
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Federal Communications Commission Office of Engineering and Technology Equipment Authorization Division Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21046 European Compliance Laboratory (ECL) Thurn-& Taxisstr. 10, D-90411 Nuernberg, Germany Dear Examiner: In accordance with Parts 2 and 24 of the Commission’s Rules and Regulations, we are submitting here- with, statements and supporting data to show compliance with the requirements of the Commission for Type Acceptance of the Lucent Technologies Inc. “Flexent GSM 1900 Transceiver” a single radio fre- quency unit, henceforth TRXHP19 as FCC ID: AS5FLX-02. This TRXHP19 shall be used in Lucent Technologies Inc. Land Station Personal Communication Service (PCS) system using Global System for Mobil Communication (GSM) technology, for use in Domestic Public PCS Telecommunication Service. The present PCS system will use twelve TRXHP19s in a maxi- mum configuration and three TRXHP19s in minimum configuration in a Flexent GSM Macrocell Cabi- net. The product configurations are listed separately under “Product Configurations”. Each TRXHP19 is designed to provide 70 watts long term average at the antenna connection port. Under the dynamics conditions of GSM service and active power control the short term maximum of 80 watts will be available at the antenna port and this value is used for this filing. The data summarized below is in the form presently used by the Commission’s Radio Equipment List, and equipment acceptable for Licensing. Manufacturer Product Equipment Identification Rules Frequency Range Output Power Frequency Tolerance Emission Designator Lucent Technologies Inc. Flexent GSM 1900 Transceiver AS5FLX-02 Part Number 24(E) 1930.4 – 1989.6 MHz 0.002 to 80 Watts per carrier maximum varied by Software +/- 0.05 ppm 256KGXW Page 2 of 2 The TRXHP19 is designed to the limitations specified in Part 24 subpart E. Whenever possible, the test procedures defined in CFR 47 Parts 2 and 24(E) were followed. Because of the “State of the Art” nature of this equipment, some of the characteristics cannot be tested us- ing the requirements in CFR 47, for those characteristics ANSI J-STD-007 and Draft GSM 05.05 V8.0.0 (1999-07) “European Standard (Telecommunication Series) Digital Cellular Telecommunication System (Phase 2+); Radio Transmission and Reception” were used to define the tests and evaluation criteria used in this application. Losses internal to the cabinet and conservative operation will limit the long term average output power to 70 watts and the short term maximum power to 80 watts when measured at the (J4) antenna connector. This latter value is the level for this application. The actual power levels delivered by the TRXHP19s are under the software control of the Mobile Switching Center of the local Cellular system. The TRXHP19/AS5FLX- 02 is a Lucent Technologies Inc., designed and manufactured product. Submitted is FCC Form 731 (Appli- cation for Equipment Authorization – Radio Frequency Devices) and the required Exhibits. These exhibits contain the technical data, and the required statements and documents for equipment authorization. The technical contact at Lucent Technologies Inc., Bell Laboratories, will comply with any request for addi- tional information should the need arise. Sincerely,
FCC ID: AS5FLX-02 Request for Confidentiality In accordance with 47 C.F.R. Section 0.459, we, Lucent Technology, Inc., hereby request confidentiality for the block diagram, schematic, internal photos, users manual and circuit description presented for certification. In support of the Request for Confidentiality, the following is stated: Enclosed within this application is technical information which we deem to be trade secrets and proprietary. If made public, the information might be used to our disadvantage. The product is only sold under a nondisclosure agreement and the public does not have access to the users manual or the internal photographs. To assist in assuring that we receive the full value of our product and protect its competitive posture, we respectfully request this grant of confidentiality. Lucent Technology
APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of Construction SECTION 2.1033(c) (12) External Photos APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions PHOTOGRAPH OF CONSTRUCTION SECTION 2.1033(c) (12) Photographs of the equipment of sufficient clarity to reveal equipment construction and layout, including meters, if any, and labels fo controls and meters and sufficient views of the internal construction to define component placement and chassis assembly. Insofar as these requirements are met by photographs or drawings contained in instruction manuals supplied with the certification request, additional photographs are necessary only to complete the required showing. RESPONSE: Equipment construction, layout, including meters, and lebels for control are indicated in Installation, Test and Operational Manual (see Section on Users Manual). Internal photographs are included in the Section Internal Photos. Following additional external photographs are included: 1. Photograph of twelve TRXHP19 installed in a Flexent Macrocell Indoor cabinet 2. Photograph close-up of TRXHP19 installed in a Flexent Macrocell Indoor cabinet 3. Photograph of twelve TRXHP19 installed in a Flexent Macrocell Outdoor cabinet 4. Photograph close-up of TRXHP19 installed in a Flexent Macrocell Outdoor cabinet 5. Photographs of TRXHP19 showing front view with FCC ID and other five sides APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of twelve TRXHP19 installed in a Flexent Macrocell Indoor cabinet APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph close-up of TRXHP19 installed in a Flexent Macrocell Indoor cabinet APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of twelve TRXHP19 installed in a Flexent Macrocell Outdoor cabinet APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph close-up of TRXHP19 installed in a Flexent Macrocell Outdoor cabinet APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of TRXHP19 front view with FCC ID label APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of TRXHP19 left side view APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of TRXHP19 right side view APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of TRXHP19 rear side view APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of TRXHP19 top side view APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Photograph of TRXHP19 bottom side view
APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions DRAWING OF FCC ID SECTION 2.1033(c) (11) also SECTION 2.925 (a) (1) APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions DRAWING OF FCC ID SECTION 2.1033(c) (11) also SECTION 2.925 (a) (1) A photograph or drawing of the equipment identification plate or label showing the information to be placed thereon. RESPONSE: 1. Computer drawing of the equipment identification label is included. 2. Photographs of FCC ID Label on TRXHP19 included. APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions
APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 DESCRIPTION OF MODULATION SYSTEM SECTION 2.1033(c) (13) APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 DESCRIPTION OF MODULATION SYSTEM SECTION 2.1033(c) (13) For equipment employing digital modulation techniques, a detailed description of the modulation system to be used, including response characteristics (frequency, phase and amplitude) of any filters provided, and a description of the modulating wavetrain, shall be submitted for the maximum rated conditions under which the equipment will be operated. RESPONSE : TRXHP19 Digital Modulation Tec hnique Introduction The following describes digital modulation technique used in TRX19. All abbreviations used are described at the end of the document. Transmit GMSK Modulator The transmit GMSK modulator is a complete baseband digitization subsystem performing signal conversion between the digital signal processor circuits. It contains all the code necessary for performing gaussian minimum shift keying modulation. D ESIGN AND O PERATION Figure 1 shows the functional block diagram of the integrated GSM baseband modulator. DIFFE- RENTIAL ENCODER GAUS- SIAN FILTER COSINE LOOK UP TABLE SINE LOOK UP TABLE POWER DOWN CLOCK DISTRIBUTION 2.5 V REFERENCE Bessel 300 kHz MOF_DAT MODSYNC CLK13MREF2.5 Baseband I Baseband Q GMSK Pulse Shaping ROM Integrated GSM Baseband Modulator TXCLK INTE- GRATOR Figure 1: GMSK Modulator Block Diagram APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 The GMSK modulator is implemented using control logic with a ROM look-up table to generate in-phase (I) and quadrature (Q) signals oversampled at 16 times the transmitter data rate. In a GMSK pulse shaping ROM the incoming digital transmit data stream (MOF_DAT) at 270.833 kbit/s is first differentially encoded as specified by GSM recommendation 5.04 section 2.3. The encoded data stream is