
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User’s manual for Remote Unit MORx01B (i) (Power) Manual update MOR801.doc Page 1 15-February-01 User’s manual for channel or band selective Remote Unit MORx01B (i) (Power) User’s manual for Remote Unit MORx01B (i) (Power) Manual update MOR801.doc Page 2 15-February-01 HEALTH AND SAFETY WARNINGS Installer Warning: Any over the air radiated use of this product is intended to be used with either Roof Top (Building-mount) or Pole Mounted (Non- building-mount) Antennas. Antenna installation must conform within the following guidelines to meet FCC RF exposure limits, otherwise a environmental evaluation is required if: Broadband PCS (subpart E): Non-building-mounted antennas: height above ground level to lowest point of antenna < 10m Radio (Part 24) and total power of all channels > 2000 W ERP (3280 W EIRP). Building-mounted antennas: Total power of all channels > 2000 W ERP (3280 W EIRP). Narrowband PCS (subpart D): Non-building-mounted antennas: height above ground level to lowest point of antenna < 10m Radio (Part 24) and total power of all channels > 1000 W ERP (1640 W EIRP). Building-mounted antennas: Total power of all channels > 1000 W ERP (1640 W EIRP). Cellular Radiotelephone Service (Part 22, subpart H): Non-building-mounted antennas: height above ground level to lowest point of antenna < 10m Radio (Part 22) and total power of all channels > 1000 W ERP (1640 W EIRP). Building-mounted antennas: Total power of all channels > 1000 W ERP (1640 W EIRP). Paging and Radiotelephone Service (Part 22, subpart E): Non-building-mounted antennas: height above ground level to lowest point of antenna < 10m Radio (Part 22) and total power of all channels > 1000 W ERP (1640 W EIRP). Building-mounted antennas: Total power of all channels > 1000 W ERP (1640 W EIRP). Private Land Mobile Radio\Specialized Mobile Radio (Part 90): Non-building- mounted antennas: height above ground level to lowest point of antenna < 10m Radio (Part 90) and total power of all channels > 1000 W ERP (1640 W EIRP). Building-mounted antennas: Total power of all channels > 1000 W ERP (1640 W EIRP). For any clarification, please refer to FCC rules, 47 CFR ch. I, part 1.1307 User’s manual for Remote Unit MORx01B (i) (Power) Manual update MOR801.doc Page 3 15-February-01 F Note: The electrical installation has to be performed in accordance with the safety regulations of the local authorities. Due to safety reasons the electrical installation must be performed by qualified personnel. The cover of this unit should not be opened while power is applied. Subsequent installation, commissioning and maintenance activities that require the unit to be powered with the cover open shall only be carried out by suitably qualified personnel. F Note: The grounding of the Unit has to be performed by all means. A grounding bolt is provided at the cabinet in order to connect the earth bonding cable. F Note: The Unit is heavy-weight. Make sure that a suitable mounting surface is used. Only adequate manpower is allowed to handle the system. F Note: ESD precautions have to be observed! Before maintenance work use the available grounding system to connect ESD protection measures. User’s manual for Remote Unit MORx01B (i) (Power) Manual update MOR801.doc Page 4 15-February-01 1 INTRODUCTION 1.1 Intended purpose Cellular telephone systems transmit signals in two directions between base stations and mobile telephones within the signal coverage area. If weak signal transmissions occur within the coverage area because of indoor applications, topological conditions or distance from the transmitter, a repeater is used to extend transmission range. In the downlink path the repeater picks up the signal from a donor antenna of an existing cell, amplifies and re-transmits it into the desired dark spot. In the uplink direction the repeater receives signals from mobile stations present in its coverage area and re-transmits them to the corresponding base station. The over the air radiated use of this repeater is intended to be used with either Roof Top or Pole Mounted Antennas. To provide coverage in a indoor application one must mount the antennas on or outside the building structure that is occupied. This must be done in a matter that conforms to the FCC RF exposure ( See health and Saftey section of this manual). 1.2 About the MRx01B This repeater bi-directionally amplifies signals between multiple mobiles and a single base station in the frequency band. It is employed where poor topological conditions cause weak field strengths. It can provide highly selective amplification of band segments or channels in the frequency band. The MRx01B can be set-up locally or remotely. A PCMCIA slot for modem operation is an available option. The repeater has a large number of functions that can be monitored and changed by the operators via a terminal emulation program or the MIKOM OMC software platform. An easy to understand and simple to learn communication language is available to help the operator query status reports from the repeater or to change settings. User’s manual for Remote Unit MORx01B (i) (Power) Manual update MOR801.doc Page 5 15-February-01 1.3 Modular design F Note: It is not possible to combine MRx01 units / modules with other MRx01 units / modules without verifying FCC Approval and RF Exposure Compliance ( See health and Saftey section of this manual). For any clarification, please refer to FCC rules, 47 CFR ch. I, part 1.1307 The MRx01B repeater’s modular design provides the flexibility in addressing present and future system needs. Each repeater is custom configured. The main unit includes equipment common to all systems ( cabinet, control module, power supply, mother board ). To this main unit hardware modules are added as needed. In addition to different duplexers, a wide range of conversion modules can be selected depending on the used network system. MRx01B modules operating in PCS, PAGING900, AMPS800, or LMR\IDEN800 bands are available.
Approuvé : Mat. Echelle : 46 allée de Megevie 33174 GRADIGNAN CEDEX Dess. M QUEBRE Page 1/1 +26V IN OUT Page 1 DC/DC +12V+12V TLA0208 Rev A Date : 26/01/99 TLA0260 TLA0258TLA0238 Rev A Feedforward Amplifier 30W 26dB gain TLB0183E : 869-894MHz and TLB0186E : 851-869MHz Date : 29/07/99 Fich. : 99SC004A.DRW Dess. : 99SC004A Révision : A
FCC ID: BCR-RPT-MOR801BI Response to TCB questions Barry Please find the response to your inquiries below. Hope this clears things up somewhat. (Another email will follow with additional files) Best regards, David Light Senior Wireless Technician Nemko Dallas, Inc. ph 972-436-9600 fax 972-436-2667 e-mail mailto:[email protected] -----Original Message----- From: Certification Manager [SMTP:[email protected] ] Sent: Friday, March 30, 2001 5:05 PM To: Davida Hanson Cc: David Light Subject: FCC ID: BCR-RPT-MOR801BI Hi Davida, We have found the following issues following our review of the application: 1. Page 7 of the test report has a specification for rated power of 2 watts, 1 watts, and 20 watts. Elsewhere it says the unit has two modules, 1W and 20W. How does the 2W unit fit in? Response - [David Light] We were able to get more power out of the low power module using voice modulation as opposed to iDEN modulation. I suppose the correct thing to do would be to rate the repeater at 1W and 20W on the grant. (There are not 3 modules) 2. The plot on page 9 shows the skirt going above the limit line on the right side at -13dBm. This looks like a failure. Please explain. Response - [David Light] Please refer to new Occupied BW Data supplied for item 4 (next email) 3. The intermod data tables for the low power version appear to be all two signal at the high band edge. We need either three signal (one low-two high or two low, one high) or 2 signal at BOTH the high and low band edge. Please identify which plots in the report are responsive to this requirement or provide additional data Response - [David Light] Intermod data. <<iDEN intermod (RETEST).xls>> <<intermod voice(retest).xls>> <<Hi-Pwr Lower Bandedge Intermod (RETEST).xls>> 4. Given the frequency range requested (851-869) and depending on what service under part 90 this device is used it appears that three possible emissions masks could be applied: Mask G, Mask H or the EA mask of 90.691. Please comment on where in part 90 this device is used and comment on which emission mask is appropriate based on that use. Note that some of these masks have limits lower than the generic -13dBm shown on your graphs. We have not tested the compliance of the modulation data shown, as we would like your response first so we can apply the correct mask. Some of the plots (e.g. page 13) may not be wide enough for us to determine compliance conclusively. Response - [David Light] Occupied BW Data (see next email) 5. Please confirm that the top titles above the bandwidth tables correctly identify the data contained (except for the MOR 701Bi typo) and that the EUT designation in the table itself, which is uniformly "MOR 801Bi Power", is wrong. Response - [David Light] Yes, MOR 701 Bi is a typo and yes, the plots are incorrectly labeled. Attached are the plots with correct labeling. (See next email) 6. Please tell us which exhibit file has the DC currents and Voltages in the final RF stage. Response - [David Light] Current Voltage Amplfier P\N: Document: MOR801Bi Power Final stage Forward Link: 3.3A 28VDC TLB186E 99sl002a-3.pdf MOR801Bi Final