
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
EXHIBIT # 3 FCC Requirements CRF 47 Part 2.1033,c (3) Installation and Operating Instructions 4X8 T1
FCC Exhibits for Certification of JXBLMDSXP4-8T EXHIBITFile Name DescriptionFile Size Type Exhibit Master FCC Exhibits Index for all enclosures20K Word Exhibits 1&22.1033 ,c(1)&(2) Mailing address and FCC Identifier 19K Word Exhibit 32.1033 ,c(3) Installation and Operating Instructions 896K Acrobat Exhibits 4,5&6 2.1033 ,c(4)&(5)&(6)Operating Parameters 21K Word Exhibit 7&82.1033 ,c(7)&(8) Power Rating and DC Power input 78K Acrobat Exhibit 92.1033 ,c(9) Tune-up Procedure316K Acrobat Exhibit 102.1033 ,c(10) Frequency, Spurious and Po Control 398K Acrobat Exhibit 112.1033 ,c(11) Drawing of Nameplate20K Word Exhibit 122.10331 ,c(12) Photograph of IDU37K JPEG Exhibit 132.10332 ,c(12) Photograph of IDU19K JPEG Exhibit 142.10333 ,c(12) Photograph of ODU 331K JPEG Exhibit 152.10334 ,c(12) Photograph of Transmitter42K JPEG Exhibit 162.10335,c(12) Photograph of IDU JPEG Exhibit 172.1033 ,c(13) Modulation System Description 245K Acrobat Exhibit 182.1033 ,c(14) Data Package #1 98K Acrobat Exhibit 19 2.1033,c(14) Data Package #2 51K Word Exhibit 202.1033 ,c(15,16,17) Not Applicable
EXHIBIT # 11 FCC Requirements CRF 47 Part 2.1033,c (11) Drawing of Nameplate JXBLMDSXP4-8T 840-202281-011ODU28 4/8T1 Band 1 Low27,69527,935410 840-202281-012ODU28 4/8T1 Band 1 High28,10528,345410 840-202282-011ODU28 4/8T1 Band 1 Low29,10029,2501975 840-202282-012ODU28 4/8T1 Band 1 High31,07531,2251975 840-202283-011ODU28 4/8T1 Band 1 Low31,00031,075225 840-202283-012ODU28 4/8T1 Band 1 High31,22531,300225 840-202284-011ODU28 4/8T1 Band 1 Low27,61027,850350 840-202284-012ODU28 4/8T1 Band 1 High27,96028,200350 Part # 840-20228X-011 ODU: 28 GHz Band 1 Low Range 27.500 β 31.300 GHz Nominal Power + 16 dBm FCC ID JXBLMDSXP4-8T Part # 840-20228X-012 ODU: 28 GHz Band 1 High Range 27.500 β 31.300 GHz Nominal Power + 16 dBm FCC ID JXBLMDSXP4-8T
Exhibit 1 & 2 JXBLMDSXP4-8T This transmitter is a dual data rate system. By operator selection the transmitter can be programmed to operate at 4T1 or 8T1 rate. The design will automatically optimize for spectral efficiency and new frequency centers. FCC Requirement 2.1033 ,c(1)&(2) Mailing Address: Digital Microwave Corporation N.W. 3325 S. 116 th , St. Seattle, Wa. 98168 FCC Identifier: JXBLMDSXP4-8T
EXHIBIT # 4,5&6 FCC Requirements CRF 47 Part 2.1033,c (4)&(5)&(6) Operating Parameters JXBLMDSXP4-8T EXHIBIT 2.1033,c(4)&(5)&(6) Type of Emission, Necessary Bandwidth and Modulation Characteristics for 4XT1 and the 8XT1 Radio: The DMC XP4 T-Carrier radio is employed to process digital information of various types. Voice, data, television, and many other information types can be encoded and transmitted across this radio system. The emission designators, 5M00F7W, and 10M0F7W were developed by the following process: The necessary bandwidth was developed from the following equation: CFR 47 part 2.202, (b) For 4XT1 Data rate (including overhead): Bn = 2 DK + B B= R/log(base2) of S B= (7.249Mbits/sec.)