passed through a gaussian filter having a pulse response truncated to 4 data bits. The mathematical integration of the signal is carried out digitally before the signal is split and applied to cosine and sine look-up tables. These look-up tables generate I and Q waveforms as digital numbers in response to the encoded data. Transmit DACs then perform the digital-to-analog conversion, while on-chip reconstruction filters smooth the DAC output signals, providing continuous time baseband I and Q waveforms. These filters are designed with a cutoff frequency of approximately 300 kHz. The filters are designed to have a linear phase response in the passband resulting in a flat passband group delay, while significantly attenuating the sam- pling clock frequency of 4.33 MHz and its harmonics. Additionally, control logic in the GMSK pulse shaping ROM generates an output signal TXCLK, which is derived from the 13 MHz master clock input signal CLK13M. The transmit data MOF_DAT is clocked into the modulator on the falling edge of TXCLK. Although not actually controlling the transmitter data source in the TRXB19, TXCLK may be used to obtain information on the proper GMSK modulator timing. The modulator can be brought into sleep mode (powering down the GMSK modulator section including the I and Q stages) by means of the input signal MODSYNC. This is used to synchronize the modulator to GSM timeslots. A precise 2.5 V bandgap reference feeds the transmit DACs and reconstruction filters and is made available as a buffered output REF2.5 as well. REF2.5 later on biases the transmitter I/Q filter and the I/Q modulator. Synchronization of GMSK Modulator The fix relationship between transmitter data stream MOF_DAT and TGUPE allows the generation of a modulator synchronization pulse MODSYNC that occurs at a predefined time before the end of TGUPE When MODSYNC is asserted, the modulator is immediately put into sleep mode, disabling TXCLK and powering down the pulse shaping ROM and I/Q stages, with I and Q outputs connected to the internal reference voltage source. When MODSYNC is brought low again, TXCLK becomes active and clocks in a data symbol 48 CLK13M clock cycles (one GSM symbol duration) after MODSYNC has gone low. Optionally, a basestation may use a timeslot length of 157 symbol periods on timeslots 0 and 4, and 156 symbol periods on timeslots 1, 2, 3, 5, 6, 7, rather than 156.25 symbol periods on all timeslots [16]. The synchronization circuit, as depicted in Figure 1.1, is capable of handling both modes, depending on whether TXCLK is asserted to the synchronization circuit or not. APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 CLK SR Decimal Decoder (== 320, 321) Decimal Decoder (== 30) 9-stage Synchronous Binary Counter D CLK Q D CLK AR QD CLK AR Q 1 "1" CLK13M TGUPE TXCLK MODSYNC clk_div mod_sync1 TX_WINMODSET TP1501 SYNCTEST Decimal Decoder (== 381) D CLK AR Q TS0 CLK (== 0) T_SLOT "1" CS_TS0 from address decoder 2-stage Synchr. Binary Counter AR ≥ 1 D CLK Q mod_sync2 Decimal Decoder (== 338, 339) D CLK AR Q TX_REG "1" & & ≥ 1 Figure 1.1: Equivalent Synchronization Circuit Diagram If, as selected by default hardware assembly, TXCLK is not asserted to the synchronization circuit, a MODSYNC pulse is generated for each timeslot. This is achieved by enabling a certain decoded and latched state (register mod_sync2 in Figure 1.1) of a 9-stage counter to be switched through as MODSYNC output signal. The counter is clocked by CLK13M when TGUPE is logical high. In Figure 2, the corresponding timing diagram for this permanent GMSK modulator synchronization is shown. The synchronization is carried out regardless of a write access to address CS_TS0 in the RCS Bus Slave Interface. Synchronizing the GMSK modulator on all timeslots results in a rapid phase change of at least 1 / 16 of an I/Q vector rotation or 22.5° with additional amplitude spikes on the analog I and Q signals in each timeslot, which fall within the passband and cannot be filtered out completely. This causes unwanted spurious signals in the up-ramping transmit power slope, and the M…
Text truncated - open the document above for the full version.
APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions TUNE-UP PROCEDURE Section 2.1033(c)(9) APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions TUNE-UP PROCEDURE SECTION 2.1033(c) (9) Tune-up procedure over the power range, or at specific operating power levels. RESPONSE: There are no user tune-up procedures for either power levels or frequency.
APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 TEST INSTRUMENTATION LIST APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 LISTING OF REQUIRED MEASUREMENTS SECTION 2.1033 (c) (14) APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 MEASUREMENT PER SECTION 2.999 OF THE RULES SECTION 2.1033 (c) (14) The data required by Section 2.1046 through 2.1057, inclusive, measured in accordance with the procedures set out in Section 2.1041. RESPONSE: The following pages include the data required for the Certification of the FCC ID: AS5FLX-02, measured in accordance with the procedures set out in Section 2.999 of the Rules. Each required measurement and its corresponding exhibit number are: Measurement: 1Section 2.1046RF Power Output Measurement: 2Section 2.1047Modulation Characteristics Measurement: 3Section 2.1049Occupied Bandwidth Measurement: 4Section 2.1051Spurious Emissions at Antenna Terminals Measurement: 5Section 2.1053Field Strength of Spurious Radiation Measurement: 6Section 2.1055Measurement of Frequency Stability Section 2.1057Frequency Spectrum to be Investigated . . . . . . . . . . . . . . . . . Test Instrumentation List Applicant: Lucent Technologies Inc.FCC ID: AS5FLX-02 Test Instrumentation List ManufacturerModel NumberSerial Number DescriptionLast Cal. mm/yy Cal Cycle Month R&SFSEK830846/008Spectrum Analyzer 6/9912 R&SCMD57827519-005Radio Communication Tester 5/0012 HP772D2839A01072Dual Direction Coupler 07/0012 HP8595E3723U00854Spectrum Analyzer 12/0012 HP8563E3517A03567Spectrum Analyzer 09/0024 R&SNRTZ44835374/045Power Meter05/0012 HP8482A3318A26143Power Sensor08/9912 HPE4406AUS39030280Transmitter Tester02/9912 FlukePM6685RSM668747Frequency Counter 02/0012 R&SHFH2-Z2880458/47Loop Antenna 9 kHz - 30 MHz 01/0012 A.R.A.MWH-18261041Horn Antenna 18 – 26 GHz 05/0012 A.R.A.MWH-26401021Horn Antenna 26 – 40 GHz 05/0012 EMCO31419803/1089Bikonilog Antenna 30 MHz – 2 GHz 11/0012 R&SHL025320891/013Log-Per Antenna 1 – 18 GHz 06/0012 R&SESI40837808/003Receiver 20 Hz – 40 GHz 11/0012 R&SESH3872317/025Receiver 9 kHz – 30 MHz 11/0012 APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 1 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions TEST REPORT APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 2 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions MEASUREMENT OF DC POWER OF FINAL STAGE AMPLIFIER SECTION 2.1033(c) (8) APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 3 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions TEST REPORT MEASUREMENT OF DC POWER OF FINAL STAGE AMPLIFIER SECTION 2.1033(c) (8) The dc voltages applied to and dc currents into the several elements of the final radio frequency amplifying device for normal operation over the power range. RESPONSE: The TRX19HP nominally uses the following voltages and maximum currents: StageVoltageCurrent Pre Amp8Volts381mA Amplifier26 Volts500mA Power Amp26 Volts3.18A APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 1 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions MEASUREMENT OF MODULATION CHARACTERISTICS SECTION 2.1047 APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 2 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions MEASUREMENT: 2 SECTION 2.1047 MEASUREMENT OF MODULATION CHARACTERISTICS The modulation methods used in “Flexent GSM 1900 Transceiver” is called GMSK Gaussian Minimum Shift Keying are completely different from those used in FM Analog system. An optional slow frequency hopping is used in which operating frequency within the band changes only once for every TDMA frame. The methods used in evaluating modulation characteristics of the TRX19HP are described in the Draft GSM 05.05 European Standard (Telecommunication Series): “Digital Cellular Telecommunications System (Phase 2+); Radio Transmission and reception (GSM 05.05 Version 8.0.0 Released 1999)”. 1.0 Modulation Accuracy Section 4.6.1 of GSM 05.05 For any 148-bits subsequence of the 511-bits pseudo-random sequence, defined in CCITT Recommendation O.153 fascicle IV.4, the phase error trajectory on the useful part of the burst (including tail bits), shall be measured by computing the difference between the phase of the transmitted waveform and the phase of the expected one. The RMS phase error (difference between the phase error trajectory and its linear regression on the active part of the time slot) shall not be greater than 5 ° with a maximum peak deviation during the useful part of the burst less than 20 ° . 1.1 Required Results TRX19HP was tested using CMD54/57/59 of Rohde and Schwarz a RF Test Instrument with Abis control. This equipment complies with test requirements indicated in prI-ETS 300 609-1 “Digital Cellular Telecommunications System (Phase 2); (Base Station (BSS) equipment specification, Part 1. Radio aspects (GSM 11.21 Version 4.13.0)” April 1999. The measured modulation phase error was less than 5 degrees. 2.0 Spectral Characteristics (Spectrum due to Modulation) Figure A. 6a: PCS 1900 BTS Modulation and Noise Spectrum due to GMSK modulation. 2.1 Measured Results The results are presented as plots for upper and lower edges and center channel for each Band in attachment Measurement 3: “Measurement of Occupied Bandwidth”. APPLICANT: Lucent Technologies FCC ID: AS5FLX-02 FIELD STRENGTH OF SPURIOUS RADIATION SECTION 2.1053 APPLICANT: Lucent Technologies FCC ID: AS5FLX-02 MEASUREMENT: 5 SECTION 2.1053 FIELD STRENGTH OF SPURIOUS RADIATION Both preliminary and final field strength measurements were made at a 10 m Absorber Lined FCC approved Compliance Chamber at the European Compliance Laboratory of Lucent Technologies at Nuernberg, Germany. A complete description and full measurement data for the site is on file with the Commission. The TRXHP19s were assembled in a Flexent GSM Macrocell Cabinet. Each TRXHP19’s were operating on different frequency blocks. The TRXHP19’s were operating at a RF output level of 80 …
Text truncated - open the document above for the full version.
APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 1 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions SPURIOUS EMISSIONS AT ANTENNA TERMINALS SECTION 2.1051 AND 24.238 (b) APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 2 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions MEASUREMENT: 4 SECTION 2.1051 SPURIOUS EMISSIONS AT ANTENNA TERMINALS Spurious Emissions at the antenna terminals were investigated over the frequency range of 0 MHz to the 10 th harmonic of the carrier frequency. The test setup was as described in Figure 4A and 4B. The test set up for two carrier combined measurement and single carrier without combiner is shown in Figure 4A and for single carrier direct connection to J4 without combiner is shown in Figure 4B. Measurements were made using a Rohde & Schwarz FSEK Spectrum Analyzer and a HP Model Color Pro Plotter. The RF output from the transmitter was reduced (to an amplitude usable by the spectrum analyzer) by using a calibrated attenuator. The RF power level was continuously monitored via RF Power Meter as shown in the test setup in Figure 4A and 4B. The required emission limitation specified in Section 24.238 of the Code was applied to these tests. All measurements were made for combined two carrier composite power, single carrier without combiner, single carrier without combiner. The RF output power measured at antenna terminals during each test is indicated on plots. Plots are provided for Left-Edge and Right Edge of each PCS band. The channel allocations with channel numbers and corresponding frequencies are given in the next page. Based upon the criterion given in Section 24.238 of the Code the required emission limitation is equal to –57.6 dBc or –13 dBm for combined two carrier composite power and single carrier without combiner and –57.3 dBc or –13 dBm for single carrier with combiner. The magnitude of spurious emissions that are attenuated more than 20 dB below the permissible value need not specified (Section 2.1051 and 2.1057 (2) and (c)). RESULTS: The attached spectral plots document for spurious emissions at antenna terminal shows that there are no emissions above the applicable limit. APPLICANT: Lucent Technologies Inc. FCC ID: AS5FLX-02 3 Lucent Technologies Inc. – Proprietary Use pursuant to Company Instructions Frequency range of PCS 1900 (n =512...810) dl(n) = 1930.2 + 0.2*(n - 512)/MHz ul(n) = 1850.2 + 0.2*(n - 512)/MHz nuplinkbldownlinknuplinkbl downlinknuplinkbldownlinknuplinkbldownlinknuplinkbldownlinknuplinkbldownlinknuplinkbldownlinknuplinkbldownlink 5121850,2x1930,25501857,8A1937,85881865,4D1945,46261873,0B1953,06641880,6B1960,67021888,2E1968,27401895,8C1975,87781903,4C1983,4 5131850,4A1930,45511858,0A1938,05891865,6D1945,66271873,2B1953,26651880,8B1960,87031888,4E1968,47411896,0C1976,07791903,6C1983,6 5141850,6A1930,65521858,2A1938,25901865,8D1945,86281873,4B1953,46661881,0B1961,07041888,6E1968,67421896,2C1976,27801903,8C1983,8 5151850,8A1930,85531858,4A1938,45911866,0D1946,06291873,6B1953,66671881,2B1961,27051888,8E1968,87431896,4C1976,47811904,0C1984,0 5161851,0A1931,05541858,6A1938,65921866,2D1946,26301873,8B1953,86681881,4B1961,47061889,0E1969,07441896,6C1976,67821904,2C1984,2 5171851,2A1931,25551858,8A1938,85931866,4D1946,46311874,0B1954,06691881,6B1961,67071889,2E1969,27451896,8C1976,87831904,4C1984,4 