stage Forward Link: 2.2A 12VDC 151970 Q0156R7B.doc (see attached) <<Q0156R7B.zip>> 7. Please identify which exhibit file is responsive to the requirement for filing a tune up procedure. Response - [David Light] All tuning is done at the factory, the specific channels are set via the Software within the repeater and the user is to reference the MOR801 S\W User's Manual (see attached M0062a0C.zip). <<M0062A0C.zip>> Best regards Barry C. Quinlan Certification & Telecom Manager ---------------------------------------------------------------------------- --- Curtis-Straus LLC Voice: 978.486.8880 x270 527 Great Road Fax: 978.486.8828 Littleton, MA 01460 <http://www.curtis-straus.com > ---------------------------------------------------------------------------- ----
Front view
FCC ID: BCR-RPT-MOR801BI Label details
FCC ID: BCR-RPT-MOR801BI Internal photos High power Low power
KTL Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MOR 801Bi and MOR 801Bi Power PROJECT NO.: 0L0367RUS1 Page 6 of 54 Theory of Operation This amplifier/repeater system is identical to the previously approved MR801Bi (FCC ID. BCR- RPT-MR801BI) except that the downlink input / uplink output from the system is connected to a base station transmitter via fiber optic cables. Since the link between the base station and the MOR801Bi is not wireless, only the downlink transmit direction requires approval. The MOR 801Bi can be operated at 20 W or 1 W maximum rf output, depending on the amplifier module installed. The repeater is comprised of two amplifier chains. The signals to and from the mobiles are combined and forwarded to an antenna by a frequency duplexer. The optical signals to and from the Master Unit are converted by the optical transceiver. In the downlink direction, the optical signals from the Master Unit are converted into RF-signals by the tranceiver. The RF signal passes the four way splitter, which then forwards them to the conversion modules. After the conversion they are combined by the active combiner and afterwards amplified by the feed forward / final amplifier. The feed forward / final amplifier provides the required power output. Finally the signals are fed to the antenna by the duplexer. In the uplink direction, the signals from the mobiles are separated by the duplexer, go to a pre- amplifier and afterwards to a conversion module. The signals are combined by the active combiner, then are converted to optical signals by the transceiver and are finally transmitted to the Master Unit. In the downlink path, a power detection measures the output power and controls the gain. In the uplink direction, the gain is controlled by the active combiner, to protect the optical transceiver. This control detection is called the Automatic Level Control (ALC). System Diagram BTS Fiber Optic Cables MOR801Bi Roof-mounted antenna Master Unit
-----------------À Strukturstückliste 153398 MOR801Bi Power (G) /00 00001 0 1 2 3 4 5 6 7 8Ë-------------------------------------------------------------- 153398 *MOR801Bi Power (G) /00 1,000 150521 *Assembly Material 10 1,000 151103 Assembly drawing RF 20 0,000 151142 Assembly drawing 30 0,000 148335 *Duplexer UL Input act./01 40 1,000 152313 Transc. MFY1340HDI DIN/00 50 0,000 151926 Transc. MFY1310HSI DIN/00 60 0,000 152499 Transceiver MFY1340HDI/00 70 0,000 151924 Transc. MFY1310 HSIFC /00 80 0,000 152498 Transceiver MFY1340HDI/00 90 0,000 151925 Transc. MFY1310 HSISC /00 100 0,000 152500 