
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User’s Manual AR Repeaters VD203 66/EN – English User’s Manual AR Repeaters Channel Selective and Band Selective Repeaters – English LGP Allgon ABöH|H#ùHëî ¤®LH#o¦#fH ̈¤¤®®Va®c This document describes installation, commissioning and the design of the LGP Allgon AR Repeaters. Communication between LGP Allgon AR repeaters and operators is carried out either by using LGP Allgon OMT32 (Operation and Maintenance Terminal), or LGP Allgon OMS (Operation and Maintenance System). OMT32 is described in the OMT32, User’s Manual. OMS is described in the Advanced Repeater OMS, User’s Manual. Hardware and software mentioned in this document are subjected to continuous development and improvement. Consequently, there may be minor discrepancies between the information in the document and the performance and design of the product. Specifications, dimensions and other statements mentioned in this document are subject to change without notice. Federal Communications Commission (FCC) This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. LGP Allgon and its suppliers shall not be liable for any damages related to the software or hardware, or for any other damages whatsoever caused of the use of or inability to use any LGP Allgon product. This is applicable even if LGP Allgon has been advised of the damage risk. Under any circumstances, LGP Allgon’s entire liability shall be limited to replace such defective software or hardware which was originally purchased from LGP Allgon. Teflon is a registered trademark of Du Pont. Other trademarks mentioned in this document are trademarks or registered trademarks of their respective owners. This document is produced by El, Tele & Maskin Ingenjörsfirma AB, Huddinge, Sweden. Printed in Sweden. LGP Allgon AB, SE-187 80 Täby, Sweden Phone: +46 8 540 822 00 – Fax: +46 8 540 834 80 – Internet: www.lgpallgon.com This document or parts of it may not be reproduced without the written permission of LGP Allgon AB. Infringements will be prosecuted. All rights reserved. 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From: Monica Roos ES-STO Sent: Monday, May 08, 2006 10:23 AM To: Roland Gubisch ES-BOX Cc: Terre Wolak ES-ATL Subject: SV: TCB application Powerwave PCS amplifier FCC ID: SCEAR3700 Dear Roland, ADMINISTRATIVE 1. I have given the client a copy of 2.1033 and hopefully he can figure out the answer. 2. The client has answer in Swedeish so I will try to translate the answer for you. The module marked "UA106 14/1" is a passive filter (mechanical construction) with no electrinics inside. See attached specification, item 2 "Mechanical data", item 2.1 "masterial" and item 2.2 "Surface treatment". TECHNICAL 1. Hereby I confirm (after talking to the client) that each amplifier supports only one carrier. OK? 2. Noted. The infromation has been forward to the radio engineers. Best regards Monica _____________________________________________ Från: Roland Gubisch ES-Box Skickat: den 26 april 2006 23:58 Till: Monica Roos ES-STO Kopia: Terre Wolak ES-Atl Ämne: TCB application Powerwave PCS amplifier FCC ID: SCEAR3700 Dear Monica, Review of this application is complete and the following points are noted: ADMINISTRATIVE (1) According to FCC 2.1033(c)(8), the application must include information on the DC voltage(s) and current(s) into the final RF stage under normal operation. I cannot find this information. Kindly indicate where it is located, or provide it. The information can be provided in the form of an email or attachment. (2) Internal photos must show components with all shielding removed, as well as in place. Photos of the module marked "UA106 14/1" do not appear to show the device with the outer shielding removed. If there are electronic components inside, photos should be provided showing both sides of any PC board within. TECHNICAL (1) Please confirm that each amplifier supports only one carrier. If more than one carrier per amplifier is possible (in either the uplink or downlink directions), three-tone intermodulation tests must be performed on that amplifier. These tests are absent from the test report. (2) For information only: Spurious emissions ("cabinet radiation") from licensed radio service devices are measured by the substitution method of TIA-603-C and compared to the limit of -13 dBm. This is not necessary if all emissions are at least 20 dB below the radiated emission level equivalent to -13 dBm, or 64.4 dBuV/m at 3m. The data I the test report shows that the spurious emission level of 64.4 dBuV/m is not exceeded. Future reports for licensed radio devices should acknowledge the appropriate measurement method and use it where necessary. Certification can proceed when these points are addressed. Thank you, Roland
