.29IDU T= -5°C
ODU T= -35°CHigh Pass 7.2.30
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Report ID: CERRAD_EN.18806.doc
Date of Issue: 6/25/2008
Test specification: Transmitter spurious emissions, Section 5.2.6Test procedure: EN 301 126-1, Section 5.2.9
Test mode: Compliance
Date & Time: 6/11/2008 11:19:29 AMVerdict: PASS
Temperature: 23ºC Air Pressure: 1007 hPa Relative Humidity: 52% Power Supply: -48 VDC
Remarks:
Photograph 7.3.1 Setup for spurious emission measurements
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Table 7.3.2 Spurious emission test results in transmit mode
OPERATING FREQUENCY: 7454.5 - 7513.5 MHz Z 30-26000 MHz DETECTOR USED: Average RESOLUTION BANDWIDTH: 100 kHz in 30 MHz – 1000 MHz range,
1.0 MHz above 1000 MHzVIDEO BANDWIDTH: >RBW MODULATION: 16QAM CHANNEL SPACING: 7 MHzMODULATING SIGNAL: NA DATA RATE: 20 Mbps TRANSMITTER POWER SETTINGS: Maximum
Frequency,MHz SA reading,dBm RBW,kHz Attenuator,dB Cable loss,dB Spuriousemission, dBm Limit,dBm Margin,dB* Verdict
Low carrier frequency 7454.5 MHz 7434.3175 -50.93 1000 included included -50.93 -50 -0.93 Pass 7494.7200 -50.35 1000 included included -50.35 -50 -0.35 Pass
14876.0000 -55.46 1000 included included -55.46 -50 -5.46 Pass Mid carrier frequency 7484 MHz 7466.5000 -50.72 1000 included included -50.72 -50 -0.72 Pass
7501.5000 -50.43 1000 included included -50.43 -50 -0.43 Pass
21166.0000 -55.76 1000 included included -55.76 -50 -5.76 Pass
High carrier frequency 7513.5MHz 7490.7200 -50.31 1000 included included -50.31 -50 -0.31 Pass 7531.0000 -50.74 1000 included included -50.74 -50 -0.74 Pass
14050.0000 -55.93 1000 included included -55.93 -50 -5.93 Pass *- Margin = Spurious emission – specification limit.
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Table 7.3.3 Spurious emission test results in transmit mode
OPERATING FREQUENCY: 7454.5 - 7513.5 MHz INVESTIGATED FREQUENCY RANGE: 30-26000 MHz DETECTOR USED: Average RESOLUTION BANDWIDTH: 100 kHz in 30 MHz – 1000 MHz range,
1.0 MHz above 1000 MHzVIDEO BANDWIDTH: >RBW MODULATION: 256QAM CHANNEL SPACING: 7 MHzMODULATING SIGNAL: NA DATA RATE: 39 Mbps TRANSMITTER POWER SETTINGS: Maximum
Frequency,MHz SA reading,dBm RBW,kHz Attenuator,dB Cable loss,dB Spuriousemission, dBm Limit,dBm Margin,dB* Verdict
Low carrier frequency 7454.5 MHz 7436.17 -52.80 1000 included included -52.80 -50 -2.80 Pass 7474.56 -52.15 1000 included included -52.15 -50 -2.15 Pass 14468.00 -55.53 1000 included included -55.53 -50 -5.53 Pass
Mid carrier frequency 7484 MHz 7459.30 -52.60 1000 included included -52.60 -50 -2.60 Pass 7503.50 -52.26 1000 included included -52.26 -50 -2.26 Pass 14420.00 -55.45 1000 included included -55.45 -50 -5.45 Pass
High carrier frequency 7513.5MHz 7494.56 -52.64 1000 included included -52.64 -50 -2.64 Pass 7532.70 -52.83 1000 included included -52.83 -50 -2.83 Pass 14860.00 -55.83 1000 included included -55.83 -50 -5.83 Pass
*- Margin = Spurious emission – specification limit.
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Table 7.3.4 Spurious emission test results in transmit mode
OPERATING FREQUENCY:
7454.5 - 7513.5 MHz
INVESTIGATED FREQUENCY RANGE: 30-26000 MHz DETECTOR USED: Average RESOLUTION BANDWIDTH: 100 kHz in 30 MHz – 1000 MHz range,
1.0 MHz above 1000 MHzVIDEO BANDWIDTH: >RBW MODULATION: QPSK MODULATING SIGNAL: NA TRANSMITTER POWER SETTINGS: Maximum
CHANNEL SPACING: 28 MHzDATA RATE: 38 Mbps Frequency,
MHz SA reading,
dBm RBW,kHz
Attenuator,dB
Cable loss,dB
Spuriousemission, dBm
Limit,dBm
Margin,dB* Verdict
Low carrier frequency 7454.5 MHz 2963.00 -57.42 1000 included included -57.42 -50 -7.42 Pass
7525.33 -52.53 1000 included included -52.53 -50 -2.53 Pass
14876.00 -55.43 1000 included included -55.43 -50 -5.43 Pass
Mid carrier frequency 7484 MHz 7413.715 -57.03 1000 included included -57.03 -50 -7.03 Pass 7554.000 -56.22 1000 included included -56.22 -50 -6.22 Pass 21166.00 -55.54 1000 included included -55.54 -50 -5.54 Pass
High carrier frequency 7513.5MHz 7442.630 -53.15 1000 included included -53.15 -50 -3.15 Pass 7640.88 -58.15 1000 included included -58.15 -50 -8.15 Pass 21200.00 -55.40 1000 included included -55.40 -50 -5.40 Pass
*- Margin = Spurious emission – specification limit.
CHANNEL SPACING: 7 MHzDATA RATE: 10 Mbps
Frequency,MHz SA reading,dBm RBW,kHz Attenuator,dB Cable loss,dB Spuriousemission, dBm Limit,dBm Margin,dB* Verdict
Low carrier frequency 7454.5 MHz 7432.375 -53.87 1000 included included -53.87 -50 -3.87 Pass
7502.400 -52.34 1000 included included -52.34 -50 -2.34 Pass
14400.000 -58.07 1000 included included -58.07 -50 -8.07 Pass
Mid carrier frequency 7484 MHz 2936 000 59 78 1000 i l d d i l d d 59 78 50 9 78 P
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Table 7.3.5 Spurious emission test results in transmit mode
OPERATING FREQUENCY: 7454.5-7513.5 MHz INVESTIGATED FREQUENCY RANGE: 30-26000 MHz DETECTOR USED: Average RESOLUTION BANDWIDTH: 100 kHz in 30 MHz – 1000 MHz range,
1.0 MHz above 1000 MHzVIDEO BANDWIDTH: >RBW MODULATION: 128 QAM CHANNEL SPACING: 28 MHzMODULATING SIGNAL: NA DATA RATE: 155 Mbps TRANSMITTER POWER SETTINGS: Maximum
Frequency,MHz SA reading,dBm RBW,kHz Attenuator,dB Cable loss,dB Spuriousemission, dBm Limit,dBm Margin,dB* Verdict Low carrier frequency 7454.5 MHz
6379.00 -58.19 1000 included included -58.19 -50 -8.19 Pass 7525.52 -51.69 1000 included included -51.69 -50 -1.69 Pass 14876.00 -55.99 1000 included included -55.99 -50 -5.99 Pass
Mid carrier frequency 7484 MHz 2936.00 -57.33 1000 included included -57.33 -50 -7.33 Pass 7413.86 -57.43 1000 included included -57.43 -50 -7.43 Pass 7554.23 -57.44 1000 included included -57.44 -50 -7.44 Pass
High carrier frequency 7513.5MHz 2936.00 -57.61 1000 included included -57.61 -50 -7.61 Pass 7439.80 -51.77 1000 included included -51.77 -50 -1.77 Pass 7877.50 -58.76 1000 included included -58.76 -50 -8.76 Pass
*- Margin = Spurious emission – specification limit.
Reference numbers of test equipment used
HL 2911 HL 2780 HL 3442 HL 1650 HL 3435 HL 3208
Full description is given in Appendix A.
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Report ID: CERRAD_EN.18806.doc
Date of Issue: 6/25/2008
Test specification: Frequency tolerance, Section 5.2.8Test procedure: EN 300 126-1, Section 5.2.5
Test mode: Compliance
Date & Time: 6/5/2008 2:29:47 PMVerdict: PASS
Temperature: 23ºC Air Pressure: 1010 hPa Relative Humidity: 61% Power Supply: -48 VDC
Remarks:
Figure 7.4.1 Frequency tolerance test setup
EUT
Voltmeter
Variablepower supply
Attenuator Spectrumanalyzer
Temperature chamber
Photograph 7.4.1 Frequency tolerance test setup
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Table 7.4.2 Frequency tolerance test results
OPERATING FREQUENCY RANGE: 7454.5 - 7513.5 MHzSYSTEM TYPE B1
CLASS 4 (16 QAM)CHANNEL SPACING 7 MHzRESOLUTION BANDWIDTH: 1 kHzVIDEO BANDWIDTH: 1 kHzMODULATION: unmodulated
Frequency, MHzTemperature,ºC
Voltage,V Measured Nominal*
Frequencyerror,kHz**
Limit,kHz
Margin,kHz
Verdict
Low frequency
-35/-5 Nominal 7454.5025 2.5 -109.32
23/23 Nominal 7454.4975 -2.50 -109.3255/55 Nominal 7454.5010
7454.5
1.00
111.82
-110.82
Pass
Mid frequency
-35/-5 Nominal 7484.0025 2.5 -109.76
23/23 Nominal 7483.99975 -0.25 -112.01
55/55 Nominal 7484.0010
7484.0
1.00
112.26
111.26
Pass
High frequency
-35/-5 Nominal 7513.5025 2.5 -110.20
23/23 Nominal 7513.49975 -0.25 -112.45
55/55 Nominal 7513.5010
7513.5
1.00
112.70
-111.70
Pass
*-Nominal frequency stated by manufacturer.**-Frequency error was calculated as a difference between the measured and nominal (stated by manufacturer) frequencies.
