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XM2VERYHIGHPOWERLOptical Systems

Teko Telecom Srl
Optical Systems - FCC ID XM2VERYHIGHPOWERL - Teko Telecom Srl
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Aug 10, 2010
Application Purpose
Original Equipment
Date of Application
Jul 18, 2010
Equipment Note
Optical Systems
Frequency Range
940.00000000 - 941.00000000
Company
Teko Telecom Srl
Country
Italy

Documents & Files

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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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Operational Description

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Parts List/Tune Up Info

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RF Exposure Info

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Test Report

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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.

Cover Letter(s)

Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 Castel San Pietro Terme, 03 May 2010 Nemko Canada Inc. 303 River Road Ottawa, Ontario, Canada K1V 1H2 FCC ID: XM2VERYHIGHPOWERL Product Name: Optical Systems Remote Unit with Master Device Request for Confidentiality Pursuant to Sections 0.457 and 0.459 of the commissions rules, we hereby request that the following documents be held confidential: ∑ Schematic diagrams ∑ Block diagram ∑ User manual ∑ Tune up information ∑ Internal photos These materials contain trade secrets and proprietary information and are not customarily released to the public. The public disclosure of this information might be harmful to the company and provide unjustified benefits to our competitors. Moreover, internal photos have to be held confidential because non-consumer device is not accessible by the general public (device installed in Restricted Area Location) and it is only serviceable by the licensee. User’s manual have to be held confidential because it is very technical and only available to designated technicians by the licensee. Dated 03 May 2010 By: ALESSANDRO BRUNELLI Signature Printed Title: CERTIFICATION ENGINEER On behalf of : TEKO TELECOM Telephone: +39 051 6946811

Cover Letter(s)

Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 Castel San Pietro Terme, 03 May 2010 Nemko Canada Inc. 303 River Road Ottawa, Ontario, Canada K1V 1H2 FCC ID: XM2VERYHIGHPOWERL Product Name: Optical Systems Remote Unit with Master Device RESTRICTED ACCESS OF EQUIPMENT AND DOCUMENTATION NOTICE This Restricted Access of Equipment and Documentation Notice is to inform the licensee that access to equipment and related documentation supplied by Teko Telecom S.p.A. is to be restricted to only authorized users by means to ensure the security of the equipment and confidentiality of related documentation at all times, and only designated professionals shall be allowed to maintain or service the equipment. Tampering with the internal parts of these non-consumer type devices by removal of external covers can damage or destroy the equipment, therefore it is necessary that the device be kept in a restricted location, and inaccessible to the general public. This notice includes, but is not limited to, Schematic, Block Diagrams, User Manual, Tune Up information, and Internal Photos. Dated 03 May 2010 By: ALESSANDRO BRUNELLI Signature Printed Title: CERTIFICATION ENGINEER On behalf of : TEKO TELECOM Telephone: +39 051 6946811

Cover Letter(s)

Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 Castel San Pietro Terme, 03 May 2010 Nemko Canada Inc. 303 River Road Ottawa, Ontario, Canada K1V 1H2 Attn: Director of Certification Authority to Act as Agent FCC On our behalf, I appoint Nemko Spa – via del Carroccio n. 4, Biassono (MB) Italy to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the Federal Communications Commission’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for certification, as specified by Nemko Canada Inc, still resides with (applicant name and address). Dated 03 May 2010 By: ALESSANDRO BRUNELLI Signature Printed Title: CERTIFICATION ENGINEER On behalf of : TEKO TELECOM Telephone: +39 051 6946811

Cover Letter(s)

Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 REMOTE UNIT VERY HIGH POWER VARIANTS Commercial name Description REMOTE UNIT VERY HIGH POWER TRU Teko Telecom Remote Unit xxxxx = Operating band: 7S: SMR700 (UL: 698-716+776-787MHz) DL: 728-757MHz) 7P: Public Safety 700 (DL: 763-775MHz; UL: 793-805MHz) 8S: SMR800 (DL: 851-869MHz; UL: 806-824MHz) 8A: AMPS (DL: 869-894MHz; UL: 824-849MHz) 9S: SMR900 (DL: 935-941MHz; UL: 896-902MHz) 19: PCS1900 (DL: 1930-1995MHz; UL: 1850-1915MHz) AW: AWS2100 (DL: 2110-2155MHz; UL: 1710-1755MHz) and combination of these c = RF Connector: W: wideband D: duplexed B: bi duplexed N: no duplexed S: single connector V = Very high power TRUxxxxxcV/zz-kkkj-r zz = Power supply: AC: 85-264Vac, 50-60Hz Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 kkk = Laser version: Without option: NO WDM Termocontrolled laser version: W21:  = 1560,61nm W23:  = 1558,98nm W25:  = 1557,36nm W27:  = 1555,75nm W29:  = 1554,13nm W31:  = 1552,52nm W:  = 1550,92nm W35:  = 1549,32nm W37:  = 1547,72nm No termocontrolled laser version: M11:  = 1470 ± 3 nm M12:  = 1490 ± 3 nm M13:  = 1510 ± 3 nm M14:  = 1530 ± 3 nm W:  = 1550 ± 3 nm M16:  = 1570 ± 3 nm M17:  = 1590 ± 3 nm M18:  = 1610 ± 3 nm j = Optical connector: S: SC-APC E: E-2000 r = Redundancy: Without option: NO redundancy 1: Power Supply 2: HPA 3: Optical Module 4: Power Supply + HPA 5: Power Supply + Optical Module 6: HPA + Optical Module 7: Power Supply + Optical Module + HPA

External Photos

Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 EXTERNAL PHOTO REMOTE UNIT VERY HIGH POWER TRU7SAWBV/AC-WS TRU8S9S19BV/AC-WS Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004 Teko Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001:2000, ISO 14001:2004

ID Label/Location Info

Tek o Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001: 2000, I SO 14001: 2004 INTERNAL PHOTO REMOTE UNIT VERY HIGH POWER TRU7SAWBV/AC-WS TRU8S9S19BV/AC-WS Tek o Telecom S.p.A. Via Meucci, 24/a Castel S. Pietro Terme (BO) – Italy Tel +39 051 69 46 811 – Fax +39 051 94 84 73 P.IVA/VAT IT 02186561201 – Reg. Imprese di Bologna n. 02186561201 Capitale sociale Euro 660.000,00 i.v. – Soggetta a direzione e coordinamento di MetaSystem Group S.p.A. Società con Sistema di Qualità ed Ambiente certificato – ISO 9001: 2000, I SO 14001: 2004

ID Label/Location Info

AC MAINS (100-240V∼; 50-60Hz; 10A ) LED HIGH RF PORT GROUND LOW RF PORT 698 ÷ 787 MHz 1710 ÷ 2155 MHz CLASS 1 LASER PRODUCT OPTICAL DL/UL WDM TRU7SAWBV/AC-WS FANALARM R CUS TEKO TELECOM MODEL: TRU7SAWBV/AC-WS FCC ID: XM2VERYHIGHPOWERL AC MAINS (100-240V∼; 50-60Hz; 12A ) LED LOW RF PORT GROUND HIGH RF PORT 806 ÷ 869 MHz 896 ÷ 941 MHz 1850 ÷ 1995 MHz CLASS 1 LASER PRODUCT OPTICAL DL/UL WDM TRU8S9S19BV/AC-WS FANALARM R CUS TEKO TELECOM MODEL: TRU8S9S19BV/AC-WS FCC ID: XM2VERYHIGHPOWERL

Operational Description

www.tekotelecom.it www.tekotelecom.it Going further, together Doc ID Number 91 080 0780 - Rel. 03 english Teko Telecom Optical Systems 1.General Description1.General Description www.tekotelecom.it www.tekotelecom.it Going further, together Teko Telecom Optical Systems Doc ID Number 91 080 0780 - Rel. 03 page 8 english Teko Telecom Optical Systems - General Description1. Teko Telecom Optical Systems are flexible multi-band multi-operator modular systems that provide both indoor and outdoor cellular coverage in shadow areas -where RF signal is not available- or capacity in hot spots -where the operators want a dedicated coverage. They are based on the Radio over Fibre technology, which enables radio signals transmission over optical fibres. REMOTE UNITS Passive POI Subracks RF Interface Optical Subracks Optical Interface and Supervision COAXIAL CABLE (RF SIGNAL) BTS, Node B or Repeater SIGNAL SOURCE SINGLE MODE OPTICAL FIBRE (OPTICAL SIGNAL) COAXIAL CABLE RF SIGNAL COAXIAL CABLE (RF SIGNAL) COAXIAL CABLE (RF SIGNAL) RF SIGNAL Supervision Module MASTER UNIT SINGLE MODE OPTICAL FIBRE (OPTICAL SIGNAL) SINGLE MODE OPTICAL FIBRE (OPTICAL SIGNAL) Each Optical System is made up of two main parts, Master Unit and Remote Units, connected via single mode optical fibres (SMR 9/125). Master Unit is a rack-based modular equipment which provides both RF connection towards the signal source (one or more BTSs, Node Bs or repeaters) and the optical interface towards Remote Units. It also hosts the Supervision Module for the management of the whole System. Remote Units distribute capacity or extend coverage into different locations at distances up to 20km (12.4miles) from the Master Unit. They can be Single, Dual or Tri-band with four different RF power classes: Very High, High, Medium and Low. A single Master Unit can drive up to 144 Remote Units. Various network structures can be supported by the Master Unit: the Remote Units of the same Optical System can be deployed with a point-to-point connection (star-configuration - using one fiber optic per Remote Unit) or with cascading of up to 5 Remote Units using a single fibre and optimized optical couplers. www.tekotelecom.it www.tekotelecom.it Going further, together Teko Telecom Optical Systems Doc ID Number 91 080 0780 - Rel. 03 page 9 english Operating Principle1.1 Teko Telecom Optical Systems are based on the Radio over Fiber Concept: in Downlink RF signals are converted into optical signals in the Fiber Optic Transmitter modules of the Master Unit and then they are propagated through optical fibre distribution to Remote Units. In the Fiber Optic Receiver of each Remote Unit, the optical signal is then converted back into an RF signal that is amplified and transmitted to mobiles through an antenna or a passive distribution system. In Uplink RF signal is converted into an optical signal in the Fiber Optic Transmitter of each Remote Unit and then it is propagated via fibre optics to the Master Unit. Optical signals from Remote Units are then converted by the Fiber Optic Receiver modules of the Master Unit into RF signals and transmitted to the signal recipient. Uplink and downlink optical signals are transmitted over the same single mode optical fibre (Wavelength Division Multiplexing -WDM- technology). One or more BTSs, Node Bs or Repeaters RF SIGNAL Fiber Optic Receivers Transmitters REMOTE UNITS RF Interface POI Subrack MASTER UNIT Optical Subrack RF SIGNAL Fiber Optic Receivers Transmitters OPTICAL SIGNALS RF SIGNAL Optical Systems management Teko Telecom Optical Systems can be set and managed locally via the LAN port of the Supervision Module of the Master Unit. For remote control the system can be accessed via Ethernet, via external PSTN or wireless modem or via optional built-in wireless modem. Teko Telecom Operation and Maintenance Terminal (OMT) software allows the commissioning, monitoring, setting and troubleshooting of the whole Teko Telecom Optical System. The access to the System is performed via web pages: the Supervision Module is equipped with a web-server and each component of the System is associated to a web page displaying detailed information about the component. The Supervision Module is also equipped with an SNMP-agent, which allows to control each parameter of the system via SNMP get/set/trap operations. www.tekotelecom.it www.tekotelecom.it Going further, together Teko Telecom Optical Systems Doc ID Number 91 080 0780 - Rel. 03 page 10 english Teko Telecom Operation Management Centre (OMC) proprietary software allows the management of multiple Teko Telecom Optical Systems in a Network. OMC is a client-server application: the server collects and stores information, such as System status and alarms, relevant to each Optical System in the network. The Server communicates with each System Supervision Module via Ethernet (TCP-IP socket) or via PSTN or wireless modem. The Client provides access to the information stored in the Server database. It allows end-users to check the status of the Optical Systems in the network via a user friendly graphical interface. www.tekotelecom.it www.tekotelecom.it Going further, together Teko Telecom Optical Systems Doc ID Number 91 080 0780 - Rel. 03 page 11 english Technical Specifications1.2 This paragraph makes Master Unit and Remote Units mechanical, environmental and power supply specifications available. Please refer to each product datasheet for detailed electrical specifications. Contact Teko Telecom Sales Office for further information. Master Unit• Dimensions19”-3U racks / depth 270 mm (10.63 in) Power supply85÷264Vac (50-60Hz) (TPSU/AC) -72÷-36Vdc (TPSU/48) Operating temperature range-5°C up to +45°C (+23°F up to +113°F) Remote Units• LOW POWER Dimensions (HxWxD)Weight Operating temperature range Degree of protection (IP) Power supply 350x350x100mm (13.78x13.78x3.94 in) max volume - heat sinks and connectors included 13 kg (28.7 lbs) -20°C up to +55°C (-4°F up to +131°F) IP32 (box) IP66 (wit…

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Operational Description

www.tekotelecom.it www.tekotelecom.it Going further, together Teko Telecom Optical Systems Doc ID Number 91 080 0780 - Rel. 03 page 11 english Technical Specifications1.2 This paragraph makes Master Unit and Remote Units mechanical, environmental and power supply specifications available. Please refer to each product datasheet for detailed electrical specifications. Contact Teko Telecom Sales Office for further information. Master Unit• Dimensions19”-3U racks / depth 270 mm (10.63 in) Power supply85÷264Vac (50-60Hz) (TPSU/AC) -72÷-36Vdc (TPSU/48) Operating temperature range-5°C up to +45°C (+23°F up to +113°F) Remote Units• VERY HIGH POWER Dimensions (HxWxD)Weight Operating temperature range Degree of protection (IP) Power supply 620x415x260mm (24.41x16.34x10.24 in) max volume - heat sinks, handles and connectors included Triband: 38 kg (83.78 lbs) Dualband: 37 kg (81.57 lbs) Single band: 36 kg (79.37 lbs) -20°C up to +55°C (-4°F up to +131°F) IP66 (with optional pro-tection kit) 85÷264Vac (50-60Hz) SMR700 LowSMR700 HighSMR900 (*) UL Operating Freq. band698 – 716 MHz776 – 787 MHz896 – 902 MHz DL Operating Freq. band728 – 746 MHz746 – 757 MHz935 – 941 MHz DL RF gain, in Master Unit tx 48 dB48 dB48 dB UL RF gain, out Mater Unit tx 47 dB47 dB47 dB DL output power43dBm (1 carrier) Mod.: LTE 43dBm (1 carrier) Mod.: LTE 43dBm (1 carrier) Mod.: iDEN (QAM) (*) including SMR900 band (UL: 896 - 901 MHz / DL: 935 - 940 MHz) and Narrow Band PCS (UL: 901 - 902 MHz / DL: 940 - 941 MHz).

Parts List/Tune Up Info

svhpadr01s7 Monday, April 26, 2010 3:23 pm Page 1 NOTE DI MONTAGGIO PER PRODUZIONE 1) I componenti con CODICE MAGAZZINO e DESCRIZIONE “TBD” non devono essere montati. 2) I componenti con REFDES CIR2, J8, J18 non devono essere montati. Vengono montati da TEKO TELECOM in quanto devono essere fissati alla meccanica. 3) I componenti con REFDES C114, C115, C184, C386 devono essere montati di ripresa. Per la loro posizione di montaggio vedere foto in I:\RD\Documentazione Schede-Moduli 2nd generation\Schede\SVHPADR01S7\Foto. 4) Controllare tramite RX la saldatura del pad esposto dei seguenti componenti: IC2, IC3, IC28, IC30, IC33, IC41, IC59, IC60, IC63, R33, TR8, TR9. 5) Nella scheda SVHPADR01S7 ci sono anche delle differenze di tipologia di componente ovvero: • Montare L60 (Scheda SVHPADR01S7) al posto di R4 (PCB 15 005 3916). • Montare R442 (Scheda SVHPADR0S7) al posto di C303 (PCB 15 005 3916). • Montare R443 (Scheda SVHPADR01S7) al posto di C381 (PCB 15 005 3916). # QTY REFDES CODICE MAGAZZINO DESCRIZIONE ----------------------------------------------------------------------------- 1 1 A2 2 1 A3 3 1 A4 4 1 A5 5 1 A7 6 1 A8 7 1 C1 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 8 1 C2 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 9 1 C3 05 040 0285 CHIP 4,7 UF X7R 16V SIZE 1210 10 1 C4 05 041 0185 CHIP 1 NF X7R 50V TOLL.J SIZE 0603 11 1 C5 05 041 0110 CHIP 47 PF COG 50V TOLL.J SIZE 0603 12 1 C6 05 040 0290 CHIP 4,7UF 50V X7R SIZE 1210 13 1 C7 05 051 0195 CHIP 22 PF LOW ESR 0603 250V 14 1 C8 05 051 0140 CHIP 3,9 PF LOW ESR 0603 250V 15 1 C9 05 075 0535 COND.ELETT. 47UF/50V SMD 105°C 6,3X7,7MM 16 1 C10 05 075 0535 COND.ELETT. 47UF/50V SMD 105°C 6,3X7,7MM 17 1 C13 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 18 1 C14 05 075 0535 COND.ELETT. 47UF/50V SMD 105°C 6,3X7,7MM 19 1 C15 05 040 0290 CHIP 4,7UF 50V X7R SIZE 1210 20 1 C18 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 21 1 C19 05 041 0270 CHIP 100 NF 16V TOLL.J X7R SIZE 0603 22 1 C20 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 23 1 C21 05 041 0270 CHIP 100 NF 16V TOLL.J X7R SIZE 0603 24 1 C22 TBD TBD 25 1 C23 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 26 1 C24 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 27 1 C25 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 28 1 C26 05 075 0535 COND.ELETT. 47UF/50V SMD 105°C 6,3X7,7MM 29 1 C27 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 30 1 C28 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 31 1 C29 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 32 1 C30 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 33 1 C31 05 041 0270 CHIP 100 NF 16V TOLL.J X7R SIZE 0603 34 1 C32 05 041 0270 CHIP 100 NF 16V TOLL.J X7R SIZE 0603 35 1 C33 05 075 0360 CONDENS. 10UF/35V 105° SIZE 5X5,4 SMD 36 1 C34 05 090 0070 PASSANTE+FERRITE 2200PF NFE31PT222Z1E9L 37 1 C35 05 075 0455 100 UF/50V 105° SMD 8,3X8,3 38 1 C36 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 39 1 C37 05 075 0455 100 UF/50V 105° SMD 8,3X8,3 40 1 C38 05 040 0305 COND 22UF 16V X5R SIZE 1210 *R* 41 1 C40 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 42 1 C41 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 43 1 C42 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 44 1 C43 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 45 1 C44 05 040 0225 CHIP 330NF Y5V 50V TOLL.Z SIZE 1206 46 1 C45 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 47 1 C46 05 041 0130 CHIP 100 PF COG 50V TOLL.J SIZE 0603 48 1 C47 05 051 0115 CHIP 1,5 PF LOW ESR 0603 250V 49 1 C48 05 051 0115 CHIP 1,5 PF LOW ESR 0603 250V 50 1 C49 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 51 1 C50 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 52 1 C51 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 53 1 C52 05 050 0155 CHIP PORC A 100 PF 150V TOLL.J SIZEC11 54 1 C53 05 051 0235 CHIP 47 PF LOW ESR 0603 250V 55 1 C54 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 svhpadr01s7 Monday, April 26, 2010 3:23 pm Page 2 # QTY REFDES CODICE MAGAZZINO DESCRIZIONE ----------------------------------------------------------------------------- 56 1 C57 05 050 0155 CHIP PORC A 100 PF 150V TOLL.J SIZEC11 57 1 C58 05 050 0155 CHIP PORC A 100 PF 150V TOLL.J SIZEC11 58 1 C61 05 050 0155 CHIP PORC A 100 PF 150V TOLL.J SIZEC11 59 1 C62 05 040 0203 CHIP 0,1 UF X7R 50V SIZE 0805 60 1 C63 05 040 0203 CHIP 0,1 UF X7R 50V SIZE 0805 61 1 C64 05 040 0203 CHIP 0,1 UF X7R 50V SIZE 0805 62 1 C65 05 040 0240 CHIP 1UF X7R 16V/25 TOLL.K SIZE 1206 63 1 C66 05 040 0203 CHIP 0,1 UF X7R 50V SIZE 0805 64 1 C67 05 041 0270 CHIP 100 NF 16V TOLL.J X7R SIZE 0603 65 1 C68 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 66 1 C69 TBD TBD 67 1 C70 05 041 0130 CHIP 100 PF COG 50V TOLL.J SIZE 0603 68 1 C72 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 69 1 C73 05 041 0220 CHIP 10 NF X7R 50V TOLL.J SIZE 0603 70 1 C74 05 041 0270 CHIP 100 NF 16V TOLL.J X7R SIZE 0603 71 1 C75 05 041 0130 CHIP 100 PF COG 50V TOLL.J SIZE 0603 72 1 C76 05 051 0195 CHIP 22 PF LOW ESR 0603 250V 73 1 C77 05 051 0195 CHIP 22 PF LOW ESR 0603 250V 74 1 C78 05 051 0195 CHIP 22 PF LOW ESR 0603 250V 75 1 C79 05 051 0105 CHIP 0,5PF LOW ESR 0603 250V 76 1 C80 05 051 0105 CHIP 0,5PF LOW ESR 0603 250V 77 1 C81 05 051 0235 CHIP 47 PF LOW ESR 0603 250V 78 1 C82 05 051 0235 CHIP 47 PF LOW ESR 0603 250V 79 1 C83 05 051 0255 CHIP 100 PF LOW ESR 0603 250V 80 1 C84 05 051 0255 CHIP 100 PF LOW ESR 0603 250V 81 1 C85 05 051 0255 CHIP 100 PF LOW ESR 0603 250V 82 1 C86 05 041 0130 CHIP 100 PF COG 50V TOLL.J SIZE 0603 83 1 C87 TBD TBD 84 1 C88 05 040 0280 CHIP 1 UF X7R 50V SIZE 1210 ROHS 85 1 C89 05 040 0280 CHIP 1 UF X7R 50V SIZE 1210 ROHS 86 1 C90 05 041 0130 CHIP 100 PF COG 50V TOLL.J SIZE 0603 87 1 C91 05 051 0235 CHIP 47 PF LOW ESR 0603 250V 88 1 C93 05 051 0235 CHIP 47 PF LOW ESR 0603 250V 89 1 C94 05 040 0285 CHIP 4,7 UF X7R 16V SIZE 1210 90 1 C95 05 041 0090 CHIP 22 PF COG 50V TOLL.J SIZE 0603 91 1 C96 05 040 0280 CHIP 1 UF X7R 50V SIZE 1210 ROHS 92 1 C97 05 040 0280 CHIP 1 UF X7R 50V SIZE 1210 ROHS 93 1 C98 05 040 0280 CHIP 1 UF X7R 50V SIZE 12…

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RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:43.00(dBm) Maximum peak output power at antenna input terminal:19952.62315(mW) Antenna gain(maximum):16(dBi) Maximum antenna gain:39.81071706(numeric) Time Averaging:100(%) Prediction distance:365(cm) Prediction frequency:720(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.480(mW/cm^2) Power density at prediction frequency:0.474465(mW/cm^2) Margin of compliance:-0.1(dB) This equates to:4.744652467W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:43.00(dBm) Maximum peak output power at antenna input terminal:19952.62315(mW) Antenna gain(maximum):8(dBi) Maximum antenna gain:6.309573445(numeric) Time Averaging:100(%) Prediction distance:150(cm) Prediction frequency:720(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.480(mW/cm^2) Power density at prediction frequency:0.445254(mW/cm^2) Margin of compliance:-0.3(dB) This equates to:4.452537828W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:47.80(dBm) Maximum peak output power at antenna input terminal:60255.95861(mW) Antenna gain(maximum):16(dBi) Maximum antenna gain:39.81071706(numeric) Time Averaging:100(%) Prediction distance:630(cm) Prediction frequency:720(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.480(mW/cm^2) Power density at prediction frequency:0.480960(mW/cm^2) Margin of compliance:0.0(dB) This equates to:4.809600866W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:47.80(dBm) Maximum peak output power at antenna input terminal:60255.95861(mW) Antenna gain(maximum):3.5(dBi) Maximum antenna gain:2.238721139(numeric) Time Averaging:100(%) Prediction distance:150(cm) Prediction frequency:720(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.480(mW/cm^2) Power density at prediction frequency:0.477098(mW/cm^2) Margin of compliance:0.0(dB) This equates to:4.77098024W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:43.00(dBm) Maximum peak output power at antenna input terminal:19952.62315(mW) Antenna gain(maximum):16(dBi) Maximum antenna gain:39.81071706(numeric) Time Averaging:100(%) Prediction distance:320(cm) Prediction frequency:935(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.623(mW/cm^2) Power density at prediction frequency:0.617291(mW/cm^2) Margin of compliance:0.0(dB) This equates to:6.17291333W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:43.00(dBm) Maximum peak output power at antenna input terminal:19952.62315(mW) Antenna gain(maximum):9.5(dBi) Maximum antenna gain:8.912509381(numeric) Time Averaging:100(%) Prediction distance:150(cm) Prediction frequency:935(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.623(mW/cm^2) Power density at prediction frequency:0.628938(mW/cm^2) Margin of compliance:0.0(dB) This equates to:6.289376851W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:47.80(dBm) Maximum peak output power at antenna input terminal:60255.95861(mW) Antenna gain(maximum):16(dBi) Maximum antenna gain:39.81071706(numeric) Time Averaging:100(%) Prediction distance:555(cm) Prediction frequency:935(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.623(mW/cm^2) Power density at prediction frequency:0.619732(mW/cm^2) Margin of compliance:0.0(dB) This equates to:6.197323541W/m^2 2 4R PG S π =

