
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Subject: Certification for FCC ID: TA8AKRC161844 Confidentiality Class External Confidentiality Label Document Type Page Ericsson Confidential 1 (2) Prepared By (Subject Responsible) Approved By (Document Responsible) Checked EHELAUD Audun Helle Document Number Revision Date Reference B 2020-10-13 Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Attention: Equipment Authorization Branch To Whom It May Concern: Ericsson AB requests a Grant of Certification (Type Acceptance) for the above-mentioned FCC Identifier. The radio operates in the Personal Communications Services and Miscellaneous Wireless Communications Services as per 47 CFR Part 24 and 27. This radio (Radio 4480 44B2/B25 44B66A C) is designed for use in GSM, WCDMA, LTE, NB IoT, NR cellular telephone system. This FDD radio operates in Band 2, Band 25 and Band 66A. Band 2: Transmitter from 1930 - 1990 MHz and the receiver from 1850 - 1910 MHz. Band 25: Transmitter from 1930 - 1995 MHz and the receiver from 1850 - 1915 MHz. Band 66A: Transmitter from 2110-2180 MHz and the receiver from 1710-1780 MHz. For WCDMA on B66A: Transmitter from 2110-2155 MHz and the receiver from 1710-1755 MHz It supports following radio access technologies: B2: GSM, WCDMA, LTE, NB IoT, NR B25: WCDMA, LTE, NB IoT, NR B66A: WCDMA, LTE, NB IoT, NR it supports channel bandwidths of 1.4, 3, 5, 10, 15, 20 MHz for LTE (B66A does not support 1,4 and 3MHz) 5MHz for WCDMA, 5, 10, 15, 20 MHz for NR The radio supports modulation types: GSM: GMSK, AQPSK, 8PSK WCDMA: QPSK, 16QAM, 64QAM LTE: QPSK, 16QAM, 64QAM, 256QAM IoT: QPSK, BPSK NR: QPSK, 16QAM, 64QAM, 256QAM The radio has the ability to be used in a RBS system configured for 3GPP up to 4x4 MIMO/Spatial multiplexing, carrier aggregation, NB-IoT technologies and beam-forming technologies. The radio will in normal mode operate at a maximum power of 100 W (50 dBm) at the output connectors. The radio has four (4) combined TX/RX ports. Confidentiality Class External Confidentiality Label Document Type Page Ericsson Confidential 2 (2) Prepared By (Subject Responsible) Approved By (Document Responsible) Checked EHELAUD Audun Helle Document Number Revision Date Reference B 2020-10-13 This radio will always require a license for transmission. The Exhibit 8 user manuals submitted with this application is generic and may cover multiple products. This application is only valid for the model specified in the Exhibit 12 circuit description. Ericsson AB accept by this request the agreement set out in the document “IP SPCR 125 Annex A2 Agreements on Post-market surveillance for radio equipment certified for the US market. Ericsson AB requests confidentiality under CFR 0.459 according to attached letter. We further certify that the applicant nor any party to the application is subject to a denial of Federal benefits, that includes FCC benefits, pursuant to section 5301 of the Anti-Drug abuse Act of 1988, 21 U.S.C. Section 862. If additional information is needed, please contact me on the below listed number. Lars Wallin Quality and Release Management Isafjordsgatan 10 SE-164 80 Stockholm Sweden Telephone No. +46 70 267 00 42 e-mail: [email protected]
1 (1) Prepared (also subject responsible if other) No. EHELAUD EXHIBIT 13 Approved Checked Date Rev Reference A Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046, USA Attention: Equipment Authorization Branch Subject: Request for Confidentiality: FCC ID: TA8AKRC161844 To whom it may concern: We, Ericsson AB, hereby request that the Exhibits/Items listed below be withheld from public inspection in accordance to sections 0.457 and 0.459 of the Commission’s Rules for FCC. This due to the following reasons: Ericsson Base Stations (BS) are designed strictly based on the technical specifications of the international project 3GPP (the 3rd Generation Partnership Project). The competition in this field is very intense and a less advanced solution/design could get an unfair advantage by accessing the information as listed below from common domain. As we believe that we have implemented groundbreaking solutions and designs into our recent BS/Radio Unit (RU) / Remote Radio Unit (RRU) / Radio Dot (RD) compared to the previous BS/RU/RRU/RD, the listed Exhibits/Items need to be