Transceiver MFY1340HDI/00 110 0,000 148826 Transceiver MFY1310DIN/00 120 0,000 149025 Transceiver MFY1310 SC/00 130 0,000 149026 Transceiver MFY1310 FC/00 140 0,000 148959 *Active Combiner DL/02 150 1,000 148022 *Active Combiner UL/00 160 1,000 150728 *4-Way-Splitter /00 170 1,000 145820 *FSK-Modulator 10,7MHz /02 180 1,000 150150 *Bas.Mod.Var.BW 15MHz/02 190 0,000 150151 *Ext.Mod.Var.BW 15MHz/02 200 0,000 150152 *Basic Module /02 210 0,000 150153 *Extension Module /02 220 0,000 151233 Fin.Amp.30W T,26V,36dB/01 230 1,000 141230 Power Supply, USA plug/10 240 0,000 148812 Power Supply, no plug /01 250 0,000 144306 Power Supply, no plug /05 260 0,000 145524 Power Supply, no plug /01 270 0,000 144946 Power Supply, no plug /02 280 0,000 145504 Power Supply, no plug /00 290 0,000 147710 *4 Ext. Alarms /00 300 0,000 112425 Adapter 310 0,000 147956 SW SLV1009 V1.05 320 0,000 143055 SW MOB100 V1.10 330 1,000 149917 *Modification Kit G2 /00 340 0,000 149918 *Modification Kit /00 350 0,000 150529 *Modification Kit G4 /00 360 0,000 149920 *Modification Kit G4 /00 370 0,000 151135 *Modification Kit TDMA /00 380 0,000 151671 *Modification Kit TDMA /00 390 0,000 143051 *Control Unit SM2009 /11 400 1,000 153144 *I²C Board /02 410 1,000 149778 *Main Board 26V version/00 420 1,000 146179 *Wall mounting kit 430 1,000 149777 *Main Board 26V version/00 440 1,000 146200 *Sparepart kit 450 1,000 142529 *Pole mounting kit 460 0,000 33167 Termination Resistor 470 2,000 146942 *Protective tube kit 480 1,000 146943 Konf. Kabel HF 490 1,000 150753 *Konf.Kabel DC act.Com. 500 2,000 148576 *Konf. DC-Kabel Debug 510 1,000 149928 *Konf.Kabel DC f.Transc 520 1,000 149936 *Konf. DC-Kabel FSK- 530 1,000 149648 *Konf. Kabel DC 540 1,000 152024 *Konf. Kabel AC 550 1,000 151013 Faltkarton 2.7 8-Kanal 560 1,000 146890 Federleiste 8-polig 570 1,000 151014 Ethafoam 220 8-Kanal 580 1,000 153397 Manual for MORX01B(Power) 590 0,000 148354 Manual SW SLV1009V1.xx 600 0,000 Gesamt: 28,000 0,00
-----------------À Strukturstückliste 153407 MOR801Bi (F) /01 00001 0 1 2 3 4 5 6 7 8Ë-------------------------------------------------------------- 153407 *MOR801Bi (F) /01 1,000 152954 Assembly drawing RF 10 0,000 147614 Assembly drawing lid 20 0,000 152638 Assembly drawing 30 0,000 149334 *Assembly Material 40 1,000 152426 *Cable set 50 1,000 148335 *Duplexer UL Input act./01 60 1,000 152313 Transc. MFY1340HDI DIN/00 70 0,000 151926 Transc. MFY1310HSI DIN/00 80 0,000 152499 Transceiver MFY1340HDI/00 90 0,000 151924 Transc. MFY1310 HSIFC /00 100 0,000 152498 Transceiver MFY1340HDI/00 110 0,000 151925 Transc. MFY1310 HSISC /00 120 0,000 152500 Transceiver MFY1340HDI/00 130 0,000 148826 Transceiver MFY1310DIN/00 140 0,000 149025 Transceiver MFY1310 SC/00 150 0,000 149026 Transceiver MFY1310 FC/00 160 0,000 150728 *4-Way-Splitter /00 170 1,000 145820 *FSK-Modulator 10,7MHz /02 180 1,000 150150 *Bas.Mod.Var.BW 15MHz/02 190 0,000 150152 *Basic Module /02 200 0,000 148812 Power Supply, no plug /01 210 0,000 144306 Power Supply, no plug /05 220 0,000 141230 Power Supply, USA plug/10 230 0,000 145524 Power Supply, no plug /01 240 0,000 144946 Power Supply, no plug /02 250 0,000 145504 Power Supply, no plug /00 260 0,000 153545 *Power Amplifierkit 8W /00 270 1,000 151505 *M20 Kit 900MHz /00 280 0,000 150698 *Mobile Kit GSM/DCS /00 290 0,000 143112 *Modem Kit PSTN /03 300 0,000 143437 *VSWR Kit GSM + EGSM /02 310 0,000 147710 *4 Ext. Alarms /00 320 0,000 148272 *2 Ext. Alarms + PSTN /00 330 0,000 143052 *Battery Backup Module /02 340 0,000 143750 *Battery Backup Module /02 350 0,000 112425 Adapter 360 0,000 143055 SW MOB100 V1.10 370 1,000 147127 SW REP1009 V1.11 380 0,000 148968 *Mother Board /02 390 1,000 142362 *Connecting Board /01 400 1,000 143051 *Control Unit SM2009 /11 410 1,000 153144 *I²C Board /02 420 1,000 145687 *Pole mounting Kit 430 0,000 150519 *Wall mounting kit 440 1,000 143480 *Sparepart kit 450 1,000 33167 Termination Resistor 460 2,000 152574 *front panel small compl. 470 1,000 144309 Retainer Reed Magnet 480 1,000 152024 *Konf. Kabel AC 490 1,000 148964 Manual REP1009V1.xx 500 0,000 151774 Manual MORX01B(Power)(F) 510 0,000 Gesamt: 18,000 0,00
MIKOM GmbH Industriering 10 86675 Buchdorf Germany Tel.: +49/9099/69-0 Fax: +49/9099/69-31 Part:P1184 B0 I ID-No.:142769 Date:10.12.1998 Approved: Issued by: th-Elektronik-Design Thomas Heyl Budenheimer Weg 53 55262 Heidesheim am Rhein Germany Tel.: +49/6132/95216-2 Fax: +49/6132/657316 Index: 1.Circuit diagram: P1184 S0 I (2 pages) 2.Top view: P1184 B0 I (1 page) 3.Bottom view: P1184 B0 I (1 page) 4.Layer view: P1184 B0 I (2 pages) 5.PCB drawing: P1184 P0 I 6.Partslist of PCB: ID 142769 (3 pages) Platine: Mikom ID-Nr.: BlattBl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbHIndustriering 1086675 Buchdorf 1998 th-Elektronik-Design A4 Gez. Name Datum Gepr. Änderung Zust. Datum Name Heyl Norm 1 6 Raster-2W Power MobileGND MobileIgnition/GND+ AKKU (rot)- AKKU (schwarz)NTC-1 (blau)NTC-2 (blau) NB +12V VersorgungGNDEntladewiderstandSpannung Akku+8,4V SteuermodulTTL Akkuentladung +12V +12V NB AKKU 2,7V NB 1k 4 NB NB NB NB NBNB SCHUTZ NB 0R 10k +AKKU +8,4Vout +8,4Vout +AKKU +AKKU +12V+8,4VoutRentTTLinUakk +8,4Vout +8,4Vout 150R 39k M1-IG M1-POWER M1-IG P1 P2 P3 3,2 B_Frei_8 GND TLO BATT- CCTEMPREFVLIMITV+THI DRV PGM3PGM2PGM1PGM0/FACHBATT+ 2834910 117161155 14 6 12 13 U1 MAX713 C510pF C622nF C822nF C3 1.0nF C1 10uF/25V-G C9 10uF/25V-G 3 2 1 V4 RFD15P05SM 3 2 1 V5 RFD15P05SM 3 2 1 V6 RFD15P05SM 3 2 1 V10BSP17 E C B V9BCX19 E C B V3BCX19 EC B V15BCX19 E C B V19BCX19 1 2 V2 LL4148 1 2 V16 LL4148 1 2 V18 LL4148 R3 0 R20R21 R22 R290 R30R31 R32 0 R110k R1010k R1210kR1110k R1810k R2310k R2610k R284.7 10 12 7 6 1 K2 10 12 7 6 1 K1DS1E-M-12V 3 2 1 V8 MBRO640CT 3 2 1 V17MBRO640CT R915k R1715k C7 1uF/25V-G C4 1uF/25V-G C2 1uF/25V-G R13 R61k5 R51k5 R14 100k R15100k R27 R2100k R8 470 R4390 R71k 12V14 3 2 1 S1 1101M2CQE 654321 X1 ICV2,5/6-G-5,08 123 X2 MO-70553-3 1234 X3MO-70553-4 R19100 C12 100nF C14100nF -+ 23 1 8 4 U2LM258D -+ 23 1 8 4 U3LM258D -+ 65 7 84 U2LM258D -+ 65 7 8 4 U3LM258D V1LS S260-DO 2 1 V7 LS S260-DO G D S V13BF999 R24 R2520k F1 2AT-C R162,7 W /2W R48 nb /2 17.07.98 P1184 S0 I Moraitis, Gatzka Akku-Ladeeinheit 142769 MR340/MR440 P1184.6 10.12.1998 E Mor. F Mor. 28.08.98 G 18.11.98 Mor. Änd. Nr.: 1051 HI Änd. Nr.: 1060Änd. Nr.: 1083 09.12.9809.12.98 Mor.Mor. Platine: Mikom ID-Nr.: BlattBl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbHIndustriering 1086675 Buchdorf 1998 th-Elektronik-Design A4 Gez. Name Datum Gepr. Änderung Zust. Datum Name Heyl Norm 2 M1-IGM1-POWER 12k MC78L05ACD C201.0nF C1610nF C1510uF/25V-G C1710uF/25V-G 32 1 V20RFD15P05SM E C B V21BCX19 V22LL4148 R3410k R3510k R3610k R3710k R43 1k C18100nF RB7RB6RB5RB4RB3RB0RB2RB1 RA3RA2RA1RA0 VCCVSS RTCC/MCLROSC2/CLKOUTOSC1 431615171812 678910111213 14 5 U4PIC16C54/SO 4321 8765 U5 R33 R38nb R39nb R40nb R41nb R424k7 R454k7 R4447k