ZTE R8882S2600 LTE Remote Radio Unit User Manual

ZTE Corporation LTE Remote Radio Unit

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ZXSDR R8882
Macro Radio Remote Unit
Product Description
Hardware Version: HV2.1
ZTE CORPORATION
No. 55, Hi-tech Road South, ShenZhen, P.R.China
Postcode: 518057
Tel: +86-755-26771900
Fax: +86-755-26770801
URL: http://support.zte.com.cn
E-mail: support@zte.com.cn
LEGAL INFORMATION
Copyright © 2014 ZTE CORPORATION.
The contents of this document are protected by copyright laws and international treaties. Any reproduction or
distribution of this document or any portion of this document, in any form by any means, without the prior written
consent of ZTE CORPORATION is prohibited.
Additionally, the contents of this document are protected by
contractual confidentiality obligations.
All company, brand and product names are trade or service marks, or registered trade or service marks, of ZTE
CORPORATION or of their respective owners.
This document is provided “as is”, and all express, implied, or statutory warranties, representations or conditions
are disclaimed, including without limitation any implied warranty of merchantability, fitness for a particular purpose,
title or non-infringement. ZTE CORPORATION and its licensors shall not be liable for damages resulting from the
use of or reliance on the information contained herein.
ZTE CORPORATION or its licensors may have current or pending intellectual property rights or applications
covering the subject matter of this document. Except as expressly provided in any written license between ZTE
CORPORATION and its licensee, the user of this document shall not acquire any license to the subject matter
herein.
ZTE CORPORATION reserves the right to upgrade or make technical change to this product without further notice.
Users may visit the ZTE technical support website http://support.zte.com.cn to inquire for related information.
The ultimate right to interpret this product resides in ZTE CORPORATION.
Revision History
Serial No.
Publishing Date
Publishing Reason
R1.0
2014–05–15
First Edition
Serial Number: SJ-20111021104623-002
Publishing Date: 2014–05–10 (R1.0)
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Contents
About This Manual ......................................................................................... I
Chapter 1 Product Overview ..................................................................... 1-1
1.1 Position of the ZXSDR R8882 in the Radio Network ............................................. 1-1
1.2 Product Features................................................................................................ 1-1
1.3 Services and Functions ...................................................................................... 1-3
1.4 Product Specifications ........................................................................................ 1-5
1.5 Installation Scenarios ......................................................................................... 1-7
Chapter 2 System Structure ...................................................................... 2-1
2.1 Hardware Subsystem ......................................................................................... 2-1
2.2 Software Subsystem........................................................................................... 2-2
Chapter 3 Operation and Maintenance..................................................... 3-1
3.1 Operation and Maintenance Modes ..................................................................... 3-1
3.2 Operation and Maintenance Functions................................................................. 3-2
Chapter 4 Networking ................................................................................ 4-1
4.1 Networking Description ....................................................................................... 4-1
4.2 Star Networking ................................................................................................. 4-1
4.3 Cascade Networking .......................................................................................... 4-2
4.4 Ring Networking................................................................................................. 4-2
Chapter 5 Technical Specifications .......................................................... 5-1
5.1 Physical Specifications ....................................................................................... 5-1
5.2 Radio Performance ............................................................................................ 5-3
5.3 Interfaces .......................................................................................................... 5-4
Chapter 6 FCC&IC STATEMENT ................................................................ 6-1
Figures............................................................................................................. I
Tables ............................................................................................................ III
Glossary .........................................................................................................V
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About This Manual
Purpose
The ZXSDR R8882 is a multi-mode remote RF unit that supports 2T2R/2T4R FDD. It
supports GSM, UMTS, CDMA, and LTE communications systems and features compact
structure, large capacity, and easy installation.
The ZXSDR R8882 works with a BBU to constitute the distributed SDR BTS, that is,
ZXSDR of ZTE.
This manual provides a general description of the ZXSDR R8882, covering the product
features, services and functions, system architecture, operation and maintenance,
networking, and technical specifications.
Intended Audience
This manual is intended for
Engineering personnel and technicians
Installation engineers
Maintenance engineers
What is in This Manual
This manual contains the following chapters:
Chapter
Summary
Chapter 1, Product
Describes the position of the ZXSDR R8882 in the radio network, product
Overview
features, services and functions, and installation scenarios.
