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OJFLITENNA0LF0SB0In Building Repeater

Corning Optical Communication LLC
In Building Repeater - FCC ID OJFLITENNA0LF0SB0 - Corning Optical Communication LLC
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Nov 21, 2000
Application Purpose
Original Equipment
Date of Application
Nov 21, 2000
Equipment Note
In Building Repeater
Frequency Range
928.00000000 - 940.00000000
Company
Corning Optical Communication LLC
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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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

Installation Guide Copyright 1999 Preliminary Document Litenna TM Installation Guide Foxcom Wireless Proprietary Information Document No. 42-93-005-23D 2 Installation Guide Foxcom Wireless Ltd. Ofek One Center Building B Lod, Israel 71293 Tel: +972-8-918-3888 Fax: +972-8-918-3844 Foxcom Wireless Inc. 8150 Leesburg Pike, Suite 600 Vienna, VA 22182 Tel: 703-848-0200 Fax: 703-848-0280 website: www.foxcomwireless.com email: [email protected] This manual contains PROPRIETARY and CONFIDENTIAL information of Foxcom Wireless. Reproduction, release to any third party, or any other unauthorized use, of any information contained herein is expressly prohibited. Litenna Installation GuideTable of Contents Foxcom Wireless Proprietary Information Document No. 42-93-005-23D3 Table of Contents Front Chapter................................ ................................ ................................ ...................... 6 Policy for Warranty and Repair ................................ ................................ .......................... 6 Reporting Defects................................ ................................ ................................ ..............8 Conventions................................ ................................ ................................ ....................... 8 Precautions ................................ ................................ ................................ ........................ 8 Introduction to Litenna................................ ................................ ................................ ..... 10 Litenna TM Models ................................ ................................ ................................ ............ 10 Features................................ ................................ ................................ ........................... 11 Product Drawings................................ ................................ ................................ ............ 12 Required Equipment................................ ................................ ................................ ......... 15 Test Procedures ................................ ................................ ................................ ............... 16 Installation ................................ ................................ ................................ ......................... 20 General Installation................................ ................................ ................................ .......... 20 Fiber Installation ................................ ................................ ................................ ..............21 High Rise Installation................................ ................................ ................................ ....... 25 Horizontal Layout Installation................................ ................................ .......................... 27 Optical and RF Connections ................................ ................................ ............................. 28 Base Unit................................ ................................ ................................ ......................... 28 Remote Hub Unit................................ ................................ ................................ ............. 28 Alarm Monitoring ................................ ................................ ................................ ............. 29 Power Supply for Litenna ................................ ................................ ................................ . 30 Option One................................ ................................ ................................ ......................31 Option Two ................................ ................................ ................................ .....................31 Option Three ................................ ................................ ................................ ...................31 Optical Test Procedure................................ ................................ ................................ ...... 32 Fiberoptic Cable Test................................ ................................ ................................ ....... 32 Fiberoptic Cable – Terms................................ ................................ ................................ . 32 Foxcom Wireless System Characteristics................................ ................................ .......... 37 Fiberoptic Cable Measurement Tests................................ ................................ ................ 37 Optical Insertion Loss Measurement Test ................................ ................................ ........ 38 Optical Return Loss Measurement Test................................ ................................ ............ 40 Results................................ ................................ ................................ ............................. 41 Summary................................ ................................ ................................ ......................... 41 Final Test ................................ ................................ ................................ ........................... 42 Table of ContentsLitenna Installation Guide 4 Document No. 42-93-005-23D Foxcom Wireless Proprietary Information Base Unit and Remote Hub Unit Connections ................................ ................................ .. 42 Maintenance / Mechanical Adjustment................................ ................................ ............ 43 Troubleshooting................................ ................................ ................................ .................43 Appendix A Link Measurements Form ................................ ................................ ............ 45 List of Figures Figure 1 - Base Unit 4 ports................................ ................................ ............................…

