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SmartAX MA5622A&MA5623&MA5623AMulti-service Access Module V800R313C00
Product Description
Issue 02
Date 2013-05-25
HUAWEI TECHNOLOGIES CO., LTD.
Issue 02 (2013-05-25) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd. i
Copyright © Huawei Technologies Co., Ltd. 2013. All rights reserved.
No part of this document may be reproduced or transmitted in any form or by any means without prior
written consent of Huawei Technologies Co., Ltd.
Trademarks and Permissions
and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd.
All other trademarks and trade names mentioned in this document are the property of their respective
holders.
Notice
The purchased products, services and features are stipulated by the contract made between Huawei and
the customer. All or part of the products, services and features described in this document may not be
within the purchase scope or the usage scope. Unless otherwise specified in the contract, all statements,
information, and recommendations in this document are provided "AS IS" without warranties, guarantees or
representations of any kind, either express or implied.
The information in this document is subject to change without notice. Every effort has been made in the
preparation of this document to ensure accuracy of the contents, but all statements, information, and
recommendations in this document do not constitute a warranty of any kind, express or implied.
Huawei Technologies Co., Ltd.
Address: Huawei Industrial Base
Bantian, Longgang
Shenzhen 518129
People's Republic of China
Website: http://www.huawei.com
Email: [email protected]
Issue 02 (2013-05-25) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
ii
Related Versions
Product Name Product Version
OLT V800R013
MA5622A/MA5623/MA56
23A
V800R313C00
U2000 V100R009C00
Issue 02 (2013-05-25) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
iii
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Product Description Contents
Issue 02 (2013-05-25) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
iv
Contents
Related Versions ............................................................................................................................. ii
1 Product Introduction .................................................................................................................... 1
1.1 Product Positioning ....................................................................................................................................................... 1
1.2 Application Scenarios ................................................................................................................................................... 1
1.3 Product Features ........................................................................................................................................................... 3
2 Product Hardware ......................................................................................................................... 5
2.1 Hardware Architecture .................................................................................................................................................. 5
2.1.1 Appearance and Ports................................................................................................................................................. 5
2.1.2 Indicators ................................................................................................................................................................. 11
2.1.3 Heat Dissipation ....................................................................................................................................................... 13
3 Product and Functions ................................................................................................................ 14
4 Operation and Maintenance ..................................................................................................... 17
4.1 Management Using the CLI ........................................................................................................................................ 17
4.2 Management Using the U2000 ................................................................................................................................... 17
5 Technical Specifications ............................................................................................................ 19
5.1 Device Parameters ...................................................................................................................................................... 19
5.1.1 Dimensions .............................................................................................................................................................. 19
5.1.2 Weight ...................................................................................................................................................................... 19
5.1.3 Running Environment .............................................................................................................................................. 20
5.1.4 Power Parameters .................................................................................................................................................... 20
5.1.5 Power Consumption ................................................................................................................................................. 21
5.1.6 Device Performance ................................................................................................................................................. 22
5.2 Ports and Standards ..................................................................................................................................................... 22
5.2.1 GPON Port ............................................................................................................................................................... 23
5.2.2 GE Port .................................................................................................................................................................... 24
5.2.3 VDSL2 Port ............................................................................................................................................................. 25
5.2.4 POTS Port ................................................................................................................................................................ 27
5.3 Compliant Standards ................................................................................................................................................... 29
5.3.1 Environment Standards ............................................................................................................................................ 29
5.3.2 Electromagnetic Compatibility Standards................................................................................................................ 30
5.3.3 Security Standards ................................................................................................................................................... 31
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Product Description Contents
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5.3.4 Other International Standards .................................................................................................................................. 32
A Acronyms and Abbreviations .................................................................................................. 34
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Product Description 1 Product Introduction
Issue 02 (2013-05-25) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
1
1 Product Introduction
1.1 Product Positioning
The SmartAX MA5622A/MA5623/MA5623A multi-service access module
(MA5622A/MA5623/MA5623A) is an optical network unit (ONU) launched by Huawei.
The MA5622A/MA5623/MA5623A mainly applies to the fiber to the building (FTTB) and
fiber to the curb (FTTC) scenarios. It can also be used as a mini digital subscriber line access
multiplexer (DSLAM) to provide traditional data, voice and video services.
1.2 Application Scenarios
This topic describes the application scenarios of the MA5622A/MA5623/MA5623A.
Figure 1-1 shows the position of the MA5622A/MA5623/MA5623A on the network and a
typical network.
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Product Description 1 Product Introduction
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Copyright © Huawei Technologies Co., Ltd.
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Figure 1-1 Position of the MA5622A/MA5623/MA5623A on the network
OLTMA5622A&MA5623
&MA5623AFTTB/FTTC
Residential
area
VDSL2
LAN
SwitchResidential
area
VDSL2
Mini DSLAM/MSAN
CO siteRemote siteUserUpper layer
network
Multicast server
VDSL2/POTSResidential
area
Residential
area
VDSL2/POTS
MA5622A&MA5623
&MA5623A
U2000
NGN/IMS
LAN: local area network OLT: optical line terminal
VDSL2: very-high-speed digital
subscriber line 2
Only the MA5622A supports the POTS service.
FTTB or FTTC network: The MA5622A/MA5623/MA5623A can be used in FTTB or
FTTC scenarios to provide data, voice and video services for residential area users.
Applied in the GPON network featuring wide coverage and low maintenance cost, the
MA5622A works with the OLT to provide users with voice services or high-bandwidth
data and video services, and to expand the access capacity of the OLT. The
MA5623/MA5623A works with the OLT to provide users with high-bandwidth data and
video services, and to expand the access capacity of the OLT.
Mini DSLAM network: The MA5622A/MA5623/MA5623A can function as a mini
DSLAM to provide traditional data, voice and video services. One
MA5622A/MA5623/MA5623A or multiple MA5622A/MA5623/MA5623A devices
(cascaded) can form a tree network suiting various service requirements. They can also
form a Multiple Spanning Tree Protocol (MSTP) network to provide a load sharing
function for redundant links and protect services.
