
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Copyright © 2004-2011 by InfiNet Wireless 1 Revision date: 9 December 2011 OS Version: v1.83 InfiNet Wireless R5000 Technical User Manual Copyright © 2004-2011 by InfiNet Wireless 2 Legal Rights © Copyright 2011 InfiNet Wireless. All rights reserved. The information contained in this document is originated by, proprietary, confidential and owned by InfiNet Wireless. No part of this document should be disclosed, reproduced or distributed without the express written permission of InfiNet Wireless Ltd. InfiNet Wireless Ltd. reserves the right to change the information contained in this document without prior notice. No part of this document may be considered as a part of any contract or warranty. Statement of Conditions The information contained in this manual is subject to change without notice. InfiNet Wireless Ltd. shall not be liable for errors contained herein or for incidental or consequential damages in connection with the furnishing, performance, or use of this manual or equipment supplied with it. Disclaimer The software is sold on an "AS IS" basis. InfiNet Wireless, its affiliates or its licensors make no warranties, whatsoever, whether express or implied, with respect to the software and the accompanying documentation. Infinet Wireless specifically disclaims all implied warranties of merchantability and fitness for a particular purpose and non-infringement with respect to the software. Units of product (including all the software) delivered to purchaser hereunder are not fault_ tolerant and are not designed, manufactured or intended for use or resale in applications where the failure, malfunction or inaccuracy of products carries a risk of death or bodily injury or severe physical or environmental damage (“high risk activities”). High risk activities may include, but are not limited to, use as part of on-line control systems in hazardous environments requiring fail-safe performance, such as in the operation of nuclear facilities, aircraft navigation or communication systems, air traffic control, life support machines, weapons systems or other applications representing a similar degree of potential hazard. Infinet wireless specifically disclaims any express or implied warranty of fitness for high risk activities. InfiNet Wireless hereby declares that R5000-Om, R5000-Mm, R5000-Sm and R5000-Lm are in compliance with the essential requirements and other relevant provisions of Directive 1995/5/EC. The declaration of conformity may be consulted at http://www.infinetwireless.com/products-technologies/type-approval-certificates/DoC_RTTE.pdf. Indication of the countries InfiNet Wireless equipment has no geographical limitations for selling and can be supplied to any country of the world. Limitation of Liability Infinet Wireless shall not be liable to the purchaser or to any third party, for any loss of profits, loss of use, interruption of business or for any indirect, special, incidental, punitive or consequential damages of any kind, whether arising under breach of contract, tort (including negligence), strict liability or otherwise and whether based on this agreement or otherwise, even if advised of the possibility of such damages. To the extent permitted by applicable law, in no event shall the liability for damages hereunder of Infinet Wireless or its employees or agents exceed the purchase price paid for the product by purchaser, nor shall the aggregate liability for damages to all parties regarding any product exceed the purchase price paid for that product by that party (except in the case of a breach of a party’s confidentiality obligations). International Regulatory Information This equipment has been tested and found to comply with the limits for a Class B digital device Copyright © 2004-2011 by InfiNet Wireless 3 Hereby, InfiNet Wireless declares that this equipment is in compliance with the essential requirements and other relevant provisions of Directive 1999/5/EC. This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. Important statements Changes or modifications not expressly approved by the party responsible for compliance could void the user‘s authority to operate the equipment. This equipment complies with the FCC RF radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated outdoor with a minimum distance of 2 meters between the radiator and the human body. Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. R5000-Omx model has been designed to operate with the antennas listed below having a maximum gain of 28 dBi. Antennas not included in this list or having a gain greater than specified above are strictly prohibited for use with this device. Antennas allowed to use are as follows: • Mars Antennas MA-WA56-DP25N – 23 dBi directional antenna (point-to-point operation only) • Mars Antennas MA-WA56-DP28 – 28 dBi directional antenna (point-to-point operation only) • Mars Antennas MA-WD56-DP16 – 16 dBi 90 deg sector antenna (point-to-multipoint operation) The required antenna impedance is 50 Ohms. This equipment must be professionally installed. The installer shall be responsible for verifying that the correct antenna is employed with the unit. InfiNet Wireless R5000 Technical User Manual Copyright © 2004-2011 by InfiNet Wireless i Table of contents I. GETTING STARTED ...................................................................................................…