Table 7.4.3 Frequency tolerance test results
OPERATING FREQUENCY RANGE: 7454.5-7513.5 MHzSYSTEM TYPE B1CLASS 5B (256 QAM)CHANNEL SPACING 7 MHzRESOLUTION BANDWIDTH: 1 kHzVIDEO BANDWIDTH: 1 kHzMODULATION: unmodulated
Frequency, MHzTemperature,
ºC
Voltage,
V Measured Nominal*
Frequency error,
kHz**
Limit,
kHz
Margin,
kHzVerdict
Low frequency
-35/-5 Nominal 7454.50250 2.50 -109.32
23/23 Nominal 7454.49975 -0.25 -111.57
55/55 Nominal 7454.50100
7454.5
1.00
111.82
-110.82
Pass
Mid frequency
-35/-5 Nominal 7484.00250 2.50 -109.76
23/23 Nominal 7483.99975 -0.25 -112.017484 112.26 Pass
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Table 7.4.4 Frequency tolerance test results
OPERATING FREQUENCY RANGE: 7454.5-7513.5 MHzSYSTEM TYPE B1
CLASS 2 (QPSK)CHANNEL SPACING 28 MHzRESOLUTION BANDWIDTH: 1 kHzVIDEO BANDWIDTH: 1 kHzMODULATION: unmodulated
Frequency, MHzTemperature,ºC
Voltage,V Measured Nominal*
Frequency error,kHz**
Limit,kHz
Margin,kHz
Verdict
Low frequency
-35/-5 Nominal 7454.5000 0.00 -111.82
23/23 Nominal 7454.4995 -0.50 -111.32
55/55 Nominal 7454.5010
7454.5
1.00
111.82
-110.82
Pass
Mid frequency-35/-5 Nominal 7484.0025 2.50 -109.76
23/23 Nominal 7483.9995 -0.50 -111.7655/55 Nominal 7484.0010
7484
1.00
112.26
-111.26
Pass
High frequency
-35/-5 Nominal 7513.5025 2.50 -110.20
23/23 Nominal 7513.4995 -0.50 -112.20
55/55 Nominal 7513.5010
7513.5
1.00
112.70
-111.70
Pass
*-Nominal frequency stated by manufacturer.**-Frequency error was calculated as a difference between the measured and nominal (stated by manufacturer) frequencies.
Table 7.4.5 Frequency tolerance test results
OPERATING FREQUENCY RANGE: 7454.5-7513.5 MHzSYSTEM TYPE B3CLASS 5B (128 QAM)CHANNEL SPACING 28 MHzRESOLUTION BANDWIDTH: 1 kHzVIDEO BANDWIDTH: 1 kHzMODULATION: unmodulated
Frequency, MHzTemperature,ºC
Voltage,V
Measured Nominal*
Frequency error,kHz**
Limit,kHz
Margin,kHz
Verdict
Low frequency -35/-5 Nominal 7454.5025 2.50 -370.225
23/23 Nominal 7454.4995 -0.50 -372.225
55/55 Nominal 7454.5010
7454.5
1.00
372.725
-371.725
Pass
Mid frequency
-35/-5 Nominal 7484.0025 2.50 -371.70
23/23 Nominal 7483.9995 -0.50 -373.707484 374.20 Pass
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Table 7.4.6 Frequency tolerance test results
OPERATING FREQUENCY RANGE: 7454.5-7513.5 MHzSYSTEM TYPE B1CLASS 2 (QPSK)CHANNEL SPACING 7 MHzRESOLUTION BANDWIDTH: 1 kHzVIDEO BANDWIDTH: 1 kHzMODULATION: unmodulated
Frequency, MHzTemperature,ºC
Voltage,V Measured Nominal*
Frequency error,kHz**
Limit,kHz
Margin,kHz
Verdict
Low frequency
-35/-5 Nominal 7454.50000 0.00 -111.8223/23 Nominal 7454.50010 0.10 -111.72
55/55 Nominal 7454.50075
7454.5
0.75
111.82
-111.07
Pass
Mid frequency
-35/-5 Nominal 7484.00000 0.00 -112.2623/23 Nominal 7484.00000 0.00 -112.26
55/55 Nominal 7484.00075
7484
0.75
112.26
-111.51
Pass
High frequency
-35/-5 Nominal 7513.5000 0.00 -112.70
23/23 Nominal 7513.5000 0.00 -112.70
55/55 Nominal 7513.5010
7513.5
1.00
112.70
-111.70
Pass
*-Nominal frequency stated by manufacturer.**-Frequency error was calculated as a difference between the measured and nominal (stated by manufacturer) frequencies.
