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1 Test Site: FCC Test Site No.: IC OTS No.: IC ECL-EMC Test Report No.: 12-8 Equipment under test: ION-M7P/17P 17MHz Path FCC ID: XS5-ML717P Type of test: FCC 47 CFR Part 27 Subpart C: 211 Miscellaneous Wireless Communication Services IC RSS-139:29 dvanced Wireless Services Equipment Operating in the Bands MHz and MHz Measurement Procedures: Test result: 47 CFR Parts 2 (Frequency llocations and Radio Treaty Matters; General Rules and Regulations), Part 27:211 (Miscellaneous Wireless Communication Services), NSI/TI-63-C (24), Land Mobile FM or PM Communications Equipment Measurement and Performance Standards IC-GEN General Requirements and Information for the Certification of Radiocommunication Equipment Passed Date of issue: Signature: Issue-No.: 1 uthor: Date of delivery: Checked: Test dates: Pages: 35 ECL-EMC-TR-12-8-V1. Page 1 of 35

2 Manufacturer: NDREW Wireless Systems GmbH Industriering D Buchdorf Tel.: +49 () Fax: +49 () Test Location: TEMPTON Service Plus GmbH European Compliance Laboratory (ECL) Thurn-und-Taxis-Straße 18 D-9411 Nürnberg Tel.: +49 () Fax: +49 () General: The purpose of this report is to show compliance to the FCC regulations for devices operating under Part N 22,N 27 of the Code of Federal Regulations title 47. This report informs about the results of the EMC tests, it only refers to the equipment under test. No part of this report may be reproduced in any form, without written permission. ECL-EMC-TR-12-8-V1. Page 2 of 35

3 Table of contents 1 TEST RESULTS SUMMRY EQUIPMENT UNDER TEST (E.U.T.) DESCRIPTION DOWNLINK UPLINK DESCRIPTION OF EUT BLOCK DIGRM OF MESUREMENT REFERENCE POINTS TEST SITE (NDREW BUCHDORF) TEST ENVIRONMENT TEST EQUIPMENT INPUT ND OUTPUT LOSSES MESUREMENT UNCERTINTY TEST SITE (TEMPTON SERVICE PLUS GMBH) RF POWER OUT: 27.5, 2.46; RSS-139, RSS-GEN LIMIT TEST METHOD TEST RESULTS DOWNLINK CDM W-CDM LTE UPLINK SUMMRY TEST RESULT OCCUPIED BNDWIDTH: 2.49; RSS-GEN LIMIT TEST METHOD TEST RESULTS DOWNLINK CDM W-CDM LTE UPLINK SUMMRY TEST RESULT SPURIOUS EMISSIONS T NTENN TERMINLS: 27.53, 2.51; RSS-139, RSS-GEN LIMIT TEST METHOD TEST RESULTS DOWNLINK WCDM < 1MHz to band edge CDM < 1MHz to band edge...22 ECL-EMC-TR-12-8-V1. Page 3 of 35

4 LTE < 1MHz to band edge CDM > 1MHz to band edge W-CDM > 1MHz to band edge LTE > 1MHz to band edge UPLINK SUMMRY TEST RESULT FIELD STRENGTH OF SPURIOUS EMISSIONS: 27.53, 2.53, RSS METHOD OF MESUREMENT LIMIT (H) CLIMTIC VLUES IN THE LB TEST RESULTS MHZ TO 1 GHZ DOWNLINK (BOTTOM MIDDLE TOP) MHZ TO 1 GHZ DOWNLINK (MIDDLE OF LL CRRIER) GHZ TO 22 GHZ DOWNLINK (BOTTOM MIDDLE TOP) GHZ TO 22 GHZ DOWNLINK (MIDDLE OF LL CRRIER) HISTORY ECL-EMC-TR-12-8-V1. Page 4 of 35