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The MA5622A/MA5623/MA5623A supports cascading.
In mini DSLAM scenarios, you are advised to cascade a maximum of three layers of devices to the
MA5622A/MA5623/MA5623A in a tree network. In an MSTP ring network, you are advised to
deploy a maximum of four MA5622A/MA5623/MA5623A devices on the ring.
For more details about the FTTB or FTTC solutions, see the FTTx Solution Overview.
1.3 Product Features
This topic describes the features of the MA5622A/MA5623/MA5623A.
Vectoring Broadband Service Speedup
The MA5622A and MA5623A support the Vectoring technology to increase the
very-high-speed digital subscriber line 2 (VDSL2) line rate.
Only the MA5622A and MA5623A support the Vectoring.
VDSL2 is a mainstream mode for last kilometer access and shows increasing importance in
bandwidth usage. VDSL2 uses high frequency bands and therefore the inter-line crosstalk has
an evident impact on line quality. The bandwidth in multi-pair access scenario is much lower
than the bandwidth in single-pair access scenario. Crosstalk becomes a major factor affecting
the VDSL2 performance.
The Vectoring technology uses Vectoring groups to jointly transmit signals in the downstream
direction and receive signals in the upstream direction of a VDSL2 line. This function of the
MA5622A/MA5623A helps cancel the far-end crosstalk (FEXT) and improve the
performance of a VDSL2 line.
The Vectoring function brings the following values for carriers:
Increasing the bandwidth in multi-pair access scenarios so that the revenue per each
VDSL2 user will grow greatly
Providing higher-bandwidth services over the existing VDSL2 lines
Operable IPTV Service
Supports Internet Group Management Protocol (IGMP) v2 and v3 to provide IPTV, high
definition TV, and video conference services.
IPv6 The MA5622A/MA5623/MA5623A supports Internet Protocol version 6 (IPv6).
Compared with IPv4, IPv6 features simplified packet header format, sufficient IP
addresses, hierarchical IP address structure, flexible extension header, and enhanced
neighbor discovery mechanism.
Supports IPv6 address management and allocation, IPv6 routing, quality of service (QoS)
and security, Layer 2 transparent transmission, and multicast services.
One-Site Deployment and Plug-and-Play Is free of software commissioning on site.
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Supports offline deployment and plug-and-play.
Automatically obtains configuration data from the iManager U2000 network
management system (U2000) and reports its status to the U2000 after going online. The
configuration data automatically takes effect.
Zero Touch Routine Maintenance Supports remote fault location and troubleshooting.
Supports remote acceptance.
Supports remote upgrade and patch installation.
Carrier-Class Reliability Design Complies with carrier-class reliability specifications.
Passes the electrostatic discharge (ESD) test.
Be able to start at a -25°C temperature and to work properly for extended periods of time
at a temperature as low as -40°C.
Be able to work properly at a temperature as high as 65°C (temperature at the air intake
vent of the cabinet) for extended periods of time.
Provides surge protection and anti-interference functions.
Supports user port protection as follows: 4 kV in common mode and in differential mode
Supports power protection as follows:
DC power: 5 kV in common mode and 3 kV in differential mode
AC power: 6 kV/5 kA in common mode and 6 kV/3 kA in differential mode
Uses an anticorrosion design, reduces the wires routed across the surface of the board,
and optimizes the heat design by producing a temperature difference to prevent
condensation.
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Product Description 2 Product Hardware
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2 Product Hardware
2.1 Hardware Architecture
Hardware architecture includes the
2.1.1 Appearance and Ports
The MA5622A/MA5623/MA5623A is a 1 U-high box-shaped device.
The MA5622A provides three configuration models: 8 VDSL2 ports+8 POTS ports, 16
VDSL2 ports+16 POTS ports and 24 VDSL2 ports+24 POTS ports. The appearance of this
three configuration models is the same. Figure 2-1 shows the appearance of the MA5622A.
The MA5623 provides one configuration model: 24 VDSL over POTS ports. Figure 2-2
shows the appearance of the MA5623.
The MA5623A provides two configuration models: 48 VDSL over POTS ports with DC and
AC power supply modes. Figure 2-3 and Figure 2-4 show the appearance of the MA5623A.
Table 2-1 describes the ports on the MA5622A/MA5623/MA5623A.
Figure 2-1 Appearance of the MA5622A
AC power port
Grounding point
Uplink
optical portMaintenance
serial port
Environment
monitoring
parameter port
Battery power portBattery sensor port
Maintenance
network port
VDSL2+ POTS port
Mounting
bracket
Reserved by the system,
it can not be used
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Figure 2-2 Appearance of the MA5623
Figure 2-3 Appearance of an AC-powered MA5623A
Figure 2-4 Appearance of an DC-powered MA5623A
Table 2-1 Ports on an AC-powered MA5622A/MA5623/MA5623A
Port Name Silkscreen
Number of Ports
Function
AC/DC power
port
None 1 Connects to 110 V/220 V AC power or 48 V
DC power.
NOTE
Only the MA5623A supports the DC power port.
Ground point None 1 Connects the device to the ground.
Uplink optical
port None 2 Supports three port types: gigabit-capable
passive optical network (GPON) and gigabit
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Port Name Silkscreen
Number of Ports
Function
Ethernet (GE).
GPON port:
Uses the small form-factor pluggable
(SFP) optical module.
GPON port use single-mode optical
modules and support bidirectional data
transmission over one fiber.
The supported optical fiber connector is
SC/PC (UPC).
GE optical port:
Uses the small form-factor pluggable
(SFP) optical module.
Supports different transmission distances
using various SFP optical modules.
Supports single-mode and multi-mode
optical modules.
The supported optical fiber connector is
LC/PC.
Maintenance
network port
ETH 1 It is a 100M Base-T commissioning network
port and supports 100 Mbit/s full-duplex
autonegotiation.
Maintenance
serial
port/Environmen
t monitoring port
(RS-232 port)
CONSO
LE
1 The MA5622A/MA5623/MA5623A provides
one serial port, which can function as a
maintenance serial port and maintenance
network port at the same time after a
console-Ethernet integrated cable is
connected to it.
