
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Nextel CA -NEX Amplifier Installation Manual Page 1 of 2 All brands and trademarks are the property of their respective owners. Copyright 2003, Janizary Holdings, Inc. All rights reserved. Rev D D00000414 Designed and Manufactured under License from Motorola, Inc. in the U.S.A. Note: Before installing the Cyfre™ Amplifier, please read the entire contents of this manual. Section # 1 Parts List Ite m Q ty Description 1 1 Cyfre ™ Amplifier 2 1 2 Meter (78”) DC Power Cable Section # 2 Tools and Other Materials Required Item Description 1 Electric drill (as required for signal amplifier mounting holes) 2 Screw driver 3 Qty 4 screws (length and type as required for signal amplifier mounting) 4 Wire cutters / strippers 5 Qty 2 wire connection insulators or insulating material (as required for DC power cable connection to 12V DC system) Section # 3 WARNINGS! ∇ Directly wired vehicle antennas must be mounted a minimum distance of 20 cm (7.87”) away from the body of any user or nearby persons and the antenna. ∇ Mounting a signal amplifier in the engine cavity or on the underside of the vehicle will void the manufacturer’s warranty. ∇ Subjecting the amplifier to voltages greater than 30 Volts DC will damage the amplifier and void the manufacturers warranty. ∇ Any vehicle with an electrical system of greater than 30 Volts DC should use a step-down voltage regulator to bring the voltage within the DC operating power range of the amplifier (10 to 30V dc). ∇ Under no circumstances should the amplifier be powered up without a properly connected 50 ohm 800/1900 MHz dual band cellular/PCS antenna or the amplifier may be damaged, resulting in the manufacturer’ warranty being void. ∇ For optimum performance and compatibility with cellular service provider requirements, it is recommended that an external antenna with a maximum gain of 7dBi be installed. ∇ Use of cellular amplifiers with antennas of higher gains than 7dBi gain is in violation of FCC regulations for which the offender will be fully liable, and warranty claims will be voided. It is recommended that only certified automotive installation technicians install this product in a vehicle. Installation by any other person is at the risk of the vehicle owner and operator. Section # 4 Installation Selecting a Suitable Location To Mount The Signal Amplifier Locate a suitable place to mount and conceal the signal amplifier. Suggested mounting locations include: under the dashboard, under the seat, or in the trunk. For peak performance the signal amplifier should be mounted as close to the phone handset as possible. The amplifier’s location should be easily accessible and mounted away from moving parts, as well as excessive heat and moisture. Nextel CA -NEX Amplifier Installation Manual Page 2 of 2 All brands and trademarks are the property of their respective owners. Copyright 2003, Janizary Holdings, Inc. All rights reserved. Rev D D00000414 Designed and Manufactured under License from Motorola, Inc. in the U.S.A. Section # 5 Installation Cautions ∇ Use caution to avoid drilling through or near fuel lines or fuel tanks; brake lines; or electrical wiring. ∇ Do not mount the signal amplifier or its associated wiring in a location that may interfere with the safe operation of the vehicle. ∇ If the fuse is changed from the 3 amps to a higher rating the warranty is void. Purchaser of the amplifier would be responsible for the repair of the unit. ∇ Caution: Connection to the negative side with the positive lead will cause damage to the amplifier. Section # 6 Installation Of The Signal Amplifier To meet the FCC Exposure Guidelines, the antenna should be installed so there is at least 20 cm of separation between the body of the user or nearby persons and the antenna. Typical Installation For Under The Seat Mounting 1. For safety, disconnect the vehicle’s negative “−“ battery terminal to remove power from the vehicle. 2. Drill holes or Velcro tape and mount the signal amplifier (ITEM 1) in the selected location. 3. Connect the coloured striped black wire of the supplied 2 Meter (78”) power cable (ITEM 2) for the signal amplifier to a positive connection on the vehicle’s electrical system. Choose a 10 to 30 Volt DC circuit that is: fuse protected; and ignition switched. (Often referred to as the “Accessory output”) 4. Attach the solid black wire of the supplied 2 Meter (78”) power cable (ITEM 2) to a vehicle electrical ground point. 5. Attach an external antenna cable to the amplifier's antenna connector. The input connector on the amplifier is connected to a cellular phone handset via a RF cradle or an RF cable. You may also connect the optional RF cable for your handset, from the cellular handset to amplifier port labelled “Phone”. 6. Reconnect the vehicle’s negative “−“ Battery terminal. Section # 7 Limited Warranty Cyfre™ warrants that this product is free from any defects in material or workmanship for a period of one year. If a defect in material or workmanship is found, Inteligain Corporation agrees to repair or replace the product at its own discretion, free of charge to the original purchaser. Please return the product along with proof of purchase to the original authorized dealer. This warranty is null and void if the product has been modified, abused, tampered with, subjected to abnormal conditions, if the fuse is changed to a higher rating than 3 amp, or transferred to someone other than the original purchaser. Use a 7dBi antenna for Optimal Performance
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 October 5, 2004 RE: FCC ID: LMSWDJHNEX_ATCB001566 Attention: Leon Paul Kass I have a few comments on this Application. Please note that further comments may arise in response to answers provided to the questions below. 1. Please provide internal photos of both sides of all boards in the amp. 2. Please note that as this is an end user item, the internal photos cannot be held confidential. Please revise the confidentiality request to remove the internal photos from the list. 3. Please provide the manual for this application. 4. Please note that it appears that this application is more of a composite than of a device that operates over the same frequencies in two rule parts. It appears that the 806-825MHz and the 850 to 869MHz are for part 90 only while the 1850-1910MHz and the 1930 – 1990MHz are for Part 24 only. Please clarify the rule parts for each frequency band on the 731. 5. Please provide the MPE report as a separate exhibit. This is a requirement of the FCC in the upload process. 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.
LEON PAUL KASS, LLC CONSULTANT IN WIRELESS COMMUNICATION 9695 135 th Street Seminole, Florida 33776-1434 Phone 727-593-3100 Fax 727-593-7950 E Mail lpk @ fdn.com January 5, 2005 FEDERAL COMMUNICATIONS COMMISSION Equipment Authorization Division 7435 Oakland Mills Road Columbia, Maryland 21046 Leon Paul Kass LLC, as authorized agent for Janizary Holdings, Inc., is applying for the equipment authorization for their Dual Band, 800/1900 RF amplifier, FCC ID: RFKLMSWDJHNEX, model # CA-NEX. Due to Janizary Holdings, Inc. requirement for proprietary information, due to unique methods used for RF shielding, patent knowledge used under license from Motorola Inc., we request that the following exhibits be held as “Confidential”. 1. Block Diagram 2. Theory of Operation 3. Schematic drawings 4. Parts list If there are any questions regarding this application please contact me immediately Regards Leon Paul Kass
FCC ID: RFK-LMSWDJHNEX 88 RF Exposure – MPE Calculations Calculations The following results shall be assumed to be accurate for the far-field only. These predictions will over-estimate power density in the near–field. Based on the use of a ¼ wavelength radiator, a distance of 20 cm is considered to be in the far-field for all cases. S = PG/4*PI*R 2 @ 806 – 825 MHz P is 140 mW G is 2 dB (Antenna gain – loss) or 10 (2/20) or 1.25 R is 20 cm S = 0.028 mW/cm 2 For Occupational/Controlled Exposure From 300 to 1500 MHz, power density limit is f/300 mW/cm 2 @ 806 MHz, power density limit is 2.69 mW/cm 2 for 6 minutes. For General Population/Uncontrolled Exposure From 300 to 1500 MHz, power density limit is f/1500 mW/cm 2 @ 806 MHz, Power density limit is 0.54 mW/cm 2 for 30 minutes. Conclusion: Meets MPE limits @ 1850 – 1910 MHz P is 250 mW G is 1 dB (Antenna gain – loss) or 10 (1/20) or 1.12 R is 20 cm S = 0.044 mW/cm 2 For Occupational/Controlled Exposure From 1,500 to 100,000 MHz, power density limit is 6.17 mW/cm 2 for 6 minutes. For General Population/Uncontrolled Exposure From 1,500 to 100,000 MHz, power density limit is 1.23 mW/cm 2 for 30 minutes. Conclusion: Meets MPE limits FCC ID: RFK-LMSWDJHNEX 87 RF Exposure – MPE Calculations Input Transmitter Power: Lo band 140 mW Hi band 250mW Antenna Gain: 3 dB Cable loss: 1 dB @ 806 – 825 MHz 2 dB @ 1850 – 1910 MHz Frequency range: 806-825 MHz and 1850-1910 MHz Assumptions 1. A single ¼ wavelength radiating antenna is assumed. 2. Closest exposure distance is assumed to be 20 cm FCC ID: RFK-LMSWDJHNEX 86 RF Exposure The LMSWDJHNEX (800 / 1900 MHz) dual band RF Compensator is operated as a mobile device as defined in 2.1091(b) bases on its design and installation. The compensator is installed into a vehicle such that it is physically secured and is generally located more than 20 cm from the end-user. This information is included in the user manual. It is suggested that the antenna be installed such that there is at least 20 cm of separation between the occupants of the vehicle and the antenna. The LMSWDJHNEX (800 / 1900 MHz) dual band RF Compensator has a transmitted conducted power of 0.14 W in the low band and 0.25W in the high band. The mobile antenna supplied with the transceiver has a maximum gain of 3 dB, and minimum cable loss of –1.0 dB, together resulting in a maximum EIRP of 1 W. Since the transmit SMR band (806-824 MHz) (Part 90) is below 1.5 GHz and its EIRP with the supplied antenna is below 1.5 and transmit PCS band (1860-1910 MHz) (Part 24) is above 1.5 GHz and its EIRP with the supplied antenna is below 3W, the 800 / 1900 MHz RF Compensator is categorically excluded from routine environmental evaluation per 2.1091(c).
FCC ID: RFK-LMSWDJHNEX 91 PHOTO: RF POWER OUTPUT, EMISSIONS LIMITATIONS GSM/TDMA, OCCUPIED BANDWIDTH GSM/TDMA, CONDUCTED SPURIOUS EMISSIONS AT ANTENNA TERMINALS Notes: FCC ID: RFK-LMSWDJHNEX 90 PHOTOS: RADIATED FIELD STRENGTH OF SPURIOUS EMISSIONS Notes: FCC ID: RFK-LMSWDJHNEX 89 Appendix A Photographs INTENTIONALLY LEFT BLANK FCC ID: RFK-LMSWDJHNEX 88 RF Exposure – MPE Calculations Calculations The following results shall be assumed to be accurate for the far-field only. These predictions will over-estimate power density in the near–field. Based on the use of a ¼ wavelength radiator, a distance of 20 cm is considered to be in the far-field for all cases. S = PG/4*PI*R 2 @ 806 – 825 MHz P is 140 mW G is 2 dB (Antenna gain – loss) or 10 (2/10) or 1.58 R is 20 cm S = 0.044 mW/cm 2 For Occupational/Controlled Exposure From 300 to 1500 MHz, power density limit is f/300 mW/cm 2 @ 806 MHz, power density limit is 2.69 mW/cm 2 for 6 minutes. For General Population/Uncontrolled Exposure From 300 to 1500 MHz, power density limit is f/1500 mW/cm 2 @ 806 MHz, Power density limit is 0.54 mW/cm 2 for 30 minutes. Conclusion: Meets MPE limits @ 1850 – 1910 MHz P is 250 mW G is 1 dB (Antenna gain – loss) or 10 (1/10) or 1.26 R is 20 cm S = 0.063 mW/cm 2 For Occupational/Controlled Exposure From 1,500 to 100,000 MHz, power density limit is 5 mW/cm 2 for 6 minutes. For General Population/Uncontrolled Exposure From 1,500 to 100,000 MHz, power density limit is 1 mW/cm 2 for 30 minutes. Conclusion: Meets MPE limits
FCC ID: RFK-LMSWDJHNEX 1 Application for Certification For an RF amplifier Janizary Holdings Inc. 5330 Derry Ave, Suite F Agoura Hills, CA 91301 RF amplifier FCC ID: RFK-LMSWDJHNEX REPORT # RV58031A-000 This report was prepared in accordance with the requirements of the FCC Rules and Regulations Part 2, Subpart J, 2.1031 through 2.1057, and Parts 24, and 90 and other applicable sections of the rules as indicated herein. Prepared By: DNB Engineering, Inc. 5969 Robinson Avenue Riverside, Ca 92503-8620 23 Sep 2004 FCC ID: RFK-LMSWDJHNEX 2 TEST LAB PERSONNEL Test Performed by: Date Signature Thomas Elders 23 Sep 2004 APPROVALS Management Approval Date Signature Les Payne Sr. Engineering Manager 10 Feb 2004 Original report RV58031A-000 Dated 23 Sep 2004 FCC ID: RFK-LMSWDJHNEX 3 TABLE OF CONTENTS Section Title Sheet # Test Lab Personnel and Approvals 2 Table of Contents 3 Table of Figures 4 1.0 ADMINISTRATIVE DATA 5 1.1 Certifications and Qualifications 5 1.2 Measurements and Repeatability Information 5 1.3 Test Methodology 6 1.4 Test Equipment 6 1.5 Deviations 6 1.6 Test Description 7 Note: Paragraph numbers in this report follow the application section numbers found in the FEDERAL COMMUNICATIONS COMMISSION Rules and Regulations, Part 2, Subpart J for Certification of electronic equipment. 2.1033 (C) (1) Application for Certification 8 2.1033 (C) (2) FCC Identifier 9 2.1033 (C) (3) Installation and Operating Instructions (Service manual) 9 2.1033 (C) (4) Type of Emissions 9 2.1033 (C) (5) Frequency Range 9 2.1033 (C) (6) Operating Power 9 2.1033 (C) (7) Maximum Power Allowed in Applicable part(s) of the Rules 9 2.1033 (C) (8) Final RF amplifier Input Power Characteristics 9 2.1033 (C) (9) Tune Up Procedure 9 2.1033 (C) (10) Schematic Diagram and Circuit Description 10 2.1033 (C) (11) Equipment Identification Plate 10 2.1033 (C) (12) Equipment Photographs (Internal) 10 2.1033 (C) (12) Equipment Photographs (External) 10 2.1033 (C) (13) Digital Modulation Techniques 10 2.1033 (C) (14) Test Data 10 Test Set-Up 11-12 2.1046 Measurement of RF Power Output 13-25 2.1049 Measurement of Occupied Bandwidth 26-86 2.1051 Spurious Emissions at Antenna Terminals 87-100 2.1053 Measurement of Field Strength of Spurious Radiation 101-103 Radiated Emissions 104-105 2.1055 Measurement of Frequency Stability 106 2.1057 Frequency Spectrum to be Investigated 107 RF Exposure 108-110 Appendix A Photographs 115-115 FCC ID: RFK-LMSWDJHNEX 4 TABLE OF FIGURES Figure 1 : Test Equipment 6 Figure 2 : Test Result Summary 10 Figure 3 : Test Set Up Block Diagram 12 Figure 4 : Block Diagram Radiated Emissions 12 Figure 5 : Output Power Plots 14 Figure 6 : Occupied Bandwidth / Modulation Characteristic Plots 27 Figure 7 : Antenna Conducted Spurious Plots 88 Figure 8 : Radiated Spurious Tabular Data 102 Figure 9 : Unintentional Radiated Emissions 105 Appendix A : Photos 111 FCC ID: RFK-LMSWDJHNEX 5 1.0 ADMINISTRATIVE DATA 1.1 Certifications and Qualifications I certify that DNB Engineering, Inc conducted the tests performed in order to obtain the technical data presented in this application. Also, based on the results of the enclosed data, I have concluded that the equipment tested meets or exceeds the requirements of the Rules and Regulations governing this application. 1.2 Measurement Repeatability Information The test data presented in this report has been acquired using the guidelines set forth in FCC Part 2.1031 through 2.1057, and Parts 22, 24,and 90. The test results presented in this document are valid only for the equipment identified herein under the test conditions described. Repeatability of these test results will only be achieved with identical measurement conditions. These conditions include: The same test distance, EUT Height, Measurement Site Characteristics, and the same EUT System Components. The system must have the same Interconnecting Cables arranged in identical placement to that in the test set-up, with the system and/or EUT functioning in the identical mode of operation (i.e. software and so on) as on the date of the test. Any deviation from the test conditions and the environment on the date of the test may result in measurement repeatability difficulties. All changes made to the EUT during the course of testing as identified in this test report must be incorporated into the EUT or identical models to ensure compliance with the FCC regulations. C. L. Payne III (Para. 1.1) Sr Engineering Manager DNB Engineering, Inc. Tel. (951) 637-2630 Fax (951) 637-2704 E-mail [email protected] FCC ID: RFK-LMSWDJHNEX 6 1.3 Test Methodology The tests were performed in accordance with FCC Part 2 Subpart J, 2.1031 through 2.1057, 24, and 90 on a sample of the production model. 1.4 Test Equipment FIGURE 1: TEST EQUIPMENT Description Manufacturer M/N S/N Cal Date Test Used On Signal Generator Rhode & Schwarz SMU200A N/A 09/10/05 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Signal Generator Marconi 2024 112231/034 02/02/05 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Spectrum Analyzer Display H/P 85662A 259101-1 01/10/05 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Spectrum Analyzer H/P 8566B 259101-2 01/10/05 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Spec Analyzer Display H/P 85662A 2318A05282 8/14/05 RE Spectrum Analyzer H/P 85680B 2049A01403 6/2/05 RE Quasi-Peak Adapter H/P 85650A 2043A00184 6/2/05 RE Bicon Antenna H/P 85650A 2043A00184 6/2/05 RE Logarithmic Antenna AH Systems SAS-200/540 524 12/26/04 RE DRG Antenna EMCO 3146 1284 1/2/05 RE S/A Rhode & Schwarz FSU 46 N/A 09/10/05 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE 1. 5 DEVIATIONS Deviations/Modifications to the EUT None. Deviations/Modifications from test standard. None FCC ID: RFK-LMSWDJHNEX 7 1.6 TEST DESCRIPTION 1.6.1 RF Power Output For RF amplifier. 1.6.2 Emissions Limitation and Occupied Bandwidth Occupied Bandwidth, that is the frequency bandwidth such that, below its lower and above its upper…
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9695 135th street · Seminole, Florida · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 12 | 24E | 1.93 GHz - 1.99 GHz | 1.00 mW | DXW | Amp |

Cellular & PCS Band Full Duplex Booster
Equipment Class
PCB - PCS Licensed Transmitter
Booster / Dual-Band Bi-Directional Amplifier
Equipment Class
AMP - Amplifier
Multichannel Power amplifier
Equipment Class
PCB - PCS Licensed Transmitter
Multi Channel Power Amplifier
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Single Channel Power Amplifier
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter