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P3YSPOTCELL0010Spotcell 163 IDEN CU

Spotwave Wireless Ltd.
Spotcell 163 IDEN CU - FCC ID P3YSPOTCELL0010 - Spotwave Wireless Ltd.
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Feb 04, 2004
Application Purpose
Original Equipment
Date of Application
Feb 04, 2004
Equipment Note
Spotcell 163 IDEN CU
Frequency Range
851.00000000 - 866.00000000
Company
Spotwave Wireless Ltd.
Country
Canada

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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Test Setup Photos

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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

Spotwave Wireless Inc.1 Hines Road, Ottawa ON K2K 3C7 Canada 780-00009-01-01 © 2003 Spotwave Wireless Inc. All rights reserved. Printed in Canada Spotwave and SpotCell are trademarks of Spotwave Wireless Inc. Patents pending. SpotCell Coverage Extension Kit Installation Guide SpotCell Coverage Extension Kit Installation Guide ™ www.spotwave.com 2. Extension antenna location The only limitations to mounting the extension antenna are the length of the RG6 cable and the minimum required distance (10 cm) separating the Auxiliary antenna and CU. The SpotCell Coverage Extension should be connected to the Coverage Unit (CU) only after the SpotCell 100 or SpotCell 200 system has been properly installed. The SpotCell Coverage Extension kit extends SpotCell system coverage into hard to reach places that are blocked by obstructions such as dense walls or shadowed by elevator shafts or duct work. 1. Parts List ! ! ! ! Extension antenna Adapter cable coax connector 25m RG6 cable 3. CU connection Connect the Adapter cable to the auxiliary antenna (MCX) connector on the back of the CU. The CU can be powered and operational while connecting the auxiliary antenna. 4. Adapter cable to RG6 Join the other end of the adapter cable to one end of the provided RG6 cable with the supplied connector. 5. Connect RG6 to Auxiliary Antenna Connect the other end of the RG6 cable to the F- connector on the auxiliary antenna. Finally, mount the antenna in a suitable location on the wall or ceiling. Extension Antenna Aux. Antenna connector LIMITED WARRANTY Spotwave Wireless Inc. warrants to the original Purchaser that the Spotwave SpotCell Coverage Extension is free from defects in material and workmanship undernormal use andservice foraperiodof12months fromthe dateofshipment fromSpotwave(the "Limited WarrantyPeriod"). CU Aux. Antenna greater than 10 cm Adapter cable Connector RG6 cable Adapter cable DU CU Auxiliary Antenna

