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The Huawei OptiX OSN 580 is a new-generation universal transport platform. It adopts a unified switching architecture and supports any mix oftraffic, from all-circuit to all-packet. The OSN 580 offers a converged, reliable and cost-efficient transport platform to meet the needs of missioncritical applications such as control and monitor energy and distribution grids, gas and oil pipelines, railways and authorities.
Table 1 shows the Quick Specs.
Product Code |
Huawei OptiX OSN 580 |
Dimensions |
221 mm (H) x 442 mm (W) x 224 mm (D) |
Installation method |
In a cabinet (including ETSI, 19-inch and 23-inch cabinets), in an outdoor cabinet |
Switch capacity |
Packet: 560 Gbit/s, TDM: 280 Gbit/s (higher order) Packet: 280 Gbit/s, TDM: 280 Gbit/s (higher order) |
Service slots |
15slots |
Power Supply |
-48 V DC/-60 V DC 220 V AC/110 V AC |
Huawei OptiX OSN 580 provides these features:
Universal Platform with Soft and Hard Pipes
- Universal switching: TDM and packet service switching with a universal switch fabric
- Unified access: Including SCADA, Voice, Clock, Teleprotection, OA,MIS and CCTV/Video Services
- Hard pipe: Physical Separation and high QoS to ensure service security and reliability
- Soft pipe: Statistical multiplexing to efficiently carry high-bandwidth data services
SMART 40G Meets High Bandwidth Requirements
- 40G: Integrates OTU, MUX and DEMUX boards using a PID (photonics integrated device), providing 40G capacity per port,which will later be expanded to 100G
- SMART: Supports any mix of TDM & Packet service transport on each port, allowing evolution from 100% TDM to 100% packet
- Free optical layer design: No complicated photonic layer design, such as wavelength planning or OSNR calculation
- Long-Haul transmission: Distance up to 240km with amplifiers, up to 80km without amplifier
Next-Generation PCM/MUX Simplifies Networks
All-in-One Solution
- Reduces stacking of different devices, simplifying network layers
- With universal transport platform that support all applications,easy to expand and evolve
- Unified management, end-to-end service configuration, and easy troubleshooting
Highly integrated design
- Provides high-integration PCM boards with multiple interfaces, including AT8, FXSO12, and DXM, 3 cards provide the functionality of traditional 11 cards
Leading Evolution to All-IP Networks
- Based on universal switch fabric, the customer could establish a universal transport network or end-to-end packet network, achieving the network migration from TDM to all-IP smoothly
MPLS-TP and TP-Assist Achieve High Efficiency and Easy Rollout
Multiprotocol Label Switching-Transport Profile (MPLS-TP), a connection-oriented packet transport technology that is decoupled from IP and combines the transport requirements such as strong OAM and protection. By using MPLS-TP, the customer will have the following benefits when addressing their transition to packet networks.
- Guaranteed Performance from end-to-end committed bandwidth mechanism
- 99.999% availability: 50 ms recovery for both linear and ring applications
- SDH-like OAM mechanism provides capable of fast detection and troubleshooting, including end-to-end performance monitoring
- MPLS-TP based O&M solution TP-Assist provides efficient planning, fast deployment and easy maintenance, making the large-scale packet network easily manageable
Industrial Certifications Ensure Reliable Operation
- Compliant with EN 50121-4, IEC 61850-3, IEC 61000-6-5, IEEE 1613
Table 2shows the comparison.
Product Code |
Huawei OptiX OSN 580 |
|||||
Dimensions |
44mm (H) x 442mm (W) x 220mm (D) |
88mm (H) x 442mm (W) x 220mm (D) |
221 mm (H) x 442 mm (W) x 224 mm (D) |
722 mm (H) x 497 mm (W) x 295 mm (D) |
757 mm (H) x 497 mm (W) x 295 mm (D) |
800mm (H) x 496mm (W) x 295mm (D) |
Switch capacity |
Packet: 7.2 Gbit/s and TDM: 21.25 Gbit/s (higher order), 5 Gbit/s (lower order) |
Packet: 64 Gbit/s ,TDM: 20 Gbit/s (higher order) |
Packet: 560 Gbit/s, TDM: 280 Gbit/s (higher order) Packet: 280 Gbit/s, TDM: 280 Gbit/s (higher order) |
Packet: 160 Gbit/s and TDM: 200 Gbit/s (higher order), 20 Gbit/s (lower order) |
Packet: 160 Gbit/s and TDM: 360 Gbit/s (higher order), 80 Gbit/s (lower order) |
Packet: 320 Gbit/s and TDM: 360 Gbit/s (higher order), 40 Gbit/s (lower order), OTN: 560Gbit/s |
Service slots |
3 slots |
8slots |
15slots |
15 slots for processing boards and 16 slots for interface boards |
22 slots for processing boards and 8 slots for interface boards |
32 slots, 16 slots for interface boards and 16 slots for processing boards with same bandwidth per slot |
Power Supply |
48V DC/ -60V DC, 220V AC/110V AC |
-48 V DC/-60 V DC 220 V AC/110 V AC |
-48 V DC/-60 V DC 220 V AC/110 V AC |
-48V DC/ -60V DC; 110/220V AC (External module) |
-48V DC/-60V DC; 110V AC/220V AC (External module) |
-48V DC/-60V DC |
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Huawei OptiX OSN 580 Specification |
||
Dimensions |
221 mm (H) x 442 mm (W) x 224 mm (D) |
|
Installation method |
In a cabinet (including ETSI, 19-inch and 23-inch cabinets), in an outdoor cabinet |
|
Switch capacity |
Packet: 560 Gbit/s, TDM: 280 Gbit/s (higher order) Packet: 280 Gbit/s, TDM: 280 Gbit/s (higher order) |
|
Service slots |
15 slots |
|
Supported interfaces |
OTN interface |
OTU-2, OTU-3 |
Ethernet interface |
FE/GE/10GE/40GE |
|
SDH interface |
STM-1/4/16/64 |
|
PDH interface |
E1/E3; T1/T3 |
|
PCM interface |
FXS/FXO, 2/4 wire audio and E&M X.21/V.35/V.11/V.24/V.28, RS232/RS422, RS449/RS423A/RS422A, RS530/RS530A, RS485, G.703 64 kbit/s bidirectional; IEEE C37.94 |
|
WDM interface |
40 DWDM wavelengths, compliant with ITU-T G.694.1 8 CWDM wavelengths, compliant with ITU-T G.694.2 |
|
Networking Mode |
Supports pure packet, hybrid (packet + SDH), or SDH networking Supports WDM networking |
|
Power Supply |
-48 V DC/-60 V DC 220 V AC/110 V AC |
|
Operation Environment |
Temperature
|
Long term: -5ºC ~ 50ºC Short term: -10ºC ~ 55ºC |
Relative Humidity |
Long term: 5% ~ 85% Short term: 5% ~ 95% |
|
Ethernet and MPLS-TP features |
E-Line, E-LAN, and QinQ MPLS-TP based VPWS and VPLS MS-PW ETH PWE3 IGMP Snooping v2 |
|
PCM features
|
Supports 64K cross connect Voice or data conference, Point-to-Point, Point-to-Multipoint, Multipoint-to-Multipoint FXO/FXS mode can be set by software E&M signaling can be set by software (types I, II, III, IV, V and British Telecom SSDC5) |
|
QoS
|
Hierarchical QoS scheduling and traffic shaping DiffServ mode based on traffic classification Simple traffic classification, complex traffic classification, per-hop behavior (PHB), and ACL Committed access rate (CAR) PQ scheduling priority, weighted round robin (WRR), and PQ+WRR queuing Tail drop and weighted random early detection (WRED) Shaping based on port scheduling priority |
|
OAM
|
MPLS-TP OAM
|
CC, LB, LT AIS, RDI LM, DM LCK, TST CSF
|
Ethernet OAM |
ETH-CC, ETH-loopback, ETH-link trace, remote loopback, remote fault detection, RMON (RFC 2819) |
|
Protection |
Equipment-level protection |
1+1 backup for cross-connect, system control, clock processing board, and power unit |
MPLS-TP-based service protection |
LSP/PW linear protection, ring protection Anti-multiple failure protection based on MS-PW LAG, MC-LAG, Dual-homing protection, LPT, ERPS |
|
SDH-/PDH-based service protection |
Linear MSP and MSP ring SNCP E1 1+1 SNCP E1/T1 1+1 tributary protection switch (TPS) |
|
Synchronization |
Supports G.813, Synchronous Ethernet, and IEEE 1588v2 synchronization Adaptive clock recovery (ACR) Two external clock inputs/outputs (2 MHz or 2 Mbit/s) Two external time signals inputs/outputs (1pps+TOD) |