
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
WaveIP Ltd. GigAccess™ OFDM 5.8 Page 2 of 41 G G i i g g A A c c c c e e s s s s ™ ™ O O F F D D M M 5 5 . . 8 8 I I n n s s t t a a l l l l a a t t i i o o n n a a n n d d O O p p e e r r a a t t i i o o n n I I n n s s t t r r u u c c t t i i o o n n s s January 2006 WaveIP Ltd. P.O. Box 336 Yokneam 20692, Israel Tel: 972-4-9090800 Fax: 972-4-9592614 [email protected] The information contained in this document is of commercial value, proprietary to WaveIP. It is conveyed to the recipient solely for the purpose of evaluation. Reproduction of this document, disclosure of its contents or any other use of the information herein is strictly forbidden unless expressly authorized in writing by WaveIP. WaveIP Ltd. GigAccess™ OFDM 5.8 Page 3 of 41 T T A A B B L L E E O O F F C C O O N N T T E E N N T T S S 1. INTRODUCTION..................................................................................... 5 1.1 GENERAL.................................................................................................5 1.2 GIGACCESS™ OFDM SYSTEM OVERVIEW..........................................................5 2. INSTALLATION ...................................................................................... 8 2.1 PACKING LIST...........................................................................................8 2.2 ADDITIONAL PART LIST – REQUIRED FOR INSTALLATION.........................................8 2.3 INSTALLATION OVERVIEW.............................................................................9 2.4 AU/SU OUTDOOR INSTALLATION..................................................................10 2.4.1 Site Selection ....................................................................................10 2.4.2 Mounting and Wiring ..........................................................................12 2.4.3 Antennas ..........................................................................................13 2.4.4 Sealing.............................................................................................15 2.4.5 Cables ..............................................................................................16 2.4.6 Indoor Outlet Installation....................................................................18 2.4.7 Indoor HUB .......................................................................................18 2.4.8 Grounding.........................................................................................19 2.5 CONSECUTIVE CONNECTION.........................................................................20 2.6 SYNCHRONIZATION...................................................................................20 2.7 SUBSCRIBER PC SETUP..............................................................................21 3. GIGACCESS™ OFDM 5.8 TECHNICAL SPECIFICATIONS ........................ 22 3.1 GENERAL SPECIFICATION............................................................................22 3.2 BASE STATION - ACCESS UNIT (OUTDOOR) ......................................................22 3.3 OUTDOOR SUBSCRIBER UNIT (HSU/OSU).......................................................23 3.4 RADIO SPECIFICATIONS..............................................................................23 3.5 MANAGEMENT NMS ..................................................................................24 4. APPENDIX A – WAVEIP APPROVED ANTENNAS ................................... 25 5. APPENDIX B – RF LINK BUDGET CALCULATION................................... 26 6. APPENDIX C – RF POWER AND DISTANCE VERSUS ANTENNA GAIN .... 28 7. APPENDIX D – RF HAZARD DISTANCE CALCULATION .......................... 