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OOJOPENCELLV2-1OpenCell Radio Access Node Version 2

OpenCell Corp
OpenCell Radio Access Node Version 2 - FCC ID OOJOPENCELLV2-1 - OpenCell Corp
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Feb 17, 2004
Application Purpose
Original Equipment
Date of Application
Nov 18, 2003
Equipment Note
OpenCell Radio Access Node Version 2
Frequency Range
855.01250000 - 865.98750000
Company
OpenCell Corp
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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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

11/18/03 FCC ID: OOJOPENCELLV2-1 OPENCELL CORP. PROPRIETARY FCC ID: OOJOPENCELLV2-1 OPENCELL CORP. PROPRIETARY EXHIBIT 10 USER MANUAL Clear Control 4XD-G2Operations and Maintenance Manual1001537 A Clear Control 4XD-G2 OPERATIONS AND MAINTENANCE MANUAL Document No. 1001537 Revision A October 22, 2003 THIS DOCUMENT CONTAINS PROPRIETARY INFORMATION OF OPENCELL CORP. AND IS NOT TO BE USED FOR ANY PURPOSE, EXCEPT IN ACCORDANCE WITH CONTRACTUAL NONDISCLOSURE TERMS. THIS DOCUMENT IS NOT TO BE DUPLICATED IN WHOLE OR IN PART WITHOUT PRIOR WRITTEN PERMISSION FROM A DULY AUTHORIZED REPRESENTATIVE OF OPENCELL CORP. Clear Control 4XD-G2Operations and Maintenance Manual1001537 A OPENCELL CORP. PROPRIETARY Page i TABLE OF CONTENTS SectionPage 1INTRODUCTION ..................................................................................................................4 1.1REFERENCE DOCUMENTS...........................................................................................4 1.2ACRONYMS AND ABBREVIATIONS.........................................................................................4 1.3SYSTEM OVERVIEW..........................................................................................................5 1.3.1System Configuration ..................................................................................................5 1.3.2General Description .....................................................................................................6 1.4RAN SUBSYSTEM ASSEMBLIES......................................................................................7 1.4.1Central Processing Unit (CPU) ....................................................................................7 1.4.2System Interface (STF)................................................................................................7 1.4.3Synchronous Interface (SIF) ........................................................................................8 1.4.4RAN Down Converter (RDC).......................................................................................8 1.4.5RAN Up Converter (RUC)............................................................................................8 1.4.6RAN Chassis & Backplane ..........................................................................................8 1.4.7CompactPCI RAN Power Supply (RPS) ......................................................................8 1.4.8RAN Rectifier (RECT)..................................................................................................8 1.4.9Power Amplifier (PA) ...................................................................................................8 1.4.10PA Interface Controller (PIC) ...................................................................................8 1.4.11Multiplexers .............................................................................................................8 1.4.12PA Fans.................................................................................................................10 1.4.13Circuit Breakers .....................................................................................................10 1.4.14Battery Backup (BAT) ............................................................................................10 1.4.15Glitch Batteries (GB) ..............................................................................................11 1.4.16Multi-coupler (PCS SMR and Cell).........................................................................11 1.4.17Antenna (ANT).......................................................................................................11 1.5HUB SUBSYSTEM ASSEMBLIES....................................................................................11 1.5.1Base Station Interface Module (BIM) .........................................................................12 1.5.2Central Processing Unit (CPU) ..................................................................................12 1.5.3System Interface (STF)..............................................................................................12 1.5.4Synchronous Interface (SIF) ......................................................................................12 1.5.5HUB Down Converter (HDC).....................................................................................13 1.5.6Forward Simulcast Card (FSC) ..................................................................................13 1.5.7Reverse Simulcast Card (RSC) .................................................................................13 1.5.8HUB Up Converter (HUC)..........................................................................................13 1.5.9HUB Reference Module (HRM) .................................................................................13 1.5.10Ethernet Hub .........................................................................................................13 1.5.11RF CompactPCI Chassis & Backplane ..................................................................13 1.5.12Digital CompactPCI Chassis & Backplane .............................................................13 1.6COMMUNICATION INTERFACES.....................................................................................13 1.6.1I2C.............................................................................................................................13 1.6.2Network Interface ......................................................................................................14 1.6.3SNMP ........................................................................................................................14 2POWER ON/OFF PROCEDURES......................................................................................15 2.1HUB POWER-ON/OFF..................................................................................................15 2.2RAN POWER ON/OFF.....................…