Chapter 2, System
Describes the hardware and software structures of the ZXSDR R8882
Structure
and the functions.
Chapter 3, Operation and
Describes the operation and maintenance modes of the ZXSDR R8882.
Maintenance
Chapter 4, Networking
Describes the networking modes supported by the ZXSDR R8882.
Chapter 5, Technical
Describes the technical specifications of the ZXSDR R8882.
Specifications
Chapter 6, FCC&IC
States that the device complies with Part 15 of the FCC Rules.
STATEMENT
Conventions
ZTE documents employ the following typographical conventions.
Typeface
Meaning
Italics
References to other Manuals and documents.
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Typeface
Meaning
“Quotes”
Links on screens.
Bold
Menus, menu options, function names, input fields, radio button names,
check boxes, drop-down lists, dialog box names, window names.
CAPS
Keys on the keyboard and buttons on screens and company name.
Note: Provides additional information about a certain topic.
Checkpoint: Indicates that a particular step needs to be checked before
proceeding further.
Tip: Indicates a suggestion or hint to make things easier or more
productive for the reader.
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Chapter 1
Product Overview
Table of Contents
Position of the ZXSDR R8882 in the Radio Network...................................................1-1
Product Features........................................................................................................1-1
Services and Functions ..............................................................................................1-3
Product Specifications ................................................................................................1-5
Installation Scenarios .................................................................................................1-7
1.1 Position of the ZXSDR R8882 in the Radio Network
The ZXSDR R8882 is the outdoor remote Radio Frequency (RF) unit of the ZTE Base
Transceiver Station (BTS). The ZXSDR R8882 and a Base Band Unit (BBU) form a
complete BTS/NodeB/eNodeB, implementing radio transmission in the covered area,
controlling radio channels and realizing the communication with the Base Station
Controller (BSC)/Radio Network Controller (RNC)/Long Term Evolution (LTE).
Figure 1-1 shows the position of the ZXSDR R8882 (RRU) in the radio network.
Figure 1-1 Position of the ZXSDR R8882 in the Radio Network
1.2 Product Features
The ZXSDR R8882 is an outdoor Radio Remote Unit (RRU) with dual transmitters. The
ZXSDR R8882 works with a Baseband Unit (BBU) to provide all logical functions of a BTS.
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ZXSDR R8882 Product Description
Based on the digital intermediate frequency and multi-carrier technologies, the ZXSDR
R8882 is capable of transmitting dual channels of radio signals and receiving four channels
of radio signals. The ZXSDR R8882 can act as an independent remote RF unit for Global
System for Mobile Communication (GSM)/Universal Mobile Telecommunication System
(UMTS)/Code Division Multiple Access (CDMA)/Long Term Evolution(LTE)
The features of the ZXSDR R8882 are as follows:
Multiple radio access modes
The ZXSDR R8882 supports single mode, dual mode, or multi-mode, including GSM,
UMTS, CDMA, and LTE.
Distributed architecture
BBUs and RRUs constitute distributed BTS systems, providing flexible office
deployment.
Smooth evolution
Through software upgrade, the ZXSDR R8882 can be smoothly evolved.
Flexible configuration and networking
à
Because the dual-density multi-carrier technologies are used, when the ZXSDR
R8882 works in GSM mode, it supports 2 x 6 carriers through software
configuration. (A single channel supports 6 carriers.)
à
When the ZXSDR R8882 works in UMTS mode, it supports up to 2 × 4 carriers.
(A single channel supports 4 carriers.)
à
When the ZXSDR R8882 works in CDMA mode, it supports up to 2 × 8 carriers.
(A single channel supports 8 carriers.)
à
When the ZXSDR R8882 works in GSM/UMTS dual mode, the ZXSDR R8882
supports 4 GSM carriers + 1 UMTS carrier or 2 GSM carriers + 2 UMTS carriers
(in each PA).
à
When the ZXSDR R8882 works in GSM/LTE dual mode, the ZXSDR R8882
supports 8 GSM TRXs + LTE 10 MHz (G/L dual-mode 900 MHz)or 8 GSM TRXs
+ LTE 20 MHz(G/L dual-mode 1800 MHz).
à
When the ZXSDR R8882 works in LTE mode, the ZXSDR R8882 supports one
carrier.
à
The baseband-RF interface of ZXSDR R8882 supports star and chain
networking.