Users Manual

SpotCell™ 163 USER MANUAL Affordable, reliable In-building wireless coverage solutions. Technical Support The SpotCell TM serial number must be available to authorize technical support and/or to establish a return authorization for defective units. The serial number is located on the back of the Coverage Unit (CU) and Donor Unit (DU) as well as the box in which they were delivered. Additional support information may be obtained by accessing the SpotwaveWireless Inc. website at www.spotwave.com. To contact support by telephone, call your local Spotwave vendor, or if you are unable to reach your vendor, contact Spotwave Wireless at 1-877-610- 9586. Important Safety Information Wa r n i n g ! For your safety, beware of power lines and ensure appropriate safety measures are maintained at all times during the installation of the SpotCell equipment. If equipment not shipped with the SpotCell system is to be used during installation or mounting, follow all equipment manufacturer’s instructions in proper use to ensure injury is avoided. The DU and CU of the SpotCell are low power transmitters. As with a cell phone antenna, avoid unneccessary contact with the front of the units after installed. Mount the units in a location where people will not approach within 1 meter of the front of the DU and 20 centimeters in front of the CU. When deploying the extended coverage antenna, there must be a minimum separation of 10 cm between the main CU and the extended coverage antenna with the antennas facing in opposite directions. The extended coverage antenna should be mounted in locations where people will not approach within 20 cm in front of the antenna This manual outlines installation instructions and the appendix offers practical safety tips (see page 35 entitled ‘Safety Hints’). If you are not sure about a safe installation, do not attempt to install it yourself. Call a professional installer for help. iiSpotCell 163 LIMITED WARRANTY AND LIMITATION OF LIABILITY: 1. What is Covered and for How Long? Spotwave Wireless Inc. ("Spotwave") warrants to the original Purchaser that the Spotwave SpotCell System (the "System") is free from defects in material and workmanship under normal use and service for a period of 12 months from the date of shipment from Spotwave (the "Limited Warranty Period"). 2. What is not covered? This Limited Warranty is conditioned upon proper use of the System by the Purchaser. This Limited Warranty does not cover (and will become null and void in the event of ): (a) defects or damage resulting from accident, misuse, abuse, neglect, unusual physical, electrical or electromechanical stress, modification of the System or any part thereof, or cosmetic damage; (b) removal, alteration or defacing of the serial number or other identifying marks on the System; (c) all plastic surfaces and other externally exposed components that are scratched or damaged due to normal use; (d) malfunctions resulting from the use of the System in conjunction with accessories, products or (ancillary) or peripheral equipment not provided by Spotwave; or (e) defects or damage from unauthorized or improper testing, operation, maintenance, installation, servicing or adjustment of the System. Any repairs or replacements provided by Spotwave outside of the Limited Warranty Period (including repairs to or replacement after the end of the Warranty Period), or in excess of the services provided during the Limited Warranty Period, will subject to Spotwave's then prevailing rates. 3. What are Spotwave's Obligations and how do you make a claim? During the Limited Warranty Period, Spotwave will repair or replace, at Spotwave's sole option, without charge to Purchaser, any defective component of the System, provided that the System is returned promptly upon discovery of the defect and during the Limited Warranty Period. To obtain service, Systems must be returned to an authorized service facility in the original packaging or packaging adequate for shipping, accompanied by Purchaser's sales receipt or comparable substitute proof of sale showing the date of purchase and the serial number of the System. A valid RMA is required prior to any return. To locate your nearest authorized service facility, call Spotwave Customer Service at 1-877-610-9586. Spotwave may, at Spotwave's sole option, use rebuilt, reconditioned, or new parts or components when repairing any System or replace a System with a rebuilt, reconditioned or new System. Repaired Systems will be warranted for a period equal to the remainder of the original Limited Warranty Period for the original System or for 90 days, whichever is longer. All replaced parts, components, boards or equipment shall become the property of Spotwave. If Spotwave determines that any System is not covered by this Limited Warranty, Purchaser must pay the costs for all parts, shipping, and labor charges for the repair or return of such System. 4. What are the Limits on Spotwave's Liability? EXCEPT FOR THE WARRANTY IN PARAGRAPH 1, THE SYSTEMS AND ANY ASSOCIATED SERVICES ARE PROVIDED BY SPOTWAVE ON AS 'AS IS' BASIS AND THERE ARE NO OTHER REPRESENTATIONS, WARRANTIES OR CONDITIONS, ,EXPRESS OR IMPLIED, WRITTEN OR ORAL, ARISING BY STATUTE, OPERATION OF LAW, COURSE OF DEALING, USAGE OF TRADE OR OTHERWISE, REGARDING THEM OR ANY OTHER PRODUCT OR SERVICE PROVIDED HEREUNDER OR IN CONNECTION HEREWITH BY SPOTWAVE. SPOTWAVE DISCLAIMS ANY IMPLIED WARRANTIES OR CONDITIONS OF DURABILITY, MERCHANT ABILITY, MERCHANTABLE QUALITY, SATISFACTORY QUALITY, NON- INFRINGEMENT OR FITNESS FOR A PARTICULAR PURPOSE. SPOTWAVE DOES NOT REPRESENT OR WARRANT THAT THE SYSTEMS WILL MEET ANY OR ALL OF PURCHASERS' PARTICULAR REQUIREMENTS, THAT THE SYSTEMS WILL OPERATE ERROR-FREE OR UNINTERRUPTED OR THAT ALL ERRORS OR DEFECTS IN THE SYSTEMS CAN BE FOUND TO BE CORRECTED. System performance is dependant upon the performance and availability of services or technology provided by third parties and Spotwave is not responsible for ser…

