Huawei’s OptiX OSN 9800 is a next-generation high-capacity, intelligent, and converged optical and packet Optical Transmission Network (OTN) platform for 100G and beyond.
Based on the industry-leading T-bit universal switching chip, the platform supports OTN, Virtual Circuit (VC) and Partition Knowledge Table (PKT). A high level of integration and a modular design enable service access from 100 Mbit/s to 100 Gigabit Ethernet (GE), with transmission of 100G/200G/400G per lambda, which can be seamlessly expanded to 1T/2T.
Integrated with Multiprotocol Label Switching–Transport Profile (MPLS-TP), OptiX OSN 9800 is designed for the challenges brought about by the explosive growth of the cloud era.
There are 3 types of OSN 9800 subracks, which are:
1. U16/U32/U64, these 3 models are used for electric layer, have centralize cross-connection boards, works with service boards like tributary boards and line boards for OTN service, or boards for SDH/packet services. The cross-connection capacity for each slot of these subracks are 400Gbps OTN service, or 2000Gbps packet service, or 80Gbps SDH service. The difference between them is that they each have 16/32/64 slots for service boards.
2. M24, this is newly introduced subrack. M24 boards is used for electric layer, and has centralize cross-connection boards, too. M24 subrack have 12 big slots, each of them can be used as 2 small slots. The cross-connection capacity for each small slots are 100Gbps OTN service, 40Gbps VC-4 service, and all slots on the whole subrack share 80Gbps VC-3/VC-12 cross-connection capacity.
3. UPS subrack, this subrack is used for optical layer boards, like the muxer/demuxer, amplifiers, also for Transponder boards. In some area, there is also a similar subrack called P18, the difference is this subrack is wider, and have 18 slots for service boards on a DC powered subrack, while the UPS only have 16 slots for service boards on a DC powered subrack.
This table shows the main different between Huawei OptiX OSN 9800 Series.
Item |
|||||
Dimensions (HxWxD) |
847x442x295mm |
1900x498x295mm |
2200x600x600mm(with cabinet) |
747.2x442x295mm |
397x442x295mm |
Number of Service Slots |
14 |
32 |
64 |
12/24 |
16 |
Channel Spacing |
• 50/100GHz fixed grid for 40/80-ch • Flex-grid |
• 50/100GHz fixed grid for 40/80-ch • Flex-grid |
• 50/100GHz fixed grid for 40/80-ch • Flex-grid |
• 100 GHz fixed grid for 40/48 wavelengths |
• 100 GHz fixed grid for 40/48 wavelengths |
Wavelength Range |
DWDM: 1529.16 nm to 1560.61 nm (C Band, ITU-T G.694.1) |
DWDM: 1529.16 nm to 1560.61 nm (C Band, ITU-T G.694.1) |
DWDM: 1529.16 nm to 1560.61 nm (C Band, ITU-T G.694.1) |
DWDM: 1529.16 nm to 1560.61 nm (C band, ITU-T G.694.1) |
DWDM: 1529.16 nm to 1560.61 nm (C band, ITU-T G.694.1) |
Rate per Channel (Max.) |
100G, 200G, 400G, 1T, 2T |
100G, 200G, 400G, 1T, 2T |
100G, 200G, 400G, 1T, 2T |
100G/200G/400G/600G |
100G/200G/400G |
Power Supply |
-48VDC/-60VDC |
-48VDC/-60VDC |
-48VDC/-60VDC |
–48 V DC/–60 V DC |
–48 V DC/–60 V DC |
This essay helps you learn more about Huawei OptiX OSN 9800 Series.
By the way, you can check the price of Huawei OptiX OSN 9800 Series.