
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Cellular Wireless Booster Installation Manual Page 1 of 5 All brands and trademarks are the property of their respective owners. © 2007, Janizary Holdings, Inc. All rights reserved. Rev B D000003 Designed and manufactured under license from Motorola, Inc. in the USA Note: Before installing your Cyfre™ Wireless Booster, You Must Read the Entire Contents of this Manual to Insure Proper Amplifier Operation and Performance. Section # 1 WARNINGS! ∇ Antennas must be mounted a MINIMUM distance of 20 cm (7.87 inches) away from any person. ∇ An external antenna must be mounted outside a vehicle, boat, RV or home. If mounting an external antenna on the exterior portion of the outside glass of a vehicle, a minimum of 6 feet of separation is needed. Failure To do so may result in booster failure, and will void your warranty. Installation of this system in a convertible style vehicle with less than 6 feet of horizontal antenna separation, and 3 feet of vertical separation with a separation material of metal or fibreglass is not approved as of this time. Installation on a small boat, or center console unit requires the external antenna to be mounted on a T- Top, or other mounting surface at least six feet above the operator and at least six feet from the receive antenna. ∇ UNDER NO CIRCUMSTANCES CAN AN EXTERIOR ANTENNA BE INSTALLED INSIDE A VEHICLE, boat, RV or home. This action may result in amplifier failure, which will void your warranty. ∇ The power supply must be plugged into a 12 Volt outlet that is connected to the fuse box of your vehicle, boat or RV and have a minimum of 3-amp fuse, or into a 120 volt AC to 12 volt DC converter. ∇ Under no circumstances should you power up your amplifier without first properly connecting a 50 ohm 800/ 1900 MHz dual band cellular antenna to both the internal and external antenna connectors. Failure To properly connecting the antennas may result in amplifier failure, which will void your warranty. ∇ For optimum performance and compatibility with your service provider requirements, it is recommended that the external antenna be installed on the exterior metal roof of your vehicle, or on a metal flat surface of at least two (2) square feet. ∇ Use of cellular amplifiers with exterior antennas of higher gain than 6dBi gain is in violation of FCC regulations for which the offender will be fully liable, and void your warranty. Use of cellular amplifiers with interior antennas of higher gain than 6dBi gain is in violation of FCC regulations for which the offender will be fully liable, and void your warranty. ∇ Do not combine the external or interior antenna cable with another coaxial cables. The additional loss of the cable length and connectors could greatly diminish the performance of the amplifier. ***It is recommended that only qualified or informed installation technicians install this product permanently to a vehicle. Installation by any other person is at the risk of the owner and operator. ∇ Internal antennas must be mounted no closer than 20 cm (7.87 inches) away from any person. Cellular Wireless Booster Installation Manual Page 2 of 5 All brands and trademarks are the property of their respective owners. © 2007, Janizary Holdings, Inc. All rights reserved. Rev B D000003 Designed and manufactured under license from Motorola, Inc. in the USA Section # 2 Parts List Item Qty Description 1 1 Cyfre ™ Wireless Booster 2 1 Cyfre external magnetic mount antenna with 10ft low loss cable 3 4 5 1 1 1 Cyfre direct connect antenna with elbow joint connector Cyfre 12 volt cigarette power adapter Cyfre 4 ft hardwire power cable Section # 3 Selecting a Suitable Location to Install Your Booster ∇ All antennas must be mounted a minimum distance of 20 cm (7.87 inches) away from any person(s). ∇ You may place your wireless booster anywhere inside your vehicle, boat or RV, (except as mentioned above). The amplifier’s location should be easily accessible and mounted away from moving parts, excessive heat or moisture. ∇ The exterior antenna must be mounted outside the vehicle, boat, RV, or home, and at a distance that can be reached from the supplied antenna cable. ∇ If the signal level is decreased, it may be due to location of the interior and exterior antennas location. This can be overcome by re-positioning the two antennas further apart. ∇ Make sure there is at least six feet of vertical separation between the exterior and interior antennas. Cellular Wireless Booster Installation Manual Page 3 of 5 All brands and trademarks are the property of their respective owners. © 2007, Janizary Holdings, Inc. All rights reserved. Rev B D000003 Designed and manufactured under license from Motorola, Inc. in the USA Section # 4 Installation of the Wireless Booster in a vehicle Wireless Booster in home installation Cellular Wireless Booster Installation Manual Page 4 of 5 All brands and trademarks are the property of their respective owners. © 2007, Janizary Holdings, Inc. All rights reserved. Rev B D000003 Designed and manufactured under license from Motorola, Inc. in the USA Wireless Booster in boat/RV installation Section # 5 Optional Accessories Cellular Wireless Booster Installation Manual Page 5 of 5 All brands and trademarks are the property of their respective owners. © 2007, Janizary Holdings, Inc. All rights reserved. Rev B D000003 Designed and manufactured under license from Motorola, Inc. in the USA Section # 6 Limited 1 Year 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, Cyfre™ agrees to repair or replace the product at its own discretion, free of charge, to the original purchaser excluding all shipping charges. To return product, all parts, packaging, and accessories along with original receipt from where you purchased your product must be included with your return. Failure to return all product, parts, packaging, and accessories will result in product Th…
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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 April 16, 2007 FEDERAL COMMUNICATIONS COMMISSION Office of Engineering and Technology Equipment Authorization Division 7435 Oakland Mills Road Columbia, MD 21046 Re: PERMANENT CONFIDENTIALITY REQUEST FOR FCC ID:RFK-IVWA819, Model IVWA819 Dear Sir/ Madam: Pursuant to sections 0.457 and 0.459 of CFR 47, the applicant requests permanent confidential treatment of the following information accompanying this application. 1. Block Diagram 2. Parts List 3. Schematic drawing 4. Theory of operation, Circuit description 5. Tune up procedure with Gain control The above materials contain trade secrets and proprietary information in conjunction with a Manufacturing Agreement between Janizary Holdings, Inc., and Leon Paul Kass LLC that is in conjunction with a License to use specific patented technology from Motorola, Inc. in the development and production of this unit. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors. Sincerely Leon Paul Kass Authorized Agent for Janizary Holdings, Inc.
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 , [email protected] April 16, 2007 AMERICAN TCB 6731 Whittier Ave. McLean, Virginia 22101 Att: Tim Johnson Re: RESPONSE TO ATCB COMMENTS ON APPLICATION, ATCB004610 1) As used, this is not an amplifier (see provided guidance). This appears to be a in-vehicle booster. Answer This is informational and does not relate to compliance or non-compliance. We have changed the literature to show the unit in use in a home and boat as well as a vehicle. We have also provided prior grants of the same type of unit listed as an amplifier. 2) The labeling for FCC appears to show a dash that is not present on the 731 form. What is the correct FCC ID Number for this certification. Please correct affected exhibits. Answer The label has been corrected and the new data is being uploaded to the ATCB website. 3) The model number on the IC form and the label do not match. The form cites IVWAA819 while the label appears to show IVWA-819. Which is correct. Please correct affected exhibits. Answer The label has been corrected and the new data is being uploaded to the ATCB website 4) Please provide test photos as a separate exhibit. Answer The new data is being uploaded to the ATCB website 5) Users manual shows external antenna as maximum of 7 dBi. RF exposure mentions “6 dB in all cases”. Additionally, please note that dB is not a unit. This could be dBi, dBd, etc, which each has a different gain and yield different results. Additionally, 7 dBi would also yield different results. The RF exposure and users manual must be clear. Please correct as necessary. Answer The RF exposure calculations are now made with 6dBi antenna – all cases. 6) AMPS is typically F1 D and F8W. Please clarify and correct any affected exhibits as necessary. Answer The new data is being uploaded to the ATCB website 7) The manual shows 4 different antennas. Please provide antenna gain information on these antennas. Answer The manual has been corrected and the new data is being uploaded to the ATCB website 8) Regarding gain control given in the tune up exhibit, please provide further detail as to what target levels and maximum gain levels are being used to trigger an output level reduction. If this information is considered proprietary, please revise the current tune up procedure exhibit to details this. Answer The tune up procedure and gain control document has been updated and the new data is being uploaded to the ATCB website. 9) Please explain how output power behaves. I.E. fro GSM 800 MHz an output of 0.785 W was shown. What happens when 2 carriers are present? If this affects total output power, then RF exposure must be adjusted as well (in addition to 15 below). Answer There is no affect on the total output power increasing. The total output power is limited internally, if more than one channel is present and the amp “overdrives” it begins to “roll” off and no further amplification is possible. 10) Page 45 of the report cites the following which does not appear appropriate to this device: Inter-modulation test are required for the downlink only as this device is a single use channel device and is to be dedicated to one phone, therefore only one channel uplink can be active at any given time. Answer This statement has been removed from the report. Plots for both uplink and downlink were provided. 11) Plot on page 65 of the test report is for middle channel, but should be for low channel. Please correct. Answer Correct plot has been inserted 12) Plots on page 106 & 107 appear incorrect. Please review. Answer These plots are correct. Plot on page 106 is for the occupied bandwidth, plot on page 107 is the input plot, and plot on page 108 is the output plot. 13) Please document the input drive levels for both uplink and downlink. Additionally, please justify the maximum input rating and maximum gain settings for all tests. Answer For all measurements the maximum signal was determined by input the signal until the unit would no longer amplify the signal. This signal has been plotted in the section as modulation characteristics as input (EUT removed form circuit) and output (EUT inserted in circuit). This device has no gain settings. 14) Please confirm device cannot operate in saturation. Please justify means to control maximum power and to assure linear operation. I.E. How is saturation or over-modulation prevented for signal inputs, especially pulsed emissions (i.e. GSM/TDMA)? Answer Refer to the revised Tune Up and Gain control document being uploaded now. 15) Uplink and downlink appear to operate simultaneously in both bands. RF exposure should show that the combined RF exposure meets the appropriate requirements. I.E. Level1/Limit 1 + Level2/Limit2 < 1 (i.e. < 100 % of limit) Answer RF Exposure updated and new RF exposure being uploaded to the site now. 16) FCC requires intermodulation testing for most modulations. See attached. Currently testing appears to only cover GSM and AMPS per the FCC guidance. Answer GSM plots represent worst case configurations for inter-mod test as they drive the output “harder” than any other modulation input. 17) Antenna conducted spurious appears to possibly not cover AMPS – see attached guidance note as well. Answer In accordance with FCC 2-11-04/EAB/RF FM (GSM) can be used to show compliance with AMPS requirements. 18) Please confirm the input signal(s) used into the device for spurious radiated testing. Was this CW as expected by the FCC guidance? Answer Yes 1) FYI .... IC has expressed concern about certain types of cellular devices under RSS-131. Therefore we have not fully review this application under RSS-131 yet. We are awaiting comment from IC regarding the allowance of this type of device under IC regulations. We will provide further information as it is obtained. I have been informed that IC has answered this question 2) The test report doe…
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FCC ID: RFK-IVWA819 192 RF Exposure The IVWA819 (800 / 1900 MHz) dual band RF Compensator is operated as a signal booster as defined in 2.1091(b) based on its design and installation. The compensator is installed in such a way 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 user and the antenna. FCC ID: RFK-IVWA819 193 RF Exposure – MPE Calculations Input Transmitter Power: 785mW @ 824-849MHz (Uplink) 42.0mW @ 869-894MHz (Downlink) 272mW @ 1850-1910MHz (Uplink) 17.4mW @ 1930-1990MHz (Downlink) Antenna Gain: 6 dBi all cases Cable loss: 1.5 dB @ 824–849 MHz and 869-894MHz 2.5 dB @ 1850–1910 MHz and 1930-1990MHz Frequency range: 824-849MHz and 1850-1910MHz (Uplink) 869-894MHz and 1930-1990MHz (Downlink) Assumptions 1. A single ¼ wavelength radiating antenna is assumed. 2. Closest exposure distance is assumed to be 20 cm 3. Using the formula Level 1/Limit1 + Level2/Limit2 to show predicted total RF exposure if both bands are operating simultaneously, result must be less than 1. Where: Limit 1 is the limit in the uplink band Limit 2 is the limit in the downlink band Level 1 is the calculated maximum RF exposure in the uplink band Level 2 is the calculated maximum RF exposure in the downlink band 824-894 Band (Uplink and Downlink) Occupational/Controlled Exposure = 0.184416 is less than 1 = compliant General Population/Uncontrolled Exposure = 0.922662 is less than 1 = compliant 1850-1990 Band (Uplink and Downlink) Occupational/Controlled Exposure = 0.009835 is less than 1 = compliant General Population/Uncontrolled Exposure = 0.049204 is less than 1 = compliant FCC ID: RFK-IVWA819 194 RF Exposure – MPE Calculations Calculations for Uplink 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 @ 824 – 849 MHz P is 785 mW G is 4.5 dBi (Antenna gain – loss) or 10 (4.5/10) or 2.818 Numerical R is 20 cm S = 0.440mW/cm 2 For Occupational/Controlled Exposure From 300 to 1500 MHz, power density limit is f/300 mW/cm 2 @ 824 MHz, power density limit is 2.747 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 @ 824 MHz, Power density limit is 0.549 mW/cm 2 for 30 minutes. Conclusion: Meets MPE limits @ 1850 – 1910 MHz P is 272 mW G is 3.5 dBi (Antenna gain – loss) or 10 (3.5/10) or 2.24 Numerical R is 20 cm S = 0.121205mW/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-IVWA819 195 RF Exposure – MPE Calculations Calculations for Downlink 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 @ 869 – 894 MHz P is 42 mW G is 4.5 dBi (Antenna gain – loss) or 10 (4.5/10) or 2.818 Numerical R is 20 cm S = 0.024mW/cm 2 For Occupational/Controlled Exposure From 300 to 1500 MHz, power density limit is f/300 mW/cm 2 @ 869 MHz, power density limit is 2.897 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 @ 869 MHz, Power density limit is 0.579 mW/cm 2 for 30 minutes. Conclusion: Meets MPE limits @ 1930 – 1990 MHz P is 17.4 mW G is 3.5 dBi (Antenna gain – loss) or 10 (3.5/10) or 2.24 Numerical R is 20 cm S = 0.007754mW/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-IVWA819 1 Application for Certification For an RF amplifier Janizary Holdings, Inc. 2282 Townsgate Road, Suite 100 Westlake Village, CA 91361 RF amplifier FCC ID: RFK-IVWA819 IC ID: 5252A-IVWA819 REPORT # RV68119A-008 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 22, and 24 and in accordance with Industry Canada Radio Standards Specification RSS-131 for Zone Enhancers and any other applicable sections of the rules as indicated herein. Prepared By: DNB Engineering, Inc. 5969 Robinson Avenue Riverside, Ca 92503-8620 Industry Canada Lab Code: IC 4738 12 Feb 2007 FCC ID: RFK-IVWA819 2 TEST LAB PERSONNEL Test Performed by: Date Signature Les Payne 12 Feb 2007 APPROVALS Quality Approval Date Signature Tom Elders Quality Check 12 Feb 2007 Prelim report RV68119A-001 Dated 30 Aug 2006 Original report RV68119A-002 Dated 07 Sep 2006 Revised report RV68119A-003 Dated 07 Sep 2006 -Correct typos Revised report RV68119A-006 Dated 12 Feb 2007 -Correct typos Revised report RV68119A-007 Dated 30 Mar 2007 -Correct plots Revised report RV68119A-008 Dated 30 Mar 2007 -Add intermod FCC ID: RFK-IVWA819 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 (RSS-131 cl4.3) Measurement of RF Power Output 13-25 2.1049 (RSS-131 cl4.4) Measurement of Occupied Bandwidth 26-86 2.1051 (RSS-131 cl4.5) Spurious Emissions at Antenna Terminals 87-100 2.1053 Measurement of Field Strength of Spurious Radiation 101-103 Radiated Emissions 104-105 2.1055 (RSS-131 cl4.5) 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-IVWA819 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-IVWA819 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. Also included in this report is compliancy data for Industry Canada RS-131 for Zone Enhancers. 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 (991) 637-2704 E-mail [email protected] FCC ID: RFK-IVWA819 6 1.3 Test Methodology The tests were performed in accordance with FCC Part 2 Subpart J, 2.1031 through 2.1057, 15, and 22, 24, Industry Canada RSS-131 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 Agilent E4432B GB40051213 09/24/06 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Signal Generator Marconi 2024 112231/034 02/02/07 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Spectrum Analyzer Display H/P 85662A 259101-1 01/10/07 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Spectrum Analyzer H/P 8566B 259101-2 01/10/07 RF Power Out put, Emissions Lim, Cond Spur, Rad Spur, CE Spec Analyzer Display H/P 85662A 2318A05282 08/14/07 RE Spectrum Analyzer H/P 85680B 2049A01403 06/02/07 RE Quasi-Peak Adapter H/P 85…
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FCC ID: RFK-CW819 197 PHOTOS: RADIATED EMISSIONS: BICON Notes: FCC ID: RFK-CW819 198 PHOTOS: RADIATED EMISSIONS: LOG Notes: FCC ID: RFK-CW819 199 PHOTOS: RADIATED FIELD STRENGTH OF SPURIOUS EMISSIONS Notes: FCC ID: RFK-CW819 200 PHOTO: RF POWER OUTPUT, EMISSIONS LIMITATIONS GSM/TDMA, OCCUPIED BANDWIDTH GSM/TDMA, CONDUCTED SPURIOUS EMISSIONS AT ANTENNA TERMINALS Notes:
9695 135th street · Seminole · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 18 | 24E | 1.93 GHz - 1.99 GHz | 16.00 mW | GXW | Amp |

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
Single Channel Amplifier
Equipment Class
AMP - Amplifier