29 8. APPENDIX E – RF CHANNEL LIST......................................................... 31 9. APPENDIX F – OUTDOOR CABLES SCHEME .......................................... 32 10. APPENDIX G - USING THE UNIT MANAGER TOOL ............................... 33 10.1 GENERAL............................................................................................33 10.2 ACTIVATING THE TOOL............................................................................33 10.3 MENU COMMANDS.................................................................................34 10.3.1 Selecting adapter.............................................................................34 10.4 TOOLBAR COMMANDS.............................................................................34 10.4.1 Start Session (S) .............................................................................34 10.4.2 End Session (E) ...............................................................................35 10.4.3 Refresh Unit Parameters (!)...............................................................35 10.4.4 Auto Reconnect ({}) ........................................................................35 10.4.5 Start Logger (EL) .............................................................................35 10.4.6 Stop Logger (DL) .............................................................................35 10.4.7 Clear Log (X)...................................................................................35 10.4.8 Log to File.......................................................................................35 10.4.9 View Log.........................................................................................36 WaveIP Ltd. GigAccess™ OFDM 5.8 Page 4 of 41 10.4.10 Reset Text (RT) .............................................................................36 10.4.11 Reset Unit (RU)..............................................................................36 10.5 INSTALLATION WINDOW..........................................................................36 10.5.1 Advanced Window............................................................................37 10.6 SOFTWARE WINDOW...............................................................................39 10.6.1 Firmware Window ........................…
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CONFIDENTIALITY REQUEST FOR FCCID:QQ2-GAOFDM58 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: This letter is to comply with Section 0.457(d)(2)(i) pertaining to confidential material. WaveIP Ltd. would like the following documents regarding this submission for FCC ID: QQ2-GAOFDM58 to be kept confidential. 1. Pages 1 of 5 of document GA OFDM 58_Radio_Scheme 2. Pages 1 of document GA OFDM 58_Clock_Tree 3. Pages 1 of document GA OFDM 58_Power_Tree. The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. Sincerely, Company Name: WaveIP Ltd. Technical Contact: Michael Dayan Phone: 972-4-9937333 ext. 121 Fax: 972-4-9592614 Email: [email protected] Address: 1 Tavor Building P.O.B 335 Yokneam 20692, Israel 1/1
Internal External Picture for GAOFDM58 3/3
Lable ARTWORK FCCID:QQ2-GAOFDM58 LOCATION OF LABLE ON TEST ITEM 1/1
Internal External Picture for GAOFDM58 FCC ID: QQ2-GAOFDM58 Subject: Internal & External pictures for GigAccess 58 FCC ID:QQ2-GAOFDM58 1/3 Internal External Picture for GAOFDM58 2/3
Antenna Data Sheet MT-484033/NH Page 1 of 2 MT-484033/NH 5.15-5.875 GHz 16.5dBi Base Station Antenna Specifications MTI PART NUMBER MT – 484033/NH ELECTRICAL FREQUENCY RANGE 5.15-5.875 GHz GAIN 16.5 dBi (min) VSWR 1.7 : 1 (max) 13 dBi AZIMUTH BEAMWIDTH 60° ± 4° 13.5 dBi AZIMUTH BEAMWIDTH 57° ± 4° POLARIZATION Horizontal 3 dB ELEVATION BEAMWIDTH 11° (typ) AZIMUTH SIDELOBES LEVEL ETSI EN 302-085 V1.1.2 (2001-02) CS1-CS3 -25 dB @ ± 90° ELEVATION SIDELOBES LEVEL ETSI EN 302-085 V1.1.2 (2001-02) CS1-CS3 -12 dB (max) CROSS POLARIZATION ETSI EN 302-085 V1.1.2 (2001-02) TS1-TS3 -23 dB (max) F/B RATIO ETSI EN 302-085 V1.1.2 (2001-02) TS1-TS3 -30 dB (max) INPUT IMPEDANCE 50 (ohm) INPUT POWER 6W (max) LIGHTNING PROTECTION DC Grounded MECHANICAL DIMENSIONS (LxWxD) 350x150X30mm (max) WEIGHT 1.5 Kg (max) CONNECTOR Two N-Type female RADOME Plastic BASE PLATE Aluminum with chemical conversion coating OUTLINE DRAWING See page 2 MOUNTING KIT MT-120019 ENVIRONMENTAL TEST STANDARD DURATION TEMPERTURE NOTES LOW TEMPERATURE IEC 68-2-1 72 h -45°C - HIGH TEMPERATURE IEC 68-2-2 72 h +70°C - TEMP. CYCLING IEC 68-2-14 1 h -45°C +70°C 3 Cycles VIBRATION IEC 60721-3-4 30 min/axis - Random4M3 SHOCK MECHANICAL IEC 60721-3-4 - - 4M3 HUMIDITY ETSI EN300-2-4 T4.1E 144 h - 95% WATER TIGHTNESS IEC 529 - - IP67 SOLAR RADIATION ASTM G53 1000 h - - FLAMMABILITY UL 94 - - Class HB SALT SPRAY IEC 68-2-11 Ka 500 h - - ICE AND SNOW - - - 25mm Radial WIND SPEED SURVIVAL OPERATION - - - - 220 Km/h 160 Km/h Antenna Data Sheet MT-484033/NH Page 2 of 2 MTI group is certified according to ISO 9001 and ISO 14001. WAIVER! While the information contained in this document has been carefully compiled to the best of our present knowledge, it is not intended as presentation or warranty of any kind on our part regarding the fitness of the products concerned for any particular use or purpose and neither shall any statement contained herein be construed as a recommendation to infringe any industrial property rights or as a license to use any such rights. The fitness of each product for any particular purpose must be checked beforehand with our specialists. MTI Wireless Edge Ltd. 11 Hamelacha St. Afek Industrial Park Rosh Ha'ayin 48091, Israel Tel: +972-3-902-5050 Fax: +972-3-902-5051 www.mtiwe.com Document No: Issued: MT-484033/NH Uncontrolled Copy MT-484033/NH 5.15-5.875 GHz 16.5dBi Base Station Antenna Azimuth Radiation Pattern Midband Freq. 5.35 GHz Elevation Radiation Pattern Midband Freq. 5.35 GHz Dimensions [mm] Existing Antenna Versions MT-484033/NH With N – Type Female connector & DC grounding
Antenna Data Sheet MT-484033/NV Page 1 of 2 MT-484033/NV 5.15-5.875 GHz 16.5dBi Base Station Antenna Specifications MTI PART NUMBER MT – 484033/NV ELECTRICAL FREQUENCY RANGE 5.15-5.875 GHz GAIN 16 dBi (min) @ 5.15-5.35 GHz 16.5 dBi (min) @ 5.47-5.725 GHz 17 dBi (min) @ 5.725-5.875 GHz VSWR 1.7 : 1 (max) 13 dBi AZIMUTH BEAMWIDTH 60° ± 4° POLARIZATION Vertical ELEVATION BEAMWIDTH 11° (typ) AZIMUTH SIDELOBES LEVEL ETSI EN 302-085 V1.1.2 (2001-02) CS1-CS3 -25 dB @ ± 90° ELEVATION SIDELOBES LEVEL ETSI EN 302-085 V1.1.2 (2001-02) CS1-CS3 -16 dB (max) CROSS POLARIZATION ETSI EN 302-085 V1.1.2 (2001-02) TS1-TS3 -28 dB (max) F/B RATIO ETSI EN 302-085 V1.1.2 (2001-02) TS1-TS3 -35 dB (max) INPUT IMPEDANCE 50 (ohm) INPUT POWER 6W (max) LIGHTNING PROTECTION DC Grounded MECHANICAL DIMENSIONS (LxWxD) 350x150X30mm (max) WEIGHT 1.5 Kg (max) CONNECTOR Two N-Type female RADOME Plastic BASE PLATE Aluminum with chemical conversion coating OUTLINE DRAWING See page 2 MOUNTING KIT MT-120019 ENVIRONMENTAL TEST STANDARD DURATION TEMPERTURE NOTES LOW TEMPERATURE IEC 68-2-1 72 h -45°C - HIGH TEMPERATURE IEC 68-2-2 72 h +70°C - TEMP. CYCLING IEC 68-2-14 1 h -45°C +70°C 3 Cycles VIBRATION IEC 60721-3-4 30 min/axis - Random4M3 SHOCK MECHANICAL IEC 60721-3-4 - - 4M3 HUMIDITY ETSI EN300-2-4 T4.1E 144 h - 95% WATER TIGHTNESS IEC 529 - - IP67 SOLAR RADIATION ASTM G53 1000 h - - FLAMMABILITY UL 94 - - Class HB SALT SPRAY IEC 68-2-11 Ka 500 h - - ICE AND SNOW - - - 25mm Radial WIND SPEED SURVIVAL OPERATION - - - - 220 Km/h 160 Km/h Antenna Data Sheet MT-484033/NV Page 2 of 2 MTI group is certified according to ISO 9001 and ISO 14001. WAIVER! While the information contained in this document has been carefully compiled to the best of our present