Advanced internal structure
Between internal boards and modules, blind interconnection and hard link
interconnection are used.
Energy saving and environment-friendly design
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Energy-saving and environment-friendly due to multi-carrier power amplifiers, and
advanced Doherty and Digital Pre-Distortion (DPD) linear power amplification
technologies.
Easy installation and maintenance
Easy installation and maintenance due to compact size and light weight.
1.3 Services and Functions
Services
The ZXSDR R8882 works with BBUs to provide the following services:
GSM
à
Full Rate (FR) voice service
à
Enhanced Full Rate (EFR) voice service
à
Half Rate (HR) voice service
à
Adaptive Multiple Rate (AMR) voice service
à
9.6 Kbps Circuit Switched (CS) domain data service
à
General Packet Radio Service (GPRS)
UMTS
à
R99 services
à
HSDPA services
à
HSUPA services
à
HSPA+ services
CDMA
à
1X service
à
DO service
à
PTT service
LTE
à
Improved capacity and data transmission speed of mobile network and shortened
service latency, with 100 Mbps peak downlink data transmission rate and 50 Mbps
peak uplink data transmission rate.
à
Optimized data transmission based on IP architecture. As a whole-IP network,
LTE supports both IPV4 and IPV6 and can transmit VoIP services.
à
Scalable bandwidth and flexible spectrum analysis.
Positioning services
à
Cell ID, Cell ID + Round Trip Time (RTT), and Assisted Global Positioning System
(AGPS) positioning
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ZXSDR R8882 Product Description
Multimedia Broadcast/Multicast Service (MBMS) services:
à
Supports broadcast and multicast functions, and supports the Point-To-Point
(PTP) and Point-To-Multipoint (PTM) multicast modes.
à
Supports mobility management.
à
Supports the streaming and background MBMS services.
Basic Functions
Common functions
The ZXSDR R8882 works with BBUs to constitute the distributed BTS system. The
ZXSDR R8882 forwards signals that are received or to be transmitted to the BBU
for further processing. By connecting to the BBU, the ZXSDR R8882 provides the
following functions:
à
Through the antenna, the ZXSDR R8882 provides access to terminals and
provides RF link transmission functions, including RF receiving/transmitting
duplex, low noise amplification of received RF signals, amplification of sent
RF signals, modulation/demodulation, measurement and report, power control,
calibration, and synchronization.
à
Supports mixed-mode networking structure.
à
The ZXSDR R8882 is connected to the BBU through the optical interface. The
optical interface implements the following functions: clock synchronization,
propagation delay measurement and compensation, IQ data transmission,
operation maintenance and configuration.
à
Provides power amplifier control and protection functions, including
over-power-amplification alarms, over-temperature alarms, and Standing Wave
Ratio (SWR) alarms. Supports protection against reverse power connection.
Supports alarm query for operation and maintenance.
à
Through the operation and maintenance interface, provides system management
functions, including configuration management, alarm management, status
check and monitoring.
à
Locally/remotely supports software and hardware versions inquiry, software
upgrade, board resetting, power inquiry, automatic calibration, and RET antenna
adjustment.
GSM mode
When working in GSM mode, the ZXSDR R8882 provides the following functions:
à
Supports GSM frequency bands.
à
Supports GSM Phase I/Phase II/Phase II +.
à
Supports GPRS CS1 to CS4 encoding modes.
à
Supports space diversity, frequency diversity, time diversity, and polarization
diversity.
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Chapter 1 Product Overview
à
The receive end supports the Viterbi decoding algorithm, improving the system
receive sensibility and channel decoding capability.
à
Supports frequency hopping and Discontinuous Transmission (DTX).
à
Supports Timing Advance (TA) calculation and super-distance coverage. The
maximum coverage distance is 120 km.
à
Supports the Co-BCCH technology.
UMTS mode
When working in UMTS mode, the ZXSDR R8882 provides the following functions:
à
Supports UMTS frequency bands.
à
Supports UMTS R99, R4, R5, R6, R7, and R8.
CDMA mode
When working in CDMA mode, the ZXSDR R8882 provides the following functions:
à
Supports CDMA frequency bands.
à
The air interface complies with the IS-2000 Release A series standards and
IS-856-A standard.
à
Provides Received Signal Strength Indicator (RSSI) query.
à
Provides reverse spectrum query.
LTE mode
When working in LTE mode, the ZXSDR R8882 provides the following functions:
à
Supports LTE frequency bands.
à
The air interface complies with related 3GPP standards.
à
Supports QPSK, 16-QAM, and 64-QAM on uplink and downlink.
à
Supports Multiple-Input Multiple-Output (MIMO).
Mixed mode
When working in mixed mode, the ZXSDR R8882 provides the following functions:
à
The air interface complies with the related 3GPP and 3GPP2 standards.
à
Supports the mixed-mode configuration, such as GU, GL, and CL, for
corresponding frequency bands.
1.4 Product Specifications
Table 1-1 shows the specifications of the ZXSDR R8882.
Table 1-1 Product Specifications
Product Specifications
Description
ZXSDR R8882 S9000 (C)
Three optical ports; a maximum of 6 Gbps; GSM single
mode; 900 MHz frequency band; 2 × 60 W
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Product Specifications
Description
ZXSDR R8882 S1800 (C)
Three optical ports; a maximum of 6 Gbps; GSM single
mode, 1800 MHz frequency band; 2 × 60 W
ZXSDR R8882 S9000 (B)
Two optical ports; a maximum of 3 Gbps; GSM single mode,
UMTS single mode, or GSM/UMTS dual mode; 900 MHz
frequency band; 2 × 60 W
ZXSDR R8882 S9000 (B6C)
Two optical ports; a maximum of 3 Gbps; GSM single mode,
900 MHz frequency band; 35MHz bandwidth for duplexer,
2 × 60 W
ZXSDR R8882 S8500 (B6B)
Two optical ports; a maximum of 3 Gbps; CDMA/GSM single
mode, GSM/UMTS dual mode, or CDMA/LTE dual mode;
850 MHz frequency band; 2 × 60 W
Two optical ports; a maximum of 3 Gbps; CDMA/LTE dual
mode; 850 MHz frequency band; 2 × 60 W
ZXSDR R8882 S8000 (B4A)
Two optical ports; a maximum of 3 Gbps; LTE single mode ;
DD frequency band; 2 × 40 W
ZXSDR R8882 S2600 (B4A)
Two optical ports; a maximum of 3 Gbps; LTE single mode ;
2.6 GHz frequency band; 2 × 40 W for 1 carrier, 2 × 30 W for
2 carriers with licence
ZXSDR R8882 S2100 (B)
Two optical ports; a maximum of 3 Gbps; UMTS single mode;
2T4R; 2100 MHz frequency band; 2 × 60 W
Two optical ports; a maximum of 3 Gbps; LTE single mode;
single Carrier; 2100 MHz frequency band; 2 × 60 W
ZXSDR R8882 S1900 (B6B)
Two optical ports; a maximum of 3 Gbps; CDMA/GSM single
mode, GSM/UMTS dual mode, or CDMA/LTE dual mode;
1900 MHz frequency band; 2 × 50 W
Two optical ports; a maximum of 3 Gbps; CDMA/LTE dual
mode; 1900 MHz frequency band; 2 × 60 W
ZXSDR R8882 S1800 (B6B)
Two optical ports; a maximum of 3 Gbps; GSM single mode,
or GSM/LTE dual mode; 1800 MHz frequency band; 2 × 60 W
ZXSDR R8882 S1800 (B6C)
Two optical ports; a maximum of 3 Gbps; 2T2R, GSM single
mode; 1800 MHz frequency band; 2 × 60 W
ZXSDR R8882 S1700 (B6A)
Two optical ports; a maximum of 3 Gbps; LTE single mode;
1700 MHz frequency band; 2 × 60 W
ZXSDR R8882 S8100 (B6B)
Two optical ports; a maximum of 3 Gbps; LTE single mode;
810 MHz frequency band; 2 × 60 W
ZXSDR R8882 S7200 (B6A)
Two optical ports; a maximum of 3 Gbps; LTE single mode;
2T2R; 720 MHz frequency band; 2 × 60 W
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1.5 Installation Scenarios
The ZXSDR R8882 supports the following installation modes:
pole-mounting, and L-shape gantry-mounting.
wall-mounting,
Wall-mounting
The ZXSDR R8882 can be wall-mounted indoor or outdoor.