5 1 Test Results Summary Name of Test FCC Para. No. FCC Method FCC Spec. Result RF Power Output 27.5(d) Watts/MHz Complies Occupied Bandwidth Input/Output Complies Spurious Emissions at ntenna Terminals Field Strength of Spurious Emissions 27.53(m) 2.53 TI/E (h) dBm Complies -13dBm E.I.R.P Frequency Stability Must stay in band Complies N Name of Test IC Para. No. IC Method Result RF Power Output RSS RSS-GEN 4.8 Complies Occupied Bandwidth RSS-Gen 4.6 RSS-GEN Complies Spurious Emissions at ntenna Terminals RSS RSS-GEN 4.9 Complies Field Strength of Spurious Emissions RSS-GEN 4.9 Complies RSS SRSP-513 Frequency Stability RSS RSS-GEN 4.7 N Frequency stability is not applicable because the device uses a common oscillator to up convert and down convert the RF signal. The EUT does not contain modulation circuitry, or frequency generation, therefore the test was not performed. ECL-EMC-TR-12-8-V1. Page 5 of 35

6 2 Equipment under test (E.U.T.) 2.1 Description Kind of equipment ION-M7P/17P ndrew Ident. Number Id.No Serial no.(sn) 11 Revision Software version and ID n. a. Type of modulation and Designator Frequency Translation Band Selection Downlink Pass band Max. composite output power based on one carrier per path (rated) CDM (F9W) W-CDM (F9W) LTE (G7D) F1-F1 F1-F2 N/ Software Duplexer Full band 21 MHz 2155 MHz 43,14 dbm = 2,61W *see Uplink Gain* Pass band Pout BTS of 33 dbm 17 MHz 1755 MHz Gain* *see Note: The EUT does not transmit over the air in the uplink direction. n.a Description of EUT ION-M7P/17P is a multi-band, multi-operator remote unit configuration used in conjunction with a master unit in the ION optical distribution system. This system transports up to two frequency bands simultaneously (7 MHz, 17/2 MHz), providing a cost-effective solution for distributing capacity from one or more base stations. The ION- M7P/17P Repeater consists of one 7 MHz path and one 17 MHz path, with the intended use of simultaneous transmission. This Test Report describes only the approval of the 17/2 MHz path ECL-EMC-TR-12-8-V1. Page 6 of 35

7 2.1.4 Block diagram of measurement reference points BTS MU attenuation ION Master Unit E DUT (Remote Unit) O Z B Remote Unit is the DUT O/E Opitcal/Electrical converter SRMU SubRack Master Unit figure #1 Block diagram of measurement reference points Reference point, SRMU UL output, DL input Reference point B, Remote Unit DL output, UL input Reference point Z, BTS DL output, BTS UL input Since a signal generator does not supply a good output signal with+33 or +43dBm, for the downlink measurement the MU ttenuation is not used. That means for downlink measurements the signal generator is connected to measurement point at the master optical / electrical converter and the analyzer to the measurement point B at the RU. ECL-EMC-TR-12-8-V1. Page 7 of 35

8 3 Test site (ndrew Buchdorf) 3.1 Test environment ll tests were performed under the following environmental conditions: Condition Minimum value Maximum value Barometric pressure 86 kpa 6 kpa Temperature 15 C 3 C Relative Humidity 2 % 75 % Power supply range 3.2 Test equipment ±5% of rated voltages NDREW Inv. No. Test equipment Type Manufacturer Serial No. Calibration 8372 Network nalyzer 8753D HP / Spectrum nalyzer FSP-13 R&S 147/13 / Spectrum nalyzer FSQ-26 R&S 34 3/ Signal Generator SMU2 R&S / Signal Generator SMIQ 3B R&S / Power ttenuator Narda 7448 CIU 7338 Power ttenuator 769- Narda 5773 CIU 7191 Power ttenuator Narda 12 CIU 7119 Divider 2way Mikom 3512 CIU 7287 RF-Cable 2,m; N-N Huber & Suhner 28441/4PE CIU 7288 RF-Cable 2,m; N-N Huber & Suhner 28442/4PE CIU 7391 RF-Cable 1,m; SM Huber & Suhner 4447/4P CIU 7391 RF-Cable,5m; SM Huber & Suhner 4225/4P CIU CIU = Calibrate in use 3.3 Input and output losses ll recorded power levels should be referenced to the input and output connectors of the repeater, unless explicitly stated otherwise. The test equipment used in this test has to be calibrated, so that the functionality is also checked. ll cables, attenuators, splitter, isolator, circulator and combiner etc. must be measured before testing and used for compensation during testing. 3.4 Measurement uncertainty The extended measurement uncertainty corresponds to the measurement results from the standard measurement uncertainty multiplied by the coverage factor k=2. The true value is located in the corresponding interval with a probability of 95 %. ECL-EMC-TR-12-8-V1. Page 8 of 35

9 4 Test site (TEMPTON Service Plus GmbH) FCC Test site: IC OTS: IC See relevant dates under section 8. ECL-EMC-TR-12-8-V1. Page 9 of 35

10 5 RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN Signal Generator EUT 3 db tt.* Spectrum nalyzer or Power Meter figure 3.4-#1 Test setup: RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN Measurement uncertainty ±,38 db Test equipment used 889; 8667; 8668; 8848; 7355; 5.1 Limit Minimum standard: Para. No.27.5(d)(2)(B) (d) The following power and antenna height requirements apply to stations transmitting in the MHz and MHz bands: (2) The power of each fixed or base station transmitting in the MHz band and situated in any geographic location other than that described in paragraph (d)(1) is limited to: (B) an EIRP of 164 watts/mhz when transmitting with an emission bandwidth greater than 1 MHz. 5.2 Test method 2.46 Measurements required: RF power output. (a) For transmitters other than single sideband, independent sideband and controlled carrier radiotelephone, power output shall be measured at the RF output terminals when the transmitter is adjusted in accordance with the tune-up procedure to give the values of current and voltage on the circuit circuit elements specified in 2.33(c)(8). The electrical characteristics of the radio frequency load attached to the output terminals when this test is made shall be stated. (c) For measurements conducted pursuant to paragraphs (a) and (b) of this section, all calculations and methods used by the applicant for determining carrier power or peak envelope power, as appropriate, on the basis of measured power in the radio frequency load attached to the transmitter output terminals shall be shown. Under the testconditions specified, no components of the emission spectrum shall exceed the limits specified in the applicable rule parts as necessary for meeting occupied bandwidth or emission limitations ECL-EMC-TR-12-8-V1. Page of 35

11 5.3 Test results Detector RMS. Test signal CDM Signal waveform according to table of standard specification 3GPP2 C.p51- v1. 16.February 26 pilot, sync, paging, 37 traffics, which is equal to the table of 3GPP2 C.S-C v2. 24.February 26. Test signal WCDM Signal waveform according to Test Model 1 of standard specification 3GPP TS Signal modulated with a combination of PCCPCH, SCCPCH and Dedicated Physical Channels specified as test model 1 64 DPCH. Test signal LTE: Signal waveform according to Test Model 1.1, E-TM1.1, clause , table of standard specification 3GPP TS V9.3. (2-3) Downlink Modulation Measured at RBW VBW Span RF Power (dbm) RF Power (W) Plot - CDM 2132,5 MHz 3MHz MHz 15MHz 43,14 2, #1 WCDM 2132,5 MHz MHz MHz 5MHz 43,1 2, #1 LTE 2132,5 MHz 3MHz MHz 5MHz 43,4 2, #1 Maximum output power = 43,14 dbm -> 2,61W Limit Maximum output power = 164 W -> 64,3 dbm table #1 RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN Test results Downlink The max RF Power out is dbm, so the maximum antenna gain (x) can be calculated as follow: Limit = W (erp) = 6 dbm Info: W (erp) = 164W (eirp) 6 dbm > dbm + x dbd = 19.1 dbi > x => The antenna that will use for the complete system have to have a gain lower than 19 dbi, relative to an isotropic antenna. Modulation Pin / dbm (Ref. point B) CDM 2,9 WCDM 3, LTE 3, table #2 RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN Test results Downlink Input power ECL-EMC-TR-12-8-V1. Page 11 of 35