Note 1: Extreme temperatures:ODU: +55ºC /-35ºCIDU: +55ºC /-5ºC
Note 2: According to the manufacturer declaration the EUT contains a DC regulator in the DC source therefore the testing atextreme voltages is considered not necessary.
Reference numbers of test equipment used
HL 2780 HL 2911 HL 3210 HL 3286 HL 3435 HL 3442
Full description is given in Appendix A.
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Report ID: CERRAD_EN.18806.doc
Date of Issue: 6/25/2008
Test specification: Receiver spurious emissions, Section 5.3.1Test procedure: EN 301 126-1, Section 5.3.2
Test mode: Compliance
Date & Time: 6/11/2008 11:20:56 AMVerdict: PASS
Temperature: 23ºC Air Pressure: 1007 hPa Relative Humidity: 52% Power Supply: -48 VDC
Remarks:
Photograph 8.1.1 Setup for spurious emission measurements
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Table 8.1.2 Spurious emission test results
OPERATING FREQUENCY RANGE: 7608.5 - 7667.5 MHz INVESTIGATED FREQUENCY RANGE: 30-26000 MHz DETECTOR USED: AVR RESOLUTION BANDWIDTH: 100 kHz in 30 MHz – 1000 MHz range,
1.0 MHz above 1000 MHzVIDEO BANDWIDTH: RBW MODULATING SIGNAL: NA
MODULATION: 128QAMDATA RATE: 155 MbpsCHANNEL SPACING: 28 MHz
Frequency,MHz
SA reading,dBm
RBW,kHz
Attenuator,dB
Cable loss,dB
Spurious emission,dBm
Limit,dBm
Margin,dB*
Verdict
Low receive frequency 7608.5 MHz
No spurious emissions were found Pass
Mid receive frequency 7638 MHz
No spurious emissions were found Pass
High receive frequency 7667.5 MHz
No spurious emissions were found Pass
*- Margin = Spurious emission – specification limit.
MODULATION: QPSKDATA RATE: 10 MbpsCHANNEL SPACING: 7 MHz
Frequency,MHz
SA reading,dBm
RBW,kHz
Attenuator,dB
Cable loss,dB
Spurious emission,dBm
Limit,dBm
Margin,dB*
Verdict
Low receive frequency 7608.5 MHz
No spurious emissions were found Pass
Mid receive frequency 7638 MHz
No spurious emissions were found Pass
High receive frequency 7667.5 MHz
No spurious emissions were found Pass
*- Margin = Spurious emission – specification limit.
MODULATION: QPSKDATA RATE: 38 MbpsCHANNEL SPACING: 28 MHz
Frequency SA reading RBW Attenuator Cable loss Spurious emission Limit Margin
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Date of Issue: 6/25/2008
Test specification: BER versus receive signal level RSL, Section 5.3.2Test procedure: EN 301 126-1, Section 5.3.3.1Test mode: Compliance
Date & Time: 6/11/2008 11:22:06 AMVerdict: PASS
Temperature: 23ºC Air Pressure: 1007 hPa Relative Humidity: 52% Power Supply: -48 VDC
Remarks:
Photograph 8.2.1 BER vs. RSL test setup
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Table 8.2.2 BER vs RSL test results
MEASUREMENT REFERENCE POINT: C INPUT VOLTAGE: Vnom=-48VDC RF CHANNEL FREQUENCY: Measurements were performed at low, mid and high frequencies
at nominal condition
Frequency,MHz
Modulation typeChannelspacing,
MHz
Bit Rate,Mbit/s
Measured RSL for10-6 BER, dBm
RSL limitat 10-6 BER, dBm
Margin,dB
Verdict
Temperature 24°C
16 QAM 7 20 -86.74 -78.0 -8.74 Pass
128 QAM 28 155 -73.10 -67.0 -6.10 Pass
256 QAM 7 39 -77.57 -72.5 -5.07 Pass
QPSK 28 38 -90.26 -76.0 -14.26 Pass
7608.5
QPSK 7 10 -92.4 -82.0 -10.4 Pass16 QAM 7 20 -86.98 -78.0 -8.98 Pass
128 QAM 28 155 -72.74 -67.0 -5.74 Pass
256 QAM 7 39 -77.70 -72.5 -5.20 Pass
QPSK 28 38 -90.86 -76.0 -14.86 Pass
7638.0
QPSK 7 10 -93.70 -82.0 --11.70 Pass
16 QAM 7 20 -86.83 -78.0 -8.83 Pass
128 QAM 28 155 -72.58 -67.0 -5.58 Pass
256 QAM 7 39 -77.44 -72.5 -4.94 Pass
QPSK 28 38 -90.18 -76.0 -14.18 Pass
7667.5
QPSK 7 10 -93.60. -82.0 -11.60 Pass
Frequency,MHz
Modulation typeChannelspacing,
MHz
Bit Rate,Mbit/s
Measured RSL for