Pole-mounting
In pole-mounting installation, you can install one, two, three, or four ZXSDR R8882
devices on one pole.
L-shape gantry mounting
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Chapter 2
System Structure
Table of Contents
Hardware Subsystem .................................................................................................2-1
Software Subsystem ..................................................................................................2-2
2.1 Hardware Subsystem
Figure 2-1 takes the ZXSDR R8882 with three optical ports for example to show the general
hardware architecture.
Figure 2-1 ZXSDR R8882 Hardware Subsystem
Note:
The OPT3 interface is not available for a ZXSDR R8882 with two optical interfaces.
The ZXSDR R8882 is composed of Multi-mode TRX module (TRM), Power amplification
module (PAD), Duplexer and filter (FLD), and EMC protection module (EPB). The functions
of each module are as follows:
TRM
Processes uplink and downlink RF signals.
Processes optical interface signals.
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Processes clock signals.
Provides LED indication.
Provides external monitoring interfaces.
Supports local or remote monitoring.
PAD
Amplifies downlink radio signals received from the TRM, and outputs the amplified
signals to the FLD.
Amplifies four signals received from the FLD through the LNA, and then sends the
amplified signals to the TRM.
Provides a pre-distortion feedback interface for the TRM.
Provides an interface to the TRM for Voltage Standing Wave Ratio (VSWR) detection
(forward power detection).
Supports separate switch-off.
Supports inner-module temperature detection.
FLD
Transmits and receives uplink and downlink signals in duplex mode.
Suppresses spurious emission on the downlink to get acceptable out-band Tx
spurious emission required by the system and related protocol.
Suppresses interference signals on the uplink to achieve a satisfied noise coefficient.
EPB
Provides lightning protection for -48 V power supply.
Provides -48 V power filter.
Protects AISG signals (AISG power, half-duplex 485 signal).
Performs dry contact protection.
Protects the RS485 monitoring signals.
Provides adaptation for external MON interface, AISG interface, and power interface.
2.2 Software Subsystem
Figure 2-2 shows the software subsystem of the ZXSDR R8882.
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Chapter 2 System Structure
Figure 2-2 Software Architecture
The lower-layer software modules of boards include BSP, DSP, and FPGA.
BSP&OS module: initializes the system hardware, and provides driver interface
functions and operating system.
DSP module: exchanges information with the CPU, exchanges control signals and
data with the FPGA module, implements maintenance and measurement functions
such as extracting and updating pre-distortion parameters, and detecting errors and
alarms.
FPGA module: exchanges control signals and data with the BSP and DSP modules.
The Operation Support Sub-system (OSS) is a support layer for the entire software.
It provides a hardware irrelevant platform on which the system software runs to
provide basic software functions, such as scheduling, timing, memory management,
inter-module communication, queuing controlling, monitoring, alarm management, and
log management.
The OAM provides the functions of version management, fault management, diagnosis
test, configuration management, tool management, performance management, system
management, dynamic data management, and communication management.
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Chapter 3
Operation and Maintenance
Table of Contents
Operation and Maintenance Modes............................................................................3-1
Operation and Maintenance Functions .......................................................................3-2
3.1 Operation and Maintenance Modes
Remote Maintenance Mode
In remote maintenance mode, the NetNumen™ M3 OMC of ZTE is connected to the
BSC/RNC/BBU, and then connected to the ZXSDR R8882 through the Abis/Iub/CPRI
interface. In this way, you can operate and maintain the ZXSDR R8882 through the OMC.
Figure 3-1 shows the networking.
Figure 3-1 Remote Maintenance Mode (Taking CDMA and GSM for Example)
In remote maintenance mode, the OMC and NEs are connected through the TCP/IP
protocol. One OMC can maintain multiple BTSs.
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Local Maintenance Mode
In local maintenance mode, the Local Maintenance Terminal (LMT), usually a PC, is
connected to the ZXSDR R8882 through an Ethernet cable. Figure 3-2 shows the
networking.
Figure 3-2 Local Maintenance Mode
Through the LMT, you can query the power, increase or decrease the power, and perform
calibration on the ZXSDR R8882. Through the LMT, you can maintain the entire BTS.