12 CDM RF_Pout_17P_CDM2k 1.pr 11 15:13 Ref 45 dbm Offset 31 db 4 * RBW 3 MHz * VBW MHz * tt 4 db * SWT 3 s dbm GHz 1 RM * CLRWR EXT Center GHz 1.5 MHz/ Span 15 MHz plot #1 RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN; Test results; Downlink; CDM Middle W-CDM RF_Pout_17P_WCDM 1.pr 11 15:17 Ref 45 dbm Offset 31 db 4 * RBW MHz * VBW MHz * tt 4 db * SWT 3 s dbm GHz 1 RM * CLRWR EXT Center GHz 5 MHz/ Span 5 MHz plot #1 RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN; Test results; Downlink; W-CDM Middle ECL-EMC-TR-12-8-V1. Page 12 of 35

13 LTE RF_Pout_17P_LTE 1.pr 11 15:2 Ref 45 dbm 4 Offset 31 db * RBW 3 MHz * VBW MHz * tt 3 db * SWT 3 s dbm GHz 1 RM * CLRWR 3 2 EXT Center GHz 3 MHz/ Span 3 MHz plot #1 RF Power Out: 27.5, 2.46; RSS-139, RSS-GEN; Test results; Downlink; LTE Middle Uplink n.a. Note: The EUT does not transmit over the air in the uplink direction. 5.4 Summary test result Test result complies, according the plots above Tested by: L.Oskerko Date: ECL-EMC-TR-12-8-V1. Page 13 of 35

14 6 Occupied Bandwidth: 2.49; RSS-GEN Signal Generator DUT 3 db att.* Spectrum nalyzer or Power Meter figure 5.4-#1 Test setup: Occupied Bandwidth: 2.49; RSS-GEN Measurement uncertainty ±,38 db Test equipment used 889; 8667; 8668; 8848; 7355; 6.1 Limit The spectral shape of the output should look similar to input for all modulations. 6.2 Test method Para. No.2.49 The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to.5 percent of the total mean power radiated by a given emission shall be measured under the following conditions as applicable: (h) Transmitters employing digital modulation techniques when modulated by an input signal such that its amplitude and symbol rate represent the maximum rated conditions under which the equipment will be operated. The signal shall be applied through any filter networks, pseudo-random generators or other devices required in normal service. dditionally, the occupied bandwidth shall be shown for operation with any devices used for modifying the spectrum when such devices are optional at the discretion of the user. 6.3 Test results Downlink Detector RMS. Modulation Measured at Fcenter / MHz RBW VBW Span Occupied Bandwidth / MHz Plot # CDM Middle 2132,5 3kHz 3kHz 5MHz 1, #1, #2 WCDM Middle 2132,5 khz 1MHz MHz 4, #1, #2 LTE Middle 2132,5 3 khz 3 khz 5 MHz 1, table 6.3-#1 Occupied Bandwidth: 2.49; RSS-GEN Test results Downlink #1,#2 ECL-EMC-TR-12-8-V1. Page 14 of 35

15 CDM OccupBW_17P_CDM2k * RBW 3 khz 4.pr 11 13:4 * VBW 3 khz Ref 43.9 dbm * tt 3 db * SWT 9 s Offset 31 db 4 1 RM * 3 1 CLRWR T1 T dbm GHz OBW 1.24 MHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] 22.2 dbm GHz - EXT Center GHz 5 khz/ Span 5 MHz plot #1 Occupied Bandwidth: 2.49; RSS-GEN; Test results; Downlink; CDM Output 1 RM * CLRWR OccupBW_17P_CDM2k 4.pr 11 13:5 Ref dbm - Offset 31 db tt db 1 * RBW 3 khz * VBW 3 khz * SWT 9 s dbm GHz OBW 1.24 MHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz -2 T1 T2-3 EXT Center GHz 5 khz/ Span 5 MHz plot #2 Occupied Bandwidth: 2.49; RSS-GEN; Test results; Downlink; CDM Input ECL-EMC-TR-12-8-V1. Page 15 of 35

16 W-CDM OccupBW_17P_WCDM * RBW 3 khz 4.pr 11 13:14 * VBW 3 khz Ref 46.9 dbm * tt 3 db * SWT 9 s Offset 31 db 4 1 RM * CLRWR dbm GHz OBW 4.17 MHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] 16.8 dbm GHz 2 T1 T2 EXT Center GHz 1 MHz/ Span MHz plot #1 Occupied Bandwidth: 2.49; RSS-GEN; Test results; Downlink; W-CDM Output 1 RM * CLRWR OccupBW_17P_WCDM 4.pr 11 13:15 Ref dbm - Offset 31 db tt db * RBW 3 khz * VBW 3 khz * SWT 9 s dbm GHz OBW 4.18 MHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz -2-3 T1 1 T2 EXT Center GHz 1 MHz/ Span MHz plot #2 Occupied Bandwidth: 2.49; RSS-GEN; Test results; Downlink; W-CDM Input ECL-EMC-TR-12-8-V1. Page 16 of 35

17 LTE OccupBW_17P_LTE * RBW 3 khz 4.pr 11 13:25 * VBW 3 khz Ref 43.3 dbm * tt 3 db * SWT 9 s 4 1 RM * 3 CLRWR 2 Offset 31 db T1 1 T dbm GHz OBW 1. MHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz - EXT Center GHz 5 khz/ Span 5 MHz plot #1 Occupied Bandwidth: 2.49; RSS-GEN; Test results; Downlink; LTE Output 1 RM * CLRWR OccupBW_17P_LTE 4.pr 11 13:26 Ref dbm - -2 Offset 31 db tt db T1 1 * RBW 3 khz * VBW 3 khz * SWT 9 s T dbm GHz OBW 1. MHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz -3 EXT Center GHz 5 khz/ Span 5 MHz plot #2 Occupied Bandwidth: 2.49; RSS-GEN; Test results; Downlink; LTE Input ECL-EMC-TR-12-8-V1. Page 17 of 35

18 6.3.2 Uplink n.a. Note: The EUT does not transmit over the air in the uplink direction. 6.4 Summary test result Test result Tested by: complies, according the plots above L.Oskerko Date: ECL-EMC-TR-12-8-V1. Page 18 of 35

19 7 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN Signal Generator Signal Generator 3 db coupler DUT 3 db att. Spectrum nalyzer figure 7-#1 Test setup: Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN Measurement uncertainty ±,54 db ± 1,2 db ± 1,5 db 9 khz to 3 GHz 3 GHz to 7 GHz 7 GHz to 26 GHz Test equipment used 889; 8667; 8668; 8848; 7355; 7.1 Limit Minimum standard: Para. No.27.53(h) (h) For operations in the MHz and MHz bands, the power of any emission outside a licensee s frequency block shall be attenuated below the transmitter power (P) by at least 43 + log (P) db. (1) Compliance with this provision is based on the use of measurement instrumentation employing a resolution bandwidth of 1 megahertz or greater. However, in the 1 megahertz bands immediately outside and adjacent to the licensee s frequency block, a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emissions are attenuated at least 26 db below the transmitter power. (2) When measuring the emission limits, the nominal carrier frequency shall be adjusted as close to the licensee s frequency block edges, both upper and lower, as the design permits. (3) The measurements of emission power can be expressed in peak or average values, provided they are expressed in the same parameters as the transmitter power. 7.2 Test method Para. No 2.51 Measurements required: Spurious emissions at antenna terminals. The radio frequency voltage or powers generated within the equipment and appearing on a spurious frequency shall be checked at the equipment output terminals when properly loaded with a suitable artificial antenna. Curves or equivalent data shall show the magnitude of each harmonic and other spurious emission that can be detected when the equipment is operated under the conditions specified in 2.49 as appropriate. The magnitude of spurious emissions which are attenuated more than 2 db below the permissible value need not be specified. [39 FR 5919, Feb. 15, Redesignated andamended at 63 FR 36599, July 7, 1998] ECL-EMC-TR-12-8-V1. Page 19 of 35

20 7.3 Test results Downlink <1MHz from Band Edge Detector: RMS. Modulation Measured at Band Edge Carriers RBW VBW Span Max. level (dbm) Plot - WCDM Lower Edge Upper Edge 21,775 MHz 2112,25 MHz 2152,975 MHz 2154,225 MHz 3kHz 3kHz 6MHz -19, #1 #2 CDM Lower Edge Upper Edge 2112,6 MHz 2117,6 MHz 2147,4 MHz 2152,4 MHz khz 1MHz 15MHz -24, #1 #2 LTE Lower Edge Upper Edge 21,7 MHz 2112,1 MHz 2152,9 MHz 2154,3 MHz 3kHz 3kHz 6MHz -18, #1 table 7.3-#1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN Test results Downlink <1MHz from Band Edge >1MHz from Band Edge Detector: RMS. #2 Modulation Carrier at Carrier Max. level (dbm) CDM Middle 2132,5 MHz < -3 WCDM Middle 2132,5 MHz < -3 RBW VBW Frequency range 1MHz 3MHz 3MHz 22GHz 1MHz 3MHz 3MHz 22GHz Plot # #1 LTE Middle 2132,5 MHz < -3 1MHz 3MHz 3MHz 22GHz #1 table 7.3-#2 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN Test results Downlink >1MHz from Band Edge ECL-EMC-TR-12-8-V1. Page 2 of 35

21 WCDM < 1MHz to band edge 1 RM * CLRWR SpurEm_17P_WCDM_LoEd * RBW khz 5.pr 11 9:37 VBW 1 MHz Ref 4.6 dbm * tt 3 db * SWT 9 s Offset 31 db LIMIT CHECK PSS 2 Marker 2 [T1 ] dbm GHz dbm 2.1 GHz EXT Center 2.11 GHz 1.5 MHz/ Span 15 MHz plot #1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; WCDM < 1MHz to band edge Lower Band Edge 1 RM * CLRWR SpurEm_17P_WCDM_UpEd * RBW khz 5.pr 11 9:24 VBW 1 MHz Ref 4.6 dbm * tt 3 db * SWT 9 s Offset 31 db 1 LIMIT CHECK PSS dbm GHz Marker 2 [T1 ] dbm GHz EXT Center GHz 1.5 MHz/ Span 15 MHz plot #2 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; WCDM < 1MHz to band edge Upper Band Edge ECL-EMC-TR-12-8-V1. Page 21 of 35

22 CDM < 1MHz to band edge SpEm_17P_CDM_LoEd * RBW 3 khz 5.pr 11 8:9 VBW 3 khz Ref 4.6 dbm * tt 3 db * SWT 9 s dbm GHz 1 RM * CLRWR Offset 31 db LIMIT CHECK PSS 1 Marker 2 [T1 ] dbm 2.1 GHz EXT Center 2.11 GHz 6 khz/ Span 6 MHz plot #1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; CDM < 1MHz to band edge Lower Band Edge SpEm_17P_CDM_UpEd * RBW 3 khz 5.pr 11 8:14 VBW 3 khz Ref 4.6 dbm * tt 3 db * SWT 9 s Marker 2 [T1 ] 25.3 dbm GHz 1 RM * CLRWR Offset 31 db 2 LIMIT CHECK PSS dbm GHz EXT Center GHz 6 khz/ Span 6 MHz plot #2 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; CDM < 1MHz to band edge Upper Band Edge ECL-EMC-TR-12-8-V1. Page 22 of 35

23 LTE < 1MHz to band edge 3 1 RM * CLRWR Emmission Measurement * RBW 3 khz 4.pr 11 17:17 VBW 3 khz Ref 39.7 dbm * tt 3 db * SWT 6 s 2 Offset 31 db LIMIT CHECK PSS 2 Marker 2 [T1 ] dbm 2.17 GHz dbm 2.1 GHz dbm EXT Center 2.11 GHz 6 khz/ Span 6 MHz plot #1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; LTE < 1MHz to band edge Lower Band Edge Emmission Measurement * RBW 3 khz 4.pr 11 17:18 VBW 3 khz Ref 4.4 dbm * tt 3 db * SWT 4 s RM * CLRWR 2 Offset 31 db 2 LIMIT CHECK PSS dbm GHz Marker 2 [T1 ] 23.6 dbm GHz dbm 1 EXT -3-4 Center GHz 6 khz/ Span 6 MHz plot #2 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; LTE < 1MHz to band edge Upper Band Edge ECL-EMC-TR-12-8-V1. Page 23 of 35

24 CDM > 1MHz to band edge SpEm_over1M_17P_CDM2 * RBW 1 MHz 5.pr 11 13:52 * VBW 3 MHz Ref 27 dbm * tt 2 db * SWT 2 s 1 Offset 32 db LIMIT CHECK PSS dbm GHz 1 RM * CLRWR Start 3 MHz GHz/ Stop GHz plot #1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; CDM > 1MHz to band edge; carrier (2132,5MHz) notched W-CDM > 1MHz to band edge SpEm_over1M_17P_WCDM * RBW 1 MHz 5.pr 11 13:53 Ref 271 dbm * tt 2 db * VBW 3 MHz * SWT 2 s 27.5 dbm GHz 2 Offset 32 db LIMIT CHECK PSS 1 RM * CLRWR Start 3 MHz GHz/ Stop GHz plot #1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; W-CDM > 1MHz to band edge; carrier (2132,5MHz) notched ECL-EMC-TR-12-8-V1. Page 24 of 35

25 LTE > 1MHz to band edge SpEm_over1M_17P_LTE * RBW 1 MHz 5.pr 11 13:55 * VBW 3 MHz Ref 27 dbm * tt 2 db * SWT 2 s 1 Offset 32 db LIMIT CHECK PSS dbm GHz 1 RM * CLRWR Start 3 MHz GHz/ Stop GHz plot #1 Spurious Emissions at ntenna Terminals: 27.53, 2.51; RSS-139, RSS-GEN; Test results; Downlink; LTE > 1MHz to band edge; carrier (2132,5MHz) notched Uplink n.a. Note: The EUT does not transmit over the air in the uplink direction. 7.4 Summary test result Test result Tested by: complies, according the plots above L.Oskerko Date: ECL-EMC-TR-12-8-V1. Page 25 of 35

26 8 Field Strength of Spurious Emissions: 27.53, 2.53, RSS-139 picture 8.1: label picture 8.2: Test setup: Field Strength Emission <1 in the FC ECL-EMC-TR-12-8-V1. Page 26 of 35

27 picture 8.3: Test setup: Field Strength Emission >1 in the FC ECL-EMC-TR-12-8-V1. Page 27 of 35

28 This clause specifies requirements for the measurement of radiated emission. Frequency range 3 MHz - 1 GHz 1 GHz 22 GHz Distance: EUT <-> antenna / location 3 metres / FC Limit FCC 47 CFR Part IC RSS-139 sec. 6.4 FCC 47 CFR Part IC RSS-139 sec. 6.4 Test method TI/EI-63-C:24 Test equipment used: Designation Type Manufacturer Invent.-no. Cal.-date due Cal.- used date EMI test receiver ESI4 Rohde & Schwarz E X ntenna CBL 6111 Chase K X RF Cable Frankonia K1121 SET X ntenna HL 25 R&S K X Preamplifier FS4-2 Miteq K X RF Cable Sucoflex Suhner K X The REMI version has been used for max search. Test set-up: Test location: Test Voltage: Type of EUT: FC The Fully nechoic Chamber (FC) fulfils the requirements of NSI C63.4 and CISPR with regards to NS and SVSWR. 115V / 6 Hz Wall mounted Measurement uncertainty: Measurement uncertainty expanded (95% or K=2) ± 4,7 db for NSI C63.4 measurement ±,5 db for TI-63 measurement ECL-EMC-TR-12-8-V1. Page 28 of 35

29 8.1 Method of Measurement Measurement procedure. TI-63-C The antenna substitution method is used to determine the equivalent radiated power at spurious frequencies. The spurious emissions are measured at a distance of 3 meters. The EUT is then replaced with a reference substitution antenna with a known gain referenced to a dipole. This antenna is fed with a signal at the spurious frequency. The level of the signal is adjusted to repeat the previously measured level. The resulting eirp is the signal level fed to the reference antenna corrected for gain referenced to an isotropic dipole (see Figure 7.2). From KDB (MPLIFIER, BOOSTER, ND REPETER REMINDER SHEET): Radiated spurs (enclosure) Use of CW signal (low, mid. and high freq.) is acceptable rather than all modulations. The maximum RFI field strength was determined during the measurement by rotating the turntable (±18 degrees) and varying the height of the receive antenna (h = m) as like defined in NSI C63.4. measurement receiver has been used with a RBW 12 khz up to 1 GHz and 1 MHz above 1 GHz. Steps with during pre measurement was half the RBW. Both, the Fully nechoic Chamber (FC) and the Semi nechoic Chamber (SC) fulfil the requirements of NSI C63.4 and CISPR with regards to NS and SVSWR. Figure #7.2 Substitution methods TI/EI-63-C ECL-EMC-TR-12-8-V1. Page 29 of 35

30 8.2 Limit (h) (h) For operations in the MHz and MHz bands, the power of any emission outside a licensee s frequency block shall be attenuated below the transmitter power (P) by at least 43 + log (P) db. (1) Compliance with this provision is based on the use of measurement instrumentation employing a resolution bandwidth of 1 megahertz or greater. However, in the 1 megahertz bands immediately outside and adjacent to the licensee s frequency block, a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emissions are attenuated at least 26 db below the transmitter power. (2) When measuring the emission limits, the nominal carrier frequency shall be adjusted as close to the licensee s frequency block edges, both upper and lower, as the design permits. (3) The measurements of emission power can be expressed in peak or average values, provided they are expressed in the same parameters as the transmitter power. The Emission limit is -13dBm. 8.3 Climatic values in the lab Temperature: 21 Relative Humidity: 45% ir-pressure: 4 hpa ECL-EMC-TR-12-8-V1. Page 3 of 35

31 8.4 Test results MHz to 1 GHz Downlink (Bottom Middle Top) B/M/T: 21 MHz / 2132,5 MHz / 2155 MHz (Operation with maximum composite power) Horizontal / Vertikal Measurement with Peak detector, BW 12KHz, Step width 6 khz, dwell time 5ms No peak detected 2dB above noise ntenna height: 1.55m; all positions of the turn table measured with max. hold function Polarization: Horizontal / Vertical ECL-EMC-TR-12-8-V1. Page 31 of 35

32 MHz to 1 GHz Downlink (middle of all carrier) B/M/T: 21 MHz / 2132,5 MHz / 2155 MHz (Operation with maximum composite power) Horizontal / Vertical ECL-EMC-TR-12-8-V1. Page 32 of 35

33 GHz to 22 GHz Downlink (Bottom Middle Top) B/M/T: 21 MHz / 2132,5 MHz / 2155 MHz (Operation with maximum composite power) Horizontal / Vertikal ECL-EMC-TR-12-8-V1. Page 33 of 35

34 GHz to 22 GHz Downlink (middle of all carrier) B/M/T: 737 MHz / MHz / MHz (Operation with maximum composite power) Horizontal / Vertical Zahlmann / The radiated spurious emission requirements have been met in all frequency bands. 9 History Revision Modification Date Name 1. Initial Test report T. Zahlmann ECL-EMC-TR-12-8-V1. Page 34 of 35

35 ****** End of test report ***** ECL-EMC-TR-12-8-V1. Page 35 of 35

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