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H6M-SB800In-Hancer Plus Bi-Directional Amplifier

Powerwave Technologies Inc.
In-Hancer Plus Bi-Directional Amplifier - FCC ID H6M-SB800 - Powerwave Technologies Inc.
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Oct 23, 2003
Application Purpose
Original Equipment
Date of Application
Oct 23, 2003
Equipment Note
In-Hancer Plus Bi-Directional Amplifier
Frequency Range
928.00000000 - 941.00000000
Company
Powerwave Technologies Inc.
Country
United States

Documents & Files

Select a file to view

Users Manual

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Cover Letter(s)

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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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Test Report

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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

In-Hancer Plus Bi-Directional Amplifier User Manual Installation, Operation And Maintenance KAVAL WIRELESS TECHNOLOGIES 60 Gough Road Markham, Ontario, L3R8X7 Telephone: (888) 86-KAVAL Web: www.kaval.com E-mail: [email protected] Document #DCM000000105, Rev.11 October 14, 2003 In-Hancer Plus BDA z USER MANUAL DCM000000105 P P R R O O P P R R I I E E T T A A R R Y Y S S T T A A T T E E M M E E N N T T Β© 2000 KAVAL WIRELESS TECHNOLOGIES All rights reserved. No part of this publication, or any software included with it may be reproduced, stored in a retrieval system, or transmitted in any form or by any means, including photocopying, electronic, mechanical, recording or otherwise, without the prior written permission of the copyright holder. This document contains proprietary information of KAVAL WIRELESS TECHNOLOGIES The contents are confidential and any disclosure to persons other than the officers, employees, agents or subcontractors of the owner or licensee of this document, without the prior written consent of KAVAL WIRELESS TECHNOLOGIES, is strictly prohibited. KAVAL WIRELESS TECHNOLOGIES provides this document as is, without any warranty of any kind either expressed or implied including, but not limited to, the implied warranties of merchantability and fitness of a particular purpose. KAVAL WIRELESS TECHNOLOGIES may make changes or improvements in the equipment, software, or specifications described in this document at any time and without notice. These changes will be incorporated in new releases of this document. This document may contain technical inaccuracies or typographical errors. KAVAL WIRELESS TECHNOLOGIES waives responsibility for any labour, materials, or costs incurred by any person or party as a result of using this document. KAVAL WIRELESS TECHNOLOGIES, and any of its affiliates shall not be liable for any damages (including, but not limited to, consequential, indirect or incidental, special damages or loss of profits or date) even if they were foreseeable and KAVAL WIRELESS TECHNOLOGIES has been informed of their potential occurrence, arising out of or in connection with this document or its use. T T R R A A D D E E M M A A R R K K N N O O T T I I C C E E This manual makes reference to trademarks that are the property of other companies. References are used only to refer to the products or services of the trademark owners. In-Hancer Plus is a trademark of KAVAL WIRELESS TECHNOLOGIES Printed: 2003-10-14 09:37:26 Revision Date: 10/14/03: ii In-Hancer Plus BDA z USER MANUAL DCM000000105 TABLE OF CONTENTS OVERVIEW.............................................................4 Introduction.......................................................4 Line Amplifier BDA's.........................................4 Off-Air Operation BDA's...................................5 Modular Construction.......................................6 Theory Of Operation.........................................6 STANDARD MODELS...............................................7 FILTER KITS...........................................................8 ACCESSORIES........................................................9 ACCESSORIES FOR STAINLESS-STEEL WEATHER- R ESISTANT ENCLOSURES.....................................10 Data Connectors & Cables.............................10 AC Power Accessories...................................11 Accessory Installation.....................................12 FIBER OPTIC OPTIONS..........................................13 INSTALLATION.......................................................14 In-Hancer Plus BDA Enclosures....................14 Un-Packaging.................................................14 Mounting the In-Hancer Plus BDA..................15 Connections....................................................17 RF DECK CONNECTIONS......................................18 BATTERY BACKUP................................................20 IN-HANCER PLUS BDA SPECIFICATIONS................21 CARRIER DE-RATING............................................22 INDICATORS.........................................................23 CONFIGURATION...................................................24 ANTENNA INSTALLATION........................................25 FCC INFORMATION TO USERS..............................26 MAINTENANCE & SAFETY......................................27 STANDARD WARRANTY.........................................27 RETURN & REPAIR...............................................27 PARTS & ACCESSORIES........................................27 Printed: 2003-10-14 09:37:26 Revision Date: 10/14/03: iii In-Hancer Plus BDA z USER MANUAL Introduction Overview The In-Hancer Plus family is a modular Bi-Directional Amplifier product. Bi- Directional Amplifiers (BDA’s) are radio frequency amplifiers that amplify signals in two directions. There are two basic BDA Applications; "Line Amplifiers" and β€œOff- Air”. Line Amplifiers are low gain (40 dB typical), while Off-Air are high gain (80 dB typical). The In-Hancer Plus does NOT have separate models for these two applications, but rather uses non volatile memory and software settings for gain. Line Amplifier BDA's An In-building RF distribution system takes on one of several forms including, but limited to, radiating cable, distributed tapped radiators, or high power repeater antennas. For an in-building RF distribution system that requires some gain to compensate for the system loss, Line Amplifier BDA's are best for the job. Line Amplifiers provide amplification of RF signals to recover signal loss contributed by radiating cable and other system components. The Figure below shows an example of a Tunnel RF Distribution System using Line Amplifiers. The system consists of Line Amplifiers strategically inserted between radiating cables. As the RF signal travels along the radiating cable, it loses signal strength. Line Amplifiers compensate for the RF loss by amplifying the signal back to the desired signal strength before sending i…

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Cover Letter(s)

z Page 1 60 Gough Rd., Markham, Ontario, L3R8X7 www.kaval.com, 905-940-3860, 905-946-3003 FAX September 2, 2003 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Rd. Columbia, MD, 21046, USA Subject: CONFIDENTIALTY REQUEST Dear Sir or Madam; Kaval Wireless Technologies respectfully requests confidentiality of certain materials provided with the submission of the SB800 under FCC ID H6M-SB800 in accordance with FCC Regulations 0.459. The confidentiality request applies to the schematic diagrams, SCH000000065 and SCH000000045 , contained in Exhibit 2. The SB800 has been developed at considerable effort and expense by Kaval Wireless Technologies. These items are considered as Trade Secrets and therefore public access to the proprietary material could possibly result in duplication of equipment that could severely damage the company’s business advantage. I appreciate your assistance in this manner. Yours sincerely, Name: Alan Aslett, P.Eng. Signature: _________________________________ Title: Director of Engineering - Product Development Date: September 2, 2003

External Photos

Annex 2 – External Photographs of The EUT Photo # 1 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 Annex 2 – External Photographs of The EUT Photo # 2 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800

ID Label/Location Info

Kaval Wireless Technologies LAB000000041, Rev.1 September 2, 2003 Model SB FCC ID H6M-SB800 Industry Canada IC:1541A-SB800 Serial # Freq Range Power Volts Hz VA This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference and (2) this device must accept any interference received, including interference that may cause undesired operation. Manufactured in Canada by KAVAL WIRELESS TECHNOLOGIES To be attached to the inside of the door of the BDA.

ID Label/Location Info

Photo # 1 F CC I D: H6 M-SB800 IC: 154 1A-SB 800

Internal Photos

Annex 3 – Internal Photographs of The EUT Photo # 1 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 1 Annex 3 – Internal Photographs of The EUT Photo # 2 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 2 Annex 3 – Internal Photographs of The EUT Photo # 3 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 3 Annex 3 – Internal Photographs of The EUT Photo # 4 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 4 Annex 3 – Internal Photographs of The EUT Photo # 5 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 5 Annex 3 – Internal Photographs of The EUT Photo # 6 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 6 Annex 3 – Internal Photographs of The EUT Photo # 7 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 7 Annex 3 – Internal Photographs of The EUT Photo # 8 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 8 Annex 3 – Internal Photographs of The EUT Photo # 9 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 9 Annex 3 – Internal Photographs of The EUT Photo # 10 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 10 Annex 3 – Internal Photographs of The EUT Photo # 11 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 11 Annex 3 – Internal Photographs of The EUT Photo # 12 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 12 Annex 3 – Internal Photographs of The EUT Photo # 13 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 13 Annex 3 – Internal Photographs of The EUT Photo # 14 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 14 Annex 3 – Internal Photographs of The EUT Photo # 15 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 15 Annex 3 – Internal Photographs of The EUT Photo # 16 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 16 Annex 3 – Internal Photographs of The EUT Photo # 17 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 17 Annex 3 – Internal Photographs of The EUT Photo # 18 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 18 Annex 3 – Internal Photographs of The EUT Photo # 19 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 19 Annex 3 – Internal Photographs of The EUT Photo # 20 In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 IC: 1541A-SB800 20

Operational Description

In-Hancer Plus Bi-Directional Amplifier User Manual Installation, Operation And Maintenance KAVAL WIRELESS TECHNOLOGIES 60 Gough Road Markham, Ontario, L3R8X7 Telephone: (888) 86-KAVAL Web: www.kaval.com E-mail: [email protected] Document #DCM000000105, Rev.9 September 2, 2003 In-Hancer Plus BDA z USER MANUAL DCM000000105 Printed: 2003-09-02 12:04:56 Revision Date: 9/2/03: ii P P R R O O P P R R I I E E T T A A R R Y Y S S T T A A T T E E M M E E N N T T Β© 2000 KAVAL WIRELESS TECHNOLOGIES All rights reserved. No part of this publication, or any software included with it may be reproduced, stored in a retrieval system, or transmitted in any form or by any means, including photocopying, electronic, mechanical, recording or otherwise, without the prior written permission of the copyright holder. This document contains proprietary information of KAVAL WIRELESS TECHNOLOGIES The contents are confidential and any disclosure to persons other than the officers, employees, agents or subcontractors of the owner or licensee of this document, without the prior written consent of KAVAL WIRELESS TECHNOLOGIES, is strictly prohibited. KAVAL WIRELESS TECHNOLOGIES provides this document as is, without any warranty of any kind either expressed or implied including, but not limited to, the implied warranties of merchantability and fitness of a particular purpose. KAVAL WIRELESS TECHNOLOGIES may make changes or improvements in the equipment, software, or specifications described in this document at any time and without notice. These changes will be incorporated in new releases of this document. This document may contain technical inaccuracies or typographical errors. KAVAL WIRELESS TECHNOLOGIES waives responsibility for any labour, materials, or costs incurred by any person or party as a result of using this document. KAVAL WIRELESS TECHNOLOGIES, and any of its affiliates shall not be liable for any damages (including, but not limited to, consequential, indirect or incidental, special damages or loss of profits or date) even if they were foreseeable and KAVAL WIRELESS TECHNOLOGIES has been informed of their potential occurrence, arising out of or in connection with this document or its use. T T R R A A D D E E M M A A R R K K N N O O T T I I C C E E This manual makes reference to trademarks that are the property of other companies. References are used only to refer to the products or services of the trademark owners. In-Hancer Plus is a trademark of KAVAL WIRELESS TECHNOLOGIES In-Hancer Plus BDA z USER MANUAL DCM000000105 Printed: 2003-09-02 12:04:56 Revision Date: 9/2/03: iii TABLE OF CONTENTS OVERVIEW............................................................. 4 Introduction ....................................................... 4 Line Amplifier BDA's ......................................... 4 Off-Air Operation BDA's ................................... 5 Modular Construction ....................................... 6 Theory Of Operation......................................... 6 STANDARD MODELS............................................... 7 FILTER KITS........................................................... 8 ACCESSORIES........................................................ 9 ACCESSORIES FOR STAINLESS-STEEL WEATHER- R ESISTANT ENCLOSURES..................................... 10 Data Connectors & Cables ............................. 10 AC Power Accessories ................................... 11 Accessory Installation..................................... 12 FIBER OPTIC OPTIONS.......................................... 13 INSTALLATION....................................................... 14 In-Hancer Plus BDA Enclosures .................... 14 Un-Packaging ................................................. 14 Mounting the In-Hancer Plus BDA.................. 15 Connections.................................................... 17 RF DECK CONNECTIONS...................................... 18 BATTERY BACKUP................................................ 20 IN-HANCER PLUS BDA SPECIFICATIONS................ 21 CARRIER DE-RATING............................................ 22 INDICATORS......................................................... 23 CONFIGURATION................................................... 24 ANTENNA INSTALLATION........................................ 25 FCC INFORMATION TO USERS.............................. 26 MAINTENANCE & SAFETY...................................... 27 STANDARD WARRANTY......................................... 27 RETURN & REPAIR............................................... 27 PARTS & ACCESSORIES........................................ 27 In-Hancer Plus BDA z USER MANUAL Printed: 03.09.02,12:04 Revision Date:9/2/03 4 Introduction The In-Hancer Plus family is a modular Bi-Directional Amplifier product. Bi- Directional Amplifiers (BDA’s) are radio frequency amplifiers that amplify signals in two directions. There are two basic BDA Applications; "Line Amplifiers" and β€œOff- Air”. Line Amplifiers are low gain (40 dB typical), while Off-Air are high gain (80 dB typical). The In-Hancer Plus does NOT have separate models for these two applications, but rather uses non volatile memory and software settings for gain. Line Amplifier BDA's An In-building RF distribution system takes on one of several forms including, but limited to, radiating cable, distributed tapped radiators, or high power repeater antennas. For an in-building RF distribution system that requires some gain to compensate for the system loss, Line Amplifier BDA's are best for the job. Line Amplifiers provide amplification of RF signals to recover signal loss contributed by radiating cable and other system components. The Figure below shows an example of a Tunnel RF Distribution System using Line Amplifiers. The system consists of Line Amplifiers strategically inserted between radiating cables. As the RF signal travels along the radiating cable, it loses signal strength. Line Amplifiers compensate for the RF loss by a…

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Parts List/Tune Up Info

z Page 1 Kaval Wireless Technologies - Company Secret DCT000000044 60 GOUGH ROAD, MARKHAM, ONTARIO L3R 8X7 Tel: (905) 940-1400 Toll Free: 888-86KAVAL Fax: (905) 946-3392 TEST & ALIGNMENT SPECIFICATION LinkNet LNKA800 800-900MHz Amplifier Modules DCT000000044 Revision 13 31 March, 2003 z Page 2 Kaval Wireless Technologies - Company Secret DCT000000044 TABLE OF CONTENTS Revision Record.........................................................................................................................................................3 Proprietary Notice ......................................................................................................................................................3 1. Introduction ......................................................................................................................................................4 2. REFERENCES...................................................................................................................................................5 3. TEST Equipment...............................................................................................................................................5 4. Programming ....................................................................................................................................................5 5. LinkNet AMPLIFIER Test Jig ..........................................................................................................................6 6. Equipment Setup..............................................................................................................................................7 7. LinkNet LNKA AMPLIFIER DC Testing – Description FOR REFERENCE...................................................7 8. LinkNet LNKA AMPLIFIER RF Alignment and Testing - REFERENCE .......................................................8 7.1 Preliminary Gain Check...........................................................................................................................8 β€’ TABLE 3 GAIN SETTINGS VS TEST LEVEL, GAIN:...................................................................................................... 8 7.2 Intermodulation Test – diagnostic only – see section 8.5 for post calibration version of test. ....................9 β€’ Table 5 GAIN SETTINGS VS TEST LEVEL, IMD: .......................................................................................................... 9 7.3 Detailed Gain, Bandpass And Return Loss Testing..........................................................................11 7.3.1 Fine Gain Control Verification – diagnostic testing for attenuator errors....................................11 7.3.2 Accurate Gain Measurements – for single channel verification..................................................12 β€’ Table 6 – Frequencies For Gain Measurements ........................................................................................................... 12 7.3.3 Input Return Loss................................................................................................................................13 7.4 1dB Compression – Data gathering only............................................................................................13 7.5 DC Current..............................................................................................................................................14 7.6 Forward Power Range..........................................................................................................................14 7.7 AGC Range – 3 point version..............................................................................................................14 7.8 Test of Digital (remote) Control AGC..................................................................................................14 7.9 Spurious Tests: Near Spurs..................................................................................................................15 7.10 Spurious Tests: Harmonics................................................................................................................15 7.11 Spurious Tests: Noise Floor...............................................................................................................15 7.12 Calibration Data Entry.........................................................................................................................16 9. FINAL TEST (After calibration)................................................................................................................17 β€’ 8.1 GAIN:...................................................................................................................................................................... 17 β€’ 8.2 AGCBIAS ............................................................................................................................................................... 17 β€’ 8.3 TxCURR .................................................................................................................................................................. 17 β€’ 8.4 FORWARD POWER ............................................................................................................................................... 17 β€’ 8.5 IP3........................................................................................................................................................................... 17 9.0.........................................................................................................................................................................18 Test Complete....................................................................................................................................................18 β€’ Table 4 CALIBRATION DATA & RF TEST SHEET:.............................................................................................…

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RF Exposure Info

β€’ All Antenna Installation to be performed by Qualified Technical Personnel only. β€’ Antenna Installation Instructions and locations below are for the purpose of satisfying FCC RF Exposure Compliance requirements. β€’ The Roof Top Antenna or Antennae for linking to the Donor Site(s) is/are directional (high gain) Antennae, fixed-mounted physically on the side or top of a building, or on a tower. The Antenna Gain must be no more than 20 dBi. The Roof Top Antennae location should be such that only Qualified Technical Personnel can access it, and that under normal operating conditions no other person can touch the Antenna, or approach within 7 meters of the Antenna. β€’ For the Cellular Uplink Band (824-849 MHz) the Roof Top Antenna or Antennae for linking to the Donor Site(s) has the added restriction that the Effective Radiated Power (ERP) must not exceed 7 Watts (+38 dBm). Thus, if the AGC is set (as per the Carrier De-Rating Chart) to +28dBm as an example, the maximum allowed Antenna Gain must be no more than 10 dBi. β€’ The In-Building Antenna connection is via a coaxial cable distribution system with Signal Taps at various points connected to the fixed-mounted Indoor Antennae. This is shown in the figure in the Introduction. The Indoor Antennae are simple 1/4 Wavelength (0 dB Gain) types. They are used with KAVAL WIRELESS TECHNOLOGIES 12, 16, or 20 dB Cable Taps. As such the maximum EIRP will be at the first Tapped Antenna, which will be 12 dB below the maximum signal level of the BDA (+40 dBm); +28 dBm, or 0.63 Watts EIRP. These Antennae are to be installed such that no person can touch the Antenna, or approach within 0.2 Meters. ANTENNA INSTALLATION WARNING ALL ANTENNA INSTALLATION IS TO BE PERFORMED BY QUALIFIED TECHNICAL PERSONNEL ONLY. ANTENNA INSTALLATION INSTRUCTIONS AND LOCATIONS ARE FOR THE PURPOSE OF SATISFYING FCC RF EXPOSURE COMPLIANCE REQUIREMENTS, AND ARE NOT OPTIONAL. ALL ROOF TOP ANTENNA INSTALLATION MUST BE SUCH THAT NO PERSON CAN TOUCH THE ANTENNA, OR APPROACH CLOSER THAN 7 METERS. ALL IN-BUILDING ANTENNAE INSTALLATIONS MUST BE SUCH THAT NO PERSON CAN TOUCH THE ANTENNAE, OR APPROACH CLOSER THAN 0.2 METERS. Please consult Kaval Wireless for assistance as required. Antenna Installation β€’ 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 provided reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. WARNING CHANGES OR MODIFICATIONS NOT EXPRESSLY APPROVED BY KAVAL COULD VOID THE USER’S AUTHORITY TO OPERATE THE EQUIPMENT. FCC Information to Users

