Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Ericsson Internal EXHIBIT 13 1 (1) Prepared (also subject responsible if other) No. EAB/FJR/VA Christer Gustavsson TA8BKRC11866-1 / 287AB-BS118661 Approved Checked Date Rev Reference EAB/FJR/VA Christer Gustavsson 2011-03-28 A Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Attention: Equipment Authorization Branch SP Technical Research Institute of Sweden Brinellgatan 4 Box 857 S-501 15 Borås Sweden Industry Canada Certification and Engineering Bureau 3701 Carling Avenue, Bldg.94 P.O. Box 11490, Station “H” Ottawa, Ontario K2H 8S2 Canada Mars 25, 2011 Subject: Temperature Range Information for Certification for FCC ID: TA8BKRC11866-1 and IC ID: 287AB-BS118661 To Whom It May Concern: Enclosed are requests of a Grant of Certification (Type Acceptance) for the above-mentioned FCC / IC Identifier from Ericsson AB. Depending on RAT (Radio Access Technology) the RU can handle different temperature. WCDMA and LTE have a temperature range of 5º C to +50º C. GSM have a temperature range of -30º C to +50º C. The base station shut down the exciter power amplifier in a controlled way in case the temperature reach limit either on the frequency stabilizing parts or other critical parts. The frequency stabilizing circuitry and the power amplifier are still in stand-by mode and prepared to transmit with proper function if the temperature reaches the applicable temperature range again. There is also a non-destruction temperature range outside the range above where the base station is shut down totally. If additional information is needed, please contact me on the below listed number. Christer Gustavsson Staff Engineer, Regulatory Programs Ericsson AB FCC Registration Number (FRN): 0013476155 Isafjordsgatan 10 Kista, SE-164 40 Stockholm Sweden Telephone No.: +46 10 7175949 e-mail: [email protected]
Confidentiality. Each party agrees that all confidential documents, work product and information (including all computer code, internal photographs of products, block diagrams, schematic diagrams, technical and/or user manuals, related materials, and the existence of this Agreement) received or otherwise obtained from the other party pursuant to this Agreement, whether before or after the Effective Date, will be, and will be deemed to have been, received in confidence and will be used only for the purpose of carrying out the obligations of, or as otherwise contemplated by, this Agreement. In addition, each party agrees that public access to all confidential equipment supplied will be restricted either by installation of the equipment in a restricted area or by physically securing the equipment by other means, including, but not limited to, using a key-lock that can only be opened by authorized personnel. Without the other party’s prior written consent, neither party may disclose any such information to any third party or grant access to the confidential equipment to any unauthorized person, and each party will disclose such information only to such of its officers, employees and agents that have a need to know such information for the purposes contemplated hereby. However, the provisions of this Section will not apply to any such information that (i) is or becomes generally available to the public without the fault or negligence of either party, (ii) is already in the possession of the receiving party without being subject to another confidentiality obligation, (iii) is or becomes available to the receiving party on a non-confidential basis from a source other than the disclosing party; provided that such source is not bound by a confidentiality obligation of the disclosing party, (iv) is required to be disclosed pursuant to an arbitration proceeding conducted in accordance with this Agreement, or (v) is required to be disclosed pursuant to a requirement of any governmental authority or any statute, rule or regulation; provided that the party required to disclose such information of the other party provide to the other party notice of such requirement of any such disclosure and cooperates with the other party to prevent or restrict any such disclosure to the extent allowed by applicable law.