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Cover Letter(s)

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 EXHIBIT 1 REQUEST FOR CONFIDENTIALITY

External Photos

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-1 EXHIBIT 6 PHOTOGRAPHS External Views Figure 6-1 RAN Front View 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-2 Figure 6-2 RAN Rear View 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-3 Figure 6-3 Detail of RF Connector Identification on Rear of RAN GPS PCS-Diversity PCS-Primary Cell-SMR Primary Cell-SMR Diversity 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-4 Figure 6-4 RAN Side View 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-5 Figure 6-5 RAN Antenna (Polarization Diversity Version) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-6 Figure 6-6 RAN Antenna (Spatial Diversity Version) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-7 Figure 6-7 RAN Antenna Mounted on Pole 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 6-8 Figure 6-8 RAN Enclosure Mounted on Pole

ID Label/Location Info

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 EXHIBIT 2 PRODUCT LABELING Figure 2-1 Proposed RAN Label 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 Figure 2-2 Photo of Rear of RAN Showing Location of Proposed Label (Bottom Right Hand Corner of Rear of RAN) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 Figure 2-3 Photo Showing Close-Up of Location of Proposed Label (Bottom Right Hand Corner of Rear of RAN)

Internal Photos

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-1 EXHIBIT 7 PHOTOGRAPHS Internal Views Figure 7-1 RAN, door open CPCI Chassis AC/DC Rectifiers Multiplexers Power Amp Compartment 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-2 Figure 7-2 RAN Compact PCI chassis 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-3 Figure 7-3 Multiplexers installed in RAN PCS Primary Quadplexer PCS Diversity Quadplexer 800 MHz Triplexer 800 MHz Diplexer 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-4 Figure 7-4 Quadplexer, PCS Primary (Transmitting Blocks A/B/F) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-5 Figure 7-5 Quadplexer, PCS Diversity (Transmitting Blocks C/D/E) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-6 Figure 7-6 Cellular/SMR Triplexer 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-7 Figure 7-7 Cellular/SMR Duplexer 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-8 Figure 7-8 Power Amplifiers installed in RAN Four (4) Power Amps 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-9 Figure 7-9 Power Amplifier 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-10 Figure 7-10 RUC Module, Top View 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-11 Figure 7-11 RUC circuit card (shield removed) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 7-12 Figure 7-12 RUC Module, Bottom View

Parts List/Tune Up Info

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 EXHIBIT 9 TUNE-UP INFORMATION No special hardware adjustments are required to set or adjust the transmit frequency. The operating frequency is set by the operating software’s channel selection capability.

RF Exposure Info

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 EXHIBIT 8 RF EXPOSURE INFORMATION The OpenCell system is categorically excluded from routine environmental evaluation for radiofrequency hazards per 47 CFR 1.1307. When operated and installed in accordance with the instructions, the OpenCell system complies with regulations for radiofrequency radiation exposure limits in accordance with 47CFR 1.1310.

