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P3YSPOTCELL0004Low Power Cellular Band Repeater (SCU unit)

Spotwave Wireless Ltd.
Low Power Cellular Band Repeater (SCU unit) - FCC ID P3YSPOTCELL0004 - Spotwave Wireless Ltd.
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Jul 18, 2002
Application Purpose
Original Equipment
Date of Application
Jul 18, 2002
Equipment Note
Low Power Cellular Band Repeater (SCU unit)
Frequency Range
891.50000000 - 894.00000000
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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Operational Description

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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

S potCell ™ 100 Quick Installation Guide www.spotwave.com Spotwave Wireless Inc. 3701 Carling Avenue, Ottawa ON K2H 8S2 Canada Tel: (613) 820-0023 Fax: (613) 828-1956 E-mail: [email protected] © 2001 Spotwave Wireless Inc. All rights reserved. Printed in Canada 4. Installation Set the switch on the bottom of the SCU to “1” (install). Connect the power supply to the SCU, then plug the adapter into the AC outlet. If required, more detailed information on installing SpotCell 100 can be found in the enclosed Installation Manual. 5. Installation: DDU In the location where the DDU is to be mounted, rotate the unit in a complete circle. The LED on the back will turn red or green during the rotation. 6. Installation: DDU Again rotate the DDU. When the LED turns green, stop the rotation. This is the direction the DDU must face when mounted. 9. Installation: SCU Mount the SCU from a wall or ceiling, close to the centre of the area requiring coverage. 2. Location The DDU can be mounted anywhere your cell phone works. This may be on a rooftop (typical rural set-up), on the side of a building, or inside a building (typical downtown set-up). The SCU will be mounted inside the building where your cell phone does not work. (The illustrations at the right depict typical installations.) To start the installation, place the DDU and SCU in the general areas where they are to be located. Do not physically mount them at this time. 3. Installation Connect the DDU and SCU with the cable provided. For quick installation of SpotCell 100: For your safety, beware of power lines and ensure that appropriate safety measures are maintained at all times during the installation of the SpotCell 100 equipment. Contact with high-voltage power lines could result in death or serious injury. 10. Final Checklist 1. Properly ground the DDU via the grounding bolt. 2. Ensure that there is a drip loop on the cable connecting to the DDU. 3. Firmly affix the cable to the building where it runs between the DDU and SCU. 8. Installation: SCU Move the switch on the bottom of the SCU to “2” (active). Hold the SCU in the location to be mounted. The LCD on the bottom of the SCU indicates coverage by the number of bars; more bars indicate better coverage. Back of SCU Back of DDU Cable connector Cable connector Grounding bolt Power supply connection: insert wires here while depressing blue tabs here Switch: install mode position LED DDU (outward-facing unit) SCU (indoor unit) Rotate 360°Rotate 360° 7. Installation: DDU Now mount the DDU. Typical installations are pictured below. Wall MountPipe Mount with Hose Clamp 1. Parts List • DDU• Cable (80'/25 m)• Mounting kit • SCU• Power supply Mounting bracket Optional bracket

Users Manual

Technical Support The SpotCell 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 CU and 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 manufacture’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 in a location where people will not approach within 1 meter in front of the DU and 20 centimeters in front of the CU. This manual outlines installation instructions and the appendix offers practical safety tips (see page 39 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. ii SpotCell 100, Release 1.0 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 service continuity and reliability, reception, or other performance related limitations associated with use of the Systems. NO AGREEMENTS VARYING OR EXTENDING THE TERMS OF THIS LIMITED WARRANTY WILL BE BINDING ON SPOTWAVE UNLESS IN WRITING AND SIGNED BY AN AUTHORIZED SIGNING OFFICER OF SPOTWAVE THIS LIMITED WARRANTY SHALL NOT EXTEND TO ANYONE OTHER THAN THE ORIGINAL PURCHASER OF THE SYSTEM. SPOTWAVE'S MAXIMUM AGGREGATE LIABILITY TO PURCHASER S…

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Cover Letter(s)

