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From: Tom Cokenias [[email protected]] Sent: Monday, May 07, 2001 4:21 PM To: [email protected] Subject: Re: FOXCOM WIRELESS LTD., FCC ID:OJFLITENNA0LF0SP1, AN01T1242 >Notice_content > ------------- >Question #1: Since only the remote hub contains RF transmitter, the proposed >FCC ID label should only be located on the remote hub. Please remove >the FCC ID label on the base station. ANS1 Modified label attached > >Question #2: Please provide the letter for requesting confidentiality. ANS2 Confidentiality letter attached > >Question #3: RF output : The RF output power levels indicated on the attached plots do not agree with the levels listed on the page 1 of test report. Plot number: >15,24,7,31,39 and 47. I reviewed the plots and believe measured data is consistent with design data, within allowed measurement variations. I have summarized data in the following table: Plot #IN/OUTModulationDesign Power Output, dBm Meas. Power, dBm 15OUTPUTCDMA247 + 10 log(1.25/0.030) = 23.2 dBm 24INPUTTDMA246.43 (input plot) 23OUTPUTTDMA2424.7 (output plot) 7OUTPUTAMPS2424.17 31OUTPUTLMR2424 39OUTPUTIDEN2425 47OUTPUTSMR2424.67 For plot 15, power was measured in 30 kHz, and emission bandwidth is 1.25 MHz. By adding 10*log(1.25/0.030) dB to the measured reading the power in the full bandwidth can be calculated and is within 1 dB of design maximum. Plot 24 is actually an input, Plot 23 is the TDMA output and is within a dB of the design maximum. I checked the others and they all seem to be within the design maximum as well. >Question #4: Page 2 of test report, under max. power rating. Please remove Part 24 reference. ANS4 Attached is new report with this change. >Question #5: Please note that the attenuation requirement for radiated spurious emissions as prescribed under Part 90.210(J) is 50 + 10log (p). Please justify >approval under Part 90 requirement. QUESTION 5 As you know, the product consists of two filter/amplifier units connected together by fiber optic cable. One unit, the base, connects via coax cable to the RF output of the building BTS. The building BTS units are separately certified by their manufacturer, the BTS units have audio filtering and meet the less stringent 90.210(i) mask (43 + 10logP attenuation). The upstream handsets have audio filtering as well. Since there are no frequency translating or generating circuits in the LITENNA products (only amplifiers), the output bandwidth of the LITENNA is a function of what is fed into the base station, and as this emission meets the 43+10logP attenuation requirement, that is all the LITENNA output is required to meet. Question #6: Please provide evaluation to satisfy RF exposure requirement. ANS 6 MPE information is attached. best regards Tom > >Best Regards > >Mike Kuo / TCB Certifier >The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information within 60 days of the original e-mail date may result in application dismissal and forfeiture of the filing fee. 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 e-mail address listed below the name of the sender.
TCB RF Exposure Review Procedure Statement FCC ID:OJFLITENNA0LF0SP1 Transmitter Category Device Type Product Category Approval and Review Procedures Used Specific Procedures: I Indoor Repeater Fixed Transmitters identified in Table 1 of §1.1307 Section B SP(1), SP(3), SP(7), SP(8) and SP(9) Grant Condition : Power output is expressed as composite output of single carrier. Output is specified at the antenna terminal on the remote HUB. The antenna(s) used for this transmitter are to be fixed-mounted on indoorpermanent structures providing a separation distance of at least 20 cm from all persons during normal operation.The maximum radiated output power at each antenna must satisfy the MPE Categorical Exclusion Requirementsof §2.1091. RF exposure compliance may need to be addressed at the time of licensing, as required by theresponsible FCC Bureau(s), including antenna co-location requirements of §1.1307(b)(3). SP1 EUT is a repeater. No duty cycle needs to be considered. Applicable FCC rule parts: Part 22, and 90. Output power ratings have been verified by comparingPage 13 of test report ( measured with power meter) and output plots (measured with Spectrum analyzer) SP3 Page 11 and 12 of Installation guide. RF exposure information to user specified 20 cm separation distance and specified the antenna gain can not over 10dBi SP7 Installation procedure has been fully described in Installation instruction provided by the applicant. The RF exposure warning information is placed atthe front chapter of document SP8 Page 11 and 12 of Installation Guide. SP9 Grant conditions have been reviewed by TCB and has made the determination that device complied with RF Exposure review procedures. Reviewed by Mike KuoCompliance Certification ServicesMay 8, 2001
tel: 650-726-1263 fax: 650-726-1252 [email protected] Thomas N. Cokenias EMC &Radio Approvals Test & Consulting Services for Commercial, Military, International Compliance P.O. Box 1086 El Granada, CA 94018 FCC Laboratory25 May 2001 7435 Oakland Mills Road Columbia, MD 21046 Attention: Application Examiner Reviewing Engineer Re: Request for confidentiality per Section 0.459 of FCC Rules Applicant: Foxcom Wireless Ltd. FCC ID: OJFLITENNA0L0SP1 To whom it may concern, Request is hereby submitted, on behalf of my client Foxcom Wireless Ltd., to withhold from public review certain portions of the application for equipment certification for the referenced FCC identifier. In particular, the following sections of the application and report are requested to be kept confidential: Schematics Active Parts List Rationale for request for confidentiality: Foxcom has invested considerable time and materials in research and development to produce the referenced product. Disclosure of the confidential portions of this application to competitors would give them competitive advantage in developing similar products. If you have questions or need further information, please contact the undersigned. Sincerely, THOMAS N. COKENIAS EMC Consultant/Agent for Foxcom Wireless Ltd.
FCC ID: OJFLITENNA0LF0SP1 Page 1 PHOTOGRAPHS OF THE LITENNA™ MODELS 9A112,9A110,9A130,9A212,9A240 -- EXTERNAL VIEW-- FCC ID: OJFLITENNA0LF0SP1 Page 2 Base Unit FCC ID: OJFLITENNA0LF0SP1 Page 3 FCC ID: OJFLITENNA0LF0SP1 Page 4 Remote Hub Unit FCC ID: OJFLITENNA0LF0SP1 Page 5 FCC ID: OJFLITENNA0LF0SP1 Page 6
FCC ID: OJFLITENNA0LF0SP1 Page 1 FCC ID LABEL/Location Info FCC ID: OJFLITENNA0LF0SP1 Page 2 Pursuant 47CFR Section 2.983(f) see the identification label of Litenna™: Note: Models#: 9A110, 9A130, 9A112, 9A212, 9A240 Base Unit Model: B8U, B4U, B2U, B1U Remote Unit Model: R1U, R4U Location Info: Remote Hub Unit Model #: 9A110- R1U Serial #: JO228606 FCC ID: OJFLITENNA0LF0SP1 Base Unit Model #: 9A110-B8U Serial #: J0228605 FCC ID Label Location: FCC ID:OJFLITENNA0LF0SP1
FCC ID: OJFLITENNA0LF0SP1 Page 1 PHOTOGRAPHS OF THE LITENNA™ MODEL 9A112 – INTERNAL VIEW FCC ID: OJFLITENNA0LF0SP1 Page 2 Base Unit FCC ID: OJFLITENNA0LF0SP1 Page 3 Remote Hub Unit FCC ID: OJFLITENNA0LF0SP1 Page 4 PHOTOGRAPHS OF THE LITENNA™ MODEL 9A110 & 9A130 – INTERNAL VIEW FCC ID: OJFLITENNA0LF0SP1 Page 5 Base Unit FCC ID: OJFLITENNA0LF0SP1 Page 6 Remote Hub Unit FCC ID: OJFLITENNA0LF0SP1 Page 7 PHOTOGRAPHS OF THE LITENNA™ MODEL 9A212 – INTERNAL VIEW FCC ID: OJFLITENNA0LF0SP1 Page 8 Base Unit FCC ID: OJFLITENNA0LF0SP1 Page 9 Remote Hub Unit FCC ID: OJFLITENNA0LF0SP1 Page 10 PHOTOGRAPHS OF THE LITENNA™ MODEL 9A240 – INTERNAL VIEW FCC ID: OJFLITENNA0LF0SP1 Page 11 Base Unit FCC ID: OJFLITENNA0LF0SP1 Page 12 Remote Hub Unit FCC ID: OJFLITENNA0LF0SP1 Page 13
FCC ID: OJFLITENNA0LF0SP1 Page 1 PRODUCT DESCRIPTION and DESCRIPTION OF THE CIRCUIT FUNCTIONS AND BLOCK DIAGRAM. FCC ID: OJFLITENNA0LF0SP1 Page 2 The following is a copy of description of the circuit functions and block diagram of Litenna™ Model 9A240. RF in Sector 1 RF in Sector 2 Fiberoptic Tx #1 Fiberoptic Tx #8 Fiberoptic Rx #1 Fiberoptic Rx #8 Fiberoptic Rx #1 Fiberoptic Tx #1 Filters & Diplexers HPA LNA RF RF Litenna TM RHU #8 Litenna TM RHU #1Litenna TM Base Unit Fiberoptic Rx #8 Fiberoptic Tx #8 Filters & Diplexers HPA LNA RF RF Down Link Up Link RF o/p's Sector 1 RF o/p's Sector 2 Litenna general description The Litenna system is intended to provide the user with a network for the placement of distributed antennas to provide in-building coverage and capacity for cellular telephone services. The system includes two major components, a base unit which interfaces typically with microcell equipment and remote units which are distributed throughout the building and are hubs for antennas. The signals in the forward direction (downlink) from the microcell to the mobile stations (cellular telephones) are carried via optical fiber from the base unit to the remote units. The signals in the reverse direction (uplink) from the mobile to the microcell are similarly carried along a different fiber to the base unit. Functionally, the system behaves as a repeater, with gain/attenuation as appropriate. No signal processing/modification, or RF modulation takes place in the system. The base unit is connected via coaxial cable (and attenuators, splitters...) to the microcell equipment, or an off-air repeater. The remote unit ports connect via coaxial cables to indoor antennae, which we do not supply. The components in the RF system (aside from discrete passives) are amplifiers, splitters/combiners, filters, lasers and photodiodes. There are no oscillators used in the system. The amplifiers are class A bias, except for the output power amplifiers for the downlink, which are class AB bias. The system is designed for the Paging services (929-942 MHz down, 896-902 MHz up), SMR (935-941 down,896-902 up), cellular CDMA – TDMA-AMPS services (869-894 MHz down, 824-849 MHz up), iden services (851-869 MHz down, 806-824 MHz up). For the downlink, the nominal total output power from the antenna ports is 24 dBm per port. The system is designed for indoor use in public buildings such as offices, shopping malls, etc. FCC ID: OJFLITENNA0LF0SP1 Page 3 Litenna explanation Block Diagram Litenna-in building coverage system The litenna system consist of two part: the base unit that connects to the microcell in one side and in the other it is connected to the remote unit that transmit the signals to the antennas and receive the signal from them. Left side shows the inputs/outputs of the system parts shows the internal structure of the BASE unit. The BASE unit can be consist of two equal boards (for 8 channels). Every board has four courses with optical output, optical input, RF input and common RF in. shows the splitting of the RF input to the BASE unit to every course of the laser circuits that converts the RF signal to a light signal and exits it through the optical fiber to the remote unit. Remark: we can combine uplink signals to one port, inside or outside the base unit. Right side shows the basic structure of the receiver course. A photodiode receive the optic signal and converts it to RF. Then the signal pass trough an Amplifier and exits the unit. shows the basic structure of the REMOTE unit: The photodiode receives the light and converts it back to RF signal. The signal pass trough an amplifier, through a vca (voltage Controlled attenuation) and two others low power amplifiers. The signals passes an power amplifiers and duplexer (for separating- between the transmitted signals and the received signals. Then each one of the signals connects the antenna. In the receive course, we sum the signals from the antenna , pass the signal to the receive course, filtering the needed frequencies, controlling the level of the signal through a vca (voltage- controlled attenuator, amplify the signal and convert it to light that passes through the optical fibers to the BASE unit.
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CALCULATION OF RF HAZARD LIMITS (MPE) FOXCOM WIRELESS LTD FCC ID: OJFLITENNA0LF0SP1 RF Hazard Distance Calculation Maximum antenna gain, per user manual: 10 dBi mW/cm2 from Table1:0.60 = f/1500(f = 869 MHz) Max RF Power TX AntennaMPE P, dBmG, dBiSafe Distance, cm 24.010.018.3 Basis of Calculations: E^2/3770 = S, mW/cm2 E, V/m = (Pwatts*Ggain*30)^.5/d, meters d = ((Pwatts*G*30)/3770*S))^0.5Pwatts*Ggain = 10^(PdBm-30+GdBi)/10) NOTE: For mobile or fixed location transmitters, minimum separation distance is 20 cm, even if calculations indicate MPE distance is less
FCC CFR47 CERTIFICATION PARTS 22, 90 TEST REPORT FOR CELLULAR & LAND MOBILE RADIO REPEATER FCC ID:OJFLITENNA0LF0SP1 ISSUE DATE: March 22, 2001 Prepared for FOXCOM WIRELESS LTD. Ofek One Center Building B, Northern Industrial Zone Lod, Israel 71293 Tested by Electromagnetic Compatibility Test Facility of Israel Testing Laboratories (26 Hacharoshet, POB 211, Or Yehuda 60251, Israel) is located at Kfar Bin Nun, 99780 Israel TEL: +972-8-9797799 FAX: +972-8-9797702 AND Compliance Certification Services 561F Monterey Road Morgen Hill, CA 95307, USA TEL: (408) 463-0885 FAX: (408) 463-0888 FCC ID: FCC ID: OJFLITENNA0LF0SP1 0 T.N. COKENIAS CONSULTINGpage 0 of 25 TABLE OF CONTENTS PAGE 1.FCC CERTIFICATION INFORMATION ...................................................................................................... 1 2.TEST FACILITY ................................................................................................................................................ 4 3.ACCREDITATION AND LISTING ................................................................................................................. 4 4.MEASUREMENT INSTRUMENTATION...................................................................................................... 4 5.MEASURING INSTRUMENT CALIBRATION ............................................................................................ 4 6.UNITS OF MEASUREMENT ........................................................................................................................... 4 7.FCC 15.207 & 15.209 ................................................................................................................................... 5 8.TEST EQUIPMENT LIST................................................................................................................................. 6 9.EUT SETUP PHOTOS ....................................................................................................................................... 7 10.EXTERNAL I/O CABLE CONSTRUCTION DESCRIPTION.............................................................. 11 11.CONFIGURATION BLOCK DIAGRAM.................................................................................................12 12.PART 2: CERTIFICATION TEST REQUIREMENT:........................................................................... 12 SECTION 2.1046: RF POWER OUTPUT .............................................................................................................. 12 S ECTION 2.1047: MODULATION CHARACTERISTICS .................................................................................. 13 SECTION 2.1049: OCCUPIED BANDWIDTH ..................................................................................................... 13 SECTION 2.1051: SPURIOUS EMISSION AT ANTENNA TERMINALS......................................................... 14 SECTION 2.1053: FIELD STRENGTH OF SPURIOUS RADIATION................................................................ 15 SECTION 2.1055: FREQUENCY STABILITY ..................................................................................................... 18 CHART OF PLOTS:................................................................................................................................................ 18 13.RF HAZARD PER 1.1310: CALCULATION OF DISTANCE................................................16 FCC ID: OJFLITENNA0LF0SP1 1 T.N. COKENIAS CONSULTING page 1 of 25 1.FCC CERTIFICATION INFORMATION The following information is in accordance with FCC Rules, 47CFR Part2, Subpart J, Sections 2.1033 – 2.1055. 2.1033(c)(1) A pplicant: Foxcom Wireless Ltd. Ofek One Center Building B, Northern Industrial Zone Lod, Israel 71293 Contact person: Shlomo Cohen Telephone number: 972-8-9183818 2.1033(c)(2) FCC ID: OJFLITENNA0LF0SP1 2.1033(c)(3)Instructions/Installation Manual Refer to Attachment : User’s Manual. 2.1033(c)(4)Type of emissions DXW (TDMA), F9W (CDMA), F8W(AMPS), F1D (Paging), GXW (iDEN), F3E (LMR), F3E (SMR) 2.1033(c)(5)Frequency Range DOWNLINKSERVICE 869-894 MHz AMPS/TDMA/CDMA 800 851-869 MHzLMR/iDEM 800 935-941 MHzSMR 900 929-942 MHzPaging 900 2.1033(c)(6)Range of Operation Power 18 dBm – 24 dBm maximum output, depending on modulation. Refer to Litenna Data Sheet, separate attachment, composite 1 carrier ModulationSpecification (dBm)I.T.L Data (dBm)I.T.L Data (W) (F9W) CDMA 8002424.20.263 (DXW) TDMA 8002425.170.328 (F8W) AMPS 8002424.670.293 (F3E) LMR 8002424.60.288 (GXW) iDEN 8002424.40.275 (F3E) SMR 9002424.40.275 (F1D) Paging 90024250.316 FCC ID: OJFLITENNA0LF0SP1 2 T.N. COKENIAS CONSULTING page 2 of 25 2.1033(c)(7)Maximum Power Rating 0.251 WATTS (24 dBm) Section 22.913(a); Maximum ERP . The effective radiated power (ERP) of base transmitters and cellular repeaters must not exceed 500 Watts. Section 90.205(i,j): Maximum Power. 30-500 watts. 2.1033(c)(8)Applied voltage and currents into the final transistor elements Refer to schematic 2.1033(c)(9)Tune-up/Optimizations Procedure Refer to installation manual 2.1033(c)(10) Complete Circuit Diagrams and Functional Diagram Refer to Schematics and Block Diagram . Confidentiality is requested for these items. 2.1033(c)(10a) Means for Frequency Stabilization Not Applicable. Eut is an amplifier type repeater. 2.1033(c)(10b) Means for Suppressing of Spurious radiation. SAW filter. See Repeater description. 2.1033(c)(10c) Means for Limiting Modulation. Not Applicable. Eut is a repeater. 2.1033(c)(10d) Means for Limiting Power. Software control 2.1033(c)(11) Equipment Identification Refer to separate Word attachment 2.1033(c)(12) Photographs FCC ID: OJFLITENNA0LF0SP1 3 T.N. COKENIAS CONSULTING page 3 of 25 Refer to separate Word attachment 2.1033(c)(13) Description of Digital Modulation Techniques N/A EUT is repeater. 2.1033(c)(14) Standard Test Condition The repeater was tested under the following conditions. DC Supply from AC-DC adapter: 24 VDC The amplifier was aligned and tuned up…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 7 | 9 | 929 MHz - 942 MHz | 316.00 mW | F1D | Amp |

Remote Unit, Radio Node
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
HRU Digital High Power Amplifier Module supporting PCS
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Low Band dRAU
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
digital Medium-power Remote Unit
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
digital Medium-power Remote Unit
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)