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Users Manual

potCell S ™ Quick Installation Guide www.spotwave.comSpotwave Wireless Inc. 1 Hines Road, Ottawa ON K2K 3C7 Canada 780-00004-01-IST © 2002 Spotwave Wireless Inc. All rights reserved. Printed in Canada Spotwave and SpotCell are trademarks of Spotwave Wireless Inc. Patents pending. If required, more detailed information on installing SpotCell can be found in the enclosed User Manual. 2. LocationThe DU can be mounted anywhere your cellphone works. This may be on a rooftop (typicalrural set-up), on the side of a building, or insidea building (typical downtown set-up). The CUwill be mounted inside the building where yourcell phone does not work.(The illustration atthe right depicts a typical installation.)To start the installation, place the DU and CUin the general areas where they are to be located.Do not physically mount them at this time.Maximum separation between the DU and CU,and back-to-back positioning are optimal whenboth are mounted indoors. For quick installation of SpotCell: For your safety beware of power lines and ensure that appropriate safety measures are maintained at all timesduring the installation of the SpotCell 100 equipment.Contact with high-voltage power lines could result in death or serious injury. , WARNING 6. Installation: DUAgain rotate the DU. When the LED turns green, stop the rotation. This is the direction the DU must face whenmounted. 10. Final Checklist1.Properly ground the DU via the grounding bolt.2.Ensure that there is a drip loop on the cable connecting to the DU. 3.Firmly affix the cable to the building where it runs between the DU and CU. Rotate 360° 3. InstallationConnect the DU and CU with the wrench and cable provided. Back of DU Cable connector Cable connector Grounding bolt LED 7. Installation: DUNow mount the DU. Typical installations are pictured below . Wall Mount Pipe Mount with Hose Clamp 4. Installation Set the switch on the bottom of the CU to “1” (install). Connect the power supply to the CU, then plug the adapterinto the AC outlet. 8. Installation: CU Move the switch on the bottom of the CU to “2” (active).Hold the CU in the location to be mounted. The LCD onthe bottom of the CU indicates coverage by the number ofbars; more bars indicate better coverage. Switch: install mode position DU (outward-facing unit) CU (indoor unit) 1. Parts List • Mounting kit • Donor Unit (DU)• Coverage Unit (CU) • Cable (80'/25 m) • Power supply 1 2 CHxxx In Service 5. Installation: DU In the location where the DU is to be mounted, rotate theunit in a complete circle. The LED on the back will turn redor green during the rotation. 9. Installation: CU Mount the CU from a wall or ceiling, close to the centre of the area requiring coverage. Rotate 360° Mounting bracket

ID Label/Location Info

LABEL, CU, IDEN PRODUCT 161-00001-04 NTS 1 1 03 JO NOTES: 1 - MATERIAL: INTENDED FOR USE ON 160-00001-XX LABEL STOCK. 2 - GRAPHICS COLOUR: BLACK. SEE NOTES ACTIVE IC: 4189A - 00000XXX PATENT(S) PENDING Spotwave Wireless Inc. www.spotwave.com XXXXXXXXXXX S/N: A0YYWWXXXXXXX MODEL NO.: 100-1XXXX-YY-ZZ Approved to PRODUCT IDENTIFICATION: (SEE NOTE 3) REFER TO THE LATEST REV. OF DOCUMENT 753-10000-01 TO IDENTIFY THE PRODUCT NAME AND MODEL NUMBER. 2 1 INSTALL 213845 USE ONLY WITH CSA CERTIFIED / UL LISTED CLASS 2 POWER SUPPLY MADE IN CANADA SERIAL NO. (SEE NOTE 4) A0 YYWW XXXXXXXXXX PLANT SPECIFIC SERIAL NO. YY/WW PLANT CODE (ASSIGNED BY SPOTWAVE) B SCALESHEET OF OTTAWA, CANADA SPOTWAVE WIRELESS INC. DWG. NO. REV. ALL DIMENSIONS INCHES 3rd ANGLE PROJECTION DRAWN BY ENG. APPROVAL PROJ. APPROVAL DATE DATE DATE FINISH: TOLERANCES .XX.XXX ANG ±. ±. ± ° NEXT ASSY REVISIONS DESCRIPTIONREV.DATE BY 3 - LINE 1: SEE PRODUCT ID. LINE 3: SERIAL NO. AS PER TABLE A 5 - FCC ID. (SEE TABLE A) 6 - INDUSTRY CANADA ID. (SEE TABLE A) 4 - ALL OTHER TEXT SIZE, FONT, SPACING AND ARTWORK SHALL CONFORM TO IMAGE. 01 NCAGE L1156 - TEXT - .115" HIGH, BOLD LINE 2: SEE PRODUCT ID. - TEXT - .090" HIGH - TEXT - .090" HIGH TABLE A 7 - TEXT FONT: ARIAL. PRODUCTINDUSTRY CANADA ID.FCC ID CU IDEN4189A - 00000XXXP3YSPOTCELL0010 RESERVED (DEFAULT 0 (ZERO)) UL 60950-00 A 161-00001-04-XX 8 - FOR REVISION OF PART NO. USE REV IN TITLE BLOCK. INPUT: 27VDC @ 0.75A; 5.8VDC @ 2A; LINE 4: TEXT - .090" HIGH 3.8VDC @ 0.5A JAN-26-04 FCC ID: P3YSPOTCELLXXXX

ID Label/Location Info

UNIT LABEL LOCATION

Parts List/Tune Up Info

This document contains information on a new product. Specifications and information are subject to change without notice WJ Communications, Inc • Phone 1-800-WJ1-4401 • FAX: 408-577-6621 • e-mail: [email protected] • Web site: www.wj.com April 2003 The Communications Edge TM AH116 ½ Watt, High Gain HBT Amplifier Preliminary Product Information Product Features • 800 – 1000 MHz • +28 dBm P1dB • +42 dBm Output IP3 • 17 dB Gain • Single Positive Supply (+5 V) • MTBF >100 Years • SOIC-8 SMT Package Product Description The AH116 is a high dynamic range driver amplifier in a low-cost surface mount package. The InGaP/GaAs HBT is able to achieve high performance over a broad frequency range with +42 dBm OIP3 and +28 dBm of compressed 1-dB power and is housed in an industry standard SOIC-8 SMT package. All devices are 100% RF and DC tested. The product is targeted for use as a driver amplifier for wireless infrastructure where high linearity and medium power is required. The internal active bias allows the AH116 to maintain high linearity over temperature and operate directly off a +5 V supply. This combination makes the device an excellent fit for transceiver line cards and power amplifiers in current and next generation multi-carrier 3G base stations. Functional Diagram Function Pin No. Vref 1 Input 3 Output 6, 7 Vbias 8 GND Slug N/C 2, 4, 5 Typical Specifications Parameters Units Min Typ Max Frequency Range MHz 800 880 1000 S21 - Gain dB 15.5 18 S11 - Input R.L. dB -15 S22 - Output R.L. dB -8 Output P1dB dBm +28 Output IP3 2 dBm +42 Noise Figure dB 7.0 IS-95 Channel Power @ -65 dBc ACPR, 9 Ch. Fwd dBm +16 Operating Current Range mA 200 250 300 Device Voltage V 5 Test conditions unless otherwise noted. 1. T = 25ºC, Vsupply = +5 V, Frequency = 880 MHz in recommended application circuit. 2. 3OIP measured with two tones at an output power of +13 dBm/tone separated by 1 MHz. The suppression on the largest IM3 product is used to calculate the 3OIP using a 2:1 rule. Absolute Maximum Rating Ordering Information Parameters Rating Part No. Description RF Input Power (continuous) +20 dBm AH116 ½ Watt, High Linearity HBT Amplifier DC Voltage / Current +8 V / 400 mA (Available in Tape & Reel) DC Dissipation Power 2W AH116-PCB880 Fully Assembled Evaluation Board, 900 MHz Operation of this device above any of these parameters may cause permanent damage. 1 2 3 4 8 7 6 5 This document contains information on a new product. Specifications and information are subject to change without notice WJ Communications, Inc. • Phone 1-800-WJ1-4401 • FAX: 408-577-6621 • e-mail: [email protected] • Web site: www.wj.com April 2003 The Communications Edge TM AH116 ½ Watt, High Gain HBT Amplifier Preliminary Product Information 880 MHz Application Circuit 50010001500 Frequency (MHz) Performance -40 -30 -20 -10 0 10 20 (dB) Typical Performance Application Circuit PC Board Layout Circuit Board Material: .014” FR-4, 4 layers (others added for rigidity), .062” total thickness, 1 oz copper Frequency 880 MHz S21 - Gain 18 dB S11 -15 dB S22 -8 dB Output P1dB 28 dBm Output IP3 42 dBm DC Bias 5V, 250mA NOTES: Install R4 for single supply voltage control. Remove R4 to adjust bias using V REF or adjust bias by changing R1. Align C9 at point 11. S11 S21 S22 RF IN C2 22 pF 22 pF C1 Ω 51 R3 L = 20 Z = 50 2, 4, 5 AH116 3 6 7 Z = 50 L = 5 4.7 pF - (8.5 pF) RF OUT C9 Z = 50 L = 20 100 pF C3 33 nH 1000 pF C5 1 100 R1 0 Ω Ω R4 8 L1 R2 22 Ω VREFVCC 10 pF C6 1000 pF C7 10 uF C4 This document contains information on a new product. Specifications and information are subject to change without notice WJ Communications, Inc • Phone 1-800-WJ1-4401 • FAX: 408-577-6621 • e-mail: [email protected] • Web site: www.wj.com April 2003 The Communications Edge TM AH116 ½ Watt, High Gain HBT Amplifier Preliminary Product Information Outline Drawing Land Pattern Product Marking The component will be marked with an “AH116” designator with a four- or five-digit alphanumeric lot code on the top surface of the package. Tape and reel specifications for this part is located on the website in the “Application Notes” section. ESD / MSL Information ESD Classification: Class 1B Value: Passes at 1000V Test: Human Body Model (HBM) Standard: JEDEC Standard JESD22-A114 MSL Rating: Level 2 Standard: JEDEC Standard J-STD-020A Mounting Config. Notes 1. Ground / thermal vias are critical for the proper performance of this device. Vias should use a .35mm (#80 / .0135”) diameter drill and have a final plated thru diameter of .25 mm (.010”). 2. Add as much copper as possible to inner and outer layers near the part to ensure optimal thermal performance. 3. Mounting screws can be added near the part to fasten the board to a heatsink. Ensure that the ground / thermal via region contacts the heatsink. 4. Do not put solder mask on the backside of the PC board in the region where the board contacts the heatsink. 5. RF trace width depends upon the PC board material and construction. 6. Use 1 oz. Copper minimum. 7. All dimensions are in millimeters (inches). Angles are in degrees. This document contains information on a new product. Specifications and information are subject to change without notice WJ Communications, Inc • Phone 1-800-WJ1-4401 • FAX: 408-577-6621 • e-mail: [email protected] • Web site: www.wj.com April 2003 The Communications Edge TM AH116 ½ Watt, High Gain HBT Amplifier Preliminary Product Information Typical Device Data S-Parameters (V D = +5 V, I D = 250 mA, T = 25°C, calibrated to device leads) Freq (MHz) S11 (dB) S21 (dB) S21 (ang) S12 (dB) S12 (ang) S22 (dB) S22 (ang) 50 -2.72 24.16 133.35 -36.72 29.75 -2.23 -102.97 100 -2.25 20.33 124.95 -35.31 13.96 -3.08 -137.03 200 -2.31 17.23 119.37 -34.90 2.32 -3.32 -159.63 300 -2.63 16.23 109.23 -34.22 -7.29 -3.30 -168.57 400 -3.08 15.63 98.28 -33.62 -16.36 -3.48 -172.70 500 -3.99 15.42 85.62 -33.01 -27.30 -3.14 -174.26 600 -5.79 15.58 69.70 -32.10 -37.73 -2.87 -176.25 700 -9.55 15.67 49.65 -31.23 -58.55 -2.69 -178.40 800 -19.72 15.22 25.60 -31.19 …

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Parts List/Tune Up Info

1 MHVIC915R2MOTOROLA RF DEVICE DATA The RF Line       !"# The MHVIC915R2 wideband integrated circuit is designed for CDMA and GSM/GSM EDGE applications. It uses Motorola’s newest high voltage (26 to 28 Volts) LDMOS IC technology and integrates a multi–stage structure. Its wideband On–Chip integral matching circuitry makes it usable from 746 to 960 MHz. The linearity performances cover all modulations for cellular applications: GSM, GSM EDGE, TDMA, and CDMA. The device is packaged in a PFP–16 flat pack package that provides excellent thermal performance through a solderable backside contact. •Typical CDMA Performance: 869–894 MHz, 27 Volts, I DQ1 = 80 mA, I DQ2 = 120 mA, 1–Carrier N–CDMA, IS–95 CDMA 9–Channel Forward Driver Application Output Power — 23 dBm Power Gain — 31 dB Adjacent Channel Power Ratio — –60 dBc @ 750 kHz in a 30 kHz BW –66 dBc @ 1.98 MHz in a 30 kHz BW Output Application Output Power — 34 dBm PAE = 21% Adjacent Channel Power Ratio — –50 dBc @ 750 kHz in a 30 kHz BW •Typical GSM Performance: 921–960 MHz, 26 Volts Output Power — 15 W P1dB Power Gain — 30 dB @ P1dB Drain Efficiency = 56% @ P1dB •On–Chip Matching (50 Ohm Input, >9 Ohm Output) •On–Chip Current Mirror g m Sensing FET for Self Bias Application •Integrated Temperature Compensation Capability •Usable for SCPA and MCPA Architecture •Integrated ESD Protection •Available in Tape and Reel. R2 Suffix = 1,500 Units per 16 mm, 13 inch Reel. PIN CONNECTIONS                                                       !            "#$ ! % &#&  % '#   ("  ("  ("  (" Order this document by MHVIC915R2/D $   SEMICONDUCTOR TECHNICAL DATA %&'( ) CASE 978–03 PFP–16 PLASTIC CDMA, GSM/GSM EDGE 746–960 MHz, 15 W, 27 V RF LDMOS WIDEBAND INTEGRATED AMPLIFIER  Motorola, Inc. 2003 REV 3 MHVIC915R2 2 MOTOROLA RF DEVICE DATA MAXIMUM RATINGS RatingSymbolValueUnit Drain–Source VoltageV DSS 65Vdc Gate–Source VoltageV GS –0.5, +15Vdc Storage Temperature RangeT stg –65 to +150°C Operating Junction TemperatureT J 150°C THERMAL CHARACTERISTICS CharacteristicSymbolMaxUnit Thermal Resistance, Junction to Case Driver ApplicationStage 1, 27 Vdc, I DQ = 80 mA (P out = 0.2 W CW)Stage 2, 27 Vdc, I DQ = 120 mA Output ApplicationStage 1, 27 Vdc, I DQ = 80 mA (P out = 2.5 W CW)Stage 2, 27 Vdc, I DQ = 120 mA GSM ApplicationStage 1, 26 Vdc, I DQ = 50 mA (P out = 15 W CW)Stage 2, 26 Vdc, I DQ = 140 mA R θ JC 5.07 3.73 3.41 °C/W ESD PROTECTION CHARACTERISTICS Test ConditionsClass Human Body Model1 (Minimum) Machine ModelM1 (Minimum) Charge Device ModelC4 (Minimum) MOISTURE SENSITIVITY LEVEL Test MethodologyRating Per JESD 22–A1133 ELECTRICAL CHARACTERISTICS (T C = 25°C unless otherwise noted) Characteristic SymbolMinTypMaxUnit CDMA FUNCTIONAL TESTS (In Motorola CDMA Test Fixture, 50 οhm system) V DS = 27 V, I DQ1 = 80 mA, I DQ2 = 