C1922pF R46820 R4722k +5V +5V +5V +5V +5V +5V +5V +5V +5V +5V /2 17.07.98 P1184 S0 I Moraitis, Gatzka Akku-Ladeeinheit 142769 MR340/MR440 P1184.6 10.12.1998 E Mor. F Mor. 28.08.98 G 18.11.98 Mor. Änd. Nr.: 1051 HI Änd. Nr.: 1060Änd. Nr.: 1083 09.12.9809.12.98 Mor.Mor. -Lagenplatine x Lötstoplack x Bestückungsdruck Platine: Mikom ID-Nr.: Blatt Bl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbH Industriering 10 86675 Buchdorf 1998 th-Elektronik-Design A4 Gez. NameDatum Gepr. Änderung Zust.DatumName Heyl Norm -Lagenplatine x Lötstoplack x Bestückungsdruck Platine: Mikom ID-Nr.: Blatt Bl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbH Industriering 10 86675 Buchdorf 1998 th-Elektronik-Design A4 Gez. NameDatum Gepr. Änderung Zust.DatumName Heyl Norm -Lagenplatine x Lötstoplack x Bestückungsdruck Platine: Mikom ID-Nr.: Blatt Bl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbH Industriering 10 86675 Buchdorf 1998 th-Elektronik-Design A4 Gez. NameDatum Gepr. Änderung Zust.DatumName Heyl Norm -Lagenplatine x Lötstoplack x Bestückungsdruck Platine: Mikom ID-Nr.: Blatt Bl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbH Industriering 10 86675 Buchdorf 1998 th-Elektronik-Design A4 Gez. NameDatum Gepr. Änderung Zust.DatumName Heyl Norm -Lagenplatine x Lötstoplack x Bestückungsdruck Platine: Mikom ID-Nr.: Blatt Bl. Epoxyd FR4 1.6 mm 35 my Cu. MIKOM GmbH Industriering 10 86675 Buchdorf 1998 th-Elektronik-Design A4 Gez. NameDatum Gepr. Änderung Zust.DatumName Heyl Norm th-Elektronik-Design Mainz Donnerstag, 10. Dezember 1998 Partslist: P1184 B0 I ID-Nr.142769 Page: 1/3 Quantity Typ Package Comments Reference 1 PIC16C54-RC I/SO SO18 Microcontroller, RC-Oszillator,Industrial U4 1 MAX713ESE SO16 Akku-Lade-IC NiCd U1 2 LM258D SO8 2-fach-OP U2, U3 1 MC78L05ACD SO8 5V, 100mA-Regler U5 2 RFD15P05SM TO252 MOSFET p-channel V6, V20 2 RFD15P05SM TO252 MOSFET p-channel, nicht bestücken V4, V5 4 BCX19 SOT23 npn-Transistor V9, V15, V19, V21 1 BCX19 SOT23 npn-Transistor, nicht bestücken V3 1 BSP17 SOT223 FET V10 1 BF999 SOT23 V13 3 LL4148 MiniMelf V2, V16, V18 1 LL4148 MiniMelf V22 1 ZMM2,7 MiniMelf V14 2 MBRD640CT TO252 V8, V17 1 LG S260-DO SOT23 SMD-LED grün, nicht bestücken V1 1 LG S260-DO SOT23 SMD-LED grün V7 1 10pF 1206 C5 1 22pF 1206 C19 1 1.0nF 1206 C20 1 1.0nF 1206 nicht bestücken C3 1 10nF 1206 C16 2 22nF 1206 C6, C8 2 100nF 1206 C12, C14 1 100nF 1206 C18 3 1uF/25V Bauform B C2, C4, C7 4 10uF/16V Bauform C C1, C9, C15, C17 th-Elektronik-Design Mainz Donnerstag, 10. Dezember 1998 Partslist: P1184 B0 I ID-Nr.142769 Page: 2/3 Quantity Typ Package Comments Reference 4 0 1206 R3, R30, R31, R32 3 0 1206 nicht bestücken R20, R21, R29 1 2,7 W /2W 0414 Widerstand Typ Roederstein 593-0 R16 1 4.7 1206 R28 1 100 1206 R19 1 150 1206 R22 1 390 1206 R4 1 470 1206 R8 1 820 1206 R46 3 1k 1206 R7, R13, R43 2 1k5 1206 R5, R6 2 4k7 1206 R42, R45 10 10k 1206 R10, R11, R12, R18, R23, R27, R34-R37 7 10k 1206 nicht bestücken R1, R26, R38-R41, R48 2 15k 1206 R9, R17 1 20k 1206 R25 1 22k 1206 R47 1 39k 1206 R24 1 47k 1206 R44 3 100k 1206 R2, R14, R15 1 12k 1206 R33 2 DS1E-M-12V Relais von Matsushita, 1*UM, auch:OMRON G6E-134P-US 12VDC K1, K2 1 Mors 25436NB RM5 Schiebeschalter 1*UM S1 1 2AF-1206Littlefuse 451-002 Bauform C Sicherung 2A, flink F1 1 ICV2,5/6-G-5,08 2*6Pins*5,08mm Phoenix-Grundgehäuse 1785984 X1…