/2 = 3.6245M Symbols/sec. Where: Bn = Necessary bandwidth in MHz R= Aggregate bit rate in bits/sec = 7.249 Mbits/sec. S= number of transmitter levels = 4 D= deviation in MHz = .687 MHz K= 1 for this modulation type Therefore Bn = (2) (.687E+6) (1) + 3.624E+6 = 5.00 MHz The F7W portion of the designator is derived as follows F = Frequency Modulation [CFR47 part 2.201 (c)] 7 = is the nature of the modulation signal [CFR47 part2.201 (d)] W = is the type of information transmitted [CFR47 part2.201 (e)] The resultant complete emission designator for the 4XT1 can be stated as 5M0OF7W For 8XT Data rate (including overhead): Bn = 2 DK + B B= R/log(base2) of S B= (14.48Mbits/sec.)/2 = 7.249M Symbols/sec. Where: Bn = Necessary bandwidth in MHz R= Aggregate bit rate in bits/sec = 14.48 Mbits/sec. S= number of transmitter levels = 4 D= deviation in MHz = 1.375 MHz K= 1 for this modulation type Therefore Bn = (2) (1.375+6) (1) + 7.249E+6 = 10.00 MHz The F7W portion of the designator is derived as follows F = Frequency Modulation [CFR47 part 2.201 (c)] 7 = is the nature of the modulation signal [CFR47 part2.201 (d)] W = is the type of information transmitted [CFR47 part2.201 (e)] The resultant complete emission designator for the 8XT1 can be stated as 10MOF7W Frequency Range: Three Bands1.27,500 to 28,350 MHz 2. 29,100 to 29,250 MHz 3. 31,000 to 31,300 MHz Range of operating power: 30 db Refer to Exhibit 2.1033,c(4)&(5)&(6) and Exhibit 2.1033 ,c(9) for technical description of power control and operation.
EXHIBIT # 7&8 FCC Requirements CRF 47 Part 2.1033,c (7)&(8) Power Rating and DC Power Input JXBLMDSXP4-8T
EXHIBIT # 10 FCC Requirements CRF 47 Part 2.1033,c (10) Frequency, Spurious and Power Control JXBLMDSXP4-8T EXHIBIT 10 Frequency Control for 28 to 31 GHZ LMDS Radio CFR 47 part 2.1055 / 101.107 (IO) Frequency setting and stabilization: Frequency Stability is a function of the Reference clock as shown in the specification sheet by Champion part number K 1 600. The requirement for the LMDS application ( CFR 47 part 101.107 ) is +/- .00 1 %. This radio will provide stability of better than +/- .0005 %. The following drawing shows the arrangement of the various frequency determining elements for the XP4 radio. Additionally, the process which the computer controls the setting for the required frequency is also illustrated in this section. Transmitter Frequency Control Circuit
EXHIBIT # 16 FCC Requirements CRF 47 Part 2.1033,c (13) Modulation System Description JXBLMDSXP4-8T EXHIBIT 2.1033,c(4)&(5)&(6) Type of Emission, Necessary Bandwidth and Modulation Characteristics for 4XT1 and the 8XT1 Radio: The DMC XP4 T-Carrier radio is employed to process digital information of various types. Voice, data, television, and many other information types can be encoded and transmitted across this radio system. The emission designators, 5M00F7W, and 10M0F7W were developed by the following process: The necessary bandwidth was developed from the following equation: CFR 47 part 2.202, (b) For 4XT1 Data rate (including overhead): Bn = 2 DK + B B= R/log(base2) of S B= (7.249Mbits/sec.)/2 = 3.6245M Symbols/sec. Where: Bn = Necessary bandwidth in MHz R= Aggregate bit rate in bits/sec = 7.249 Mbits/sec. S= number of transmitter levels = 4 D= deviation in MHz = .687 MHz K= 1 for this modulation type Therefore Bn = (2) (.687E+6) (1) + 3.624E+6 = 5.00 MHz The F7W portion of the designator is derived as follows F = Frequency Modulation [CFR47 part 2.201 (c)] 7 = is the nature of the modulation signal [CFR47 part2.201 (d)] W = is the type of information transmitted [CFR47 part2.201 (e)] The resultant complete emission designator for the 4XT1 can be stated as 5M0OF7W For 8XT Data rate (including overhead): Bn = 2 DK + B B= R/log(base2) of S B= (14.48Mbits/sec.)/2 = 7.249M Symbols/sec. Where: Bn = Necessary bandwidth in MHz R= Aggregate bit rate in bits/sec = 14.48 Mbits/sec. S= number of transmitter levels = 4 D= deviation in MHz = 1.375 MHz K= 1 for this modulation type Therefore Bn = (2) (1.375+6) (1) + 7.249E+6 = 10.00 MHz The F7W portion of the designator is derived as follows F = Frequency Modulation [CFR47 part 2.201 (c)] 7 = is the nature of the modulation signal [CFR47 part2.201 (d)] W = is the type of information transmitted [CFR47 part2.201 (e)] The resultant complete emission designator for the 8XT1 can be stated as 10MOF7W Frequency Range: Three Bands1.27,500 to 28,350 MHz 2. 29,100 to 29,250 MHz 3. 31,000 to 31,300 MHz Range of operating power: 30 db Refer to Exhibit 2.1033,c(4)&(5)&(6) and Exhibit 2.1033 ,c(9) for technical description of power control and operation. 4XT1 XP4 Occupied Bandwidth Attn_floor56 BW is in MHz x is frequency offset in MHz Attn_BW(),BWx11 . 0.4 . x BW 10050 . 10log()BW F_mask()BW . Attn_floor()11 . 10log()BW 0.4 50 BW 100 Attn_P()P_mean43P_mean BW5.00BW is in MHzP_mean14P_mean is in dBW yAttn_P()P_meanAttn_P()P_meanAttn_floorAttn_floorAttn_BW,BW BW 2 00Attn_BW,BW BW 2 x . 5BW . 2.5BW . 2.5BWF_mask()BW BW 2 BW 2 BW 2 BW 2 F_mask()BW . 2.5BW . 2.5BW . 5BW i..011 Power out antenna port is 16 dBm Transmit Bandwidth is 5.00 MHz 3024181260612182430 60 50 40 30 20 10 0 10 Transmit Mask for XP2(4XT1) Frequency offset from carrier MHz Attenuation dB =y2929565617.990017.9956562929() =x2512.512.57.2512.52.52.52.57.25112.512.525() 8XT1 XP4 Occupied Bandwidth Attn_floor56 BW is in MHz x is frequency offset in MHz Attn_BW(),BWx11 . 0.4 . x BW 10050 . 10log()BW F_mask()BW . Attn_floor()11 . 10log()BW 0.4 50 BW 100 Attn_P()P_mean43P_mean BW10.00BW is in MHzP_mean14P_mean is in dBW yAttn_P()P_meanAttn_P()P_meanAttn_floorAttn_floorAttn_BW,BW BW 2 00Attn_BW,BW BW 2 x . 5BW . 2.5BW . 2.5BWF_mask()BW BW 2 BW 2 BW 2 BW 2 F_mask()BW . 2.5BW . 2.5BW . 5BW i..011 Power out antenna port is 16 dBm Transmit Bandwidth is 10.00 MHz 3024181260612182430 60 50 40 30 20 10 0 10 Transmit Mask for XP2(8XT1) Frequency offset from carrier MHz Attenuation dB =y2929565621002156562929() =x50252513.75555513.75252550()
EXHIBIT # 9 FCC Requirements CRF 47 Part 2.1033,c (9) Tune up Procedure JXBLMDSXP4-8T
EXHIBIT # 17 FCC Requirements CRF 47 Part 2.1033,c (14) Data Package JXBLMDSXP4-8T
EXHIBIT # 18 FCC Requirements CRF 47 Part 2.1033,c (14) Data Package # 2 JXBLMDSXP4-8T TEMP VDC CH FREQ SETTING FREQ ACTUAL PPM 55c21.6Low 27.390 Ghz27.389940033 Ghz 2.189 55c21.6Mid 27.430 Ghz27.429941660 Ghz 2.131 55c21.6High 27.470 Ghz27.469942965 Ghz 2.083 55c72.0Low 27.390 Ghz27.389940079 Ghz 2.189 55c72.0Mid 27.430 Ghz27.429941615 Ghz 2.131 55c72.0High 27.470 Ghz27.469942940 Ghz 2.083 45c21.6Low 27.390 Ghz27.390029081 Ghz 1.058 45c21.6Mid 27.430 Ghz27.430030913 Ghz 1.127 45c21.6High 27.470 Ghz27.470032609 Ghz 1.189 45c72.0Low 27.390 Ghz27.390029675 Ghz 1.080 45c72.0Mid 27.430 Ghz27.430031343 Ghz 1.142 45c72.0High 27.470 Ghz27.470032897 Ghz 1.197 35c21.6Low 27.390 Ghz27.390018642 Ghz 0.678 35c21.6Mid 27.430 Ghz27.430018733 Ghz 0.682 35c21.6High 27.470 Ghz27.470017521 Ghz 0.638 35c72.0Low 27.390 Ghz27.390013408 Ghz 0.489 35c72.0Mid 27.430 Ghz27.430015241 Ghz 0.554 35c72.0High 27.470 Ghz27.470017075 Ghz 0.620 25c21.6Low 27.390 Ghz27.390015881 Ghz 0.576 25c21.6Mid 27,430 Ghz27.430016797 Ghz 0.609 25c21.6High 27.470 Ghz27.470017266 Ghz 0.627 25c72.0Low 27.390 Ghz27.390008243 Ghz 0.303 25c72.0Mid 27.430 Ghz27.430011872 Ghz 0.430 25c72.0High 27.470 Ghz27.470014292 Ghz 0.518 15c21.6Low 27.390 Ghz27.390029552 Ghz 1.076 15c21.6Mid 27.430 Ghz27.430031164 Ghz 1.135 15c21.6High 27.470 Ghz27.470032607 Ghz 1.189 Transmitter Frequency Stability 28Ghz DS3/ARU17954 (B) 15c72.0Low 27.390 Ghz27.390029813 Ghz 1.087 15c72.0Mid 27.430 Ghz27.430031368 Ghz 1.142 15c72.0High 27.470 Ghz27.470033030 Ghz 1.204 TEMP VDC CH FREQ SETTING FREQ ACTUAL PPM 5c21.6Low 27.390 Ghz27.389989758 Ghz 0.375 5c21.6Mid 27.430 Ghz27.429990766 Ghz 0.339 5c21.6High 27.470 Ghz27.469991338 Ghz 0.317 5c72.0Low 27.390 Ghz27.389986617 Ghz 0.490 5c72.0Mid 27.430 Ghz27.429988106 Ghz 0.434 5c72.0High 27.470 Ghz27.469990374 Ghz 0.354 -5c21.6Low 27.390 Ghz27.389999874 Ghz 0.007 -5c21.6Mid 27.430 Ghz27.430001268 Ghz 0.043 -5c21.6High 27.470 Ghz27.470002647 Ghz 0.094 -5c72.0Low 27.390 Ghz27.389998422 Ghz 0.058 -5c72.0Mid 27.430 Ghz27.430000250 Ghz 0.009 -5c72.0High 27.470 Ghz27.470002049 Ghz 0.072 -15c21.6Low 27.390 Ghz27.389990928 Ghz 0.332 -15c21.6Mid 27.430 Ghz27.429992610 Ghz 0.270 -15c21.6High 27.470 Ghz27.469994296 Ghz 0.208 -15c72.0Low 27.390 Ghz27.389991437 Ghz 0.313 -15c72.0Mid 27.430 Ghz27.429992479 Ghz 0.277 -15c72.0High 27.470 Ghz27.469994563 Ghz 0.200 -25c21.6Low 27.390 Ghz27.389992730 Ghz 0.266 -25c21.6Mid 27,430 Ghz27.429994355 Ghz 0.208 -25c21.6High 27.470 Ghz27.469995950 Ghz 0.149 -25c72.0Low 27.390 Ghz27.389992403 Ghz 0.277 -25c72.0Mid 27.430 Ghz27.429994192 Ghz 0.215 -25c72.0High 27.470 Ghz27.469995730 Ghz 0.156 -30c21.6Low 27.390 Ghz27.389994915 Ghz 0.186 -30c21.6Mid 27.430 Ghz27.429996546 Ghz 0.127 -30c21.6High 27.470 Ghz27.469998070 Ghz 0.072 -30c72.0Low 27.390 Ghz27.389995110 Ghz 0.178 -30c72.0Mid 27.430 Ghz27.429996681 Ghz 0.124 -30c72.0High 27.470 Ghz27.469998210 Ghz 0.065 Transmitter Frequency Stability 28Ghz DS3/ARU17954 (B) Frequency (Mhz) Polarity Level (dBm) Spec. (dBm) Margin (dBm) Pass Fail 36.0Horizontal-52.0-29.023.0Pass 43.0Horizontal-50.0-29.021.0Pass 148.0Horizontal-41.0-29.012.0Pass 172.0Horizontal-52.0-29.023.0Pass 188.0Horizontal-39.0-29.010.0Pass 197.0Horizontal-48.0-29.019.0Pass 199.0Horizontal-47.0-29.018.0Pass 222.0Horizontal-48.0-29.019.0Pass 232.0Horizontal-53.0-29.024.0Pass 246.0Horizontal-54.0-29.025.0Pass 271.0Horizontal-52.0-29.023.0Pass 344.0Horizontal-53.0-29.024.0Pass 369.0Horizontal-52.0-29.023.0Pass 443.0Horizontal-56.0-29.027.0Pass 463.0Horizontal-55.0-29.026.0Pass 482.0Horizontal-56.0-29.027.0Pass 