Ericsson Internal EXHIBIT 13 1 (1) Prepared (also subject responsible if other) No. EAB/FJR/VA Christer Gustavsson TA8BKRC11866-1 Approved Checked Date Rev Reference EAB/FJR/VA Christer Gustavsson 2011-03-02 A Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Attention: Equipment Authorization Branch SP Technical Research Institute of Sweden Brinellgatan 4 Box 857 S-501 15 Borås Sweden March 2, 2011 Subject: Certification for FCC ID: TA8BKRC11866-1 To Whom It May Concern: Ericsson AB requests a Grant of Certification (Type Acceptance) for the above mentioned FCC Identifier. This base station transceiver (Radio Unit – RUS 01 B2) is designed for use in GSM, WCDMA and LTE 1900 MHz cellular telephone system. The transmitter will operate from 1930 MHz to 1990 MHz. It supports Channel Bandwidth of 1.4, 3, 5, 10, 15 and 20 MHz for LTE. The receiver circuit supports 1850 MHz to 1910 MHz. This base station transceiver (RU) supports modulation type GMSK and 8PSK for GSM, and QPSK, 16QAM and 64QAM for WCDMA and LTE. This base station transceiver (RU) is appropriate to use in different Ericsson radio base stations without re-measurement and re-filing when introducing a new base station type. The base station operates in the broadband PCS services as per 47 CFR Part 24 subpart E. It meets the requirements of 3GPP specification for operation in GSM, WCDMA and LTE cellular systems. This base station transceiver (RU) will in normal mode operate at a nominal power out of 20, 40 or 60 watts at the output connector. 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 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. Ericsson AB accept by this request the agreement set out in the document "Bilaga SPCR 125 -Avtal om marknadskontroll för radioutrustning certifierad för USA-marknaden". If additional information is needed, please contact me on the below listed number. Christer Gustavsson Staff Engineer, Regulatory Programs Ericsson AB FCC Registration Number (FRN): 0013476155 Isafjordsgatan 10 Kista, SE-164 80 Stockholm, Sweden Telephone No.: +46 10 7175949 e-mail: [email protected]
Ericsson Internal EXHIBIT 13 1 (2) Prepared (also subject responsible if other) No. EAB/FJR/VA Christer Gustavsson TA8BKRC11866-1/287AB-BS118661 Approved Checked Date Rev Reference EAB/FJR/VA Christer Gustavsson 2011-03-02 A Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Attention: Equipment Authorization Branch SP Technical Research Institute of Sweden Brinellgatan 4 Box 857 S-501 15 Borås Sweden Industry Canada Certification and Engineering Bureau 3701 Carling Avenue, Bldg.94 P.O. Box 11490, Station “H” Ottawa, Ontario K2H 8S2 Canada March 2, 2011 Subject: Request for Confidentiality To Whom It May Concern: We, Ericsson AB, hereby request that the Exhibits/Items listed below be withheld from public inspection in accordance with Sections 0.457 and 0.459 of the Commission’s Rules. This due to the following reasons: GSM, DS-CDMA and LTE 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) compared to the previous BS/RU, 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. As our BS are generally installed in restricted places, public access is not possible although some types of our BS under certain circumstances can be installed in an unrestricted place, but the doors on all of our BS’s are key-locked and can be opened only by authorized personnel. It is therefore individual modules within our BS that should not be revealed to the public. 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 and the RU, 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 our BS and accept the conditions and therefore are provided with unique information access tools. EXHIBIT 9 Internal Photos of Radio Unit Ericsson Internal EXHIBIT 13 2 (2) Prepared (also subject responsible if other) No. EAB/FJR/VA Christer Gustavsson TA8BKRC11866-1/287AB-BS118661 Approved Checked Date Rev Reference EAB/FJR/VA Christer Gustavsson 2011-03-02 A EXHIBIT 4 Block Diagrams EXHIBIT 5 Schematic Diagrams EXHIBIT 8 Manuals EXHIBIT 10 Parts List EXHIBIT 12 Technical Circuit Description If additional information is needed, please contact me on the below listed number. Christer Gustavsson Staff Engineer, Regulatory Programs Ericsson AB FCC Registration Number (FRN): 0013476155 Isafjordsgatan 10 Kista, SE-164 80 Stockholm Sweden Telephone No.: +46 10 7175949 e-mail: [email protected]