3.2 Operation and Maintenance Functions
The NetNumen™ M3 OMC provides a topological view on the GUI interface. Through the
GUI interface, users can view the information about all the NEs in the entire network. The
users can select a required NE and view its detailed performance data, alarm information,
and configuration data. They can also operate and maintain one type of NEs through the
topological view. The OMC provides the following functions:
Configuration management
Adds, queries, deletes, modifies physical and radio resource data of BTSs. Performs
data consistency check; and supports dynamic and static data configuration modes.
Security management
Ensures that only authorized users can perform the specified groups of commands.
Performance management
Supports performance analysis, invocation tracing, and signaling tracing.
Version management
Through the OMC, users can query the software and hardware versions that are in
use. The OMC provides the software download mechanism, supporting software
upgrade of NEs.
Fault management
Supports alarm management and diagnosis test. Monitors the BTS operating status in
a centralized manner; Collects abnormal information of boards and links in real time,
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which helps the operation and maintenance personnel to determine the equipment
faults and maintain the equipment.
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Chapter 4
Networking
Table of Contents
Networking Description...............................................................................................4-1
Star Networking..........................................................................................................4-1
Cascade Networking ..................................................................................................4-2
Ring Networking.........................................................................................................4-2
4.1 Networking Description
Table 4-1 shows the networking description of the ZXSDR R8882.
Table 4-1 Networking Description
Network Type
GSM
UMTS
CDMA
LTE
Star Networking
support
support
support
support
Cascade
support(4 grades)
support(4 grades)
support(6 grades)
not support
Networking
4.2 Star Networking
Figure 4-1 shows the star networking of a BBU and multiple RRUs (ZXSDR R8882).
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ZXSDR R8882 Product Description
Figure 4-1 Star Networking
4.3 Cascade Networking
Figure 4-2 shows the cascade networking of a BBU and multiple RRUs (ZXSDR R8882).
Figure 4-2 Cascade Networking
4.4 Ring Networking
Ring networking is only available for CRAN. Figure 4-3 shows the ring networking of a
BBU and multiple RRUs (ZXSDR R8882).
Figure 4-3 Ring Networking
When ZXSDR R8882 provides three optical ports, chain (cascading) networking can be
added to the ring networking, as shown in Figure 4-4.
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Figure 4-4 Ring and Chain Networking (with Three Optical Ports)
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Chapter 5
Technical Specifications
Table of Contents
Physical Specifications ...............................................................................................5-1
Radio Performance ....................................................................................................5-3
Interfaces ...................................................................................................................5-4
5.1 Physical Specifications
Appearance
Item
Specifications
Dimensions
480 mm × 320 mm × 150 mm (Height × Width × Depth)
Weight
23 kg
Color
White
Power Supply Requirements and Power Consumption
Item
Average power consumption in
GSM single mode
Specifications
S44: 310 W(900 MHz) / 320 W(1800 MHz)
S66: 295 W(900 MHz) / 305 W(1800 MHz)
S66: 355 W(850 MHz) / 440 W(1900 MHz)
S1: 140 W
S2: 165 W
S3: 185 W
Average power consumption in
UMTS single mode(900 MHz)
S11: 210 W
S22: 265 W
S33: 310 W
S1 MIMO: 210 W
S2 MIMO: 265 W
S3 MIMO: 315 W
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ZXSDR R8882 Product Description
Item
Specifications
S1: 130 W
S2: 150 W
S3: 180 W
Average power consumption in
UMTS single mode(2100 MHz)
S11: 200 W
S22: 215 W
S33: 265 W
S1 MIMO: 170 W
S2 MIMO: 215 W
S3 MIMO: 270 W
Average power consumption in
CDMA single mode
Average power consumption in
LTE single mode
Rated input voltage
310 W(850 MHz) / 320 W(1900 MHz)
330 W(1800 MHz)
–48 V DC(-57 V DC~-37 V DC)
Environmental Requirements
Item
Specifications
Ambient temperature: -40 ℃ to +55 ℃
Operation
Relative humidity: 10 % to 100 %
Ambient temperature: -40 ℃ to +70 ℃
Storage
Relative humidity: 10 % to 100 %
In condition of 4K2, 4Z5, 4Z7, 4B1, 4C2, 4S3, or 4M3, the trans-
Transportation condition
portation must be completed within 180 days
Reliability
Item
Specifications
Availability
99.999689%
Mean Time Between Critical Failures (MTBF)
Mean Time To Recovery (MTTR)
System service interruption time
≥322,000 hours
1 hour
The service interruption time of the entire system is less than 1.632
minutes per year.
