156061937 bts3900a wcdma ducumentation

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    RAN11.0 3900 Series NodeBProduct Description

    Issue V2.0

    Date 2009-03-17

    HUAWEI TECHNOLOGIES CO., LTD.

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    Copyright Huawei Technologies Co., Ltd. 2009. All rights reserved.

    No part of this document may be reproduced or transmitted in any form or by any means without prior

    written consent of Huawei Technologies Co., Ltd.

    Trademarks and Permissions

    and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd.

    All other trademarks and trade names mentioned in this document are the property of their respective

    holders.

    Notice

    The purchased products, services and features are stipulated by the contract made between Huawei and

    the customer. All or part of the products, services and features described in this document may not be

    within the purchase scope or the usage scope. Unless otherwise specified in the contract, all statements,

    information, and recommendations in this document are provided AS IS without warranties, guaranteesor representations of any kind, either express or implied.

    The information in this document is subject to change without notice. Every effort has been made in the

    preparation of this document to ensure accuracy of the contents, but all statements, information, and

    recommendations in this document do not constitute the warranty of any kind, express or implied.

    Huawei Technologies Co., Ltd.

    Address: Huawei Industrial Base

    Bantian, Longgang

    Shenzhen 518129

    People's Republic of China

    Website: http://www.huawei.com

    Email: [email protected]

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    RAN11.0 3900 Series NodeB Product Description

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    Copyright Huawei Technologies Co., Ltd.iii

    Contents

    1 Introduction ........................................................................................................................51.1 Product Positioning ........................................................................................................................ 51.2 Product Features ............................................................................................................................ 6

    2 System Architecture ............................................................................................................82.1 Product Overview ........................................................................................................................... 82.2 BBU3900 ......................................................................................................................................... 8

    2.2.1 Appearance of the BBU3900 ................................................................................................ 82.2.2 Hardware Units of the BBU3900 .......................................................................................... 92.2.3 Ports on the BBU3900........................................................................................................... 9

    2.3 RRU ................................................................................................................................................112.3.1 Specifications of the RRU ....................................................................................................112.3.2 Appearance of the RRU .......................................................................................................112.3.3 Ports on the RRU..................................................................................................................11

    2.4 WRFU............................................................................................................................................ 142.4.1 Specifications of the WRFU ................................................................................................ 142.4.2 WRFU ................................................................................................................................... 142.4.3 Ports on the WRFU ............................................................................................................. 15

    2.5 Auxiliary Devices .......................................................................................................................... 152.5.1 APM30 Power Cabinet ........................................................................................................ 152.5.2 Transmission Cabinet .......................................................................................................... 172.5.3 Battery Cabinet .................................................................................................................... 192.5.4 APM30H Power Cabinet ..................................................................................................... 192.5.5 TMC11H ............................................................................................................................... 212.5.6 Indoor Macro Cabinet .......................................................................................................... 222.5.7 PS4890................................................................................................................................. 252.5.8 Outdoor RF Cabinet ............................................................................................................ 272.5.9 Outdoor Mini Cabinet .......................................................................................................... 28

    3 Products and Application Scenarios ...................................................................................303.1 Overview ....................................................................................................................................... 303.2 Application scenarios ................................................................................................................... 31

    3.2.1 Distributed NodeBDBS3900 ........................................................................................... 313.2.2 Indoor Macro NodeBBTS3900........................................................................................ 343.2.3 Outdoor Macro NodeBBTS3900A .................................................................................. 343.2.4 Outdoor Mini NodeBBTS3900C...................................................................................... 36

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    RAN11.0 3900 Series NodeB Product Description

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    3.2.5 Multi-Mode Base Station ..................................................................................................... 384 Technical Specifications ....................................................................................................39

    4.1 Technical Specifications of the BTS3900.................................................................................... 394.2 Technical Specifications of the BTS3900A ................................................................................. 424.3 Technical Specifications of the DBS3900 ................................................................................... 454.4 Technical specifications of the BTS3900C ................................................................................. 53

    A Acronyms and Abbreviat ions ............................................................................................59

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    RAN11.0 3900 Series NodeB Product Description

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    Copyright Huawei Technologies Co., Ltd.5

    1 Introduction1.1 Produ

    wing

    MA to HSPA to HSPA+ and LTE, and it is worth mentioningthat WiMAX also joins the 3G family. To follow the trend, the network operators have

    de,

    eration

    .

    h

    ei also actively introduces new frequency bands and technologies towell meet operators' requirement for a compact multi-mode mobile network system.Figure 1-1 shows the basic functional modules and auxiliary devices of the 3900series NodeBs.

    ct Positioning

    The mobile communications, which takes an ever-changing presence with eachpassing day, blazes a trail for the upgrade of technologies and products. The grotrend of mobile communications comprises a series of evolution, from GSM to EDGEto EDGE+ and from WCD

    to devote more CAPEX and OPEX to the dramatic change of technologies, andtherefore they are currently focusing on the merge of multiple network systems into amore cost-effective one.

    Upon the transition of mobile networks, the network operators target at the BlueOcean Strategy and invite innovative and responsive partners. Customer-oriented aninnovative, Huawei advocates four basic technological concepts: green, merg

    wideband, and evolution. Huawei will take the lead in developing the next-genbase stations and the 3900 series NodeBs, Huawei's fourth generation base stations,will outclass other base stations to benefit operators with future-oriented networks

    Huawei unveils cutting-edge techniques in the 3900 series NodeBs, such aswideband, multi-mode system, and modular design. The 3900 series NodeBs consistof only three basic functional modules, characterized by compact structure, higintegration, low power consumption, and easy and quick deployment. Flexiblecombinations of functional modules and auxiliary devices encourage Huawei todiversify the products. More importantly, the modules for different modes of systemscan be installed in one cabinet to work as a base station adapting to differentscenarios. Huaw

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    Figure 1-1 Basic functional modules and auxiliary devices

    1.2 Product Features

    Adaptable to Diversif ied Radio Environments

    Different combinations of functional modules and auxiliary devices diversify theNodeB products. For example, there are macro NodeB, distributed NodeB, and minicompact NodeB, which operate in different scenarios to better meet different networkdeployment requirements.

    The 3900 series NodeBs provide a platform for the Huawei wireless products. To bespecific, the base stations of different network systems such as GSM, WCDMA,CDMA, and WiMAX can share the same cabinet or even share one functional moduleat the same frequency band (based on the SDR technology), which makes it easy fornetwork operators to choose a site type.

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    RAN11.0 3900 Series NodeB Product Description

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    Greatly Reduced Total Cost of Operation (TCO)

    The 3900 series NodeBs have many advantages, such as flexible installation, easysite selection, cost-effective solution, and fast network construction. The basebandmodule (BBU3900) is only 19 inches wide and 2 U high, taking a very small indoor

    space or taking a place in an outdoor cabinet. The RF module (RRU3900) can beinstalled close to the antenna without taking any space of the equipment room.

    The RRU3804 supports up to four carriers with an output power of 60 W, known as thehighest output power of the RRU in the telecom industry. The outstandingperformance ensures wide coverage and high throughput. When two carriers areconfigured for the RRU3804, the number of sites can be reduced by 40%.

    The 3900 series NodeBs use the high-efficiency digital Power Amplifier (PA), whichgreatly reduces power consumption and helps build a green communication network.Compared with the traditional NodeB, the macro NodeB (BTS3900) has its powerconsumption reduced by 30%; compared with the traditional macro NodeB, theBTS3900A cabinet, which is in direct-ventilation, has its power consumption reduced

    by 40%.

    Based on the IP switch and multi-carrier technologies, the 3900 series NodeBssupport the bandwidth of over 100 Mbit/s, which keeps up with the fast growing mobiledata services and provides users with higher data transmission rate.

    Smooth Evolution to Future Radio Network Systems

    The 3900 series NodeBs support smooth evolution to HSPA+ and Long TermEvolution (LTE), thus fully protecting the investment of network operators.

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    2.2.2

    2.2.3

    Hardware Units of the BBU3900

    Basic Hardware Units

    The basic hardware units of the BBU3900 are as follows:

    WCDMA Main Processing Transmission (WMPT) unit

    WCDMA BaseBand Processing (WBBP) unit

    FAN unit, that is, UBF

    Power module, that is, UPEU

    All the boards support the plug-and-play function and can be configured in the slot asrequired.

    Optional Hardware Units

    The optional hardware units of the BBU3900 are as follows:

    Universal E1/T1 Lightning Protection (UELP) unit

    Universal FE Lightning Protection (UFLP) unit

    Universal Satellite card and Clock Unit (USCU)

    Universal Transmission Processing (UTRP) unit

    Universal Environment Interface Unit (UEIU)

    The BBU3900 supports diverse configurations from 1 x 1 to 6 x 4 or 3 x 8.

    Ports on the BBU3900

    Table 2-1 Ports on the basic hardware units of the BBU3900

    Board Port Quantity Connector Type Remarks

    E1 port 1 DB26 connector One port supporting four E1s

    FE electrical port 1 RJ45 connector

    FE optical port 1 SFP connector

    USB port for loading 1 USB connector Software loading

    TST port 1 USB connector Test port

    Serial port forcommissioning

    1 RJ45 connector NodeB local maintenance

    WMPT

    GPS port 1 SMA connector

    WBBPa CPRI 3 SFP connector

    PWR 1 3V3 connector 48 V DC power input and +24 VDC power input

    MON0 1 RJ45 connector

    UPEU

    MON1 1 RJ45 connector

    Providing two RS485 monitoringports; connecting to the externalmonitoring device

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    Board Port Quantity Connector Type Remarks

    EXT-ALM0 1 RJ45 connectorUPEU

    EXT-ALM1 1 RJ45 connector

    Providing eight dry contact alarminputs; connecting to the externalalarm device

    Table 2-2 Ports on the optional hardware units of the BBU3900

    Board Port Quantity Connector Type RemarksINSIDE 1 DB25 connector Port for four E1/T1 signal inputsUELP

    OUTSIDE 1 DB26 connector Port for four E1/T1 signal outputs

    FE0 and FE1(INSIDE)

    2 RJ45 connector Connecting to the FE0 port on WMPTUFLP

    FE0 and FE1(OUTSIDE)

    2 RJ45 connector Connecting to the external device. TheFE0 (OUTSIDE) connects to the FE0(INSIDE) and the FE1 (OUTSIDE)connects to the FE1 (INSIDE).

    RGPS port 3 DB8 connector Connecting to the RGPS signal cable

    BITS port 1 SMA connector Connecting to the BITS clock

    Clock test port 1 SMA connector Port for testing clock signal output

    USCU

    Antenna port for

    the satellite card

    1 SMA connector RF signal input port of the satellite card

    E1/T1 port 2 DB26 connector Providing eight ATM over E1s/T1s oreight IP over E1s/T1s

    UnchannelizedSTM-1/OC-3port

    1 SFP connector Providing one unchannelizedSTM-1/OC-3 port

    FE/GE electricalport

    4 RJ45 connector Providing four 10M/100M/1000MEthernet electrical ports

    UTRP

    FE/GE opticalport

    2 SFP connector Providing two 10M/100M/1000M Ethernetoptical ports

    MON 1 RJ45 connector

    MON1 1 RJ45 connector

    Connecting to external monitoringdevices

    EXT-ALM0 1 RJ45 connector

    EXT-ALM1 1 RJ45 connector

    Connecting to external alarm devices

    UEIU

    NOTE

    The UEIU is a monitoring and dry contact extension board for the UPEU.

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    2.3 RRU

    2.3.1 Specifications of the RRU

    The RRU is the outdoor RF remote unit that can be installed close to the antenna. TheRRU is classified into the RRU3801C, RRU3804, and RRU3801E based on differentoutput power and processing capabilities. Table 2-3 describes the specifications of theRRU.

    NOTE The RRU3804 and RRU3801E have the same appearance and they only differ inspecifications.

    Table 2-3 Specifications of the RRU

    RRU Type RRU3801C RRU3801E RRU3804

    Maximum OutputPower

    40 W 40 W 60 W

    Number of CarriersSupported

    2 2 4

    2.3.2 Appearance of the RRU

    The BBU3900, together with the RRUs of different types, can form the DBS3900system. Figure 2-2 shows the RRU.

    Figure 2-2 RRU

    2.3.3 Ports on the RRU

    The ports of the RRU are located at the bottom of the module and in the cabling cavity.The RRU has the following ports:

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    Grounding ports

    Power supply sockets

    Transmission ports

    Alarm ports

    Table 2-4 Ports on the RRU3801C

    Port Connector Type Quantity RemarksPower supply socket 9-pin, round, and

    waterproofconnector

    1 Ports for 48 V DC or220 V AC power input

    Optical ports eSFP socket 2 Transmission ports

    Alarm port DB15 connector(shared by the

    fan)

    1 Port for 4-channel drycontact alarms

    Main TX/RX port DIN, round, andwaterproofconnector

    1

    RX diversity port DIN, round, andwaterproofconnector

    1

    Port for interconnectionbetween combinedmodules

    2W2 connector 1

    Port for the RET antenna DB9 connector 1

    Commissioning port RJ45 connector 1

    Other ports

    Table 2-5 Ports on the DC RRU3804 or RRU3801E

    Port Connector Type Quantity Remarks

    Power supply socket OT terminal 1 Port for 48 V DCpower input

    Optical ports eSFP socket 2 Transmission ports

    Alarm port DB15 connector 1 Port for 2-channeldry contact alarmsand port for1-channel RS485signals

    Main TX/RX port DIN, round, andwaterproofconnector

    1Other ports

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    Port Connector Type Quantity Remarks

    RX diversity port DIN, round, andwaterproofconnector

    1

    Port for cascadingmodules

    2W2 connector1

    Port for the RET antenna DB15 connector 1

    Table 2-6 Ports on the AC RRU3804

    Port Connector Type Quantity Remarks

    Power supply socket 3-pin, round, andwaterproofconnector

    1 Port for AC powerinput

    Power output port - (connected to theDC output cablebefore delivery)

    1 Port on the AC/DCpower conversionmodule for DCoutput

    Optical ports eSFP socket 2 Transmission ports

    Alarm port DB15 connector 1 Port for 2-channeldry contact alarmsand port for

    1-channel RS485signals

    Grounding port - 1 Grounding bolt

    Main TX/RX port DIN, round, andwaterproofconnector

    1

    RX diversity port DIN, round, andwaterproofconnector

    1

    Port for cascadingmodules

    2W2 connector

    1

    Port for the RET antenna DB15 connector 1

    Other ports

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    2.4 WRFU

    2.4.1 Specifications of the WRFU

    The WRFU is categorized into 40 W WRFU and 80 W WRFU based on differentoutput power and processing capabilities. The 40 W WRFU and 80 W WRFU have thesame physical structure, dimensions, weight, and physical ports.

    Table 2-7 Specifications of the WRFU

    WRFU Type 80 W WRFU 40 W WRFU

    Maximum Output Power 80 W 40 W

    Number of Carriers Supported 4 2

    2.4.2 WRFU

    The WRFU can be housed in an indoor cabinet or an outdoor cabinet. Figure 2-3shows the WRFU.

    Figure 2-3 WRFU

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    2.4.3 Ports on the WRFU

    Table 2-8 Ports on the WRFU

    Port Connector Type Quantity Remarks

    Power supply socket 3V3 connector 1 Port for 48 V DCpower input

    Port for transceivingantenna signals

    N femaleconnector

    2 Port for connecting theantenna system

    CPRI port SFP femaleconnector

    2 Ports for connecting theBBU or cascadingWRFUs

    Interconnection port forRF RX signals

    QMA femaleconnector

    2 Antenna channel port

    Commissioning port RJ45 connector 1 Commissioning port

    2.5 Auxiliary Devices

    The auxiliary devices of the 3900 series NodeBs include the APM30 power cabinet,transmission cabinet, battery cabinet, APM30H power cabinet, TMC11H, indoormacro cabinet, PS4890, outdoor RF cabinet, and outdoor mini cabinet.

    2.5.1 APM30 Power Cabinet

    The advanced power module (with the breathable film) APM30 is an outdoor powerbackup system. The APM30 provides 48 V DC power and backup power for thedistributed NodeBs, outdoor macro NodeBs, and mini NodeBs. In addition, it providesinstallation space for the BBU3900 and other devices.

    The APM30 features a compact and lightweight design. It can be installed on a pole oron the ground and can be configured with batteries. Figure 2-4 shows the internalstructure of the APM30.

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    Figure 2-4 Internal structure of the APM30

    (1) Heater (2) PDU

    (3) Power subrack (4) APMI

    (5) Fan (6) AFMU

    Table 2-9 Technical specifications of the APM30

    Item APM30 Power Cabinet

    Dimensions (widthx height x depth)(with the baseexcluded)

    600 mm 700 mm 480 mm

    Weight < 100 kg (with the 24 Ah batteries)

    < 65 kg (with the PSU and without batteries

    and customer equipment)

    Engineeringspecifications

    Working

    temperature

    40C to +45C (with 1120 W/m2solar

    radiation)

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    Item APM30 Power Cabinet

    AC input Input voltage 220 V AC three-phase power cable

    Permissible voltage range: 176/304 V AC to

    290/500 V AC 220 V AC single-phase power cable

    Permissible voltage range: 176 V AC to 290V AC

    110 V AC dual-live-wire power cable

    Rated voltage: 100/200 V AC to 120/240 VAC

    Permissible voltage range: 90/180 V AC to135/270 V AC

    Rated voltage: 120/208 V AC to 127/220 VAC

    Permissible voltage range: 105/176 V AC to150/260 V AC

    Output voltagerange

    44 V DC to 58 V DCDC output

    DC outputs Working with the distributed NodeB:

    LLVD: 20 A x 6

    BLVD: 12 A x 2; 4 A x 2

    Maximum outputs (reserved): 4 A x 2

    Working with the BTS3900A:

    LLVD: 30 A x 4

    BLVD: 12 A x 2; 4 A x 4

    Maximum outputs (reserved): 4 A x 4

    Heatconsumption

    Maximum heatconsumption

    500 W

    48 V 24 Ahbatteries

    5 USpace forcustomerequipment

    No batteries 7 U

    2.5.2 Transmission Cabinet

    The transmission cabinet is applied to outdoor scenarios. It features compact designand easy transport. Figure 2-5 shows the structure of the transmission cabinet.

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    Figure 2-5 Structure of the transmission cabinet

    (1) DCDU-03A (2) APMI

    (3)Fan (4) AFMU

    Table 2-10 Specifications of the transmission cabinet

    Item Transmission Cabinet

    Dimensions (widthx height x depth)(with the baseexcluded)

    600 mm 700 mm 480 mm

    Weight < 40 kg (without customer equipment)

    Engineeringspecifications

    Workingtemperature

    40C to +45C (with 1120 W/m2solar radiation)

    DC input Input voltage 48 V DCPermissible voltage range: 38.4 V DC to 57 V DC

    DC output Number of DCoutputs

    8 x 4 A (Fan: 1 x 12 A)

    Heatconsumption

    Maximum heatconsumption

    500 W

    Space for customer equipment 11 U (1 U for the PDU excluded)

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    2.5.3 Battery Cabinet

    The battery cabinet is applied to outdoor scenarios. It features compact design andeasy transportation. The battery cabinet can be configured with batteries of differentcapacity, such as 48 V 50 Ah, 48 V 100 Ah, 48 V 92 Ah, or 48 V 184 Ah. Figure 2-6shows the structure of the battery cabinet.

    Figure 2-6 Structure of the battery cabinet

    Table 2-11 Specifications of the battery cabinet

    Item Transmission Cabinet

    Dimensions (width xheight x depth) (withthe base excluded)

    600 mm 700 mm 480 mm

    Weight < 41 kg (without batteries)

    Engineeringspecifications

    Working temperature 40C to +45C (with 1120 W/m2solar

    radiation)

    2.5.4 APM30H Power Cabinet

    The advanced power module (with the heat exchanger) APM30H is an outdoor powerbackup system. The APM30H provides 48 V DC power and backup power for thedistributed NodeBs, outdoor macro NodeBs, and mini NodeBs. In addition, it providesinstallation space for the BBU3900 and other devices.

    The APM30H features a compact and lightweight design. It can be installed on a poleor on the ground. Figure 2-7 shows the internal structure of the APM30H.

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    Figure 2-7 Internal structure of the APM30H

    (1) HPMI (2) Fan (inner circulation)

    (3) HEUA (4) PSU (AC/DC)

    (5) PDU (6) Fan (outer circulation)

    (7) Heat exchanger core

    Table 2-12 Technical specifications of the APM30H

    Item APM30 Power Cabinet

    Dimensions (widthx height x depth)(with the baseexcluded)

    600 mm 700 mm 480 mm

    Weight 95.5 kg (with the PSU included, andcustomer equipment excluded)

    Engineeringspecifications

    Workingtemperature

    40C to +50C (with 1120 W/m2solar

    radiation)

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    Item APM30 Power Cabinet

    Input voltage 220 V AC three-phase power cable

    Permissible voltage range: 176/304 V AC to

    290/500 V AC 220 V AC single-phase power cable

    Permissible voltage range: 176 V AC to 290V AC

    110 V AC dual-live-wire power cable

    Rated voltage: 100/200 V AC to 120/240 VAC

    Permissible voltage range: 90/180 V AC to135/270 V AC

    Rated voltage: 120/208 V AC to 127/220 VAC

    Permissible voltage range: 105/176 V AC to150/260 V AC

    Frequency of therated voltage

    50/60 Hz

    AC input

    Frequency ofinput voltage

    45 Hz to 65 Hz

    Output voltagerange

    44 V DC to 58 V DCDC output

    DC outputs Working with the distributed NodeB:

    LLVD: 20 A x 6

    BLVD: 12 A x 2; 6 A x 2

    Maximum outputs (reserved): 6 A x 2

    Working with the BTS3900A:

    LLVD: 30 A x 4

    BLVD: 12 A x 2; 6 A x 4

    Maximum outputs (reserved): 6 A x 4

    Without batteriesand the heater

    7 USpace forcustomer

    equipmentHeater 6 U

    2.5.5 TMC11H

    The TMC11H is applied to scenarios with adverse environment. It features compactdesign and easy transportation. Figure 2-8 shows the structure of the TMC11H.

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    Figure 2-8 Structure of the TMC11H

    (1) Filler panel (2) Fan (inner circulation)

    (3) HEUA (4) DCDU-03

    (5) Fan (outer circulation) (6) Heat changer core

    2.5.6 Indoor Macro CabinetThe indoor macro cabinet houses the BBU3900 and the WRFU. In addition, the indoormacro cabinet provides functions such as power distribution and surge protection.The indoor macro cabinet takes a small footprint and is easy to install. In addition, twocabinets can be installed in stack mode. All these features cater to the requirements ofindoor centralized installation and fast network construction. An indoor macro cabinetaccommodates up to six WRFUs. The indoor macro cabinet supports all the networksystems (UMTS, GSM, and LTE) of the BTS3900, thus saving installation space andfacilitating smooth evolution.

    The indoor macro cabinet supports 48 V DC, +24 V DC, and 220 V AC power inputs.If configured with suitable power modules, the +24 V DC or 220 V AC power isconverted into 48 V DC power for the WRFU and BBU.

    NOTE

    When two cabinets are installed in stack mode, the upper cabinet should be a 48 V DCcabinet, and the lower cabinet can be either a +24 V DC cabinet or a 220 V AC cabinet,depending on power configuration.

    The cabinet structure varies with the power input. Figure 2-9 shows the single indoorcabinet with 48 V DC power. Figure 2-10 shows the single indoor cabinet with +24 VDC power. Figure 2-11 shows the single indoor cabinet with 220 V AC power. Figure2-12 shows two cabinets in stack mode.

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    Figure 2-9 Single indoor cabinet (48 V DC)

    Figure 2-10 Single indoor cabinet (+24 V DC)

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    Figure 2-11 Single indoor cabinet (220 V AC)

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    Figure 2-13 Internal structure of the PS4890

    (1) Power system (AC/DC) (2) DCDU-04

    (3) DCDU-03 (4) Wiring copper bar for the negative poles of the

    batteries

    (5) Support plate for the battery group (6) Baffle for the battery group

    (7)Wiring copper bar for the positive poles of the batteries

    Table 2-13 Technical specifications of the PS4890

    Item Specification

    Dimensions (widthx height x depth)(with the baseexcluded)

    600 mm 900 mm 450 mm

    Weight 80 kg (with the PSU included, and batteriesexcluded)

    Engineeringspecifications

    Workingtemperature

    20C to +45C

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    Item Specification

    Input voltage Rated voltage: 200 V AC to 240 V AC

    Permissible voltage range: 176 V AC to 290

    V AC Rated voltage: 100/200 V AC to 120/240 V AC

    Permissible voltage range: 90/180 V AC to135/270 V AC

    Rated voltage: 120/208 V AC to 127/220 V AC

    Permissible voltage range: 105/176 V AC to150/260 V AC

    Frequency of therated voltage

    50/60 Hz

    AC input

    Frequency of

    input voltage

    45 Hz to 65 Hz

    DC output Output voltage 48 V DC

    No batteries 13 U

    48 V 50 Ah or 48V 92 Ah batteries

    7 U

    Space forcustomerequipment

    48 V 184 Ahbatteries

    0 U

    2.5.8 Outdoor RF Cabinet

    The outdoor RF cabinet, together with the APM30 or APM30H cabinet in stack mode,performs functions such as power distribution, surge protection, and protection for theWRFU and the BBU3900. The outdoor RF cabinet works in direct-ventilation mode todissipate heat. When the RF cabinet is configured with three WRFUs, 50 Ah or 92 Ahbatteries can be installed in the spare space, as shown in Figure 2-14. When the RFcabinet is configured with six WRFUs, there is no space for the batteries, as shown inFigure 2-15.

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    Figure 2-16 Internal structure of the outdoor mini cabinet

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    3 Products and Application Scenarios3.1 Overvi

    ationace

    rios in urban, suburb, and ruralareas where large-capacity coverage is required. The DBS3900 applies to outdoor

    uction is difficult. TheFigure 3-1 shows the

    ew

    Various forms of Huawei 3900 series NodeB products allow network deployment indifferent application scenarios, thus providing a perfect whole-network solution foroperators. The Huawei 3900 series NodeBs consist of the indoor macro NodeB(BTS3900), outdoor macro NodeB (BTS3900A), distributed NodeB (DBS3900), andmini NodeB (BTS3900C). The BTS3900 applies to indoor scenarios where populdensity is high, traffic is large, lease expense of equipment rooms is high, and spis limited. The BTS3900A applies to outdoor scena

    scenarios where wide coverage is required and site constrBTS3900C applies to indoor scenarios and hotspot areas.application scenarios of the 3900 series NodeBs.

    Figure 3-1Application scenarios of the 3900 series NodeBs

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    3.2 Application scenarios

    3.2.1 Distributed NodeBDBS3900

    As demand for environmental protection as well as lease cost has increased, the siteselection has become a bottleneck in network deployment. It is increasingly difficult toadopt 2G/3G co-siting or to select a new site.

    The distributed NodeB (DBS3900) developed by Huawei features high integration,easy installation, and low power consumption. All these features can facilitate sitereselection and 2G/3G co-siting. In addition, the WRRU can be installed close to theantenna. In this way, the feeder consumption is reduced and system coverage isimproved.

    The DBS3900 has flexible applications to adapt to different scenarios withrequirements for fast network construction.

    Integrated Application

    If only the AC power is available at a new outdoor 3G site and power backup device isrequired, the combination of DBS3900 and APM can function as an outdoor macroNodeB. Figure 3-2 shows the typical configuration of DBS3900 + APM.

    This configuration has the following features:

    The BBU3900 and transmission equipment can be installed in the APM cabinetand the RRU can be installed close to the antenna.

    The APM provides installation space and outdoor protection for the BBU3900 andsupplies 48 V DC power to the BBU3900 and the RRU. In addition, the APMmanages and monitors the batteries and provides surge protection for thebatteries.

    The APM30 or APM30H can be configured with 50 Ah or 92 Ah batteries,depending on the power backup duration.

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    Figure 3-2 DBS3900 + APM

    Embedded Application with Exist ing Site Equipment

    For the 2G/3G co-siting scenario, the BBU3900 can be installed in a standard19-inch-wide and 2 U-high cabinet, and the RRU can be installed close to the antenna,as shown in Figure 3-3. The BBU3900 and the RRU can share the power backupsystem, transmission system, and antenna system of the BTS in the 2G network. Inthis way, operators can launch 3G services on the existing 2G network at a very lowcost.

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    3.2.2 Indoor Macro NodeBBTS3900

    The BTS3900, as shown in Figure 3-5, is applicable to indoor scenarios such ascentralized installation and relocation. The BTS3900, as one of the most compactindoor macro NodeBs in the telecommunication industry, boasts large capacity andsound scalability. It has a small footprint and supports the GSM and WCDMAdual-mode application.

    Figure 3-5 Indoor cabinet macro NodeB

    3.2.3 Outdoor Macro NodeBBTS3900A

    The BTS3900A is applicable to the outdoor scenarios such as centralized installationand replacement of the outdoor macro NodeB. The BBU3900 is installed in theAPM30 or APM30H, and the WRFU is installed in the outdoor RF cabinet.Configurations of the BTS3900A vary with different application scenarios, as shown inFigure 3-6 and Figure 3-7.

    As the most compact outdoor cabinet macro NodeB in the industry, features lightweight and easy transportation due to its stacking design. The RF modules in GSM,UMTS, and LTE modes can share one RF cabinet, which saves installation space andfacilitates smooth evolution.

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    Figure 3-6 BTS3900A (using the 3RFU cabinet)

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    Figure 3-8 Outdoor mini NodeB with 48 V DC power

    Figure 3-9 Outdoor mini NodeB with 220 V AC power

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    3.2.5 Multi-Mode Base Station

    The 3900 series NodeBs feature a unified platform and a modular design. Therefore,co-siting of modules in GSM, UMTS, or LTE mode can be supported, the basebandprocessing units and RF modules can share the same hardware platform, andmodules in different modes can be located in one cabinet to support multi-modeapplication. This helps implement smooth evolution from GSM to UMTS or LTE.

    With baseband modules for different modes configured in one cabinet, the basestation can support the GSM only mode, UMTS only mode, or GSM/UMTS dual mode.In addition, with the baseband modules for LTE mode configured in the future, thebase station can support the GSM/UMTS/LTE multi-mode application.

    With RF modules for different modes configured in one cabinet, the base station cansupport the GSM only mode, UMTS only mode, or GSM/UMTS dual mode.

    The RF modules in UMTS mode are LTE-ready in hardware. Thus the base stationcan support UMTS/LTE dual-mode through software upgrade in the same frequency

    band.

    Figure 3-10 and Figure 3-11 show the multi-mode base stations for indoor and outdoorapplication respectively.

    Figure 3-10 Multi-mode base station for indoor application

    Figure 3-11 Multi-mode base station for outdoor application

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    4 Technical Specifications4.1 Technical Specifications of the BTS3900

    Table 4-1 Technical e BTS3specifications of th 900

    Item SpecificationFrequency band RX band (MHz) Hz)TX band (M

    Band I (2100 MHz) 1920 to 1980 2110 to 2170

    Band

    MHz) 824 to 835 869 to 880Band V/VI (850

    Capacity

    Maximum configuration: 6 x 4, 3 x 8

    DL: 1536 CE

    24 cells

    UL: 1536 CEs

    s

    Output power antenna connector.

    e antenna connector

    ier configuration: maximum output power of 40 W*per carrier

    NOTEximum output power = output the PA - In aximum

    output power is measured nna co the RF m

    * refers to the maximum o n typ on

    Type 1: One WRFU supports four carriers. The output power at the

    on the WRFU is 80 W

    Type 2: One WRFU supports two carriers. The output power at th

    on the WRFU is 40 W. (only supporting the 2100 MHz frequency)

    For the 80 W WRFU:

    One-carrier configuration: maximum output power of 60 W per carrier

    Two-carr

    Three-carrier or four-carrier configuration: maximum output power of 20 W per carrier

    grade Supporting the 20 W + 60 W configuration through software up

    Ma Maximumat the ante

    utput power i

    power ofnnector of

    ical configurati

    ternal losses. The module.

    Band

    sensitivity sensitivity)

    4-way receiver)

    1-wayreceiver

    (dBm)

    2-wayreceiver

    (dBm)

    sensitivity

    (dBm)

    125.8* 128.6* 131.3*

    Receiversensitivity

    z)Band I (2100 MH

    126.5** 129.3** 132.0**

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    Item Specification125.6* 128.4* 131.1*B

    MH129.1** 131.8**

    and V/VI (850z)***

    126.3**

    NOT

    ded in 3GPP TS25.104, the receiver sensitivity (full band) israte reaches 12.2 kbit/s and

    the Bit Error Rate (BER) is within 0.001.

    .2 kbit/s and the BER

    E

    Indication of *: As recommenmeasured at the antenna connector on condition that the channel

    Indication of **: The receiver sensitivity (median performance over reception bandwidth) istested at the antenna connector. The AMR service should be at 12should not exceed 0.0001.

    Indication of ***: Measurement value of the 850 MHz sub-band.

    Transmissionport

    s/T1s, 2 FE/GE electrical ports, and 2 FE/GE optical ports or amaximum of 32 E1s/T1s and 5 unchannelized STM-1 portsA maximum of 32 E1

    Clocksynchronization

    Clock extracted from the Iub interface, GPS clock, OCXO free-run clock, and IPclock

    Accuracy: 0.05 ppm

    Dimensions(height x widthx depth)

    m900 mm x 600 mm x 450 m

    Weight (kg) Empty cabinet: 70

    3 x 1 configuration: 120

    Full configuration: 160

    Input power 57 V DC

    to 290/500 V AC

    vol 80 V 70 V

    Rated voltage: 120/208 V AC to 127/

    missible vol ge: 105/176 V 150/260

    48 V DC, value range: 38.4 V DC to +24 V DC, value range: +21.6 V DC to +29 V DC

    220 V AC single-phase, value range: 176 V AC to 290 V AC

    220 V AC three-phase, value range: 176/304 V AC

    110 V AC dual-live-wire power cable:

    Rated voltage: 100/20

    Permissible

    0 V AC to 120/240 V AC

    tage range: 90/1 AC to 135/2

    220 V AC

    AC

    Per tage ran AC to V AC

    Configuration Typical powerption m

    tionconsum Maximupower

    consump

    50 Ah 92 Ah

    3 x 1 500 W 590 W 4.2 hours 8.7 hours

    3 x 2 590 W 800 W 3.5 hours 7.1 hours

    3 x 3 800 W 1020 W 2.4 hours 4.9 hours

    3 x 4 970 W 1250 W 1.8 hours 3.9 hours

    Powerconsumption

    NOT

    on is reached when the output power per carrier on the cabinet

    works with a 50% load, 25environment temperature.

    E

    The typical power consumpti

    top is 20 W and the BTS3900

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    Item Specification The maximum power consumption is reached when the output power per carrier on the

    cabinet top is 20 W and the BTS3900 works with a 100% load, 25 environment

    temperature.

    Temperature Long-term: 20C to +50C

    20C to +55CShort-term:

    Relativehumidity

    5% RH to 95% RH

    Absolutehumidity

    m3125 g/

    Air pressure 70 kPa to 106 kPa

    Protectiondegree

    IP20

    Storage ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weatherprotected, nottemperature-controlled storage locations"

    Transportation ETSI EN300019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"

    Anti-seismicance

    68-2-57 (1999-11) Environmental testing Part 2-57: Tests Test Ff:

    Interim Provisions for Test of Anti-seismic Performances ofs Equipment (telecom industry standard in People's Republic of

    IEC 600perform Vibration Time-history method.

    YD5083-99:TelecommunicationChina)

    EMC s the EMC requirements and complies with the following

    7)

    )

    8)

    5

    IEC 61000-4-29 ETSI 301 489-1 V1.3.1 (2001-09)

    FCC Part 15

    The BTS3900 passes the certification of European standards.

    The BTS3900 meetstandards:

    CISPR 22 (199

    EN 55022 (1998

    CISPR 24 (199

    IEC 61000-4-2

    IEC 61000-4-3

    IEC 61000-4-4

    IEC 61000-4-

    IEC 61000-4-6

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    Item Specification

    Transmissionport

    ical ports, and 2 FE/GE optical ports or aTM-1 ports

    A maximum of 32 E1s/T1s, 2 FE/GE electrmaximum of 32 E1s/T1s and 5 unchannelized S

    Clocksynchronization

    Clock extracted from the Iub interface, GPS clock, OCXO free-run clock, and IPclock

    Accuracy: 0.05 ppm

    Dimensions(height x widthx depth)

    et: 700 mm x 600 mm x 480 mm

    m

    RF cabinet: 700 mm x 600 mm x 480 mm

    APM30 cabin

    APM30H cabinet: 700 mm x 600 mm x 480 m

    Weight (kg)

    ith 6 RFUs and without batteries)

    nd without batteries)

    RF cabinet: 55

    APM30 cabinet: 65

    APM30H cabinet: 95.5

    WRFU: 12

    3 x 1 configuration: 165 (without batteries)

    Full configuration: 210 (RF cabinet w

    165 (RF cabinet with 3 RFUs a

    Input power

    ire power cable:

    Rated voltage: 100/200 V AC to 120/240 V AC

    Permissible voltage range: 90/180 V AC to 135/270 V A

    Rated voltage: 120/208 V AC to 127/220 V AC

    voltag 76 V 60 V

    48 V DC, voltage range: 38.4 V DC to 57 V DC

    220 V AC single-phase: 176 V AC to 290 V AC

    220V AC three-phase: 176/304 V AC to 290/500 V AC

    110 V AC dual-live-w

    C

    Permissible e range: 105/1 AC to 150/2 AC

    Power consumption Power backup duration intypical power estimatedon the basis of the

    capacitybattery

    Configuration Typical power

    % load)

    Maximum

    ption

    (with 100%

    consumption(with 50

    powerconsum

    load)

    24 Ah 50 Ah 92 Ah

    3 x 1 570 W 670 Ws s s

    1.6hour

    4.0hour

    8.4hour

    3 x 2 680 W 910 Whours hours hours1.3 3.3 6.9

    3rs

    x 3 910 W 1150 W 0.8hours

    2.3hours

    4.8hou

    Powerconsumption

    3 x

    hours hours hours

    4 1100 W 1410 W 0.7 1.7 3.8

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    Item Specification

    NOTE

    The typical power consumption is reached when the output power per carrier on the cabin

    top is 20 W and the BTS3900A works with a 50% load, 25environment temperature.

    et

    r consumption is reached when the output power per carrier on the

    S3900A works with a 100% load, 25 environment

    temperature.

    The maximum powe

    cabinet top is 20 W and the BT

    Battery 50 Ah or 92 Ah

    Temperature 40C to +50C (with solar radiation, APM30 heat exchanger / APM30 air filter)

    Relativehumidity

    5% RH to 100% RH

    130 g/m3Absolutehumidity

    Air pressure 70 kPa to 106 kPa

    Protectiondegree

    IP55 (Battery cabinet: IP34)

    Storage ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weather protected, nottemperature-controlled storage locations"

    Transportation 019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"ETSI EN300

    Anti-seismicperformance

    of Anti-seismic Performances ofs Equipment (telecom industry standard in People's Republic of

    IEC 60068-2-57 (1999-11) Environmental testing - Part 2-57: Tests Test Ff:Vibration Time-history method.

    YD5083-99: Interim Provisions for TestTelecommunicationChina)

    EMC eets the EMC requirements and complies with the following

    7)

    )

    8)

    4

    IEC 61000-4-6

    IEC 61000-4-29

    ETSI 301 489-1 V1.3.1 (2001-09)

    The BTS3900A mstandards:

    CISPR 22 (199

    EN 55022 (1998

    CISPR 24 (199

    IEC 61000-4-2

    IEC 61000-4-3

    IEC 61000-4- IEC 61000-4-5

    FCC Part 15

    The BTS3900A passes the certification of European standards.

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    Item Specification

    Dimensions(height x widthx depth)

    ousing)

    g)

    BBU3900: 86 mm x 442 mm x 310 mm

    RRU3801C: 480 mm x 365 mm x 145 mm (without rack and h

    610 mm x 380 mm x 200 mm (with rack and housin

    Weight (kg)

    nfiguration (one PSU, one WBBP, and o

    RRU3801C: 20

    BBU3900: in full configuration: 11;

    in typical co ne WMPT): 7

    Input power RRU3801C: 48 V DC, voltage range: 38.4 V DC to 57 V D

    220 V AC, voltage range: 150 V AC to 300 V AC

    ltage r to +29 V DC

    48 to 57 V DC

    C

    BBU3900: +24 V DC, vo

    V DC, voltage

    ange: +21.6 V DC

    range: 38.4 V DC

    Power consump Power backupduration in typicaler estimated on

    ecapacity

    tion

    powthe basis of thbattery

    Configuration Typicalpowerconsumption

    Maximum powerconsumption (W) Ah Ah Ah

    (50% load)(100% load)

    24 50 92

    3 .0hours

    x 1 540 W 620 W 1.5hours

    3.8hours

    8

    3 x 2 680 W 830 W 1.1hours

    2.9hours

    5.9hours

    Powerconsumption

    output power per carrier on the cabinet

    50% load, 25environment temperature.

    on is reached when the output power per carrier on the

    3900 works with a 100% load, 25 environment

    NOTE

    The typical power consumption is reached when the

    top is 20 W and the DBS3900 works with a

    The maximum power consumpti

    cabinet top is 20 W and the DBS

    temperature.

    Temperature C

    h 1120 W/m2solar radiation)

    40C to +55C (without solar radiation)

    BBU3900: 20C to +55

    RRU3801C:

    40C to +50C (wit

    Relativehumidity

    to 95% RH

    RRU3801C: 5% RH to 100% RH

    BBU3900: 5% RH

    Absolutehumidity 3

    BBU3900: 125 g/m3

    RRU3801C: 130 g/m

    Air pressure 70 kPa to 106 kPa

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    Item SpecificationOutput power A single RRU3804 supports up to four carriers with a 60 W output power at the

    antenna connector with four carriers.

    One-carrier configuration: maximum output power of 60 W per carrier Two-carrier configuration: maximum output power of 30 W per carrier

    Three-carrier configuration: maximum output power of 20 W per carrier

    Four-carrier configuration: maximum output power of 15 W per carrier

    Supporting the 20 W + 40 W or 10 W + 50 W configuration through software upgrade

    NOTE

    Maximum output power = Maximum output power of the PA -Internal losses. The maximumoutput power is measured at the antenna connector of the RF module.

    Band 1-way receiversensitivity

    (dBm)

    2-way receiversensitivity

    (dBm)

    4-way receiver sensitivity

    (dBm)

    125.8* 128.6* 131.3*Band I (2100MHz)/Band IV(AWS) 126.5** 129.3** 132.0**

    125.3* 128.1* 130.8*Band II (1900MHz)

    126.0** 128.8** 131.5**

    125.6* 128.4* 131.1*Band V/VI (850MHz) ***

    126.3** 129.1** 131.8**

    Receiversensitivity

    NOTE Indication of *: As recommended in 3GPP TS25.104, the receiver sensitivity (full band) is

    measured at the antenna connector on condition that the channel rate reaches 12.2 kbit/sand the Bit Error Rate (BER) is within 0.001.

    Indication of **: The receiver sensitivity (median performance over reception bandwidth) istested at the antenna connector. The AMR service should be at 12.2 kbit/s and the BERshould not exceed 0.0001.

    Indication of ***: Measurement value of the 850 MHz sub-band.

    Transmissionport

    A maximum of 48 E1s/T1s, 2 FE/GE electrical ports, and 2 FE/GE optical ports ora maximum of 48 E1s/T1s and 5 unchannelized STM-1 ports

    Clock

    synchronization

    Clock extracted from the Iub interface, GPS clock , OCXO free-run clock, and IP

    clockAccuracy: 0.05 ppm

    Dimensions(height x width xdepth)

    BBU3900: 86 mm x 442 mm x 310 mm

    DC RRU3804: 480 mm x 270 mm x 140 mm (without the housing and connectors)

    485 mm x 285 mm x 170 mm (with the housing and connectors)

    AC RRU3804: 485 mm x 285 mm x 250 mm (with the housing and connectors)

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    Item SpecificationWeight (kg) BBU3900: full configuration: 11

    typical configuration (1 PSU, 1 WBBP, 1 WMPT): 7

    DC RRU3804: 15 (without the housing)

    17 (with the housing)

    AC RRU3804: 20.5 (without the housing)

    22.5 (with the housing)

    Input voltage RRU3804: 48 V DC, voltage range: 36 V DC to 57 V DC

    220 V AC, voltage range: 90 V AC to 290 V AC

    BBU3900: +24 V DC, voltage range: +21.6 V DC to +29 V DC

    48 V DC, voltage range: 38.4 V DC to 57 V DC

    Power consumption (for the DC RRU3804) Power backup duration in

    typical power estimated on thebasis of the battery capacity

    Configuration Typical powerconsumption(50% load)

    Maximumpowerconsumption(100% load)

    24 Ah 50 Ah 92 Ah

    3 x 1 400 W 500 W 2.3hours

    5.5hours

    11.0hours

    3 x 2 550 W 710 W 1.5hours

    3.7hours

    7.8 hours

    3 x 3 710 W 950 W 1.0hours

    2.8hours

    5.7 hours

    Power consumption (for the AC RRU3804)

    Configuration Typical power consumption(50% load)

    Maximum power consumption(100% load)

    1 carrier 115 W 160 W

    2 carriers 175 W 240 W

    3 carriers 220 W 315 W

    Power

    consumption

    NOTE

    The typical power consumption is reached when the output power per carrier on the cabinet

    top is 20 W and the DBS3900 works with a 50% load, 25environment temperature.

    The maximum power consumption is reached when the output power per carrier on the

    cabinet top is 20 W and the DBS3900 works with a 100% load, 25 environment

    temperature.

    Temperature BBU3900: 20C to +55C

    RRU3804:

    40C to +50C (with 1120 W/m2solar radiation)

    40C to +55C (without solar radiation)

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    Item SpecificationRelative humidity BBU3900: 5% RH to 95% RH

    RRU3804: 5% RH to 100% RH

    Absolutehumidity

    BBU3900: 125 g/m3

    RRU3804: 130 g/m3

    Air pressure 70 kPa to 106 kPa

    Protectiondegree

    BBU3900: IP20

    DC RRU3804: IP65

    AC RRU3804: IP55

    Storage ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weatherprotected, nottemperature-controlled storage locations".

    Transportation ETSI EN300019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"

    Anti-seismicperformance

    IEC 60068-2-57 (1999-11) Environmental testing Part 2-57: Tests Test Ff:Vibration Time-history method.

    YD5083-99: Interim Provisions for Test of Anti-seismic Performances ofTelecommunications Equipment (telecom industry standard in People's Republicof China)

    EMC The NodeB meets the EMC requirements and complies with the followingstandards:

    CISPR 22 (1997)

    EN 55022 (1998)

    CISPR 24 (1998)

    IEC 61000-4-2

    IEC 61000-4-3

    IEC 61000-4-4

    IEC 61000-4-5

    IEC 61000-4-6

    IEC 61000-4-29

    ETSI 301 489-1 V1.3.1 (2001-09)

    FCC Part 15

    The DBS3900 passes the certification of European standards.

    Table 4-5 Technical specifications of the DBS3900 (BBU3900 + RRU3801E)

    Item Specification

    Band RX band (MHz) TX band (MHz)Band

    Band I (2100 MHz) 1920 to 1980 2110 to 2170

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    Item Specification

    Capacity 12 cells

    Maximum configuration: 6 x 2, 3 x 4

    UL: 1536 CEs

    DL: 1536 CEs

    Output power One RRU3801E supports two carriers with 40 W output power at the antennaconnector of the RF module.

    One-carrier configuration: 40 W per carrier

    Two-carrier configuration: 20 W per carrier

    NOTE

    Maximum output power = Maximum output power of the PA -Internal losses. The maximumoutput power is measured at the antenna connector of the RF module.

    Band 1-wayreceiversensitivity

    (dBm)

    2-way receiversensitivity

    (dBm)

    Remarks

    125.8 128.6 As recommended in3GPP TS25.104, thereceiver sensitivity (fullband) is measured atthe antenna connectoron condition that thechannel rate reaches12.2 kbit/s and the BER

    is within 0.001.

    Receiversensitivity

    Band I (2100MHz)

    126.5 129.3 The receiver sensitivity(median performanceover receptionbandwidth) is tested atthe antenna connector.The AMR serviceshould be at 12.2 kbit/sand the BER should notexceed 0.0001.

    Transmission

    port

    A maximum of 48 E1s/T1s, 2 FE/GE electrical ports, and 2 FE/GE optical ports or

    a maximum of 48 E1s/T1s and 5 unchannelized STM-1 ports

    Clocksynchronization

    Clock on the Iub interface, GPS clock, OCXO free-run clock, and IP clock

    Accuracy: 0.05 ppm

    Dimensions(height x width xdepth)

    BBU3900: 86 mm x 442 mm x 310 mm

    RRU3801E: 480 mm x 270 mm x 140 mm (without housing and connectors)

    485 mm x 285 mm x 170 mm (with housing and connectors)

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    Item Specification

    Weight (kg) BBU3900: in full configuration: 11;

    in typical configuration (one PSU, one WBBP, and one WMPT): 7

    RRU3801E: 15 (without housing)

    17 (with housing)

    Input power RRU3801E: 48 V DC, voltage range: 36 V DC to 57 V DC

    BBU3900: +24 V DC, voltage range: +21.6 V DC to +29 V DC

    48 V DC, voltage range: 38.4 V DC to 57 V DC

    Power consumption Power backup duration in typicalpower estimated on the basis ofthe battery capacity

    Configuration Typical

    powerconsumption

    (50% load)

    Maximum

    powerconsumption(W)

    (100% load)

    24 Ah 50 Ah 92 Ah

    3 x 1 400 W 500 W 2.3hours

    5.5 hours 11.0 hours

    3 x 2 550 W 710 W 1.5hours

    3.7 hours 7.8 hours

    Powerconsumption

    NOTE

    The typical power consumption is reached when the output power per carrier on the cabinet

    top is 20 W and the DBS3900 works with a 50% load.

    The maximum power consumption is reached when the output power per carrier on thecabinet top is 20 W and the DBS3900 works with a 100% load.

    Temperature BBU3900: 20C to +55C

    RRU3801E:

    40C to +50C (with 1120 W/m2 solar radiation)

    40C to +55C (without solar radiation)

    Relativehumidity

    BBU3900: 5% RH to 95% RH

    RRU3801E: 5% RH to 100% RH

    Absolutehumidity

    BBU3900: 125 g/m3

    RRU3801E: 130 g/m3

    Air pressure 70 kPa to 106 kPa

    Protectiondegree

    BBU3900: IP20

    RRU3801E: IP65

    Storage ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weatherprotected, nottemperature-controlled storage locations"

    Transportation ETSI EN300019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"

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    Item Specification

    Anti-seismicperformance

    IEC 60068-2-57 (1999-11) Environmental testing Part 2-57: Tests Test Ff:Vibration Time-history method.

    YD5083-99: Interim Provisions for Test of Anti-seismic Performances ofTelecommunications Equipment (telecom industry standard in People's Republicof China)

    EMC The DBS3900 meets the EMC requirements and complies with the followingstandards:

    CISPR 22 (1997)

    EN 55022 (1998)

    CISPR 24 (1998)

    IEC 61000-4-2

    IEC 61000-4-3

    IEC 61000-4-4

    IEC 61000-4-5

    IEC 61000-4-6

    IEC 61000-4-29

    ETSI 301 489-1 V1.3.1 (2001-09)

    FCC Part 15

    The DBS3900 passes the certification of European standards.

    4.4 Technical specifications of the BTS3900C

    Table 4-6 Technical specifications of the BTS3900C (BBU3900 + RRU3801C)

    Item SpecificationBand RX band (MHz) TX band (MHz)

    Band I (2100 MHz) 1920 to 1980 2110 to 2170

    Band II (1900 MHz) 1850 to 1910 1930 to 1990

    Band IV (AWS) 1710 to 1755 2110 to 2155

    Band V/VI (850 MHz) 824 to 849 869 to 894

    Band IX (1800 MHz) 1749.9 to 1784.9 1844.9 to 1879.9

    Band

    Band VIII (900 MHz) 880 to 915 925 to 960

    Capacity 2 cells

    Maximum configuration: 1 x 2

    UL: 384 CEs

    DL: 384 CEs

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    Item SpecificationAir pressure 70 kPa to 106 kPa

    Protection

    degree

    IP55

    Storage ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weatherprotected, nottemperature-controlled storage locations".

    Transportation ETSI EN300019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"

    Anti-seismicperformance

    IEC 60068-2-57 (1999-11) Environmental testing Part 2-57: Tests Test Ff: Vibration Time-history method.

    YD5083-99: Interim Provisions for Test of Anti-seismic Performances ofTelecommunications Equipment (telecom industry standard in People's Republic ofChina)

    EMC The BTS3900C meets the EMC requirements and complies with the following standards: CISPR 22 (1997)

    EN 55022 (1998)

    CISPR 24 (1998)

    IEC 61000-4-2

    IEC 61000-4-3

    IEC 61000-4-4

    IEC 61000-4-5

    IEC 61000-4-6

    IEC 61000-4-29 ETSI 301 489-1 V1.3.1 (2001-09)

    FCC Part 15

    The BTS3900C passes the certification of European standards.

    Table 4-7 Technical specifications of the BTS3900C (BBU3900 + RRU3804)

    Item SpecificationBand RX band (MHz) TX band (MHz)

    Band I (2100 MHz) 1920 to 1980 2110 to 2170

    Band II (1900 MHz) 1850 to 1910 1930 to 1990

    Band IV (AWS) 1710 to 1755 2110 to 2155

    Band

    Band V/VI (850 MHz) 824 to 849 869 to 894

    Capacity 3 cells

    Maximum configuration: 1 x 3

    UL: 384 CEs

    DL: 384 CEs

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    Item SpecificationOutput power The RRU3804 supports four carriers with a 60 W output power at the antenna

    connector.

    One-carrier configuration: 60 W per carrier Two-carrier configuration: 30 W* per carrier

    Three-carrier configuration: 20 W per carrier

    Four-carrier configuration: 15 W per carrier

    Supporting the 20 W + 40 W or 10 W +50 W configuration through softwareupgrade

    NOTE

    Maximum output power = Maximum output power of the PA - Internal loss. The maximumoutput power is measured at the antenna connector of the RF module.

    * refers to the maximum output power in typical configuration

    Band 1-way receiversensitivity

    (dBm)

    2-way receiversensitivity

    (dBm)

    125.8* 128.6* 131.3*Band I (2100 MHz)/BandIV (AWS)

    126.5** 129.3** 132.0**

    125.3* 128.1* 130.8*Band II (1900 MHz)

    126.0** 128.8** 131.5**

    125.6* 128.4* 131.1*Band V/VI (850 MHz)***

    126.3** 129.1** 131.8**

    Receiversensitivity

    NOTE

    Indication of *: As recommended in 3GPP TS25.104, the receiver sensitivity (full band) ismeasured at the antenna connector on condition that the channel rate reaches 12.2 kbit/s andthe Bit Error Rate (BER) is within 0.001.

    Indication of **: The receiver sensitivity (median performance over reception bandwidth) istested at the antenna connector. The AMR service should be at 12.2 kbit/s and the BERshould not exceed 0.0001.

    Indication of ***: Measurement value of the 850 MHz sub-band.

    Transmissionport

    A maximum of 8 E1s/T1s, 2 FE electrical ports, and 2 FE optical ports, a maximumof 8 E1s/T1s and 1 unchannelized STM-1 port, or a maximum of 8 E1s/T1s, 4 GE

    electrical ports, and 2 GE optical ports

    Clocksynchronization

    Clock extracted from the Iub interface, GPS clock , OCXO free-run clock, and IPclock

    Accuracy: 0.05 ppm

    Dimensions(height x widthx depth)

    600 mm x 400 mm x 390 mm

    OMB: 600 mm x 240 mm x 390 mm

    Weight (kg) 50 (AC)

    48 (DC)

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    Item SpecificationInput voltage 48 V DC, voltage range: 38.4 V DC to 57 V DC

    220 V AC single-phase, voltage range: 176 V AC to 290 V AC

    110 V AC dual-live-wire power cable; voltage range: 90 V AC to 135 V AC

    Configuration Typical powerconsumption

    Maximum power consumption

    1 x 1 220 W 260 W

    1 x 2 270 W 330 W

    1 x 3 320 W 410 W

    Powerconsumption

    NOTE

    The typical power consumption is reached when the output power per carrier on the cabinet

    top is 20 W and the BTS3900C works with a 50% load, 25environment temperature.

    The maximum power consumption is reached when the output power per carrier on the

    cabinet top is 20 W and the BTS3900C works with a 100% load, 25 environment

    temperature.

    Temperature -40C to +45C (with 1120 W/m2 solar radiation)

    -40C to +50C (without solar radiation)

    Relativehumidity

    5% RH to 100% RH

    130 g/m3Absolute

    humidity

    Air pressure 70 kPa to 106 kPa

    Protectiondegree

    IP55

    Storage ETSI EN300019-1-1 V2.1.4 (2003-04) class1.2 "Weatherprotected, nottemperature-controlled storage locations".

    Transportation ETSI EN300019-1-2 V2.1.4 (2003-04) class 2.3 "Public transportation"

    Anti-seismicperformance

    IEC 60068-2-57 (1999-11) Environmental testing Part 2-57: Tests Test Ff:Vibration Time-history method.

    YD5083-99: Interim Provisions for Test of Anti-seismic Performances ofTelecommunications Equipment (telecom industry standard in People's Republic ofChina)

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    Item SpecificationEMC The BTS3900C meets the EMC requirements and complies with the following

    standards:

    CISPR 22 (1997) EN 55022 (1998)

    CISPR 24 (1998)

    IEC 61000-4-2

    IEC 61000-4-3

    IEC 61000-4-4

    IEC 61000-4-5

    IEC 61000-4-6

    IEC 61000-4-29

    ETSI 301 489-1 V1.3.1 (2001-09)

    FCC Part 15

    The BTS3900C passes the certification of European standards.

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    A Acronyms and AbbreviationsAcronym and Abbreviation Full SpellingAPM Advanced Power Module

    ATM Asynchronous Transfer Mode;

    BBU Baseband Unit

    BER Bit Error Rate

    CPRI c Radio InterfaceCommon Publi

    DAGC Digital Automatic Gain Control

    FE Fast Ethernet

    HSDPA link Packet AccessHigh Speed Down

    HSUPA cket AccessHigh Speed Uplink Pa

    IP Internet Protocol

    LTE Long Term Evolution

    PDU Power Distribution Unit

    PMU Power Monitoring Unit

    PSU Power Supply Unit

    RNC Radio Network Controller

    WRRU Radio Remote Unit for WCDMA

    TCO Total Cost of Ownership

    UEIU Universal Environment Interface Unit

    UELP Universal E1/T1 Lightning Protection unit

    UFAN Universal Fan module

    UFLP Universal FE Lightning Protection unit

    UPEU Universal Power and Environment interface Unit

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    RAN11.0 3900 Series NodeB Product Description

    Acronym and Abbreviation Full SpellingUSCU Universal Satellite card and Clock Unit

    UTRP Universal Transmission Processing unit

    WBBP WCDMA BaseBand Process unit

    WMPT WCDMA Main Processing&Transmission unit

    WRFU WCDMA Radio Filter Unit