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DesignatorCommentFootprintDescriptionVendorVendor P/N Place / No Place C10.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C20.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C30.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C50.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C70.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C80.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C90.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C100.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C110.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C12100 50V0402Chip CapacitorPhycompCC0402KRX7R9BB101 C14100 50V0402Chip CapacitorPhycompCC0402KRX7R9BB101 C160.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C170.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C180.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C190.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C200.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C210.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C220.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C230.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C241000 50V0402Chip CapacitorPhycompCC0402KRX7R9BB102 C251000 50V0402Chip CapacitorPhycompCC0402KRX7R9BB102 C260.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C270.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C280.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C290.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C300.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C310.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C321.0 10V0402Chip CapacitorPhycompCC0402KRX5R6BB105 C331.0 10V0402Chip CapacitorPhycompCC0402KRX5R6BB105 C341.0 10V0402Chip CapacitorPhycompCC0402KRX5R6BB105 C351.0 10V0402Chip CapacitorPhycompCC0402KRX5R6BB105 C360.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C370.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C380.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C390.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C400.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C410.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C420.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C430.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C440.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C450.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C4622.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C4722.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C480.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C490.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C500.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C510.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C520.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C530.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C540.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C550.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C560.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C570.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C580.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C590.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C600.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C610.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C620.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C630.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C640.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C650.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C660.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C670.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C680.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C690.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C700.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C7122.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C7222.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C7322.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C7422.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C750.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C760.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C770.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C780.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C790.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C800.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C810.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C820.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C830.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C840.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C850.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C860.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C870.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C880.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C890.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C900.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C9122.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C9222.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C9322.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C9422.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C950.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C960.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C970.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C980.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C990.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1000.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C1010.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1020.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C1030.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1040.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C1050.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1060.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1070.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C1080.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1090.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C1100.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1110.1 16V0402Chip CapacitorPhycompCC0402KRX7R7BB104 C1120.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C1130.01 50V0402Chip CapacitorPhycompCC0402KRX7R9BB103 C11422.0 6.3V0805Chip CapacitorPhycompCC0805KKX5R5BB226 C11522.0 6.3V0805Chip CapacitorPhycompCC0805KKX5…
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- 3 - MA-WD56-DP16IF !" #$%$& Frequency range 4.9-6.1 GHz GAIN, typ. 16 dBi VSWR, max. 1.7 : 1 Polarization Dual, Vertical & Horizontal 3 dB Beam-Width, H-Plane, typ. 90 3 dB Beam-Width, E-Plane, typ. 8 Side Lobes, min ETSI EN 302 085 V1.2.3 Cross Polarization, min. -15 dB Front to Back Ratio, min. -30 dB Port to Port Isolation, typ. -45 dB Input power, max 10 Watt Input Impedance 50 Ohm Lightning Protection DC Grounded Dimensions (HxWxD) 370 x 370 x 30 mm Weight 2 Kg. Connector 2 x SMA Right Angle Female Back Plane Aluminum protected through chemical passivation Radome UV Protected, Plastic Mount Studs Provision for InFinet Radio Operating Temperature Range - 55 C to + 65 C Vibration According to IEC 60721-3-4 Wind Load 200 km/h (survival) Flammability UL94 Water Proofing IP-67 Humidity ETS 300 019-1-4, EN 302 085 (annex A.1.1) Salt Fog According to IEC 68-2-11 Ice and Snow 25mm radial (survival) Service Life >10 years Specifications subject to change without notice
MA-WA56-DP25NIF 4.9-5.875 GHz Dual Polarized Antenna MA-WA56-DP25NIF Specifications: Electrical Frequency range 4.9 - 5.875 GHz GAIN. V-Pol: H-Pol: 24.5 ± 1 dBi 23.5± 1 dBi VSWR, max. 1.7 : 1 Polarization Linear, Vertical & Horizontal 3 dB Beam-Width, H-Plane, typ. 7° - 9° 3 dB Beam-Width, E-Plane, typ. 7°- 9° Side Lobes, min. ETSI TS3, TS4, TS5. Cross Polarization, min. - 16 dB Front to Back Ratio, min. ETSI TS3, TS4, TS5. Input power, max 5 Watt Input Impedance 50 Ohm Lightning Protection DC Grounded Mechanical Dimensions (HxWxD) 370 x 370 x 40 mm Connector 2 x Right Angle SMA Female Weight 2.1 Kg Mounting Studs Provision for Infinet Radio Radome UV Protected, Polycarbonate Back Plane Aluminum protected through chemical passivation Environmental Operating Temperature Range - 40°C to + 65°C Vibration According to IEC 60721-3-4 Wind Load 200 Km/h (Survival) Flammability UL94 Water Proofing IP-67 Humidity ETS 300 019-1-4,EN 302 085 (Annex A.1.1) Salt Fog According to IEC 68-2-11 Service Life >10 years
MA-WA56-DP28IF ! "#$ % $ &' Frequency Range 5.15 - 5.875 GHz 4.9 – 5.15 GHz 5.875 – 6.1 GHz GAIN, V-Pol: H-Pol: 29 ± 0.5 dBi 28.5 ± 0.5dBi 28.5 ± 0.5dBi 28± 0.5dBi 28.5 ± 0.5dBi 28± 1 dBi VSWR, max. 1.7 : 1 2 : 1 2 : 1 Polarization Dual Polarization V& H 3 dB Beam-Width, H-Plane, typ. 4.7 5.2 4.4 3 dB Beam-Width, E-Plane, typ. 4.7 5.2 4.4 Side Lobes, min. ETSI TS3 Cross Polarization, min. V-Pol: H-Pol: -23 dB -23 dB -26 dB -25 dB -23 dB -20 dB Front to Back Ratio, min. ETSI TS3 Port to Port Isolation, typ. - 30 dB Input power, max 5 Watt Input Impedance 50 Ohm Lightning Protection DC Grounded Dimensions (HxWxD) 600 x 600 x 22 mm Connector 2 x SMA Female Right Angle Weight 4.7 Kg Mounting Studs Provision for Infinet Radio Radome UV Protected, Polycarbonate Back Plane Aluminum protected through chemical passivation Operating Temperature Range - 55C to + 65C Vibration According to IEC 60721-3-4 Wind Load 200 Km/h (Survival) Flammability UL94 Water Proofing IP-67 Humidity ETS 300 019-1-4,EN 302 085 (Annex A.1.1) Salt Fog According to IEC 68-2-11 Specifications subject to change without notice
§ 15.247(i) Maximum Permissible Exposure RF Exposure Requirements: §1.1307(b)(1) and §1.1307(b)(2): Systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the Commission’s guidelines. RF Radiation Exposure Limit: §1.1310: As specified in this section, the Maximum Permissible Exposure (MPE) Limit shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in Sec. 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of Sec. 2.1093 of this chapter. MPE Limit Calculation: EUT’s operating frequencies @ 5740-5840 MHz; highest conducted power = 17.52dBm (peak) therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum antenna gain @ 5.8GHz = 23 dBi Equation from page 18 of OET 65, Edition 97-01 S = PG / 4R 2 or R = √PG / 4S where, S = Power Density (<1 mW/cm 2 ) P = Power Input to antenna (56.49mW) G = Antenna Gain (199.53 numeric) R = Radius (20cm) S = (56.49 * 199.53) / (4*3.14*20 2 ) = 2.244 mW/cm 2 R = ((56.49 * 199.53)/(4*3.14*1.0) 0.5 = 29.96 cm § 15.247(i) Maximum Permissible Exposure RF Exposure Requirements: §1.1307(b)(1) and §1.1307(b)(2): Systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the Commission’s guidelines. RF Radiation Exposure Limit: §1.1310: As specified in this section, the Maximum Permissible Exposure (MPE) Limit shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in Sec. 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of Sec. 2.1093 of this chapter. MPE Limit Calculation: EUT’s operating frequencies @ 5740-5840 MHz; highest conducted power = 16.01dBm (peak) therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum antenna gain @ 5.8GHz = 28 dBi Equation from page 18 of OET 65, Edition 97-01 S = PG / 4R 2 or R = √PG / 4S where, S = Power Density (1 mW/cm 2 ) P = Power Input to antenna (39.902mW) G = Antenna Gain (630.96 numeric) R = Radius (20cm) S = (39.902*630.96) / (4*3.14*20 2 ) = 5.011 mW/cm 2 R = (39.902*630.96/ 4*3.14*1.0) 1/2 = 44.772 cm § 15.247(i) Maximum Permissible Exposure RF Exposure Requirements: §1.1307(b)(1) and §1.1307(b)(2): Systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the Commission’s guidelines. RF Radiation Exposure Limit: §1.1310: As specified in this section, the Maximum Permissible Exposure (MPE) Limit shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in Sec. 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of Sec. 2.1093 of this chapter. MPE Limit Calculation: EUT’s operating frequencies @ 5740-5840 MHz; highest conducted power = 19.34dBm (peak) therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum antenna gain @ 5.8GHz = 16 dBi Equation from page 18 of OET 65, Edition 97-01 S = PG / 4R 2 or R = √PG / 4S where, S = Power Density (1 mW/cm 2 ) P = Power Input to antenna (85.901mW) G = Antenna Gain (39.81 numeric) R = Radius (20cm) S = (85.901 * 39.81) / (4*3.14*20 2 ) = 0.681 mW/cm 2
MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 914 WEST PATAPSCO AVENUE ! BALTIMORE, MARYLAND 21230-3432 ! PHONE (410) 354-3300 ! FAX (410) 354-3313 33439 WESTERN AVENUE ● UNION CITY, CALIFORNIA 94587 ● PHONE (510) 489-6300 ● FAX (510) 489-6372 3162 BELICK STREET ● SANTA CLARA, CALIFORNIA 95054 ● PHONE (408 748-3585 ● FAX (510) 489-6372 The Nation’s First Licensed Nationally Recognized Testing Laboratory March 6, 2012 Infinet Malta Ltd. 222 Merchants Street Valletta, VLT1170 Dear Andrey Koynov, Enclosed is the EMC Wireless test report for compliance testing of the Infinet Malta Ltd., R5000- Omx/58.300.2x200 as tested to the requirements of Title 47 of the CFR, Ch. 1 (10-1-06 ed.), Part 15, Subpart B, ICES-003, Issue 4 February 2004 for a Class A Digital Device and FCC Part 15 Subpart C, RSS-210, Issue 8, Dec. 2010 for Intentional Radiators. Thank you for using the services of MET Laboratories, Inc. If you have any questions regarding these results or if MET can be of further service to you, please feel free to contact me. Sincerely yours, MET LABORATORIES, INC. Jennifer Warnell Documentation Department Reference: (\Infinet Malta Ltd.\EMC33655-FCC247) Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. Electromagnetic Compatibility Infinet Malta Ltd. Cover Page R5000-Omx/58.300.2x200 CFR Title 47, Part 15B, 15.247; RSS-210, Issue 8, Dec. 2010 & ICES-003 MET Report: EMC33655-FCC247 © 2012, MET Laboratories, Inc. Page ii of xv DOC-EMC702 6/18/2009 Electromagnetic Compatibility Criteria Test Report for the Infinet Malta Ltd. R5000-Omx/58.300.2x200 Tested under the FCC Certification Rules contained in Title 47 of the CFR, Parts 15 Subpart B & ICES-003 for Class A Digital Devices & 15.247 Subpart C & RSS-210, Issue 8, Dec. 2010 for Intentional Radiators MET Report: EMC33655-FCC247 March 6, 2012 Prepared For: Infinet Malta Ltd. 222 Merchants Street Valletta, VLT1170 Prepared By: MET Laboratories, Inc. 914 W. Patapsco Ave. Baltimore, MD 21230 Electromagnetic Compatibility Infinet Malta Ltd. Cover Page R5000-Omx/58.300.2x200 CFR Title 47, Part 15B, 15.247; RSS-210, Issue 8, Dec. 2010 & ICES-003 MET Report: EMC33655-FCC247 © 2012, MET Laboratories, Inc. Page iii of xv DOC-EMC702 6/18/2009 Electromagnetic Compatibility Criteria Test Report for the Infinet Malta Ltd. R5000-Omx/58.300.2x200 Tested under the FCC Certification Rules contained in Title 47 of the CFR, Parts 15 Subpart B & ICES-003 for Class A Digital Devices & 15.247 Subpart C & RSS-210, Issue 8, Dec. 2010 for Intentional Radiators Dusmantha Tennakoon, Project Engineer Jennifer Warnell Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of the FCC Rules Parts 15B, 15.247 and Industry Canada standards ICES-003, Issue 4 February 2004, RSS-210, Issue 8, Dec. 2010 under normal use and maintenance. Shawn McMillen, Wireless Manager, Electromagnetic Compatibility Lab Electromagnetic Compatibility Infinet Malta Ltd. Report Status R5000-Omx/58.300.2x200 CFR Title 47, Part 15B, 15.247; RSS-210, Issue 8, Dec. 2010 & ICES-003 MET Report: EMC33655-FCC247 © 2012, MET Laboratories, Inc. Page iv of xv DOC-EMC702 6/18/2009 Report Status Sheet Revision Report Date Reason for Revision March 6, 2012 Initial Issue. Electromagnetic Compatibility Infinet Malta Ltd. Table of Contents R5000-Omx/58.300.2x200 CFR Title 47, Part 15B, 15.247; RSS-210, Issue 8, Dec. 2010 & ICES-003 MET Report: EMC33655-FCC247 © 2012, MET Laboratories, Inc. Page v of xv DOC-EMC702 6/18/2009 Table of Contents I. Executive Summary .................................................................................................................................................1 A. Purpose of Test ...................................................................................................................................................2 B. Executive Summary ............................................................................................................................................2 II. Equipment Configuration .......................................................................................................................................3 A. Overview .............................................................................................................................................................4 B. References ...........................................................................................................................................................5 C. Test Site ..............................................................................................................................................................5 D. Description of Test Sample .................................................................................................................................6 E. Equipment Configuration ....................................................................................................................................8 F. Support Equipment .............................................................................................................................................8 G. Ports and Cabling Information ............................................................................................................................8 H. Mode of Operation .........................................................................…
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Photograph 1. Conducted Emissions, Test Setup Photograph 2. Radiated Emission, Test Setup Photograph 3. Conducted Emissions, 15.207(a), Test Setup Photograph 4. Radiated Spurious Emissions, Test Setup
222 Merchants Street · Valletta · Malta
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 5.75 GHz - 5.83 GHz | 66.00 mW |

High Performance Broadband Wireless System
Equipment Class
DTS - Digital Transmission System
High Performance Broadband Wireless System
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
High Performance Broadband Wireless System
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
High Performance Broadband Wireless System
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
High Performance Broadband Wireless System
Equipment Class
DTS - Digital Transmission System