Test Report

Oct. 17, 2003 TIMCO ENGINEERING INC. P.O. Box 370 849 N.W. State Road 45 Newberry, Florida Subject: Type Acceptance Application under FCC 47 CFR, Parts 2, 22 (Subpart H) and 90 (Subpart I) - Non-Broadcast Radio Transceivers Operating in the frequency bands 806-824, 824- 849, 851-869, 869-894, 896-902 and 928-941 MHz. Applicant: Kaval Telecom Inc. Product: In-Hancer Plus Bi-Directional Amplifier Model: SB800 FCC ID: H6M-SB800 Dear Sir/Madam, As appointed agent for Kaval Telecom Inc., we would like to submit the application for FCC Certification for the above Product. Please review all necessary files uploaded to TIMCO Upload Web Site. If you have any queries, please do not hesitate to contact us Yours truly, Tri Minh Luu, P. Eng., V.P., Engineering TML/DH Encl. UltraTech Group of Labs 31040/SIT C-1376 46390-2049 200093-0 2 00-034 SL2-IN-E-1119R 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected] Oct. 17, 2003 Kaval Telecom Inc. 60 Gough Road Markham, Ontario Canada, L3R 8X7 Attn.: Mr. Alan Aslett Subject: Certification Testing in accordance with FCC 47 CFR, Parts 2, 22 (Subpart H) and 90 (Subpart I) - Non-Broadcast Radio Transceivers Operating in the frequency bands 806-824, 824-849, 851-869, 869- 894, 896-902 and 928-941 MHz. Product: In-Hancer Plus Bi-Directional Amplifier Model: SB800 Dear Mr. Aslett, The product sample has been tested in accordance with FCC 47 CFR, Parts 2, 22 (Subpart H) and 90 (Subpart I) - Non-Broadcast Radio Transceivers Operating in the frequency bands 806-824, 824-849, 851-869, 869-894, 896-902 and 928-941 MHz, and the results and observation were recorded in the engineering report, Our File No.: KTI-034FCC22-90 Enclosed you will find copy of the engineering report. If you have any queries, please do not hesitate to contact us. Yours truly, Tri Minh Luu, P.Eng Vice President - Engineering Encl. UltraTech Group of Labs 31040/SIT C-1376 46390-2049 200093-0 2 00-034 SL2-IN-E-1119R 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected] In-Hancer Plus Bi-Directional Amplifier Model No.: SB800 FCC ID: H6M-SB800 Applicant: Kaval Telecom Inc. 60 Gough Road Markham, Ontario Canada, L3R 8X7 Tested in Accordance With Federal Communications Commission (FCC) 47 CFR, Parts 2, 22 (Subpart H) and 90 (Subpart I) UltraTech's File No.: KTI-034FCC22-90 This Test report is Issued under the Authority of Tri M. Luu, Professional Engineer, Vice President of Engineering UltraTech Group of Labs Date: Oct. 17, 2003 Report Prepared by: Tri Luu Tested by: Hung Trinh, EMI/RFI Technician Issued Date: Oct. 17, 2003 Test Dates: Aug. 28 – Oct. 10, 2003 Βƒ The results in this Test Report apply only to the sample(s) tested, and the sample tested is randomly selected. Βƒ This report must not be used by the client to claim product endorsement by NVLAP or any agency of the US Government. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com , Email: [email protected], Email: [email protected] 2 31040/SIT C-1376 46390-2049 200093-0 SL2-IN-E-1119R 00-034 FCC PARTS 2, 22H and 90I, SUBPART I, NON-BROADCAST RADIO TRANSCEIVERS Contents i In-Hancer Plus Bi-Directional Amplifier, Model SB800 FCC ID: H6M-SB800 ULTRATECH GROUP OF LABS File #: KTI-034FCC22-90 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 Oct. 17, 2003 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com Βƒ All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) TABLE OF CONTENTS EXHIBIT 1. SUBMITTAL CHECK LIST...................................................................................................................... 1 EXHIBIT 2. INTRODUCTION .................................................................................................................................…

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Contact Information

Applicant

Robert Biedka(Sr. Quality Engineer)
[email protected]714-466-1476Fax: 714-466-5807

Test Firm

UltraTech Engineering Labs Inc.Tri Luu
[email protected]877-747-6381Fax: 905-829-8050

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
189928 MHz - 941 MHz5.5 WF3E
Confidentiality
Long Term
Grant Notes
Extender. Output power is composite for multi-channel operation. Mobile grant conditions (Indoor): The antenna installation and operating configurations of this transmitter, including any applicable source-based time-averaging duty factor, antenna gain and cable loss must satisfy MPE categorical Exclusion Requirements of οΏ½2.1091. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Fixed grant conditions (Outdoor): The antenna used for this transmitter(s) must be fixed-mounted on outdoor permanent structures. RF exposure compliance may need to be addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of οΏ½1.1307(b)(3). Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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