492.0Horizontal-52.0-29.023.0Pass 519.0Horizontal-51.0-29.022.0Pass 699.0Horizontal-50.0-29.021.0Pass 43.0Vertical-45.0-29.016.0Pass 75.0Vertical-49.0-29.020.0Pass 80.0Vertical-48.0-29.019.0Pass 120.0Vertical-45.0-29.016.0Pass 145.0Vertical-46.0-29.017.0Pass 165.0Vertical-40.0-29.021.0Pass 190.0Vertical-47.0-29.018.0Pass 201.0Vertical-48.0-29.019.0Pass 203.0Vertical-45.0-29.016.0Pass 303.0Vertical-46.0-29.017.0Pass 305.0Vertical-44.0-29.015.0Pass 500.0Vertical-49.0-29.020.0Pass 500 MHz to 170 GHz No spurious with in 20 db of the limit Data collected - July 99 by AB Radiated Emissions Analysis β 0 to 170 GHz Frequency Band26MHz- 2GHz 2-18 GHz 18-26.5 GHz 26.5-40 GHz 40-50 GHz 50-75 GHz 75-110 GHz 110-170 GHz Space Loss db -48.0 -67.15 -70.5 -74.0 -76.02 -79.55 -82.87 -110.0 Horn Gain db 5.5 8.2 24.0 15.0 24.0 25.0 24.1 25.0 Dipole Gain db 2.1 2.1 2.1 2.1 2.1 2.1 2.1 2.1 Mixer Loss db N/A N/A N/A N/A N/A N/A -34 -46 Carrier Level dbm 16.0 16.0 16.0 16.0 16.0 16.0 16.0 16.0 Cable Loss db -3.9 -4.3 -4.7 -5.6 N/A N/A N/A Pre Sel Cal db N/A N/A N/A N/A N/A 0 N/A N/A Amplifier Gain db N/A N/A N/A N/A N/A N/A N/A 72.0 Net Power @ Spec/An dbm -25.9 -43.7 -31.6 -44.6 -38.8 -35.43 -52.6 -40.9 Reference Level Offset db 25.9 43.7 31.6 44.6 38.8 35.43 52.6 40.9 Spurious Cabinet Radiation Table
JXBLMDSXP4-8T EA94961 Answers to question # 1 Antenna Performance Band 27.5 to 31.3 GHz Antenna Key Features β’ Antenna diameter: β’1β (30cm) β’1.5β (45 cm) β’2β (60 cm) β’ Antenna weight: β’1β - 15 lbs (6.8 kg) β’1.5β - 17.5 lbs (7.9 kg) β’2β - 25 lbs (11.25 kg) β’IEC or EIA flanges available. β’Ease of installation, antennas ship completely assembled, mount requires minimal assembly. β’ Standard color, white other colors available on request. β’Corrosive resistant; materials are of coated aluminum, hot dipped galvanized or stainless steel. β’Three year warranty. 28 GHz (27.5-31.3) Broadband Low Profile High-Performance Parabolic Antennas Antenna Specifications,Electrical Model # Frequency, GHz Polarization Gain, (mid-band) Beamwidth, -3dB Front-to-back ratio X-Pol VSWR, Max R.L., dB RF Interface HPLP1.5-28 27.5 - 31.3 Single 39.6 dBi 1.5 degrees 58 dB 28 dB 1.4:1 15.5 WR42 HPLPD1.5-28 27.5 - 31.3 Dual 39.4 dBi 1.5 degrees 58 dB 28 dB 1.4:1 15.5 WR42 Note: Specifications may change without notice. HPLP-28 Rev.B Radio Waves, Inc. β’ 101 Billerica Avenue, Bldg. #4 β’ N. Billerica, MA 01862 USA β’ Tel: (978) 663-5777 β’ Fax: (978) 663-5568 www.radiowavesinc.com β’ E-mail: [email protected] HPLP1-28 27.5 - 31.3 Single 36.5 dBi 2.4 degrees 56 dB 28 dB 1.4:1 15.5 WR42 HPLPD1-28 27.5 - 31.3 Dual 36.3 dBi 2.4 degrees 56 dB 28 dB 1.4:1 15.5 WR42 HPLP2-28 27.5 - 31.3 Single 42.2 dBi 1.2 degrees 60 dB 30 dB 1.4:1 15.5 WR42 HPLPD2-28 27.5 - 31.3 Dual 42.0 dBi 1.2 degrees 60 dB 30 dB 1.4:1 15.5 WR42
JXBLMDSXP4-8T EA94961 Answers to question # 2 Antenna Emissions MASK Band 27.6 to 28.35 GHz Plots 1 β 4 for 4X Data Rates Plots 5 β 8 for 8X Data Rates
JXBLMDSXP4-8T EA94961 Answers to question # 2 Antenna Emissions MASK Band 29.1 to 29.25 GHz GHz Plots 1 β 4 for 4X Data Rates Plots 5 β 8 for 8X Data Rates
JXBLMDSXP4-8T EA94961 Answers to question # 2 Antenna Emissions MASK Band 31.075 to 31.225 GHz GHz Plots 1 β 4 for 4X Data Rates Plots 5 β 8 for 8X Data Rates
JXBLMDSXP4-8T EA94961 Answers to question # 2 Antenna Emissions MASK Band 31.225 to 31.3 GHz GHz Plots 1 β 4 for 4X Data Rates Plots 5 β 8 for 8X Data Rates
JXBLMDSXP4-8T EA94961 Questions # 3 (measurement procedure and sample of calculation) The calibration for spurious is shown on the following page. The Spectrum analyzer is calibrated by adding all the gain factors for each of the measurement bands. The bands are determined by the frequency range of the various elements of the test system. Essentially, the analyzerβs reference is calibrated to the power level of the transmitter under test. The limit line is placed below the reference at the required specification. Spurious Cabinet Radiation Limit Line Calculation Table Frequency Band 26MHz- 2GHz 2-18 GHz 18-26.5 GHz 26.5-40 GHz 40-50 GHz 50-75 GHz 75-110 GHz 110-170 GHz ** Space Loss db -48.0 -67.15 -70.5 -74.0 -76.02 -79.55 -82.87 -110.0 ** Horn Gain db 5.5 8.2 24.0 15.0 24.0 25.0 24.1 25.0 Dipole Gain db 2.1 2.1 2.1 2.1 2.1 2.1 2.1 2.1 Mixer Loss db N/A N/A N/A N/A N/A N/A -34 -46 Carrier Level dbm 16.0 16.0 16.0 16.0 16.0 16.0 16.0 16.0 Cable Loss db -3.9 -4.3 -4.7 -5.6 N/A N/A N/A Pre Sel Cal db N/A N/A N/A N/A N/A 0 N/A N/A Amplifier Gain db N/A N/A N/A N/A N/A N/A N/A 72.0 Net Power @ Spec/Amp dbm -25.9 -43.7 -31.6 -44.6 -38.8 -35.43 -52.6 -40.9 Reference Level Offset db 25.9 43.7 31.6 44.6 38.8 35.43 52.6 40.9 DUTFREE SPACE LOSS TEST ANTENNA SPECTRUM / ANALYZER AMPLIFIER PRESELECTOR MIXER/ Procedure: 1. Set up DUT on rotating table and place test antenna to the appropriate distance. 2. Assemble test equipment for frequency range required. 3. Fill in calibration table for values as required, with test antenna gain and space loss for worst case with in the band being tested. 4. Set up spectrum analyzer for necessary parameters with offset and specification limits determined by table #1, pass fail read directly from display at -29dbm. 5. Activate DUT and rotate table at a rate not to exceed 2deg per sweep time of spectrum analyzer. 6. Perform test for both the vertical and horizontal polarizations. 7. Note significant frequency values and record in table # 2. Spurious, Cabinet Radiation Limit Line, Calculation Table
Antenna Emissions: The following five plots were selected from the entire range of 0 GHz to 170 GHz. These plots show the second and third harmonic energy below the limits of the analyzer ( less than β50 dbm). All other plots up 170 GHz show no energy above the noise floor of the measurement system.
5509 Riviera Β· Granite Bay, California Β· United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 101 | 31.23 GHz - 31.29 GHz | 39.80 mW | 10M0F7W | 0.001 % |

Point to Point Radio for DEMS Operation
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Point-to-Point Communicatios Link For LMDS
Equipment Class
TNB - Licensed Non-Broadcast Station TransmitterTNB - Licensed Non-Broadcast Station Transmitter
Equipment Class
TNB - Licensed Non-Broadcast Station TransmitterPoint-to-Point
Equipment Class
TNB - Licensed Non-Broadcast Station TransmitterDEMS Operation
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter