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JF6-8705U-8MDR8000 Digital Microwave Radio

Alcatel USA Marketing, Inc.
MDR8000 Digital Microwave Radio - FCC ID JF6-8705U-8 - Alcatel USA Marketing, Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Oct 03, 2005
Application Purpose
Original Equipment
Date of Application
Jul 05, 2005
Equipment Note
MDR8000 Digital Microwave Radio
Frequency Range
5725.00000000 - 5850.00000000
Company
Alcatel USA Marketing, Inc.
Country
United States

Documents & Files

Select a file to view

Users Manual

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Attestation Statements

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Block Diagram

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Parts List/Tune Up Info

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RF Exposure Info

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Schematics

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

MDR-8000/i/s/u Alcatel Part Number 3EM15726AA 3400 West Plano Parkway Plano, Texas 75075-5813 U.S.A. Part 1 of 2 Issue 2, June, 2004 Microwave Digital Radios Users Manual Table of Contents TOC-i Page Section 1General 1.1 INTRODUCTION ............................................................................................. 1-1 1.2 CONTENT ....................................................................................................... 1-1 Section 2Operation 2.1 GENERAL ........................................................................................................ 2-1 2.2 TURN-ON ........................................................................................................ 2-1 2.3 USER SYSTEM INTERFACE (USI) PROVISIONING FUNCTION/OPERATION ...... 2-2 2.4 OPERATING PROCEDURES .............................................................................. 2-2 2.4.1 Radio Receiver Manual Switching ..................................................................... 2-2 2.4.2 Radio Transmitter Manual Switching ................................................................. 2-5 2.4.3 Radio I/O Interface Manual Switching .............................................................. 2-5 2.4.4 MCS-11 Operation .......................................................................................... 2-7 2.4.5 Lamp Tests ....................................................................................................... 2-8 2.4.6 Alarm Checks .................................................................................................. 2-8 2.4.7 Orderwire Operation ....................................................................................... 2-8 2.4.8 Initiating Outgoing Orderwire Calls .................................................................. 2-8 2.4.9 Answering Incoming Orderwire Calls ................................................................ 2-8 2.5 TURN-OFF PROCEDURE ................................................................................... 2-9 2.6 EMERGENCY OPERATION .............................................................................. 2-9 2.7 MODEM OPERATION ...................................................................................... 2-9 2.8 CONTROLS, INDICATORS, TEST POINTS, AND CONNECTORS ....................... 2-9 Section 3Interconnect 3.1 SECTION INTRODUCTION .............................................................................. 3-1 3.2 INSTALL POWER CABLE ASSEMBLIES ............................................................... 3-1 Page TOC-ii 3.3 PDU STRAPPING AND CONNECTIONS ........................................................... 3-3 3.4 SHELF/RACK ALARM CONNECTION .............................................................. 3-5 3.5 DS1 CONNECTIONS (J303 IN AND J304 OUT) .............................................. 3-8 3.6 DS1 REPEATER (J314 ON ONE SHELF TO J314 ON SECOND SHELF) ............ 3-10 3.7 DS3 LBO STRAPPING AND CONNECTIONS ................................................. 3-11 3.8 DS3 LBO DS3 BNC CONNECTIONS (J21 THROUGH J26 ) ............................. 3-12 3.9 DS3 LBO WAYSIDE DS1 CONNECTIONS (J201 IN AND J202 OUT ) ............. 3-13 3.9.1 Wayside DS1 Terminal .................................................................................. 3-14 3.9.2 Wayside DS1 Repeater .................................................................................. 3-15 3.10 DS3 REPEATER (J401 ON ONE SHELF TO J401 ON SECOND SHELF) ............ 3-15 3.11 FIBER OPTIC CABLE CONNECTIONS ............................................................. 3-16 3.11.1 2 or 4 Fiber Management Panel ..................................................................... 3-17 3.11.2 2x4 Fiber Switched Management Panel .......................................................... 3-17 3.12 OC3 AUX INTERFACE BOARD WAYSIDE DS1 CONNECTIONS (J201 IN AND J202 OUT) .............................................................................. 3-20 3.12.1 Wayside DS1 Terminal .................................................................................. 3-20 3.12.2 Wayside DS1 Repeater .................................................................................. 3-20 3.13 OC3 REPEATER (J203 ON ONE SHELF TO J203 ON SECOND SHELF) ........... 3-21 3.14 USI/CONTROLLER CABLE CONNECTION TO LAPTOP (J301) ......................... 3-22 3.15 SERVICE CHANNEL ....................................................................................... 3-22 3.15.1 Handset Jack ................................................................................................. 3-23 3.15.2 Service Channels Provisioning Options ............................................................ 3-24 3.15.3 Audio 1, Audio 2 (J316, J317) ....................................................................... 3-24 3.15.4 RS-232-1, RS-232-2 (J312, J313) .................................................................... 3-27 3.15.5 MCS-11 Connections ..................................................................................... 3-28 3.15.6 ELMC (J315, J318) ........................................................................................ 3-37 3.16 FOREIGN ALARM INTERFACE (J305) ............................................................. 3-41 3.17 ALARM, STATUS, CONTROLS INTERCONNECT ............................................. 3-44 3.17.1 Controller Bus ................................................................................................ 3-46 3.17.2 Control Inputs ................................................................................................ 3-46 3.17.3 Station Alarm Inputs/TBOS Interface ............................................................... 3-46 Page TOC-iii 3.17.4 Station Alarm Wiring ..................................................................................... 3-47 3.17.5 Relay Alarm/Status Outputs .............................................................…

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Attestation Statements

Alcatel 1000 Coit Rd., Plano, Texas, 75075 January 31, 2005 ALCATEL USA WIRELESS TRANSMISSION DEVISION 3400 Coit Road Pano, TX 75075 To Whom It May Concern: MDR-8705u-xx RADIOS MUST BE PROFESSIONALLY INSTALLED AND THERFORE THEY ARE EXEMPT FROM THE ANTENNA RESTRICTIONS (FCC PART 15.203), INCLUDING INFORMATION ON ANTENNAS USED FOR TESTING The above statement is in regard with the professional installation of the MDR-8705u-xx, and the antennas used for testing. The MDR-8705u-xx radios must be professionally installed and for that reason they are exempt from the antenna restrictions of the FCC Part 15.203. ALCATEL developed and manufactured this radio. These radios are part of the larger MDR- 8000/i/s/u series Microwave Digital Radio that provides transport for DS1, E1, DS3, and OC3 in 2, 6, 7, 8, 10, and 11Ghz licensed frequency bands. The MDR-8705u-XX family of radios uses digitally modulated signals and it is to be certified for operation under Part 15.247 of the FCC Rules (including the new rules adopted under Docket No. 99- 123). The radio is designed for point-to-point communications in the 5.725-5.850Ghz band and will provide transport for OC3 capacities using 128 TCM modulation scheme. Due to the unique requirements of installation and turn-on procedures, typical consumers or businesses will not have the proper training required for successful implementation of these radios. The MDR-8705u-XX radios are not designed for use by general public, and will be sold through ALCATEL sales department only, or 3 rd party distributors, to professional communications users in the following category: regional Bell operating companies, telecommunication companies, personal communication service companies, power electric utilities, etc These companies will either use their professional telecommunications engineering staff to carry out the installation or will subcontract to professional installation firms. The MDR-8705u-xx radios will be used for point –to-point communications only, as fixed, permanent or temporary links requiring the use of directional antennas mounted outdoor, usually on a tower. These antennas have narrow beamwidths and require a professional installer for alignment. The maximum transmit power of the MDR-8705u-xx radio is 1Watt(29dbm) and it is adjusted in the factory during the final tests. However the output power can be adjusted to lower levels by Alcatel 1000 Coit Rd., Plano, Texas, 75075 professional installer during installation. The method of adjusting the output power is described in the manual written for use by professional trained installers. This radio is sold without antenna and the customer chooses from commercially available antennas. Troy Taylor Product Line Manager Wireless Transmission Division

Block Diagram

- 1 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 Exhibit: Bloc Diagram 2.6 Functional Description This section presents a short functional description of the MDR–8000 series radios. The descriptive information covers the radio main functions only. Theory of operation, module description, turnup procedures and maintenance are located in the MDR-8000/i/s/u Instruction Book. 2.6.1 MDR–8000 Main Functions See figure 1–1. In the transmit direction the MDR–8000 uses a modulation structure where the I and Q baseband signals modulate the in–phase and quadrature phase components of the transmitter. The DS1/E1 I/O interface converts the format of the incoming DS1/E1 data streams to I,Q, data, and clock. The DS1/E1 I/O interface module uses the DS1/E1 signals to generate 32 or 128 trellis code amplitude modulated (TCM) baseband signals The transmitter processes the TCM baseband signals to generate the modulated TCM RF signal. The RF signal is then amplified and applied directly to the antenna branching or further amplified by a solid–state amplifier (optional) and applied to the antenna branching. The DS3 I/O interface converts the format of the incoming DS3 and Wayside (WS) DS1 data streams to I, Q, data, and clock. The I/O interface module uses the DS3 signals to generate 64 Quadrature Amplitude Modulated (QAM) baseband signals. The transmitter processes the QAM baseband signals to generate the modulated QAM RF signal. The RF signal is then amplified and applied directly to the antenna branching or further amplified by a solid–state amplifier (optional) and applied to the antenna branching. In the receive direction, the MDR–8000 uses a demodulation conversion structure. The received TCM or QAM RF signal is fed into a filter followed by a receiver module. The receiver module directly converts the RF signal to I and Q baseband signals and provides all of the acquisition loops. The receiver also provides countermeasures to dynamic path distortions. Clock and digital data are extracted from the analog channels and passed on to the I/O interface. The digital data is processed by the I/O interface module and converted to a DS1/E1 or DS3 format. The MDR–8000 consists of I/O, transmit, receive, control and monitor, and power distribution subsystems. - 2 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 DS1/E1 Non-Standby System Functional Block Diagram Figure 2.6.1-DS1/E1 Non–Standby System Functional Block Diagram

External Photos

External Photos MDR8705u-XX radio mounted in a rack with over on. MDR-8705u-XX radio (non-standby) without cover.

ID Label/Location Info

APPENDIX A: FCC ID Location

ID Label/Location Info

To: Linda Elliott, Correspondence Reference Number: 29407 731 Confirmation Number: EA244352 I have four applications in the process of being reviewed for equipment authorization. FCC ID: JF68705U-155 Form 731 Confirmation: EA345054 FCC ID: JF68705U-52 Form 731 Confirmation: EA607031 FCC ID: JF68705U-16 Form 731 Confirmation: EA299647 FCC ID: JF68705U-8 Form 731 Confirmation: EA244352 I had several problems trying to input information to the online applications. One being the FCC ID, our company ID is JF6 and the equipment type should be followed by a hyphen. The above FCC IDs need to be changed to add a hyphen between the company (grantee) ID and the equipment type as indicated below: FCC ID: JF6-8705U-155 FCC ID: JF6-8705U-52 FCC ID: JF6-8705U-16 FCC ID: JF6-8705U-8 Could you make these changes to my applications? Please call if you need any additional clarification, information or if it's going to delay the applications. Thanks, Troy Taylor Alcatel NA, WTD 972-519-4377

Internal Photos

OC3 Interface Card (Front View) OC3 Interface Card (Back View)

Operational Description

- 1 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 1.0 Operational Description The MDR-8705-XX is the MDR-8000/i/s/u version for the unlicensed frequency band: 5725-5850 MHz. It is the latest addition of the Alcatel family of digital microwave products. The MDR-8705-XX radio capacity is OC3 which as a Transport Capacity of 155 Mb/s. The OC3 I/O and the Ethernet I/O baud rates are the same as well as the Transport Capacity of 155 Mb/s and modulation. The MDR–8000/i/s/u series Microwave Digital Radios (see figure 2–1) consists of: · Solid–state, licensed, digital radios that provide transport for DS1, E1, and DS3 in 2, 4, 6, 7, 8, 10, and 11 GHz RF frequency bands and OC3 in 4, 6, 7, 8, 10, and 11 GHz RF frequency bands · Solid–state, unlicensed digital radios that provide transport for DS1, DS3 and OC3 in the 5 GHz RF frequency band. The following capacities and modulation schemes are available: · MDR–8000 – 2, 4, 8, 12, or 16 North American Standard DS1 channels at either 32 or 128 TCM, 1 or 3 North American Standard DS3 channels with 1 or 3 wayside DS1 channels at 64 QAM · MDR–8000i – 2, 4, 8, 12, or 16 CCITT E1 channels at either 32 or 128 TCM · MDR–8000s – 3 North American Standard STS1 channels with 3 wayside DS1 channels at 128 TCM · MDR–8000u– 2, 4, 8, or 16 North American Standard DS1 channels at 32 TCM, 1 North American Standard DS3 channel with 1 wayside DS1 channel at 16 or 64 QAM and 1 North American Standard OC3 channel with 3 way sides DS1 channels at 128 TCM. The radio fits into a standard 19 in. (483 mm) rack and occupies seven vertical rack increments. Up to four fully–equipped hot–standby radios can be mounted in a standard 7 ft rack. The radio is front accessible and can be mounted against a wall or back–to–back against other equipment. 1.1 STANDARD FEATURES Standard features include: · Frequency bands from 2 to 11 GHz - 2 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 · Committee of European Post and Telegraph (CEPT)/Federal Communications Commission (FCC) applications · DS1, E1, DS3, Ethernet and OC3 Traffic capacities. · International Telecommunications Union (ITU)/ETSI/FCC compliant · Five configuration options · Upstream management compatibility · User–friendly Personal Computer (PC) monitor and control · Automatic Transmitter Power Control (ATPC) · Adaptive Time Domain Equalization (TDE) · Extended Link Monitor Channel (ELMC) · MCS–11/Telemetry Byte Oriented Serial (TBOS) Alarm/Control Interface · Two independent PCM audio channels - 3 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 Figure 2–1 Typical MDR–8000/i/s/u Series Microwave Digital Radio - 4 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 1.2 NAMING CONVENTION The MDR–8000/i/s/u series radio naming conventions are as follows: - 5 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 1.3 SYSTEM CONFIGURATIONS The MDR–8000/i/s radio can be provisioned as a terminal, synchronous repeater, ring terminal, or ring repeater. 1.4 RADIO CONFIGURATIONS 1.4.1 Basic Configurations The MDR–8000/i/s/u supports the three basic configurations: · Non–standby – available in all frequency bands – stand alone transmitter/receiver combination · Hot–standby – available in all frequency bands – pair of transmitters and receivers, both pairs operating on the same set of go and return frequencies. · Frequency diversity – available in all frequency bands except 2 GHz – pair of transmitters and receivers, each pair operating on a different set of go and return frequencies. 1.4.2 Ring Non–standby radios are typically used in ring systems where the radios are protected by the ring architecture. 1.4.3 Space Diversity Add–On Space diversity can be added to any of the three basic configurations and ring systems. 1.4.4 Optical 2 X 4 Configuration Hot–standby and frequency diversity configuration are available with 2–fiber or 4–fiber optical interfaces. 1.5 FEATURES AND OPTIONS Features and options for the MDR–8000/i/s/u series of microwave digital radios are described in the following paragraphs. 1.5.1 Primary Power The MDR–8000/i/s/u series radios operate from 20.5 to 60 V dc primary power with positive or negative ground. - 6 - FCC Part 15.247 Digital Modulation Technique Certification Alcatel 1000 Coit Rd., Plano, Texas, 75075 1.5.2 Transmit Power Level Options The standard radio is provided without a power amplifier (PA) module for low–power applications. The optional PA module is available for high–power requirements. There are different levels for the different frequency bands. Refer to the electrical characteristics table in this section for specific levels. 1.5.3 Differential Absolute Delay Equalization (DADE) DADEing adjusts the differential absolute delay between the main and diversity signals in a space diversity configuration. DADEing is an automatic function within the MDR–8000/i/s/u receivers, reducing the time required for initial turn–up and test. 1.5.4 Trellis Encoding and Time Domain Equalization (TDE) Trellis encoding (DS1/E1/OC3) ensures that even with the most severe multipath, only the correct digital data is demodulated. TDE further reduces the disruptive effects of multipath distortion. 1.5.5 MCS–11 Alarm/Control Interface MCS–11 is standard in the MDR–8000. The MDR–8000 can interface with any alarm system that is based on the MCS–11 protocol. Use with the TSM–2500 network management system to develop a central access point to monitor and control the transmission system 1.5.6 Foreign Alarm Interface This provisioning option provides serial alarm/status reporting for the Telemetry Byte Oriented Serial (TBOS) protocol. A wire–wrap adapter is provided to mate to connector J305 on the backplane. 1.5.7 Relay Interface Option The optional AE–27AF Re…

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Operational Description

1 Steven Dayhoff FCC Application Processing Branch Federal Communications Commission Re: FCC ID JF6-8705U-8 Applicant: Alcatel USA Marketing, Inc. Correspondence Reference Number: 29541 731 Confirmation Number: EA244352 Dear Steven: The following are Alcatel’s responses to the questions presented in your recent e-mail, dated August 30, 2005: The Test Report (Section 4.7 Antenna Requirements) incorrectly states "This radio is sold without antenna and the customer chooses from commercially available antennas." Section 15.204(b) states that this is a transmission system and must be marketed with the selected antenna. Test report states: “This radio is sold without antenna and the customer chooses from commercially available antennas”. There seems to be 15.204 compliance problems. The proposed JF6-8705U-8 radio will use the same antennas as five lower capacity radios that were granted equipment authorization in November of 2002. These radios are the JF6-8705U-2, JF6-8505U-4, JF6-8505U-8, JF6-8505U-16, and JF6-8605U-45. The Grant Notes for the JF6-8505U-4 states: Output is peak conducted. This grant is valid only when the radio is used and marketed with 2ft – 10ft parabolic antennas or 1ft and 2ft flat panels as indicated in the Certification filing. The device must be professionally installed. The antenna(s) used for this transmitter must be fixed-mounted on outdoor permanent structures and must not be co-located or operating in conjunction with any other antenna or transmitter. The separation distance for the 1 ft flat panel must be at least 5 feet from all persons. Users and installers must be provided with antenna installation and transmitter operating conditions for satisfying RF exposure compliance. The proposed JF6-8705U-8 radio will use 2 foot to 10 foot diameter parabolic or 1 foot and 2 foot flat panel antennas. Figures 1 and 2 list typical parabolic and flat panel antennas from Andrew Corporation and Radio Frequency Systems, which is a division of Alcatel. Figures 3 and 4 show photos of the antennas. Parabolic and flat panel antennas from other manufacturers 2 typically have antenna gains within a few tenths of a dB, as compared to the antennas listed in the attached tables. 3 There are a large variety of parabolic and flat panel antennas available for different applications. Standard performance dishes may be purchased with a spherical or conical radome cover to reduce wind loading and protect the antenna from snow and icing conditions. High performance and ultra-high performance parabolic antennas have a shroud and integrated flat radome on the front of the dish to improve the antenna discrimination characteristics. Some antennas cover a wide frequency range, including the FCC Part 101 bands from 5.925-6.425 GHz and 6.525-6.875 GHz. Using these antennas, it is possible to convert the radio from unlicensed Part 15 to licensed Part 101 operation without an antenna change. The change to licensed operation requires frequency coordination under Part 101 rules. Operators select the antenna size, type, and model from commercial antenna manufacturers for a specific application. The antenna size and type must meet the requirements of the equipment authorization. Part 15.204(c) states that “An intentional radiator may be authorized with multiple antenna types”. Part 15.204(c)(3) states that “Manufacturers shall supply a list of acceptable antenna types with the application for equipment authorization of the intentional radiator”. With the attached submittal, Alcatel believes that the proposed JF6-8705U-52 radio is in compliance with Part 15.204. Professional installation – To qualify for professional installation, you must explain why the hardware cannot simply be purchased and installed by the average (technically inclined) person. The proposed JF6-8705U-8 is a point-to-point microwave radio that operates over long distances (e.g., 10 to 20 miles). The antennas used with the radio are mounted on permanent structures (e.g., 100 to 200 foot self-supporting or guyed towers). A crane is normally used to hoist the antennas into position. Due to the narrow beamwidth of the antennas (e.g., 3 degrees or less), experienced antenna installers are required to align the antennas with the far end transmitter. Many installations use elliptical waveguide between the radio and antenna, which is pressurized with nitrogen. Installation is far beyond the capabilities of the average technically inclined person. Troy Taylor Product Line Manager

Operational Description

Antenna Manufacturer's Name: Radio Frequency Systems Division of Alcatel Antenna Antenna Mainbeam Antenna Single or Lowest Highest Beam Cross Pol Front-to- Model Type Gain Diameter Dual RF Freq RF Freq Width Discrimination Back Ratio Description Number dBi feet Polarized MHz MHz dB dB dB SPF2-52B Parabolic 28.5 2 Single 5250 5850 5.8 30 43 Standard Performance, SlimLine, Non-Pressurized SPF3-52B Parabolic 32.0 3 Single 5250 5850 3.9 30 45 Standard Performance, SlimLine, Non-Pressurized SPF4-52B Parabolic 34.4 4 Single 5250 5850 3.0 30 48 Standard Performance, SlimLine, Non-Pressurized SPF6-52B Parabolic 38.1 6 Single 5250 5850 2.0 30 50 Standard Performance, SlimLine, Non-Pressurized PSF8-57A Parabolic 40.4 8 Single 5725 5850 1.7 25 46 Standard Performance, Non-Pressurized PSF10-57A Parabolic 42.7 10 Single 5725 5850 1.4 25 49 Standard Performance, Non-Pressurized MA0528-23A Flat Panel 23.0 1 Single 5725 5875 9.0 28 35 Flat Panel, Non-Pressurized MA0528-28A Flat Panel 28.0 2 Single 5725 5875 4.5 28 45 Flat Panel, Non-Pressurized MAX0528-23A Flat Panel 23.0 1 Dual 5725 5875 9.0 30 30 Flat Panel, Non-Pressurized PA4-57A Parabolic 34.8 4 Single 5725 5850 3.1 30 42 Standard Performance PA6-57A Parabolic 38.3 6 Single 5725 5850 2.1 30 46 Standard Performance PA8-57A Parabolic 40.8 8 Single 5725 5850 1.5 30 48 Standard Performance PA10-57A Parabolic 42.7 10 Single 5725 5850 1.2 30 51 Standard Performance SDF4-52B Parabolic 34.4 4 Single 5250 5850 3.0 30 58 High Performance, SlimLine, Non-Pressurized SDF6-52B Parabolic 38.1 6 Single 5250 5850 2.0 30 61 High Performance, SlimLine, Non-Pressurized DA4-57A Parabolic 34.8 4 Single 5725 5850 3.1 30 55 High Performance DA6-57A Parabolic 38.3 6 Single 5725 5850 2.1 30 64 High Performance DA8-57A Parabolic 40.8 8 Single 5725 5850 1.5 30 68 High Performance DA10-57A Parabolic 42.7 10 Single 5725 5850 1.2 30 70 High Performance UA6-56A Parabolic 38.5 6 Single 5670 6170 2.0 30 66 Ultra High Performance UA8-56A Parabolic 41.0 8 Single 5670 6170 1.5 30 69 Ultra High Performance UA10-56A Parabolic 42.9 10 Single 5670 6170 1.2 30 71 Ultra High Performance PAX6-56A Parabolic 38.4 6 Dual 5670 6170 2.0 30 46 Standard Performance PAX8-56A Parabolic 40.9 8 Dual 5670 6170 1.5 30 48 Standard Performance PAX10-56A Parabolic 42.8 10 Dual 5670 6170 1.2 30 50 Standard Performance DAX6-56A Parabolic 38.4 6 Dual 5670 6170 2.0 30 59 High Performance DAX8-56A Parabolic 40.9 8 Dual 5670 6170 1.5 30 67 High Performance DAX10-56A Parabolic 42.8 10 Dual 5670 6170 1.2 30 69 High Performance UDA6-56A Parabolic 38.4 6 Dual 5670 6170 2.0 30 66 Ultra High Performance UDA8-56A Parabolic 40.9 8 Dual 5670 6170 1.5 30 70 Ultra High Performance UDA10-56A Parabolic 42.8 10 Dual 5670 6170 1.2 30 72 Ultra High Performance Figure 1 Antenna Manufacturer's Name: Radio Frequency Systems Division of Alcatel Antenna Antenna Mainbeam Antenna Single or Lowest Highest Beam Cross Pol Front-to- Model Type Gain Diameter Dual RF Freq RF Freq Width Discrimination Back Ratio Description Number dBi feet Polarized MHz MHz dB dB dB UXA6-56A Parabolic 38.4 6 Dual 5670 6170 2.0 40 68 Ultra High Performance, High XPD UXA8-56A Parabolic 40.9 8 Dual 5670 6170 1.5 40 70 Ultra High Performance, High XPD UXA10-56A Parabolic 42.8 10 Dual 5670 6170 1.2 40 72 Ultra High Performance, High XPD PAD6-W57A Parabolic 38.9 6 Single 5725 6875 1.9 30 55 Standard Performance, FCC Part 101 Category A PAD8-W57A Parabolic 41.4 8 Single 5725 6875 1.4 30 57 Standard Performance, FCC Part 101 Category A PA4-W57A Parabolic 35.5 4 Single 5725 6875 2.8 28 42 Standard Performance PA6-W57A Parabolic 39.0 6 Single 5725 6875 1.9 30 46 Standard Performance PA8-W57A Parabolic 41.5 8 Single 5725 6875 1.4 30 48 Standard Performance PA10-W57A Parabolic 43.5 10 Single 5725 6875 1.1 30 51 Standard Performance DA4-W57A Parabolic 35.5 4 Single 5725 6875 2.8 28 55 High Performance DA6-W57A Parabolic 39.0 6 Single 5725 6875 1.9 30 64 High Performance DA8-W57A Parabolic 41.5 8 Single 5725 6875 1.4 30 68 High Performance DA10-W57A Parabolic 43.5 10 Single 5725 6875 1.1 30 70 High Performance Antenna Manufacturer's Name: Andrew Corporation Antenna Antenna Mainbeam Antenna Single or Lowest Highest Beam Cross Pol Front-to- Model Type Gain Diameter Dual RF Freq RF Freq Width Discrimination Back Ratio Description Number dBi feet Polarized MHz MHz dB dB dB P2F-52 Parabolic 29.4 2 Single 5250 5850 5.4 30 41 Standard Performance, Unpressurized P3F-52 Parabolic 33.4 3 Single 5250 5850 3.8 30 42 Standard Performance, Unpressurized P4F-52 Parabolic 34.9 4 Single 5250 5850 3.0 30 52 Standard Performance, Unpressurized P6F-52 Parabolic 37.6 6 Single 5250 5850 1.8 30 49 Standard Performance, Unpressurized PX2F-52 Parabolic 29.4 2 Dual 5250 5850 5.4 30 41 Standard Performance, Unpressurized PX3F-52 Parabolic 33.4 3 Dual 5250 5850 3.8 30 42 Standard Performance, Unpressurized PX4F-52 Parabolic 34.9 4 Dual 5250 5850 3.0 30 52 Standard Performance, Unpressurized PX6F-52 Parabolic 37.6 6 Dual 5250 5850 1.8 30 49 Standard Performance, Unpressurized FPA5250D12-N Flat Panel 23.6 1 Single 5250 5850 9.6 30 38 Flat Panel FPA5250D24-N Flat Panel 28.5 2 Single 5250 5850 4.8 30 43 Flat Panel FPA5150-23PM-1 Flat Panel 23.0 1 Single 5150 5875 10.5 35 Flat Panel, Pole Mount FPA5150-16-1 Flat Panel 23.0 1 Single 5150 5875 10.5 35 Flat Panel, Adjustable Mount HP2F-52 Parabolic 29.0 2 Single 5250 5850 5.4 30 50 High Performance, Unpressurized HP3F-52 Parabolic 33.0 3 Single 5250 5850 3.8 30 53 High Performance, Unpressurized HP4F-52 Parabolic 34.5 4 Single 5250 5850 3.0 30 58 High Performance, Unpressurized HP6F-52 Parabolic 37.2 6 Single 5250 5850 1.8 30 56 High Performance, Unpressurized HPX2F-52 Parabolic 29.0 2 Dual 5250 5850 5.4 30 50 High Performance, Unpressurized HPX3F-52 Parabolic 33.0 3 Dual 5250 5850 3.8 30 53 High Performance, Unpressurized HPX4F-52 Parabolic 34.5 4 Dual 5250 5850 3.0 30 58 High Performance, Unpressurized HPX6F-52 Parabolic 37.2 6 Dual 5250 5850 1.8 30 56 Hig…

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Operational Description

1 Steven Dayhoff FCC Application Processing Branch Federal Communications Commission Re: FCC ID JF6-8705U-8 Applicant: Alcatel USA Marketing, Inc. Correspondence Reference Number: 29541 731 Confirmation Number: EA244352 Dear Steven: The following are Alcatel’s responses to the questions presented in your recent e-mail, dated August 30, 2005: The Test Report (Section 4.7 Antenna Requirements) incorrectly states "This radio is sold without antenna and the customer chooses from commercially available antennas." Section 15.204(b) states that this is a transmission system and must be marketed with the selected antenna. Test report states: “This radio is sold without antenna and the customer chooses from commercially available antennas”. There seems to be 15.204 compliance problems. The proposed JF6-8705U-8 radio will use the same antennas as five lower capacity radios that were granted equipment authorization in November of 2002. These radios are the JF6-8705U-2, JF6-8505U-4…

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Contact Information

Applicant

Alfred Holland(R&D Manager)
[email protected]469-865-8238Fax: 469-865-8238

Technical Contact

Alcatel North AmericaTroy Taylor
[email protected]972-519-4377

3400 W. Plano Pkway · Plano, Texas · United States

Non-Technical Contact

Alcatel North AmericaRaymond Corral
[email protected]972-477-4681

Test Firm

Alcatel North AmericaRichard Riley
[email protected]972-477-0075Fax: 972-5192618

Technical Specifications

#Rule PartsFrequency RangePower Output
115C5.72 GHz - 5.85 GHz1 W

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JF6-9558L-D

5 GHz rack-mounted point to point transceiver

May 28, 2015

Equipment Class

DTS - Digital Transmission System
5 GHz rack-mounted point to point transceiver - FCC ID JF6-9558L - Alcatel USA Marketing, Inc.
JF6-9558L

5 GHz rack-mounted point to point transceiver

May 28, 2015

Equipment Class

DTS - Digital Transmission System
Microwave Packet Radio - FCC ID JF6-9558HC - Alcatel USA Marketing, Inc.
JF6-9558HC

Microwave Packet Radio

Aug 06, 2012

Equipment Class

DTS - Digital Transmission System
MDR-8000 - FCC ID JF6-8702-50 - Alcatel USA Marketing, Inc.
JF6-8702-50

MDR-8000

Apr 26, 2010

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
MPT-HL Packet Terminal - FCC ID JF6-9558H - Alcatel USA Marketing, Inc.
JF6-9558H

MPT-HL Packet Terminal

Jan 03, 2010

Equipment Class

DTS - Digital Transmission System