Exhib FCC I D IC: 28 it 3 Extern a D: TA8BKR 7AB-BS118 F al photos RC11866-1 661 ront side Date 2011-03- 0 08 Rear side Page 1(3) Exhib FCC I D IC: 28 it 3 Extern a D: TA8BKR 7AB-BS118 al photos RC11866-1 661 Lef Righ Date 2011-03- 0 ft side ht side 08 Page 2(3) Exhib FCC I D IC: 28 it 3 Extern a D: TA8BKR 7AB-BS118 B o al photos RC11866-1 661 ottom side Date 2011-03- 0 08 To pp side Page 3(3)
Exhib FCC I D IC: 28 it 1 ID labe l D: TA8BKR 7AB- BS118 Test ob l and placem RC11866-1 8661 bject front sid ment de Date 2011-03- 0 FCC IC: IC M 08 C ID: TA8BKRC 287AB‐BS118 MODEL NO: B C11866‐1 8661 BS118661 Page 1(1)
Date Reference Page REPORT 2011-03-22 FX100776-F24G 2 (2) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Table of contents Description of the test object Appendix 1 Operation mode during measurements Appendix 1 Test setups Appendix 1 Purpose of test Appendix 1 RF power output Appendix 2 Occupied bandwidth Appendix 3 Band edge Appendix 4 Spurious emission at antenna terminals Appendix 5 Field strength of spurious radiation Appendix 6 Frequency stability Appendix 7 Receiver spurious emissions Appendix 8 External photos of the test object Appendix 9 Date Reference Page REPORT 2011-03-22 FX100776-F24G 1 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Description – Test object Equipment: Radio equipment RUS 01 B2 running in GSM mode supporting single and multi carrier Antenna ports: RF A: TX/RX port RF B: RX port Frequency range: TX: 1930 – 1990 MHz RX: 1850 – 1910 MHz Modulations: GMSK and 8-PSK Nominal output power: (Maximum) Single carrier: 1x 47.8 dBm (1x 60W) Multi carrier: 2x 44.8 dBm (2x 30W) / Carrier 4x 41.8 dBm (4x 15W) / Carrier Nominal power voltage: -48 VDC Tested channels Frequency (MHz) Channel ARFCN Downlink Uplink B 512 1930.2 1850.2 B+5 517 1931.2 1851.2 B+6 518 1931.4 1851.4 B+10 522 1932.2 1852.2 B+15 527 1933.2 1853.2 M 661 1960.0 1880.0 T-15 795 1986.8 1906.8 T-10 800 1987.8 1907.8 T-6 804 1988.6 1908.6 T-5 805 1988.8 1908.8 T 810 1989.8 1909.8 Used RF configurations Unless noted otherwise, following configurations were used: Single Carrier (One carrier configuration): Cell 1 1 1 Channel B M T Multi Carrier 1x2 (Two carrier configuration): Cell 1 2 Channels B B+10 Channels T T-10 Multi Carrier 1x4 (Four carrier configuration): Cell 1 2 3 4 Channels B B+5 B+10 B+15 Channels T T-5 T-10 T-15 Date Reference Page REPORT 2011-03-22 FX100776-F24G 2 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Operation mode during measurements Unless otherwise stated, all measurements were performed with the test object transmitting pseudorandom data in all timeslots and settings for maximum transmitter output power applicable for each configuration. Both modulations GMSK and 8-PSK were tested. Occupied bandwidth and frequency error were only measured with single carrier configuration. Conducted measurements The test object was mounted into an RBS 6201 cabinet and powered by the cabinets internal - 48 VDC. All RF conducted TX measurements were performed at antenna port RF A, with antenna port RF B terminated into 50 ohm. All RX measurements were performed at antenna port RF B, with the test object antenna port RF A transmitting at maximum output power into a 50 ohm termination. Radiated measurements The test object was tested stand-alone. It was powered with -48 VDC. All measurements were performed with