120 mA, 880 MHz, 1–Carrier N–CDMA, IS–95 CDMA 9–Channel Forward Common–Source Amplifier Power Gain (P out = 23 dBm)G ps 2931—dB Power Added Efficiency (P out = 34 dBm)η—21—% Input Return Loss (P out = 23 dBm)IRL—–12–9dB Adjacent Channel Power Ratio (P out = 23 dBm) @ 750 kHz offset in 30 kHz BWACPR—–60–55dBc Adjacent Channel Power Ratio (P out = 34 dBm) @ 750 kHz offset in 30 kHz BWACPR—–50—dBc Gain Flatness @ P out = 23 dBm (865 MHz to 895 MHz)G F —0.20.4dB Bias Sense FET Drain Current V BSD = 27 V V BIAS BSG = V BIAS2 Q2 @ I DQ2 = 120 mA I BSD 0.81.21.6mA (continued) 3 MHVIC915R2MOTOROLA RF DEVICE DATA ELECTRICAL CHARACTERISTICS – continued (T C = 25°C unless otherwise noted) Characteristic SymbolMinTypMaxUnit PERFORMANCE TESTS (In Motorola Test Fixture, 50 οhm system) V DS = 27 V, I DQ1 = 80 mA, I DQ2 = 120 mA, 865–895 MHz Rating SymbolMinTypMaxUnit Quiescent Current Accuracy over Temperature (–10 to 85°C) at Nominal Value∆Iqt—±5—% Gain Flatness @ P out = 23 dBm (800 MHz to 960 MHz)G F —0.20—dB Deviation from Linear Phase @ P out = 23 dBm∅—±0.2—° Group Delay @ P out = 23 dBmDelay—2.2—ns Insertion Phase Window @ P out = 23 dBm (part to part)∆∅—±10—° GSM FUNCTIONAL TESTS (In Motorola GSM Test Fixture, 50 οhm system) V DS = 26 V, I DQ1 = 50 mA, I DQ2 = 140 mA, 921–960 MHz, CW Rating SymbolMinTypMaxUnit Output Power at 1dB Compression PointP1dB—15—Watts Common–Source Amplifier Power Gain @ P1dBGain—30—dB Drain Efficiency @ P1dBη—56—% Input return Loss @ P1dBIRL—–16—dB EVM @ 5 W——0.9—% Third Order Intermodulation Distortion (15 W PEP, 2 Tone 100 kHz spacing)IMD3—–30—dBc Drain Efficiency (15 W PEP, 2 Tone 100 kHz spacing)η—35—% MHVIC915R2 4 MOTOROLA RF DEVICE DATA  Z70.0504′′ x 0.480′′Microstrip Z80.0252′′ x 0.843′′Microstrip Z90.0252′′ x 0.167′′Microstrip Z100.040′′ x 0.850′′Microstrip Z110.025′′ x 0.400′′Microstrip Z120.020′′ x 0.710′′Microstrip PCBRogers 4350, 0.020′′, ε r = 3.50 Figure 1. MHVIC915 746–960 MHz Test Circuit Schematic Z10.0438′′ x 0.400′′50 Ω Microstrip Z20.1709′′ x 0.1004′′Microstrip (not including IC pad length) Z30.1222′′ x 0.1944′′Microstrip Z40.0836′′ x 0.3561′′Microstrip Z50.0438′′ x 0.2725′′Microstrip Z60.0504′′ x 0.3378′′Microstrip  )* +*  !+* ,   , ,   ,,,, , ,     (!-"                      % &#&  % '#  .  ,  "  (!-"  ,  "  ,  (!-" ("   (" Table 1. MHVIC915 746–960 MHz Test Circuit Component Designations and Values PartDescriptionValue, P/N or DWGManufacturer C1, C24.7 pF High Q Capacitors (0603)ATC600S4R7CWATC C3, C447 pF NPO Capacitors (0805)GRM40–001COG470J050BDMurata C5, C8, C10, C111 μF X7R Chip Capacitors (1214)GRM42–2X7R105K050ALMurata C610 μF, 50 V Electrolytic CapacitorECEV1HA100SPPanasonic C7, C9, C120.01 μF X7R Chip Capacitors (0805)GRM40X7R103J050BDMurata C138.2 pF NPO Chip Capacitor (0805)GRM40–001COG8R2C050BDMurata R1, R2, R51 kW Chip Resistors (0603)RM73B2AT102JKOA Speer R3, R4100 kW Chip …

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Parts List/Tune Up Info

OutlineLand Pattern(reference)Typical External Component onnection 1.6 19.8 KSS001 #1 #4 #2 #3 Pin Connection #1:VC VC-TCXO GND TCXO #2:GND #3:OUTPUT #4:Vcc 3.2 ± 0.15 1.35 ± 0.1 2.95 0.9250.925 0.8 0.8 5.0±0.15 3.81 5.21.2 4.9 2.9 (VC-)TCXO-208C TCXO, VC-TCXO Features ¡VC-TCXO for Personal Cellular Phone. ¡Because it is leadless type, automatic mounting is possible. ¡Ultra small size. (5×3.2×1.5mm) Micro scopic size ¡Reflow Soldering. ¡Low power consumption. Specifications Type *1 Item Standard Frequency12.8, 13.0, 14.4, 14.85, 15.36, 16.8, 19.2, 19.68, 19.8MHz Frequency Stability±2.5×10 –6 /-30~+80: *2 Aging±1×10 –6 MAX./year Supply Voltage+3V±5% Supply Current2.0mA MAX. Load10kΩ//10pF Output Level0.8V P-P MIN. (Required DC Blocking Capacitor) Start up time3m sec MAX. Frequency Deviation/ Voltage (only VC-TCXO)8~12×10 –6 /V (Positive) Capacity / Weight0.02cc, 0.06g *1 Please contact us for reflow. *2 Frequency Stability ±1.5×10 –6 /-20~+75: is available. TCXO-208C VC-TCXO-208C Dimensions(mm) OUTPUT OUTPUTVCC VCC VCGND VC 0.01μF 0.01μF 43 12 (TOP VIEW) * Vcc noise pass Capacitor and DC Blocking Capacitor do not build inside TCXO. Then Please place them around TCXO. Vcc noise pass Capacitor should be placed as close as possible to the pin(NO.4). (VC-)TCXO-208C