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:47.80(dBm) Maximum peak output power at antenna input terminal:60255.95861(mW) Antenna gain(maximum):4.5(dBi) Maximum antenna gain:2.818382931(numeric) Time Averaging:100(%) Prediction distance:150(cm) Prediction frequency:935(MHz) MPE limit for uncontrolled exposure at prediction frequency:0.623(mW/cm^2) Power density at prediction frequency:0.600631(mW/cm^2) Margin of compliance:-0.2(dB) This equates to:6.006308264W/m^2 2 4R PG S π =

Test Report

15.231.doc - Date: April 13, 2010 www.nemko.com Report Reference ID: 148253-8TRFWL Test specification: Title 47 – Telecommunication Chapter I – Federal Communications Commission Subchapter B – Common carrier services Part 24 – Personal communications services Subpart D – Narrowband PCS Applicant: TEKO Telecom S.p.A. Via Meucci, 24/a I-40024 Castel S. Pietro Terme (BO) (Italy) Apparatus: Optical system FCC ID: XM2VERYHIGHPOWERL Model: TRU8S9S19BV/AC-WS Testing laboratory: Nemko Italy S.p.A. Via Carroccio, 4 I-20046 Biassono (Italy) Name and title Date Tested…

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Contact Information

Applicant

Alessandro Brunelli(Certification Engineer)
[email protected]+39 051 6946811Fax: +39 051 948473

Technical Contact

TEKO TELECOMMASSIMO NOTARGIACOMO
[email protected]39 051 6946811

VIA MEUCCI 24/A · CASTEL SAN PIETRO TERME · Italy

Non-Technical Contact

TEKO TELECOMMARCO DELLA MORA
[email protected]39 051 6946811

Test Firm

Nemko SpARalph Spanevello
[email protected]39-0392201201Fax: 39-0392201221

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
224D940 MHz - 941 MHz20 WD7WAmp
Confidentiality
Long Term
Grant Notes
Signal Booster. Power output listed is conducted. Users and installers must be provided with antenna installation and transmitter operating conditions for satisfying RF exposure compliance. 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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