(3)1 Viktor Gaunitz C PRODUCT SPECIFICATION Utfärdare/Issued byGranskad/Checked Tillhör/File Dok nr/Doc No Utgåva/Edition Sida/Page Dok. ansv., godk./Doc. resp., approved Datum/Date UA106 14--201 040927 Viktor Gaunitz DUPLEX FILTER (Full---band PCS1900) 1GENERAL SPECIFICATION The filter shall be made in a RF---tight housing without openings that can cause RF---leakage. Metallic tape can cover trimming holes, as long as RF---tightness is achieved and adhesion is maintained through life. N.B. The tape is not allowed to cover any part of the marking. Furt- hermore the filter shall be made in accordance with good workmanship. It shall be built up as a three port device with the ports defined as follows: ANT= common port with interconnec- tion between the two filter parts. HI=the higher pass band frequency port. LO=the lower pass band frequency port. The ANT port must be DC---connected to ground (chassis) of the unit. Both the LO to ANT and the HI to ANT filters shall be true pass band types. (3)2 Viktor Gaunitz C PRODUCT SPECIFICATION Utfärdare/Issued byGranskad/Checked Tillhör/File Dok nr/Doc No Utgåva/Edition Sida/Page Dok. ansv., godk./Doc. resp., approved Datum/Date UA106 14--201 040927 Viktor Gaunitz 2MECHANICALDATA All dimensions in mm. ∅4.00.2 (4x) SMA female (3x) LOHI 1850--1910/1930--1990MHz ANT 82 max 1) 31 max 1) 104.5 max 1) 18.51 (3x) 1100.2 118.5 max 70 0.2 10.00.5 (4x) 1.0 (4x) 6.01(2x) 562 7 --- 9 962 ART. NO: UA106 14/1 Date code ”Mfg No.-- Serial No.” Data Matrix code 5.0 (4x) ∅7 Hex nut optional (3x) Notes:1) Including foldings around corners. (3)3 Viktor Gaunitz C PRODUCT SPECIFICATION Utfärdare/Issued byGranskad/Checked Tillhör/File Dok nr/Doc No Utgåva/Edition Sida/Page Dok. ansv., godk./Doc. resp., approved Datum/Date UA106 14--201 040927 Viktor Gaunitz 2.1Material Housing:Copper Connector bodies:Brass or beryllium copper. Contact sockets:Beryllium copper 2.2Surface treatment Housing, incl. inner walls:Min 2mmAg. Connector bodies:Min 2mm Cu(55%)---Sn(25%)---Zn(20%)---alloy or min 0.8mmAu. Contact sockets:Min 1.3mmAu. 3ELECTRICAL SPECIFICA TION 3.1Maximum ratings Quantity SymbolConditionValueUnit Operating temp. rangeT opr All data met, unless otherwise specified --- 25 to +85 o C Relative humidity, (steady state), without corrosion RHAt +40 o C, @ 90 to 95 %RH 21days Power handling, continu- ous P cont Min 20W 3.2Characteristics Data given below is not allowed to alter when the filter is mated with cable connectors using a coupling nut torque of one (1) Nm. Quantity SymbolConditionValueUnit Port ANT to HI Insertion lossI L 1930 to 1990 MHzMax 1.3dB Return loss in portHIR L 1930 to 1990 MHzMin 17dB AttenuationA1685 to 1810 MHzMin 50dB 1850 to 1910 MHzMin 60 Port ANT to LO Insertion lossI L 1850 to 1910 MHzMax 1.3dB Return loss in portLOR L 1850 to 1910 MHzMin 17dB AttenuationA1605 to 1730 MHzMin 50dB 1930 to 1990 MHzMin 60 Intermodulation measurement in Port HI, when two 5 W signals, 1850 and 1910 MHz are fed into Port LO while Port ANT is terminated with a 50Ωload. IntermodulationIMAs above. Measured at 1970 MHz. Max --- 116dBm Intermodulation measurement in Port LO, when two 5 W signals, 1930 and 1990 MHz are fed into Port HI while Port ANT is terminated with a 50Ωload. IntermodulationIMAs above. Measured at 1870 MHz. Max --- 116dBm (3)4 Viktor Gaunitz C PRODUCT SPECIFICATION Utfärdare/Issued byGranskad/Checked Tillhör/File Dok nr/Doc No Utgåva/Edition Sida/Page Dok. ansv., godk./Doc. resp., approved Datum/Date UA106 14--201 040927 Viktor Gaunitz 4FUTUREREQUIREMENTS TBD 5 MARKING Each filter shall be marked in accordance with the following: a)Powerwave article No in accordance with the Purchase Order (P/O). b)Date code with four digits (year and week, e.g. 9946). c)LGP Allgon code for the Manufacturer in question--- Serial No (five digits). d)Data Matrix code containing Powerwave article No, Revision No=NA(= not applicable for this type of filter), Date code, Serial No with Manufacturer No. e)Frequency range forLOandHIband. I.e. 1850---1910/1930---1990 MHz. f)Port identification marking on the top of the filter, according to drawing. The marking must resist normal mechanical wear that can occur during normal handling, storage and operation. 6P ACKAGE The shipping package shall be marked according to the following: a)Powerwave Purchase Order No. b)Powerwave article No. c)Manufacturer’s name and/or trade mark and article No. d)Date of manufacture as for marking. e)Number of filters. 7ARTICLENO LIST Article No Pass band width (MHz) UA106 14/160 8REVISION INFORMATION Revision Description of change(s) within Paragraph(s). (e.g. 1: = Paragraph 1) BHeader, 2:Allgon Logo replaced by LGP Allgon Logo.5, 6:Allgon replaced by LGP Allgon. CLGP Allgon logo erased. LGP Allgon name changed to Powerwave in the document