Wind Load
Wind Speed
Front
Side
Rear
150 km/h
422 N
197 N
422 N
240 km/h
1092 N
510 N
1092 N
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Chapter 5 Technical Specifications
5.2 Radio Performance
Capacity Specifications
Item
Specifications
GSM single mode
Maximum: 2 × 6 carriers
UMTS single mode
Maximum: 2 × 4 carriers
CDMA single mode
Maximum: 2 × 8 carriers
LTE single mode
1 carrier
GSM/UMTS dual mode
GSM/LTE dual mode
CDMA/LTE dual mode
2 × 4 GSM carriers + 2 × 1 UMTS carriers, or 2 × 2 GSM carriers + 2
× 2 UMTS carriers
G/L dual-mode 900 MHz: 8 GSM TRXs + LTE 10 MHz
G/L dual-mode 1800 MHz: 8 GSM TRXs + LTE 20 MHz
2 × 4 CDMA carriers + 2 × 1 LTE carriers
RF Specifications
Item
Working frequency band
Specifications
GSM: 850 MHz/900 MHz/1800 MHz/1900 MHz
UMTS: 850 MHz/900 MHz/1900 MHz/2100 MHz
CDMA: 850 MHz/1900 MHz
LTE: 800 MHz/1800 MHz/2600 MHz/1700 MHz/720 MHz
GSM (850 MHz/900 MHz/1800 MHz): 2 × 60 W(GMSK)/2 × 40
W(8PSK)
Transmit power
GSM (1900 MHz): 2 × 60 W(GMSK)/2 × 32 W(8PSK)
UMTS: 2 × 60 W(900 MHz/2100 MHz/850 MHz),2 × 60 W(1900
MHz)
LTE:
1 carrier: 2 × 60 W(S1700)/2 × 60 W(S1800)/2 × 40 W(S8000)/2 ×
40 W(S2600)/2 × 60 W(S7200)
2 carriers: 2 × 60 W(S1700)/2 × 60 W(S1800)/2 × 40 W(S8000)/2
× 30 W(S2600)/2 × 60 W(S7200)
Static receiver sensibility
GSM: -113.5 dBm (850 MHz/900 MHz/1800 MHz)
UMTS single antenna: -125.8 dBm
UMTS dual antennas: -128.5 dBm
CDMA: –115 dBm
LTE single antenna: -106 dBm
LTE dual antenna: -108.6 dBm
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ZXSDR R8882 Product Description
5.3 Interfaces
The ZXSDR R8882 provides the following interfaces:
Item
Specifications
ZXSDR R8882 S9000(C)
Provides three optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
OPT3: the interface through which the ZXSDR R8882 is cascaded
to a branch RRU(for CRAN)
ZXSDR R8882 S1800(C)
Provides three optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
OPT3: the interface through which the ZXSDR R8882 is cascaded
to a branch RRU(for CRAN)
ZXSDR R8882 S9000(B)
Provides two optical ports:
Baseband-RF interface (optical port)
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
ZXSDR R8882 S8500(B)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
ZXSDR R8882 S8000(B)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
ZXSDR R8882 S2600(B4A)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
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Chapter 5 Technical Specifications
Item
Specifications
ZXSDR R8882 S2100(B)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
ZXSDR R8882 S1900(B)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
ZXSDR R8882 S1800(B)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
ZXSDR R8882 S1700(B)
Provides two optical ports:
OPT1: the interface through which the ZXSDR R8882 is cascaded
to a BBU
OPT2: the interface through which the ZXSDR R8882 is cascaded
to an RRU
One MON interface, through which the external monitoring devices are
MON interface
connected, providing input of RS485 signals and two pairs of dry contacts.
Ethernet interface
One Ethernet interface, which is used for local maintenance.
Antenna and feeder inter-
Four antenna and feeder interfaces through which antennas and feeders
face
are connected.
AISG interface
One AISG interface, which is used for the electrical tilt tunable antenna.
Power interface
One power interface, which provides external power input.
Protective Earth (PE) inter-
One PE interface, through which the ZXSDR R8882 is connected to the
face
PE.
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Chapter 6
FCC&IC STATEMENT
This device complies with Part 15 of the FCC Rules. Operation is subject to the following
two conditions:
1. This device may not cause harmful interference.
2. This device must accept any interference received, including interference that may
cause undesired operation.