10-8
BER, dBmRSL limit
at 10-8
BER, dBmMargin,
dBVerdict
Temperature 24°C
16 QAM 7 20 -85.90 -76.0 -9.90 Pass7608.5
256 QAM 7 39 -76.82 -70.5 -6.32 Pass
16 QAM 7 20 -86.01 -76.0 -10.01 Pass7638.0
256 QAM 7 39 -77.08 -70.5 -6.58 Pass
16 QAM 7 20 -85.73 -76.0 -9.73 Pass7667.5
256 QAM 7 39 -76.56 -70.5 -6.06 Pass
Frequency,MHz
Modulation typeChannelspacing,
MHz
Bit Rate,Mbit/s
Measured RSL
for 10-10
BER, dBmRSL limit
at 10-10
BER, dBmMargin,
dBVerdict
Temperature 24°C
7608.5 128 QAM 28 155 -71.32 -63.0 -8.32 Pass
7638.0 128 QAM 28 155 -71.35 -63.0 -8.35 Pass
7667.5 128 QAM 28 155 -71.08 -63.0 -8.08 Pass
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Table 8.2.3 BER vs RSL test results
MEASUREMENT REFERENCE POINT: C INPUT VOLTAGE: Vnom=-48VDC RF CHANNEL FREQUENCY: Measurements were performed at mid frequency at extreme
condition
Frequency,MHz
Modulation typeChannelspacing,
MHz
Bit Rate,Mbit/s
Measured RSLfor 10-6 BER,
dBm
RSL limitat 10-6 BER,
dBm
MargindB Verdict
Temperature 55°C (IDU @55 °C)
16 QAM 7 20 -86.74 -78.0 -8.74 Pass
128 QAM 28 155 -72.40 -67.0 -5.40 Pass
256 QAM 7 39 -77.31 -72.5 -4.81 Pass
QPSK 28 38 -90.40 -76.0 -14.4 Pass
7638
QPSK 7 10 -92.14 -82.0 -10.14 PassTemperature -35°C (IDU @-5 °C)
16 QAM 7 20 -87.06 -78.0 -9.06 Pass
128 QAM 28 155 -73.06 -67.0 -6.06 Pass
256 QAM 7 39 -77.83 -72.5 -5.33 Pass
QPSK 28 38 -89.60 -76.0 -13.60 Pass
7638
QPSK 7 10 -93.40 -82.0 -11.40 Pass
Frequency,MHz
Modulation typeChannelspacing,
MHz
Bit Rate,Mbit/s
Measured RSL
for 10-8
BER,dBm
RSL limit
at 10-8
BER,dBm
MargindB Verdict
Temperature 55°C (IDU @55 °C)
16 QAM 7 20 -85.85 -76.0 -9.85 Pass7638
256 QAM 7 39 -76.63 -70.5 -6.13 PassTemperature -35°C (IDU @-5 °C)
16 QAM 7 20 -85.98 -76.0 -9.98 Pass7638
256 QAM 7 39 -77.31 -70.5 -6.81 Pass
Frequency,MHz
Modulation typeChannelspacing,
MHz
Bit Rate,Mbit/s
Measured RSL
for 10-10
BER,dBm
RSL limit
at10-10
BER,dBm
MargindB Verdict
Temperature 55°C (IDU @55 °C)
7638 128 QAM 28 155 -72.05 -63.0 -9.05 PassTemperature -35°C (IDU @-5 °C)
7638 128 QAM 28 155 -71.83 -63.0 -8.83 Pass
Reference numbers of test equipment used
HL 2911 HL 3210 HL 3286 HL 3301 HL 3435 HL 3442
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Date of Issue: 6/25/2008
Test specification: Co-channel "external" interference sensitivity, Section 5.3.3Test procedure: EN 301 126-1, Section 5.3.3.2Test mode: Compliance
Date & Time: 6/11/2008 10:17:05 AMVerdict: PASS
Temperature: 23ºC Air Pressure: 1007 hPa Relative Humidity: 52% Power Supply: -48 VDC
Remarks:
Photograph 8.3.1 Co-channel interference sensitivity measurement setup
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Table 8.3.2 Co-channel interference sensitivity test results
RF CHANNEL FREQUENCY: Measurements were performed at 7638 MHz
INPUT VOLTAGE: Vnom=-48VDC MEASUREMENT REFERENCE POINT: C RECEIVER: MAIN
Thresholddegradation,
dB
Modulationtype
Channelspacing,
MHz
Bitrate,Mbps
Wantedsignal level,
dBm
Unwantedsignal level,
dBm
MeasuredC/I ratio,
dB
Limit C/Iratio,dB
BERVerdict
Main receiver
16 QAM 7 20 -85.98 -107.88 21.90 30 10-6 Pass
128 QAM 28 155 -71.74 -101.61 29.87 35 10-6
Pass256 QAM 7 39 -76.70 -106.85 26.90 33 10
-6 Pass
QPSK 28 38 -89.86 -101.05 11.19 23 10-6 Pass
1
QPSK 7 10 -92.70 -103.24 10.54 23 10-6 Pass
16 QAM 7 20 -83.98 -103.02 19.04 26.5 10-6 Pass
128 QAM 28 155 -69.74 -98.66 28.92 32 10-6 Pass
256 QAM 7 39 -74.70 -99.03 24.33 29 10-6 Pass
QPSK 28 38 -87.86 -99.10 11.24 19 10-6 Pass
3
QPSK 7 10 -90.70 99.88 9.18 19 10-6 Pass
Reference numbers of test equipment used HL 2910 HL 2911 HL 3435 HL 3442
Full description is given in Appendix A.
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Date of Issue: 6/25/2008
Test specification: Adjacent channel interference sensitivity, Section 5.3.4
Test procedure: EN 301 126-1, Section 5.3.3.2
Test mode: Compliance
Date & Time: 6/11/2008 10:29:35 AMVerdict: PASS
Temperature: 23ºC Air Pressure: 1007 hPa Relative Humidity: 52% Power Supply: -48 VDC
Remarks:
Photograph 8.4.1 Adjacent channel interference sensitivity measurement setup
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Table 8.4.2 Adjacent channel interference sensitivity test results
RF CHANNEL FREQUENCY: Measurements were performed 7638 MHz INPUT VOLTAGE:
V
nom=-48 VDC
MEASUREMENT REFERENCE POINT: C RECEIVER: MAIN
For lower adjacent channel:
Channel spacing: 7 MHz, adjacent channel frequency: 7631 MHzChannel spacing: 28 MHz, adjacent channel frequency: 7610 MHz;
Thresholddegradation,
dB
Modulationtype
Channelspacing,
MHz
Bitrate,Mbps
Wantedsignal level,
dBm
Unwantedsignal level,
dBm
MeasuredC/I ratio,
dB
Limit C/Iratio,
dB
MeasuredBER Verdict
Main receiver
16 QAM 7 20 -85.98 -78.25 -7.73 -3 10-6 Pass
128 QAM 28 155 -71.74 -56.67 -15.07 -5 10-6 Pass
256 QAM 7 39 -76.70 -65.23 -10.87 -2 10-6 Pass
QPSK 28 38 -89.86 -65.26 -24.60 0 10-6 Pass
1
QPSK 7 10 --92.70 -87.12 -5.58 0 10-6 Pass
16 QAM 7 20 -83.98 -74.76 -9.22 -7 10-6 Pass
128 QAM 28 155 -69.74 -50.16 -19.58 -8 10-6 Pass
256 QAM 7 39 -74.70 -63.60 -11.10 -6 10-6 Pass
QPSK 28 38 -87.86 -63.20 -24.66 -4 10-6 Pass
3
QPSK 7 10 -90.70 -83.35 -7.35 -4 10-6 Pass
For upper adjacent channel:
Channel spacing: 7 MHz, adjacent channel frequency: 7645 MHzChannel spacing: 28 MHz, adjacent channel frequency: 7666 MHz
Thresholddegradation,
dB
Modulationtype
Channelspacing,
MHz
Bitrate,Mbps
Wantedsignal level,
dBm
Unwantedsignal level,
dBm
MeasuredC/I ratio,
dB
Limit C/Iratio,
dB
MeasuredBER Verdict
Main receiver
16 QAM 7 20 -85.98 -74.00 -11.98 -3 10-6 Pass
128 QAM 28 155 -71.74 -56.10 -15.64 -5 10-6 Pass
256 QAM 7 39 -76.70 -62.20 -14.50 -2 10-6 Pass
QPSK 28 38 -89.86 -68.10 -21.76 0 10-6 Pass
1
QPSK 7 10 -92.70 -83.66 -9.04 0 10-6 Pass
16 QAM 7 20 -83.98 -71.06 -12.92 -7 10-6 Pass
128 QAM 28 155 -69.74 -51.48 -18.26 -8 10-6 Pass
256 QAM 7 39 -74.70 -60.71 -13.99 -6 10-6 Pass
QPSK 28 38 -87.86 -66.45 -21.41 -4 10-6 Pass
3
QPSK 7 10 90 70 78 69 12 01 4 10-6
Pass
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Test specification: Continuous wave (CW) spurious interference, Section 5.3.5
Test procedure: EN 301 126-1, Section 5.3.3.4
Test mode: Compliance
Date & Time: 6/5/2008 3:58:38 PMVerdict: PASS
Temperature: 23ºC Air Pressure: 1010 hPa Relative Humidity: 61% Power Supply: -48 VDC
Remarks:
Photograph 8.5.1 CW spurious interference measurement setup
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Table 8.5.2 CW spurious interference test results
RF CHANNEL FREQUENCY: Measurements were performed at 7638 MHz INPUT VOLTAGE: Vnom=-48 VDC MEASUREMENT REFERENCE POINT: C
CW interferencefrequency (band)
Modulation typeChannelspacing,
MHz
Bit rate,Mbit/s
Input RSL,dBm
Unwantedsignal level,
dBm
MeasuredBER
Verdict
16 QAM 7 20 -78 -48 10-6. Pass
256 QAM 7 39 -72.5 -42.5 10-6. Pass30-7603
QPSK 7 10 -82 -52 10-6. Pass
16 QAM 7 20 -78 -58 10-6
. Pass256 QAM 7 39 -72.5 -52.5 10-6. Pass7603-7620.5
QPSK 7 10 -82 -62 10-6. Pass
16 QAM 7 20 -78 -58 10-6. Pass
256 QAM 7 39 -72.5 -52.5 10-6. Pass7655.5-7673
QPSK 7 10 -82 -62 10-6. Pass
16 QAM 7 20 -78 -48 10-6. Pass
256 QAM 7 39 -72.5 -42.5 10-6. Pass7673-26000
QPSK 7 10 -82 -52 10-6. Pass
128 QAM 28 155 -67 -37 10-6. Pass
30-7498QPSK 28 38 -76 -46 10
-6. Pass
128 QAM 28 155 -67 -37 10-6. Pass7498-7568
QPSK 28 38 -76 -46 10-6
. Pass128 QAM 28 155 -67 -37 10
-6. Pass
7708-7778QPSK 28 38 -76 -46 10-6. Pass
128 QAM 28 155 -67 -37 10-6. Pass7778-26000
QPSK 28 38 -76 -46 10-6. Pass
Reference numbers of test equipment used
HL 0661 HL 2015 HL 3208 HL 3301 HL 3302 HL 3439 HL 3441 HL 3442
Full description is given in Appendix A.
R t ID CERRAD EN 18806 d
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10 APPENDIX A Test equipment and ancillaries used for tests
HLNo
Description Manufacturer Model Ser. No. Last Cal. Due Cal.
0661 Generator Swept Signal, 10 MHz to 40GHz, + 10 dBm
HP 83640B 3614A00266
23-Sep-07 23-Sep-08
1650 Attenuators Set (2, 3, 5, 20 dB), DC-18GHz
M/A-COM 2082 1650 03-Jan-08 03-Jan-09
2015 Power Divider, 0.5-18.0 GHz, 80 W Omni Spectra 2090-6204-00
2015 05-Dec-07 05-Dec-08
2780 EMC analyzer, 100 Hz to 26.5 GHz AgilentTechnologies
E7405A MY4510246
11-Jun-07 11-Jun-09
2910 Cable 18 GHz, 3 m, SMA-SMA Gore NA 989370 05-Oct-07 05-Oct-08
2911 Cable 18 GHz, 1.5 m, SMA-SMA Gore NA 89386 05-Oct-07 05-Oct-08
3208 Cable 40GHz, 1.8 m Gore GOR245 05118338 10-Jun-08 10-Jun-09
3210 Temperature Chamber, (-50…+100) °C Associated NA NA 16-Aug-07 16-Aug-08
3286 Temperature Chamber, (-40 to +170) °C Thermotron EL-8-CH-1-1-CO2
21-9048 16-Aug-07 16-Aug-08
3301 Power Meter, P-series, 50 MHz to 40 GHz AgilentTechnologies
N1911A MY45101057
27-Jul-07 27-Jul-08
3302 Power sensor, P-Series, 50 MHz to 40GHz, -35/30 to 20 dBm
AgilentTechnologies
N1922A MY45240586
25-Jul-07 25-Jul-08
3386 Microwave Cable Assembly, 26.5 GHz,1.0 m, N type/N type
SuhnerSucoflex
104EA 3386 12-Feb-08 12-Feb-09
3435 Precision Fixed Attenuator, 50 Ohm, 5 W,10 dB, DC to 18 GHz
Mini-Circuits BW-S10W5+
NA 09-Mar-08 09-Mar-09
3439 Precision Fixed Attenuator, 50 Ohm, 5 W,20 dB, DC to 18 GHz
Mini-Circuits BW-S20W5+
NA 09-Mar-08 09-Mar-09
3441 Precision Fixed Attenuator, 50 Ohm, 5 W,
20 dB, DC to 18 GHz
Mini-Circuits BW-
S20W5+
NA 09-Mar-08 09-Mar-09
3442 Precision Fixed Attenuator, 50 Ohm, 5 W,20 dB, DC to 18 GHz
Mini-Circuits BW-S20W5+
NA 09-Mar-08 09-Mar-09
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11 APPENDIX B Measurement uncertainties
Expanded uncertainty at 95% confidence in Hermon Labs EMC measurements
Test description Expanded uncertainty
Frequency error ± 0.56 ppm
Carrier power conducted ± 1.7 dB
Adjacent channel power ± 1.3 dBReceiver sensitivity ± 2.4 dB
Spurious emissions conducted at RF antennaconnector
30 MHz to 2.9 GHz: ± 2.6 dB
2.9 GHz to 6.46 GHz: ± 3.5 dB
6.46 GHz to 12.75 GHz: ± 4.3 dB
13.2 GHz to 22.0 GHz: ± 5.0 dB
22.0 GHz to 26.8 GHz: ± 5.5 dB
26.8 GHz to 40.0 GHz: ± 4.8 dB
Hermon Laboratories is accredited by A2LA for calibration according to present requirements of ISO/IEC 17025 and NCSL
Z540-1. The accreditation is granted to perform calibration of parameters that are listed in the Scope of Hermon Laboratories Accreditation.Hermon Laboratories calibrates its reference and transfer standards by calibration laboratories accredited to ISO/IEC 17025by a mutually recognized Accreditation Body or by a recognized national metrology institute. All reference and transferstandards used in the calibration system are traceable to national or international standards.In-house calibration of all test and measurement equipment is performed on a regular basis according to HermonLaboratories calibration procedures, manufacturer calibration/verification procedures or procedures defined in the relevantstandards. The Hermon Laboratories test and measurement equipment is calibrated within the tolerances specified by themanufacturers and/or by the relevant standards.
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12 APPENDIX C Test laboratory description
Tests were performed at Hermon Laboratories Ltd., which is a fully independent, private, EMC, safety, environmental andtelecommunication testing facility. Hermon Laboratories is listed by the Federal Communications Commission (USA) for allparts of Code of Federal Regulations 47 (CFR 47) and by Industry Canada for electromagnetic emissions (file numbers IC2186-1 for OATS and IC 2186-2 for anechoic chamber), certified by VCCI, Japan (the registration numbers are R-808 forOATS, R-1082 for anechoic chamber, C-845 for conducted emissions site), assessed by TNO Certification EP&S(Netherlands) for a number of EMC, telecommunications, environmental, safety standards, and by AMTAC (UK) for safety of
medical devices. The laboratory is accredited by American Association for Laboratory Accreditation (USA) according toISO/IEC 17025 for electromagnetic compatibility, product safety, telecommunications testing and environmental simulation(for exact scope please refer to Certif icate No. 839.01).
Address: P.O. Box 23, Binyamina 30500, Israel.Telephone: +972 4628 8001Fax: +972 4628 8277e-mail: mail@hermonlabs.comwebsite: www.hermonlabs.com
Person for contact: Mr. Alex Usoskin, CEO.
13 APPENDIX D Specification references
EN 302 217-2-2 V1.1.3: 2004-12 Fixed Radio Systems; Characteristics and requirements for point-to- pointequipment and antennas; Part2-2: Harmonized EN covering the essentialrequirements of article 3.2 of the R&TTE Directive standard for digital systemsoperating in frequency bands where frequency co-ordination is applied
EN 301 126-1 V1.1.2:1999-09 Fixed Radio Systems; Conformance testing; Part 1:Point-to-point equipment;Definitions, general requirements and test procedures
Report ID: CERRAD EN.18806.doc
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Report ID: CERRAD_EN.18806.docDate of Issue: 6/25/2008
14 APPENDIX E Abbreviations and acronyms
A ampere AC alternating current AM amplitude modulation AVRG average (detector)BB broad bandC/I Carrier to Interfer (ratio)
cm centimeterdB decibeldBm decibel referred to one milliwatt
dB(µV) decibel referred to one microvolt
dB(µV/m) decibel referred to one microvolt per meter
dB(µ A) decibel referred to one microamperedB" decibel referred to one OhmDC direct currentEIRP equivalent isotropically radiated powerERP effective radiated powerEUT equipment under test
F frequencyGHz gigahertzGND groundH heightHL Hermon laboratoriesHz hertzk kilokHz kilohertzLO local oscillatorm meterMHz megahertz
mm millimeterms millisecond
µs microsecondNA not applicableNB narrow bandOATS open area test site
Ω Ohmppm part per million (10
-6)
QP quasi-peakRE radiated emissionRF radio frequency
rms root mean squareRx receives secondT temperatureTx transmitV voltWB widebandeband
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