
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Basic functions and end-user guide. REV #: DESCRIPTON: BY: DATE: 7 Corrected page numbering in Introduction for Section 2. M.Jacobs 12/15/2025 User Manual-R7 Marconi BDA 7700/800 Class A Model 2 1 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 User Manual for the Marconi 700/800 Class A BDA Model 2 From KDP 935210 DO5 Section 4.0 Da te: 12.10.25 Introduction: Description of the BDA Manual: This manual is a short form of the BDA and its user operation. User Manual provides the information on the Display plus what is behind the door. For purposes of FCC rules the unit can only be opened by FCC licensed technicans. Refer to the system Block Diagram on page 6 . As shown in the BD the BDA contains all of the modules to operate the BDA. As designed the BDA is complete with all channels programmed via the GUIs provided with the BDA. Alarms are programmed with the current or volatage limits of the various blocks called out. Detailed information is in the Marconi maintenance manuals. Included in this manual are the related documents that enable the user to know the pre-programmed alarm limits for both the two sections included. All the alarm limits can be programmed but they are delivered as is by the factory. The user manual is provided in two sections Section one lists the alarms of the overall BDA. The alarms are programmed in the BDA at the factroy and c an be accessed via the full manual. All the alarms are displayed on the front panel display. Section two is the adjustments of the BDA for PS operation. Caution only some of the BDA channel information can be accesed by the user via GUI provided with the BDA. Note: The BDA is shipped so that once you connect to AC power the unit will turn on. The Marconi display will turn on and the status of the BDA ( Section 1) will be indicated. When Power is turned off the BDA will automatically return ot the state as turn on. If normal operation, no alarms, the Marconi logo will be displayed. Since the BDA is deliverd operationaly but in the case this is not the case notify Marconi for service. Item 9: User’s Manual/Installation Instructions - A draft copy of the instructions may be submitted if the actual documentation is not available. The actual document shall be furnished to ACB when it becomes available. Modules require specific verbiage – please inquire further if this applies to your device. 2 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 Section one ( BDA alarms): Alarm Icons are shown in the table and pages attached. There are 6 alarms and they are displayed on the screen located in the fro nt panel of the BDA. Each alarm Icon is discribed in Table 1 and in Section 2. Alarms are generated from the Hardware and Software (SW) which has been generated by Marconi. An Alarm is defined by the limits established in the Software and is explained fully in the SW manual. Alarms are for each block with min and max levels that exceeded the BDA is in alarm state. S ection 2 ( Elements of the BDA): In this section the BD of the BDA and the text describe the blocks in the BDA where are alarms are developed. All levels are in windows and these windows are described in the Marconi Maintenance Manual. 3 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 Table of Contents SECTION 1 SECTION 1 INTRODUCTION ..................................................................................................... 5 BDA BLOCK DIAGRAM .............................................................................................................. 6 ICON DESCRIPTION ................................................................................................................. 7 BDA ALARM LEVELS ................................................................................................................. 8 4 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 Se ction 1 (Alarm and Control via the YC68P) All operations of the BDA are enunciated via the touch screen, See Block Diagram attached.) As shipped from the factory all the operations are alarmed by using internal circuits that monitor the maximum and minimum levels in the various blocks of the BDA. If these levels are measured an alarm will be generated and an icon will appear on the touch screen. As shipped, once powered, the Marconi logo will appear on the touch screen. This will indicate that the BDA is operational and can be put into service. If there is a problem in the BDA an icon will appear and as stated, the correct personnel should be alerted to open the BDA cabinet and address the alarm. What follows are the alarm Icons and their meaning to the user. 5 SA 4 SA 5 A3 MAR1 TA1585A MAR1 A4 MAR8 A5 SA 6 TA1585A FAG-MODUL-700DL-NFN SA 3 A2 MAR8 SA 1 TA1585A 12VDC FA-MODUL-700DL-NFN MAR1 A1 SA 2 TA1585ATA1585A 769-775 CF=772 DSP1 ØLL XX 40MHz ALPF 40MHz LPF ATT-3* SA 4 SA 5 A3 MAR1 FAG-MODUL-7/800UL-NFN MAR1 A4 MAR8 A5 SA 6 TDRF807 P5B17X TDRF807 P5B17X TDRF807 P5B17X A2 799-816 CF=807.5 SA 3 SA 2 SA 1 MAR8 TDRF807 P5B17X TDRF807 P5B17X TDRF807 P5B17X FA-MODUL-7/800UL-NFN A1 MAR1 799-816 CF=807.5 ATT-2* SA 4 SA 5 A3 MAR1 TA0328A FAG-MODUL-800DL-FN MAR1 A4 MAR8 A5 SA 6 TA0328A SA 3 A2 TA0328A MAR8 SA 1 TA0328A FA-MODUL-800DL MAR1 A1 851-860 CF=855.5 SA 2 TA0328A 851-860 CF=855.5 ATT-1* PA3 RFAMP-AY-805G-45D2 PA2 6 7 8 9 5 4 3 2 1 RFAMP-AY-.86G-45D2 PA1 769-775 CF=772 6 7 8 9 5 4 3 2 1 HD- D-SUB PINOUT 1.PWR /FWD 2.PWR/REV 3.ALC- ON/OFF 4.ALC-OUT 5.MUTE 6.+VDD, +22- +27VDC 7.+VDD, +22- +27VDC 8.GROUND 9.GROUND 6 7 8 9 5 4 3 2 1 DSP1 ØLL XX 40MHz ALPF 40MHz LPF DSP1 ØLL XX 40MHz ALPF 40MHz LPF T R I ANT Model #: FILT-TRI-778-860-02 T R I DAS TA1641A TA0328A *NOTE: SELECT AT TEST PZ254V-11-03P H1 1 1 2 2 3 3 PZ254V-11-03PH2 1 1 2 2 3 3 GNDGND 12V_FAG112V_FAG212V_FAG3 12V_FA112V_FA212V_FA3 SWDIO SWCLK USART1_RXUSART1_TX ALC1_LEVEL AMP1_ALC AMP1_MUTE AMP1_REV AMP1_FWD ALC1_LEVEL AMP2_ALC AMP2_MUTE AMP2_REV AMP2_FWD ALC1_LEVEL AMP1_ALC AMP1_MUTE AMP1_REV AMP2_FWD HD …
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MPE TEST REPORT for the MARCONI TECHNOLOGIES, INC. 700/800 Class A BDA FCC ID: 2BR38-MTX1 WLL REPORT# 19389-02 REV 1 Prepared for: Marconi Technologies, Inc. 701 E. Joppa Road Towson, Maryland 21286 Prepared By: Washington Laboratories, Ltd. 4840 Winchester Boulevard, Suite 5 Frederick, Maryland 21703 Testing Certificate AT-1448 Certificates and reports shall not be reproduced except in full, without the written permission of Washington Laboratories, Ltd Marconi Technologies, Inc. 700/800 Class A BDA Fixed-Use MPE Test Report WLL Report 19389-02 Rev 1 Page-2 of 10 MPE Test Report for the Marconi Technologies, Inc. 700/800 Class A BDA FCC ID: 2BR38-MTX1 December 10, 2025 WLL Report# 19389-02 Rev 1 Prepared by: ___________________________ Ryan Mascaro RF Test Engineer Reviewed by: ____________________________ Steven D. Koster President Marconi Technologies, Inc. 700/800 Class A BDA Fixed-Use MPE Test Report WLL Report 19389-02 Rev 1 Page-3 of 10 Abstract This report has been prepared on behalf of Marconi Technologies, Inc. to document the findings of the maximum permissible exposure (MPE) evaluation on the 700/800 Class A BDA. The information provided in this report is only applicable to the device herein documented as the EUT. The purpose of this evaluation is to establish a minimum safe distance as per the RF exposure requirements as defined in FCC Rule Part §1.1307 and §1.1310. This report documents the results of testing to the requirements of: • CFR Title 47 Volume 1., Practice and Procedure; (§1.1307) Environmental Assessments Washington Laboratories has been accepted by the FCC and approved by the ANSI National Accreditation Board (ANAB), as an independent test laboratory under ISO/IEC 17025:2017. Please refer to Certificate Number AT-1448. The Washington Laboratories, Ltd. ISED Canada number is 3035A. Washington Laboratories, Ltd. has been accepted as an EMC Conformity Assessment Body (CAB) under the United States/European Union Memorandum of Agreement. Washington Laboratories, Ltd. is located at 4840 Winchester Boulevard, Suite 5., Frederick, MD 21703. Revision History Description of Change Release Date Rev 0 Initial Release December 10, 2025 Rev 0 ACB Comments, Expansion of Math December 30, 2025 