knowledge, it is not intended as presentation or warranty of any kind on our part regarding the fitness of the products concerned for any particular use or purpose and neither shall any statement contained herein be construed as a recommendation to infringe any industrial property rights or as a license to use any such rights. The fitness of each product for any particular purpose must be checked beforehand with our specialists. MTI Wireless Edge Ltd. 11 Hamelacha St. Afek Industrial Park Rosh Ha'ayin 48091, Israel Tel: +972-3-902-5050 Fax: +972-3-902-5051 www.mtiwe.com Document No: Issued: MT-484033/NV Uncontrolled Copy MT-484033/NV 5.15-5.875 GHz 16.5dBi Base Station Antenna Azimuth Radiation Pattern Midband Freq. 5.725 GHz Elevation Radiation Pattern Midband Freq. 5.7252 GHz Dimensions [mm] Existing Antenna Versions MT-484033/NV With N – Type Female connector & DC grounding
Antenna Data Sheet MT-485028/N Page 1 of 2 MT-485028/N 5.15-5.875 GHz 22dBi Subscriber Antenna Specifications MTI PART NUMBER MT – 485028/N ELECTRICAL FREQUENCY RANGE 5.15-5.875 GHz GAIN 21.5 dBi (min) @ 5.15-5.25 GHz 22 dBi (min) @ 5.25-5.875 VSWR 1.9 : 1 @ 5.15-5.25 GHz 1.7 : 1 @ 5.25-5.875 GHz 3 dB BEAMWIDTH AZIMUTH ELEVATION 9° (typ) 9° (typ) POLARIZATION Linear (Vertical or Horizontal) SIDELOBES LEVEL ETSI EN 302-085 V1.1.2 (2001-02) TS1-TS3 CROSS POLAR DISCRIMINATION -28 dB CROSS POLARIZATION ETSI EN 302-085 V1.1.2 (2001-02) TS1-TS3 F/B RATIO -35 dB (max) INPUT IMPEDANCE 50 (ohm) INPUT POWER 6W (max) LIGHTNING PROTECTION DC Grounded MECHANICAL DIMENSIONS (LxWxD) 305x305X15mm (max) WEIGHT 1.2 Kg (max) CONNECTOR N-Type Female RADOME Plastic BASE PLATE Aluminum with chemical conversion coating OUTLINE DRAWING See page 2 MOUNTING KIT MT-120018 ENVIRONMENTAL TEST STANDARD DURATION TEMPERTURE NOTES LOW TEMPERATURE IEC 68-2-1 72 h -45°C - HIGH TEMPERATURE IEC 68-2-2 72 h +70°C - TEMP. CYCLING IEC 68-2-14 1 h -45°C +70°C 3 Cycles VIBRATION IEC 60721-3-4 30 min/axis - Random4M3 SHOCK MECHANICAL IEC 60721-3-4 - - 4M3 HUMIDITY ETSI EN300-2-4 T4.1E 144 h - 95% WATER TIGHTNESS IEC 529 - - IP67 SOLAR RADIATION ASTM G53 1000 h - - FLAMMABILITY UL 94 - - Class HB SALT SPRAY IEC 68-2-11 Ka 500 h - - ICE AND SNOW - - - 25mm Radial WIND SPEED SURVIVAL OPERATION - - - - 220 Km/h 160 Km/h Antenna Data Sheet MT-485028/N Page 2 of 2 MTI group is certified according to ISO 9001 and ISO 14001. WAIVER! While the information contained in this document has been carefully compiled to the best of our present knowledge, it is not intended as presentation or warranty of any kind on our part regarding the fitness of the products concerned for any particular use or purpose and neither shall any statement contained herein be construed as a recommendation to infringe any industrial property rights or as a license to use any such rights. The fitness of each product for any particular purpose must be checked beforehand with our specialists. MTI Wireless Edge Ltd. 11 Hamelacha St. Afek Industrial Park Rosh Ha'ayin 48091, Israel Tel: +972-3-902-5050 Fax: +972-3-902-5051 www.mtiwe.com Document No: Issued: MT-485028/N Uncontrolled Copy MT-485028/N 5.15-5.875 GHz 22dBi Subscriber Antenna Azimuth Radiation Pattern Midband Freq. 5.47 GHz Elevation Radiation Pattern Midband Freq. 5.47 GHz Dimensions [mm] Existing Antenna Versions MT-485028/N With N – Type Female connector & DC grounding