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Users Manual

In-Building RF Distribution System ©Sadna 5/2000 © Foxcom Wireless 2000. Doc. No. 42-13-002-20-A E-mail: [email protected] Website: www.foxcomwireless.com 8150 Leesburg Pike Suite 600 Vienna, Virginia 22182 Tel: 703-848-0200 Fax: 703-848-0280 Foxcom Wireless Inc. Ofek One Center - Building B Northern Industrial Zone Lod, Israel 71293 Tel: +972-8-918-3888 Fax: +972-8-918-3844 Foxcom Wireless Ltd. Ordering Information Product Single Band Family 9A110 = AMPS/TDMA 800 9A112= LMR 800 9A130 = CDMA 800 9A220 = GSM 900 9A320 = GSM 1800 9A330 = CDMA 1800 9A410 = TDMA 1900 9A420 = GSM 1900 9A430 = CDMA 1900 Dual Band Family 9B320 = Dual band GSM 900/1800 Reserved Part RHU = Remote Hub Unit B4U = Base Unit Four Ports B8U = Base Unit Eight Ports 9XXXX - XXX - XX Mechanical Dimensions The Litenna™, fiberoptic based distribution system, enables wireless service operators and integrators to provide seamless coverage and enhanced cellular capacity for In-building applications. Comprised of a Base Unit that connects up to eight Remote Hub Units (driving up to four antennas each), the fiberoptic technology based system is modular and expandable to a wide variety of structure sizes and configurations. The Litenna supports wireless voice and data applications, offering a cost-effective and flexible solution for coverage enhancement. E-mail: [email protected] Compliant with all existing wireless voice and data services Supports GPRS, EDGE, CDPD and WAP technologies Easily upgradable from single band to multi band and future services, 3G ready Single infrastructure for multiple services/ multiple ope rators Built-in alarms / monitors for all channels Singlemode fiberoptic cables connect between the system units Easy to design, install and maintain For Indoor use only. All specifications are subject to change without prior notice. Order Code SC/APC-J-5 LPS-25-48 LPS2-100-48 LPS2-300-48 Available Accessories SC/APC Jumper Local Power Supply Fully Redundant Power Supply Fully Redundant Power Supply 5m 25W 110/220V 100W 110/220V 300W 110/220V Supported Standards UL/DL (MHz) CDMA 800 TDMA/AMPS 800 LMR 800 GSM 900 CDMA 1800 GSM 1800 CDMA 1900 TDMA 1900 GSM 1900 824-849 / 869-894 806-824 / 851-869 890-915 / 935-960 1715-1780 / 1805-1870 1710-1785 / 1805-1880 1850-1910 / 1930-1990 STANDARDS Remote Hub Unit 19” 12” 1U Base Unit Base Unit Front Panel Base Unit Back Panel 11” 8” Remote Hub Unit Front Panel RF In RF OutAlarm Optical In/Out Optical In Optical Out Cellular Antennas 2” Litenna™ Base Unit Fiberoptic Tx #1 Fiberoptic Tx #8 Fiberoptic Rx #1 Fiberoptic Rx #8 Down Link Up Link RF Out (Sector 1) RF Out (Sector 2 Opt.) RF In (Sector 1) RF In (Sector 2 Opt.) Litenna™ Block Diagram Litenna™ RHU #8 Fiberoptic Rx #8 Fiberoptic Tx #8 HPA LNA Filters & Diplexers RF RF Litenna™ RHU #1 Fiberoptic Rx #1 Fiberoptic Tx #1 HPA LNA Filters & Diplexers RF RF Composite Cable Specifications Specifications Cable Type Copper Diameter Standard Compliance Single Mode Fiber 2.8 mm Tight Buffer Jacket 18AWG UL Listed Cable / IEC -332-33 Absolute Maximum Rating Specifications Total Input RF Power (dBm) Power Supply (V) Operating Temperature (ºC) 1 Storage Temperature (ºC) Base UnitRemote Hub Unit 1. For extended temperature range (-20 to 60ºC) contact Foxcom Wireless. 