During the BIOS loading process, this
serial port can only be used as a
maintenance serial port. In this case, the
first user port on the device can be used as
the maintenance network port.
When the device is running, the functions
of this port are as follows:
It can be used as a maintenance
serial port. In this case, you can
configure a user port on the device
to manage the device locally.
It can function as a maintenance
serial port and maintenance network
port at the same time after a
console-Ethernet integrated cable is
connected to it.
When the serial port mode of the
MA5622A/MA5623/MA5623A is emu,
can be connected to environment
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Product Description 2 Product Hardware
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Port Name Silkscreen
Number of Ports
Function
monitoring unit (EMU) to monitor the
digital parameter. The port can also be
used for the communication between the
device and Fe-lithium batteries.
Battery port
NOTE
Only the
MA5622A and
MA5623A
support this port.
BAT-/B
AT+
1 The port is used to connect the device to
Fe-lithium or lead-acid batteries. The port
uses a design that protects against inverse
cable connector insertion, and the
through-current capacity is 16 A.
NOTE
The DC-powered MA5623A does not support the
battery port.
Battery sensor
port
NOTE
Only the
MA5622A and
MA5623A
support this port.
SENSO
R
1 The port supports external temperature
sensors if the device uses an AC power
source and lead-acid batteries.
The port is used to activate Fe-lithium
batteries if the device uses an AC power
source and Fe-lithium batteries.
NOTE
The DC-powered MA5623A does not support the
battery sensor port.
Environment
monitoring port
ALAR
M 1 Supports four digital sensors: door status,
surge protection, main distribution frame, and
smoke sensors.
VDSL2 port MA562
2A/MA
5623:
LINE
MA562
3A:
xDSL0
and
xDSL1
2 The VDSL2 port supports a maximum
transmission distance of 3.5 km (11,482 feet).
The MA5622A provides an integrated port
for VDLS2 and POTS services.
The MA5623 provides 24 VDSL over
POTS ports. The MA5623 is not equipped
with a built-in splitter and therefore needs
to work with an external splitter.
The MA5623A provides 48 VDSL over
POTS ports. The MA5623A is not
equipped with a built-in splitter and
therefore needs to work with an external
splitter.
NOTE
For pin assignments of the xDSL0/LINE port, see
Table 2-2. For pin assignments of the xDSL1 port,
see Table 2-3.
POTS port
NOTE
Only the
MA5622A
supports this port.
PSTN 1 Supports the POTS access and provides the
VoIP, FoIP, and MoIP services.
NOTE
For pin assignments of the POTS, see Table 2-4.
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Port Name Silkscreen
Number of Ports
Function
Mounting
bracket
None 2 Used for fixing the device.
Table 2-2 Pin assignments of the xDSL0/LINE port
Pin Signal
Pin Signal
Port Figure Pin Signal
Pin Signal
64 15 48 7
32 16 16 -
63 47 31 15
62 14 46 6 30 17 14 -
61 45 29 13
60 13 44 5 28 18 12 -
59 43 27 11
58 12 42 4 26 19 10 -
57 41 25 9
56 11 40 3 24 20 8 -
55 39 23 7
54 10 38 2 22 21 6 -
53 37 21 5
52 9 36 1 20 22 4 -
51 35 19 3
50 8 34 0 18 23 2 -
49 33 17 1
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Table 2-3 Pin assignments of the xDSL1 port
Pin Signal
Pin Signal
Port Figure Pin Signal
Pin Signal
64 39 48 31
32 40 16 -
63 47 31 15
62 38 46 30 30 41 14 -
61 45 29 13
60 37 44 29 28 42 12 -
59 43 27 11
58 36 42 28 26 43 10 -
57 41 25 9
56 35 40 27 24 44 8 -
55 39 23 7
54 34 38 26 22 45 6 -
53 37 21 5
52 33 36 25 20 46 4 -
51 35 19 3
50 32 34 24 18 47 2 -
49 33 17 1
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Table 2-4 Pin assignments of the POTS
Pin Signal
Pin Signal
Port Figure Pin Signal
Pin Signal
64 15 48 7
32 16 16 -
63 47 31 15
62 14 46 6 30 17 14 -
61 45 29 13
60 13 44 5 28 18 12 -
59 43 27 11
58 12 42 4 26 19 10 -
57 41 25 9
56 11 40 3 24 20 8 -
55 39 23 7
54 10 38 2 22 21 6 -
53 37 21 5
52 9 36 1 20 22 4 -
51 35 19 3
50 8 34 0 18 23 2 -
49 33 17 1
2.1.2 Indicators
The MA5622A/MA5623/MA5623A provides various indicators on the panel to help users
learn about the running status of the device.
Figure 2-5 shows the panel indicators provided by the MA5622A/MA5623/MA5623A and
Table 2-5 describes the status and meanings of these indicators.
The Indicators of the MA5622A/MA5623/MA5623A is the simliar, we take the MA5623A for example.
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Product Description 2 Product Hardware
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Figure 2-5 Indicators provided by the MA5623A
RUN/ALM
PWR LINK AUTH/ACT
1
0
POTS
xDSL1 xDSL0
Table 2-5 Status and meanings of the indicators provided by the MA5622A/MA5623/MA5623A
Indicator Status Meaning
PWR: power supply
status indicator
Steady green The device is powered on.
Off The device is powered off.
RUN/ALM: running
status indicator
Red: on for 0.25s and off
for 0.25s repeatedly
The device is starting up.
Green: on for 1s and off
for 1s repeatedly
The device is working properly.
Steady red The device is faulty.
LINK: link status
indicator (GE optical
port and PON port) (GE
is the abbreviation for
gigabit Ethernet and
PON is the abbreviation
for passive optical
network.)
Steady green The uplink optical port is
receiving optical signals.
Off The uplink port fails to receive
optical signals or an optical fiber
is not connected to device.
AUTH: authentication
indicator (PON port)
Steady green The device is registered with the
upper layer device successfully.
Green: on for 0.25s and
off for 0.25s repeatedly
The device is registering with the
upper layer device.
Off The device registration fails or an
optical fiber is not connected to
the device.
