REPORT. AS (9 appendices) Test object. Summary. Standard. Appendix. Mats PDU Lindholmspiren Göteborg. See appendix. Yes.

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1 Issued by an FCC listedd Laboratory Reg. no The test site complies with w RSS-Gen, IC file no. 3482A-1 Contact person Tomas Lennhager Electronics Tomas.Lennhager@sp.se P06895-F27 L 1 (2)) Accred. No Testing ISO/IEC Radio measurements on Radio 2203 B66A 1700/2100 MHz radio equipment with FCC ID: TA8AKRC and IC: 287AB- AS (9 appendices) Ericsson AB Mats Falk PDU HW Lindholmspiren Göteborg Test object Product name: Radio 2203 B66A Product number: KRC /1 Summary See appendix 1 for general information and appendix 9 for external photos. Standard FCC CFR 47 part 2 and 27 / IC RSS-139 Issue 3 Compliant Appendix / RSS / RSS / RSS-Gen / RSS / RSS / RSS / RSS RF power output conducted RF power output radiated Occupied bandwidth Band edge Spurious emission at antenna terminals Field strength of spurious radiation Frequency stability Yes Yes Yes Yes Yes Yes Yes Electronics - EMC Performed by Examined by Tomas Lennhager Krister Kilbrandt Postal address SP Box 857 SE BORÅS Sweden Office locationn Västeråsen Brinellgatan 4 SE BORÅS B Phone / Fax / Laboratories are accredited by the Swedish Board for Accreditation and Conformity Assessment (SWEDAC) under the terms of o Swedish legislation. This report may not n be reproduced other than in full, except e with the prior written approval of the issuing laboratory.

2 P06895-F27 L 2 (2)) Table of contents Description of the test object Operation mode during measurement ts Test setups Purpose of test RF power output, conducted RF power output, radiated Occupied bandwidth Band edge Spurious emission at antenna terminals Field strength of spuriouss radiation Frequency stability External photos Appendix 1 Appendix 1 Appendix 1 Appendix 1 Appendix 2 Appendix 3 Appendix 4 Appendix 5 Appendix 6 Appendix 7 Appendix 8 Appendix 9

3 P06895-F27 L 1 (10) Appendix 1 Description of the testt object Equipment: FCC ID: IC ID: HVIN: Hardware revision state: FVIN: Tested configuration: Frequency bands: IBW to be released: Antenna ports: RF configuration: RF power tolerance Product name: Radio 2203 B66A B Product number: KRC /15 FCCC ID TA8AKRC IC: 287AB-AS AS R1BB CXPP /2 rev. R62CCC LTEE FDD single RAT TX: : MHz RX: : MHz 45 MHz for 5, 10, 15 and 200 MHz Bandwidth 25 MHz for 1.4 and 3 MHz Bandwidth, B Valid for all power classes inn both contiguous and non-contiguous operation. 2 TX/RX ports Single carrier, multi carrier, 2x2 MIMO / db Nominal output power per antenna port: Single carrier: Multi carrier: 1x 37.0 dbm (5W) 2 x 34.0 dbm (5W) 3 x 32.2 dbm (5W), for 1.4, 3, 5, 10 and 15 MHz BW. Frequency stability tolerance: ±0.05 PPM Optional internal antennaa type: Integrated wide sector antenna, cross polarized antenna elements for indoor and outdoor use. Product no KRE /1, antenna gain 10.1 dbi

4 P06895-F27 L 2 (10) Appendix 1 Tested external antenna types: Channel bandwidths: Modulations: Nominal supply voltage: Semi-Integrated Omni Antenna for indoor and outdoor use. Product no KRE /1, antenna gain 2 dbi Product no KRE /1, antenna gain 2 dbi 1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz and 20 MHz in Single and multi carrier configurations. QPSK, 16QAM, 64QAM and 256QAM 36 VDC

5 P06895-F27 L 3 (10) Appendix 1 Operation mode during measurements LTE measurements were performed with the test object transmitting test models as defined in 3GPP TS Test model E-TM1.1 was used to represent QPSK, test model E-TM3.2 to represent 16QAM, test model E-TM3.1 to represent 64QAM and a E-TM3. 1A to represent 256QAM modulation. The settings below were deemed representative for all traffic scenarios s when settings with different modulations, channel bandwidths, number of carrierss and RF configurations has been tested to find the worst case setting. All measurements were performed with the test object configured for maximumm transmit power. The settings below were w used for all measurements if not otherwise noted. MIMO mode, E-TM1.1 Conducted measurements The test object was supplied with 36 VDC via the PSU if not noted otherwise. Additional connections are documented in the setup drawings below. Complete measurements were made on the RF port representing worst case for each measurement. Radiated measurementss The test object was tested stand-alonee and powered with 36 VDC. V All measurements were performed with the test object configured for maximum transmit power. Additional connections are documented in the test setup drawings.

6 P06895-F27 L 4 (10) Appendix 1 Purpose of test The purpose of the tests is i to verify compliance to the performance characteristics specified in applicable items of FCC CFR 47 partt 2 and 27, IC RSS-139 and IC RSS-Gen. s Measurements were done according to relevant parts of the following standards: ANSI ANSI/TIA/EIA-603-C GPP TS , version CFR 47 part 2, October 1 st, 2014 CFR 47 part 27, October 1 st, 2014 RSS-Gen Issue 4 RSS-139 Issue 3 KDB Multiple transmitter output v02r01 KDB D01 Powerr Meas Licens, v02r02

7 P06895-F27 L 5 (10) Appendix 1 Uncertainties Measurement and test instrument uncertainties are described in i the qualityy assurance documentation SP-QD The uncertainties are calculated with a coverage factor k=2 (95% level of confidence). Compliance evaluation iss based on a shared risk principle withh respect to the measurement uncertainty. Reservation The test results in this report apply only to the particular test object o as declared in the report. r Delivery of test objectt The test object was delivered Manufacturer s representative Lars Wallin, Ericsson AB. Test engineers Tomas Lennhager, Tomas Isbring, Jörgen Wassholm, Patric Augustsson A and Rolf Kühn, SP. Test participants Magnus Gyllenhammar and Erik Nilsson.

8 P06895-F27 L 6 (10) Appendix 1 Measurement equipment Test site Tesla R&S ESU 40 R&S FSW 43 R&S ESI 26 R&S FSQ 40 Control computer with R&S software EMC32 version R&S SMB 100A High pass filter High pass filter RF attenuator RF attenuator RF attenuator Directional coupler Chase Bilog Antenna CBL 6111A EMCO Horn Antenna 3115 EMCO Horn Antenna 3115 µcomp Nordic, Low Noise Amplifierr Flann STD Gain Horn Antenna Flann STD Gain Horn Antenna Miteq, Low Noise Amplifier Schwarzbeck preamplifier BBV Temperature and humidity meter, Testo 635 Temperature Chamber Multimeter Fluke 87 Calibration Due SP number BX

9 P06895-F27 L 7 (10) Appendix 1 Test frequencies used for conducted and radiated measurements TX test frequencies, single carrier: EARFCN Frequency Symbolic Downlink [MHz] name B B B B B B M T T T T T T Comment TX bottom frequency inn 1.4 MHz BWW configuration TX bottom frequency inn 3 MHz BWW configuration TX bottom frequency inn 5 MHz BWW configuration TX bottom frequency inn 10 MHz BWW configuration TX bottom frequency inn 15 MHz BWW configuration TX bottom frequency inn 20 MHz BWW configuration TX band mid frequencyy all BW configurations TX top frequency in 1.44 MHz BW configurationn TX top frequency in 3 MHz BW configuration TX top frequency in 5 MHz BW configuration TX top frequency in 10 MHz BW configuration TX top frequency in 15 MHz BW configuration TX top frequency in 20 MHz BW configuration

10 P06895-F27 L 8 (10) Appendix 1 TX test frequencies, multi carrier: B B M T B2-5 Rspr C C IM IM IM C C B3-5-Rspr carrierr TX band bottom constellation 1.4 MHz BW configuration 2 carrierr TX band bottom constellation 5 MHz BW configuration 2 carrierr TX band mid constellation 5 MHz BW configuration 2 carrierr TX band topp constellation 5 MHz BW configuration 2 carrierr TX band bottom constellation 5 MHz BW configuration 2 carrierr TX band constellation 5 MHz BW configuration 2 carrierr TX band constellation 3 MHz BW configuration 2 carrierr TX band constellation 1.4 MHz BW configuration 3 carrierr TX band constellation 1.4 MHz BW configuration 3 carrierr TX band constellation 5 MHz BW configuration 2 carrierr TX band constellation 20 MHz BW configuration 3 carrierr TX band constellation 15 MHz BW configuration 3 carrierr TX band bottom constellation 5 MHz BW configuration All RX frequencies were configured 400 MHz below the corresponding TX frequency according the applicable duplex offset for the operating band.

11 P06895-F27 L 9 (10) Appendix 1 Test setup conducted measurement ts Test object: 1. Radio 2203 B66A, KRC /1, rev. R1B, s/n: C82A With Radio Software: CXP /2, Rev. R62CC FCC ID TA8AKRC and IC: 287AB-AS Associated equipment: 2. RBS 6601 Main Unit: SUP 6601, 1/BFL /4, Rev. R1A, s/n: BR DUS 41 01, KDU /1, Rev. R3C, s/n: C SW: CXP / 24, Rev. R13SN 5. GPS 02 01, NCD /1, Rev. R1D, s/n: TU8K GPS Active Antenna, KRE /1 Functional test equipment: 3. Switch, Netgear ProSafe GSM 7224, BAMS HP Z230 Workstation, BAMS x4 GPS SPLITTER, KRY /1, s/n: FG Attenuator/ terminator 50 ohm 8. SP Test Instrumentation according to measurement equipment list The signal analyzer was connected to the SP 10 MHz eference standard during the measurements.

12 P06895-F27 L 10 (10) Appendix 1 Test setup radiated measurements Test object: 1. Radio 2203 B66A, KRC /1, rev. R1B, S/N: C82A With radio software CXP /2, rev. R62CC FCC ID TA8AKRC and IC: 287AB-AS Associated equipment: 4. RBS 6601 Main Unit: SUP 6601, 1/BFL /4, rev. R1E, s/n: BR DUS 41 01, KDU /1, rev. R3C, s/n: SC SW: CXP / /24, Rev. R13SN 8. GPS 02 01, NCD /1, rev.. R1D, s/n: TU8KH GPS Active Antenna, KRE /1 Functional test equipment: 2. HP Z230 Workstation, BAMS (DUS) 3. Switch Neatgear ProSafe GSM7224, BAMS Attenuator/ terminator 50 ohm 6. Attenuator 7. R&S ESIB 26 SP , for supervision only 9. 1x4 GPS SPLITTER, KRY /1 Interfaces: Power: 36 VDC RF port A, N connector, combined TX/RX RF port B, N connector, combined TX/RX 1, optical interface Ground wire Type of port: DC Powerr Antenna Antenna Signal Ground

13 P06895-F27 L 1 (4)) Appendix 2 RF power output measurementss according to CFR / ICC RSS , conducted Temperature 23 C ± 3 C 23 C ± 3 C 23 C ± 3 C 22 C ± 3 C Humidity H 24 % ± 5 % 21 % ± 5 % 25 % ± 5 % 25 % ± 5 % Test set-up and procedure The test object was connected to a signal analyzer measuring peak p and RMS output power in CDF mode. A resolution bandwidth of 80 MHz was used. Measurement equipment R&S FSW 43 RF attenuator Testo 635, temperature and humidity meter SPP number Measurement uncertainty: 1.1 db

14 P06895-F27 L 2 (4)) Appendix 2 Results MIMO mode, single carrier Rated outputt power levell at each RF port 1x 37 dbm. Output power CCDF [RMS dbm/ PAR db] BW and symbolic Total Port RF A Port RF B name power 1) 5 MHz, B 36.7/ / MHz, M 36.8/ / MHz, T 36.6/ / MHz, B 36.5/ / MHz, B 36.6/ / MHz, B 36.9/ / MHz, B 36.8/ / MHz, B 36.8/ / ) : summed output power according too FCC KDB Multiple transmitter output MIMO mode, multi carrier Rated outputt power levell at RF connector 2x 34 dbm. Output power CCDF [RMS dbm/ PAR db] BW and symbolic Total Port RF A Port RF B name power 1) B2 1.4 IM / / 7.2 B2 5 M2 5 T2 5 C2-3 C2-5 C / / / / / / / / / / / / / / ) : summed output power according too FCC KDB Multiple transmitter output

15 P06895-F27 L 3 (4)) Appendix 2 Rated outputt power levell at RF connector 3x dbm. Output power CCDF [RMS dbm/ PAR db] d BW and symbolic name IM3-5 C3-15 IM3-1.4 Portt RF A Port RF B Total powe 36..7/ / / / / / er 1) 1 1) : summed output power according too FCC KDB Multiple transmitter output Note: The PAR value is the t 0.1 % Peak to Average Ratio. Rated outputt power levell at RF connector 1x 46 dbm. Output power per 1 MHz [RMS dbm] BW and symbolic name Port RF A Total power 1.4 MHz, B MHz, B MHz, B MHz, B MHz,B MHz, B ) : Measured according to FCC KDB D01 Multiple Transmitter Output. Method E), 2), c). Measure and add 10 log(nant).

16 P06895-F27 L 4 (4)) Appendix 2 Limits (d) The power of each base station s transmitting in the MHz band and located in any county with population density of 1000 or fewer persons per square mile is limited to an EIRP of 3280 W/MHz, when transmitting withh an emission bandwidthh greater thann 1 MHz. The power of each base station s transmitting in the MHz band and situated in i any geographic location otherr than that described above is limited to an EIRP of 1640 W/MHz, when transmitting with an emission bandwidth greater than 1 MHz. A licensee operating a base station in n the MHz band utilizing a power greater than 1640 watts/mhz EIRP must coordinate such operations in advance with all parties addressed in the rules. In measuring transmissions in this band using an average power technique, the peak-to-average ratio (PAR) of the transmission may not exceed 13 db. RSS : There is no power limit specified for base station equipment inn the RSS-139. EIRP compliance is addressed at the time of licensing, as required by the responsible IC I Bureau. Licensee s are required to take into account the antenna gain to get the maximum usable power settings to prevent the radiated output power to exceed the ERP/EIRP limits specified in SRSP-513 When the transmitter power is measured in terms of average value, v the peak-to-average ratio of the power shall not exceed 13 db. Complies? Yes

17 P06895-F27 L 1 (6)) Appendix 3 RF power output measurementss according to CFR / ICC RSS , radiated Temperature 23 C ± 3 C 23 C ± 3 C 23 C ± 3 C 23 C ± 3 C 24 C ± 3 C 24 C ± 3 C Humidity H 36 % ± 5 % 34 % ± 5 % 32 % ± 5 % 39 % ± 5 % 34 % ± 5 % 33 % ± 5 % Test set-up and procedure The measurements were performed according to ANSI C The test was performed with continuous transmission. The test of radiated emission was performed in a semi anechoic chamber. The measurements were performed with both horizontal and vertical polarizations of the antenna. The antenna distance was 3.0 m. The fundamental was scanned with PEAK-detector with the antenna height was varied between 1-4 m and the turntable was rotated between degrees for maximum response. The carrier power was measured withh RMS- detector activatedd with a RBWW of 1 MHz. The output power was verified with the substitution method. Measurement equipment Measurement equipment Semi anechoic chamber R&S ESU 40 EMC 32 ver EMCO Horn Antenna 3115 EMCO Horn Antenna 3115 R&S SMB 100A Attenuator 40 db Testo 625 temperature and humidity meter SP number Measurement uncertainty: 3.1 db

18 P06895-F27 L 2 (6)) Appendix 3 The test set-up with integrated antenna KRE /1 during the effective radiated output power measurements is shown in the picture below. The test set-up with external omni antenna KRE /1 during d the effective radiated output power measurements is shownn in the picture below.

19 P06895-F27 L 3 (6)) Appendix 3 The test set-up with external omni antenna KRE /1 during d the effective radiated output power measurements is shownn in the picture below.

20 P06895-F27 L 4 (6)) Appendix 3 Results Integrated antenna KRE /1 Bandwidth configuration (MHz) Tested frequency B Tested frequency M Tested frequency T Vertical/Horizontal RMS power (EIRP) Vertical/Horizontal RMS power (EIRP) Vertical/Horizonta RMS power (EIRP) dbm/ MHz W/ MHz dbm/ MHz W/ MHz dbm/ MHz W/ MHz / / / / / / / / / / / / / / / / External omni antenna KRE /1 Bandwidth configuration (MHz) Tested frequency B Tested frequency M Tested frequency T Vertica/Horizontal RMS power (EIRP) Vertical/Horizontal RMS power (EIRP) Vertical/Horizonta RMS power (EIRP) dbm/ MHz W/ MHz dbm/ MHz W/ MHz dbm/ MHz W/ MHz / / / / / / / / / / / / / / / /

21 P06895-F27 L 5 (6)) Appendix 3 External omni antenna KRE /1 Bandwidth configuration (MHz) Tested frequency B Tested frequency M Tested frequency T Vertical/Horizontal RMS power (EIRP) Vertical/Horizontal RMS power (EIRP) Vertical/Horizonta RMS power (EIRP) dbm/ MHz W/ MHz dbm/ MHz W/ MHz dbm/ MHz W/ MHz / / / / / / / / / / / / / / / /

22 P06895-F27 L 6 (6)) Appendix 3 Limits (d) The power of each base station s transmitting in the MHz band and located in any county with population density of 1000 or fewer persons per square mile is limited to an EIRP of 3280 W/MHz, when transmitting withh an emission bandwidthh greater thann 1 MHz. The power of each base station s transmitting in the MHz band and situated in i any geographic location otherr than that described above is limited to an EIRP of 1640 W/MHz, when transmitting with an emission bandwidth greater than 1 MHz. A licensee operating a base station in n the MHz band utilizing a power greater than 1640 watts/mhz EIRP must coordinate such operations in advance with all parties addressed in the rules. In measuring transmissions in this band using an average power technique, the peak-to-average ratio (PAR) of the transmission may not exceed 13 db. RSS : There is no power limit specified for base station equipment inn the RSS-139. EIRP compliance is addressed at the time of licensing, as required by the responsible IC I Bureau. Licensee s are required to take into account the antenna gain to get the maximum usable power settings to prevent the radiated output power to exceed the ERP/EIRP limits specified in SRSP-513 When the transmitter power is measured in terms of average value, v the peak-to-average ratio of the power shall not exceed 13 db. Complies? Yes

23 P06895-F27 L 1 (7)) Appendix 4 Occupied bandwidth measurements according to 47 CFR C / RSS-Gen Temperature 23 C ± 3 C 23 C ± 3 C Humidity H 24 % ± 5 % 25 % ± 5 % Test set-up and procedure The measurements were made per definition in FCC: KDB: D01 Power Meas Licens and IC: RSS-Gen section 6.6. The output was connected to a signal analyzer with the Peak detector activated in max hold. Measurement equipment R&S FSW 43 RF attenuator Testo 635, temperature and humidity meter SPP number Measurement uncertainty: 3.7 db

24 P06895-F27 L 2 (7)) Appendix 4 Results Diagram BW configuration Symbolic name Tested Port Occupied BW (99%) [MHz] 1 5 MHz B RF A MHz M RF A MHz M RF R B MHz T RF A MHz B RF A MHz B RF A MHz B RF A MHz B RF A MHz B RF A 17.86

25 P06895-F27 L 3 (7) Appendix 4 Diagram 1: Diagram 2:

26 P06895-F27 L 4 (7) Appendix 4 Diagram 3: Diagram 4:

27 P06895-F27 L 5 (7) Appendix 4 Diagram 5: Diagram 6:

28 P06895-F27 L 6 (7) Appendix 4 Diagram 7: Diagram 8:

29 P06895-F27 L 7 (7) Appendix 4 Diagram 9:

30 P06895-F27 L 1 (30) Appendix 5 Band edge measurements according to CFR (h)/ RSS Temperature 23 C ± 3 C 23 C ± 3 C 23 C ± 3 C Humidity H 24 % ± 5 % 21 % ± 5 % 25 % ± 5 % Test set-up and procedure The measurements were made per definition in 27.53(h) and IC RSS The test object was connected to a spectrum analyserr with the RMS detector activated. The specified measurement bandwidth for out of band emission measurement is 1 MHz. However, In the 1 MHz band immediately outside and adjacent to the band edges, the unwanted emission power may be measured with a resolution bandwidth of at least 1% of the emission bandwidth. A narrower resolution bandwidth is allowed to be used, providedd that the measured power is integrated over thee full required measurement bandwidth of 1 MHz or 1% of the emission bandwidth, as applicable. Where a smaller RBW was usedd the limit in the plot is adjusted by 10 log (RBW used /RBW s specified) [db]. A resolution bandwidth of 200 khz was used 1 MHz to 6 MHz away fromm the band edges, to compensate for the reduced measurement bandwidth the limit was adjusted by 7 db to -20 dbm (10 log (200 khz/ 1 MHz)). Before comparing the results to the limit, 3 db [10 log (2)] should be added according to method 2 measure and add 10 log(nn ANT ) of FCCC KDB D01 Multiple Transmitter Output. Measurement equipment R&S FSW 43 RF attenuator Testo 635, temperature and humidity meter SPP number Measurement uncertainty: 3.7 db

31 P06895-F27 L 2 (30) Appendix 5 Results MIMO mode, single carrier Diagram BW configuration 1 a-c 5 MHz 2 a-c 10 MHz 3 a-c 15 MHz 4 a-c 20 MHz 5 a-c 5 MHz 6 a-c 10 MHz 7 a-c 15 MHz 8 a-c 20 MHz 9 a-c 1.4 MHz 10 a-c 3 MHz 11 a-c 1.4 MHz 12 a-c 3 MHz MIMO mode, multi carrier Diagram BW configuration 13 a-c 5 MHz 14 a-c 5 MHz Symbolic name B B B B T T T T B B T T Symbolic name B2 5 T2 5 Tested Port RF A RF A RF A RF A RF A RF A RF A RF A RF A RF A RF A RF A Tested T Port RF A RF A Limits CFR (h) and RSS Outside a licensee s frequency band(s) of operation the powerr of any emission shall be attenuated below the transmitter power (P) by at least log (P) db, resulting in a limit of -13 dbm. Complies? Yes

32 P06895-F27 L 3 (30) Appendix 5 Diagram 1 a: Diagram 1 b:

33 P06895-F27 L 4 (30) Appendix 5 Diagram 1c:

34 P06895-F27 L 5 (30) Appendix 5 Diagram 2 a: Diagram 2 b:

35 P06895-F27 L 6 (30) Appendix 5 Diagram 2 c:

36 P06895-F27 L 7 (30) Appendix 5 Diagram 3 a: Diagram 3 b:

37 P06895-F27 L 8 (30) Appendix 5 Diagram 3 c:

38 P06895-F27 L 9 (30) Appendix 5 Diagram 4 a: Diagram 4 b:

39 P06895-F27 L 10 (30) Appendix 5 Diagram 4 c:

40 P06895-F27 L 11 (30) Appendix 5 Diagram 5 a: Diagram 5 b:

41 P06895-F27 L 12 (30) Appendix 5 Diagram 5 c:

42 P06895-F27 L 13 (30) Appendix 5 Diagram 6 a: Diagram 6 b:

43 P06895-F27 L 14 (30) Appendix 5 Diagram 6 c:

44 P06895-F27 L 15 (30) Appendix 5 Diagram 7 a: Diagram 7 b:

45 P06895-F27 L 16 (30) Appendix 5 Diagram 7 c:

46 P06895-F27 L 17 (30) Appendix 5 Diagram 8 a: Diagram 8 b:

47 P06895-F27 L 18 (30) Appendix 5 Diagram 8 c:

48 P06895-F27 L 19 (30) Appendix 5 Diagram 9 a: Diagram 9 b:

49 P06895-F27 L 20 (30) Appendix 5 Diagram 9 c:

50 P06895-F27 L 21 (30) Appendix 5 Diagram 10 a: Diagram 10 b:

51 P06895-F27 L 22 (30) Appendix 5 Diagram 10 c:

52 P06895-F27 L 23 (30) Appendix 5 Diagram 11 a: Diagram 11 b:

53 P06895-F27 L 24 (30) Appendix 5 Diagram 11 c:

54 P06895-F27 L 25 (30) Appendix 5 Diagram 12 a: Diagram 12 b:

55 P06895-F27 L 26 (30) Appendix 5 Diagram 12 c:

56 P06895-F27 L 27 (30) Appendix 5 Diagram 13 a: Diagram 13 b:

57 P06895-F27 L 28 (30) Appendix 5 Diagram 13 c:

58 P06895-F27 L 29 (30) Appendix 5 Diagram 14 a: Diagram 14 b:

59 P06895-F27 L 30 (30) Appendix 5 Diagram 14 c:

60 P06895-F27 L 1 (42) Appendix 6 Conducted spurious emission measurements according to CFR (h) / IC RSS Temperature 23 C ± 3 C 23 C ± 3 C 22 C ± 3 C Humidity H 24 % ± 5 % 25 % ± 5 % 25 % ± 5 % Test set-up and procedure The measurements were made per definition in 27.53(h) and IC RSS The output was connected to a spectrum analyserr with a RBW setting of 1 MHz and RMS detector activated. Before comparing the results to the limit, 3 db [10 log (2)] should be added according to method E), 3), (iii) measure and addd 10 log(n ANT T) of FCC KDB K D01 Multiple Transmitter Output. Measurement equipment R&S FSW 43 RF attenuator High pass filter Testo 635, temperature and humidity meter SPP number BX Measurement uncertainty: 3.7 db

61 P06895-F27 L 2 (42) Appendix 6 Results MIMO mode, single carrier Diagram BW configuration n [MHz] Symbolic name n Tested Port 1 a-d 5 MHz M RF A 2 a-d 5 MHz M RF B 3 a-d 10 MHz M RF A 4 a-d 15 MHz M RF A 5 a-d 20 MHz M RF A 6 a-d 5 MHz B RF A 7 a-d 5 MHz T RF A 8 a-d 1.4 MHz M RF A 9 a-d 3 MHz M RF A MIMO mode, multi carrier Diagram BW configuration n [MHz] Symbolic name n Tested Port 10 a-e 5 MHz C2-5 RF A 11 a-e 20 MHz C2-20 RF A 12 a-e 5 MHz IM3-5 RF A 13 a-e 15 MHz C3-15 RF A 14 a-e 3 MHz C2-3 RF A 15 a-e 1.4 MHz IM RF A 16 a-e 1.4 MHz IM RF A

62 P06895-F27 L 3 (42) Appendix 6 Remark The emission at 9 khz on the plots was not generated by the test object. A complementary measurement with a smaller RBW showed that it was related to t the LO feed-through. The highest fundamental frequency iss GHz. The measurements weree made up to 22 GHz (10x2.180 GHz = GHz). Limits 27.53(h) and RSS Outside a licensee s frequency band(s) of operation the powerr of any emission shall be attenuated below the transmitter power (P) by at least log (P) db, resulting in a limit of -13 dbm per 1 MHz RBW. Complies? Yes

63 P06895-F27 L 4 (42) Appendix 6 Diagram 1 a: Diagram1 b:

64 P06895-F27 L 5 (42) Appendix 6 Diagram 1 c: Diagram 1 d:

65 P06895-F27 L 6 (42) Appendix 6 Diagram 2 a: Diagram 2 b:

66 P06895-F27 L 7 (42) Appendix 6 Diagram 2 c: Diagram 2 d:

67 P06895-F27 L 8 (42) Appendix 6 Diagram 3 a: Diagram 3 b:

68 P06895-F27 L 9 (42) Appendix 6 Diagram 3 c: Diagram 3 d:

69 P06895-F27 L 10 (42) Appendix 6 Diagram 4 a: Diagram 4 b:

70 P06895-F27 L 11 (42) Appendix 6 Diagram 4 c: Diagram 4 d:

71 P06895-F27 L 12 (42) Appendix 6 Diagram 5 a: Diagram 5 b:

72 P06895-F27 L 13 (42) Appendix 6 Diagram 5 c: Diagram 5 d:

73 P06895-F27 L 14 (42) Appendix 6 Diagram 6 a: Diagram 6 b:

74 P06895-F27 L 15 (42) Appendix 6 Diagram 6 c: Diagram 6 d:

75 P06895-F27 L 16 (42) Appendix 6 Diagram 7 a: Diagram 7 b:

76 P06895-F27 L 17 (42) Appendix 6 Diagram 7 c: Diagram 7 d:

77 P06895-F27 L 18 (42) Appendix 6 Diagram 8 a: Diagram 8 b:

78 P06895-F27 L 19 (42) Appendix 6 Diagram 8 c: Diagram 8 d:

79 P06895-F27 L 20 (42) Appendix 6 Diagram 9 a: Diagram 9 b:

80 P06895-F27 L 21 (42) Appendix 6 Diagram 9 c: Diagram 9 d:

81 P06895-F27 L 22 (42) Appendix 6 Diagram 10 a: Diagram 10 b:

82 P06895-F27 L 23 (42) Appendix 6 Diagram 10 c: Diagram10 d:

83 P06895-F27 L 24 (42) Appendix 6 Diagram 10 e:

84 P06895-F27 L 25 (42) Appendix 6 Diagram 11 a: Diagram 11 b:

85 P06895-F27 L 26 (42) Appendix 6 Diagram 11 c: Diagram 11 d:

86 P06895-F27 L 27 (42) Appendix 6 Diagram 11 e:

87 P06895-F27 L 28 (42) Appendix 6 Diagram 12 a: Diagram 12 b:

88 P06895-F27 L 29 (42) Appendix 6 Diagram 12 c: Diagram 12 d:

89 P06895-F27 L 30 (42) Appendix 6 Diagram 12 e:

90 P06895-F27 L 31 (42) Appendix 6 Diagram 13 a: Diagram 13 b:

91 P06895-F27 L 32 (42) Appendix 6 Diagram 13 c: Diagram 13 d:

92 P06895-F27 L 33 (42) Appendix 6 Diagram 13 e:

93 P06895-F27 L 34 (42) Appendix 6 Diagram 14 a: Diagram 14 b:

94 P06895-F27 L 35 (42) Appendix 6 Diagram 14 c: Diagram 14 d:

95 P06895-F27 L 36 (42) Appendix 6 Diagram 14 e:

96 P06895-F27 L 37 (42) Appendix 6 Diagram 15 a: Diagram 15 b:

97 P06895-F27 L 38 (42) Appendix 6 Diagram 15 c: Diagram 15 d:

98 P06895-F27 L 39 (42) Appendix 6 Diagram 15 e:

99 P06895-F27 L 40 (42) Appendix 6 Diagram 16 a: Diagram 16 b:

100 P06895-F27 L 41 (42) Appendix 6 Diagram 16 c: Diagram 16 d:

101 P06895-F27 L 42 (42) Appendix 6 Diagram 16 e:

102 P06895-F27 L 1 (7)) Appendix 7 Field strength of spurious radiation measurements according too 47 CFR (h)/ IC RSS Temperature 23 C ± 3 C 23 C ± 3 C 23 C ± 3 C Humidity H 37 % ± 5 % 35 % ± 5 % 32 % ± 5 % Test set-up and procedure The test sitess are listed att FCC, Columbia with registration number: The test site complies with RSS-Gen, Industry Canada file no. 3482A-1. The measurements were performed with both horizontal and vertical v polarization of the antenna. The antenna distance was 3 m in the frequency rangee 30 MHz 18 GHz and 1m in the frequency range GHz. In the frequency range 30 MHz 22 GHz the measurement was w performedd in power with a RBW of 1 MHz. A propagation loss in free space was calculated. The usedd formula was 4 D 20log, is the propagation loss and D is the antenna distance. The measurement procedure was as the following: 1. The pre-measurement was first performed with peak detector. For measurement < 1 GHz the test object was measured in eight directions withh the antennaa at three heights, 1.0 m, 1.5 m and 2.0 m. For measurements > 1 GHz the test t object was measured in seventeen directions with the antenna height 1.0 m. 2. Spurious radiation on frequencies closer than 20 db to the limit in thee pre-measurement is scanned degrees and thee antenna is scanned 1-4 m for maximum response. The emission is then measured with the RMS detector and the RMS value is reported. Frequencies closer than 10 db too the limit when measured with the RMS detectorr were measured with the substitution method according to the standard.

103 P06895-F27 L 2 (7)) Appendix 7 The test set-up during the spurious radiation measurements is shown in thee picture below: Measurement equipment Measurement equipment Semi anechoic chamber R&S ESU40 EMC 32 ver Chase Bilog Antenna CBL 6111A EMCO Horn Antenna 3115 FLANN , Std gain horn antenna High pass filter Miteq, Low Noise Amplifier µcomp Nordic, Low Noise Amplifierr Testo 625 temperature and humidity meter SP number

104 P06895-F27 L 3 (7)) Appendix 7 Tested configurations Symbolic name B B M T B2-5-Rspr B3-5-Rspr Bandwidth (MHz) , 3, 5,10,15 and Results, representing worst case B, BW: 1.4 MHz Diagram 1 a-d Spurious emission level (dbm)( Frequency (MHz) Vertical All emission > 20 dbb below limit Horizontal All emission > 20 db below limit Measurement uncertainty: 3.2 db up to 18 GHz, 3.6 db above 18 GHz Limits 27.53(h) and RSS Outside a licensee s frequency band(s) of operation the powerr of any emission shall be attenuated below the transmitter power (P) by at least log (P) db, resulting in a limit of -13 dbm per 1 MHz RBW. Complies? Yes

105 P06895-F27 L 4 (7)) Appendix 7 Diagram 1 a: 0-10 FCC P2-20 Level in dbm M M G Frequency in Hz

106 P06895-F27 L 5 (7)) Appendix 7 Diagram 1 b: 0-10 FCC P2-20 Level in dbm Frequency in MHz Note: The emission at MHz iss the carrier frequency and shall be ignored in the context.

107 P06895-F27 L 6 (7)) Appendix 7 Diagram 1 c: 0-10 FCC P2-20 Level in dbm G 5G G 18G Frequency in Hz Final RMS Resultt Frequency (MHz) RMS (dbm) Limit (dbm) Marginn (db) Meas. Time (ms) Bandwidth (khz) HeightH Pol (cm) V Azimuth (deg) Corr. (db)

108 P06895-F27 L 7 (7)) Appendix 7 Diagram 1 d: 0-10 FCC P2-20 Level in dbm , , , ,5 22 Frequency in GHz

109 P06895-F27 L 1 (3)) Appendix 8 Frequency stability measuremen nts according to CFR / IC RSS to Test set-up and procedure Temperature (test equipment) C ± 3 C Humidity H (testt equipment) % ± 5 % The measurement was made per 3GPP TS The outputt was connected to a spectrum analyser. The measurement was also made using a resolution bandwidthh of 1% of the emission bandwidth, a reference point at the unwanted emission level which w complies with the attenuation of log10 p (watts)) (i.e. -13dBm) (for MIMO -16dBm) at the band edge of the lowest and highest channel was selected, and the frequency at these points was recorded as fl and fh respectively. Measurement equipment Rohde & Schwarz signal analyzer FSQ 40 RF attenuator Testo 635, Temperature and humidityy meter Temperature cabinet SP number

110 P06895-F27 L 2 (3)) Appendix 8 Results Nominal transmitter frequency was MHz (M) with a bandwidth of 5 MHz. Rated output power level at connector RF A (maximum): 37 dbm. The optional fan unit wass disconnected during the measurements in order to represent worst case configuration to include the optional configuration with maximum m 34.8 dbm without fan. The Radio 2203 B66A was powered via the PSU Test conditions Supply voltage Temp. Frequency error (Hz) DC (V) ( C) Maximum freq. error (Hz)) 10 Measurement uncertainty < ± 1 x 10-7 The Radio 2203 B66A was powered via the PSU AC 10. Test conditions Supply voltage Temp. AC (V) ( C) Maximum freq. error (Hz)) Frequency error (Hz)

111 P06895-F27 L 3 (3)) Appendix 8 Rated outputt power levell at connector RF A (maximum): 37 dbm d Test conditions Frequency margin to t band edge at -16dBm Supply voltage DC [V] Temp [ C]. Carrier Bandwidth [MHz]] Test frequency Symbolic name Bottom fl Offset to lower [MHz] band edge (2110 MHz) [khz] Test frequency Symbolicc name Top fh [MHz] Offset to upper band edge (2180 MHz) [khz] The frequency error results clearly shows that the frequency stability is goodd enough to ensure that the transmitted carrierr stay within the operating band. Remark It was deemed sufficient to test one combination of TX frequency, channel bandwidth configurationn and test model (modulation), as all combinations share s a common internal reference r to derive the TX frequency from. Limits 27.54: The frequency stability shall be sufficient to ensure that the fundamental emissions stay within the authorized bands of operation. RSS Frequency: The frequency stability shall be sufficient to ensure that the emission bandwidth stays within the operating frequency block when tested to the temperature and supply voltage variations specified in RSS-Gen. Complies? Yes

112 P06895-F27 L 1 (6) Appendix 9 External photos Front side of Radio 2203 B66A

113 P06895-F27 L 2 (6)) Appendix 9 Front side, KRC /1 with internal antennaa and PSU

114 P06895-F27 L 3 (6)) Appendix 9 Front side, KRC /1 withh Omni antenna KRE /1and PSU 48 05

115 P06895-F27 L 4 (6)) Appendix 9 Front side, KRC /1 withh Omni antenna KRE /1and PSU 48 05

116 P06895-F27 L 5 (6) Appendix 9 Rear side

117 P06895-F27 L 6 (6) Appendix 9 Left side Right side Bottom side Top side

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