the test object configured for maximum transmitter output power at port RF A. The port RF A was via a RF attenuator connected to a FSIQ spectrum analyzer outside the shielded chamber for signal monitoring. Antenna port RF B was left unterminated. The modulation 8-PSK was found to be representative for worst case setting for the radiated measurements. This configuration represented worst case for radiated spurious emission measurements. Purpose of test The purpose of the tests is to verify compliance to the performance characteristics specified in applicable items of FCC CFR 47 and Industry Canada RSS-133. References Measurements were done according to relevant parts of the following standards: ANSI 63.4-2003 ANSI/TIA/EIA-603-C-2004 ANSI/TIA/EIA 136-280-D-2002 J-STD007A Vol 1 CFR 47 part 2, October 1 st , 2010 CFR 47 part 24, October 1 st , 2010 RSS-Gen Issue 3 RSS-133 Issue 5 Date Reference Page REPORT 2011-03-22 FX100776-F24G 3 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Measurement equipment Measurement equipment Calibration Due SP number Test site Tesla 2012-10 503 881 R&S FSIQ 40 2011-07 503 738 R&S FSQ 40 2011-07 504 143 R&S ESI 26 2011-08 503 292 High pass filter 2011-07 504 199 High pass filter 2011-07 503 739 High pass filter 2011-07 503 740 RF attenuator 2011-07 504 159 RF attenuator 2011-08 900 233 RF step attenuator 2012-07 503 096 Boonton RF Peak power meter/analyzer 2011-10 503 144 Boonton Power sensor 56518-S/4 2012-10 503 145 Chase Bilog Antenna CBL 6111A 2011-10 503 182 EMCO Horn Antenna 3115 2014-01 502 175 Std.gain horn FLANN model 16240-25 - 503 939 Std.gain horn FLANN model 20240-20 - 503 674 μComp Nordic, Low Noise Amplifier 2011-07 504 160 MITEQ Low Noise Amplifier 2011-06 503 285 Temperature chamber 2 2013-11 501 031 Multimeter Fluke 87 2011-04 502 190 Testo 625, Temperature and humidity meter 2011-08 504 188 Testo 635 Temperature and humidity meter 2011-04 504 203 Uncertainties Measurement and test instrument uncertainties are described in the quality assurance documentation ”SP-QD 10885”. The measurement uncertainties can be found in the table below. The uncertainties are calculated with a coverage factor k=2 (95% level of confidence). Reservation The test results in this report apply only to the particular test object as declared in the report. Delivery of test object The test object was delivered 2011-02-25. Manufacturer’s representative Christer Gustavsson, Ericsson AB Test engineers Tomas Lennhager, Andreas Johnson, Jörgen Wassholm, Reinhold Reul and Jonas Bremholt Test participant(-s) Samir Catic, Ericsson AB (Partly present) Date Reference Page REPORT 2011-03-22 FX100776-F24G 4 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Test set-up conducted measurements TX Test object 1. RUS 01 B2, KRC 118 66/1, revision R2F, S/N: CB4G545187 (FCC ID: TA8BKRC11866-1 and IC: 287AB-BS118661) Functional test equipment 2. DUG 20 01, KDU 137 569/1, revision R2A, C823667454 3. PDU 02 01, BMG 980 336/4, revision R2A, SN BJ31528316 4. RBS 6201 cabinet, BAMS 1000778792 5. RBS Master 2, LPY 107 1007/1, revision R1F/A, SN 0000000179 6. Computer, Compaq nc6000, BAMS – 1000092619 running software RBS Master2, version R7D05 7. SP test instrument accordi…
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Date Reference Page REPORT FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 2011-03-22 FX100776-F24L 2 (2) Table of contents Description of the test object Appendix 1 Operation mode during measurements Appendix 1 Purpose of test Appendix 1 Test setups Appendix 1 RF power output Appendix 2 Occupied bandwidth Appendix 3 Band edge Appendix 4 Spurious emission at antenna terminals Appendix 5 Field strength of spurious radiation Appendix 6 Frequency stability Appendix 7 Receiver spurious emissions Appendix 8 External photos Appendix 9 Date Reference Page REPORT FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 2011-03-22 FX100776-F24L 1 (7) Appendix 1 Description of test object Equipment: Radio equipment RUS 01 B2 running in LTE mode Frequency bands: TX: 1930 – 1990 MHz RX: 1850 – 1910 MHz The highest and lowest EARFCNs and the corresponding frequencies for each supported channel BW configuration are listed below and are pursuant to 3GPP TS 36.141 section 5.7 Channel arrangement Supported channel bandwidth configurations 1.4 MHz, 3 MHz, 5 MHz, 10 MHz, 15 MHz and 20 MHz Modulation and access scheme OFDMA in FDD OFDM subcarrier modulation System information and pilots use BPSK and QPSK. For payload data QPSK, 16QAM and 64QAM can be used. Maximum rated output power: Single carrier 1x 47.8 dBm (1x60 W) Number of antenna ports: TX/RX: 1 RX only: 1 Nominal supply voltage: -48 VDC Tested frequencies and EARFCNs for TX measurements EARFCN Downlink Frequency [MHz] Comment 607 1930.7 TX bottom (B) frequency in 1.4 MHz BW configuration 615 1931.5 TX bottom (B) frequency in 3 MHz BW configuration 625 1932.5 TX bottom (B) frequency in 5 MHz BW configuration 650 1935.0 TX bottom (B) frequency in 10 MHz BW configuration 675 1937.5 TX bottom (B) frequency in 15 MHz BW configuration 700 1940.0 TX bottom (B) frequency in 20 MHz BW configuration 900 1960.0 TX band mid (M) frequency in all BW configurations 1100 1980.0 TX top (T) frequency in 20 MHz BW configuration 1125 1982.5 TX top (T) frequency in 15 MHz BW configuration 1150 1985.0 TX top (T) frequency in 10 MHz BW configuration 1175 1987.5 TX top (T) frequency in 5 MHz BW configuration 1185 1988.5 TX top (T) frequency in 3 MHz BW configuration 1193 1989.3 TX top (T) frequency in 1.4 MHz BW configuration Tested frequency and EARFCN for RX measurement EARFCN Frequency [MHz] Comment 18900 1880.0 RX band mid (M) frequency in all BW configurations Each corresponding uplink (RX) channel was offset by +18000 from above given downlink EARFCN. Note: EARFCN are derived according 3GPP TS 36.141, table 5.7.3-1. Date Reference Page REPORT FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 2011-03-22 FX100776-F24L 2 (7) Appendix 1 Operation modes during measurements Measurements were performed with the test object transmitting test models as defined in 3GPP TS 36.141. Test model E-TM1.1 was used to represent QPSK, test model E-TM3.2 to represent 16QAM and test model E-TM3.1 to represent 64QAM payload modulation. The setting TX single carrier with test model E-TM1.1 in channel bandwidth configuration 1.4 MHz was found to be representative for all traffic scenarios when several settings with different modulations and channel bandwidth configurations were compared to find a worst case setting. This setting was used for all measurements unless noted otherwise. The test object was powered with -48 VDC unless noted otherwise. All measurements were performed with the test object configured for maximum transmit power. Conducted measurements The EUT was mounted into a RBS 6201 cabinet and supplied by the cabinet’s internal -48 V DC. TX parameters were measured at port RF A with port RF B terminated into 50 ohm. RX spurious emission conducted was measured at port RF B with port RF A activated with E- TM1.1 in channel BW configuration 1.4 MHz on the TX band center frequency (M). Port RF A was terminated into 50 ohm. Radiated measurements The test object was tested stand-alone. It was powered with -48 VDC. All measurements were performed with the test object configured for maximum transmitter output power at port RF A. The port RF A was via a RF attenuator connected to a spectrum analyzer outside the shielded chamber for signal monitoring. Antenna port RF B was unterminated. Purpose of test The purpose of the tests is to verify compliance to the performance characteristics specified in applicable parts of FCC CFR 47, IC RSS-133 and IC RSS-Gen. References Measurements were done according