5181851,4A1931,45561859,0A1939,05941866,6D1946,66321874,2B1954,26701881,8B1961,87081889,4E1969,47461897,0C1977,07841904,6C1984,6 5191851,6A1931,65571859,2A1939,25951866,8D1946,86331874,4B1954,46711882,0B1962,07091889,6E1969,67471897,2C1977,27851904,8C1984,8 5201851,8A1931,85581859,4A1939,45961867,0D1947,06341874,6B1954,66721882,2B1962,27101889,8x1969,87481897,4C1977,47861905,0C1985,0 5211852,0A1932,05591859,6A1939,65971867,2D1947,26351874,8B1954,86731882,4B1962,47111890,0x1970,07491897,6C1977,67871905,2C1985,2 5221852,2A1932,25601859,8A1939,85981867,4D1947,46361875,0B1955,06741882,6B1962,67121890,2x1970,27501897,8C1977,87881905,4C1985,4 5231852,4A1932,45611860,0A1940,05991867,6D1947,66371875,2B1955,26751882,8B1962,87131890,4F1970,47511898,0C1978,07891905,6C1985,6 5241852,6A1932,65621860,2A1940,26001867,8D1947,86381875,4B1955,46761883,0B1963,07141890,6F1970,67521898,2C1978,27901905,8C1985,8 5251852,8A1932,85631860,4A1940,46011868,0D1948,06391875,6B1955,66771883,2B1963,27151890,8F1970,87531898,4C1978,47911906,0C1986,0 5261853,0A1933,05641860,6A1940,66021868,2D1948,26401875,8B1955,86781883,4B1963,47161891,0F1971,07541898,6C1978,67921906,2C1986,2 5271853,2A1933,25651860,8A1940,86031868,4D1948,46411876,0B1956,06791883,6B1963,67171891,2F1971,27551898,8C1978,87931906,4C1986,4 5281853,4A1933,45661861,0A1941,06041868,6D1948,66421876,2B1956,26801883,8B1963,87181891,4F1971,47561899,0C1979,07941906,6C1986,6 5291853,6A1933,65671861,2A1941,26051868,8D1948,86431876,4B1956,46811884,0B1964,07191891,6F1971,67571899,2C1979,27951906,8C1986,8 5301853,8A1933,85681861,4A1941,46061869,0D1949,06441876,6B1956,66821884,2B1964,27201891,8F1971,87581899,4C1979,47961907,0C1987,0 5311854,0A1934,05691861,6A1941,66071869,2D1949,26451876,8B1956,86831884,4B1964,47211892,0F1972,07591899,6C1979,67971907,2C1987,2 5321854,2A1934,25701861,8A1941,86081869,4D1949,46461877,0B1957,06841884,6B1964,67221892,2F1972,27601899,8C1979,87981907,4C1987,4 5331854,4A1934,45711862,0A1942,06091869,6D1949,66471877,2B1957,26851884,8x1964,87231892,4F1972,47611900,0C1980,07991907,6C1987,6 5341854,6A1934,65721862,2A1942,26101869,8x1949,86481877,4B1957,46861885,0x1965,07241892,6F1972,67621900,2C1980,28001907,8C1987,8 5351854,8A1934,85731862,4A1942,46111870,0x1950,06491877,6B1957,66871885,2x1965,27251892,8F1972,87631900,4C1980,48011908,0C1988,0 5361855,0A1935,05741862,6A1942,66121870,2x1950,26501877,8B1957,86881885,4E1965,47261893,0F1973,07641900,6C1980,68021908,2C1988,2 5371855,2A1935,25751862,8A1942,86131870,4B1950,46511878,0B1958,06891885,6E1965,67271893,2F1973,27651900,8C1980,88031908,4C1988,4 5381855,4A1935,45761863,0A1943,06141870,6B1950,…
Text truncated - open the document above for the full version.
European Compliance Laboratory (ECL) · Nuernberg · Germany
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 24E | 1.93 GHz - 1.99 GHz | 80 W | 256KGXW | 0.0500000000 ppm |

B13 RRH 4X30
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
PCS LTE 9764 Metro Cell Outdoor Transceiver System
Equipment Class
PCB - PCS Licensed Transmitter
B25 RRH 4X30
Equipment Class
PCB - PCS Licensed Transmitter
AWS LTE 9764 Metro Cell Outdoor Transceiver System
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
9763 MCI B25 PCS LTE 2x250mW
Equipment Class
PCB - PCS Licensed Transmitter