Spotwave Wireless Inc. 3701 Carling Avenue Ottawa ON K2H 8S2 Canada Tel: (613) 820-0023 Fax: (613) 828-1956 www.spotwave.com For the attention of: Federal Communications Commission June 28 th 2002 SUBJECT: Confidentiality of SpotCell 100 (800 MHz) design information. 1. The FCC ID numbers for this product are: P3YSPOTCELL0001 P3YSPOTCELL0002 P3YSPOTCELL0003 P3YSPOTCELL0004 2. SpotWave Wireless requests that the following information submitted as part of a request to the F.C.C. for approval to operate the equipment. SCU schematics all sheets SCU Bill of Materials (BOM) all pages DDU schematic all sheets DDU Bill of Materials (BOM) all pages Block Diagram all sheets 3. The above documents are classified by Spotwave Wireless as company confidential data and are not in the public domain, nor are they made available to customers. They are for internal use only. 4. The above documents are stored in a secure development laboratory with restricted access. Only employees, sub-contractors and consultants who have signed a formal non-disclosure agreement with Spotwave Wireless are allowed access to these documents, and then only on a need-to-know basis. 5. Spotwave Wireless maintains these documents at a company confidential classification because they contain the detailed information on the implementation of the company’s Intellectual Property. Specifically design information relating to custom components that is otherwise unavailable could be obtained using this data. The dissemination of this data would therefore severely damage the company’s competitive advantage in the Wireless market. 6. This market is a competitive one, with many other companies offering coverage enhancement products that do not currently embody characteristics or features that are enabled by the Spotwave Wireless IP. 7. Spotwave Wireless requests that this data is maintained as confidential for a period of 5 years, as this is compatible with the anticipated commercial life-time of the product, and will therefore be sufficient to prevent competitive harm to the company. 8. A copy of the SpotWave Wireless standard non-disclosure agreement is provided for reference. Mike Roper Vice President, Product Development Spotwave Wireless Inc. 613 591 1662 ext 231 [email protected]

Cover Letter(s)

Re: FCC ID: P3YSPOTCELL0004 Applicant: Spotwave Wireless Inc. Correspondence Reference Number: 4915 731 Confirmation Number: TC138935 Date of Original Email: 08/20/2002 Subject: Request for additional information In regards to your recent TCB grant referenced above we kindly request that you provide the following additional information. 1) Updated exhibits as follows. Please remove all references to other FCC ID equipment. It appears that non authorized changes have been made to previously certified equipment. Please note that the FCC considers this new equipment Original FCC IDs should not be displayed on any equipment changed without authorization. Any changes made to previously certified equipments should be handled under permissive change rules for those FCC IDs. Response – revised report uploaded 2) Additional line items to form 731 as appropriate. (For TCB) It appears that this equipment can transmit in 2 possibly 3 frequency bands. Only one is contained in the submitted form 731. Response – the frequency range listed on the grant covered 4 bands. I will modify the grant to reflect the 4 bands. 3) Clarification and correction of stated power. Form 731 states .005 W, MPE calculation states 2 W, block diagram states 25 dBm for DDU and 21 dBm for SCU. Please harmonize powers throughout exhibits including all schematics/drawings. Response – Uploaded new relevant exhibits with harmonized power levels. 4) Full details defining input signal condition for radiated and conducted tests. It is important that tests be performed at highest power levels. Provide new data as appropriate. Response - The test were done to reflect the worst case condition at maximum power and bandwidth. Signal conditions were varied to verify worst case conditions, i.e. intermod spacing, input signal level being varied from max to min to observe performance. The input signal level used for the submitted plots was –40dBm (Nemko). 6) Additional descriptive information of the system and its operation, please address: final amplifier stage DC voltage and current, and description of all circuitry and devices provided for determining and stabilizing frequency, for suppression of spurious radiation, for limiting modulation, and for limiting power, per CFR 47 Section 2.1033 ( c). Please carefully, address how overload of both the DDU and SCU inputs will be performed. Response – The final amplifier stage in the uplink is a linear RF amplifier part number SPA-1118(see attached PDF data sheet). This device is operated at a supply voltage of 5V, and current of 320- 360mA. The SpotCell 100 uses an IF frequency to perform gain control and filtering functions in both the downlink and uplink directions. The same LO signal is used to provide both down-conversion and up- conversion of the RF signal. In this configuration the output RF frequency is independent of the actual LO frequency, or any LO frequency error. The LO signal is generated by a frequency sythesizer that phase locked to a TCXO reference source, which has a maximum frequency error of +/- 2.5 ppm (see attached vt204 data sheet). However as noted above, because the same LO is used to convert to and from the IF frequency, this error is not transferred to the output frequency. The only sources of spurious radiation within the SpotCell are the Local Oscillators used in the uplink and downlink, and the clock frequency used by the on-board micro-controller. The LO frequencies have been selected to prevent in-band spurious signals from being generated. Out of band spurious signals are filtered by SAW RF filters which are located between the uplink and downlink gain stages. The uplink and downlink oscillators and associated components are located in separate shielded compartments to control stray radiation. The microprocessor and associated digital circuits that use the 10MHz clock are housed in their own, separate shielded compartment to ensure that the clock and harmonics do not create spurious signals at the antennas. In addition, each RF stage in the uplink and downlink chain has its own decoupling components to prevent clock and LO signals from entering the signal path through the power supply. The PCB uses 3 separate ground planes to provide shielding and provide a low impedance ground for the RF stages and decoupling components. SpotCell 100 uses an AGC circuit in both the uplink and downlink to control the RF power fed to the output stages. These stages are calibrated during manufacture to ensure that output amplifiers are limited to operating at 10dB or more below the maximum output power of the device. This ensures linear operation, and prevents any distortion of the signal that may affect the occupied bandwidth of the signal (modulation). The AGC circuit use logarithmic detectors to measure the AGC output power, together with an integrator and linear voltage controlled amplifier. This AGC configuration allows the system to operate linearly over a wide dynamic range. In addition, a supervisory system is used to monitors the input power level and to shut down the downlink or uplink if the input power exceeds the maximum specified. 7) Photograph with location of the FCC ID label. Response – uploaded photo with location of the ID label. 8) Full User Manual. Also, the statement about antenna installation distances referenced in the MPE exhibit was not located . Please provide. Response – revised manual uploaded. 9) Block diagrams for input to EAS Exhibit 4. It was noted that confidentiality was requested for such diagrams. It was noted that drawings under EAS exhibit 12 were not denoted as confidential by TCB. Response – block diagrams are now tagged as confidential. 10) New radiated spurious data as appropriate. It appears that the substitution method was not used. Response - The sig.sub method was used, if you look at the emissions data you will see the result is in dBm and not electric fields strength, also on page 38 of the report you will see the signal substitution …

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ID Label/Location Info

B THIS DOCUMENT IS THE PROPERTY OF “Spotwave Wireless Inc.” AND MAY BE NEITHER USED, COPIED, REPRODUCED OR OTHERWISE DEALT WITH NOR ITS CONTENTS COMMUNICATED TO OTHERS EXCEPT IN ACCORDANCE WITH WRITTEN INSTRUCTIONS RECEIVED FROM “Spotwave Wireless Inc.”. SCALE SHEET OF OTTAWA, CANADA SPOTWAVE WIRELESS INC. DWG. NO. REV. ALL DIMENSIONS INCHES 3rd ANGLE PROJECTION DRAWN BY ENG. APPROVALPROJ. APPROVAL DATEDATE DATE MATERIAL: FINISH: TOLERANCES .XX .XXX ANG ±. ±. ± ° NEXT ASSY REVISIONS DESCRIPTION REV. DATE BY LABEL, CU 160-40165-XX NTS 1 1 03 BB 01-10-18 .13 RAD4 CORNERS 1.94 5.19 N OT E S: 1 - MATERIAL: .010 THK CLEAR LEXAN FILM, UV STABLE. SELF ADHESIVE BACK. ADHESIVE TO BE SUITABLE FOR LONG TERM OUTDOOR USE.2 - GRAPHICS COLOR: BLACK. 01 RELEASED 01-10-26 BB ACTIVE SEE NOTES SEE NOTES INPUT: 10.5 +/-0.5 VDC @ 2 A MIN. SERIAL NO.: PRODUCT ID: Spotcell 100X CU. SPOTWAVE WIRELESS INC. 2 1 INSTALL 126880 USE ONLY WITH CSA CERTIFIED /UL LISTED CLASS 2 POWER SUPPLY CUSTOMER SUPPORT INFO. WWW.SPOTWAV E.COM 1-877-610-9586 MADE IN CANADA Approved to UL 1950 02 CANADA APPROVAL NO. ADDED 02-02-11 BB CANADA: 4189311256AFCC ID: P3YSPOTCELL000X 03 FCC APPROVAL ADDED 02-02-12 BB 04 B BAND ADDED , APPROVALS UPDATED 02-03-14 BB 110-40155-XX FILE LOCATION S:\/ ENGINEERING\RELEASED DRAWINGS\ DWG'S-LATEST REV\160-40165-XX-R07 V A R I A T I O N S : -04 BAND A - PRODUCT ID: 100A CU MODEL NO.: 100-40320-01 FCC ID.: P3YSPOTCELL0004-04 BAND B - PRODUCT ID: 100B CU MODEL NO.: 100-40320-02 FCC ID.: P3YSPOTCELL0004-05 BAND C - PRODUCT ID.: 100C CU MODEL NO.: 100-40320-05 FCC ID.: (DELETE LOGO,FCC ID.: AND ID. NO.) MODEL NO.: PATENT(S) PENDING SEE VARIATIONS SEE VARIATIONS SEE VARIATIONS 05 REVISED 02-05-08 BB SERIAL NO.: TO BE DEFINED BY MANUFACTURER S E E W O R K O R D E R A N D /O R P A R T S LIS T F O R V A R IATIO N R E Q U I R E D . 06 CANADA NO. FROM B TO A 02-05-17 BB 07 VAR 01&02 CHANGED TO -04 02-07-11 BB

Operational Description

The information provided herein is believed to be reliable at press time. Sirenza Microdevices assumes no responsibility for inaccuracies or omissions. Sirenza Microdevices assumes no responsibility for the use of this information, and all such information shall be entirely at the userís own risk. Prices and specifications are subject to change without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. Sirenza Microdevices does not authorize or warrant any Sirenza Microdevices product for use in life-support devices and/or systems. Copyright 2001 Sirenza Microdevices, Inc. All worldwide rights reserved. 1 Product Description Preliminary EDS-101427 Rev F Phone: (800) SMI-MMIChttp://www.sirenza.com 522 Almanor Ave., Sunnyvale, CA 94085 SPA-1118 850 MHz 1 Watt Power Amplifier with Active Bias Product Features ï High Linearity Performance: +48 dBm OIP3 Typ. +23 dBm IS-95 Channel Power at -45 dBc ACP ï On-chip Active Bias Control ï Patented High Reliability GaAs HBT Technology ï Surface-Mountable Plastic Package Applications ï Multi-Carrier Applications ï AMPS, ISM Applications Sirenza Microdevicesí SPA-1118 is a high efficiency GaAs Heterojunction Bipolar Transistor (HBT) amplifier housed in a low-cost surface-mountable plastic package. These HBT amplifiers are fabricated using molecular beam epitaxial growth technology which produces reliable and consistent performance from wafer to wafer and lot to lot. This product is specifically designed for use as a driver amplifier for infrastructure equipment in the 850 MHz band. Its high linearity makes it an ideal choice for wireless data and digital applications. lobmyS :snoitidnoCtseT:sretemaraP Z 0 V,smhO05= CC 52=pmeT,V5= C∫ stinU.niM.pyT.xaM f 0 noitarepOfoycneuqerFzHM018069 P Bd1 noisserpmoCBd1tarewoPtuptuOmBd5.92 PCA rewoPlennahCtnecajdA P,zHK588±@59-SI TUO mBd12= cBd0.55- S 12 niaGlangiSllamSBd0.71 RWSVRWSVtupnI-1:5.1 PIO 3 *tnioPtpecretnIredrOdrihTtuptuO mBd41+=enotreptuorewoP mBd0.84 FNerugiFesioNBd0.7 I CC tnerruCeciveDAm023063 R ,ht c-j )esac-noitcnuj(ecnatsiseRlamrehTW/C∫04 VCC VBIAS RFIN N/C RFOUT/ VCC Active Bias Input Match N/C N/C N/C * Optimal IP3 tune 2 Preliminary SPA-1118 850 MHz 1 Watt Power Amp. EDS-101427 Rev F Phone: (800) SMI-MMIChttp://www.sirenza.com 522 Almanor Ave., Sunnyvale, CA 94085 20 25 30 35 40 45 50 55 101214161820 25C 85C -4 0C 20 22 24 26 28 30 32 0.850.870.890.910.930.95 25C 85C -40C 10 12 14 16 18 20 22 0.850.870.890.910.930.95 25C 85C -40C 20 25 30 35 40 45 50 55 0.850.870.890.910.930.95 25C 85C -40C -40 -35 -30 -25 -20 -15 -10 -5 0 0.850.870.890.910.930.95 S11 S12 S22 -75 -70 -65 -60 -55 -50 -45 1618202224 -40C 85C 25C P1dB vs. Frequency GHz dBm 850-950 MHz Application Circuit Data, I CC =320 mA, V CC =5V IS-95 @ 880 MHz Adj. Channel Pwr. vs. Channel Output Pwr. dBm dBc GHz Gain vs. Frequency dB Output Third Order Intercept vs. Frequency (P OUT per tone = 14dBm) GHz dBm P OUT per tone (dBm) dBm Input/Output Return Loss, Isolation vs. Frequency, T=25°C GHz dB Output Third Order Intercept vs. Tone Power, 900 MHz Preliminary SPA-1118 850 MHz 1 Watt Power Amp. 3 EDS-101427 Rev F Phone: (800) SMI-MMIChttp://www.sirenza.com 522 Almanor Ave., Sunnyvale, CA 94085 VCC 5.6 pF 100 nH 43pF 10uF, Tantalum 22pF22pF Z=50Ω, 17∞ 360Ω 1 2 3 4 8 7 6 5 1000pF 850 - 950 MHz Schematic 850 - 950 MHz Evaluation Board Layout Vpc Vcc SOIC-8 PA ECB-101161 Rev. C Eval Board C5 L1 C4 C3 C2 C1 C6 R1 Note: Pins 4, 5, 7, 8 are not connected internally Sirenza Microdevices .seD.feReulaVrebmuNtraP 6C,1CFp22seires81HCMmhoR 2CFu01R020K601BJATXVA 3CFp0001seires81HCMmhoR 4CFp34seires81HCMmhoR 5CFp6.5seires81HCMmhoR 1LHn001seiresQH8001tfarclioC 1RmhO063seires30RCMmhoR 4 Preliminary SPA-1118 850 MHz 1 Watt Power Amp. EDS-101427 Rev F Phone: (800) SMI-MMIChttp://www.sirenza.com 522 Almanor Ave., Sunnyvale, CA 94085 #niPnoitcnuFnoitpircseDcitamehcSeciveD 1ccV.krowtensaibevitcaehtrofegatlovylppusehtsiCCV nonwohssanoitacoletairporppaehtnignissapyB FRmumitporofderiuqersicitamehcsnoitacilppa .ecnamrofrep 2saibV.krowtensaibevitcaehtrofniplortnocsaibehtsisaibV .nipsihtotnitnerrucehtybtessitnerruceciveD noitacilppAehtninwohssinoitarugifnocdednemmoceR sanoitacoletairporppaehtnignissapyB.citamehcS mumitporofderiuqersicitamehcsnoitacilppanonwohs .ecnamrofrepFR 3nIFRlanretxenafoesuehtseriuqernipsihT.niptupniFR foycneuqerfehtrofnesohcroticapacgnikcolbCD .noitarepo 5,4C/NnoitcennocoN 6ccV/tuOFRsihtotdeilppusebdluohssaiB.nipsaibdnatuptuoFR gnisaibCDesuaceB.ekohcFRlanretxenahguorhtnip dluohsroticapacgnikcolbCDa,nipsihtnotneserpsi noitacilppaees(snoitacilppatsomnidesueb dluohskrowtensaibehtfoedisylppusehT.)citamehcs sikrowtengnihctamtuptuonA.dessapyblleweb .ecnamrofrepmumitporofyrassecen 8,7C/NnoitcennocoN DAPEdnGsdeenegakcapehtfoedismottobehtnoaeradesopxE rofdraobehtfoenalpdnuorgehtotderedlosebot ebdluohssaivlareveS.ecnamrofrepFRdnalamreht dednemmocerehtninwohssaDAPEehtrednudetacol .)5egap(nrettapdnal 2 3 1 6 ACTIVE BIAS NETWORK 4,5,7,8 N/C Absolute Maximum Ratings retemaraPtimiLetulosbA I(tnerruCylppuS.xaM CC )Am057 V(egatloVeciveD.xaM CC )V0.6 noitapissiDrewoP.xaMW0.4 rewoPtupnIFR.xaMWm052 T(.pmeTnoitcnuJ.xaM J )C∫061+ T(.pmeTdaeLgnitarepO L )C∫58+ot04- .pmeTegarotS.xaMC∫051+ yamstimilesehtfoenoynadnoyebecivedsihtfonoitarepO eht,noitareposuounitnocelbailerroF.egamadtnenamrepesuac mumixamehtdeecxetontsumtnerrucdnaegatlovecived .enoegapnoelbatehtnideificepsseulavgnitarepo :noisserpxegniwollofehtyfsitasosladluohssnoitidnoCsaiB I CC V CC T(<)xam( J T- L R/) ht l-j, Caution: ESD sensitive Appropriate precautions in handling, packaging and testing devices must be observed. Preliminary SPA-1118 850 MHz 1 Watt Power Amp. 5 EDS-101427 Rev F Phone: (800) SMI-MMIChttp://www.sirenza.com 522 Almanor Ave., Sunnyvale, CA 94085 rebmuNtraPleeRrePseciveDeziSleeR 8111-APS005"7 Part Number Ordering Information XXXX SPA 1118 Package Outline Drawing Recommended Land Pattern Note: XXXX represents the lot code DIMEN…

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Operational Description

(VC-)TCXO-204C2 TCXO, VC-TCXO Features ¡VC-TCXO for Personal Cellular Phone. ¡Because it is leadless type, automatic mounting is possible. ¡Ultra small size. (7×5×1.7mm) ¡Reflow Soldering. ¡Low power consumption. Specifications Outline Land Pattern(reference) Ty p e *1 Item Standard Frequency12.8, 13.0, 14.4, 14.85, 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. (DC Blocked) Start up time3m sec MAX. Frequency Deviation/ Voltage (only VC-TCXO)8~12×10 –6 /V (Positive) Capacity / Weight0.06cc, 0.15g *1 Please contact us for reflow. *2 Frequency Stability ±1.5×10 –6 /-20~+75: is available. TCXO-204C2 VC-TCXO-204C2 Dimensions(mm) 7.0±0.2 5.08±0.1 3.681.4 0.65 1.4 3 11 2.20.3 5 ± 0.2 1.7MAX 0.1 #1#2 #4#3 φ0.3 CONNECTION 1:VC VC-TCXO GND TCXO 2:GND 3:OUTPUT 4:+DC 1.2 1.5 1.2 3 1.53.58 (VC-)TCXO-204C2

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 SpotCell 100 (800MHz) Adaptive Repeater The SpotCell 100 (800 MHz) A/B equipment has been tested and the performance characterized in accordance with the MPE requirements of CFR 47, Part 1.1310, RF radiation exposure limits and Industry Canada’s requirement of RSS-102, Section 3, Permissible SAR (Specific Absorption Rate). The System is a low power adaptive repeater, having integral antennas built into the SCU and DDU modules. At the maximum operating frequency of 894MHz the MPE limit for the General Population/Uncontrolled Exposure is 0.6mW/cm 2, as given by CFR 47, Part 1.1310, table 1. The SpotCell 100 (800MHz) complies with this limit at the following line of sight distances from the antenna element: DDU : 11.5cm SCU : 1.15cm The analysis is provided below. For the general uncontrolled population the Maximum Permissible Exposure (MPE) limit is given by F/1500 mW/cm 2 , where F is the maximum operating frequency in MHz, giving a limit of 0.6mW/cm 2 . The prediction methods provided are based on worst-case far-field calculations; S = EIRP/(4ðR 2 ), Where S is power density at a distance R from the radiating element, in mW/cm 2 . EIRP is the radiated power in mW (milliWatts). R is the distance in cm. Using this calculation, for the DDU of EIRP = 1000mW (30dBmi) S = 0.6mW/cm 2 . EIRP = 2000mW. R = 11.5cm The User Manual, which also incorporates the installation instructions includes a warning statement on page (i) of the document under the heading “Important Safety Information”. The warning instructs the installer to ensure the DDU is mounted in a location where people will not approach within 1meter of the front of the unit. This distance provides additional safety margin for the product. For the SCU S = 0.6mW/cm 2 EIRP = 10mW R = 1.2cm The integral radome on the SCU provides a separation of 1.37cm from the antenna at the center so that no warning statement is required for this module. Mike Roper Vice President, Product Development Spotwave Wireless Inc. Tel 613-591-1662 x 231 Email:[email protected]

RF Exposure Info

Maximum Permissible Exposure (MPE) Compliance Statement, FCC Radio Frequency Exposure Limit 1.1310 Health Canada Safety Code 6 Spotcell 100 (CU) The Spotcell 100 cellular amplifier customer unit has been tested and the performance characterized in accordance with the MPE requirements of FCC 47 CFR and RSS 102. At the maximum operating frequency of 894MHz the MPE limit for the General Population/Uncontrolled Exposure is 0.6mW/cm 2 . This device complies with this limit at the following line of sight distances from the antenna element: Spotcell 100 Customer Unit : 1.2cm The analysis is provided below. Power Density (S) = EIRP/(4πR 2 ) , Therefore, R≥√EIRP/S x 4π Using this calculation: Maximum Antenna Gain = 3dBi Maximum output power = 7.0dBm S = 0.6 mW/cm 2 EIRP = 10dBm or 10mW Therefore, R= 1.15cm This minimum safe distance for the general population of 1.2cm is always ensured due to the integral radome on the CU providing a separation of 1.37cm from the antenna at the center. Analyses provided by, Glen Westwell, Nemko Canada Inc. for Spotwave Wireless Ltd.

Test Report

Master: Generic FCC Date: October 16, 2001 Test Report:2W06184.2 Applicant:Spotwave Wireless Inc. 1 Hines Road Ottawa, Ontario K2K 3C7 Equipment Under Test:SpotCell 100 (EUT)Low Power Cellular Band Repeater In Accordance With:FCC Part 22, Subpart H FCC ID. :P3YSPOTCELL0004 Tested By:Nemko Canada Inc. 303 River Road, R.R. 5 Ottawa, Ontario K1V 1H2 Authorized By: J. Harrington, RF Group Manager Date:11 July 2002 Total Number of Pages:41 Nemko Canada Inc.FCC PART 22, SUBPART H PROJECT NO.: 2W06184.2 EQUIPMENT: SpotCell 100, Low Power Cellular Band Repeater Page 2 of 41 Table of Contents Section 1. Summary of Test Results......................................................................................3 Section 2. General Equipment Specification........................................................................5 Section 3. RF Power Outpu…

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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 OutputEmissionTolerance
1222891.5 MHz - 894 MHz5.00 mWF8WAmp
Confidentiality
Long Term
Grant Notes
Output is composite for multi-channel operation.

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