
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 22 February 2002 2001© Raze Technologies, Inc. All Material Contained in this Document is to be considered a Draft. Note that this Document is not yet formally released, may contain errors and omissions, and is subject to change without notice. Do Not Distribute Without Prior Approval. 2001 Raze Technologies, Inc. SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft CC 26 April 2002 Page ii of 20 2001 Raze Technologies, Inc. f 20 SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page i Table of Contents 1.0 General...............................................................................................................................1 1.1 Purpose............................................................................................................................1 1.2 Scope...............................................................................................................................1 1.3 Applications....................................................................................................................1 2.0 Reference Documentation................................................................................................1 3.0 Preparations...................................................................................................................... 1 3.1 Safety Conventions and Precautions...............................................................................1 3.2 FCC Precautions............................................................................................................2 3.3 ACTA Precautions..........................................................................................................3 3.4 Required Materials..........................................................................................................4 4.0 Procedures.........................................................................................................................4 5.0 Acronyms......................................................................................................................... 16 Procedures Procedure 1. Signal Acquisition Tool.....................................................................................4 Procedure 2. S-IAD Antenna Mast and SPSI Installation...................................................5 Procedure 3. S-IAD and SPSI Cable Runs and Connections..............................................6 Procedure 4. S-IAD Antenna and SPSI Box Grounding...................................................10 Procedure 5. S-IAD Antenna Alignment.............................................................................12 2001 Raze Technologies, Inc. f 20 SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page i Figures Figure 1 - SPSI Termination Points..........................................................................................14 Figure 2 - S-IAD/SPSI Grounding.............................................................................................15 2001 Raze Technologies, Inc. f 20 SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page 1 SkyFire™ Subscriber S-IAD Installation 1.0 General 1.1 Purpose This method will cover the mounting of the SkyFire™ Subscriber Integrated Access Device (S-IAD) unit and Subscriber Power and Signal Interface (SPSI). In addition running, securing, and connecting power cables for the S-IAD and SPSI. 1.2 Scope The scope of this document is to outline the procedures for the proper installation of the S-IAD unit, SPSI, and associated equipment ensuring a level of consistency thereby minimizing any discrepancies upon power-up and operation. 1.3 Applications This method applies to initial installations and extensions for the following models: 1. RZ-IAD58 2.0 Reference Documentation 12-10-EN-0301-01, “SkyFire™, Power, Ground and System Cabling” 12-10-EN-xxxx-xx, “Installation Safety Manual” 3.0 Preparations 3.1 Safety Conventions and Precautions The following symbols appear within this document: When this symbol appears on the equipment or within this document, read the Installation Safety Manual (ISM) for additional safety information before taking further action or it highlights important safety-related information. Performing the indicated procedure may expose the technician to hazardous voltages or hazardous electrical currents. To avoid personal injury, when indicated disconnect or turn off the power source. 2001 Raze Technologies, Inc. SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page 2 Performing the indicated task may cause the cabinet to tip over. To avoid personal injury, follow the instructions given in the text. Equipment may be too heavy for one person to lift. To avoid personal injury, lift the equipment with one person for each 35 lb (16 kg) of weight. To avoid damaging the equipment with electrostatic discharge (ESD), place a static-control strap on your wrist and attach the ground clip to closest grounding contact before handling the equipment. Interruption of the safety earth ground system could create an electrical- shock hazard. To avoid personal injury, all electrical connections marked with this symbol must be properly connected. Observe all the general safety precautions against personal and equipment damage outlined in the ISM at all times. ISM located at URL..... Exercise caution when aligning the SIAD to ensure that no tools or parts are allowed to drop from the roof environment. Prior to starting the operations presented in this method, arrange all materials, tools, and test equipment at the work location to minimize fatigue and inconvenience. Inspect equipment for damage upon receipt. If damage is detected, call the Return Materials Authorization (RMA) office for replacement. (972) xxx-xxxx Read this method i…
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SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 22 February 2002 2001© Raze Technologies, Inc. All Material Contained in this Document is to be considered a Draft. Note that this Document is not yet formally released, may contain errors and omissions, and is subject to change without notice. Do Not Distribute Without Prior Approval. 2001 Raze Technologies, Inc. SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft CC 3 June 2002 Page ii of 20 2001 Raze Technologies, Inc. f 20 SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page i Table of Contents 1.0 General...............................................................................................................................1 1.1 Purpose............................................................................................................................1 1.2 Scope...............................................................................................................................1 1.3 Applications....................................................................................................................1 2.0 Reference Documentation................................................................................................1 3.0 Preparations...................................................................................................................... 1 3.1 Safety Conventions and Precautions...............................................................................1 3.2 FCC Precautions............................................................................................................2 3.3 ACTA Precautions..........................................................................................................3 3.4 Required Materials..........................................................................................................4 4.0 Procedures.........................................................................................................................5 5.0 Acronyms......................................................................................................................... 16 Procedures Procedure 1. Signal Acquisition Tool.....................................................................................5 Procedure 2. S-IAD Antenna Mast and SPSI Installation...................................................5 Procedure 3. S-IAD and SPSI Cable Runs and Connections..............................................7 Procedure 4. S-IAD Antenna and SPSI Box Grounding...................................................10 Procedure 5. S-IAD Antenna Alignment.............................................................................12 2001 Raze Technologies, Inc. f 20 SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page i Figures Figure 1 - SPSI Termination Points..........................................................................................14 Figure 2 - S-IAD/SPSI Grounding.............................................................................................15 2001 Raze Technologies, Inc. f 20 SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page 1 SkyFire™ Subscriber S-IAD Installation 1.0 General 1.1 Purpose This method will cover the mounting of the SkyFire™ Subscriber Integrated Access Device (S-IAD) unit and Subscriber Power and Signal Interface (SPSI). In addition running, securing, and connecting power cables for the S-IAD and SPSI. 1.2 Scope The scope of this document is to outline the procedures for the proper installation of the S-IAD unit, SPSI, and associated equipment ensuring a level of consistency thereby minimizing any discrepancies upon power-up and operation. 1.3 Applications This method applies to initial installations and extensions for the following models: 1. RZ-IAD58 2.0 Reference Documentation 12-10-EN-0301-01, “SkyFire™, Power, Ground and System Cabling” 12-10-EN-xxxx-xx, “Installation Safety Manual” 3.0 Preparations 3.1 Safety Conventions and Precautions The following symbols appear within this document: When this symbol appears on the equipment or within this document, read the Installation Safety Manual (ISM) for additional safety information before taking further action or it highlights important safety-related information. Performing the indicated procedure may expose the technician to hazardous voltages or hazardous electrical currents. To avoid personal injury, when indicated disconnect or turn off the power source. 2001 Raze Technologies, Inc. SkyFire™ Subscriber S-IAD Installation RAZE 12-10-EN-0306, Draft C 9 November 2001 Page 2 Performing the indicated task may cause the cabinet to tip over. To avoid personal injury, follow the instructions given in the text. Equipment may be too heavy for one person to lift. To avoid personal injury, lift the equipment with one person for each 35 lb (16 kg) of weight. To avoid damaging the equipment with electrostatic discharge (ESD), place a static-control strap on your wrist and attach the ground clip to closest grounding contact before handling the equipment. Interruption of the safety earth ground system could create an electrical- shock hazard. To avoid personal injury, all electrical connections marked with this symbol must be properly connected. Observe all the general safety precautions against personal and equipment damage outlined in the ISM at all times. ISM located at URL..... Exercise caution when aligning the SIAD to ensure that no tools or parts are allowed to drop from the roof environment. Prior to starting the operations presented in this method, arrange all materials, tools, and test equipment at the work location to minimize fatigue and inconvenience. Inspect equipment for damage upon receipt. If damage is detected, call the Return Materials Authorization (RMA) office for replacement. (972) xxx-xxxx Read this method in …
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PRELIMINARY DATA SHEET 1/6 ANTENNA ARRAY 5.725-5.825GHZ GAIN =18DBI EPA 01-036 DIRECTIONNAL ANTENNA Series :ANTENNE Issue : 0145 C In the effort to improve our products, we reserve the right to make changes judged to be necessary. All dimensions are in mm .. poao PRELIMINARY DATA SHEET 2/6 ANTENNA ARRAY 5.725-5.825GHZ GAIN =18DBI EPA 01-036 DIRECTIONNAL ANTENNA Series :ANTENNE Issue : 0145 C In the effort to improve our products, we reserve the right to make changes judged to be necessary. ELECTRICAL CHARACTERISTICS Frequency : ......................................... 5.725-5.825 GHz Nominal Impedance :.......................... 50 Ω VSWR :............................................... 2 Max Gain :................................................... 18 dBi Radiation Pattern -3 dB beamwidth Azimuth Plane : 20 °Max Elevation Plane : 20 °Max Cross Polarization level Azimuth Plane : -25 dB Elevation Plane : -30 dB Isolation : ............................................ 20 dB mini Polarization : ....................................... VERTICAL & HORIZONTAL Power withstanding : .......................... 2 W Connector type :.................................. SMA (R124.076.323) Cable type : ......................................... SHF 142 Length :....................................... 610 mm PRELIMINARY DATA SHEET 3/6 ANTENNA ARRAY 5.725-5.825GHZ GAIN =18DBI EPA 01-036 DIRECTIONNAL ANTENNA Series :ANTENNE Issue : 0145 C In the effort to improve our products, we reserve the right to make changes judged to be necessary. MECHANICAL CHARACTERISTICS Plastic radome : ................................. UV resistant ABS Color : ................................................ WHITE RAL 9001 Ingress Protection : ............................ IP 55 Weight : ............................................. 1275 g Overall length : ................................. 330 x 180 x 26 mm Cable retention : Pull off : ................. 237 Nmini Fixing system : .................................. See figure ENVIRONMENTAL CHARACTERISTICS Operating temperature :..................... -40/+70 °C Temperature : Stationary ............................... -45/+60 ° C (1),(2) Cyclic ..................................... -45°C - +60°C Rate 0.5°C/min (3) Humidity : Stationary ............................... 93% @ 30° C (4) Cyclic ..................................... 90% @ 30° C (5) Vibration Sinusoidal ............................... ± ±± ±5 mm / 2 m/s 2 (6) Random .................................. 0.03 g 2 /Hz (7) Drop test : .......................................... 0.8 m(8) PRELIMINARY DATA SHEET 4/6 ANTENNA ARRAY 5.725-5.825GHZ GAIN =18DBI EPA 01-036 DIRECTIONNAL ANTENNA Series :ANTENNE Issue : 0145 C In the effort to improve our products, we reserve the right to make changes judged to be necessary. TESTS ENVIRONMENTAL Test report n° 98-13-7874 (1) Tests following IEC 68-2-1 Ad duration: 16 hours @ -45° C (2) Tests following IEC 68-2-2 Bd duration: 16 hours @ +60° C (3) Tests following IEC 68-2-14 Nb temperature changing rate: 0.5°C/min time at each temperature: 3 hours 2cycles (4) Tests following IEC 68-2-56 Cb stationary: 93% @ +30° C during 21 days (5) Tests following IEC 68-2-30 Db cyclic: 6 cycles of 12+12 hours 90% - 100% @ +25°C - +30°C (6) Tests following IEC 68-2-6 Fc Frequency range: 5 – 200 –5 Hz 3 directions duration : 12 mn/cycle 5cyclesin3axes (7) Tests following IEC 68-2-36 Fb Level(ASD):6grms/F:10–200Hz Frequency range: 200 Hz – 2 kHz 3 directions / 10 min per direction (8) Tests following IEC 68-2-32 Ed Height: 0.8 m 1 fall for each face PRELIMINARY DATA SHEET 5/6 ANTENNA ARRAY 5.725-5.825GHZ GAIN =18DBI EPA 01-036 DIRECTIONNAL ANTENNA Series :ANTENNE Issue : 0145 C In the effort to improve our products, we reserve the right to make changes judged to be necessary. CURVES VERTICAL POLARIZATION Azimuth plane Elevation plane PRELIMINARY DATA SHEET 6/6 ANTENNA ARRAY 5.725-5.825GHZ GAIN =18DBI EPA 01-036 DIRECTIONNAL ANTENNA Series :ANTENNE Issue : 0145 C In the effort to improve our products, we reserve the right to make changes judged to be necessary. CURVES HORIZONTAL POLARIZATION Azimuth plane Elevation plane
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 May 28, 2002 RE: FCC ID: QBWRZIAD58 I have a few comments on this Application. 1 The internal photo of the transmitter portion is not clear. Please provide a clearer and possibly closer view of the transmitter section. xx 2 While the report states the device must be professionally installed, the manual does not. Please put the appropriate statement in the manual that informs the user that the antenna for this device must be professionally installed. xx 3 While the device may be an externally connected system/device, it is still a digital device as well as an intentional radiator under Part 15. As such, the manual must contain the appropriate statements in accordance with the requirements for digital devices. Please provide these appropriate statements in a corrected manual to show compliance to CFR 47 Part 15.105 xx 4 The MPE calculations have not been provided. While a distance from individuals is listed in the manual, the MPE calculations need to be provided to justify this distance and to satisfy 1.1310 of the rules. xx 5 The 731 states the device is a Spread Spectrum system. U-NII devices are wide band digitally modulated systems and are not classified as Spread Spectrum. Please clarify that the device code on the 731 is NII to be consistent with the operational description of this device. xx 6 Peak transmit power is typically a conducted measurement. The FCC accepts two methods. 1) Use a peak power meter – 2) Use an analyzer with RBW greater than emission bandwidth. Use a reduced video filter e.g. VBW = emission bandwidth/30.(Video filter). No video averaging is allowed. The test report has not clearly defined how this measurement was made. Please provide an explanation of how Peak transmit power was made. xx Dennis Ward mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
Subject: RE: Request for information for QBWRZIAD58 Date: Thu, 13 Jun 2002 08:00:29 -0500 From: [email protected] To: [email protected] Hi Dennis I uploaded the following files yesterday to your site for the above application. Please also see Tom's response below to the query regarding peak transmit power. Please let me know if everything is acceptable. I also uploaded an application for Internet Telemetry yesterday and it is quite urgent. Could you find out who is doing the review for me? Not sure if it will be you or Tim. Many Thanks, have a good day Denise ) Peak transmit power is typically a conducted measurement. The FCC accepts two methods 1) use a peak power meter - 2) Use an analyzer with an RBW greater than emission bandwidth. Use a reduced video filter e.g VBW=emission bandwidth/30 (video filter). no video averaging is allowed. The test report has not clearly defined how this measurement was made. Please provide an expanation of how peak transmit power was made. [Tom Tidwell] The standard allows measurement with a RBW less than the emission bandwidth but requires that the emission be integrated over the entire bandwidth. The emission was measured using the channel power measurement function of the spectrum analyzer which integrates the total power over the 26 dB emission bandwidth. This arrives at the true peak rf power output as measured using an instrument calibrated in terms of equivalent RMS voltage as per the standard.
Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:11.30(dBm) Maximum peak output power at antenna input terminal:13.48962883(mW) Antenna gain(typical):18(dBi) Maximum antenna gain:63.09573445 (numeric) Prediction distance:200(cm) Prediction frequency:2400(MHz) MPE limit for uncontrolled exposure at prediction frequency:1 (mW/cm^2) Power density at prediction frequency:0.001693(mW/cm^2) Maximum allowable antenna gain:45.71269855(dBi) 8.3cm Minimum separation distance w/internal 18dBi antenna: 2 4R PG S π = G = power gain of the antenna in the direction of interest relative to an isotropic radiator (numeric) (mW/cm^2) (mW/cm^2)
Nemko Test Report: 1L0715RUS1 Applicant: Raze Technologies 2450 East Plano Parkway Suite 188 Plano, Texas 75074 Equipment Under Test: SkyFire TM Subscriber S-IAD (E.U.T.) In Accordance With: FCC Part 15, Subpart E Unlicensed National Information Infrastructure(UNII) Devices Tested By: Nemko Dallas Inc. 802 North Kealy Lewisville, Texas 75057 Authorized By: Tom Tidwell, Wireless Group Manager Date: 5/15/02 Total Number of Pages: 30 Nemko Dallas FCC PART 15, SUBPART E UNLICENSED NATIONAL INFORMATION INFRASTRUCTURE DEVICES EQUIPMENT: SkyFire TM Subscriber S-IAD PROJECT NO.1L0715RUS1 Table of Contents Section 1. Summary Of Test Results............................................................................................3 Section 2. General Equipment Specification................................................................................5 Section 3 Emission Bandwidth.................................................................................................... 7 Section 4. Peak Transmit Power................................................................................................... 10 Section 5. Peak Spectral Density..................................................................................................11 Section 6. Peak to Average Ratio................................................................................................. 14 Section 7 Spurious Emissions Below 1 GHz................................................................................17 Section 8 Spurious Emissions Above 1 GHz................................................................................21 Section 9 Powerline Conducted Emissions...................................................................................24 Section 10 Test Equipment List......................................................................................................27 ANNEX A TEST DIAGRAMS...............................................................................................................28 Page 2 of 30 Nemko Dallas FCC PART 15, SUBPART E UNLICENSED NATIONAL INFORMATION INFRASTRUCTURE DEVICES EQUIPMENT: SkyFire TM Subscriber S-IAD PROJECT NO.1L0715RUS1 Section 1. Summary Of Test Results Manufacturer: Raze Technologies Model No.: SkyFire TM Subscriber S-IAD Serial No.: None General: All measurements are traceable to national standards. These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with FCC Part 15, Subpart C for low power devices. All tests were conducted using measurement procedure ANSI C63.4-1992. Radiated Emissions were made on an open area test site. New Submission Production Unit Class II Permissive Change Pre-Production Unit THIS TEST REPORT RELATES ONLY TO THE ITEM(S) TESTED. THE FOLLOWING DEVIATIONS FROM, ADDITIONS TO, OR EXCLUSIONS FROM THE TEST SPECIFICATIONS HAVE BEEN MADE. See “ Summary of Test Data”. NVLAP LAB CODE: 100351-0 Nemko Dallas Inc. authorizes the above named company to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Dallas Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. This report applies only to the items tested. Page 3 of 30 Nemko Dallas FCC PART 15, SUBPART E UNLICENSED NATIONAL INFORMATION INFRASTRUCTURE DEVICES EQUIPMENT: SkyFire TM Subscriber S-IAD PROJECT NO.1L0715RUS1 Summary Of Test Data NAME OF TEST PARA. NO. SPEC. RESULT Emission Bandwidth 15.403(c) -26 dBc Complies Peak Transmit Power 15.407(a)(3) Lesser of 1 Watt or 17 dBm + 10logB Complies Peak Power Spectral Density 15.407(a)(3) 17 dBm Complies Ratio of the peak excursion of the modulation to the peak transmit power 15.407(a)(6) 13 dB Complies Spurious Emissions below 1 GHz 15.407(b)(5)15.209 Complies Spurious Emissions above 1 GHz 15.407(b)(3) -17 dBm/MHZ > 10 MHz from bandedge -27 dBm/MHz < 10 MHz from bandedge Complies Footnotes: Page 4 of 30 Nemko Dallas FCC PART 15, SUBPART E UNLICENSED NATIONAL INFORMATION INFRASTRUCTURE DEVICES EQUIPMENT: SkyFire TM Subscriber S-IAD PROJECT NO.1L0715RUS1 Section 2. General Equipment Specification Frequency Range: 5.725-5.825 GHz Operating Frequency(ies) of Sample: 5.729 to 5.821 GHz Modulation: Digital Integral Antenna Yes No Note: This device is preassembled at the factory and professionally installed The manufacturer maintains control of the installation.. Page 5 of 30 Nemko Dallas FCC PART 15, SUBPART E UNLICENSED NATIONAL INFORMATION INFRASTRUCTURE DEVICES EQUIPMENT: SkyFire TM Subscriber S-IAD PROJECT NO.1L0715RUS1 Theory of Operation The RF portion of the unit is developed to transmit (TX) and receive (RX) wireless data from baseband to RF and RF to baseband using Time Division Duplexing (TDD). The duty cycle is 30% transmit and 70% receive when active. When there is no data to transmit the DC voltage to the transmit section is turned off and the receiver is turned on and listening to the basestation. The 26dB BW of the signal is 5.85MHz (channel BW). The RF frequency range that is used is 5726MHz – 5824MHz and since our channel BW is 5.85MHz and the RF step size is 1MHz the RF LO goes from 5249MHz – 5341MHz. The first IF is at 480MHz and the second IF is at 24MHz. System Diagram Page 6 of 30 Nemko Dallas FCC PART 15, SUBPART E UNLICENSED NATIONAL INFORMATION INFRASTRUCTURE DEVICES EQUIPMENT: SkyFire TM Subscriber S-IAD PROJECT NO.1L0715RUS1 Section 3 Emission Bandwidth NAME OF TEST: Emission Bandwidth PARA. NO.: 15.403(c) TESTED BY: David Light DATE: 4/18/2002 Minimum Standard: 15.403(c) Emission bandwidth. For purposes of this subpart the emission bandwidth shall be determined by measuring the width of the signal between two points, one below the carrier center frequency and one above the…
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802 N Kealy · Lewisville, Texas · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15E | 5.73 GHz - 5.83 GHz | 13.50 mW |

SkyFire� Remote Modem Data Transceiver
Equipment Class
NII - Unlicensed National Information Infrastructure TX