RF Exposure Info

Spotwave Wireless Inc. 1 Hines Road Ottawa ON K2K 3C7 Canada Tel: (613) 591-1662 Fax: (613) 591-8107 www.spotwave.com Maximum Permissible Exposure (MPE) Compliance Statement for the SpotCell 163 (IDEN, SMR Band) Adaptive Repeater for Uncontrolled Exposure (general population) and Occupational Workers (controlled exposure). The SpotCell 163 (806-821MHz paired with 851-866MHz) adaptive Repeater equipment has been tested and the performance characterized in accordance with the MPE requirement of 47 CFR, Part 1.1310, Radiofrequency Exposure Limits. The Power density prediction was done in accordance with the FCC Office of Engineering and Technology (OET) Bulletin 65, Edition 97-01, "Evaluating Compliance with FCC Guidelines for Human Exposure to Radiofrequency Electromagnetic Fields". The new adopted changes to the Commission's Rules Regarding Human Exposure to Radiofrequency Electromagnetic Fields, as specified in document FCC 03-132, released on June 26, 2003 have also been implemented. CU RF Exposure Limit (Downlink Transmit) The system is a low power adaptive repeater, having integral antennas built into the CU and DU modules. The maximum rated radiated power of the CU is +17dBm EIRP. (The RF rated power is +14dBm and the maximum antenna gain is +3dBi in the center). At maximum operating frequency of 866MHz in the Downlink, the MPE limit is 0.6W/cm 2 for the general public, averaged over 30 minutes, and 2.9mW/cm 2 for occupationally exposed persons averaged over 6 minutes time. The maximum exposure limit for the CU RF power is obtained in accordance with Table 1 of 47 CFR, Part 1.1310(Radiofrequency Radiation Exposure Limits), for RF Exposed workers and Table 1 (B) of 47 CFR, Part 1.1310 (Radiofrequency Radiation Exposure Limits) for persons not classified as RF exposed workers including the general public. For the general public, the maximum exposure limit is f/1500 mW/cm 2 or 0.6mW/cm 2 for a maximum frequency of 866MHz (f in MHz). (1) For the occupational workers, the maximum exposure limit is f/300 mW/cm 2 or 2.9mW/cm 2 for a maximum frequency of 866MHz (f in MHz). (2) The SpotCell 163 CU complies with these limits at the following line of sight distances from the antenna element for a maximum radiated rated power of +17dBm EIRP or 50mW: (3) For the general public, the maximum exposure limit of 0.6mW/cm 2 occurs at 2.6cm from the line of sight of the antenna element. For occupational workers, the maximum exposure limit of 2.9mW/cm 2 occurs at a distance of 1.2cm from the line of sight of the antenna element. Prediction Method The prediction method used is in accordance with guidelines outlined in OET Bulletin 65, Evaluating Compliance with FCC Guidelines for Human Exposure to Radiofrequency Electromagnetic Fields, Edition 97-01, August 1997. The prediction methods provided are based on worst-case far-field calculations; S = EIRP/(4πR 2 ), (4) Where S = power density in mW/cm 2 at a distance R from the radiating element. EIRP = radiated power in mW. R = distance in cm. Using this prediction method, for the CU of EIRP = 50mW (+17dBm), the distance at which the maximum exposure limit occurs for the general public is: S = 0.6mW/cm 2 (for the General Public, from (1) above). EIRP = 50mW (from (3) above). R = √ EIRP/(4πS) = 2.6cm (from equation (4) above). (5) For occupational workers, the Maximum Permissible Exposure (MPE) limit is 2.9mW/cm 2 , from (2) above. Using the same prediction method (4), the distance at which maximum exposure limit for occupational workers occurs is at: S = 2.9mW/cm 2 , from (2) above; EIRP = 50mW from (3) above; R = √ EIRP/(4πS) = 1.2cm, using equation (4) above. (6) The distance at which maximum exposure occurs is < 20cm for both the General Public and the Occupational workers. The CU is not going to be within 20cm of any human being when deployed and as such no warning label statements shall be applied. The antenna element is also housed within a radome which provides a separation > 1.5cm. The customer manual shall include deployment instructions warning installers that the CU shall never be installed in locations where any human being could be within 20cm of approach in front of the antenna. CU Extension Coverage RF port Exposure Limit The CU is also provisioned with a second RF port at the back of the CU to be used for extended coverage area by customers who wish to do so. The RF signal from the second RF port will be conducted via a coax cable to an external antenna with a maximum antenna gain…

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Contact Information

Applicant

Jay R Sengupta(Engineering Manager)
[email protected]613-591-1662Fax: 613-591-3601

Test Firm

Nemko Canada Inc.Stuart Beck
[email protected]613-737-9680Fax: 613-737-9691

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
190851 MHz - 866 MHz25.00 mWG7W
Confidentiality
Long Term
Grant Notes
Power listed is conducted and composite for multi-channel operation. Grant Conditions � The antenna(s) used for this transmitter are to be fixed-mounted on indoor permanent 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 Requirements of �2.1091. RF exposure compliance may need to be addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of �1.1307(b)(3).

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