Note:
This equipment has been tested and found to comply with the limits for a Class A digital
device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide
reasonable protection against harmful interference when the equipment is operated in
a commercial environment. This equipment generates, uses, and can radiate radio
frequency energy and, if not installed and used in accordance with the instruction manual,
may cause harmful interference to radio communications.
Operation of this equipment in a residential area is likely to cause harmful interference in
which case the user will be required to correct the interference at his own expense.
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Figures
Figure 1-1 Position of the ZXSDR R8882 in the Radio Network ................................ 1-1
Figure 2-1 ZXSDR R8882 Hardware Subsystem ...................................................... 2-1
Figure 2-2 Software Architecture............................................................................... 2-3
Figure 3-1 Remote Maintenance Mode (Taking CDMA and GSM for Example) ........... 3-1
Figure 3-2 Local Maintenance Mode ......................................................................... 3-2
Figure 4-1 Star Networking ....................................................................................... 4-2
Figure 4-2 Cascade Networking................................................................................ 4-2
Figure 4-3 Ring Networking ...................................................................................... 4-2
Figure 4-4 Ring and Chain Networking (with Three Optical Ports)............................. 4-3
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Figures
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Tables
Table 1-1 Product Specifications ............................................................................... 1-5
Table 4-1 Networking Description.............................................................................. 4-1
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Tables
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Glossary
AGPS
- Assisted Global Positioning System
- 辅助全球卫星定位系统
AMR
- Adaptive Multiple Rate
- 自适应多速率
BBU
- Baseband Unit
- 基带单元
BSC
- Base Station Controller
- 基站控制器
BSP
- Board Support Package
- 板级支持包
BTS
- Base Transceiver Station
- 基站收发信机
CDMA
- Code Division Multiple Access
- 码分多址
CS
- Circuit Switched
- 电路交换
DO
- Digital Output
- 开关量输出
DPD
- Digital Pre-Distortion
- 数字预失真
DSP
- Digital Signal Processing
- 数字信号处理
DTX
- Discontinuous Transmission
- 不连续发送
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ZXSDR R8882 Product Description
EFR
- Enhanced Full Rate
- 增强型全速率
FDD
- Frequency Division Duplex
- 频分双工
FPGA
- Field Programmable Gate Array
- 现场可编程门阵列
FR
- Full Rate
- 全速率
GPRS
- General Packet Radio Service
- 通用无线分组数据业务
GSM
- Global System for Mobile Communications
- 全球移动通信系统
HR
- Half Rate
- 半速率
HSDPA
- High Speed Downlink Packet Access
- 高速下行分组接入
HSUPA
- High Speed Uplink Packet Access
- 高速上行分组接入
LMT
- Local Maintenance Terminal
- 本地维护终端
LTE
- Long Term Evolution
- 长期演进
MBMS
- Multimedia Broadcast/Multicast Service
- 多媒体广播/组播业务
MIMO
- Multiple-Input Multiple-Output
- 多路输入多路输出
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Glossary
MTBF
- Mean Time Between Failures
- 平均故障间隔时间
MTTR
- Mean Time To Recovery
- 平均恢复时间
OAM
- Operation, Administration and Maintenance
- 操作管理维护
OSS
- Operation Support Subsystem
- 操作支持子系统
PE
- Protective Earth
- 保护地
PTM
- Point To Multipoint
- 点对多点
PTP
- Point-To-Point
- 点对点
PTT
- Push-To-Talk
- 一按即说
RET
- Remote Electrical Tilt
- 远程控制电子下倾角
RF
- Radio Frequency
- 射频
RNC
- Radio Network Controller
- 无线网络控制器
RRU
- Remote Radio Unit
- 远端射频单元
RSSI
- Received Signal Strength Indicator
- 接收信号的强度指示
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ZXSDR R8882 Product Description
RTT
- Round Trip Time
- 往返时间
SDR
- Software Defined Radio
- 软件定义无线电设备
SWR
- Standing Wave Ratio
- 驻波比
TA
- Timing Advance
- 时间提前量
UMTS
- Universal Mobile Telecommunication System
- 通用移动通讯系统
VSWR
- Voltage Standing Wave Ratio
- 电压驻波比
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