ACT: data status
indicator (GE optical
port)
Green and blinks The GE optical port is
transmitting or receiving data.
Off No data is transmitted or received
on the GE optical port.
Indicator of the POTS
port
NOTE
only the MA5622A
supports this port and
Steady green At least one service port is busy.
Off All the ports are idle.
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Indicator Status Meaning
indicator.
2.1.3 Heat Dissipation
MA5622A/MA5623/MA5623A supports a high density of user access. In addition, the
MA5622A/MA5623/MA5623A adopts an optimal design to implement wind cooling heat
dissipation.
Two fans are located in the right side of the MA5622A/MA5623/MA5623A, used for
ventilation of the chassis in the exhaust mode.
The airflow is as follows: the cool air enters the MA5622A/MA5623/MA5623A at the left
side, and is blown towards the right side by the fans, and finally, exits at the right side of the
MA5622A/MA5623/MA5623A
Figure 2-6 shows the airflow for the MA5622A/MA5623/MA5623A
Figure 2-6 Airflow for the MA5622A/MA5623/MA5623A
MA5622A/MA5623/MA5623A supports automatic setting the fan speed, the fan speed is
automatically adjusted according to the temperature detected by the temperature sensor
configured on the control board.
The fans of the MA5622A/MA5623/MA5623A support alarm report when the fan is blocked.
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3 Product and Functions
The feature list provides all features supported by an MA5622A/MA5623/MA5623A.
Table 3-1 Feature list
Classification Features
Vectoring
NOTE
Only the MA5622A and
MA5623A support Vectoring.
The Vectoring technology uses Vectoring algorithms to
cancel inter-line crosstalk for multi-pair very-high-speed
digital subscriber line 2 (VDSL2) lines so that VDSL2 line
bandwidths can be increased significantly. In this
technology, the Vectoring control entity (VCE) uses various
technologies to cancel inter-line crosstalk in upstream and
downstream directions:
Downstream: pre-coding technology
Upstream: canceling technology
Layer 2 management MAC address management
Virtual local area network (VLAN) management
Flow bundle
Layer 2 forwarding policies
Outer VLAN+MAC forwarding
Service VLAN (SVLAN)+customer VLAN
(CVLAN) forwarding
Layer 2 isolation
Layer 2 bridging
Transparent transmission of protocol packets
1:1 virtual MAC address (VMAC)
Quality of service (QoS) Priority processing
Traffic management
Early drop
Traffic policing
Queue scheduling
Queue buffering
Traffic shaping
Access control list (ACL) policies
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Classification Features
Emulation services Point-to-Point Protocol over Ethernet (PPPoE) dialup
emulation
Dynamic Host Configuration Protocol (DHCP) dialup
emulation
Multicast service emulation
Voice call emulation
NOTE
Only the MA5622A supports the voice call emulation.
Voice service
NOTE
Only the MA5622A supports
the voice service.
H.248/SIP POTS
H.248/SIP Fax over IP (FoIP)
H.248/SIP modem over IP (MoIP)
Layer 3 features VLAN Layer 3 interface
Address Resolution Protocol (ARP)
Domain name service (DNS) client
Static route
Networking features Multiple Spanning Tree Protocol (MSTP)
Link Aggregation Control Protocol (LACP)
PON type B protection
User security Policy Information Transfer Protocol (PITP)
DHCP option82
802.1x authentication
Anti-MAC address flapping
Anti-MAC address spoofing
Anti-IP address spoofing
Access user isolation
Ring check
System security Destination IP address filtering (IP address access list)
Source MAC address filtering
Destination MAC address filtering
Anti-denial of service (DoS) attack
Anti-IP packet attack
Anti-Internet Control Message Protocol (ICMP) packet
attack
Source route filtering
Firewall
Blacklist
Operation and maintenance
security
Account and password for management users
Authentication, encryption, and access control based on
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Classification Features
Simple Network Management Protocol (SNMP) v3
Setting of an independent security administrator
Encryption for file transfer
Encryption for remote management and connection
Logging of security events
Secure Shell (SSH) v2
Line security Advanced Encryption Standard (AES) 128 encryption for
GPON downstream transmission
Operation and maintenance
features
Ethernet operations, administration and maintenance
(OAM), including connectivity fault management (CFM)
and Ethernet in the first mile (EFM)
Enabling or disabling ETH OAM 802.1ag globally
Y.1731-defined CFM
Y.1731-defined bidirectional diagnosis tests,
including bit error rate (BER) tests
EFM is defined in the IEEE 802.3ah (802.1ah for
short). It is an OAM feature for detecting quality
and connectivity of last-mile Ethernet links.
NOTE
Y.1731 performance detect only supported by MA5623A.
Local operation and maintenance using the maintenance
serial port and maintenance network port
Remote operation and user management
Version and data management
Device exception management
Environment monitoring Provides one environment monitoring port that supports
four digital parameters (default: smoke, door status, surge
protection, and main distribution frame)
Supports MiniESC.
Supports fan monitoring.
Supports 4830 environment monitoring unit.
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4 Operation and Maintenance
4.1 Management Using the CLI
You can use the command line interface (CLI) to log in to the MA5622A/MA5623/MA5623A
by means of the serial port or optical line terminal (OLT) and to manage and maintain the
device.
Figure 4-1 shows an example network of MA5622A/MA5623/MA5623A management using
the CLI.
Figure 4-1 MA5622A/MA5623/MA5623A management using the CLI
4.2 Management Using the U2000
You can manage and maintain optical network units (ONUs) using the iManager U2000
network management system (U2000).
The U2000 provides abundant management functions including the following: security
management, topology management, alarm management, performance management,
inventory resources management, log management, database management, network element
(NE) communication parameter management, NE software management, report management,
and system monitoring.
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The U2000 communicates with ONUs using the Simple Network Management Protocol
(SNMP) and supports inband and outband management modes. Figure 4-2 shows an example
network of ONU management using the U2000.
Figure 4-2 ONU management using the U2000
Integrated network
management center
U2000 client A U2000 client B
U2000
ONUONU
OLT OLT
Service & inband
management channel
Outband management
channel
Inband network management mode: In this mode, the interaction messages between the
U2000 and an ONU are transmitted over the service channel of the ONU and no
additional device is required. This mode is cost-effective and supports flexible
networking. However, the maintenance operations cannot be performed if the device
service channel becomes faulty.
Outband network management mode: In this mode, the interaction messages between the
U2000 and an ONU are transmitted through a non-service channel. This mode provides a
more reliable device management channel. When a fault occurs on the device, users can
use the dedicated management channel to locate the fault and monitor the device in real
time. This mode requires an additional device to provide a management channel that is
independent of the device service channel.
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5 Technical Specifications
5.1 Device Parameters
Device parameters include the dimensions, weight, running environment, and power supply
and consumption parameters of the MA5622A/MA5623/MA5623A.
5.1.1 Dimensions
This topic describes the dimensions of the MA5622A/MA5623/MA5623A.
Table 5-1 Dimensions of the MA5622A/MA5623/MA5623A
Type Width x Depth x Height
MA5622A/MA5623/MA5623A(without the
mounting brackets)
442 mm x 220 mm x 43.6 mm
MA5622A/MA5623/MA5623A(with the
mounting brackets)
482.6 mm x 220 mm x 43.6 mm
5.1.2 Weight
This topic describes the weight of the MA5622A/MA5623/MA5623A.
Table 5-2 Weight of the MA5622A/MA5623/MA5623A
Product Weight
MA5622A 3.3 kg
MA5623 3.4 kg
MA5623A 3.0 kg
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5.1.3 Running Environment
This topic describes the requirements for the running environment of the
MA5622A/MA5623/MA5623A.
Table 5-3 Environment parameters of the MA5622A/MA5623/MA5623A
Environment Parameter Value
Working environment temperature -40°C to +65°C
The device can start up at -25°C and run at
-40°C.
Working environment humidity 5% RH to 95% RH
Atmospheric pressure 70 kPa to 106 kPa
Altitude < 4000 m
NOTE
The highest temperature at an altitude below
1800 m is 65°C. The highest ambient temperature
degrades by 1°C each time the elevation
increases by 220 m within the range of 1800 m to
4000 m.
5.1.4 Power Parameters
This topic describes the power parameters of the MA5622A/MA5623/MA5623A.
Table 5-4 Power parameters of the MA5622A/MA5623/MA5623A
Parameter Value
Power supply mode MA5622A: AC power (110 V or 220 V) + backup
power (12 V DC)
MA5623: AC power (110 V or 220 V)
MA5623A:
AC power (110 V or 220 V) + backup power (12
V DC)
DC power supply
Working voltage range MA5622A&MA5623A:
AC power supply: 90 V AC to 300 V AC
Backup power:
Batteries will be charged when the device is
powered by an AC power source. The charging
voltage supported by a lead-acid battery ranges
from 13.5 V to 13.8 V. The charging voltage
supported by a Fe-lithium battery ranges from
14.1 V to 14.8 V.
If the AC power source is cut off, the device will
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Parameter Value
be powered by batteries. The discharging voltage
supported by a lead-acid battery ranges from 10.8
V to 13.5 V. The discharging voltage supported
by a Fe-lithium battery ranges from 10.8 V to
14.4 V.
MA5623A: DC power supply: 48 V DC
MA5623: AC power supply: 90 V AC to 264 V AC
Maximum input current MA5622A: 1.5 A
MA5623: 1.0 A
MA5623A:
AC power supply: 1.5 A
DC power supply: 2.5 A
5.1.5 Power Consumption
This topic describes the power consumption parameters of the
MA5622A/MA5623/MA5623A.
Table 5-5 Power consumption of the MA5622A/MA5623/MA5623A (GPON upstream
transmission)
Device Scenario Static Power Consumption(W)
Typical Power Consumption(W)
Maximum Power Consumption(W)
MA5622A(24V
DSL+24POTS)
17a 28 44 70
17a + vectoring 28 44 70
8b 28 45 73
8b + vectoring 28 44 71
MA5622A(16V
DSL+16POTS)
17a 26 37 55
17a + vectoring 26 37 55
8b 26 38 57
8b + vectoring 26 38 57
MA5622A(8V
DSL+8POTS) 17a 19 23 34
17a + vectoring 19 23 34
8b 19 24 36
8b + vectoring 19 24 36
MA5623 17a 25 35 46
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Device Scenario Static Power Consumption(W)
Typical Power Consumption(W)
Maximum Power Consumption(W)
12a 25 35 46
8b 25 37 48
MA5623A 17a 28 51 75
17a + vectoring 28 51 75
12a 28 51 75
12a + vectoring 28 51 75
8b 28 54 80
8b + vectoring 28 54 80
All power consumption data is obtained without considering the power consumption caused by
alternating current (AC) access in power backup scenarios.
To obtain the static power consumption, do as follows: Insert a gigabit-capable passive optical
network (GPON) optical module, disable all services, activate all ports, and make the fan rotate at a
default rate.
To obtain the maximum power consumption, do as follows: Make all plain old telephone service
(POTS) and very-high-speed digital subscriber line 2 (VDSL2) ports to go online, activate all ports
without limiting rates, and make the fan rotate at a default rate.
To obtain the typical power consumption, do as follows: Make 50% POTS and VDSL2 ports to go
online, activate 50% ports without limiting rates, deactivate 50% ports, and make the fan rotate at a
default rate.
5.1.6 Device Performance
This topic describes the performance of the MA5622A/MA5623/MA5623A.
Performance Parameter
Description
System packet
forwarding rate
MA5622A/MA5623: 18.6Mpps
MA5623A: 25.5Mpps
System switching
capacity
MA5622A/MA5623: 12.4Gbit/s
MA5623A: 17Gbit/s
5.2 Ports and Standards
This topic describes the specifications and standards compliance of ports on the
MA5622A/MA5623/MA5623A.
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5.2.1 GPON Port
This topic describes the specifications and standards compliance of gigabit passive optical
network (GPON) ports.
GPON Port Specifications
Table 5-6 GPON optical module parameters (single-fiber bi-directional optical modules)
Parameter Specifications
Transmission rate Transmit (Tx): 1.244 Gbit/s
Receive (Rx): 2.488 Gbit/s
Port mode Single-mode
Connector type SC/PC (UPC)
Maximum transmission distance 20 km
Standards compliance ITU-T G.984.2 CLASS B+
Center wavelength Receive (Rx): 1490 nm
Transmit (Tx): 1310 nm
Transmit optical power 0.5 dBm to 5.0 dBm
Extinction ratio > 10 dB
Maximum receiver sensitivity -27 dBm
Overload optical power -8 dBm
Standards Compliance
Standard Description
ITU-T G.984.1 General characteristics for GPON
ITU-T G.984.2 GPON: Physical media dependent (PMD) layer specification
ITU-T G.984.3 GPON: Transmission convergence layer
ITU-T G.984.4 GPON: ONT management and control interface specification
ITU-T G.983.3 A broadband optical access system with increased service
capability by wavelength allocation
ITU-T G.983.3
Amendment 1
A broadband optical access system with increased service
capability by wavelength allocation
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5.2.2 GE Port
This topic describes the specifications and standards compliance of gigabit Ethernet (GE)
ports.
Specifications of a Single-Mode GE Port
Parameter Specifications
Connector type LC LC LC LC
Port rate 1.25 Gbit/s 1.25 Gbit/s 1.25 Gbit/s 1.25 Gbit/s
Transmission
distance
10 km 40 km 10 km 10 km
Compliant
standard
IEEE 802.3z IEEE 802.3z IEEE 802.3z IEEE 802.3z
Center
wavelength
1310 nm 1310 nm Tx: 1310 nm
Rx: 1490 nm
Tx: 1490 nm
Rx: 1310 nm
Transmit
optical power
-11.5 dBm to -3
dBm
-5 dBm to 0
dBm
-9 dBm to -3.0
dBm
-9 dBm to -3.0
dBm
Extinction ratio 9.0 dB 9.0 dB 6.0 dB 6.0 dB
Maximum
receiver
sensitivity
-19 dBm -23 dBm -19.5 dBm -19.5 dBm
Specifications of a Multi-Mode GE Port
Parameter Specifications
Connector type LC
Port rate 1.25 Gbit/s
Transmission distance 500 m
Compliant standard IEEE 802.3z
Center wavelength 850 nm
Transmit optical power -9.5 dBm to 0 dBm
Extinction ratio 9.0 dB
Maximum receiver sensitivity -17 dBm
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Specifications of a GE Electrical Port
Parameter Specifications
Connector type RJ45
Port rate 1 Gbit/s
Maximum transmission distance 100 m
Working mode Auto-adaptive 1 Gbit/s
Cable specifications Category 5 UTP
Compliant standard IEEE 802.3i
IEEE 802.3u
Ethernet Standards
Standard Description
IEEE 802.z Definition of Gigabit Ethernet (over Fiber)
IEEE 802.3 Carrier sense multiple access with collision detection (CSMA/CD)
access method and physical layer specifications
IEEE 802.3x Definition of Full Duplex operation in a switched LAN
5.2.3 VDSL2 Port
This topic describes the specifications and standards compliance of the very-high-speed
digital subscriber line 2 (VDSL2) ports on the MA5622A/MA5623/MA5623A.
VDSL2 Port Specifications
Parameter Specifications
Connector type Champ 64-pin
Maximum transmission
rate
100 Mbit/s
Maximum transmission
reach
3500 m (2.2 miles), with the U0 mode enabled
Cable type Twisted pair
Modulation technology Discrete multi-tone (DMT) modulation
Supported service VDSL2
Supported frame protocol Asynchronous transfer mode (ATM) and packet transfer mode
(PTM)
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Parameter Specifications
Standards compliance ITU-T G.993.2
Standards Compliance of VDSL2 Ports
Standard Description
ITU-T G.992.1 Asymmetrical Digital Subscriber Line (ADSL) Transceivers
ITU-T G.992.2 Splitterless Asymmetric Digital Subscriber Line (ADSL)
Transceivers
ITU-T G.992.3 Asymmetric Digital Sub Scriber Line (ADSL) Transceivers-2
(ADSL2)
ITU-T G.992.5 Asymmetric Digital Subscriber Line (ADSL) transceivers -
Extended bandwidth ADSL2 (ADSL2plus)
ITU-T G.993.2 Very high speed digital subscriber line 2
ITU-T G.993.5 Self-FEXT cancellation (vectoring) for use with VDSL2
transceivers
ITU-T G.994.1 Handshake procedures for Digital Subscriber Line (DSL)
transceivers
ITU-T G.997.1 Physical Layer Management for Digital Subscriber Line (DSL)
Transceivers
ANSI T1.413 Network and customer installation interface- Asymmetric digital
subscriber line (ADSL) Metallic Interface
ETSI TS 101 388 Access transmission systems on metallic access cables;
Asymmetric Digital Subscriber Line (ADSL) - European specific
requirements
ITU G.991.2 Single-pair high-speed digital subscriber line (SHDSL) transceivers
DSL Forum
Standard Description
TR-037 Auto-Configuration for the Connection Between the DSL Broadband
Network Termination (B-NT) and the Network using ATM
TR-048 Test specifications (DSL Forum)
TR-056 Network Migration to Next Generation DSL Networks
TR-058 Multi-Service Architecture & Framework Requirements
TR-059 DSL Evolution - Architecture Requirements for the Support of QoS Enabled IP Services
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Standard Description
TR-066 DSL Network Element Management
TR-101 Technical Report DSL Forum TR-101 Migration to Ethernet-Based DSL
Aggregation
TR-129 Protocol-Independent Management Model for Next Generation DSL
Technologies
TR-165 Vector of Profiles
TR-114 VDSL2 Performance Test Plan
WT 147 Layer 2 Control Mechanism
5.2.4 POTS Port
This section describes the specifications and standards for the plain old telephone service
(POTS) port supported by the MA5622A.
POTS Port Specifications
Parameter Specifications
Connector type Champ 64-pin
Transmission rate 64 kbit/s
Maximum transmission
reach
5500 m to 6000 m
Cable type Twisted pair
Line coding Pulse code modulation (PCM)
Frame protocol Time division multiplexing (TDM)
Standard compliance ITU-T Q.552
H.248 Protocol
Standard Description
ITU-T H.248 Annex M2 Media Gateway resource congestion handling package
ITU-T H.248 Annex M4 H.248 packages for H.323 and H.324 interworking
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SIP
Standard Description
RFC 2976 The SIP INFO method
RFC 3261 Session Initiation Protocol
RFC 3262 Reliability Of Provisional Responses in the Session Initiation Protocol
(SIP)
RFC 3263 Locating SIP servers
RFC 3265 Specific Event Notification
RFC 3331 The Session Initiation Protocol (SIP) UPDATE method
RFC 3312 Integration of Resource Management and Session Initiation Protocol
(SIP)
RFC 3320 Signaling Compression
RFC 3321 Signaling Compression (SigComp) - Extended Operations
RFC 3323 A Privacy Mechanism for the Session Initiation Protocol (SIP)
RFC 3325 Private Extensions to the Session Initiation Protocol (SIP) for Asserted
Identity within Trusted Networks
RFC 3326 The Reason Header Field for the Session Initiation Protocol (SIP)
RFC 3420 Internet Media Type message/sipfrag
RFC 3428 Session Initiation Protocol (SIP) Extension for Instant Messaging
RFC 3455 Private Header (P-Header) Extensions to the Session Initiation Protocol
(SIP) for the 3rd-Generation Partnership Project (3GPP)
RFC 3485 The Session Initiation Protocol (SIP) and Session Description Protocol
(SDP) Static Dictionary for Signaling Compression (SigComp)
RFC 3486 Compressing the Session Initiation Protocol (SIP)
RFC 3515 The Session Initiation Protocol (SIP) Refer Method
RFC 3581 An Extension to the Session Initiation Protocol (SIP) for Symmetric
Response Routing
RFC 3608 Session Initiation Protocol (SIP) Extension Header Field for Service
Route Discovery During Registration
RFC 3960 Session Initiation Protocol (SIP) Basic Call Flow Examples
RFC 3680 A Session Initiation Protocol (SIP) Event Package for Registrations
RFC 3841 Caller Preferences for the Session Initiation Protocol (SIP)
RFC 3842 A Message Summary and Message Waiting Indication Event Package for
the Session Initiation Protocol (SIP)
RFC 3891 The Session Initiation Protocol (SIP) "Replaces" Header
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Standard Description
RFC 3903 Session Initiation Protocol (SIP) Extension for Event State Publication
RFC 3960 Early Media and Ringing Tone Generation in the Session Initiation
Protocol (SIP)
RFC 4028 Session Timers in the Session Initiation Protocol (SIP)
RFC 4083 Input 3GPP Release 5 Requirements on the SIP
RFC 4168 The Stream Control Transmission Protocol (SCTP) as a Transport for the
Session Initiation Protocol (SIP)
RFC 4320 Actions Addressing Identified Issues with the Session Initiation
Protocol's (SIP) Non-INVITE Transaction
RFC 4321 Problems Identified Associated with the Session Initiation Protocol's
(SIP) Non-INVITE Transaction
5.3 Compliant Standards
This topic provides the environment standards, electromagnetic compatibility standards,
security standards, and some other international standards that the
MA5622A/MA5623/MA5623A complies with.
5.3.1 Environment Standards
This topic describes the environment standards compliance of the
MA5622A/MA5623/MA5623A.
Standard Description
ETS 300 019-1-3 Environmental Engineering (EE);
Environmental conditions and
environmental tests for telecommunications
equipment; Part 1-3: Classification of
environmental conditions; Stationary use at
weather protected locations
ETS 300 019-2-1 V2.1.2 (2000-09) Environmental conditions and
environmental tests for telecommunications
equipment; Part 2-1: Specification of
environmental tests; Storage
ETS 300 019-2-2 Equipment Engineering; Environmental
conditions and environmental tests for
telecommunications equipment. part2-2:
specification of environmental tests
transportation
ETS 300 019-1-2 Environmental Engineering (EE);
Environmental conditions and
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Standard Description
environmental tests for telecommunications
equipment; Part 1-2: Classification of
environmental conditions; Transportation
ETS 300 019 1-1 Environmental conditions and
environmental tests for telecommunications
equipment; Part 1-1: Classification of
environmental conditions; Storage
IEC 60529 Degrees of protection provided by
enclosures (IP Code)
IEC 60721-3-3 Classification of environmental conditions
Part3: Classification of groups of
environmental parameters and their
severities-Section 3: Stationary use at
weather-protected locations
5.3.2 Electromagnetic Compatibility Standards
This topic describes the electromagnetic compatibility standards compliance of the
MA5622A/MA5623/MA5623A.
Standard Description
IEC 61000-4-2 Electromagnetic compatibility-Part4-2:
Testing and measurement
techniques-Electrostatic discharge immunity
test
IEC 61000-4-3 Electromagnetic compatibility (EMC) - Part
4-3: Testing and measurement
techniques-Radiated, radio-frequency,
electromagnetic field immunity test
IEC 61000-4-4 Electromagnetic compatibility (EMC) - Part
4-4: Testing and measurement
techniques-Electrical fast transient/burst
immunity test
IEC 61000-4-5 Electromagnetic compatibility (EMC) - Part
4-5: Testing and measurement
techniques-Surge immunity test
IEC 61000-4-6 Electromagnetic compatibility (EMC) - Part
4-6: Testing and measurement
techniques-Immunity to conducted
disturbances, induced by radio-frequency
fields
IEC 61000-4-11 Electromagnetic compatibility (EMC) - Part
4-11: Testing and measurement
techniques-Voltage dips, short interruptions
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Standard Description
and voltage variations immunity tests
CISPR 22 Information technology equipment-Radio
disturbance characteristics-Limits and
methods of measurement
EN 55022 Information technology equipment Radio
disturbance characteristics Limits and
methods of measurement
EN 55024 Information technology equipment
Immunity characteristics Limits and
methods of measurement
ETSI EN 300 386 V1.3.3 Electromagnetic compatibility and Radio
Spectrum Matters(ERM);
Telecommunication network equipment;
ElectroMagnetic Compatibility(EMC)
requirements
ETSI ES 201 468 V1.3.1 Electromagnetic compatibility and Radio
spectrum Matters(ERM); Additional
ElectroMagnetic Compatibility(EMC)
telecommunications equipment for
enhanced availability of service in specific
applications
ETSI EN 300 132-1 V2.2.2 Environmental Engineering(EE); Power
supply interface at the input to
telecommunications equipment; Part2:
Operated by direct current (ac)
5.3.3 Security Standards
This topic describes the security standards compliance of the MA5622A/MA5623/MA5623A.
Standard Description
IEC 60950-1:2001 Information Technology Equipment - safety
- Part 1: General Requirements
IEC 60529 Classification of degrees of protection
provided by enclosures
UL 60950-1:2003 Information Technology Equipment - safety
- Part 1: General Requirements
EN 60950-1 Information Technology Equipment - safety
- Part 1: General Requirements
EN 41003 Safety of Information technology equipment
EN 60825-1 Safety of laser products - Part 1- Equipment
classification, requirement and user's guide
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Standard Description
EN 60825-2 Safety of laser products - Part 2- Safety of
optical fiber communication
IEC 60825-1 Safety of laser products - Part 1- Equipment
classification, requirement and user's guide
IEC 60825-2 Safety of laser products - Part 2- Safety of
optical fiber communication
5.3.4 Other International Standards
This topic describes other international standards compliance of the
MA5622A/MA5623/MA5623A.
MPE System Standards
Standard Description
IEC 60950-2001 Safety of information technology equipment including Electrical
Business Equipment
IEC 60825 Safety of laser products, parts 1 and 2
EN 60950 Safety of Information technology equipment
ITU-T K.45 Resistibility of telecommunication equipment installed in a
telecommunications center to overvoltages and overcurrents
ETSI 300 119 European telecommunication standard for equipment practice
IP Standards
Standard Standard
RFC 768 UDP protocol
RFC 783 The TFTP Protocol (Revision 2)
RFC 791 IP protocol
RFC 792 ICMP protocol
RFC 793 TCP protocol
RFC 826 ARP
RFC 854 Telnet protocol
RFC 894 Standard for transmitting IP packet on Ethernet
RFC 2131 DHCP
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Standard Standard
RFC 3046 DHCP Relay Agent Information Option
RFC 3550 RTP: A Transport Protocol for Real-Time Applications
OAM Standards
Standard Description
RFC1157 Simple Network Management Protocol (SNMP)
RFC1213 Internet Network Management Information Base based on TCP/IP:
MIB-II
RFC1757 Remote Network Monitoring Management Information Base
RFC1907 Management Information Base for Version 2 of the Simple Network
Management Protocol (SNMPv2)
RFC2819 Remote Network Monitoring
GR-474-CORE Network Maintenance, Alarm and Control
Other Standards
Standard Description
MIL-HDBK-217
F
Reliability Prediction of Electronic Equipment
BELLCORE
TR-332/SR-332
Reliability Prediction Procedure for Electronic Equipment
ISTA Procedure
2A/2B
ISTA: international safe transit association LEVEL 2A/2B
IEC 60950-2001 Safety of information technology equipment including Electrical
Business Equipment
UL
60950-1:2003
Information Technology Equipment - safety - Part 1: General
Requirements
IEC 60825 Safety of laser products, parts 1 and 2
EN 60950 Safety of Information technology equipment
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A Acronyms and Abbreviations
A
ACL access control list
AES advanced encryption standard
AG access gateway
ARP Address Resolution Protocol
B
BRAS broadband remote access server
C
CLI command line interface
CSMA carrier sense multiple access
D
DBA dynamic bandwidth allocation
DHCP Dynamic Host Configuration Protocol
DoS denial of service
DSLAM digital subscriber line access multiplexer
FEXT far-end crosstalk
E
ETS European Telecommunication Standards
ETSI European Telecommunication Standards Institute
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F
FE fast Ethernet
FEC forward error correction
FTU feeder terminal unit
FTP File Transfer Protocol
FTTB fiber to the building
FTTC fiber to the curb
G
GE gigabit Ethernet
GEM G-Pon encapsulation mode
GPON gigabit-capable passive optical network
I
ICMP Internet Control Message Protocol
IEC International Electrotechnical Commission
IEEE Institute of Electrical and Electronics Engineers
IGMP Internet Group Management Protocol
IP Internet Protocol
IPTV IP television
ITU-T International Telecommunication Union -
Telecommunication Standardization Sector
L
LAN local area network
LOS loss of signal
M
MAC medium access control
MDU multiple dwelling unit
MIB management information base
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O
OAM operation, administration and management
ODN optical distribution network
OLT optical line terminal
ONU optical network unit
P
P2MP point-to-multipoint
PC personal computer
PITP Policy Information Transfer Protocol
PLC power-line carrier
PMD physical media dependent
PoE power over Ethernet
POTS plain old telephone service
PON passive optical network
PQ priority queuing
PSTN public switched telephone network
Q
QinQ 802.1q in 802.1q
QoS quality of service
R
RSTP Rapid Spanning Tree Protocol
RTU remote terminal unit
S
SNMP Simple Network Management Protocol
STP Spanning Tree Protocol
T
T-CONT transmission container
TCP/IP Transmission Control Protocol/Internet Protocol
SmartAX
MA5622A&MA5623&MA5623AMulti-service Access
Module
Product Description A Acronyms and Abbreviations
Issue 02 (2013-05-25) Huawei Proprietary and Confidential
Copyright © Huawei Technologies Co., Ltd.
37
TDM time division multiplexing
TDMA time division multiple access
TFTP Trivial File Transfer Protocol
TTU transform terminal unit
U
UCD user centered design
UDP User Datagram Protocol
V
VLAN virtual LAN
VMAC virtual MAC
VoIP voice over IP
W
WLAN wireless local area network
WRR weighted round robin