Marconi Technologies, Inc. 700/800 Class A BDA Fixed-Use MPE Test Report WLL Report 19389-02 Rev 1 Page-4 of 10 Table of Contents Abstract ...................................................................................................................................................... iii Table of Contents ....................................................................................................................................... iv List of Tables ............................................................................................................................................. iv 1 Introduction ......................................................................................................................................5 2 Requirements ...................................................................................................................................5 Transmitter Categories ................................................................................................................ 5 2.1.1 Fixed Installations ................................................................................................................... 5 2.1.2 Mobile Devices ....................................................................................................................... 5 2.1.3 Portable Devices ..................................................................................................................... 5 Exposure Categories ................................................................................................................... 6 2.2.1 Occupational/Controlled Exposure ..................................................................................... 6 2.2.2 General Population/Uncontrolled Exposure ....................................................................... 6 3 Device Summary ..............................................................................................................................8 4 Radio Frequency Radiation Exposure Evaluation ...........................................................................9 Final Test Data for FCC ID: 2BR38-MTX1 ............................................................................. 10 List of Tables Table 1: MPE Limits (FCC) ....................................................................................................................... 7 Table 2: EUT Transmitter Device Summary (Signal Booster/Amplifier) .................................................. 8 Table 3: Downlink, MPE Calculation Summary (FCC) ........................................................................... 10 Table 4: Uplink, MPE Calculation Summary (FCC) ................................................................................ 10 Marconi Technologies, Inc. 700/800 Class A BDA Fixed-Use MPE Test Report WLL Report 19389-02 Rev 1 Page-5 of 10 1 Introduction This report has been prepared on behalf of Marconi Technologies, Inc. for the 700/800 Class A BDA to show compliance with the RF exposure requirements as defined in FCC Rule Part §1.1307 and §1.1310. The testing in support of this evaluation was performed at Washington Laboratories, Ltd., located at: 4840 Winchester Blvd., Suite 5., Frederick, MD 21703 (USA). Washington Laboratories has been accepted by the FCC and approved by the ANSI National Accreditation Board (ANAB), as an independent test laboratory under ISO/IEC 17025:2017. Please refer to Certificate Number AT-1448. The Washington Laboratories, Ltd. ISED Canada number is 3035A. Washington Laboratories, Ltd. has been accepted as an EMC Conformity Assessment Body (CAB) under the United States/European Union Memorandum of Agreement. 2 Requirements Transmitter Categor…
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Test Setup Photographs Licensee: Marconi Technologies EUT: 700/800 Class A BDA (Booster/Amplifier) FCC ID: 2BR38-MTX1 Example View, Antena Port Conducted Example View 1, RE < 30MHz Example View 2, RE < 30MHz Example View 1, RE > 30MHz Example View 2, RE > 30MHz Example View 3, RE > 30MHz Example View , RE > 1000MHz AC Powerline CE, Front View AC Powerline CE, Side View
RE PORT #: 120925-NOISE FIGURE RELCOMM TECHNOLOGIES FOR MARCONI TECHNOLOGIES 12-9-2025 1 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 Date: 12.08.25 Subject Noise Figure R4 Introduction: This report reviews the tests that WLL and RelComm have conducted to validate a NF< 9 dB over the bands of the BDA. Our testing ranged from I/O of the BDA to the use of standard NF equations and tests to fulfil the requirement. What follows is a shortened outline of the tests we did, and they are labeled as Tests 1.2.3. Marconi is the firm that will be the holder of the FCC license to sell the BDA developed by RelComm Technologies. The Test Lab (WLL) for the submitted BDA has passed all the FCC requirements except for Noise Figure (NF). Problem with the NF has been the measurement of the BDA’s Noise Figure. Problems with the measurement of NF are the digital system that provides a very reliable low alarm rate for input levels of >-85 dBm. 1)Fr iiss’s equation and the tests to validate the NF< 9 dB. Frii’s equation shows that the input stage of an amplifier/BDA is established by the first stage (NF1). Documents: Block Diagram of the BDA NF test of the FA and FAG using the HP Noise figure meter and calibrated noise source. T 1 FA and FAG details T 2 Schematic of the DSP T4 Paper analysis of the DSP using NF1 and schematic for the DSP F= F1 +(F2-1)/G1+ (F3-1)/(G2*G1) +------- Where: F is the overall Noise Factor F1 = FA+ Triplexer = 5 F2= Noise factor of the DSP = 1.77 G1= Gain of the FA + Triplexer= 1000 G2 = Gain of the DSP=63 2 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 F=5+(1.5)/ (1000) =5 NF (dB)=10logF = 6.98 dB Conclusion Te s t 1: NF across the UL and DL bands is < 9 dB based on the measurement and the analysis of the DSP via Friis’s equation. 2)WLL test data: (10.31.25) NF = -G – 10 log B + 175.7 + No Where: G is the gain in dB B is the Noise Bandwidth 175.7 is the KT corrected No is the measured noise power Document T7,6 Conclusion Test 2 (WLL) This NF analysis assumes that the system is linear. This is not the case for the BDA since the ALC in the final power amplifier and the AGC of the DSP is not linear. Therefore the NF data is not correct. 3)RelComm’s tests to measure the NF using the Automatic NF meter and calibrated Noise Source. F=(S/N) in/(S/N) out = (I/G) (Ni/No) Where: F is the noise factor: Ratio G is the linear gain of the device being tested Ni is the noise of the source No is the noise of the BDA output. Documents: Spectrum data T5 Spreadsheet for the NF and No, Ni using the Signal Generator and the spectrum T3 3 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 Conclusion test 3: RCT attempted to measure the NF using the NF meter through the I/O of the BDA was not successful since the levels read were not consistent. For the DSP we could not obtain the noise level to meet the threshold settings of -110 to -90. Our plan then was to measure the Ni and then the No, (refer to the plots, T5), with a -85 dBm Si. The results were a problem since where to measure the noise for both Ni and No were not reliable. This method doesn’t provide accurate NF for all the reasons above: not linear due to AGC and ALC. Add to the non-linearity the threshold function of the DSP which turns the DSP on when an input to the BDA meets the threshold setting. For the NF meter test, we couldn’t provide the level to accurately required at the DSP to turn the DSP on with noise from the Noise Meter. Summary Tests 1,2,3: Test 1 was the only way to measure the NF. Using the measured NF of NF1 = FA + Triplexer as shown in the BDA BD. The NF is then measured up to the DSP. Using the DSP block diagram and the Friiss formula the BDA we calculate a NF< 9 dB. One further note for Si -85 dBm to -30 dBm the So/No> 30 dB which meets and exceeds the Public Safety requirement for a DAQ> 12 dB SINAD as defined in TSB 88. : 4 MARCONI TECHNOLOGIES 55 Broadway, 3rd Floor New York, NY 10006 Table of Contents T1 BDA-NF DIAGRAM ................................................................................................................. 6 T2 NOISE FIGURE ...................................................................................................................... 7 T3............................................................................................................................................. 8 T4 01-Block Diagram DSP SF ...................................................................................................... 9 T5 TEST PLOTS ........................................................................................................................ 10 T6 AMDi- EUT Noise Figure Measurement ................................................................................. 14 T7 WLL Noise Figure Measurement ........................................................................................... 16 5 SA 4 SA 5 A3 MAR1 TA1641A MAR1 A4 MAR8 A5 SA 6 TA1641A FAG-MODUL-700DL-NFN SA 3 A2 MAR8 SA 1 TA1641A 12VDC FA-MODUL-700DL-NFN MAR1 A1 SA 2 TA1641ATA1641A 769-775 CF=772 DSP1 ØLL XX 40MHz ALPF 40MHz LPF ATT-3* SA 4 SA 5 A3 MAR1 FAG-MODUL-7/800UL-NFN MAR1 A4 MAR8 A5 SA 6 TDRF807 P5B17X TDRF807 P5B17X TDRF807 P5B17X A2 799-816 CF=807.5 SA 3 SA 2 SA 1 MAR8 TDRF807 P5B17X TDRF807 P5B17X TDRF807 P5B17X FA-MODUL-7/800UL-NFN A1 MAR1 799-816 CF=807.5 ATT-2* SA 4 SA 5 A3 MAR1 TA0328A FAG-MODUL-800DL-FN MAR1 A4 MAR8 A5 SA 6 TA0328A SA 3 A2 TA0328A MAR8 SA 1 TA0328A FA-MODUL-800DL MAR1 A1 851-860 CF=855.5 SA 2 TA0328A 851-860 CF=855.5 ATT-1* PA3 RFAMP-AY-805G-45D2 PA2 6 7 8 9 5 4 3 2 1 RFAMP-AY-.86G-45D2 PA1 769-775 CF=772 6 7 8 9 5 4 3 2 1 HD- D-SUB PINOUT 1.PWR /FWD 2.PWR/REV 3.ALC- ON/OFF 4.ALC-OUT 5.MUTE 6.+VDD, +22- +27VDC 7.+VDD, +22- +27VDC 8.GROUND 9.GROUND 6 7 8 9 5 4 3 2 1 DSP1 ØLL XX 40MHz ALPF 40MHz LPF DSP1 ØLL XX 40MHz ALPF 40MHz LPF T R I ANT Model #: FILT-TRI-778-860-02 T R I DAS TA1641A TA0328A *NOTE: SELECT AT TEST Model #: FILT-TRI-778-860-02 AY-DSP…
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Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 102 of 143 Figure 76: Out of Band Rejection, All Modes, Swept CW Input (All Plots) -30dBm 700DL 20dBc Rejection -30dBm 800DL 20dBc Rejection -30dBm Uplink 20dBc Rejection -85dBm 700DL 20dBc Rejection -85dBm 800DL 20dBc Rejection -85dBm Uplink 20dBc Rejection Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 103 of 143 3.6 Amplifier/Booster Gain 3.6.1 Requirement For a licensed industrial signal booster, the provisions of FCC Rule Part §90.219 and FCC Rule Part §2.1033(c) do not require amplifier gain test data to be included in this test report. The submission of amplifier gain test data for devices seeking FCC equipment authorization under Part 90, is optional. Gain of the EUT can be calculated from the following: Gain dB = Output Power dBm − Input Power dBm (a) if possible, during this test, the internal gain control of the EUT shall be set to the maximum gain for which equipment certification is sought. (b) any EUT attenuation settings shall be set to their minimum value. (c) input power levels (uplink and downlink) should be set to maximum input ratings, while confirming that the device is not capable of operating in saturation (non-linear mode) at the rated input levels, including during the performance of the input/output power measurements. (d) the total gain of the signal booster/amplifier shall be measured or calculated and recorded. 3.6.2 Measurement Method and Result This test was performed with reference to clause 4.5 through 4.5.5 of KDB 935210 DO5 Indus Booster Basic Meas v01r04, “Measurements Guidance for Industrial and Non-Consumer Signal Booster, Repeater, and Amplifier Devices” dated: April 3, 2020. The EUT complies with the requirements for amplifier gain. For 700DL and 800DL, please note: (a) the maximum rated input to the EUT is -30dBm (all bands, all modes) (b) RF damage can occur at -10dBm input (c) the in the table below, an input of -20dBm was employed to confirm that the AGC remained stable above the rated input (this was an exploratory effort). (also see section 2.4 of this report). The EUT final test data is provided below. Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 104 of 143 Table 11: EUT Amplifier Gain Test Data, CW Input, Maximum Rated Input EUT Band Chan. Freq. (MHz) Rated Input (dBm) Measured Output (dBm) Final EUT Gain (dB) 700DL 769.125 -20.0 32.588 52.588 772.125 -20.0 32.245 52.245 774.875 -20.0 30.851 50.851 800DL 852.125 -20.0 30.967 50.967 855.125 -20.0 31.882 51.882 857.875 -20.0 30.945 50.945 Uplink 799.125 -30.0 32.999 62.999 807.5 -30.0 30.340 60.340 814.875 -30.0 32.413 62.413 Table 12: EUT Amplifier Gain Test Data, CW Input, Minimum Rated Input EUT Band Chan. Freq. (MHz) Rated Input (dBm) Measured Output (dBm) Final EUT Gain (dB) 700DL 769.125 -85.0 31.794 116.794 772.125 -85.0 32.205 117.205 774.875 -85.0 30.443 115.443 800DL 852.125 -85.0 28.754 113.754 855.125 -85.0 30.153 115.153 857.875 -85.0 30.513 115.513 Uplink 799.125 -85.0 33.000 118.000 807.5 -85.0 31.734 116.734 814.875 -85.0 32.606 117.606 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 105 of 143 Figure 77: Amplifier Gain, 700DL, CW Input, Maximum Rated Input 700DL Center Chan Gain, -30dBm 700DL High Chan Gain, -30dBm 700DL Low Chan Gain, -30dBm Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 106 of 143 Figure 78: Amplifier Gain, 800DL, CW Input, Maximum Rated Input 800DL Center Chan Gain, -30dBm 800DL High Chan Gain, -30dBm 800DL Low Chan Gain, -30dBm Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 107 of 143 Figure 79: Amplifier Gain, Uplink, CW Input, Maximum Rated Input Uplink Center Chan, -30dBm Uplink High Chan Gain, -30dBm Uplink Low Chan Gain, -30dBm Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 108 of 143 Figure 80: Amplifier Gain, 700DL, CW Input, Minimum Rated Input 700DL Center Chan Gain -85dBm 700DL High Chan Gain -85dBm 700DL Low Chan Gain -85dBm Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 109 of 143 Figure 81: Amplifier Gain, 800DL, CW Input, Minimum Rated Input 800DL Center Chan Gain -85dBm 800DL High Chan Gain -85dBm 800DL Low Chan Gain -85dBm Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 110 of 143 Figure 82: Amplifier Gain, Uplink, CW Input, Minimum Rated Input Uplink Center Chan Gain -85dBm Uplink High Chan Gain -85dBm Uplink Low Chan Gain -85dBm Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 111 of 143 3.7 Frequency Stability 3.7.1 Requirement The provisions of FCC Rule Part §90.213 require specific types of transmitters to have a minimum frequency stability as specified in the table below: 3.7.2 Measurement Method and Result This test was performed with reference to clause 4.8 of KDB 935210 DO5 Indus Booster Basic Meas v01r04, “Measurements Guidance for Industrial and Non-Consumer Signal Booster, Repeater, and Amplifier Devices” dated: April 3, 2020. The methods provided in clause 5.6 of ANSI C63.26-2015 were also referenced. The EUT complies with the requirements for frequency stability. The EUT final test data is provided below. Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 112 of 143 Table 13: Frequency Stability Test Data, Variations of Temperature 700DL Temperature (Celsius) Desired Frequency (MHz) Measured Frequency (MHz) Deviation (Hz) Deviation (ppm) 22 (Ambient) 772.1250 772.12500 772.12500 0.00 0 772.1250 772.13010 772.13010 6.61 10 772.1250 772.13010 772.13010 6.61 20 772.1250 772.12501 772.12501 0.01 …
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Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 87 of 143 Figure 62: Conducted Spurious Emissions, Center Channel, 700DL, -85dBm CW Input -85dBm 700DL Center Chan Spurs Plot 1 -85dBm 700DL Center Chan Spurs Plot 2 -85dBm 700DL Center Chan Spurs Plot 3 -85dBm 700DL Center Chan Spurs Plot 4 -85dBm 700DL Center Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 88 of 143 Figure 63: Conducted Spurious Emissions, High Channel, 700DL, -85dBm CW Input -85dBm 700DL, High Chan Spurs Plot 1 -85dBm 700DL, High Chan Spurs Plot 2 -85dBm 700DL, High Chan Spurs Plot 3 -85dBm 700DL, High Chan Spurs Plot 4 -85dBm 700DL, High Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 89 of 143 Figure 64: Conducted Spurious Emissions, Low Channel, 800DL, -30dBm CW Input -30dBm 800DL, Low Chan Spurs Plot 1 -30dBm 800DL, Low Chan Spurs Plot 2 -30dBm 800DL, Low Chan Spurs Plot 3 -30dBm 800DL, Low Chan Spurs Plot 4 -30dBm 800DL, Low Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 90 of 143 Figure 65: Conducted Spurious Emissions, Center Channel, 800DL, -30dBm CW Input -30dBm 800DL, Center Chan Spurs Plot 1 -30dBm 800DL, Center Chan Spurs Plot 2 -30dBm 800DL, Center Chan Spurs Plot 3 -30dBm 800DL, Center Chan Spurs Plot 4.1 -30dBm 800DL, Center Chan Spurs Plot 4.2 -30dBm 800DL, Center Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 91 of 143 Figure 66: Conducted Spurious Emissions, High Channel, 800DL, -30dBm CW Input -30dBm 800DL High Chan Spurs Plot 1 -30dBm 800DL High Chan Spurs Plot 2 -30dBm 800DL High Chan Spurs Plot 3 -30dBm 800DL High Chan Spurs Plot 4 -30dBm 800DL High Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 92 of 143 Figure 67: Conducted Spurious Emissions, Low Channel, 800DL, -85dBm CW Input -85dBm 800DL, Low Chan Spurs Plot 1 -85dBm 800DL, Low Chan Spurs Plot 2 -85dBm 800DL, Low Chan Spurs Plot 3 -85dBm 800DL, Low Chan Spurs Plot 4 -85dBm 800DL, Low Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 93 of 143 Figure 68: Conducted Spurious Emissions, Center Channel, 800DL, -85dBm CW Input -85dBm 800DL, Center Chan Spurs Plot 1 -85dBm 800DL, Center Chan Spurs Plot 2 -85dBm 800DL, Center Chan Spurs Plot 3 -85dBm 800DL, Center Chan Spurs Plot 4 -85dBm 800DL, Center Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 94 of 143 Figure 69: Conducted Spurious Emissions, High Channel, 800DL, -85dBm CW Input -85dBm 800DL High Chan Spurs Plot 1 -85dBm 800DL High Chan Spurs Plot 2 -85dBm 800DL High Chan Spurs Plot 3 -85dBm 800DL High Chan Spurs Plot 4 -85dBm 800DL High Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 95 of 143 Figure 70: Conducted Spurious Emissions, Low Channel, Uplink, -30dBm CW Input -30dBm Uplink Low Chan Spurs Plot 1 -30dBm Uplink Low Chan Spurs Plot 2 -30dBm Uplink Low Chan Spurs Plot 3 -30dBm Uplink Low Chan Spurs Plot 4 -30dBm Uplink Low Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 96 of 143 Figure 71: Conducted Spurious Emissions, Center Channel, Uplink, -30dBm CW Input -30dBm Uplink Center Chan Spurs Plot 1 -30dBm Uplink Center Chan Spurs Plot 2 -30dBm Uplink Center Chan Spurs Plot 3 -30dBm Uplink Center Chan Spurs Plot 4 -30dBm Uplink Center Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 97 of 143 Figure 72: Conducted Spurious Emissions, High Channel, Uplink, -30dBm CW Input -30dBm Uplink High Chan Spurs Plot 1 -30dBm Uplink High Chan Spurs Plot 2 -30dBm Uplink High Chan Spurs Plot 3 -30dBm Uplink High Chan Spurs Plot 4.1 -30dBm Uplink High Chan Spurs Plot 4.2 -30dBm Uplink High Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 98 of 143 Figure 73: Conducted Spurious Emissions, Low Channel, Uplink, -85dBm CW Input -85dBm Uplink Low Chan Spurs Plot 1 -85dBm Uplink Low Chan Spurs Plot 2 -85dBm Uplink Low Chan Spurs Plot 3 -85dBm Uplink Low Chan Spurs Plot 4 -85dBm Uplink Low Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 99 of 143 Figure 74: Conducted Spurious Emissions, Center Channel, Uplink, -85dBm CW Input -85dBm Uplink Center Chan Spurs Plot 1 -85dBm Uplink Center Chan Spurs Plot 2 -85dBm Uplink Center Chan Spurs Plot 3 -85dBm Uplink Center Chan Spurs Plot 4 -85dBm Uplink Center Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 100 of 143 Figure 75: Conducted Spurious Emissions, High Channel, Uplink, -85dBm CW Input -85dBm Uplink High Chan Spurs Plot 1 -85dBm Uplink High Chan Spurs Plot 2 -85dBm Uplink High Chan Spurs Plot 3 -85dBm Uplink High Chan Spurs Plot 4 -85dBm Uplink High Chan Spurs Plot 5 Marconi Technologies, Inc. 700/800 Class A BDA FCC Part 80 Test Report WLL Report 19389-01 Rev 1 Page 101 of 143 3.5 20dBc Out of Band Rejection 3.5.1 Requirement § 90.219(d)(7): Signal booster passbands are limited to the service band or bands for which the operator…
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55 Broadway 3rd Floor · New York, 10006 · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 9 | 769.125 MHz - 774.875 MHz | 4.891 W | 4K00F1E | 6.61ppm |
| 2 | 9 | 852.125 MHz - 857.875 MHz | 4.891 W | 11K3F3E | 6.61ppm |
| 3 | 9 | 799.125 MHz - 814.875 MHz | 4.891 W | 16K0F3E | 6.61ppm |