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TLB0183 Rev E and TLB0186 Rev E (Feedforward Amplifier 30W 26dB gain) (869-894 Mhz and 851-869 MHz) SCHEMATICS AND PARTS LIST DOC n° : 99SL002Date issued : jan 99 Revision : ADate revised : jul 99 CONFIDENTIEL 46, allée de Megevie - 33174 GRADIGNAN Tél. (5) 56 89 56 19 - Fax. (5) 56 89 53 44 S.A. au capital de 1 000 000 francs - R.C.S. Bordeaux B 380 341 685 - APE 322 A N° TVA Intracommunautaire FR 02 380 341 685 TLB0183 Rev E and TLB0186 Rev E SCHEMATICS AND PARTS LIST ASSEMBLY LEVEL 2ASSEMBLY LEVEL 1DESIGNATIONDOCUMEN T TYPEPAGE TLB0183 Rev E TLB0186 Rev E AMPLI FF 30W 869-894 MHz 26dB GAIN AMPLI FF 30W 851-869 MHz 26dB GAIN 99SC004ASCHEMATIC PARTS LIST 1 2 TLA0260CONTROL99SC025SCHEMATIC PARTS LIST 5 8 TLA0258MAIN99SC026SCHEMATIC PARTS LIST 18 19 TLA0238 Rev AL.A.R.99SC026SCHEMATIC PARTS LIST 18 23 TLA0208 Rev ADC TO DC CONVERTER98SC023ASCHEMATIC PARTS LIST 25 26 Approuvé : Mat. Echelle : 46 allée de Megevie 33174 GRADIGNAN CEDEX Dess. M QUEBRE Page 1/1 +26V IN OUT Page 1 DC/DC +12V+12V TLA0208 Rev A Date : 26/01/99 TLA0260 TLA0258TLA0238 Rev A Feedforward Amplifier 30W 26dB gain TLB0183E : 869-894MHz and TLB0186E : 851-869MHz Date : 29/07/99 Fich. : 99SC004A.DRW Dess. : 99SC004A Révision : A LISTE DES COMPOSANTS TLB0183ELISTE DES COMPOSANTS TLB0183E TELIACODEFABRICANT 1REF FABRICANT 1FABRICANT 2REF FABRICANT 2ObservationsRepèreDésignationBoitier TELIA S.A. CN1 SMA 4 trousEMBASEKRFSMA001RADIALLR 125 410 001 CN2SMA FEM 2 TROUSEMBASE (+pin+téfl 5mm)KCNF01003IMS2276.42.2017.195 CN3SUB D 15PTS MALE FILCONNECTEURKSM150002FERROPERM15MB102Z500PFCTFC 15P5K120 CN4pour embase RFPins UniversellesKXX000003SOCAPEXSX 618 2607IDMM99ME002 CN5pour pin universelleTéflonKXX000005SOCAPEXSX 618 650 DV1RPM07EMBALLAGEZUCRPM071RAJARPM07 DV2Ø 6mm L=4.8mmCAPUCHONADA060481MOPACA6.0S4.8R VINYLE 9238 DV3Ø 6mm L=4.8mmCAPUCHONADA060481MOPACA6.0S4.8R VINYLE 9238 ET50.8x25.4 PREIMPRIMEETIQUETTEESA050251CABLOGCAB42-508254 HW01Hex. M/F M3/US L=6ENTRETOISE SUB DVANH03061HARTING096700099740967000997409670009974 HW02Hex. M/F M3/US L=6ENTRETOISE SUB DVANH03061HARTING096700099740967000997409670009974 HW03INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW04INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW05INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW06INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW07INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW08INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW09INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW10INOX TC 2.5x5 PZVISVVCI25052TC M 2.5X5 INOX PZ HW11INOX TC 2.5x5 PZVISVVCI25052TC M 2.5X5 INOX PZ HW12INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW13INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW14INOX TC 2.5x8 PZVISVVIC25082TC M 2.5X8 INOX PZDIN7985 TC M2.5X8 INOX PZ HW15INOX TC 2.5x8 PZVISVVIC25082TC M 2.5X8 INOX PZDIN7985 TC M2.5X8 INOX PZ HW16INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW17INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW18INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW19INOX 2.5mmGROWERVRIG25051Rondelle Grower M2.5 X 5 INOXRondelle Grower M2.5 X 5 INOX HW20INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW21INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW22INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW23INOX TC 2.5x6 PZVISVVIC25062TC M 2.5X6 INOX PZTC M2.5X6 INOX PZ HW24INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW25INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW26INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW27INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW28INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW29INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW30INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW31INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW32INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ Page 2 AMPLI FF 30W 869-894MHz 26dB gain LISTE DES COMPOSANTS TLB0183ELISTE DES COMPOSANTS TLB0183E TELIACODEFABRICANT 1REF FABRICANT 1FABRICANT 2REF FABRICANT 2ObservationsRepèreDésignationBoitier TELIA S.A. HW33 INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW34INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW35INOX TC 2x8 PZVISVVCI02082TC M2 X 8 INOX PZ HW36INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW37INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW38INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW39INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW40INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW41INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW42INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW43INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW44INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW45INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW46INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW47INOX 2mmGROWERVRIG02041Rondelle Grower M2 X 4 INOXRondelle Grower M2 X 4 INOX HW48INOX 2.5mmECROUVEIH25191Ecrou M2.5 INOXEcrou M2.5 INOX HW49INOX 2.5mmECROUVEIH25191Ecrou M2.5 INOXEcrou M2.5 INOX ME0197ME124A-99SE001COUVERCLE N°1 RP9MZ097124ADEMSO97ME124A-99SE001 ME0297ME125ACOUVERCLE N°2 RP9MTE97125ADEMSO97ME125A ME0398ME068 L=9.6mmTRAVERSEE TEFLONMDD980680IDMM INDUSTRIE98ME068 ME0498ME068 L=9.6mmTRAVERSEE TEFLONMDD980680IDMM INDUSTRIE98ME068 ME0598ME069 L=28mmAME POUR TRAVERSEMDD980690IDMM INDUSTRIE98ME069 ME0698ME069 L=28mmAME POUR TRAVERSEMDD980690IDMM INDUSTRIE98ME069 ME0798ME069 L=28mmAME POUR TRAVERSEMDD980690IDMM INDUSTRIE…
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KTL Test Report:0L0367RUS1 Applicant:Allen Telecom Systems 140 Vista Center Drive Forest, VA 24551 Equipment Under Test:MOR801Bi and MOR 801Bi Power (E.U.T.) FCC ID:BCR-RPT-MOR801BI In Accordance With:FCC Part 90, Subpart I Private Land Mobile Repeater Tested By:KTL Dallas Inc. 802 N. Kealy Lewisville, TX 75057-3136 Authorized By: Tom Tidwell, Wireless Group Manager Date:November, 2000 Total Number of Pages:54 KTL Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MOR 801Bi and MOR 801Bi Power PROJECT NO.: 0L0367RUS1 Page 2 of 54 Table of Contents Section 1. Summary of Test Results...................................................................................................3 Section 2. General Equipment Specification........................................................................................5 Section 3. RF Power Output..............................…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 9 | 851.0125 MHz - 868.9875 MHz | 20 W | D7W | Amp |

ION-E
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
ION-M17P/26 EU
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
ION-B TFAH-US7/17
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
ION-B TFAH-US4B
Equipment Class
PCB - PCS Licensed Transmitter
ION-B TFBM17 FIBER OPTIC DISTRIBUTION REMOTE UNIT
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter