Showing posts with label OSN3500. Show all posts
Showing posts with label OSN3500. Show all posts

Tuesday, August 15, 2017

What is the Protection Relationship among Huawei OSN Products?

TPS protection relationship of all Huawei OSN products is listed as follows:

Huawei OSN 7500:
E1/T1: A maximum of one group of 1:4 protection. Slot 1 protects Slots 2, 3, 7 and 18.
E3/D3/E4/STM-1e: A maximum of one group of 1:3 protection. Slot 18 protects Slots 2, 3 and 7. 

E1/T1: A maximum of one group of 1:8 protection. Slot 1 protects Slots 2–5, 13–16.
E3/D3/E4/STM-1e: A maximum of two groups of 1:3 protection. Slot 2 protects Slots 3, 4 and 5. Slot 16 protects Slots 13, 14 and 15. A maximum of two groups of 1:1 protection. Slot 2 protects Slot 3 and Slot 16 protects Slot 15.

Huawei OSN 2500:
E1/T: If slots are not split, there is a maximum of one group of 1:4 protection. Slot 5 protects Slots 6, 7, 12 and 13. If Slots 5, 6 and 7 are split, there are a maximum of two groups of 1:2 protection. Slot 5 protects Slots 6 and 7. Slot 19 protects Slots 20 and 21.
E3/D3/E4/STM-1e: A maximum of two groups of 1:1 protection. Slot 6 protects Slot 7, and Slot 13 protects Slot 12.

Huawei OSN 2500CRG:
The OSN2500CRG does not support TPS protection.

Huawei OSN 1500I:
E1/T1: If slots are not split, there is a maximum of one group of 1:2 protection. Slot 11 protects Slots 12 and 13. If Slots 11, 12 and 13 are split, there is a maximum of one group of 1:2 protection. Slot 1 protects Slots 2 and 3, Slots 6 protects Slots 7 and 8, and Slot 11 protects Slots 12 and 13.
E3/D3/E4/STM-1e: A maximum of two groups of 1:1 protection. Slot 12 protects Slot 13.

Huawei OSN 1500II:
E1/T1: If slots are split, there is a maximum of one group of 1:1 protection. Slot 2 protects Slot 12. 

Sunday, July 9, 2017

How to Plan Orderwire Phone Interfaces on Huawei Optix OSN2500?

Capability of Supporting Orderwire Phone Interfaces

The capability of supporting orderwire phone interfaces is defined.
The Q1SEI board of the Huawei OptiX OSN 2500 provides one orderwire phone interface, two NNI
voice interfaces and two NNI signaling interfaces. The five interfaces are all of the RJ-45 type.

Planning Principles

The principles for planning the orderwire phone interfaces are defined.
Adhere to the following principles when planning orderwire phone interfaces:


  • Make sure that the orderwire signaling is compatible in the entire network.
  • Make sure the orderwire phone number of each node is of the same length. It is recommended that the orderwire phone number be set as four characters.
  • Set the orderwire phone number in the format: subnet number (one character) + user number (three characters).
  • Make sure that the conference phone numbers in the entire network are the same and the number should be larger than the orderwire phone number. It is recommended that the conference phone number be set to 9999.
  • Make sure that all orderwire phone numbers in the entire network, except the conference phone number, are unique.
  • Make sure that the dial-up scheme of the orderwire phone of each node is dual-tone multifrequency.
  • Make sure the call waiting time of each node is the same. If less than 30 nodes are present in the network, set the call waiting time to 5s. If more than 30 nodes are present in the network, set the call waiting time to 9s.
  • The orderwire phone number should increase as the node ID increases.
  • Consider the possibility of howl in the orderwire loop. Release the loop to solve the problem of howl in the conference phone. The loop is automatically released, if an OptiX OSN 2500 system is networked with other OptiX OSN 2500 systems, or with Huawei OptiX OSN 7500, OptiX OSN 3500, OptiX OSN 3500T, OptiX OSN 2500REG and the OptiX OSN 1500. If the OptiX OSN 2500 is networked with other equipment, manually release the loop.
  • If no optical path is available between two nodes, which, however, require orderwire communication, use the orderwire NNI connection for the orderwire communication. Use Voice 1 or Voice 2 as the voice interface, and Serial 3 or Serial 4 as the data interface for the orderwire NNI connection.
Planning Example

An example is given to show how to plan the orderwire phone interfaces.
Set the orderwire phone number as four characters, with the last two characters being the same
as the node ID. The conference phone number has four characters and is 9999.






Friday, April 1, 2016

How to Troubleshoot for SDH Clock

OptiX OSN 7500 II/OSN 7500/OSN 3500/OSN 1500 TroubleshootingHow to Troubleshoot for Huawei SDH Clock
When the network operates normally, the clock synchronization path is interrupted and the clock protection switching fails. As a result, a large number of pointer justifications occur on the related Nes.
If the clock protection switching is failed may cause pointer justifications and service interruptions.
Possible Causes
lCause 1: The fibers connections on the board are incorrect.
Cause 2: The configuration of the clock tracing mode of the NE is incorrect.
Cause 3: The configuration of the clock protection switching protocol of the entire network
is incorrect.
Cause 4: The configuration of the external clock source of the NE is incorrect.
Cause 5: The hardware is faulty.
Cause 6: The extended synchronization status message (SSM) protocol is disabled or the
clock ID of the clock source is absent.
How to Troubleshoot for SDH Clock
Step 1 Cause 1: The fibers connections on the board are incorrect. As a result, the protection switching fails.
1. See the protection principles to check whether the fibers connections at the faulty point are correct.
If the fibers connections are incorrect, then re-connect the fibers. Check whether the
services are restored. If the services are not restored, check whether the fault is due to other causes.
If the fibers connections are correct, then check whether the fault is due to other
causes.
Step 2 Cause 2: The configuration of the clock tracing mode of the NE is incorrect. As a result, the protection switching fails.
See the protection principles to check whether the clock tracing mode of the NE is correct.
If the configuration of the clock tracing mode of the NE is incorrect, then change the tracing mode of the clocks on the entire network. Check whether the services are restored.
If The configuration of the clock tracing mode of the NE is correct, then check whether the fault is due to other causes.
Step 3 Cause 3: The configuration of the clock protection switching protocol of the entire network is incorrect. As a result, the protection switching fails.
1. Check whether the related NEs are added to the clock protection subnets.
If certain NEs have not been added to the clock protection subnets, then add these NEs to the corresponding clock protection subnets. Check whether the
services recover.  If the services do not recover, proceed to the next step.
If all NEs have been added to the clock protection subnets, then proceed to the next step.
2. Check whether the clock protection switching protocol of related NEs is enabled.
If the clock protection switching protocol of certain NEs has not been enabled, Then enable the clock protection switching protocol of related NEs. Check whether the
services are restored. If the services are not restored, check whether the fault is due to other causes.
If the clock protection switching protocol of the entire network has been enabled, then check whether the fault is due to other causes.
Step 4 Cause 4: The configuration of the external clock source of the NE is incorrect. As a result, the protection switching fails.
1.Check whether the external clock source outputs clock signals.
If tThe external clock source does not output clock signals, then change the external clock source to make sure that the output of the clock signals is normal. Check whether the services recover. If the services do not recover, proceed to the next step.
If the external clock source outputs clock signals, then proceed to the next step.
2. Check whether the external clock source carries the SSMB information.
If the external clock source does not carry the SSMB information set the SSMB information manually. Then check whether the services recover.If the services do not recover, proceed to the next step.
If the external clock source carries the SSMB information, then proceed to the next step.
3. Check whether the external clock source is configured with the s1 byte correctly.
If the external clock source is not configured with the s1 byte correctly, then re-configure the s1 byte. Check whether the services are restored. If the services are not restored, check whether the fault is due to other causes.
If the external clock source is configured with the s1 byte correctly, then check whether the fault is due to other causes.
Step 5 Cause 5: The hardware is faulty. As a result, the protection switching fails.
1. Check the working state of the board.
2. Replace the faulty board.
3. Check whether the services are restored. If the services are not restored, check whether the fault is due to other causes.
Step 6 Cause 6: The extended SSM protocol is disabled or the clock ID of the clock source is absent.
1.Check whether the extended SSM protocol is enabled.
If the extended SSM protocol is disabled or the clock ID of the clock source is absent, then enable the SSM protocol and set the clock ID of the clock source. Check whether the services are restored. If not, check whether the fault is due to other causes.
If the extended SSM protocol is enabled or the clock ID of the clock source is specified, then check whether the services are restored. If not, check whether the fault is due to other causes.
—-End
Related Information
In the case of Huawei OSN clock protection, the direction of each NE clock source must match the fibers connections. That is, the eastbound/westbound fibers must be connected correctly. When the clock protection fails, check whether the fiber connections of each NE on the entire network match the settings of the clock source.
Telephone: 852-30623083
           Supports@Thunder-link.com            

Thursday, March 31, 2016

Huawei OptiX OSN 2500 Review

Network Application


The OptiX OSN 2500 intelligent optical transmission system (hereinafter referred to as the Huawei OSN 2500) developed by Huawei is the next-generation intelligent optical transmission equipment.
The OptiX OSN 2500 integrates the following technologies to transmit voice and data services on the same platform with high efficiency:
  • Synchronous digital hierarchy (SDH)
  • Plesiochronous digital hierarchy (PDH)
  • Ethernet
  • RPR(Resilient Packet Ring)
  • Asynchronous transfer mode (ATM)
  • Storage area network (SAN)
  • Wavelength division multiplexing (WDM)
  • Digital data network (DDN)
  • Automatically switched optical network (ASON)
  • Microwave Technology

Appearance of the OptiX OSN 2500


appearance-of-the-optix-osn2500

The OptiX OSN 2500 is used at the access layer and the convergence layer of a metropolitan area network (MAN). The OptiX OSN 2500 can also be networked with the following equipment to optimize the investment for customers:
  • OptiX OSN 9500
  • OptiX OSN 7500
  • OptiX OSN 3500
  • OptiX OSN 3500 II
  • OptiX OSN 2500 REG
  • OptiX OSN 1500
  • OptiX 2500+(Metro 3000)
  • OptiX 155/622H(Metro 1000)

Network application of the OptiX OSN 2500


network-application-of-the-optix-osn2500

Networking Topology


The OptiX OSN 2500 supports topologies such as chain, ring, tangent rings, intersecting rings, ring with chain, dual node interconnection (DNI), hub, and mesh at the STM-1/STM-4/STM-16/ level.

The OptiX OSN 2500 supports the separate and hybrid configuration of the following types of NEs:
  • Terminal multiplexer (TM)
  • Add/drop multiplexer (ADM)
  • Multiple add/drop multiplexer (MADM)
  • The OptiX OSN 2500 can be interconnected with Huawei OSN, DWDM, and Metro equipment series, to provide a complete transmission network solution.

NOTE:
When the equipment is being interconnected, make sure that the K bytes to be received and transmitted are on the same path at both ends.
  • The OptiX OSN 2500 can be used with another OptiX OSN equipment to provide a complete ASON solution. This solution covers all the layers including the backbone layer, the convergence layer, and the access layer.
  • Through an SDH interface or a GE interface, the OptiX OSN 2500 can be interconnected with the WDM equipment.
  • Through an SDH, PDH, Ethernet, ATM, or DDN interface, the OptiX OSN 2500 can be interconnected with the OptiX Metro equipment.

Basic networking modes of the OptiX OSN equipment series


Networking ModeTopology
1Chain osn2500-chain
2Ring osn2500-ring
3Tangent rings osn2500-tangent-rings
4Intersecting rings osn2500-intersecting-rings
5Ring with chain osn2500-ring-with-chain
6DNI osn2500-dni
7Hub osn2500-hub
8Mesh osn2500-mesh
Legends:osn2500-legends

Telephone: 852-30623083
           Supports@Thunder-link.com            

Sunday, March 13, 2016

What interface is the huawei Optix OSN3500 support

Question: What interface is the huawei Optix OSN3500 support?
Answer:
Support STM-1 (O/E). SL1D
Support the STM-4/16/64 standard or cascade business.
Support E1/T1/E3/T3/E4.
Support FE, GE business transmission and exchange.
Support the ATM service.
Support the IMA service.
Support SAN service and video service.
To provide end-to-end service fast terminal based on GMPLS.
the huawei Optix OSN3500 has high order 200G, the low order 40G cross scheduling capability. With the 100G packet switching capability.

The system supports EM6T/EM6F packet switching and transmission OSN 3500 intelligent optical transmission, and inherits all the features of MSTP technology, compatible with traditional SDH,MSTP network, a new generation of integrated 10G/2.5G into SDH/PDH, Ethernet, WDM, ATM,ESCON/FC/FICON, DVB-ASI, RPR application technology as a whole in the sink and core layermulti service intelligent optical transmission platform.
The evolution of intelligent optical network products to support smooth. Mainly used in industry market convergence layer and access layer, and sharing and OSN9560/OSN7500/2500/1500plate convergence and core layer; OSN3500 support intelligent characteristics, can completeend-to-end service automatic configuration, SLA service, traffic engineering, slot fragmentoptimization, Mesh clock tracking, improve the network utilization.
More information about it, please click here.

Telephone: 852-30623083
           Supports@Thunder-link.com            

Sunday, February 28, 2016

Huawei OSN3500 Gold Line FAQ

Huawei OSN3500 Gold Line Overview
OSN3500 Gold Line configuration including:
  • OSN3500 Subrack, with 1+1 PIU, 1PCS AUX
  • 1+1 SXCSA equipped, 200G high order, 20G low order, 155G Access capacity.
  • 1+1 N4GSCC equipped, System Control and Communication Board
  • 2 PCS SLD64(S-64.2b) equipped, 2xSTM-64 Optical Interface Board(S-64.2b,LC)
  • 1 PCS SLQ16(S-16.1) equipped, 4xSTM-16 Optical Interface Board(S-16.1,LC)
  • 1 PCS SLQ4(S-4.1) equipped, 4xSTM-4 Optical Interface Board(S-4.1,LC)
  • 1 PCS SLO1(S-1.1) equipped, 8xSTM-1 Optical Interface Board(S-1.1,LC)
  • 1 PCS EGS412 equipped, 4xGE Optical Interface Board(1000BASE-LX,1310-LC)
  • 1 PCS EFS0+1PCS ETF8 equipped, 8xFE Electrical Interface Board(1000BASE-LX,1310-LC)

    Huawei OSN3500 Gold Line Configuration, is a recommended board bundle provided by Thunder-link.com, it has common service type and ordinary ports. You can find other configuration bundle at CONFIGURE page, where you can even configure by yourself by selecting the boards you need. If you need customized configuration, please contact with Thunder-link.com Sales Team, who will come back to you shortly.
Huawei OSN3500 Gold Line FAQ

Q: What is the slot access capacity?
A: OSN3500 slot access capacity is different when equip with different Cross-Connect Board.
           When equip with N1GXCSA, the slot bandwidth is like below:       When equip with N1EXCSA:
QQ图片20151127113026.png


              When equip with N1UXCSA/B:                                                      When equip with N1SXCSA/B:
N1UXCSA N1SXCSA.png                

               When equip with N2PSXCSA:                                                       When equip with N1FXCSA: 
 N2PSXCSA N2FXCSA.png                 
Q: What boards are applicable on OSN3500?
A:
List of Cross Connect Boards
N1PSXCS
N2PSXCSA
N3PSXCSA
Super  Cross-connect and Synchronous Timing Board (supporting packet features)N1SXCSASuper  cross-connect and synchronous timing board (only applicable in TDM mode)
N1GXCSAGeneral cross-connect and synchronous timing boardN1SXCSBSuper cross-connect and synchronous timing board (connected to the extended subrack)
N1EXCSAEnhanced cross-connect and synchronous timing boardN1IXCSAInfinite cross-connect and synchronous timing board
N1UXCSAUltra cross-connect and synchronous timing boardN1IXCSBInfinite cross-connect and synchronous timing board (connected to the extended subrack)
N1UXCSBUltra cross-connect and synchronous timing board (connected to the extended subrack)N1XCECross-connect and timing board for the extended subrack
N1FXCSAFull cross-connect and synchronous timing board

List of System Control Board
N1GSCC/N3GSCC
N4GSCC/N6GSCC
System Control and Communication Board

List of packet processing boards
N1PEX22-port 10 Gigabit Ethernet switching processing boardN1PEX1/N2PX11x10GE Ethernet processing board
N1PEG1616xGE Ethernet processing boardN1PEG88-port Gigabit Ethernet switching processing board
 List of packet interface boards
N1CQ14-port channelized STM-1 CES optical interface boardN1PEFF88-port FE optical interface board
N1PETF88xFE electrical interface boardN1MD12Multi-protocol 32xE1 interface board (120 ohms)
N1MD75Multi-protocol 32xE1 interface board (75 ohms)

List of EoD boards
N1EDQ414-port 622/155 Mbit/s SDH optical interface Ethernet dual-mode multi-function processing board

List of SDH boards
N4SLD64/N1SLD642xSTM-64 optical interface boardN4SLO16
N1SLO16
8xSTM-16 optical interface board
N4SFD642xSTM-64 optical interface board with the FEC functionN4SLQ16
N1SLQ16
N2SLQ16
4xSTM-16 optical interface board
N1SL64/N2SL64/N4SL641xSTM-64 optical interface boardN1SLD162xSTM-16 optical interface board
N3SL16/N3SL16A1xSTM-16 optical interface boardN1SL16/N1SL16A
N2SL16/N2SL16A
1xSTM-16 optical interface board
N1SF161xSTM-16 optical interface board (with the outband FEC function)N3SLH4116xSTM-4/STM-1 optical interface board
N1SF16E1xSTM-16 optical interface board (with the outband EFEC function)N3SLQ414xSTM-4/STM-1 optical interface board
N1SLD4/N2SLD4/N1SLD4A2xSTM-4 optical interface boardN1SLQ4/N2SLQ44xSTM-4 optical interface board
N1SL4/N2SL4/N1SL4A1xSTM-4 optical interface boardN1SLQ4A4xSTM-4 optical interface board
N1SLH116xSTM-1 signal processing boardN1SLT112xSTM-1 optical interface board
N1EU088xSTM-1 electrical interface boardN1OU088xSTM-1 optical/electrical interface board (LC)
N2SLO1/N3SLO18xSTM-1 optical interface boardN2OU088xSTM-1 optical interface board (SC)
N1SLQ1/N2SLQ1/N1SLQ1A4xSTM-1 optical interface boardN1SL1/N2SL1/N1SL1A1xSTM-1 optical interface board
N1SEP12xSTM-1 line processing board when interfaces are available on the front panel
8xSTM-1 line processing board when interfaces are available on the corresponding
interface board


List of PDH boards
N1SPQ4/N2SPQ44xE4/STM-1 electrical processing boardN1MU044xE4/STM-1 electrical interface board
N2PQ312xE3/T3 service processing boardN1D34S6xE3/T3 electrical switching interface board
N1C34S3xE3/T3 electrical switching interface boardN1PD3/N2PD36xE3/T3 service processing board
N1PL3/N2PL33xE3/T3 service processing boardN1PL3A/N2PL3A3xE3/T3 service processing board (Interfaces are available on the front panel.)
N1PQ1/N2PQ163xE1 service processing boardN1PQM63xE1/T1 service processing board
N1D12B32xE1/T1 electrical switching interface boardN1D12S32xE1/T1 electrical switching interface board (120 ohms)
N1PFL18xE1 optical processing boardN1D75S32xE1 electrical switching interface board (75 ohms)
N1TSB88-port electrical switching interface boardN1DX1/N3DX1DDN service accessing and converging board
N1DM12DDN service interface boardN1DXADDN service converging and processing board
List of EoS boards
N1EFT8/N2EFT88xFE/16xFE transparent transmission boardN1EAS2/N3EAS22x10GE Layer 2 switching and processing board
N1EFT8A/N2EFT8A8xFE transparent transmission boardN1EGSH16xGE switching and processing board
N1EFS0A16xFE switching and processing boardN1EMS44xGE and 16xFE switching and processing board
N1EFS0/N2EFS0
N4EFS0/N5EFS0
8xFE switching and processing boardN1EMS22xGE and 16xFE switching and processing board
N1EFS4/N2EFS4/N3EFS44xFE switching and processing boardN1EGS/4N3EGS44xGE switching and processing board
N1EFF8/N1EFF8A8x100M Ethernet optical interface boardN1EGT/2N2EGT22xGE transparent transmission board
N1ETF8/N1ETF8A8x100M Ethernet twisted-pair interface boardN2EGS2, N3EGS22xGE switching and processing board
N1ETS88x10/100M Ethernet twisted pair interface switching board

List of ATM boards
N1ADL4/N1IDL41xSTM-4 ATM service processing boardN1ADQ/1N1IDQ14xSTM-1 ATM service processing board
List of RPR boards


N2EGR22xGE ring processing boardN2EMR012xFE and 1xGE ring processing board
List of SAN/video boards
N1VST44-port video service transparent transmission boardN1MST44-port multi-service transparent transmission board
List of PCM boards
N1FXSO1212-port FXS/FXO processing boardN1FXS1212-port FXS processing board
N1FXO1212-port FXO processing boardN1AT66-port 2/4 wire and E&M processing board
List of WDM boards
TN11CMR44-channel optical add/drop multiplexing boardTN11CMR/TN11CMR22-channel optical add/drop multiplexing board
TN11MR22-port optical add/drop multiplexing boardN1MR2C/N1MR2A2-channel optical add/drop multiplexing board
TN11MR44-port optical add/drop multiplexing boardN1CMD22-channel bidirectional optical multiplexer and demultiplexer board
N1LWXArbitrary bit rate wavelength conversion boardTNN1XMD22-channel bidirectional optical add/drop multiplexing board
N1FIBFilter isolating board

List of auxiliary boards
N1AUXSystem auxiliary interface boardN1FANFan board
 List of optical amplifier boards and dispersion compensation boards
N1BPA/N2BPAOne-channel power amplifier and one-channel pre-amplifier boardN1COA, 61COA,62COACase-shaped optical amplifier
N1DCU/N2DCUDispersion compensation boardTN11OBU1/TN12OBU2Optical booster amplifier board
N1BA2Two-channel power amplifier boardN1RPC01/N1RPC02Backward Raman driving board (external)
lists all power boards and their applicable products.
UPMUninterruptible power moduleN1PIUPower interface board (supporting standard subracks)
N1PIUAPower interface board (supporting 1100 W enhanced subrack.)N1PIUBPower interface board (supporting type III subracks)

Q: Can I use new version board to replace old version ones?
A: Yes, most of OSN3500 service board, you can use newer verison to replace old ones, here listed some ordinary substitution boards below, or you can contact Thunder-link.com technical sales team to confirm the board substitution relation.
Substitute BoardTo-Be-Substituted BoardSubstitute BoardTo-Be-Substituted Board
N1PSXCSN1SXCSAN1SL1AN1SL1
N1SXCSBN1UXCSBN1SL4AN1SL4
N1SXCSAN1EXCSA/N1UXCSAN1SL64N2SL64
N2PSXCSAN1SXCSA/N1PSXCSN1SLD4AN1SLD4
N3PSXCSAN1SXCSA/N1PSXCS/N2PSXCSAN1SLQ1AN1SLQ1
N3SL16N1SL16N1SLQ4AN1SLQ4
N2PD3N1PD3N2SLQ16N1SLQ16
N2PL3N1PL3N3SL16N1SL16
N2PL3AN1PL3AN3SL16AN1SL16A
N2PQ1N1PQ1N3SLQ41N1SLQ1/N1SLQ4
N2SLQ1/N2SLQ4
N2PQ1AN1PQ1AN4SF64N1SF64
N2PQ1BN1PQ1BN4SL64N1SL64/N2SL64
N2EFS0N1EFS0N4SLD64N1SLD64
N2EFS4N1EFS4N4SLO16N1SLO16
N2EFT8N1EFT8N4SLQ16N1SLQ16/N2SLQ16
N2EFT8AN1EFT8AN4EGS4N3EGS4
N2EGS2N1EGS2N5EFS0N1EFS0/N2EFS0/N4EFS0
N2EGT2N1EGT2N3EFS4N1EFS4/N2EFS4
N3EGS2N1EGS2/N2EGS2N4EFS0N1EFS0/N2EFS0

Q: Is there any restrictions for board substitution?
A: Yes, there list some restrictions when board substitution below, or you can contact Thunder-link.com technical sales team to confirm the board substitution relation.
Board That Supports the Board Version Replacement FunctionBoard That Cannot Be SubstitutedCondition
N1SL16AN2SL16A/N3SL16AThe TCM function is enabled for the N2SL16A/N3SL16A.
N1SL64N2SL64The TCM function is enabled or AU-3 services are configured for the N2SL64.
N1SLQ16N2SLQ16The TCM function is enabled or AU-3 services are configured for the N2SLQ16.
N3SL16N2SL16The TCM function is enabled or AU-3 services are configured for the N2SL16.
N3SL16AN2SL16AAU-3 services are configured for the N2SL16A.
N3SLO1N2SLO1AU-3 services are configured for the N2SLO1.
N4SL64N2SL64The TCM function is enabled or AU-3 services are configured for the N2SL64.
N2EFS0/N4EFS0N1EFS0The N1EFS0 is configured with QoS functions.If an N4EFS0/N2EFS0 is configured as an N1EFS0 and the simulation package loading method is used, the board software of the N1EFS0 is loaded. As a result, a cold reset is performed on the board and the board version replacement function becomes ineffective. Therefore, an N4EFS0/N2EFS0 must not be configured as an N1EFS0.
N2EFS4N1EFS4If an N2EFS4 is configured as an N1EFS4 and the simulation package loading method is used, the board software of the N1EFS4 is loaded. As a result, a cold reset is performed on the board and the board version replacement function becomes ineffective. Therefore, an N2EFS4 must not be configured as an N1EFS4.
N4EFS0N2EFS0If an N4EFS0 is configured as an N2EFS0 and the simulation package loading method is used, the board software of the N2EFS0 is loaded. As a result, a cold reset is performed on the board and the board version replacement function becomes ineffective. Therefore, an N4EFS0 must not be configured as an N2EFS0.
N2EGS2N1EGS2The N1EGS2 is configured with QoS functions.
N1BPAN2BPAThe ALS function is required but not enabled on the line board.
N2BPAN1BPAThe ALS function is required but not enabled on the N2BPA.

Q: Do you have U2000 NMS If I buy OSN 3500 from you?
A: Yes, we can share U2000 software package to our customers for free.

Q: Do you have U2000 NMS License If I buy OSN 3500 from you?
A: Yes, we provide to our customer U2000 license for test purpose, not for commercial use.

Q: Does OSN3500 have AC power supply?
A: No, OSN3500 power interface unit PIU is DC -48V input only, if you need a AC/DC power converter, please contact with Thunder-link.com sales team.

Q: Do you offer OSN3500 Subrack separately?