20 60 0 to +50 -40 to +85 10 60 0 to +50 -40 to +85 General Technical Specifications 1310±10 3dB 9/125 single mode 0.5 dB maximum ≥1.0 500 @ 48VDC / 250 @ 27VDC 2000 Optical Specifications Other Specifications 1. Distance increases with correlation to cable diameter. Wavelength (nm) Max. Optical budget (dB) Fiber type Optical loss per mated pair connectors Optical output power (mW) Distance between BU and RHU (m) @18AWG( 1 ) DC power is supplied via composite cable DC power is supplied directly to RHU Physical Specifications SpecificationsBase UnitRemote Hub Unit 18-48VDC - DC input or: 27-48VDC - fed through composite cable 10 W max. Singleband 15 W max. Dualband 11”W x 8”L x 2”H N Type Female SC/APC Power Dimensions RF Connector Optical Connector 18-48VDC 8W max. when driving 8 RHUs 4W max. when driving 4 RHUs 19” x 1U N Type Female SC/APC Downlink Nominal Output Power At Antenna Port Per Carrier per band(dBm) Composite 2 carriers 3 carriers 10 carrie Nominal Gain at Antenna Port (dB) Nominal Input Power Per Carrier per band (dBm) Composite 2 carriers 3 carriers 10 carriers Gain Flatness (dB) Over Band Over Block Max. Second Order Intermodulation Distortion (IMD) (dBm) Max. Intermodulation Distortion (IMD) (dBm) Waveform Quality ( ) at Max. Power Spurious Emission (BW=30kHz) (dBc) System Group Delay (μ s) Link Specifications CDMA GSM LMRTDMA – -13 >0.96 >45@± 885 KHz <0.1 – -13 – – – RF Specifications 1900 17 14 12 7 10 7 4 2 -3 ±2.0 ±1.4 800 20 17 15 10 14 6 3 1 -4 ±1.5 ±1.2 800 20 17 15 10 14 6 3 1 -4 ±1.5 ±1.2 – -13 – – – Dual Band 900/1800 10 7 – – 7 3 0 – – ±1.8 – -36/-30 -36/-30 – – 1900 17 14 12 7 10 7 4 2 -3 ±2.0 ±1.4 – -13 1800 11 8 6 1 7 4 1 -1 -6 ±1.8 – – -30 – – – 900 11 8 6 1 7 4 1 -1 -6 ±1.8 – – -36 1900 14 10 9 – 10 4 1 -1 – ±2.0 ±1.4 1800 14 10 9 – 10 4 1 -1 – ±1.8 – 800 14 10 9 – 14 0 -3 -5 – ±1.5 ±1.2 Uplink Nominal Gain At Antenna Port (dB) Min. Input IP3 (dBm) Max. NF (dB) Gain Flatness (dB) Over Band Over Block SFDR (dB) Waveform Quality ( ) at Max. Power Spurious Emission (BW=30kHz) (dBc) System Group Delay (μ s) 800 7 -2 20 ±1.5 ±1.2 Link Specifications CDMA GSM LMR 1800 7 -2 20 ±1.8 – 1900 7 -2 16 ±2.0 ±1.4 74 900 7 -2 20 ±1.8 – 1800 7 -2 20 ±1.8 – 65 – – – 1900 7 -2 16 ±2.0 ±1.4 TDMA Dual Band 900/1800 7 -2 20 ±1.8 – 65 – – – 800 7 -2 20 ±1.5 ±1.2 72 – – – 800 7 -2 20 ±1.5 ±1.2 72 1900 7 -2 16 ±2.0 ±1.4 74 72 >0.96 >45@± 885 KHz <0.1 – – – Alarm Specifications Base Unit Alarms The Litenna™ Base Unit alarms are Dry Contacts and Open Collector types. The Dry Contacts opens when the alarm is active. The Open Collector will sink up to 30mA under alarm condition. All alarms are connected to the Base Unit rear panel 25 pin D type connec…

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Attestation Statements

Thomas N. Cokenias EMC &Radio Approvals Test & Consulting Services for Commercial, Military, International Compliance P.O. Box 1086 El Granada, CA 94018 23 October 2000 FCC Laboratory 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 Ltd. FCC ID: OJFLITENNA0LF0SB0 To whom it may concern, Request is hereby submitted, on behalf of my client FOXCOM 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 Block Diagram Theory of operation 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. The $135 fee for confidentiality has been submitted along with the fee for certification. If you have questions or need further information, please contact the undersigned. Sincerely, THOMAS N. COKENIAS EMC Consultant/Agent for Foxcom Ltd. Tel 650 726 1263 fax 650 726 [email protected]

External Photos

FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 1 EXHIBIT 9. PHOTOGRAPHS OF THE LITENNA™ MODELS 9A110, 9A130, 9A112, 9A212 – INTER N FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 2 Base Unit BASE STATION LOW FREQUENCY FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 3 FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 4 Remote Hub Unit FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 5 FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 6 FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 7 LOW BAND AMPS CDMA TDMA FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 8 LMR IDEN FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 9 LOW BAND SMR FCC ID: OJFLITENNA0LF0SB EHXIBIT 9 Page 10 PAGING 900

ID Label/Location Info

FCC ID: OJFLITENNA0LF0SB0 FCC ID LABEL . Page 1 FCC ID LABEL FCC ID: OJFLITENNA0LF0SB0 FCC ID LABEL . Page 2 Pursuant 47CFR Section 2.983(f) see the identification label of Litenna™: Note: Base Unit Model: B8U, B4U, B2U, B1U Remote Unit Model: R1U, R4U AMPS/TDMA 800 Model: 9A110 CDNA 800 Model: 9A130 LMR/iDEN 800 Model: 9A112 SMR 900 Model: 9A212 Paging 900 Model: 9A240 Litenna TM Base Unit Model #: 9A110-B8U Serial #: H102500 Litenna TM Remote Hub Unit Model #: 9A110-R4U Serial #: H1025001 FCC ID #: OJFLITENNA0LF0SB0 .

Operational Description

FCC ID: OJFLITENNA009A400 EXHIBIT 4. Page 1 EXHIBIT 4. DESCRIPTION OF THE CIRCUIT FUNCTIONS AND BLOCK DIAGRAM. FCC ID: OJFLITENNA009A400 EXHIBIT 4. Page 2 The following is a copy of description of the circuit functions and block diagram of Litenna™ Models 9A410, 9A420 and 9A430. 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 CDMA, TDMA and GSM services (1930-1990 MHz down, 1850-1910 MHz up). For the downlink, the nominal total output power from the antenna ports is 17 dBm per port for Models TDMA and GSM, and the nominal total output power from the antenna ports is 14 dBm per port for Model CDMA. The system is designed for indoor use in public buildings such as offices, shopping malls, etc. FCC ID: OJFLITENNA009A400 EXHIBIT 4. 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. 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 attenuator), tw o others low power amplifiers and a two way splitter. The signals passes an power amplifiers and duplexer (for separating- between the transmitted signals and the received signals. Then each one of the signal splits again to two signal and we connect the signals to four antennas. In the receive course, we sum the signals from all the four antennas, 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. FCC ID: OJFLITENNA009A400 EXHIBIT 4. Page 4 Optical Fiber BaseRem ote Downlink RF in Uplink RF out 4 Uplink RF out 3 Uplink RF out 2 Uplink RF out 1 Downlink Uplink A tt. 3db A tt. Laser D iode. P hoto D iode. LN A G =15db A tt. 3-20db LN A G =13db LN A G =13db Saw P hoto D iode. LN A G =15db A tt. 3db Splitte r 1:4 D uplexer LN A G =22db A tt. 5-20db LN A G =12.5db Laser D iode. P o rt 1 . P o rt 2 . P o rt 3 . P o rt 4 . P o rt 4 . P o rt 3 . P o rt 2 . P o rt 1 . PA G =30db IP 3=50db Spiltte r 1:4 A tt. 3db Power Supply 18-48Vdc 7V-PA 5V Saw LN A G =12.5db -11 dB G AIN-19 dB G AIN40 dB G AIN 5.5 dB G AIN-19 dB G AIN 20.7dB G AIN

Operational Description

EXHIBIT 4. Page 1 EXHIBIT 4. DESCRIPTION OF THE CIRCUIT FUNCTIONS AND BLOCK DIAGRAM. EXHIBIT 4. Page 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 CDMA, TDMA and GSM services (1930-1990 MHz down, 1850-1910 MHz up). For the downlink, the nominal total output power from the antenna ports is 17 dBm per port for Models TDMA and GSM, and the nominal total output power from the antenna ports is 14 dBm per port for Model CDMA. The system is designed for indoor use in public buildings such as offices, shopping malls, etc. EXHIBIT 4. 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. 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 attenuator), tw o others low power amplifiers and a two way splitter. The signals passes an power amplifiers and duplexer (for separating- between the transmitted signals and the received signals. Then each one of the signal splits again to two signal and we connect the signals to four antennas. In the receive course, we sum the signals from all the four antennas, 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. EXHIBIT 4. Page 4 Optical Fiber BaseRem ote Downlink RF in Uplink RF out 4 Uplink RF out 3 Uplink RF out 2 Uplink RF out 1 Downlink Uplink A tt. 3db A tt. Laser D iode. P hoto D iode. LN A G =15db A tt. 3-20db LN A G =13db LN A G =13db Saw P hoto D iode. LN A G =15db A tt. 3db Splitte r 1:4 D uplexer LN A G =22db A tt. 5-20db LN A G =12.5db Laser D iode. P o rt 1 . P o rt 2 . P o rt 3 . P o rt 4 . P o rt 4 . P o rt 3 . P o rt 2 . P o rt 1 . PA G =30db IP 3=50db Spiltte r 1:4 A tt. 3db Power Supply 18-48Vdc 7V-PA 5V Saw LN A G =12.5db -11 dB G AIN-19 dB G AIN40 dB G AIN 5.5 dB G AIN-19 dB G AIN 20.7dB G AIN

Parts List/Tune Up Info

FCC ID: OJFLITENNA009A400 EXHIBIT 5B. Page 1 EXHIBIT 5B. ACTIVE PARTS LIST FCC ID: OJFLITENNA009A400 EXHIBIT 5B. Page 2 The following is a schematic diagrams and active parts list of Litenna™ Models 9A410, 9A420 and 9A430. List of Components of Base Unit P/NREF. DES.P/NREF. DES.P/NREF. DES. 255170001R25255171001R17255171003R3 255170001R272255171001R29255171003R6 255170001R20255171001R30255171003R28 255170001R121255171001R39255171003R32 255170001R242255171001R43255171003R33 255170001R252255171001R45255171003R36 255170001R89255171001R61255171003R42 255170001R57255171001R62255171003R44 255170001R262255171001R71255171003R49 255170100R35255171001R75255171003R60 255170100R131255171001R77255171003R64 255170100R51255171001R93255171003R65 255170100R147255171001R94255171003R68 255170100R67255171001R103255171003R74 255170100R83255171001R107255171003R76 255170100R99255171001R109255171003R81 255170100R115255171001R125255171003R92 255170365R157255171001R126255171003R96 255170365R7255171001R135255171003R97 255170365R193255171002R200255171003R100 255170365R175255171002R198255171004R142 255170825R178255171002R184255171004R136 255170825R179255171002R182255171004R133 255170825R196255171002R180255171004R111 255170825R161255171002R166255171004R110 255170825R197255171002R164255171004R104 255170825R10255171002R162255171004R101 255170825R160255171002R146255171004R143 255170825R11255171002R202255171004R79 255170909R177255171002R137255171004R37 255170909R9255171002R12255171004R78 255170909R195255171002R114255171004R72 255170909R34255171002R105255171004R69 255170909R66255171002R82255171004R47 255170909R98255171002R73255171004R46 255170909R130255171002R50255171004R40 255170909R159255171002R41255171210R281 255171001R139255171002R16255171210R240 255171001R141255171002R14255171210R282 FCC ID: OJFLITENNA009A400 EXHIBIT 5B. Page 3 P/NREF. DES.P/NREF. DES.P/NREF. DES. 255171001R163255171003R106255171210R250 255171001R165255171003R108255171210R260 255171001R167255171003R113255171210R270 255171001R181255171003R124255171210R279 255171001R183255171003R128255171210R280 255171001R185255171003R129255172430R190 255171001R199255171003R132255172430R204 255171001R1255171003R138255172430R239 255171001R201255171003R140255172430R249 255171001R13255171003R145255172430R2 255171001R203255171003R153255172430R4 255171001R244255171003R156255172430R18 255171001R254255171003R171255172430R259 255171001R264255171003R174255172430R152 255171001R274255171003R189255172430R269 255171001R15255171003R192255172430R154 255172430R168255249104C3255284102C195 255172430R170255249104C89255284102C191 255172430R172255249104C99255284102C183 255172430R186255249104C109255284102C213 255172430R188255249104CU2255284102C186 255172433R194255249104CU5255284102C212 255172433R158255249104CU7255284102C182 255172433R173255249104CU22255284102C209 255172433R8255249104CU26255284102C208 255172433R176255249104C7255284103C107 255172433R191255267476C4255284103C5 255172433R155255268106C68255284103C97 255172433R5255268106C81255284103C87 255175112R70255268106C82255284104C223 255175112R38255268106C83255284104C224 255175112R102255268106C86255284104C222 255175112R134255268106C28255284104C225 255175113R169255268106C29255284150C12 255175113R187255268106C32255284150C11 255175113R205255268106C45255284150C216 255175113R80255268106C46255284150C103 255175113R112255268106C47255284150C215 255175113R19255268106C1255284150C214 255175113R144255268106C50255284150C197 255175113R48255268106C27255284150C194 255175620R116255268106C63255284150R257 255175620R84255268106C64255284150R247 255175620R148255268106C65255284150R237 255175620R52255284005L12255284150C267 255176810R21255284005L9255284150C217 FCC ID: OJFLITENNA009A400 EXHIBIT 5B. Page 4 P/NREF. DES.P/NREF. DES.P/NREF. DES. 255180001L32255284005L6255284150C192 255180001L27255284005CX4255284150C189 255180001L62255284005CX3255284150C188 255180001L22255284005CX2255284150C185 255180001L61255284005CX1255284150C184 255180001L5255284005L15255284150C181 255180001L63255284005C180255284150C173 255180001L64255284005C17255284150C172 255249104C20255284005C179255284150C168 255249104C23255284005C178255284150C167 255249104C25255284005C177255284150C163 255249104C31255284005C71255284150C94 255249104C38255284005C53255284150C93 255249104C41255284005C35255284150C162 255249104C43255284012C105255284150C158 255249104C49255284012C95255284150C157 255249104C56255284012C115255284150C137 255249104C59255284012C13255284150C114 255249104C61255284102C187255284150C113 255249104C67255284102C190255284150C104 255249104C74255284102C205255284180C55 255249104C77255284102C204255284180C37 255249104C79255284102C201255284180C73 255249104C2255284102C200255284180C19 255249104C85255284102C196255286102C22 255286102C21255520029L14255640015U3 255286102C40255520029L11255640015U27 255286102C24255520065L56255640015U25 255286102C18255520065L55255641005U6 255286102C112255520065L53255650002U28 255286102C111255520065L52255650002U4 255286102C110255520065L50255711115J2 255286102C102255520065L59255716102J32 255286102C101255520065L58255716102J33 255286102C100255520065L49255716102J7 255286102C92255520065L31255716102J34 255286102C91255520065L26255716102J8 255286102C90255520065L21255716102J29 255286102C78255520065L4255716102J30 255286102C76255520560L3255716102J31 255286102C75255520560L30255850044R127 255286102C72255520560L25255850044R31 255286102C60255520560L20255850044R95 255286102C58255521002L18255850044R63 255286102C57255521002L19255850046R261 255286102C10255521002L23255850046R251 255286102C54255521002L24255850046R271 P/NREF. DES.P/NREF. DES.P/NREF. DES. FCC ID: OJFLITENNA009A400 EXHIBIT 5B. Page 5 255286102C39255521002L1255850046R241 255286102C42255521002L2255861002K4 255286102C8255521002L28255861002K3 255286102C9255521002L51255861002K1 255286102C36255521002L29255861002K2 255286150C161255521002L60265900013ITEM #B1 255286150C166255521002L57265920011ITEM #B3 255286150C176255521002L54265930011ITEM #B2 255286150C171255610001U22283060008PCB REV A 255310006Q2255610001U5 255310006Q6255610003U12 255310006Q8255610003U…

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RF Exposure Info

Gv‡rh  D†‡hyyh‡v‚BˆvqrA…‚‡8uhƒ‡r… Ds‚…€h‡v‚ p‚‡hvrq v ‡uv† q‚pˆ€r‡ v† p‚svqr‡vhy hq ƒ…‚ƒ…vr‡h…’ ‡‚ A‚‘p‚€ Xv…ryr†† G‡q hq €h’ ‚‡ ir qv†py‚†rq ‚… qˆƒyvph‡rq v‡u‚ˆ‡ ‡ur r‘ƒ…r††rq ƒr…€v††v‚ ‚s A‚‘p‚€ Xv…ryr†† G‡q 9‚pˆ€r‡ I‚ #!("$!"A ( !Srƒ‚…‡vt9rsrp‡† Uur ˆv‡† r…r v†ƒrp‡rq irs‚…r †uvƒ€r‡ hq s‚ˆq ‡‚ ir s…rr ‚s €rpuhvphy hq ryrp‡…vphy qrsrp‡† @‘h€vr ‡ur ˆv‡† s‚… h’ qh€htr uvpu €h’ uh‰r irr phˆ†rq v ‡…h†v‡ Ds qh€htr v† qv†p‚‰r…rq svyr h pyhv€ v‡u ‡ur s…rvtu‡ ph……vr… v€€rqvh‡ry’ I‚‡vs’ A‚‘p‚€ Xv…ryr†† h† †‚‚ h† ƒ‚††viyr Srsr… ‡‚ Q‚yvp’ s‚… Xh……h‡’ hq Srƒhv… s‚… sˆ…‡ur… qr‡hvy† I‚‡r Frrƒhyyƒhpxvt€h‡r…vhyˆ‡…

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Contact Information

Applicant

Dana Whitney(Director of Operations and Program)
[email protected]817-431-7894Fax: 817-431-7894

Technical Contact

T.N. Cokenias ConsultingThomas N Cokenias
[email protected]650-726-1263

355 El Granada Blvd. · El Granada, California · United States

Test Firm

Compliance Certification Services IncSteve Cheng
[email protected]408-463-0885Fax: 408-463-0888

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
79928 MHz - 940 MHz100.00 mWF1DAmp
Confidentiality
Long Term
Grant Notes
Power output is expressed as composite output of multiple carriers . Grant Conditions - The antenna(s) used with this transmitter must be fixed-mounted on outdoor permanent structures. RF exposure compliance is addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of Section 1.1307(b)(3).

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