protected from disclosure to our competitors in the industry. As the FCC records have in- depth information and a very wide distribution, we believe that you can understand our concerns. We are strong in our belief that all vendors in the industry need to compete by their own merits. We regard these Exhibits/Items to be our intellectual property and therefore as confidential information. There are advanced technical and design solutions/information in the Exhibits/Items, as mentioned above, that we regard as Ericsson proprietary, with actual and potential patents pending. The information can be advantageous to our competitors as well as sources seeking ways to hack past the built-in security functionality. These solutions or information thereof are not accessible even for our customers or partners unless non-disclosure agreements for particular item(s) have been signed. Confidential product information can be found in, but not necessarily limited to, internal photos of the BS RU RRU and RD, block diagrams, schematics diagrams, and parts lists as well as certain documents, such as the user’s manuals. Those documents can only be accessible by the customers who purchase out BS/RU/RRU/RD and accept the conditions and therefore are provided with unique information access tools. EXHIBIT 5 Schematics EXHIBIT 8 Manuals EXHIBIT 9 Internal Photos EXHIBIT 10 Parts List EXHIBIT 12 Technical Circuit Description .......................................................... Lars Wallin Quality and Release Management, Ericsson AB FCC Registration Number (FRN): 0013476155 Isafjordsgatan 10 SE-164 80 Stockholm Sweden Telephone No. +46 70 267 00 42 e-mail: [email protected] DocuSign Envelope ID: C037C2C9-5B01-4E53-9EC5-775E6909B29C 31 August 2020 | 12:50:37 CEST
Date Page Exhibit 3 External photos 2020-10-21 1(5) FCC ID: TA8AKRC161844 IC:287AB-AS161844 Radio 4480 44B2/B25 44B66A C, R1A KRC 161 844/1 Front side Rear side Rear side with optional fan Date Page Exhibit 3 External photos 2020-10-21 2(5) FCC ID: TA8AKRC161844 IC:287AB-AS161844 Date Page Exhibit 3 External photos 2020-10-21 3(5) FCC ID: TA8AKRC161844 IC:287AB-AS161844 Bottom side Bottom side with optional fan Top side Date Page Exhibit 3 External photos 2020-10-21 4(5) FCC ID: TA8AKRC161844 IC:287AB-AS161844 Radio 4480 44B2/B25 44B66A C, R1A KRC 161 844/3 is the NEBS variant. The filter unit have thicker casing as explained in exhibit 12. Front side: Rear side: Top: Bottom: Date Page Exhibit 3 External photos 2020-10-21 5(5) FCC ID: TA8AKRC161844 IC:287AB-AS161844 Sides:
1 (12) GFTL-20:000142 Uen, Rev A, 2020-02-06 © Telefonaktiebolaget LM Ericsson AB. This report shall not be reproduced except in full, without written approval of the laboratory. EMF Test Report: Ericsson Radio 4480 B2/B25 B66A (FCC) Ackred. Nr 1761 Provning ISO/IEC 17025 Rapport utfärdad av ackrediterat provningslaboratorium Test report issued by an Accredited Testing Laboratory Document number: GFTL-20:000142 Uen Rev A Date of report: 2020-02-06 Testing laboratory: Ericsson EMF Research Laboratory Ericsson AB SE-164 80 Stockholm Sweden Company/Client: Lars Holmlund Ericsson AB SE-164 80 Stockholm Sweden Tests performed by: Paramananda Joshi Dates of tests: 2020-02-05 (Rev A) Manufacturer and market name(s) of device: Ericsson Radio 4480 B2/B25 B66A Testing has been performed in accordance with: FCC OET Bulletin 65 IEC 62232:2017 Test results: RF exposure compliance boundaries (exclusion zones) related to the limits in FCC 47 CFR 1.1310 to be included in the Customer Product Information (CPI) for Ericsson Radio 4480 B2/B25 B66A. Additional information: Signatures: Test Engineer __________________ Paramananda Joshi Senior Researcher [email protected] Tel: +46 10 711 00 06 Quality Manager _______________________________ Christer Törnevik Senior Expert – EMF and Health [email protected] Tel: +46 10 714 12 35 Ackred. nr. 1761 Provning ISO/IEC 17025 2 (12) GFTL-20:000142 Uen, Rev A, 2020-02-06 Summary of EMF Test Report 1 Equipment under test (EUT) Product name Radio 4480 B2/B25 B66A Product number KRC 161 844/1, KRC 161 844/3 Supported bands, Tx frequency range (MHz) and standards Band 2 Band 25 1930 – 1990 1930 – 1995 GSM, WCDMA, LTE, NR, NB-IoT WCDMA, LTE, NR, NB-IoT Band 66A 2110 – 2180 WCDMA, LTE, NR, NB-IoT Duplexing technology FDD EIRP 2 (dBm) and EN 62232:2017 installation class [4] 76.1, 76.2, 76.2 E+, E+, E+ Antennas Product number KRE 101 2294/1 Tested mode(s) Band 2 (G/W/L/N/I) 3 + Band 66A (W/L/N/I) Band 25 (W/L/N/I) + Band 66A (W/L/N/I) Results RF exposure compliance boundaries, outside of which the exposure is below the general public (GP) and workers (W) exposure limits, are listed below. Dimensions of the box-shaped compliance boundary for general public (GP) and workers (W) exposure for Radio 4480 applicable in the markets employing the FCC RF exposure limits for maximum output power with 0.5 dB transmission loss and 0.6 dB output power tolerance included. 1 This page contains a summary of the test results. The full report provides a complete description of all test details and results. 2 The stated EIRP values are the maximum total EIRP without power tolerance and are obtained using the antenna patterns provided by the antenna manufacturer. The three different EIRP values correspond to three different output power configurations specified in Table 3. 3 The standards are abbreviated in this report according to: G for GSM, W for WCDMA, L for LTE, N for NR, and I for NB-IoT. Mode and output power for Radio 4480 Dimensions of the box-shaped compliance boundary (m) Distance in front of antenna Width Height Distance behind the antenna Band Standard 3 Maximum nominal output power from the radio GP W GP W GP W GP W B2/B25 + B66A G/W/L/N/I (B2) + W/L/N/I (B66A) 4 × 60 W (B2/B25) + 4 × 40 W (B66A) 19.3 8.4 15.3 6.9 5.0 2.3 0.5 0.2 W/L/N/I (B25) + W/L/N/I (B66A) B2/B25 + B66A G/W/L/N/I (B2) + W/L/N/I (B66A) 4 × 50 W (B2/B25) + 4 × 50 W (B66A) 19.4 8.4 15.4 6.9 5.1 2.3 0.5 0.2 W/L/N/I (B25) + W/L/N/I (B66A) B2/B25 + B66A G/W/L/N/I (B2) + W/L/N/I (B66A) 4 × 40 W (B2/B25) + 4 × 60 W (B66A) 19.5 8.5 15.4 6.9 5.2 2.3 0.4 0.2 W/L/N/I (B25) + W/L/N/I (B66A) For the power levels specified in the table which include tolerances, and the upward rounding of compliance boundary dimensions to the nearest decimeter, the specified results are conservative. 3 (12) GFTL-20:000142 Uen, Rev A, 2020-02-06 1 General information The test results presented in this report define compliance boundaries for Radio 4480 B2/B25 B66A. Outside these compliance boundaries, the radio frequency (RF) exposure levels are below the limits specified by the Federal Communications Commission (FCC) [1]. The tests were performed by calculations in accordance with the Ericsson RF exposure calculation procedure for base stations [2], which is in conformity with the FCC OET Bulletin 65 [3] and IEC 62232:2017 [4]. It should be noted that the test results presented in this test report are valid for the frequency range specified in Table 1, for the antenna properties specified in Table 2, and for the power levels, power tolerance and transmission loss specified in Table 3. These data as well as the applied antenna pattern files were supplied by the client and may affect the validity of the results. Proposed EMF health and safety information for inclusion in the Customer Product Information (CPI) is provided in Appendices A, B and C. 2 Equipment under test Tables 1 and 2 below summarize the technical data for the equipment under test (EUT) and the properties of antenna. Table 3 lists the maximum nominal output power from the radio unit (total peak power from all antenna branches) and the total time-averaged power delivered to the antenna for the specified configurations. The total time-averaged power delivered to the antenna includes transmission loss and output power tolerance. The EUT related data in Tables 1-3 were supplied by the client. Table 1 Technical data for the EUT. Product name and product number Radio 4480 B2/B25 B66A KRC 161 844/1, KRC 161 844/3 Supported bands, Tx frequency range (MHz) and standards. Band 2 (1900) Band 25 (1900) 1930 – 1990 1930 – 1995 GSM, WCDMA, LTE, NR, NB-IoT WCDMA, LTE, NR, NB-IoT Band 66A (2100) 2110 – 2180 WCDMA, LTE, NR, NB-IoT Duplexing technology FDD Exposure environment General public, Workers EIRP 2 (dBm) and EN 62232:2017 installation class Error! Reference source not found. 76.1, 76.2, 76.2 E+, E+, E+ Table 2 Properties of the antenna. Product number KRE 101 2294…
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REPORT issued by an Accredited Testing Laboratory Contact person RISE Date Reference Page Tomas Lennhager 2020-10-27 2P06689-L 1 (218) Safety and Transport +46 10 516 54 09 [email protected] Ericsson AB Anders Karlsson BURA DURA RP QRM Torshamnsgatan 21 164 80 Stockholm Radio measurements on Radio 4480 44B2/B25 44B66A C equipment with FCC ID TA8AKRC161844 and IC 287AB- AS161844 Accred. No. 1002 Testing ISO/IEC 17025 RISE Research Institutes of Sweden AB Postal address Office location Phone / Fax / E-mail This report may not be reproduced other than in full, except with the prior written approval of the issuing laboratory. Box 857 SE-501 15 BORÅS Sweden Brinellgatan 4 SE-504 62 BORÅS +46 10 516 50 00 +46 33 13 55 02 [email protected] Product name: Radio 4480 44B2/B25 44B66A C Product number: KRC 161 844/1 and KRC 161 844/3 RISE Research Institutes of Sweden AB Vehicles and Automation – EMC-IKT Performed by Examined by Signature 1 Signature 2 Tomas Lennhager Daniel Lundgren REPORT Date Reference Page 2020-10-27 2P06689-L 2 (218) RISE Research Institutes of Sweden AB Summary ..................................................................................................................................... 4 Description of the test object ...................................................................................................... 5 Purpose of test ............................................................................................................................. 8 Origin of test data ........................................................................................................................ 8 Operation modes during measurements ...................................................................................... 8 Conducted measurements ........................................................................................................... 9 Radiated measurements ............................................................................................................... 9 Test facility ................................................................................................................................. 9 References ................................................................................................................................... 9 Measurement equipment ........................................................................................................... 10 Uncertainties ............................................................................................................................. 11 Reservation ............................................................................................................................... 11 Delivery of test object ............................................................................................................... 11 Manufacturer’s representative ................................................................................................... 11 Test engineers ........................................................................................................................... 11 Test participant(-s) .................................................................................................................... 11 Test frequencies used for conducted measurements ................................................................. 12 Test frequencies used for radiated measurements ..................................................................... 18 Test setup: conducted measurements ........................................................................................ 20 Test setup: radiated measurements............................................................................................ 21 RF power output measurements according to CFR 47 §24.232 and §27.50/ RSS-133 6.4, RSS- 139 5.5 conducted ..................................................................................................................... 22 Test set-up and procedure ..................................................................................................... 22 Results LTE .......................................................................................................................... 22 Results GSM ......................................................................................................................... 28 Results NB IoT SA, LTE with NB IoT GB .......................................................................... 30 Limits ................................................................................................................................ 32 Occupied bandwidth measurements according to CFR47 §2.1049/ RSS-Gen 4.6.1 ................ 33 Test set-up and procedure ..................................................................................................... 33 Results LTE .......................................................................................................................... 33 Results GSM ......................................................................................................................... 36 Results NB IoT SA/ GB ........................................................................................................ 36 Band edge measurements according to CFR 47 §24.238 and §27.53/ RSS-133 6.5, RSS-139 6.6 .............................................................................................................................................. 55 Test set-up and procedure ..................................................................................................... 55 Results LTE .......................................................................................................................... 56 Results GSM ......................................................................................................................... 57 Results NB IoT SA/ GB ......................…
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REPORT Date Reference Page 2020-10-27 2P06689-L 92 (218) RISE Research Institutes of Sweden AB Diagram 2.33a, E-TM1.1, B 5 , Port D: Diagram 2.33b, E-TM1.1, B 5 , Port D: REPORT Date Reference Page 2020-10-27 2P06689-L 93 (218) RISE Research Institutes of Sweden AB Diagram 2.34a, E-TM1.1, B 10 , Port B: Diagram 2.34b, E-TM1.1, B 10 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 94 (218) RISE Research Institutes of Sweden AB Diagram 2.35a, E-TM1.1, B 15 , Port B: Diagram 2.35b, E-TM1.1, B 15 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 95 (218) RISE Research Institutes of Sweden AB Diagram 2.36a, E-TM1.1, B 20 , Port B: Diagram 2.36b, E-TM1.1, B 20 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 96 (218) RISE Research Institutes of Sweden AB Diagram 2.37a, E-TM1.1, T 5 , Port A: Diagram 2.37b, E-TM1.1, T 5 , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 97 (218) RISE Research Institutes of Sweden AB Diagram 2.38a, E-TM1.1, T 5 , Port B: Diagram 2.38b, E-TM1.1, T 5 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 98 (218) RISE Research Institutes of Sweden AB Diagram 2.39a, E-TM1.1, T 5 , Port C: Diagram 2.39b, E-TM1.1, T 5 , Port C: REPORT Date Reference Page 2020-10-27 2P06689-L 99 (218) RISE Research Institutes of Sweden AB Diagram 2.40a, E-TM1.1, T 5 , Port D: Diagram 2.40b, E-TM1.1, T 5 , Port D: REPORT Date Reference Page 2020-10-27 2P06689-L 100 (218) RISE Research Institutes of Sweden AB Diagram 2.41a, E-TM1.1, T 10 , Port B: Diagram 2.41b, E-TM1.1, T 10 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 101 (218) RISE Research Institutes of Sweden AB Diagram 2.42a, E-TM1.1, T 15 , Port B: Diagram 2.42b, E-TM1.1, T 15 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 102 (218) RISE Research Institutes of Sweden AB Diagram 2.43a, E-TM1.1, T 20 , Port B: Diagram 2.43b, E-TM1.1, T 20 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 103 (218) RISE Research Institutes of Sweden AB Diagram 2.44a, E-TM1.1, Bim 5 , Port B: Diagram 2.44b, E-TM1.1, Bim 5 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 104 (218) RISE Research Institutes of Sweden AB Diagram 2.45a, E-TM1.1, Tim 5 , Port B: Diagram 2.45b, E-TM1.1, Tim 5 , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 105 (218) RISE Research Institutes of Sweden AB Diagram 2.46a, GSM: GMSK, LTE: E-TM1.1, B G+L , Port A: Diagram 2.46b, GSM: GMSK, LTE: E-TM1.1, B G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 106 (218) RISE Research Institutes of Sweden AB Diagram 2.47a, GSM: GMSK, LTE: E-TM1.1, T G+L , Port A: Diagram 2.47b, GSM: GMSK, LTE: E-TM1.1, T G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 107 (218) RISE Research Institutes of Sweden AB Diagram 2.48a, GSM: AQPSK, LTE: E-TM1.1, B G+L , Port A: Diagram 2.48b, GSM: AQPSK, LTE: E-TM1.1, B G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 108 (218) RISE Research Institutes of Sweden AB Diagram 2.49a, GSM: AQPSK, LTE: E-TM1.1, T G+L , Port A: Diagram 2.49b, GSM: AQPSK, LTE: E-TM1.1, T G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 109 (218) RISE Research Institutes of Sweden AB Diagram 2.50a, GSM: 8PSK, LTE: E-TM1.1, B G+L , Port A: Diagram 2.50b, GSM: 8PSK, LTE: E-TM1.1, B G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 110 (218) RISE Research Institutes of Sweden AB Diagram 2.51a, GSM: 8PSK, LTE: E-TM1.1, T G+L , Port A: Diagram 2.51b, GSM: 8PSK, LTE: E-TM1.1, T G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 111 (218) RISE Research Institutes of Sweden AB Diagram 2.52a, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port A: Diagram 2.52b, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 112 (218) RISE Research Institutes of Sweden AB Diagram 2.53a, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port B: Diagram 2.53b, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 113 (218) RISE Research Institutes of Sweden AB Diagram 2.54a, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port C: Diagram 2.54b, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port C: REPORT Date Reference Page 2020-10-27 2P06689-L 114 (218) RISE Research Institutes of Sweden AB Diagram 2.55a, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port D: Diagram 2.55b, GSM: GMSK, LTE: E-TM1.1, Bim G+L , Port D: REPORT Date Reference Page 2020-10-27 2P06689-L 115 (218) RISE Research Institutes of Sweden AB Diagram 2.56a, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port A: Diagram 2.56b, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 116 (218) RISE Research Institutes of Sweden AB Diagram 2.57a, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port B: Diagram 2.57b, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 117 (218) RISE Research Institutes of Sweden AB Diagram 2.58a, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port C: Diagram 2.58b, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port C: REPORT Date Reference Page 2020-10-27 2P06689-L 118 (218) RISE Research Institutes of Sweden AB Diagram 2.59a, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port D: Diagram 2.59b, GSM: GMSK, LTE: E-TM1.1, Tim G+L , Port D: REPORT Date Reference Page 2020-10-27 2P06689-L 119 (218) RISE Research Institutes of Sweden AB Diagram 2.60a, NB IoT SA: N-TM, LTE: E-TM1.1, B IoT+L , Port A: Diagram 2.60b, NB IoT SA: N-TM, LTE: E-TM1.1, B IoT+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 120 (218) RISE Research Institutes of Sweden AB Diagram 2.61a, NB IoT SA: N-TM, LTE: E-TM1.1, T IoT+L , Port A: Diagram 2.61b, NB IoT SA: N-TM, LTE: E-TM1.1, T IoT+L , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 121 (218) RISE Research Institutes of Sweden AB Diagram 2.62a, LTE: E-TM3.1, NB IoT GB: N-TM, B10 Guard , Port A: Diagram 2.62b, LTE: E-TM3.1, NB IoT GB: N-TM, B10 Guard , Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 122 (218) RISE Research Institutes of Sweden AB Diagram 2.63a, LTE: E-TM3.1, NB …
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REPORT Date Reference Page 2020-10-27 2P06689-L 166 (218) RISE Research Institutes of Sweden AB Diagram 3.25a, E-TM1.1, T 10 , 9 kHz – 3 GHz, Port B: Diagram 3.25b, E-TM1.1, T 10 , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 167 (218) RISE Research Institutes of Sweden AB Diagram 3.26a, E-TM1.1, Bim 5 , 9 kHz – 3 GHz, Port B: Diagram 3.26b, E-TM1.1, Bim 5 , 2.07 GHz – 2.22 GHz, Port B: Note: The purpose of this measurement is to find IM products, not to verify compliance at the Band edges. Diagram 3.26c, E-TM1.1, Bim 5 , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 168 (218) RISE Research Institutes of Sweden AB Diagram 3.27a, E-TM1.1, Tim 5 , 9 kHz – 3 GHz, Port B: Diagram 3.27b, E-TM1.1, Tim 5 , 2.07 GHz – 2.22 GHz, Port B: Note: The purpose of this measurement is to find IM products, not to verify compliance at the Band edges. Diagram 3.27c, E-TM1.1, Tim 5 , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 169 (218) RISE Research Institutes of Sweden AB Diagram 3.28a, E-TM1.1, M6 10 , 9 kHz – 3 GHz, Port B: Diagram 3.28b, E-TM1.1, M6 10 , 2.07 GHz – 2.22 GHz, Port B: Diagram 3.28c, E-TM1.1, M6 10 , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 170 (218) RISE Research Institutes of Sweden AB Diagram 3.29a, GSM: GMSK, LTE: E-TM1.1, B G+L , 9 kHz – 3 GHz, Port B: Diagram 3.29b, GSM: GMSK, LTE: E-TM1.1, B G+L , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 171 (218) RISE Research Institutes of Sweden AB Diagram 3.30a, GSM: GMSK, LTE: E-TM1.1, M G+L , 9 kHz – 3 GHz, Port A: Diagram 3.30b, GSM: GMSK, LTE: E-TM1.1, M G+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 172 (218) RISE Research Institutes of Sweden AB Diagram 3.31a, GSM: GMSK, LTE: E-TM1.1, M G+L , 9 kHz – 3 GHz, Port B: Diagram 3.31b, GSM: GMSK, LTE: E-TM1.1, M G+L , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 173 (218) RISE Research Institutes of Sweden AB Diagram 3.32a, GSM: GMSK, LTE: E-TM1.1, M G+L , 9 kHz – 3 GHz, Port C: Diagram 3.32b, GSM: GMSK, LTE: E-TM1.1, M G+L , 3 GHz – 22 GHz, Port C: REPORT Date Reference Page 2020-10-27 2P06689-L 174 (218) RISE Research Institutes of Sweden AB Diagram 3.33a, GSM: GMSK, LTE: E-TM1.1, M G+L , 9 kHz – 3 GHz, Port D: Diagram 3.33b, GSM: GMSK, LTE: E-TM1.1, M G+L , 3 GHz – 22 GHz, Port D: REPORT Date Reference Page 2020-10-27 2P06689-L 175 (218) RISE Research Institutes of Sweden AB Diagram 3.34a, GSM: GMSK, LTE: E-TM1.1, T G+L , 9 kHz – 3 GHz, Port A: Diagram 3.34b, GSM: GMSK, LTE: E-TM1.1, T G+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 176 (218) RISE Research Institutes of Sweden AB Diagram 3.35a, GSM: GMSK, LTE: E-TM1.1, M4 G+L , 9 kHz – 3 GHz, Port A: Diagram 3.35b, GSM: GMSK, LTE: E-TM1.1, M4 G+L , 1.885 GHz – 2.035 GHz, Port A: Diagram 3.35c, GSM: GMSK, LTE: E-TM1.1, M4 G+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 177 (218) RISE Research Institutes of Sweden AB Diagram 3.36a, GSM: 8PSK, LTE: E-TM1.1, Bim G+L , 9 kHz – 3 GHz, Port B: Diagram 3.36b, GSM: 8PSK, LTE: E-TM1.1, Bim G+L , 1.885 GHz – 2.035 GHz, Port B: Note: The purpose of this measurement is to find IM products, not to verify compliance at the Band edges. Diagram 3.36c, GSM: 8PSK, LTE: E-TM1.1, Bim G+L , 3 GHz – 22 GHz, Port B: REPORT Date Reference Page 2020-10-27 2P06689-L 178 (218) RISE Research Institutes of Sweden AB Diagram 3.37a, GSM: 8PSK, LTE: E-TM1.1, Tim G+L , 9 kHz – 3 GHz, Port B: Diagram 3.37b, GSM: 8PSK, LTE: E-TM1.1, Tim G+L , 1.885 GHz – 2.035 GHz, Port B: Note: The purpose of this measurement is to find IM products, not to verify compliance at the Band edges. Diagram 3.37c, GSM: 8PSK, LTE: E-TM1.1, Tim G+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 179 (218) RISE Research Institutes of Sweden AB Diagram 3.38a, NB IoT SA: N-TM, LTE: E-TM1.1, B IoT+L , 9 kHz – 3 GHz, Port A: Diagram 3.38b, NB IoT SA: N-TM, LTE: E-TM1.1, B IoT+L , 1.885 GHz – 2.035 GHz, Port A: Note: The purpose of this measurement is to find IM products, not to verify compliance at the Band edges. Diagram 3.38c, NB IoT SA: N-TM, LTE: E-TM1.1, B IoT+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 180 (218) RISE Research Institutes of Sweden AB Diagram 3.39a, NB IoT IB: N-TM, LTE: E-TM3.1, B IBIoT+L , 9 kHz – 3 GHz, Port A: Diagram 3.39b, NB IoT IB: N-TM, LTE: E-TM3.1, B IBIoT+L , 1.885 GHz – 2.035 GHz, Port A: Diagram 3.39c, NB IoT IB: N-TM, LTE: E-TM3.1, B IBIoT+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 181 (218) RISE Research Institutes of Sweden AB Diagram 3.40a, NB IoT SA: N-TM, LTE: E-TM1.1, M IoT+L , 9 kHz – 3 GHz, Port A: Diagram 3.40b, NB IoT SA: N-TM, LTE: E-TM1.1, M IoT+L , 1.885 GHz – 2.035 GHz, Port A: Diagram 3.40c, NB IoT SA: N-TM, LTE: E-TM1.1, M IoT+L , 3 GHz – 22 GHz, Port A: REPORT Date Reference Page 2020-10-27 2P06689-L 182 (218) RISE Research I…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 33 | 27 | 2.11 GHz - 2.18 GHz | 52.4 W | 33M9W7D | 0.05 ppm |

Multi-standard remote radio
Equipment Class
PCB - PCS Licensed Transmitter
Radio Unit
Equipment Class
PCB - PCS Licensed Transmitter
Radio Unit
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Radio Unit
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Multi-standard remote radio
Equipment Class
PCB - PCS Licensed Transmitter