RF Exposure Info

To: Diane Poole [email protected] FCC Equipment Authorization Branch From: Steven Maniglia [email protected] Applicant: OpenCell Corp FCC ID: 00JOPENCELLV2-1 Correspondence Reference Number: 26222 731 Confirmation Number: EA735929 Date of Response: 1/27/04 Subject: Response to questions from Diane Poole of the FCC dated 1/15/04. Question 1a Please provide details of the MPE analysis included in the operators manual on page 12 of 140. Answer 1a I assume that you are referring to the table showing the safe working distances on page 2 of the ClearControl Operations and Maintenance Manual. This table needs to be updated as follows. Worker Location Below Antenna * Beside Antenna Four WSP 10.2” 32.3” Eight WSP 14.3” 45.3” * “Below” is defined as a 100 degree cone, 50 degrees each side of the utility pole, with the tip of the cone at the base of the antenna. The analysis for the MPE limits is shown below. Maximum Permissable Exposure (MPE) limits Exposure Limit Type PCS Cell/SMR Controlled 5 mw/cm^2 2.7 mw/cm^2 General 1 mw/cm^2 0.533 mw/cm^2 ClearControl Effective Radiated Power (EIRP) The RAN/Antenna at 0 degrees elevation (even with antenna). Band RAN RF TX per Tenant Cable Loss (dB) Peak Antenna Gain Max EIRP (dBm) PCS 41.5 1.2 9.95 50.25 dBm (105.9 watts) Cell/SMR 38.5 1.0 3.45 40.95dBm (12.45 watts) Calculation of exposure levels Exposure levels S = EIRP (in milliwatts) / (4 * pi * D ^2), D is distance measured in cm. For safe approach. S calculated above must be less than the MPE for the band in question. Combining the two bands together Since the two bands, PCS and Cell/SMR, have different exposure limits they need to be combined as follows. % MPE (PCS) + % MPE (Cell/SMR) = 100% allowable MPE where MPE is Maximum Permissable Exposure) (EIRPpcs * # PCS Tenants) / (4*pi*D^2*MPEpcs) + (EIRPcellsmr*#CellSMR Tenants)/(4*pi*D^2*MPEcellsmr) = 1 Rearranging the above equation to solve for D Safe approach distance D = sqrt(((EIRPpcs*#PCS Tenants) / MPEpcs + (EIRPcellsmr * #Cellsmr Tenants) / MPEcellsmr) / (4*pi)) In performing this calculation it is determined that four PCS Tenants is the worst case. This is due to the higher output power and antenna gain at PCS. Computed Distance and exposure levels For the worst case of 4 PCS tenants measured at antenna height Total EIRP = 105.9 watts * 4 Tenants = 423600 mW D = sqrt(105900*4)/MPEpcs/(4*pi) For occupational exposure D = 82.1 cm (32.3 inches) 4 PCS Tenants measured from below the antenna. The antenna has at least 10 dB less gain when approached from below. Therefore, Total EIRP = 10.6 watts * 4 Tenants = 42360 mW For occupational exposure D = 26 cm (10.2 inches) To scale for 8 PCS Tenants, the distances are multiplied by the square root of 2 (1.4), therefore At antenna height, D = 82.1 * 1.4 = 115 cm (45.3 inches) Below antenna, D = 26 * 1.4 = 36.4 cm (14.3 inches) Question 1b Please include a confirmation that equations were applied in the far field of the antenna. Answer 1b The equations used were from page 19 of the OET Bulletin 65. Which predict power density in the far field of an antenna. Question 1c Please include details of the maximum power (including all transmitters) that can be transmitted from one antenna. Answer 1c The maximum power would be 6 PCS Tenants and two Cell/SMR Tenants. Therefore, the maximum output power is 6 *105.9 Watts + 2 * 12.45 Watts = 660.3 watts EIRP Question 2 Please verify if this is part 25? Answer 2 This is not Part 25, equipment class “PCB” (PCS Licensed Transmitter) would not be suitable for this equipment as it transmits on Cellular and SMR frequencies, as well as PCS frequencies. All references to Part 25 should be changed to part 24. When Form 731 was submitted, Part 24E did not show up as one of the menu items under “Rule Part Number”. The other Parts (i.e. Parts 22 and 90) needed did show up. As a substitute for Part 24, Part 25 was selected. The gentlemen that submitted Form 731, corresponded via Email, with a Mr. Ray LaForge on two separate occasions, November 19, 2003 and November 24,2003. At that time he requested all Part 25 references be changed to Part 24. Respectfully submitted, Steven Maniglia Director of Engineering OpenCell Corp Phone: (603)-206-2321

Test Report

11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-1 EXHIBIT 11 TEST RESULTS 11.1 Attestation 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-2 11.2 Test Instrumentation DescriptionModel Manufacturer Spectrum Analyzer8593EHewlett Packard Power MeterE4418BHewlett Packard Power Sensor8481HHewlett Packard Vector Signal Generator CS2010Celerity Attenuator46-30-34Weinschel Attenuator ATT-0219-10- NNN-02 Midwest Microwave Attenuator ATT-0333-20- SMA-02 Midwest Microwave Coupler2202B-30Narda CouplerCK-48NMicrolab/FXR Digital Multimeter75Fluke Temperature ChamberT20C-3Tenney Table 11-1 Test Instrumentation 11.3 Description of Input Signals and Modulation Types The Celerity signal generator was used to accurately simulate RF input waveforms from the provider’s Base Transceiver Station (BTS). Signals were injected into the Hub at power levels within normal operating ranges. Each modulation type was tested separately. Peak/Average Ratio dB ProtocolMod TypeChannel Bit Rate Single carrierMax carriers TDMA /4 DQPSK 48.6 kbps3.29.7 CDMA QPSK1.228 Mcps (chip rate)11.511.5 CDMA2000QPSK1.228 Mcps (chip rate)11.511.5 GSMGMSK270.8 kbps0.26.1 EDGE8-PSK812.5 kbps3.59.5 iDEN16QAM64 kbps9.110.3 Table 11-2 Input Signal Description 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-3 11.4 General Test Setups Spectrum Analyzer Atten Directional Coupler Attenuator RAN Power Meter RF out Figure 11-1 Test setup for power output, occupied bandwidth, and emission mask Atten RAN Spectrum Analyzer RF out Figure 11-2 Test setup for conducted spurious emissions Test Antenna and Mast Ground Plane Hub Chassis RF in -48 VDC Power Signal Generator Ethernet RAN #1 RF Loads Computer AC Power (240 VAC, 60 Hz) Fiber Optic Battery Box RAN #2 Turntable EMI Measurement System Fiber Optic Figure 11-3 Test setup for radiated spurious emissions (also see separate report) 11.5 Power Output 11.5.1 Test Procedure The RAN transmitter output was connected to the power meter and spectrum analyzer using a directional coupler and RF attenuators as shown in Figure 11-1. The Celerity vector signal generator was used to inject actual system input signal levels and modulation types into the Hub. 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-4 Average power was measured using the power meter. Peak power was measured by setting the analyzer to peak detector, max hold, with resolution bandwidth and video bandwidth set to 3 MHz. Peak power measurements were performed on a single carrier basis for each protocol within the PCS band. 11.5.2 Power Amplifiers At room temperature, the gain of the Cellular/SMR Power Amplifiers (PA) is 57 dB (+/-0.5 dB) and the gain of the PCS Power Amplifiers is 60 dB (+/-0.5 dB). The PA outputs were tested at their maximum operating level which is 1.0 dB higher than the nominal operating output power levels. The Power Amplifiers were at the maximum input level for all tests. It should be noted that any given PA will transmit only one modulation type. However, a RAN can have up to three PA outputs combined onto one RAN output port via the triplexer or quadplexer (passive devices). Each PA can have a different modulation type. Therefore, a single RAN output port will transmit different modulation types. The testing performed where multiple PAs where combined to a single RAN output port used TDMA signals. The intermod performance of the PA is worst case using narrowband signals; thus the reason for using TDMA signals. 11.5.3 Results Maximum rated power at any RAN RF output port is as shown in the table below. Less power may be present, depending on the number of tenants served and the specific protocols used. RAN RF output port designation Measured power level, dBm Equivalent Power, watts Reference Figure PCS-P47.353.7Figure 11-64 PCS-D47.353.7Figure 11-66 Cell/SMR-D42.517.8Figure 11-67 Cell/SMR-P39.517.8Figure 11-42 Table 11-3 Measured Maximum Power per RF Port Maximum power per tenant is as shown below. Each tenant resides within one specific PCS, cellular or SMR block. Slightly less power is transmitted for other protocols. 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-5 ServiceMaximum power level per tenant, dBm Equivalent Power, watts Reference Figures PCS42.517.8Figure 11-15 Figure 11-27 Cellular39.58.9Figure 11-41 Figure 11-42 SMR39.58.9Figure 11-60 Figure 11-63 Table 11-4 Measured Maximum Power per Tenant (per Block) 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-6 The table below summarizes the measured power output data. Measured power level, dBm ProtocolService# carriers AvgPeak Reference Figures CDMAPCS141.552.5Figure 11-5 CDMAPCS341.5Figure 11-6 CDMAPCS641.5Figure 11-7 CDMA2000PCS141.551.3Figure 11-9 CDMA2000PCS341.5Figure 11-10 CDMA2000PCS641.5Figure 11-11 GSMPCS142.542.9Figure 11-13 GSMPCS242.5Figure 11-14 Figure 11-15 GSMPCS442.5Figure 11-16 GSMPCS842.5Figure 11-17 EDGEPCS142.546.1Figure 11-19 EDGEPCS242.5Figure 11-20 Figure 11-21 EDGEPCS442.5Figure 11-22 EDGEPCS842.5Figure 11-23 TDMAPCS 142.545.7Figure 11-25 TDMAPCS 242.5Figure 11-26 Figure 11-27 TDMAPCS 642.5Figure 11-28 Figure 11-29 TDMAPCS 842.5Figure 11-30 CDMACell138.5Figure 11-32 CDMACell338.5Figure 11-33 CDMACell638.5Figure 11-34 CDMA2000Cell138.5Figure 11-36 CDMA2000Cell338.5Figure 11-37 CDMA2000Cell638.5Figure 11-38 GSMCell139.5Figure 11-40 GSMCell239.5Figure 11-41 GSMCell439.5Figure 11-42 GSMCell839.5Figure 11-43 EDGECell139.5Figure 11-45 EDGECell239.5Figure 11-46 EDGECell439.5Figure 11-47 EDGECell839.5Figure 11-48 TDMACell139.5Figure 11-50 TDMACell239.5Figure 11-52 11/18/03 FCC ID: OOJOPENCELLV2-1 FCC ID: OOJOPENCELLV2-1 11-7 TDMACell639.5Figure 11-54 TDMACell839.5Figure 11-56 TDMACell339.5Figure 11-53 iDENSMR139.5Figure 11-59 iDENSMR239.5Figure 11-60 iDENSMR439.5Figure 11-61 iDENSMR639.5Figure 11-62 iDENSMR839.5Figure 11-63 TDMAPCS6 each47.3Figure 11-64 Figure 11-66 TDMACell/SMR6 each42.5Figure 11-67 Table 11-5 Summary of Power Output Data 11.6 Occupied Bandwidth 11.6.1 Test Pro…

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Test Report

INTERTEK TESTING SERVICES NA, INC. EMC Report for OpenCell, Inc Part Number: OP-RAN2 and EX-RAN2 File: 3047900_ FCC_Emissions_01Page 2 of 22 Table of Contents 1.0Introduction and Conclusions.....................................................................................3 2.0Description of the Product..........................................................................................4 2.1Brief Description and Received Condition.................................................................4 2.2System Block Diagram................................................................................................4 2.3System Test Configuration..........................................................................................4 2.4Justification..................................................................................................................7 2.5Description of how EUT was exercised during test...................................................7 2.6Modifications Required for Compliance.....................................................................7 3.0Radiated Emission.......................................................................................................8 3.1Radiated Emissions Limits..........................................................................................8 3.2Field Strength Calculation...........................................................................................9 3.3Configuration Photographs - Worst-Case Radiated Emission.................................10 3.4Test Data...................................................................................................................11 4.0AC Mains Line-Conducted Emissions.....................................................................13 4.1Line-Conducted Emission Limits.............................................................................13 4.2Configuration Photographs - Worst-Case Line-Conducted Emission.....................14 4.3Test Data...................................................................................................................15 5.0Miscellaneous Information........................................................................................17 5.1Site Description.........................................................................................................17 5.2Test Procedure Reference........................................................................................18 5.3Labeling - USA..........................................................................................................19 5.4Labelling - Canada.....................................................................................................20 5.5Test Report Certification..........................................................................................21 5.6Equipment List..........................................................................................................22 INTERTEK TESTING SERVICES NA, INC. EMC Report for OpenCell, Inc Part Number: OP-RAN2 and EX-RAN2 File: 3047900_ FCC_Emissions_01Page 3 of 22 This report is designed to show compliance with the FCC Part 15, Subpart B Rules for an unintentional radiator. The test procedures, as described in American National Standards Institute C63.4-1992, were employed. 1.0Introduction and Conclusions On September 18, 2003, we tested the Opencell RAN (Base and Expansion Unit), Part Number OP- RAN2 (Base) and EX-RAN2 (Expansion), to determine if it was in compliance with the FCC Part 15, Subpart B, Class A emissions limits. We found that the unit met the requirements when tested as received. A description of the product and operating configuration, the various provisions of the rules, the methods for determining compliance, and a detailed summary of the results are included within this test report. Conclusion: In summary, this report verifies that the Opencell RAN (Base and Expansion Unit), Part Number OP- RAN2 (Base) and EX-RAN2 (Expansion), is compliant with the FCC Part 15, Subpart B, Class A requirements when production units conform to the initial sample. Please address all questions and comments concerning this report to Scott Lambert, Engineering Team Leader. INTERTEK TESTING SERVICES NA, INC. EMC Report for OpenCell, Inc Part Number: OP-RAN2 and EX-RAN2 File: 3047900_ FCC_Emissions_01Page 4 of 22 2.0Description of the Product 2.1Brief Description and Received Condition The OpenCell System consists of the RAN and the HUB. The RAN (Radio Access Node) is an RF transceiver operating in the PCS, Cellular and SMR bands (FCC Part 22, 24 and 90). The RAN is designed to be installed on utility poles along with a customer antenna. A prototype version of the sample was received on Thursday, September 18, 2003 in good condition 2.2System Block Diagram The diagram shown below details the placement of the equipment under test on the turntable. INTERTEK TESTING SERVICES NA, INC. EMC Report for OpenCell, Inc Part Number: OP-RAN2 and EX-RAN2 File: 3047900_ FCC_Emissions_01Page 5 of 22 2.3System Test Configuration Equipment Under Test: Opencell RAN (Base and Expansion Unit) Part Number: OP-RAN2 (Base) and EX-RAN2 (Expansion) Serial Number: Prototype FCC Identifier: Not Labelled Support Equipment: Laptop * Remotely Located *Manufacturer:Toshiba Model:TECRA 8200 Serial Number:51013969JU FCC ID:Not Applicable Ethernet Hub * Remotely Located *Manufacturer:NETGEAR Model:EN 104 TP Serial Number:ENT4B9A017065 FCC ID:Not Applicable AC Adapter * Remotely Located *Manufacturer:Toshiba Model:PA3048U-1ACA Serial Number:Not Labelled FCC ID:Not Applicable AC Adapter * Remotely Located *Manufacturer:NETGEAR Model:YP-040 Serial Number:Not Labelled FCC ID:Not Applicable Mouse * Remotely Located *Manufacturer:Microsoft Model:2.0 A 4217303 Serial Number:4217303 FCC ID:C3KSMP1 INTERTEK TESTING SERVICES NA, INC. EMC Report for OpenCell, Inc Part Number: OP-RAN2 and EX-RAN2 File: 3047900_ FCC_Emissions_01P…

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Contact Information

Applicant

Steven Maniglia(Director of Engineering)
[email protected]603-206-2321Fax: 603 206-2301

Technical Contact

OpenCell Corp.Ross G Hicks
[email protected](603) 206-2311

22 Cotton Road · NASHUA, New Hampshire · United States

Test Firm

Intertek Testing Services NA Inc.Roland Gubisch
[email protected]978-635-8500Fax: 978-263-7086

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
79855.0125 MHz - 865.9875 MHz8.9 W18K0D7W100 Hz
Confidentiality
Long Term

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