to relevant parts of the following standards: ANSI C63.4-2003 ANSI/TIA/EIA-603-C-2004 3GPP TS 36.141, version 8.5.0 CFR 47 part 2, October 1 st , 2010 CFR 47 part 24 Subpart E, October 1 st , 2010 RSS-133 Issue 5 RSS-Gen Issue 3 Date Reference Page REPORT FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 2011-03-22 FX100776-F24L 3 (7) Appendix 1 Measurement equipment Measurement equipment Calibration Due SP number Test site Tesla 2012-10 503 881 R&S FSIQ 40 2011-07 503 738 R&S FSQ 40 2011-07 504 143 R&S ESI 26 2011-08 503 292 Control computer with R&S software EMC32 version 8.20.1 - 503 479 High pass filter 2011-07 504 199 High pass filter 2011-07 504 200 High pass filter 2011-07 503 739 High pass filter 2011-07 503 740 RF attenuator 2011-07 504 159 RF attenuator 2011-08 900 233 Boonton RF Peak power meter/analyzer 2011-10 503 144 Boonton Power sensor 56518-S/4 2012-10 503 145 Chase Bilog Antenna CBL 6111A 2011-10 503 182 EMCO Horn Antenna 3115 2014-01 502 175 Std.gain horn FLANN model 20240-20 - 503 674 μComp Nordic, Low Noise Amplifier 2011-07 504 160 MITEQ Low Noise Amplifier 2011-06 503 285 Temperature chamber 2 2013-11 501 031 Multimeter Fluke 87 2011-04 502 190 Testo 625, Temperature and humidity meter 2011-08 504 188 Testo 635 Temperature and humidity meter 2011-04 504 203 Uncertainties Measurement and test instrument uncertainties are described in the quality assurance documentation ”SP-QD 10885”. The uncertainties are calculated with a coverage factor k=2 (95% level of confidence). Reservation The test results in this rep…
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Date Reference Page REPORT 2011-03-22 FX100776-F24W 2 (2) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Table of contents Description of the test object Appendix 1 Operation mode during measurements Appendix 1 Test setups Appendix 1 Purpose of test Appendix 1 RF power output Appendix 2 Occupied bandwidth Appendix 3 Band edge Appendix 4 Spurious emission at antenna terminals Appendix 5 Field strength of spurious radiation Appendix 6 Frequency stability Appendix 7 Receiver spurious emissions Appendix 8 External photos Appendix 9 Date Reference Page REPORT 2011-03-22 FX100776-F24W 1 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Description – Test object Equipment: Radio equipment RUS 01 B2 running in WCDMA mode supporting single and multi carrier. Antenna ports: 1 TX/RX port and 1 RX port Frequency bands: TX: 1930 – 1990 MHz RX: 1850 – 1910 MHz Modulations: QPSK, 16QAM and 64QAM Nominal output power: (Maximum) Single carrier: 1x 47.8 dBm (1x 60W) Multi carrier: 2x 44.8 dBm (2x 30W) 4x 41.8 dBm (4x 15W) Channel bandwidth: 4.2 to 5 MHz (configurable in steps of 100/200 kHz) Channel spacing: 4.4 to 5 MHz (configurable in steps of 100/200 kHz) Nominal power voltage: -48 VDC Tested channels Downlink Uplink Channel Frequency* UARFCN Frequency* UARFCN B 1932.4 9662 1852.4 9262 B+5 1937.4 9687 1857.4 9287 B+10 1942.4 9712 1862.4 9312 B+15 1947.4 9737 1867.4 9337 M 1957.6 9788 1877.6 9388 T-15 1972.6 9863 1892.6 9463 T-10 1977.6 9888 1897.6 9488 T-5 1982.6 9913 1902.6 9513 T 1987.6 9938 1907.6 9538 * Frequency in MHz Operation mode during measurements Measurements were performed with the test object transmitting the Test models which are defined in 3GPP TS 25.141. Test model 1 (TM1) uses the QPSK modulation only, Test model 5 (TM5) includes the 16QAM modulation and Test model 6 (TM6) includes the 64QAM modulation. The settings below were found to be representative for all traffic scenarios when several settings with the different modulations, channel bandwidths and the number of carriers were tested to find the worst case setting. These settings were used for all measurements if not otherwise noted. Single carrier TM1: 64 DPCH:s at 30 ksps (SF=128) Multi carrier TM1: 32 DPCH:s at 30 ksps (SF=128) in each carrier (Two carriers activated) Channel bandwidth 5 MHz Conducted measurements The test object was powered with -48 VDC. All RF conducted measurements were performed with the test object configured for maximum transmit power. All TX measurements were done at the RF A connector and the RX measurements were done on the RF B connector. Date Reference Page REPORT 2011-03-22 FX100776-F24W 2 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Radiated measurements The test object was powered with -48 VDC. All measurements were performed with the test object configured for maximum transmit power. The configuration represents worst case for radiated spurious emission measurements. The RF output power port was via a RF attenuator connected to functional test equipment for supervision. The RUS unit was allocated to the following UARFCN: Single Carrier: (One carrier configuration) Cell 1 1 1 Channel B M T Multi Carrier: (Two carrier configuration) Cell 1 2 Channel B B+10 Channel T-10 T Multi Carrier: (Four carrier configuration) Cell 1 2 3 4 Channel B B+5 B+10 B+15 Channel T T-5 T-10 T-15 Purpose of test The purpose of the tests is to verify compliance to the performance characteristics specified in applicable items of FCC CFR 47 and Industry Canada RSS-133. References Measurements were done according to relevant parts of the following standards: ANSI 63.4-2003 ANSI/TIA/EIA-603-C-2004 CFR 47 part 2, October 1 st , 2010 CFR 47 part 24, October 1 st , 2010 3GPP TS 25.141, version 8.9.0 RSS-Gen Issue 3 RSS-133 Issue 5 Date Reference Page REPORT 2011-03-22 FX100776-F24W 3 (7) FCC ID: TA8BKRC11866-1 IC: 287AB-BS118661 Appendix 1 Measurement equipment Measurement equipment Calibration Due SP number Test site Tesla 2012-10 503 881 R&S FSIQ 40 2011-07 503 738 R&S FSQ 40 2011-07 504 143 R&S ESI 26 2011-08 503 292 High pass filter 2011-07 504 199 High pass filter 2011-07 503 739 High pass filter 2011-07 503 740 RF attenuator 2011-07 504 159 RF attenuator 2011-08 900 233 RF step attenuator 2012-07 503 096 Boonton RF Peak power meter/analyzer 2011-10 503 144 Boonton Power sensor 56518-S/4 2012-10 503 145 Chase Bilog Antenna CBL 6111A 2011-10 503 182 EMCO Horn Antenna 3115 2014-01 502 175 Std.gain horn FLANN model 16240-25 - 503 939 Std.gain horn FLANN model 20240-20 - 503 674 μComp Nordic, Low Noise Amplifier 2011-07 504 160 MITEQ Low Noise Amplifier 2011-06 503 285 Temperature chamber 2 2013-11 501 031 Multimeter Fluke 87 2011-04 502 190 Testo 625, Temperature and humidity meter 2011-08 504 188 Testo 635 Temperature and humidity meter 2011-04 504 203 Uncertainties Measurement and test instrument uncertainties are described in the quality assurance documentation ”SP-QD 10885”. The measurement uncertainties can be found in the table below. The uncertainties are calculated with a coverage factor k=2 (95% level of confidence). Reservation The test results in this report apply only to the particular test object as declared in the report. Delivery of test object The test object was delivered 2011-02-25. Manufacturer’s representative Christer Gustavsson, Ericsson AB Test engineers Andreas Johnson, Tomas Lennhager, Jörgen Wassholm, Reinhold Reul and Jonas Bremholt Test participant(-s) Samir Catic, Ericsson AB (Partly present) T REPORT FCC ID: TA IC: 287AB-B Test set-up Test o 1. RUS 0 (FCC Func t 2. PDU 0 3. DU un Config DU: D Config DU 1: DU 2: 4. ERN C 5. Fast E 6. Compu 7. NTP s 8. 10 MH 9. SP tes 10. Atten u 11. RBS 6 T A8BKRC118 BS118661 conducted object 01 B2, KRC ID: TA8BK R tional test eq 02 01, BMG nits: guration sing DUW 30 01 K guration mul DUW 30 01 DUW 30 01 C SIM 127, B Ethernet switc uter, Sunblad server, Symm Hz reference, t instrument uator 6201 cabinet, 866-1 d measurem 118 66/1, rev RC11866-1 / qu…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 8 | 24E | 1.93 GHz - 1.99 GHz | 60 W | 20M0F9W | 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