1(4) EXTERNAL PHOTOS Part I FCC ID: SCEAR3700 2(4) 3(4) 4(4) ‘
Additional photos FCC ID: SCEAR3700
Marking and location FCC ID: SCEAR3700
Operational description Powerwave AR repeaters are used to fill out uncovered areas in cellular mobile systems, such as base station fringe areas, road tunnels, business and industrial buildings, etc. An AR repeater receives signals from a base station, amplifies and retransmits the signals to mobile stations. Also it receives, amplifies and retransmits signals in the opposite direction. Both directions are served simultaneously. To be able to receive and transmit signals in both directions, the repeater is connected to a donor antenna directed towards the base station and to a service antenna directed towards the area to be covered. Control of the repeaters is performed using a desktop or notebook, which can communicate with the repeaters either locally or remotely via modem. Remote operation can be performed either via PSTN or a GSM net. Uplink Signal Path The uplink signal path, i.e. from the mobile station through the repeater to the base station, is identical to the downlink path but the other way round. Only some levels and component values differ. Downlink signal path The signal from the base station is received via the repeater BS antenna and is then forwarded through a directional coupler (DC). The signal passes a duplex filter (DPX), is amplified in a low noise amplifier (LNA), and enters the channel boards (CHA), which have two parallel channels each. The first mixer stage on the CHA amplifier board, which is controlled by a synthesizer, converts the received frequency down to the IF frequency. The signal is then filtered by SAW bandpass filters and, not shown in the figure, amplified before it is fed to the second mixer stage for conversion back to the original frequency. The output signal from the mixer is then amplified in the power amplifier and fed to a combiner, which combines the signals from the two channels on the channel board. The output signal passes a combiner (CMB), a duplex filter (DPX), and a directional coupler (DC), before it is fed to the repeater MS antenna.
4 . Commissioning öRead carefully Chapter 1 Safety before commissioning the repeater. Check all connections made during the installation. To fulfill the IP65 weather protective requirements, ensure that the cable strain relief bushings are properly tightened. Also, ensure that the gaskets at the cable inlets and on the cabinet are properly fitted and not damaged. Preparing for setup You can set up a repeater locally by connecting a PC loaded with the OMT32 software. öA COM port on the PC is connected to the P31 PC port (RS-232) located to the right in the cabinet (see Figure 4-1). Use the provided serial cable. The P31 PC port is described in the Connection Ports section in Chapter 5. Finally, make sure the repeater is connected to the mains. Now, you can use OMT32 to set up and control the repeater. The OMT32 program is described in the OMT32, User’s Manual. For repeaters without DIA board (e.g. BMU without donor antenna) the PC is connected to the P106 port on the FON board. The P106 port is described in the FON - Fiber Optic Node Board section in Chapter 5. MS DPX ANT TEST DC -30 dB -20 dB P31 Figure 4-1. Connecting a PC for local setup LGP Allgon ABöH|H#ùHëîrjjcîîcrocoX ¤®LH#o¦#fH ̈¤¤®®Va®Vöaöu Starting the Repeater 1.Turn the mains switch on (marked ’S’ in Figure 4-2). 2.Check the LED on the power supply unit (V). It must be lit with a steady yellow light. 3.Check the four CU board LEDs (see Figure 4-2). A correct power up is indicated as follows: POWER öYellow LED that is lit with a steady light after the mains is switched on. Indicates present power. BOOT öRed LED that is lit with a steady light when the system boots, i.e. for 10 – 15 seconds after the mains is switched on. Then, it flashes for the next 5 – 10 seconds. After that, if no error is detected, the LED is off. FAULT öRed LED that flashes 15 – 20 seconds after the mains is switched on. Then, it flashes for less serious alarms (ERROR) and is lit with a steady light for fatal alarms (CRITICAL). OPER öGreen LED that lights up approx. 15 seconds after the mains is switched on. It shows, with a steady light, that the unit is ready for operation. 4.Check the three ALI board LEDs (see Figure 4-2). The LEDs follow the alarm relays. A correct power up is indicated as follows: OPER öGreen LED that has the same indication as the green LED on the CU board (see above). FAULT öRed LED that is lit with a steady light for ERROR and CRITICAL alarms. POWER öYellow LED that has the same indication as the yellow LED on the CU board (see above). When the indicators show operational mode, the repeater can be configured for operation by using a computer running OMT32. This is further detailed in the OMT32, User’s Manual. rjjcîîcrocoXöH|H#ùHëîLGP Allgon AB Vöaö§H ̈¤¤®®Va®¤®LH#o¦#f Indicators in the Cabinet ö Figure 4-2 shows the repeater indicators and the mains switch in the cabinet. Figure 4-2 is, however, not applicable to the BMU type that uses the indicators on the FON board. The FON board indicators are described in the FON - Fiber Optic Node Board section in Chapter 5. MRX indicators öAn optional MRX board for CDMA repeaters has the same set of indicators as the CU board (POWER, BOOT, FAULT and OPER). The function of these MRX indicators are also the same as for the CU board (described in the previous section). R2R, Repeater to Repeater Link indicators öAdditional indicators are found in the repeater, if equipped with the Repeater to Repeater Link feature. For information about these indicators, refer to the VD202 91/EN R2R, Repeater to Repeater Link Kit, Installation Guide. F2F, Fiber to Fiber Link indicator öAn additional green F2F indicator is found on the FON board in the BMU, RMU and FOR types. This indicator is further described in the FON - Fiber Optic Node Board section in Chapter 5. MRX DPX ANT TEST DC -30 dB BS -20 dB MRX DPX ANT TEST DC -30 dB OPER FAULT POWER POWER BOOT FAULT OPER CU ALI SV MRX Figure 4-2. Internal indicators and mains switch LGP Allgon ABöH|H#ùHëîrjjcîîcrocoX ¤®LH#o¦#fH ̈¤¤®®Va®Vöaöü Indicators on the Repeater Front ö After commissioning the repeater, the cover is closed and the following indicators on the repeater front are visible: Yellow Operation LED that lights up approx. 15 seconds after the mains is switched on. At steady light the repeater is ready for operation. Red Alarm LED that indicates ERROR alarms with flashing light and CRITICAL alarms with steady light. YellowRed Figure 4-3. External indicators rjjcîîcrocoXöH|H#ùHëîLGP Allgon AB VöaöVH ̈¤¤®®Va®¤®LH#o¦#f Measuring the Output Signal Level öööUplink and downlink output signal test ports are found on the directional couplers (DC) at the MS and BS antenna connectors. These test ports are marked TEST –30dB (see Figure 4-4) and are intended for signal measuring using e.g. a spectrum analyzer. The coupling is –30dB approximately. There is no directivity in these test ports, i.e. both uplink and downlink signal can be measured. MRX DPX ANT TEST DC -30 dB BS -20 dB MRX DPX ANT TEST DC -30 dB DC TEST –30 dB DC TEST –30 dB Figure 4-4. Measuring ports for output signal level LGP Allgon ABöH|H#ùHëîrjjcîîcrocoX ¤®LH#o¦#fH ̈¤¤®®Va®VöaöS Voltage Supply Testpoints ööA number of voltage supply testpoints are available in the repeater. These testpoints are named U7A – U7F for the 7V supply voltages and U26 for the 26V or 13V supply voltage (26V or 13V depending on the repeater type). A standard multi-meter can be used on these testpoints. The testpoints are found on the DIA board in the repeater cabinet. The testpoint positions on the DIA board is detailed in the Board and Unit Descriptions section in Chapter 5. If the repeater is equipped with a second PSU, e.g. for combined channel/band selective operation, the same set of testpoints are also found on the cover DIA board. Repeater Configuration The repeater is now re…
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FCC ID: SCEAR3700 DC power to final RF stage Maximum output from the Power Supply Unit (PSU) is, according to, the marking 250 W which for the final RF stages will be 27V/9.5A. It's only the final RF stages which are supplied by 27 V. Please note that this is a maximum limit for a repeater containing four channel cards (= 8 final RF stages transistors). The rest of the product consumes a small part of the power. A repeater containing two channel cards (= 4 final RF stages transistors) have a specified maximum output power of 160W.
1(2) TEST SET-UP PHOTOS FCC ID: SCEAR3700 Radiated spurious emission 30-1000 MHz 2(2) Radiated spurious emission 1-26 GHz Conducted disturbance voltage at AC terminal
| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 4 | 24E | 1.93 GHz - 1.99 GHz | 2 W | GXW |

Repeater
Equipment Class
AMP - Amplifier
Repeater
Equipment Class
PCB - PCS Licensed Transmitter