GigAccess™ OFDM 5.8 September 2005 Page 1 of 1 G G i i g g A A c c c c e e s s s s ™ ™ O O F F D D M M 5 5 . . 8 8 S S y y s s t t e e m m O O v v e e r r v v i i e e w w GigAccess™ OFDM is a wireless point-to-point and point-to-multipoint broadband communication system. The basic subsystem is composed of a single sector, which consists of an Access Unit (AU) and up to 250 Subscriber Units (SU). Each sector is a stand-alone communication network operating on a star topology with a gateway to the WAN, which allows two-way communication between the SUs and the WAN via the AU. A Sector may be extended by sub sectors, which are consecutive to the SUs within the sector. GigAccess™ include a Base Controller (BC). The BC is a PC running GigAccess™ Network Management System (NMS) application that monitors and controls the AUs and their corresponding SUs. The NMS provides SNMP integration, thus connecting with already existing NMS that service providers might have. Its main purpose is to configure the AUs and SUs with SLA (Service Level Agreement). Once the AU is configured, the configuration is stored in the AU and the sector can run autonomously without the need of a BC (stand alone configuration). Ethernet Ethernet Managment Software Access uni t(AU) Wireless subscriber unit (SU) MAC 802.16 OFDM PHY MAC 802.16 802.16 Frames TCP/IP stack Web Server DHCP Server Nat Router OFDM PHY Network DB Packet Classifier Base Controller (BC) GigAccess Unit Manager SQL DB User Network Router WAN ISP Firewall Telephone Figure 1: GigAccess™ OFDM functional blocks GigAccess™ OFDM 5.8 September 2005 Page 2 of 2 The following figure depicts a general description of a typical sector in the GigAccess™ OFDM system. AU AU Switch/Router SU SU SU SU Base Controller (Option) WAN Figure 2: Typical sector in GigAccess™ OFDM System The sector uses a single radio channel frequency with a 20 MHz bandwidth, which carries up to 36 Mbps data throughput. The system is a frame-based system, meaning the time dimension is divided into small periods called frames. Each frame is divided into two parts: downstream part (traffic passing from the AU to the SUs) and upstream part (traffic passing from the SUs to the AU). The Time Domain Duplex (TDD) technique is utilized to divide the bandwidth periodically based on the frame size. The portion of the frame, which is allocated to the upstream traffic, is divided between the SUs in the time domain using TDMA (Time Division Multiplex Access) technique. All the divisions are done dynamically thus allowing the SUs to share the channel capacity in a very efficient way. Figure 3: GigAccess™ OFDM 5.8 Outdoor Unit GigAccess™ OFDM 5.8 September 2005 Page 3 of 3 GigAccess ™ OFDM MAC layer is based on IEEE 802.16 MAC standard with additional proprietary attributes, which allow for special features such as Consecutive AP ™ . GigAccess ™ OFDM network layer enables routing and QoS queuing of traffic based on classification of packets using information in layers 2, 3 & 4-7. In certain instances, QoS queuing can be done using packet information (priority defined by the management). GigAccess ™ OFDM leverages Orthogonal Frequency Division Multiplexing (OFDM) technology to deliver high data rates, high spectral efficiency in addition to immunity to interference and line of site boundaries via patent pending Consecutive AP ™ technology, delivering data burst rates of up to 36 Mbps. GigAccess ™ OFDM ensures always-on connectivity to full range of IP-based services, including fast Internet, High Quality VoIP and Video. GigAccess ™ provides an instant and independent infrastructure, which is immediately deployable (self installed) with low infrastructure construction and operating costs. In case of Non-Line-Of-Sight (NLOS) between the AU and the SU due to obstacles such as tall buildings or mountains, a consecutive sector may be used. In this scenario, the SU Ethernet output feed a consecutive AU, which is used as a router and transmits the input data over the obstacle as shown in figure below. AU SU SU Consecutive AU Building Up to 90m Ethernet + Power Cable Ethernet to local users Ethernet to local users Figure 4: Consecutive Sector principle
FCC ID: QQ2-GAOFDM58 Subject: Environmental evaluation and Exposure limit according to FCC CFR 47 §15.247(b)(5) and §1.1307, §1.1310 Limit for power density for general population /uncontrolled exposure is 1 mW/cm² (for 5837MHz) The Power density: P (mW/cm²)= P T /4π R² where Distance Calculation For Point To Point P T is the maximum transmitted power, which is equal to the transmitter output power 25.36 dBm plus the maximum antenna gain 22 dBi, the maximum equivalent isotropically radiated power EIRP is: P T = P R + antenna gain = 25.36 dBm + 22dBi = 47.36 dBm = 54450mW The minimum safe distance “R” where RF exposure does not exceed FCC permitted limit is 17.5 cm. R=sqrt (P T / 1 mW/cm² *4π)= sqrt (54450/12.56)= 65.84 cm For point to point system The actual Safety distance shall be Not less than 66 cm Distance Calculation For Point To Multipoint P T = P R + antenna gain = 14 dBm + 22dBi = 36 dBm = 3981mW R=sqrt (P T / 1 mW/cm² *4π)= sqrt (3981/12.56)= 17.8 cm For point to multipoint system The actual Safety distance shall be Not less than 20 cm 1/1
Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175 1 /96 REV ∆ Description Sheet Effected Date Drawn Checked A 09.02.06 D.Lanuel S.Cohen EMC Laboratory Manufactured by WaveIP Ltd. EMC Test Report According FCC Part 15 Requirements FEB 2006 Function/Title Name Signature Date Prepared b Test Engineer D.Lanuel 09.02.06 Checked by Test Engineer D.Lanuel 09.02.06 Approved by EMC Lab. Manager S.Cohen 09.02.06 Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175 2/96 Table of Contents Para Page 1 GENERAL INFORMATION........................................................................................................... 3 2 TEST SUMMARY AND SIGNATURES........................................................................................... 4 3 EUT DESCRIPTION..................................................................................................................... 5 4 OCCUPIED BANDWIDTH FOR DSSS SYSTEM ACCORDING TO 15.247(A) (2)........................... 6 5 MAXIMUM PEAK OUTPUT POWER TEST ACCORDING 15.247(B) (3)........................................ 8 6 OUT OF BAND CONDUCTED EMISSION TEST ACCORDING T0 15.247(C)............................... 11 7 RADIATED EMISSION IN RESTRICTED BANDS TEST ACCORDING 15.247(C), 15.205 AND 15.209 ........................................................................................................................................... 13 8 PEAK POWER SPECTRAL DENSITY OF DSSS ACCORDING 15.247D........................................ 16 9 UNINTENTIONAL RADIATED EMISSION TEST ACCORDING TO 15.109.................................. 18 10 CONDUCTED EMISSION TEST ACCORDING TO 15.207.15.107........................................... 20 11 PLOTS................................................................................................................................... 23 12 CORRECTION FACTORS....................................................................................................... 94 13 ABBREVIATIONS AND ACRONYMS...................................................................................... 96 Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175 3/96 1 GENERAL Information a. Description of equipment under test Equipment Under Test: Ga-ofdm-58 FCCID: QQ2-GAOFDM58 Manufacturer: WaveIP. Serial Numbers: 00-50C21CCf24 Mode of Operation: TX MODE Operating frequency: 5.725 – 5.850MHZ Year of Manufacture: 2005 b. Applicant Information: Applicant: WaveIP Ltd. Applicant Address TAVOR Building YOKNEAM Telephone: +972-4-9937333 FAX: +972-4-9592614 The testing was observed by: AMIT ARAZI Following applicant's personnel: AMIT ARAZI c. Test Performance: Date of reception for testing: 31.08.05 Dates of testing 31.08.05 – 08.01.06 Test Laboratory Location TADIRAN EMC LAB, Hashoftim 26 Holon 58102 ISRAEL Tel: 972-3-5574476 Fax: 972-3- 5575320 Applicable EMC Specification: Federal Communication Commission (FCC), Code of Federal Regulations 47, FCC Docket 89-103, Part 15: Radio Frequency Devices, Sections 15.109, 15.209 & 15.207, 15.205, 15.247. Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175 4 /96 2 Test Summary and Signatures. TADIRAN EMC Laboratory has completed testing of E.U.T in accordance with the requirements of the FCC 15.247 The E.U.T was found to comply with the requirements of the FCC Part 15.247 Regulations given below Test Description Specificatio n Referenc e Date of Testing Test Report Paragraph Compliance PASS/FAIL Occupied 6db bandwidth 15.247 (a) (2) 31/01/06 4 PASS Max peak output power 15.247 (b) (3) 31/01/06 5 PASS Out of band Conducted emission 15.247 (c) 31/01/06 6 PASS Spurious emission radiated In Restricted band 15.209 15.205(a ,c) 31/01/06 7 PASS Peak power spectral density 15.247 (d) 31/01/06 8 PASS Unintentional radiated emission 15.109 31/01/06 9 PASS Conducted emission 15.207 31/01/06 10 pass a. Test performed by: Mr. D. Lanuel Test Engineer b. Test Report prepared by: Mr. D. Lanuel Test Engineer c. Test Report Approved by: Mr. Samuel Cohen EMC Lab. Manager Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175 5 /96 3 EUT Description a. General Model Number(s): Ga-ofdm-58 Brief Description (Purpose of Device): GigAccess TM 58 is WaveIP’s wireless point-to-point and point-to-multipoint broadband communication system. The basic subsystem is composed of a single sector, which consists of an AU (Access Unit) and up to 128 SUs (Subscriber Units). Each sector is a stand-alone communication network operating on a star topology with a gateway to the WAN, which allows two-way communication between the SUs and the WAN via the AU. A Sector may be divided into sub sectors, which are consecutive to the SUs within the sector. b. E.U.T Test Configuration EUT test configuration is shown in figure bellow AC Power Source EUT Laptop Adapter Antenna c. E.U.T Mode of Operation description (1) Transmit 30dbm-5737MHz (2) Transmit 30dbm-5787MHz (3) Transmit 30dbm-5837MHz (4) Standby Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175 6 /96 4 Occupied Bandwidth for DSSS System According to 15.247(a) (2) E.U.T: Ga-ofdm-58 S/N: 050C21CCF24 Test Method: ANSI 63.4 Date: 31/01/06 Relative Humidity: 26% Ambient Temperature: 22c Air Pressure: 1047hpa Testing Engineer: D.Lanuel Date 07/02/06 a. Test Results Summary & Conclusions The E.U.T was found in compliance with OCCUPIED BANDWIDTH b. Limits of bandwidth The test unit shall meet the limits of Table 4.b Table 4.b Limits For Bandwidth Operating Frequency (MHz) Minimum allowed bandwidth 5725 - 5850 ≥500KHz for 6dbc c. Test Results Table 4.c Bandwidth Test Result Frequency (MHz) Min Bandwidth (MHz) Bandwidth Max Limit(KHz) Plot Results PASS/ FAIL 5737 16.5 Plot-1 PASS 5787 16.5 Plot-2 PASS 5837 16.2 ≥500KHz Plot-3 PASS d. Test Instrumentation and Equipment Table 4.d Test Instrumentation and Equipment Item Model Manufacturer Next Date Calibration Spectrum Analyzer 8593E HP 31/01/07 Broadband Antenna BTA-L FRANKONIA 10.04.06 20db attenuator 2525-200 ATM 18.03.06 Ga-ofdm-58 WaveIP EMI Test Report EMC/30020FC06175…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 5.74 GHz - 5.84 GHz | 334.00 mW |

Point-to-Point & Point-to-Multipoint broadband wireless bridge
Equipment Class
DTS - Digital Transmission System
Point-to-Point & Point-to-Multipoint broadband wireless bridge
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Point-to-Point & Point-to-Multipoint broadband wireless bridge
Equipment Class
DTS - Digital Transmission System
Outdoor Transmitter Unit
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Indoor Transmitter Unit
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter