Flexi Multiradio BTS WCDMA Modules Overview RA4531-08 – RU40
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Contents After completing this module, the participant will be able to: Theory: • List the New Units of the NSN Flexi WCDMA BTS RU40 level • List the units of the NSN Flexi WCDMA BTS • Describe the main function of each unit in the NSN Flexi WCDMA BTS • Describe the installation and configuration options for the Flexi WCDMA BTS • List optional units of Flexi WCDMA BTS
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NSN Flexi WCDMA BTS structure overview Flexi BTS introduces a new platform • The modular design does not use any backplanes • All Modules are interconnected via front panel cabling • Modules can be installed in separate locations (Feederless / Distributed Sites) A Flexi WCDMA BTS consists of one System Module and • one optional Extension System Module (BaseBand Extension) There can be maximum of four Radio Modules or Remote Radio Heads • Radio Modules are available with 1, 2, or 3 Power Amplifiers (PAs) each • Remote Radio Heads are optimized for 1 sector with BTS configurations • 1 cell to 24 cells with or without MIMO • Module weight: 19-25 kg per Module The Base Station can be installed by one person There can be up to four Radio Modules or RRH. Site installation with RF Chaining can handle up to 12 RRHs or RFMS connected to a single System Module. For internal use
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Flexi WCDMA BTS Rel.2 HW • Flexi BTS multimode system module is also prepared for LTE evolution with a SW upgrade. • High capacity system module – FSMC with 240 CEs – FSMD with 576 CEs – FSME with 912 CEs • Can be used as capacity extension for Rel.1 HW (FSMB)
• • •
•
Transmission sub module FTIB to support All-IP transport and Timing over Packet (TOPA) Transmission sub module FTLB to support I-HSPA FRGQ,FHDA,2TX RRH, support configuration: - 4@20W / 3@20W - 2@40W / 1@40W - MIMO with Single RRH up to 4 MIMO layers with 30W FRGP, FXDA,FRIE,FXCA,FXFA,FXEA triple RF Modules, support configuration: – 4+4+4@ 15W / 3+3+3 @ 20W – 2+2+2@ 30W / 1+1+1@ 60W. – MIMO with 2 Triple RFMs up to 4 MIMO layers with 30W – RX diversity sharing across modules
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Flexi WCDMA BTS Rel.2 HW, cont. There are the following Flexi System Modules types available: FSMB System Module (Rel.1 HW) FSMC Flexi Multimode BTS System Module (Rel.2 HW) FSMD Flexi Multimode BTS System Module (Rel.2 HW) FSME Flexi Multimode BTS System Module (Rel.2 HW) FSMF Flexi Multiradio BTS 10 System Module (Rel.3 HW) FBBA (Rel.3 HW) capacity extension submodule for FSMF System Module.
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Transmission and Transport Solution • Standalone AXC (S-AXC) is ATM transmission node. Standalone • One subrack (on the figure) AXC supports 2 x 1.2 Gbps of switching capacity. • Short to long hop length • Various interface unit are available • Various frequency band: 6, 7, 8, 13, 15, 18, 23, 26, 28, 32, 38 and 58 GHz • PDH radio • SDH radio • Various indoor unit type: FIU19, FPFM200i IFUE or FXC-RRI • Flexbus interface FTIF
FTFB
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Transmission and Transport Solution, cont. The FPFM200i supports the following interfaces: five electrical Ethernet Ports 10/100/1000Base-TX full duplex 10/100/1000Base-TX auto-negotiation MDIX (10/100Base-TX) 5 x RJ45 connector (EIF1 ~ EIF5) 2 x P+E ports (EIF4 / EIF5) four PDH ports on two RJ48C connectors - one RJ48C supports two E1/T1 ports (IF1/3 & IF2/4) one LMP port on RJ45 connector, 10/100/1000Base-T Flexi Multiradio 10 System Module with FTIF supports Ethernet Switching across up to three interfaces and 8x E1/T1/JT1 (twisted pair); coaxial connectivity can be provided via baluns. The sub-module is required: for ATM Iub, Dual Iub, and IP Iub over ML-PPP for Dynamic Abis over TDM, Dynamic Abis over IP/Ethernet (TDM pseudowire), and Packet Abis over TDM if collocation (CESoPSN) or synchronization includesTDM if more/other Ethernet interfaces are required than available on Flexi Multiradio 10 System Module if Synchronization Hub function based on Synchronous Ethernet input or output is to be use. FTFB transmission sub-module for Nokia Siemens Networks Flexi WCDMA (later referred to as FTFB) provides radio transmission interface functionality, power supply, and control to microwave radios. FTFB is an evolutional product of FTFA, it allows the operator to connect Nokia Siemens Networks Flexi WCDMA BTS to a Flexi Hopper (Plus) microwave radio unit with a Flexbus interface using a single Flexbus cable with the capability to carry both Ethernet and traditional E1 traffic, and also provides a high capacity evolution path towards Ethernet with FlexiPacket Radio, or any other GE interface equipped unit. For internal use
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Flexi Multiradio System Modules - FSMF
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Flexi Multiradio System Modules – FSMF, cont. This feature provides the following operator benefits: •
Secure BTS investment with flexible migration from one radio access technology to another: GSM/EDGE, WCDMA, HSPA and HSPA evolution, and LTE TDD/FDD radio access technologies as well as all needed frequency variants.
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Support for 3GPP functions and features in 3GPP release 9 and later providing a future proof platform for advanced radio systems.
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Support for multi-operator cases (MORAN) where several operators can share resources of one BTS.
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Support for the most common interfaces between the modules and functions as defined by Open Base Station Architecture Initiative (OBSAI) and Common Public Radio Interface (CPRI).
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Flexible capacity upgrade based on pay-as-you-grow concept.
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Higher site capacities and new configurations.
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Ethernet-based transport with security solutions, synchronization, and timing methods based on Synchronous Ethernet, Timing over Packet, GPS.
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Well optimized for data services. For internal use
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Functional blocks of the System Module (FSMF) with FTIF, FBBA and FPFD
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Functional blocks of the System Module (FSMF) with FTIF, FBBA and FPFD, cont. Flexi Multiradio System Module is an integral part of Flexi Multiradio 10 BTS. It supports the following software operating modes: • GSM/EDGE • WCDMA
• HSPA, HSPA evolution, and I-HSPA • LTE in FDD and TDD The tasks of the System Module are: • telecom control • system operation and maintenance • baseband processing • Transmission • Synchronization • power distribution via optional sub-module For internal use
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Front panel of the System Module with optional sub-modules FPFD, FTIF,and two FBBAs
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Front panel of the System Module with optional sub-modules FPFD, FTIF,and two FBBAs, cont. Core module contains an integrated 100/1000Base-T Gigabit Ethernet transport interface towards the radio access network, or directly towards the core network in case of LTE. The connection between the transport sub-module and the core module is done via internal connector for both power and signal transmission. Transport sub-module is required in the following scenarios: •
TDM transport interfaces:
– ATM Iub or Dual Iub. – IP Iub over ML-PPP.
– Dynamic Abis over TDM. – Packet Abis over TDM. •
TDM pseudowire emulation:
– Dynamic Abis over IP/Ethernet (TDM pseudowire, no external PDH interfaces are needed). – CESoPSN for external traffic (external PDH interfaces are needed). •
Synchronization options:
– PDH as synchronization input or output. – Synchronization hub function if based on Synchronous Ethernet input or output. •
Co-location and chaining:
– More or other Ethernet interfaces than those available in the Multiradio System Module are required.
– Optical Ethernet in case the shared RP3-01/transport port on the core module is occupied by RP3-01. For internal use
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Multiradio Flexi BTS WCDMA modules
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Multiradio Flexi BTS WCDMA modules, cont. A BTS type called Flexi WCDMA BTS has been available since RAS05.1. Multiradio Flexi BTS WCDMA is a new, truly modular, very compact, and high capacity wide-area WCDMA BTS that can be used in various indoor and outdoor installation options (such as floor, wall, stand, pole, mast, cabinet, 19" rack) and site applications (mini, macro, and distributed site solution). This solution can also be used as a multimode upgrade to existing UltraSite EDGE BTS with WCDMA carriers.
Multiradio Flexi BTS WCDMA consists of the following self-supporting BTS modules: •
Radio Module provides the Radio Frequency (RF) functionality. Maximum of three RF Modules can be directly connected to the Master System Module.
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System Module provides baseband processing as well as control and transmission functionality;
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System Module capacity depends on system module type, for details see section 2.1.2. The number of Rel99 CEs activated can be increased by license control;
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The Baseband Extension Module is also available. In case of two system modules in one BTS, Flexi System Extension Kit cable set (FSKA) is required.
There are four kinds of RF Modules available, namely: •
Release1 Single RF Module (50W – supporting one sector);
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Release1 Dual RF Module ( 50W – supporting one or two sectors);
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Release2 Triple RF Module (70W– supporting one, two, or three sectors);
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Release2 RRH Module (70W – supporting one sector);
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Release3 Triple RF Module (90W / 6Gb OBSAI interface – supporting one, two or three sectors);
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OBSAI (Open Base Station Architecture Initiative) interfaces OBSAI Interface
PROCESSING
System Module
OBSAI Interface TRANSMISSION
IP/ATM/PDH/SD H
CONTROL
OBSAI Interface
OBSAI Interface
RADIO
RF Module Additional Frequencies
• The OBSAI family of specifications provides the architecture, function descriptions, and minimum requirements for integration of a set of common modules into a base transceiver station (BTS). • As a minimum, the BTS will have the capability to be configured from a set of common modules in order to support one or more current or future wireless network access standards. • The technical requirements in the OBSAI specifications form an interface specification to ensure compatibility and interoperability among and between the set of common modules. • The requirements do not address the quality or reliability of service of the access standards, nor do they cover measurement procedures. For internal use
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OBSAI (Open Base Station Architecture Initiative) interfaces, cont. Flexi Multiradio System Module is fully OBSAI compatible and has all the control and baseband functions for the supported radio access technologies.The architecture of Flexi Multiradio System Module enables utilization of several System Module and sub-module variants. The System Module consists of a casing within the following baseband modules: a core module and up to two optional capacity extension sub-modules.
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Flexi Multiradio BTS – Field-Proven OBSAI Architecture
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NSN Flexi WCDMA BTS Modules
5.25” 17.05” 133 mm 3 HU 422 mm without covers 560 mm with covers 22.05”
447 mm
17.6 ”
for 19 inch rack installation Weight: 19-25 kg 42 – 55 Lbs
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NSN Flexi WCDMA BTS Modules, cont. All NSN Flexi WCDMA modules are outdoor-capable, hermetically sealed and IP 55 class protected. The number of modules are minimised, e.g. for typical a 1+1+1 configuration only 2 dual PA modules are needed. Module core •
Core mechanics with optional front and back covers shield the module against water, snow, and solid foreign objects, and makes the module IP 55 weather resistant.
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Core mechanics provide EMC shielding.
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All connectors are located in the front with weather-protecting covers.
Module casing •
Casing supports the pile of modules.
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Module Core can be changed ; even when the module is at the bottom of the module stack
Outdoor cabinet includes door lock and door alarm switch. Fan sub-module •
Fan sub-module provides the fresh air cooling to module.
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The System Module controls the fans according to temperature information.
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Two redundant fans enable module operation if one fails in normal temperature.
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Fan sub-module can be changed in during normal operation at sites where rear access is provided.
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NSN Flexi WCDMA BTS Mechanics
Core (can be pulled out for replacement)
Casing(enables (to enablepulling core pull out out) the core)
Optional front Front Cablecover cable Cover and Fan
(can be replaced on site) For internal use
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NSN Flexi WCDMA BTS power supply architecture Optional Outdoor cabinet Two PA RF Module
Two PA RF Module
-48V DC
Two PA RF Module
• In local installations, the Optional Extension System Module (RAS05.1 ED)
BTS System Module 230V AC or 24V DC
ACDC or DCDC
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BBU
System Module provides DC power supply to the Radio Modules and optional System Extension Module.
• In Feederless / Distributed Sites, the DC power supply to Radio equipment may be provided by any other (48V) DC source.
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Flexi Lite BTS
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Flexi Lite BTS, cont. Flexi Lite BTS baseband unit consists of subunits that can be used for the following: • CCCH processing; • R99 users processing; • HSDPA users, and throughput processing; • HSUPA users and throughput processing; • CS Voice over HSPA users processing; • Interference cancellation processing. Note that Flexi Lite BTS contains baseband resources for Common Control Channels processing for 4 cells/15 km cell range, 3 cells/20km cell range or 2 cells/30km configurations included in BTS capacity. However from practical side (indoor/outdoor micro cell environment) lower cell ranges are expected (for example: 100/300/500 meters).
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Flexi Lite BTS Availability after C5, new HW.
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Flexi Lite BTS, cont. This feature benefits operator as follows: The product can be used in pico and microcellular applications and also as a coverage fill-in solution. The main use case is in capacity limited networks where the operator needs to start using smaller cells to be able to deliver the required system capacity. Output power is high enough to support indoor coverage building from outdoor sites. It is also high enough to drive distributed antenna system for indoor coverage. It also supports 2TX MIMO. Supports WCDMA/HSPA services.
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NSN Flexi BTS System Module rel.2 The Flexi System Module hosts the • telecom control • system operation and maintenance • baseband application • transmission • power distribution functionality. • The System Module can also act as a System Extension Module operating in a baseband extension mode. The following versions of the System Module are available: • System Module FSMB (rel. 1) • Multimode System Module FSMC (rel. 2) • Multimode System Module FSMD (rel. 2) • Multimode System Module FSME (rel. 2) Rel. 2 System Modules are “LTE ready” For internal use
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Flexi Multiradio BTS WCDMA rel. 1 interfaces
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Flexi Multiradio BTS WCDMA rel. 2 interfaces
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Remote Radio Head (FRGG) interfaces
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Remote Radio Head (FRGQ) interfaces
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Flexi Multiradio BTS - System Modules BTS Site level functionality O&M Timing/synch Transport
Baseband processing
Radio processing
Flexi Multimode System Module • HW supports following SW operating modes • WCDMA dedicated mode • LTE dedicated mode • WCDMA-LTE concurrent mode under study • Multiband support • RF Modules for different frequency bands can be connected to same System Module
Flexi EDGE System Module • Performance optimized for single mode operation • 18 carrier and 36 carrier variants • Multiband support • RF Modules for different frequency bands can be connected to same System Module For internal use
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Exploded view of System Module
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FSMB System Module interfaces
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FSMB System Module interfaces, cont. BB processing block (FSP)
• Each Rel.1 Flexi Signal Processor FSPA has a capacity of 80 CEs (Channel • • • • • •
Elements) Control and Timing block. Includes the NBAP termination, telecom and overall BTS control functionality, system O&M functionality, external site support system, and other equipment control. Generates system reference clock and frequency reference for synchronizing with other BTS Summing and multiplexing block. Used for data routing between the radio modules and the baseband RF interface block. Responsible for providing output/input interface to or from a maximum of three RF Modules Baseband extension interface block. Responsible for providing output/input interface to and/or from the System Extension Module External interface block. Implements the external interfaces for controlling external equipment.
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FSMC/D/E System Module interfaces
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FSMC/D/E System Module interfaces, cont. Flexi System Module rel. 2 Baseband (BB) processing. • The Baseband Processor (FSPC, Flexi Signal Processor version C) terminates the Iub user plane and is responsible for L1 processing of the air interface. • System Module type FSMC includes one signal processor, FSMD has two and FSME has three.
The traffic capacities are: • FSMC with 1 FSPC: 240 Ces • FSMD with 2 FSPCs: 576 Ces
• FSME with 3 FSPCs: 912 CEs
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System Module interfaces Connector
Type
Purpose
Power supply RF module 1
Multi-beam XL power supply connector
Power delivery to RF1. Fuse rating 20A.
Power supply RF module 2
Multi-beam XL power supply connector
Power delivery to RF2. Fuse rating 20A.
Power supply RF module 3
Multi-beam XL power supply connector
Power delivery to RF3. Fuse rating 20A. Recommended for I-HSPA use. Can be used for GPS mediator (FSEG).
Power supply System Extension Module operating in BB-ext mode
Multi-beam XL power supply connector
Power delivery to System Extension Module operating in BB-ext mode and to the main fuse for System Modules. Fuse rating 25A. Can be used for I-HSPA and GPS mediator (FSEG).
Transmission interfaces
8 x RJ-48/16 x SMB/2 x TNC/1 x duplex LC connector 2 x RJ-45 connector 1x GE via SFP transceiver
Variable transmission interfaces
10/100/ (1000 for Rel. 2) Eth LMP
RJ-45 connector
For local management tool
10/100/ (1000 for Rel. 2) Eth FPMA
RJ-45 connector
Site support control over IP/site support hard-wired alarms
10/100/ (1000 for Rel. 2) Eth OVP
RJ-45 connector
External equipment interface with overvoltage protection
1000 Eth ETP (10/100/1000 for Rel. 2)
RJ-45 connector
External transport equipment interface (for I-HSPA Adapter)
EAC
MDR36 connector
External alarms and controls
Sync out
MDR14 connector
BTS synchronization output interface
Sync in
MDR26 connector
BTS synchronization input interface (for external sources)
OPT-RF 1
Duplex LC connector
Interface for RF Module 1
OPT-RF 2
Duplex LC connector
Interface for RF Module 2
OPT-RF 3
Duplex LC connector
Interface for RF Module 3
OPT-EXT 1
Duplex LC connector
System and baseband extension interfaces
OPT-EXT 2
Duplex LC connector
System and baseband extension interfaces 2
DC input Grounding
TX25 screw terminals for 8 … 25 mm cable
Power feed
Screw M5
Grounding
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FSMB Functional Block diagram
FSPA 1
FSPA 2
FSPA 3
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FSMB Functional Block diagram, cont. The System Module can be used as a System Extension Module operating in a baseband extension mode to add channel capacity. In this case, it is connected to the master System Module with two optical cables and a DC cable. These items are provided with Flexi System Extension Kit (FSKA). The System Extension Kit delivery contains the following items: Cable set assembly 2 x optical cable 1 x power cable 4 x optical transceiver Transmission dummy panel.
When the System Module is used as a System Extension Module, the external synchronization input connectors cannot be used. Synchronization is provided by the master System Module. The Rel.1 System Extension Module provides a basic capacity of 32 CE without the channel capacity license. Enabling more CE capacity for the System Extension Module requires that a channel capacity license (RAN912 Channel Capacity LK) with sufficient capacity is downloaded to the BTS. For internal use
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FSMC/D/E Functional Block diagram
FSPC 1
FSPC 2
FSME only
FSPC 3
FSMD+E only
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FSMC/D/E Functional Block diagram, cont. BTS capacity can be upgraded by adding a second System Module When the System Module is used as a System Extension Module operating in a baseband extension mode, a transmission sub-module is not installed. Instead, a dummy transmission sub-module is installed to provide IP55 protection. This item is also included in Flexi System Extension Kit (FSKA) The only connectors that can be used are the DC input terminal and the two optical EXT interfaces connected to the System Module
Synchronization is provided by the System Module. No commissioning required to integrate FSKA to System Module. FSKA will be detected automatically. The auto detection requires that WN3.3 or later BTS SW and revision number exists and is active both in the System Module and System Extension Module. However, support for the FSMC and FSMD is first introduced in WN5.0. The initial SW upgrade of the Extension System Module is to be done “stand-alone” and requires a (spare) FTM equipped. Rel. 2 System Modules can be used in any combination Rel. 1 System Module (FSMB) can NOT act as an Extension for a Rel. 2 System Module (FSMC/D/E)
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Power Distribution and Fuses module (FPFA/B) DC Input connector FPFA / B
Type label
Power is distributed from FPFA/B to the System Module. FPFA is used with System Module rel. 1. In System Module rel. 2, it is replaced with FPFB, which provides more power feeding capacity to RF Modules. FPFB is compatible with both System Module For internal use releases. 45
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FPFA Interfaces
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FPFA Interfaces, cont. FPFA version A101 Power for the System Extension Module comes through the circuit breaker and can be switched off via the circuit breaker. This must be done when connecting the Extension module to the System Module to avoid hot-plug connection. This is also required when disconnecting from the System Module. When the EXT circuit breaker is pulled to OFF position, the power supply to the Extension module is switched off. Power feed to the System Module is still on.
FPFA version A102, A103 or later FPFA versions A102, A103, or later have a common power supply via the same circuit breaker for the System Module and the System Extension Module. This means that the same circuit breaker switches the power on and off to both the System Module and the System Extension Module. The System Module and Extension module are reset by pulling the EXT circuit breaker on/off switch on the front panel. Note: When connecting the Extension module to the System Module, switch off the circuit breaker to avoid hot-plug connection to the Extension module. Then switch the System Module back on. This precaution is also required when disconnecting the Extension module from the System Module.
The fuse rates for the FPFA are: A.101: RF1-3 20.0A, EXT 25.0A A.102 or later: RF1-3 20.0A, EXT 25.0A (System Module supplied via EXT circuit breaker)
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FPFB Interfaces
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FPFB Interfaces, cont. The FPFB does not have any circuit breakers but instead uses electrical fuses, and includes a dedicated power switch for the System Module. There are five membrane switches on the FPFB front panel for the outputs. The switches control power-control circuits and have two states: On and Stand-by. This allows to individually connect or disconnect the power supply from each of the 5 possible modules: RF Module / RRH 1 RF Module / RRH 2 RF Module / RRH 3 System Module System Extension Module
The fuse rates for the FPFB are: RF1-3 31.0A (+/-2A), EXT 25.0A (+/- 4.5A)
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FPFA/B LED Indication FPFA LED indication: LED on:
• Load connected to FPFA output and Circuit Breaker (CB) has tripped • Load connected to FPFA output and CB switch pulled to off position LED off:
• Load not connected at all • Load connected to FPFA output and the power supply is on (CB has not tripped) FPFB LED indication: LED colour Yellow Green Red Yellow, blinking
Indication Stand-by, output disabled manually Normal operation, output enabled Fault, output disabled Remote controlled, output disabled * * not yet supported
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FPFA/B LED Indication, cont. Flexi Power Distribution and Fuses (FPFB) is a power distribution unit with over current protection for the outputs. FPFB distributes nominal -48.0 VDC, also referred to as V48N, to System Module, maximum two System Extension Modules, three RF Modules and two fans. FPFB is compatible with System Module variants FSMB, FSMC, FSMD and FSME. System Module variant FSMB supports two System Extension Modules, whereas variants FSMC, FSMD and FSME support one System Extension Module. FPFB includes also LEDs for output status indications and operating switches for outputs. The protection class of the FPFB is IP65. Flexi Power Distribution and Fuses (FPFB) provides following functions •
Input power connections on the side of FPFB
•
Four output connections on the front panel of FPFB
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One output connection at the bottom of FPFB
•
One fan connector for two fans at the back of FPFB
•
Dedicated membrane switch for every RF Module
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Dedicated membrane switch for System Extension Module
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Common membrane switch for System Module and fan outputs
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Surge protection for input lines
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Reverse voltage protection
•
Over Current Protection (OCP) for outputs 1-5
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Automatic reset of fuses or over current protections for fan outputs (output 6)
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Over Temperature Protection (OTP)
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Inrush current limiter
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Led indication at the front panel for outputs 1-5
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Remote output OFF/ON control for outputs 1-5 through System Module For internal use
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Flexi Multiradio 10 BTS: FSMF
RU40
• Multiradio platform for GSM, • • • •
WCDMA, LTE Pay as You Grow -capacity expansion with extension submodules Integrated high capacity Ethernet transport HW supports up to 96 cells with System Module chaining High baseband capacity: HW supports up to 3 times more capacity than FSME
• 10.1 – 19.7 kg • IP65 • -35 to +55 °C
High capacity System Module with multiradio capability
For release specific SW capability, see “Dimensioning WCDMA RAN: Flexi BTS Baseband” document For internal use
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Flexi Multiradio 10 BTS: FSMF, cont. There are two basic types of HW configuration available in FSM3: • FSMF: FSMF is FSP with three Nyquists, three Turbo Nyquist and MCU (6 core) • FSMG: FSP with two Nyquists and one Turbo Nyquist. There are different combinations possible of these, also with FSM2 HW, to fulfill different capacity needs. There are two LCG configuration types available for System Module Rel. 3 for HSPA:
• Small HSPA configuration • Normal HSPA configuration
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Features of Flexi Multiradio Rel 3 System Module Improved usability •
Flexi Multiradio System Module (FSM rel.3) is a new Flexi System Module that supports LTE / WCDMA and GSM
•
There are indoor and outdoor variants of FSM rel.3 for optimized deployments
•
Capacity and technology expansions can be done with sub-modules (Extension submodules)
High capacity • The latest state-of- the- art processor technology • Increased SM pooling from two to nine SM • Over 10 Gbps site capacity • Larger multiradio and multiband configurations Increased number RF interfaces from four to six • Enhanced optical interfaces capacity Improved connectivity • High capacity Ethernet transport integrated in the System Module • Other transport media with optional integrated Transport Sub-module
For internal use
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Expansion with Submodules Capacity and technology expansions can be done with sub-modules (Extension submodules)
Traffic grow or technology expansion
Pay as you grow
Initial traffic
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High Capacity System Module (1/3) Increased System Modules pooling from 2 to 9 System Modules
Currently (RU30EP2) up to 2 System Modules can be chained
RF Module
RF Module
Extension SM
Master SM
Flexi Multiradio System Modules enables possibility chaining in the future up to 9 System Modules
RF Module RF Module
Master SM
RF Module
RF Module RF Module
RF Module
RF Module
RF Module
Extension SM
Extension SM
Extension SM
……
Extension SM
Up to 9 SM rel.3 chained (to be implemented in the future) For internal use
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High Capacity System Module (2/3) Overall 10Gbps site capacity
Flexi Multiradio BTS Site throughput 9 x Flexi Multiradio
10 Gbps
System Module
10 x more site capacity
Flexi Multiradio System Module BTS 1 Gbps
2 x Flexi Multimode System Module
Traffic data
Capacity
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High Capacity System Module (2/3) Larger multiradio and multiband configurations and enhanced optical interfaces capacity
•
Up to 6 RP3-01 links are available with Flexi Multiradio System Module (FSM rel.3) – Core System Module + 2 Extension Submodules
• • •
Core System Module – 4 RP3-01 links Extension Submodule – 1 RP3-01 link each
RP3-01 link rate up to 6,133Gbps (32Tx/Rx) *
SM rel.2 configuration
4+4+4 MIMO carrier s (2100)
Triple RF Module Triple RF Module Triple RF Module System Module rel2
Triple RF Module Triple RF Module Triple RF Module Triple RF Module Triple RF Module Triple RF Module System Module rel3
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4+4+4 MIMO carrier s (2100) 4+4+4 MIMO carrier s (900)
SM rel.3 configuratio n
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* Pure HW rel.3 configuration (System Module rel.3 + RF Module rel.3)
Note that RP3-01 links are also used for System Modules’ connections (1st RP3-01 link for synchronization, 2nd RP301 link for antenna data (if needed))
System Module Connectors DC out 4x
EIF4
EIF2
RJ4 5
SFP
IF4+ 8
EIF3
EIF1
RJ4 5
SFP
IF2+ 6
RJ4 RJ4 IF3+ IF1+ 8 8 7 5 RJ4 8
RJ4 8
FTIF
FPFD FSMF
DC out DC In
LMP
RP3-01
RP3-01
SRIO
RJ45
Or EIF2
3xSFP
SFP+
16mm ²
BBext 2
EAC
Sync Out
HDMI
HDMI
QSFP BBext 1
SFP
EIF 1
Sync In
RJ45
HDMI
QSFP
FBBA/B DC in PwrProfile
DC out PwrProfile
RP3-01 SFP+
QSFP
SRIO SFP+
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Flexi Multiradio System Module System Module capacity Technology
FSMF Capacity
Technology
FBBA Capacity
GSM/ EDGE
72 TRX
GSM/ EDGE
-
WCDMA
528 CEs
WCDMA
576 CEs
HSDPA
756 Mbps
HSDPA
756 Mbps
HSUPA
115 Mbps
HSUPA
157 Mbps
LTE DL
450 Mbps
LTE DL
450 Mbps
LTE UL
150 Mbps
LTE UL
150 Mbps
LTE BW/Cell
20 MHz
LTE BW/Cell
20 MHz
LTE cell count
3
LTE cell count
3
MIMO
Yes (HSPA & LTE)
MIMO
Yes (HSPA & LTE)
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Flexi 10 Block Diagram
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System Module rel.3 capacity •
Comparing to System Modules rel.2 available capacity of System Module rel.3 does not depend on number of commissioned cells. Table below presents number of available subunits for traffic use (or CCCH / interference cancellation processing if needed)
Number of cells
FSMC
FSMD
FSME
1-3
5
12
19
4–6
4
11
18
7–9
2 + 1*
9 + 1*
16 + 1*
10 – 12
1+1*
8 + 1*
15 + 1*
• •
FSMF** 5.5
5 + 0.5*
Table assumes 10km cell range and 2way Rx Div
Expansion Submodule
Available Subunits
FBBA
6
FBBB
3
Available resources (subunits) can be used for CCCH processing, HSDPA schedulers processing, HSUPA users and thr. processing, R99 users processing and interference cancellation processing Please note that each System Module rel.3 contains CCCH processing resources required for ‘Basic Configurations’ (e.g. 6 cells/10km or 3cells/20km – 2way Rx Div) included in the System Module rel.3 capacity One subunit provides 96 Rel.99 CE
In Rel2 hw 1 SU = 48 Ces In Rel3 hw 1 SU = 96 CEs
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LCG Configurations System Module rel.3 LCG configuration
•
System Module rel.3 might be commissioned to one out of the three configurations:
•
Rel99 only (up to 12 cells)
• •
Small HSPA configuration (up to 6 cells)
• •
Providing HSPA processing up to 6 HSPA cells (one HSDPA and HSUPA scheduler)
Normal HSPA configuration (up to 12 cells)
• •
Support of UMTS Rel.99 services, no support for HSPA
Providing HSPA processing up to12 HSPA cells (two HSDPA and one HSUPA scheduler)
Large HSPA Configuration
•
Providing HSPA processing up to12 HSPA cells (two HSDPA and two HSUPA scheduler)
The configuration is commissioned per Local Cell Group (LCG)
Note that LCG commissioning is optional. By default Normal HSPA configuration is assumed
Note that HSDPA and HSUPA schedulers are LCG specific
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LCG Configurations – R99 Only
Number of cells
Core System Module
1-6 cells FSMF 7-12 cells
Table assumes 10km cell range and 2way Rx Div
Expansion Submodule
#R99Subunits
-
5½
FBBA
11½
FBBA +FBBA
17½
-
5 + ½*
FBBA
11 + ½*
FBBA +FBBA
17 + ½*
* Additional baseband resources for CCCH processing needed if one System Module and more than 6 cells/10km cell range/2way Rx div.
Note that 1x CCCH Processing Set license for more than 6 cells/10km are required (CCCH)
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LCG Configurations –HSPA
HSPA
Small
Normal
Large
Number of cells
1-6 cells
1-6 cells
1-6cells
FSMF
HSDPA
HSUPA
4 7/8 SU
1 HSPDA scheduler Upto 6 HSPA cells Upto 375 active users Upto 252 Mbps
1 HSUPA Scheduler Upto 12 HSPA cells Upto 512 active users Upto 69 Mbps
3 3/8 SU
2 HSDPA Schedulers Upto 12 HSPA cells 2x375 active users Upto 2x256 Mbps
1 HSUPA scheduler Upto 12 HSPA cells Upto 512 active users Upto 69Mpbs
2 6/8 SU
2 HSDPA Schedulers Upto 12 HSPA cells 2x375 active users Upto 2x256 Mbps
2 HSUPA scheduler Upto 12 HSPA cells Upto 750 active users Upto 2x69 Mpbs
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HSPA Resource Steps HSDPA processing set license
Max number of HSDPA users per BTS
Max HSDPA throughput per BTS
HSDPA BTS processing set 1
32
7,2 Mbps
HSDPA BTS processing set 2
72
21 Mbps
HSDPA BTS processing set 3
72
84 Mbps
Required number of HSUPA BTS Processing Sets = max ( Roundup ( Number_of_HSUPA_users / 24) ; Roundup(HSUPA_throughput / 5,8) ) 1 HSUPA Processing Step license = 24 users & 5.8 Mbps 8 HSUPA Resourse Steps (1 SU) = 104 users; 25 Mbps #PIC pools
Cells* that are target for IC
Cells* where the IC is performed
Consumed SU
1
6
6
1
2
12
12
2
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NSN Flexi BTS transport sub-module
• FTM is the integrated transmission module of the FlexiBTS • It is mechanically and electrically connected to the System Module of the FlexiBTS
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Flexi System Module + Transport sub-module
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FTPB – PDH (E1,T1, JT1) unit
Interfaces • 8 x E1/T1/JT1 balanced (120/100 Ω) Connector type • 1 x RJ48 per IF Basic functionality • 2 ports activated Licensed features • Activation of additional port pairs, requires a “2 E1/T1 Port License” per port pair • IMA
For internal use
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FTEB – PDH (E1) unit
Interfaces • 8 x E1 unbalanced (75 Ω) Connector type • 2 x SMB per IF Basic functionality • 2 ports activated Licensed features • Activation of additional ports, granularity: 2 ports • IMA
For internal use
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FTFA – Flexbus unit Interfaces • 2 x Flexbus Flexbus capacity selectable by SW to • 2 x 2 Mbit/s • 4 x 2 Mbit/s • 8 x 2 Mbit/s • 16 x 2 Mbit/s Connector type • 1 x TNC per IF Accessed through NSN FlexiHub Manager Basic functionality • 1 Flexbus activated Licensed features • Activation of the second Flexbus • IMA For internal use
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FTFA applications The Flexbus interface is used to:
• operate NSN FlexiHopper (Plus) • or to connect to another Indoor Unit like: • FTFA/B • FIFA • FIU19(E) • FXC RRI • IFUE
• operate NSN MetroHopper
For internal use
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FlexiPacket FirstMile 200i (FPFM200i)
For internal use
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FlexiPacket FirstMile 200i (FPFM200i), cont. FPFM200i is a Nokia Siemens Networks FlexiPacket Microwave Radio indoor unit that is designed to fit the transport slot of Flexi Multiradio 10 Base Station System Module. The mechanical integration includes powering of the FPFM200i. The FPFM200i provides support in the Ethernet uplink and downlink traffic. It provides advanced Ethernet processing features, as well as maximum flexibility to support TDM traffic via circuit emulation. The FPFM200i can be connected to outdoor units via a single Ethernet cable, using a copper Ethernet port with power feeding support. Alternatively, two cables can be used, in which case one of them is a separate power supply cable. The FPFM200i can be configured, monitored, and administered by a web-based Local Craft Terminal (WebLCT) or Nokia Siemens Networks NetViewer management tool. That can be done locally or remotely, via Data Communication Network (DCN). For more information, see FlexiPacket FirstMile 200 documentation. The FPFM200i supports the following interfaces: five electrical Ethernet Ports 10/100/1000Base-TX full duplex 10/100/1000Base-TX auto-negotiation MDIX (10/100Base-TX) 5 x RJ45 connector (EIF1 ~ EIF5) 2 x P+E ports (EIF4 / EIF5) four PDH ports on two RJ48C connectors - one RJ48C supports two E1/T1 ports (IF1/3 & IF2/4) one LMP port on RJ45 connector, 10/100/1000Base-T
For internal use
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FlexiPacket Radio
The FlexiPacket Radio Ethernet performance can be measured in WCDMA BTS Site Manager and Nokia Siemens Networks FlexiPacket Microwave Local Craft Terminal. For the detailed information, please refer to performance management in WCDMA RAN and LCT Operating Documentation respectively. For internal use
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FTFB interfaces
Flexbus 3 Eth 1 & 2 • Connect to FlexiPacket microwave radio. radio • Connect to an existing (Gbit) Ethernet infrastructure
• No power supply • Connect to other BTS‘s Flexbus interface like: • FTFA/FTFB • FIFA • FIU19(E) • FXC RRI • IFUE
Flexbus 1 & 2 • Operate FlexiHopper (Plus) • Operate MetroHopper • Connect to other BTS‘s Flexbus interface like: • FTFA/FTFB • • FIFA FTFA/FTF B • FIU19(E) • FIU19(E) • FXC RRI • IFUE • FXC RRI
For internal use
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FTFB interfaces, cont. FTFB can be operated in various modes: The FlexiHopper radio link can be fully dedicated to either PDH or Ethernet. It can also be operated in Hybrid mode so that one part of the capacity is used for PDH and the other for Ethernet. Total capacity offered by FlexiHopper radio is 32 Mbps. The capacity can be assigned to the different traffic types in steps of 2 Mbps. In case of chaining or co-location, the PDH traffic can be cross-connected at 2 Mbps level towards the other Flexbus interfaces. In case of Ethernet traffic, aggregation takes place by Ethernet switching. The 2 GbE ports can be used to create FlexiPacket Radio chains or offload Ethernet to any other Ethernet media. FlexiPacket radio offers up to 350 Mbps Ethernet throughput. FTFB supports various microwave radio topologies: FlexiHopper tail sites FlexiHopper chain sites Chain sites with FlexiHopper southbound and FlexiPacket Radio northbound FlexiPacket Radio chain sites and the evolution from one to the other.
With the 3rd Flexbus interface, all tail & chain site applications above can also be implemented in case of co-location with any installed Flexbus-enabled NSN BTS.
For internal use
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FTJA – PDH / Ethernet Interfaces
• 4 x E1 unbalanced (75 Ω) • 2 x 10/100 Mbit Ethernet • 1 optional Gbit Ethernet interface SFP (Small Formfactor Pluggable) Connector types • E1: 2 x SMB per IF • Ethernet: RJ45 Basic functionality • 2 x E1 ports activated
• Basic Ethernet Switching Licensed features • Activation of E1/T1/JT1 ports 3 & 4
SFP slot
• IMA For internal use
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FTIA / FTIB – PDH / Ethernet Interfaces • 4 x E1/T1/JT1 balanced (120/100 Ω) • 2 x 10/100 Mbit Ethernet (2 x Gbit FTIB only) • 1 optional Gbit Ethernet interface SFP (Small Formfactor Pluggable) Connector types • E1: 1 x RJ48 per IF • Ethernet: RJ45 Basic functionality • 2 x E1/T1/JT1 ports activated • Basic Ethernet Switching Licensed features • Activation of E1/T1/JT1 ports 3 & 4 • IMA • Timing over packet (FTIB only) • Synchronous Ethernet (FTIB only) • CESoPSN (FTIB only)
SFP slot
For internal use
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FTLB – PDH / Ethernet
I-HSPA – functions as integrated I-HSPA Adapter with I-HSPA ADA3.0 SW LTE – ready for LTE via software upgrade Interfaces • 2 x electrical Gigabit Ethernet, RJ45 (10/100/1000Base-T) • 1 x optical Gigabit Ethernet, via optional SFP (e.g. for 1000Base-SX/LX) • 4 x E1/T1/JT1 symmetrical, RJ48 (coaxial E1 supported via baluns) Connector types • E1: 1 x RJ48 per IF • Ethernet: RJ45 Basic functionality • 2 x E1/T1/JT1 ports activated • Basic Ethernet Switching Licensed features • Activation of E1/T1/JT1 ports 3 & 4 • IMA • Timing over packet • Synchronous Ethernet • CESoPSN SFP slot For internal use
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FTOA – Optical SDH
Interfaces • 1 x STM-1 / OC3 Capacity limited • 72448 cps up to RAS06 • 144896 cps from RU10 Connector type • 2 x LC IF
SFP slot
For internal use
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FTHA – High-density E1/T1 Interfaces • 16 x E1/T1 balanced Connector types • 2 x MDR68 connectors Application • This high-density E1/T1 unit is intended for operators that are not using costly leased lines and therefore need to backhaul the high HSPA throughputs via a large number of E1 interfaces Basic functionality • 2 x E1/T1/JT1 ports activated Licensed features
• Activation of additional E1/T1 interfaces • IMA For internal use
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Support for unbalanced 75 Ω connections is provided via a configuration change and commercially available patch panels with coax connectors of the operator's choice. FTHA protects investments in legacy MWR equipment, PWE3 equipment and SDH ADMs, all offering 16 or more E1/T1 interfaces. Operators, of this camp, are still able to offer high-speed HSPA services. ©2013 Nokia Solutions and Networks. All rights reserved.
Transport Sub-modules Module name
Interfaces
Availability
Remarks
FTPB
8 x E1/T1/JT1
RAS05.1
120/100/110 Ω, RJ48c
FTEB
8 x E1 coaxial
RAS05.1
75 Ω, SMB
FTOA
1 x STM1/OC3
RAS05.1 ED
1 x SFP, LC equipped
FTJA
4 x E1 coaxial 2 x Fast Ethernet, 1 x GE
RAS06
Optional Gigabit Ethernet interface (SFP) SMB, RJ45, SFP (LC)
FTIA
4 x E1/T1/JT1 2 x Fast Ethernet, 1 x GE
RAS05.1, Ethernet supported in RAS06
Optional Gigabit Ethernet interface (SFP) RJ48C, RJ45, SFP (LC)
2 x electrical Gigabit Ethernet 1 x optical Gigabit Ethernet 4 x E1/T1/JT1
RU10
Upgrade to FTIA Supports Timing over Packet & Synchronous Ethernet
2 x electrical Gigabit Ethernet 1 x optical Gigabit Ethernet 4 x E1/T1/JT1
RU20
Optional Gigabit Ethernet interface (SFP) RJ48C, RJ45, SFP (LC) Supports Synchronous Ethernet
FTIB
FTLB
FTHA
16 x E1/T1
RU10
2 x MDR68 connectors
FTFA
2 x Flexbus
RAS05.1
TNC
FTFB
2 x Flexbus powered 1 x Flexbus un-powered 2 x Gigabit Ethernet
RU20
3 x TNC 2 x RJ45
For internal use
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RF Module
Optional Front and Back covers
For internal use
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RF Module, cont. The RF Module is a stand-alone fully operational transceiver module with integrated antenna filters. The RF Module (Triple PA) is able to support up to three sectors in a Flexi WCDMA base station. Radio-related signal processing is performed in the RF Module. It hosts the RF functionality, and also provides power supply and control for MHAs as well as for antenna RealTilt. The RF Module has integrated fans and Bias-Ts. The RF Module can support one to three sectors with the following integrated components: •
Transceivers with TX for two adjacent carriers (three transceivers in the Triple RF module, two in the Dual and one in the Single RF Module)
• •
Transceivers with RX for two adjacent carriers with diversity (three transceivers in the Triple RF Module, two in the Dual and one in the Single RF Module)
•
Linear power amplifiers (three in the Triple RF Module, two in the Dual and one in the Single RF Module)
•
RF filters with main and diversity branch (three in the Triple RF Module, two in the Dual and one in the Single RF Module)
•
-48 VDC input power supply
•
Masthead amplifier and 3GPP Antenna Tilt power feed and control for up to three sectors
•
Interface to the System Module
•
Interface for chaining System Modules (Triple RF Module only)
•
Integrated fan assembly (two fans)
•
Full operational bandwidth support
•
Antenna connector interfaces
•
Readiness for AISG2.0
For internal use
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Dual RF Module exploded view • Four dual-carrier receivers • Two-way uplink diversity for each receiver • Support for multiple configurations
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Dual RF Module exploded view, cont. The Dual RF Module has two dual-carrier transmitters, and four dual-carrier receivers that support two dual-carrier branches with 2-way uplink diversity. It can support multiple configurations. The Single RF Module is a half-capacity version of the Dual RF Module. It has one TX output that supports a maximum of two TX carriers (two carriers per TX chain). There is only one RX input connector as well. The main and diversity branches include Bias-Ts with lightning strike protectors (Single and Dual RF Module). The main branch Bias-T is used for Flexi Antenna Line and MHA support. The diversity branch Bias-T is only used for MHA support. The operating voltages fed via main antenna line are 0 VDC/ +12 VDC/ +28.5 VDC and via diversity antenna line 0 VDC/ +12 VDC.
The main branch also includes an Antenna Line VSWR Monitor (power meter for forward and reflected voltage ratio measuring). The VSWR monitoring system is used for producing alarms for the antenna line condition based on the alarm thresholds (Single and Dual RF Module). As a default setting, the minor alarm will be generated when the VSWR is 1.9 and the major alarm (cell down) will be generated when the VSWR is 2.6. However, it is possible to adjust both minor and major alarm thresholds within the range 1.5 – 3.5. The antenna line does not provide any alarms without a valid license (Line Supervision RAN907LK). For internal use
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Dual RF Module interfaces
Front panel connector Power supply Grounding Operational state visual indication Antenna connector 1 Antenna connector 2 Optical interface
Connector type Screw terminal Screw terminal 2 x tri-colour LED 7/16 type, female 7/16 type, female Duplex LC connector
Purpose Power delivery Grounding Operational state and fan status indication RF signal interface to antenna RF signal interface to antenna Control interface to the System Module
For internal use
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Dual RF Module functional block
ANT1 ANT2 ANT4 ANT3
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RF Module delivery content • • • • •
RF Module sales item includes following 5 components to connect it to System Module RF Module (including casing and fan subassembly) 2.0 meter long IP55 protected outdoor cable for 48 V DC 2.0 meter long IP55 protected outdoor multimode optical system cable • 4 Gbps OBSAI optical RP3-01 • UL & DL in the same cable pair Two pluggable SFP optical transceivers, one to System and other one to RF Module 4.) SFP optical transceiver (2pcs) (SFP=Small Form factor Pluggable)
2.)
1.)
DC cable, 2m Optical cable, 2m
3.)
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Triple RF Module exploded view • Three independent transceivers with 1 PA • • • •
and 2 WCDMA carriers each New Multimode Modules with 3…4 WCDMA carriers per MCPA (Multi Carrier Power Amplifier) One transmitter chain and 2 independent uplink chains per transceiver Three duplex filter blocks Six antenna connectors
For internal use
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Triple RF Module interfaces (Multiradio versions)
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Multiradio Triple RF Module functional block ANT 1 2 4 3
6 5
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Flexi 3-Sector RF Module 850 15Mhz BW (FXCA) SW Definable Radio for GSM, WCDMA and LTE Operation
• Industry leading Integration level – 3x70W power amplifiers – 3x60W at the antenna connector • WCDMA configurations up to 3+3+3 • HW supports chaining of the radios • Concurrent operation btw. GSM, WCDMA and LTE defined by SW – LTE and GSM support: please refer to LTE and GSM/EDGE roadmaps Sector 3 Div Rx Tx60W/Rx
Rx Out
Sector 2 Div Rx Tx60W/Rx
Rx Out
Sector 1 Div Rx Tx60W/Rx
• • • • •
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Rx Out
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Flexi 3-Sector RF Module 900 20Mhz BW (FXDA) SW Definable Radio for GSM, WCDMA and LTE Operation
• Industry leading Integration level – 3x70W power amplifiers – 3x60W at the antenna connector • WCDMA configurations up to 4+4+4 • HW supports chaining of the radios • Concurrent operation btw. GSM, WCDMA and LTE defined by SW – LTE and GSM support: please refer to LTE and GSM/EDGE roadmaps Sector 3 Div Rx Tx60W/Rx
Rx Out
Sector 2 Div Rx Tx60W/Rx
Rx Out
Sector 1 Div Rx Tx60W/Rx
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Rx Out
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Flexi 3-Sector RF Module 1500 10Mhz BW (FRKA) SW Definable Radio for WCDMA and LTE Operation
• Industry leading Integration level
Flexi
– 3x70W power amplifiers – 3x60W at the antenna connector • WCDMA configurations up to 2+2+2 • HW supports chaining of the radios • Concurrent operation btw. WCDMA and LTE defined by SW – LTE support: please refer to LTE roadmap Sector 3 Div Rx Tx60W/Rx
Sector 2 Div Rx Tx60W/Rx
Sector 1 Div Rx Tx60W/Rx
RU20
• • • • •
25 liters 25 kg 3 height units IP65 -35 to +55 °C
For internal use
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Flexi 3-Sector RF Module 1.7/2.1 20Mhz BW (FRIE) SW Definable Radio for WCDMA and LTE Operation
• Industry leading Integration level
Flexi
– 3x70W power amplifiers – 3x60W at the antenna connector • WCDMA configurations up to 4+4+4 • HW supports chaining of the radios • Concurrent operation btw. WCDMA and LTE defined by SW – LTE support: please refer to LTE roadmap Sector 3 Div Rx Tx60W/Rx
Rx Out
Sector 2 Div Rx Tx60W/Rx
Rx Out
Sector 1 Div Rx Tx60W/Rx
RU20
• • • • •
25 liters 25 kg 3 height units IP65 -35 to +55 °C
Rx Out
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Flexi 3-Sector RF Module 2100 20Mhz BW (FRGP) SW Definable Radio for WCDMA and LTE Operation
• Industry leading Integration level
Flexi
– 3x70W power amplifiers – 3x60W at the antenna connector • WCDMA configurations up to 4+4+4 • HW supports chaining of the radios • Concurrent operation btw. WCDMA and LTE defined by SW – LTE support: please refer to LTE roadmap Sector 3 Div Rx Tx60W/Rx
Rx Out
Sector 2 Div Rx Tx60W/Rx
Rx Out
Sector 1 Div Rx Tx60W/Rx
RU20
• • • • •
25 liters 25 kg 3 height units IP65 -35 to +55 °C
Rx Out
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Flexi 3-Sector RF Module 1900 20Mhz BW (FXFA) SW Definable Radio for GSM, WCDMA and LTE Operation
• Industry leading Integration level – 3x70W power amplifiers – 3x60W at the antenna connector • WCDMA configurations up to 4+4+4 • HW supports chaining of the radios • Concurrent operation btw. GSM, WCDMA and LTE defined by SW – LTE and GSM support: please refer to LTE and GSM/EDGE roadmaps Sector 3 Div Rx Tx60W/Rx
Rx Out
Sector 2 Div Rx Tx60W/Rx
Rx Out
Sector 1 Div Rx Tx60W/Rx
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Rx Out
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Flexi
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Flexi Multiradio BTS - Remote RF Heads BTS Site level functionality - O&M - Timing/synch - Transport
Baseband processing
Radio processing
Flexi RRH • 40+40 W • MIMO support • HW supports GSM, WCDMA and LTE operation at relevant frequency bands • Single-band, Multi-carrier operation • HW supports following SW operating modes • Dedicated SW modes: GSM, WCDMA, LTE • GSM-WCDMA concurrent mode • WCDMA-LTE concurrent mode • GSM-LTE concurrent mode • GSM-WCDMA-LTE concurrent mode
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Remote Radio Head
There are three versions of the Remote Radio Head module: • RRH 2100 60W FRGG (RU10) • RRH 2100 2x40W FRGQ (RU20) • RRH 900 2x40W FHDA (RU30) There are also two older versions of RRH: FRGE & FRGN – RRH 2100 40W (RAS06) # TX/RX connectors # RX connectors # carriers
FRGG
FRGQ/FHDA
1
2
1
0
2 (3 HW prepared)
4
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Remote Radio Head, cont. The Remote Radio Head hosts the RF functionality and provides control and power supply to the Flexi Antenna Line. The RRH has one TX output that supports a maximum of two TX carriers (two carriers per TX chain), as well as one RX input connector. The Remote Radio Head (RRH) has the following properties: Optional external AC/DC converter module DC power supply for 48 VDC Integrated Over Voltage Protection (OVP) External alarms. The functionality of the RRH is similar to the functionality of the Single RF Module, with the exception that the RRH does not have any fans or Bias-Ts, and does not support MHAs. The RRH supports the VSWR monitoring system and is AISG2.0 compatible.
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Remote Radio Head interfaces (FRGG)
+
-
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Remote Radio Head connectors (FRGG)
Connector
Connector type
Purpose
Power supply
ITT Cannon 2 pin + screw terminal
Power delivery
Grounding
M8, 2 x M5
Grounding
Operational state visual indication
2 x LED
Operational state indication (Status: 3-colour LED, RF on: 2-colour LED)
Antenna connector 1
7/16 type, female
RF signal interface to antenna(s)
Antenna connector 2
7/16 type, female
RF signal interface to antenna(s)
Optical interface
Multi-mode (200 m w OBSAI) or single-mode (up to 40 km) fiber interface
Control interface to the System Module
EAC connector
Amphenol C 091 D series (14 pin)
External alarm
RET
Amphenol C 091 D series (8 pin)
Remote electrical tilt
LMT
RJ-45 (LAN)
Local maintenance
For internal use
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Remote Radio Head FRGG block diagram
Ant 1
Ant 2
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Remote Radio Head interfaces (FRGQ)
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Remote Radio Head Block Diagram (FRGQ)
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Flexi RRH 2TX 900 (FHDA)
Flexi RU30
SW Definable Radio for GSM, WCDMA and LTE Operation
• 2x40W at the antenna connector • Optimized for single sector deployment and MIMO • Convectional cooling • Up to 4 WCDMA carriers per sector • Concurrent operation btw. GSM, WCDMA and LTE defined by SW – LTE and GSM support: please refer to LTE and GSM/EDGE roadmaps
• 18 kg • 31 liters • IP65 • -35 to +55 °C *) dimensions without solar shield For internal use
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RF Module Versions Remarks
Flexi HW release
Dual 50 W 1700/2100
Module
1
FRIB
Single 50 W 1700/2100
Module
1
FRGC
Dual 50 W 2100
Module
1
FRGD
Single 50 W 2100
Module
1
FRGJ
Dual 50 W 2100
Module
1
FRGK
Single 50 W 2100
Module
1
FRGL
Dual 50 W 2100
Module
1
FRGM
Single 50 W 2100
Module
1
FRCA
Dual 50 W 850
Module
1
FRCB
Single 50 W 850
Module
1
FRDA
Dual 50 W 900
Module
1
FRDB
Single 50 W 900
Module
1
FRFA
Dual 50 W 1900
Module
1
FRFB
Single 50 W 1900
Module
1
Version
Description
FRIA
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RF Module Versions (cont.) Remarks
Flexi HW release
3-sector 70 W 2100
Module 10 MHz (RU10)
2
FRGP
3-sector 70 W 2100
Multiradio Module 20 MHz (RU20)
2.2
FXFA/B
3-sector 70 W 1900
Multiradio Module 20 MHz (RU20)
2.2
FRKA
3-sector 70 W 1500
Multiradio Module 10 MHz (RU20)
2.1
FRIE
3-sector 70 W 1700/2100
Multiradio Module 20 MHz (RU20)
2.2
FXCA
3-sector 70 W 850
Multiradio Module 15 MHz NEW in RU30
2.2
FXDA
3-sector 70 W 900
Multiradio Module 20 MHz NEW in RU30
2.2
FXEA
3-sector 70 W 1800
Multiradio Module 20 MHz NEW in RU30
2.2
FXFB
3-sector 70 W 1900
Multiradio Module 20 MHz NEW in RU30
2.2
FXCB
3-sector 90 W 850
Multiradio Mobule 25 MHz New in RU40
2.2
FXDB
3-sector 90 W 900
Multiradio Mobule 35 MHz New in RU40
2.2
FXEB
3-sector 90 W 1800
Multiradio Mobule 35 MHz New in RU40
2.2
FXFC
3-sector 90 W 1900
Multiradio Mobule 25 MHz New in RU40
2.2
Version
Description
FRGF
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Remote Radio Head Versions
Remarks
Flexi HW release
1TX 70 W 2100
1 TX (2 carriers), 2 RX (RU10)
2
FRGQ
2TX 2x40 W 2100
2 TX (4 carriers), 2 RX (RU20)
2.x
FHDA
2TX 2x40 W 900
2 TX (4 carriers), 2 RX NEW in RU30
2.x
FHEA
2Tx 2x40W 1800
2TX (4 carriers), 2 RX New in RU40
2.x
FHDB
2TX 2x60 W 900
2TX (4 carriers), 2 RX New in RU40
2.x
FHEB
2TX 2x60 W 1800
2TX (4 carriers), 2 RX New in RU40
2.x
Version
Description
FRGG
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Flexi Multiradio Antenna System
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Flexi Multiradio Antenna System, cont. The Flexi Multiradio Antenna System is the next step in the evolution of radio networks, providing higher capacity and coverage while reducing site costs. The Nokia Siemens Networks Multiradio Antenna System enhances mobile network performance by integrating the base station’s radio frequency elements into the antenna. Flexi Multiradio Antenna System provides an alternative to Flexi RF Modules and RRHs, or can be used in combination with traditional Flexi RF units. The Flexi Multiradio Antenna System is a complete radio unit with integrated antenna arrays, transceivers, power amplifiers, and filter modules, including the integrated Common Module (CM) for processing the Active Antenna System (AAS) specific functions. The integrated antenna array supports active and passive combinations.
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Functional Architecture of AAS
Version
Descriptio n
Active Frequency Band
Passive Frequency Band
Flexi HW release
FAGF
2TX 2x40W
2100
1800
2
FAGP
2TX 2x40 W
2100
900
2.x
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Functional Architecture of AAS, cont. An Active Antenna module is a stand-alone, fully operational multi-transceiver antenna module. It provides full radio functionality including transmitter, receiver, and antenna parts as, well as related digital signal processing functions. The active antenna module consists of the following sub-modules: •
Common sub-module (CM)
•
Active Element (AE) sub-modules (4 pcs)
•
Antenna sub-module
•
Electro-mechanics.
Common sub-module The Common sub-module (CM) is an integrated part of an Active Antenna; it interconnects active elements of an active antenna to the Flexi Multiradio System Module or to another active antenna or Radio Remote Head (RRH) in the same chain. The CM is mainly responsible for the following functions: •
O&M tasks for the Active Antenna
•
distributing of power supply
•
downloading and storing software (SW)
•
generating and distributing of a clock (over RP3-01)
•
Beamforming
•
measuring power of radiation pattern (beams)
•
terminating external interfaces (optical RP3-01, LED control, EAC)
•
providing four internal RP3-01 interfaces towards active elements (used for internal communication between CM and AEs).
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Functional Architecture of AAS, cont. Active Element sub-module The Active Element sub-module performs the following tasks: •
RP3-01 interface processing
•
Air interface timing; phase and amplitude control
•
RF processing
•
RF BB processing
•
Performing the analog-digital and digital-analog conversions
•
Providing RF interfaces for two cross-polarized antennas
Antenna sub-module The Antenna sub-module is responsible for the following tasks: •
Provides a highly efficient, cross-polarized, single or combined antenna radiator structure with the desired horizontal and vertical pattern beam width
•
Provides cross-polarized RF inputs for the passive band antenna array
•
Provides an integrated RET functionality and RET interfaces for the passive antenna array.
Electro-mechanics The Electro-mechanic parts are an enclosure for the electrical sub-modules meeting the environmental requirements. It is responsible for the following functions: •
Provides electrical and mechanical interfaces
•
Cools the modules
•
Meets an IP65 classification standard For internal use
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AAS Interfaces AISG/ RET Connectors
Passive Antenna Ports
LED Indicator s
DC Input
EA C
RP3-01 Optical connectors
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AAS Interfaces, cont. AAS has the following interfaces: •
Open Base Station Architecture Initiative (OBSAI) interface to active array
•
Two SFP Connectors, second port is HW prepared for chaining
•
RP3-01, Bit Rate 3.072 Gbit/s and 6.144 Gbit/s support
•
Management interfaces
•
External Alarm Connection (EAC)
•
DC Interfaces to active array
•
DC Input Voltage
•
Reverse Polarity Protection
•
Remote Electrical Tilt (RET / AISG)
•
Two passive antenna ports
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WCDMA Flexi BTS variants (FRGJ/K) support Siemens TMAs and RET Antennas • WCDMA Flexi BTS variants (FRGJ/K) can be used in installation cases with Siemens TMAs and Antennas (Andrew, Kathrein and Powerwave ) – FRGJ/K HW supports high gain TMA (24 dB), alarm handling by Motorola interface and AISG1.1/2.0 – – – – –
AISG = Antenna Interface Standards Group. 3GppAL interface is defined based on AISG interface.
TMA (24dB)
FRGJ/K SW support available FRGJ: Dual RF module, FRGK: Single RF module. Both 2.1 GHz FRGJ/K HW supports Siemens TMA’s with RET that require AISG1.1
Note: All Siemens antenna system products are supported by the Rel.2 Radio Modules as well.
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0º tilt 14º tilt
“A type” sector/ antenna configuration
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Dual PA RF Module signal path: “A type” configuration feedback TX 1 TX 2 RF - DE
Sector 1 PA
RX 1 M
ANT 1
RX 2 M RX 1 D RX 2 D ANT 2 RX switch
feedback
Sector 2 TX 3 TX 4
PA
RX 3 M
ANT 3
RF - DE RX 4 M RX 3 D RX 4 D
ANT 4 RX switch
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A type” sector/ antenna configuration
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Dual PA RF Module signal path: “A type” configuration feedback TX 1 TX 2 RF - DE
Sector 1 PA
RX 1 M
ANT 1
RX 2 M RX 1 D RX 2 D ANT 2 RX switch
feedback
Sector 2 TX 3 TX 4
PA
RX 3 M
ANT 3
RF - DE RX 4 M RX 3 D RX 4 D
ANT 4 RX switch
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B type” sector/ antenna configuration
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Dual PA RF Module signal path: “B type” configuration feedback TX 1 TX 2 RF - DE
Sector 1 PA
RX 1 M
ANT 1
RX 2 M RX 1 D RX 2 D ANT 2 RX switch
feedback TX 3 TX 4
PA
RX 3 M
ANT 3
RF - DE RX 4 M RX 3 D RX 4 D
ANT 4 RX switch
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A type” COC with 1 Dual and 1 Single PA Module
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Triple PA RF Module signal path: “A type” configuration (only 1 PA branch shown) TX1
PA
TX2 RF loop RX1 M ANT 1
opt. IF RF contr ol
RX2 M RX1 D RX2 D RX switch
ANT 2
ANT 3
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Triple RF Module 3-sector “A type” configuration
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Triple PA RF Module signal path: “C type” configuration (example shows one 2-TRX sector) TX1 PA RF loop
RX1 M
opt. IFs
RF control
ANT 1
RX2 D RX switch
ANT 2
RF Module 1
TX2 PA RF loop
RX2 M opt. IFs
RF control
ANT 1
RX1 D
RX switch
ANT 2
RF Module 2 For internal use
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Triple RF Module 3-sector “C type” configuration
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Appendix
Optional Item Description
For internal use
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Flexi Power Module FPMA Example configuration with: 1 x Flexi Power Module FPMA • 3 Flexi Power AC/DC sub-modules FPAA (230V AC → 48V DC) • 1 Flexi Power Battery FPBA
48V DC output to BTS
+ -
AC input cabling to FPMA AC feed to FPAA (3pcs)
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Flexi Power Module FPRA • • • •
High power alternative to FPMA Up to 3 rectifiers Output power 2 kW per rectifier, 6 kW total DC output power External batteries supported (no internal battery support)
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Flexi Power DC/DC Module (FPDA) • • • •
Converts nominal 24V DC input voltage to 53-55V DC output voltage A maximum of two FPDA modules can be connected in parallel Integrated self-controlled fan Maximum DC output power is 2 kW
For internal use
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FPAB
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Flexi Power AC/DC Module (FPAB)
• Flexi Power AC/DC sub-module 100/240V (FPAB) is a rectifier assembly that converts AC input voltage to DC output voltage (56V DC) • The main application for the FPAB is to operate as an AC/DC converter for the single RF Module of the Flexi WCDMA BTS
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Flexi WCDMA BTS power consumption Flexi WCDMA BTS with FRGC/FRxA & FRGD/FRxB & FSMB & FTEB/FTPB transmission sub-module @ W per carrier 1 carrier omni @ min. 20 W 1+1+1 @ min. 20 W
Estimate of Typical BBU time (23 with typical 50 % load and new batteries
Power consumption [W] 48 VDC input at 23 C Estimate Typical 50 % load
Worst Max 100 % load
92 Ah separate Battery with MIBBU
62 Ah separate Battery with MIBBU
250
300
16 h
11 h
up to 120 minutes (3 FPBA) … up to 40 minutes (1 FBPA)
630
7 h 30 min
5h
up to 59 minutes (3 FPBA) … up to 20 minutes (1 FBPA)
510
FPMA & FPBA with FPAA (Note 1)
1+1+1 @ min 40 W
660
850
5 h 30 min
4h
up to 46 minutes (3 FPBA) … up to 15 minutes (1 FBPA)
2+2+2 @ min. 20 W
660
850
5 h 30 min
4h
up to 46 minutes (3 FPBA) … up to 15 minutes (1 FBPA)
2+2+2 @ min 40 W per carrier
1180
1530
3 h 15 min
2 h 15 min
up to 17 minutes (2 FPAA+ 2 FPBA)
4+4+4 @ min 20 W per carrier
1180
1530
3 h 15 min
2 h 15 min
up to 17 minutes (2 FPAA+ 2 FPBA)
Note 1: • One FPAA can support 1 kW of 48 DC power. • One FPBA can support 1 kW of 48 V DC for about ten minutes at normal operational conditions. • FPBA charging : min 5 W, typical max 55 W , absolute max 110 W (with empty FPBA) For internal use
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Flexi WCDMA BTS operating temperatures & voltages Property
System Module FSM
Two PA RF One PA RF Module FRGA Module FRGB
High ambient air temperature limit
+50 °C
High ambient air temperature limit with sun radiation heat load
+45 °C
Nominal DC voltage Permitted DC operating voltage fluctuation (external supply range) Optional Nominal DC voltage with DC-DC Module Optional Permitted 24 V DC operating voltage fluctuation (external supply range) Nominal AC voltage with optional AC Module
Power Module FPMA
48 V DC 40.5 … 57 V DC
+24 V DC (with Release 2 HW module FPDA) +18 … +32 V DC
(with Release 2 HW module FPDA) 240 V (US 1-phase) 230 V (EU 1-phase) 202 V (Japan delta)
Optional Permitted AC operating voltage and frequency fluctuation (external supply range)
184 … 276 V 45 … 66 Hz 0 … 184 V , 5…20 minutes when using FPBA with FPAA (time depends on AC Voltage input)
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Flexi mounting kit for floor, wall and pole (FMFA)
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Flexi mounting kit for floor, wall and pole (FMFx) FMFA version 470149A.104 has support for total of six pieces of single-hole grounding lug. FMFA version 470149A.105 Six pieces of M5 threaded holes have been add to FMFA version 470149A.105 to support usage of dual-hole grounding lug (shown).
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Flexi External Alarm Box (FSEB)
•
Support for the fire detector
•
IP55 protection
•
Extending the Flexi BTS alarm connector to support up to 24 alarm interfaces
•
12 alarms are supported for Flexi WBTS
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GPS for Flexi BTS: WCDMA and I-HSPA
Flexi BTS RF Modules
Flexi BTS System Module to FSMC/D/E -48VDC
PPS
to FSMB Mediator FSEG
• • • •
Trimble Acutime Gold: GPS antenna with inbuilt receiver Available with Flexi WCDMA BTS and Flexi I-HSPA BTS Power, sync signal and data connection to BTS System Module Rel. 2 System Modules (FSMC/D/E) allow direct connection of the GPS without Mediator For internal use
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GPS Mediator FSEG Flexi System External GPS Mediator (FSEG) is used to provide an IP55 protected space for powering and connecting the GPS module (GPS Antenna Kit FYGA) to the BTS system. FSEG is only used with the FSMB when GPS synchronization is needed. No specific software is needed for running the FSEG. FSEG has the following functionalities: • Transforming operating voltage to FYGA (from -48VDC to +12VDC) • Mediating GPS clock signal from FYGA to the BTS system • Overvoltage protection FSEG can be installed in the following ways: • On a wall (vertical or horizontal position, using existing screw holes) • On a pole using brackets (horizontal or vertical position, using optional Flexi Pole Installation Kit FPIA) • On stack installations using brackets (horizontal or vertical position, using optional Flexi Mounting Auxiliary Brackets FMAA) • On the FCIA or FCOA roof (horizontal position only) • In outdoor applications, the FSEG can be attached to the outdoor cabinet roof (a maximum of one item can be installed next to the FSEG). There are fixing points for the FSEG in the outdoor cabinet. • In indoor applications, the FSEG can be attached to the indoor cabinet roof. In stacked applications, the FSEG is mounted in the proximity of the BTS. • FSEG can be installed either horizontally (cable lead-ins on the side) or vertically (cable lead-ins facing down)
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Flexi Cabinet for Indoor (FCIA) • Made of an aluminium chassis enclosed with aluminium doors and sides
• Does not carry any electrical functionality • No traditional backplanes or electronics. The cable entries are located at the top of the cabinet
• External cables are connected directly to the Flexi modules inside the cabinet The following optional modules can be mounted to the FCIA cabinet:
• Integrated long term battery backup solution (MIBBU)
• Flexi Rectifier Module (FRMx) • EAC connection box (FSEB) • Overvoltage protection box (FSEC) For internal use
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Flexi Cabinet for Outdoor (FCOA) • Made of an aluminium chassis enclosed with aluminium covers • Triangle door-open key • Does not have any electrical functionality • Does not increase Flexi BTS site power consumption The cabinet has the following functions: • Provides the base station and cables protection against external damage and foreign objects • Supports earthquake protection • Houses the Flexi cabinet site support module (FCSA) that provides long-term battery backup and a 4U-high IP55-protected space for Line Terminal Equipment (LTE) • Together with Flexi cabinet air filter (FCFA), it protects the BTS in extremely dirty conditions For internal use
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Air Filter (FCFA)
• The optional air filter (FCFA) can be added in case of extremely dirty environment (for freshair-cooled modules) to provide protection against extremely dirty conditions by overpressurizing the cabinet
• It consists of a filter element, 8 x diagonal fans, a pressure sensor, control logic, and back-wall mechanics
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Site Support Module (FCSA) • Provides long-term battery back-up time for the Flexi WCDMA BTS and a space for installing Line Terminal Equipment (LTE) units
• IP55 protected installation space for the PDU unit, IBBU AC interface box, rectifier units, LTE equipment, control card, heat exchanger, and fans
• Batteries are fixed and cabled using Flexi Mounting Kit for Batteries (FMBA)
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Flexi Mounting Shield (FMSA/B) •
•
Flexi Mounting Shield (FMSA/FMSB) is an outdoor cabinet for a stacked Flexi BTS. Used instead of the plastic front and rear covers, it provides protection against solar load, large insects and slight vandalism Flexi Mounting Kit Floor/Wall/Pole (FMFA) is required for both cabinets
6U FMSA 18U FMSB
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Flexi mounting kit vertical for 2G (FMUA) To enable Flexi BTS Modules to be installed in existing GSM/EDGE UltraSite sites :
• UltraSite EDGE BTS (CRMA) • UltraSite Indoor cabinet (IDCA 101) • UltraSite Outdoor cabinet (ODCA 101)
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Flexi mounting kit horizontal for 2G (FMUB)
To enable Flexi BTS Modules to be installed in existing GSM/EDGE UltraSite sites : • UltraSite Indoor cabinet (IDCA) v.202 or newer • UltraSite Outdoor cabinet (ODCA) v.202 or newer • UltraSite EDGE Outdoor cabinet (ODCF) The mounting kit consists of a rack that can support, for example, one WCDMA System Module, up to three WCDMA RF Modules, and one FPMA or System Extension Module or FPDA, and cables.
• The space requirement for 5 x 3U modules is 15U For internal use
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System Module LEDs (from left to right)
For internal use
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System Module LEDs (from left to right), cont. The System Module has seven tri-color LEDs on the front panel to indicate the operational status of the module and all fault conditions during operation. It is recommended that you read the information on the LED indications carefully. A blinking red LED does not always require removing of the module.
For internal use
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DC output connector and DC input
Power chaining output connectors' pin map and DC input connector pin map.
For internal use
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LMP connector pin map
For internal use
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SFP connector pin map
For internal use
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Broadband extension connector pin map
For internal use
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External Ethernet transport connector pin map
For internal use
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EAC connector pin map
For internal use
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External synchronization input connector pin map
For internal use
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External synchronization input connector pin map, cont. Signal descriptions: • GPS_TIME_IN_H, GSM_FC_IN_H, GPS_TIME_IN_L, GSM_FC_IN_L: serial data from GPS to CPU or GSM Frame Clock input; RS422/485 differential • SingleEndedIn: REF2M_IN REF10M_IN Accepts TTL/CMOS and SINE from -6 to +13 dBm. Input impedance is approximately 75 Ohm, Reduced swing TTL resulting from TTL-Gate plus 75 Ohm source termination is OK, too. • NC: No Connection • GPS_PPS_IN_H, GSM_FN_IN_H, GPS_PPS_IN_L, GSM_FN_IN_L: PPS pulse from GPS or GSM Frame Number input; RS422/485 differential
• GPS_CONTROL_H, GPS_CONTROL_L: Serial data form CPU to GPS; RS422/485 differential. • GPS_PWR, GPS_PWR_RET: GPS power supply: 50 mA at 15 to >35 V GPS_PWR_N might not be isolated from GND but cannot be relied upon to be the same.
For internal use
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External synchronization output connector pin map
For internal use
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External synchronization output connector pin map, cont. Signal descriptions: •
GPS_TIME_OUT_H, GSM_FC_OUT_H, GPS_TIME_OUT_L, GSM_FC_OUT_L:
Copy of the serial data from GPS to CPU. The collocated BTS is only interested in the NMEA contents of this data stream or GSM Frame Clock output; RS422/485 differential or Frame clock out
•
SingleEndedClockOut1: LVTTL. Can have 11 sources: 2.048 MHz (from SingleEndedIn), 10 MHz (from SingleEndedIn), 10 MHz (FPGA internally generated), FCLK_IN 250 Hz, SYNC_WFCLK 30.72 MHz, SYNC_SFCLK 100 Hz, SYNC_SFCLK/2 50 Hz, SYNC_SFCLK/4 25 Hz, SYNC_SFCLK/8 12.5 Hz, SFNO 30.72 MHz pulse per 10 ms, Internal PPS_int 1 Hz
•
PPS_OUT_H, PPS_OUT_L: PPS_OUT RS422/485 differential
•
SingleEndedClockOut2: LVTTL. Can have two sources: 2.048 MHz (from SingleEndedIn), 10 MHz (from SingleEndedIn)
•
DiffClockOut_H or GSM_FN_OUT_H, DiffClockOut_L or GSM_FN_OUT_L: Has 12 potential clock sources: 2.048 MHz (from SingleEndedIn), 10 MHz (from SingleEndedIn), 10 MHz (FPGA internally generated), FCLK_IN 250 Hz, SYNC_WFCLK 30.72 MHz, SYNC_SFCLK 100 Hz, SYNC_SFCLK/2 50 Hz, SYNC_SFCLK/4 25 Hz, SYNC_SFCLK/8 12.5 Hz, SFNO 30.72 MHz pulse per 10 ms, Internal PPS_int 1 Hz, GSM FRAME number
•
HARQ: DSP signal from FSPD
•
TESTCLK_GSM_FN_OUT_H: Single ended copy of pins 10/12
For internal use
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Flexi Multiradio BTS System Module hardware product generations
For internal use
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Flexi Multiradio BTS RF Module hardware product generations 1/4
For internal use
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Flexi Multiradio BTS RF Module hardware product generations 2/4
For internal use
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Flexi Multiradio BTS RF Module hardware product generations 3/4
For internal use
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Flexi Multiradio BTS RF Module hardware product generations 4/4
For internal use
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Abbreviations General policy for abbreviations: 1st letter
F for Flexi
2nd letter A for Antenna Equipment and Same Band Combiner
FACA
Same Band combiner with TX summing for 850
FADA
Same Band combiner with TX summing for 900
FAEA
Same Band combiner with TX summing for 1800
FAFA
Same Band combiner with TX summing for 1900
FCDA
Flexi Cabinet Smoke Detector
FCFA
Flexi Cabinet Air Filter
FCHA
Flexi Cabinet Heater
D for Diplexers
FCIA
Flexi Cabinet for Indoor (Epsilon program design item)
R for Radio Modules
FCOA
Flexi Cabinet for Outdoor
S for System Modules
FCSA
Flexi Cabinet Site Support Module
FDIA
Diplexer for 1.7/2.1/1900
B for Baseband Extension Modules
FLIA
Dual Wide band Mast Head Amplifier
T for Transport Modules, Sub modules and Cables
FMCA
Flexi 3U Mounting Covers front and back
FMCB
Flexi 2U Mounting Covers front and back (Epsilon program design item
FMFA
Flexi Mounting Kit for Floor and wall and pole
FMUA
Flexi Mounting Kit Vertical for 2G
C for Cabinet and Cabinet Accessories
FMUB
Flexi Mounting Kit Horizontal for 2G
L for low noise Mast Head Amplifier
FPAA
Flexi Power AC/DC sub-module 230 V
FPAB
Flexi Power AC/DC sub-module 230V
FPBA
Flexi Power Battery sub-module
FPDA
Flexi Power DC/DC Module 24 V (Epsilon program design item)
FPMA
Flexi Power Module
P for Power Supply Modules and Sub modules M for Mounting Kits
3rd Application or usage or frequency band (RF and Mast Head Amplifiers) 4th for version A is the first one, future B, C... For internal use
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Abbreviations FR__
Flexi RF Module codes A = 400 MHz B = 700 MHz C = 850 MHz D = 900 MHz E = 1800 MHz and 1700MHz F = 1900 MHz G = 2100 MHz H = 2500 MHz I = 1700/2100 MHz
FTEA
Flexi Transport E1 Asymmetric sub-module, version A
FTEB
Transport E1 Asymmetric sub-module
FTFA
Flexi Transport Flexbus sub-module, version A
FTIA
Transport PDH symm. / Ethernet Hybrid sub-module
FTJA
Transport PDH Asymm. / Ethernet Hybrid sub-module
FTOA
Flexi Transport Optical STM-1/OC-3 sub-module, version A
FTPA
Flexi Transport PDH E1/T1/JT1 symmetric sub-module, version A
FTPB
Transport PDH E1/T1/JT1 symm sub-module
WMHC
UltraSite MHA WCDMA 2.1GHz (----? program design
WMPB
Pole Mounting Kit (Jade program design)
WPMB
Wideband Power Unit (Doris program design)
WPMC
Wideband Power Unit (Doris program design)
WPUB
Power Distribution Unit (Doris program design)
WPUC
Power Distribution Unit (Doris program design)
FREA
Flexi RF Module 1.8/1.7 Dual 50 W
FREB
Flexi RF Module 1.8/1.7 Single 50 W
FRIA
Flexi RF Module 1.7/2.1 Dual 50 W
FRIB
Flexi RF Module 1.7/2.1 Single 50 W
FRGC
Flexi RF Module 2100 Dual 50 W
FRGD
Flexi RF Module 2100 Single 50 W
FSKA
Flexi System Extension Kit
FSMA
Flexi System Module 1 FSP
FSMB
Flexi System Module 3 FSP
FTCA
Outdoor Cable RJ48C – TQ-M/0 120ohm 5m Outdoor Cable RJ48C 120 ohm 15m
CScode
Powersafe batt. 48V, 4x12V92F 92Ah/10h
FTCB
FTCC = next possible length
CD code
Powersafe batt. 4x12V62F 48V-62Ah
FTCD
Outdoor Cable SMB-F/0 - BT43-F/0 75ohm 5m
FTCE
Outdoor Cable SMB-F/0 75 ohm 15m FTCF = next possible length
FTCH
OD CableLC SM 1310 15 m FTCG, FTCI = next possible lengths FTCJ,FTCK, FTCL= next possible lengths For internal use
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