Huawei OSN 9800 M05/M12/M24 2x100G Wavelength Conversion Board
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TNG1M502DMC01 2x100G service multiplexing into 1x200G/2x100G programmable wavelength conversion board
Apply to OSN 9800 M05, OSN 9800 M12 and OSN 9800 M24, it supports transponder or muxponder mode, bidirectional regeneration mode
TNG1M502DMC01 is mainly used to achieve wavelength tunable and to provide OTN interfaces and ESC
When the service mapping mode is MAC transparent mapping, the LLDP mode of the port is the Receive mode by default. In this case, LLDP packets are not transparently transmitted
Supports client 1+1 protection
Supports intra-board 1+1 protection (implemented with optical protection boards)
The M502DM board is a wavelength conversion board and applies to coherent systems. In the receive direction, the M502DM board receives three types of signals on the client side, which are 10GE LAN, OTU4 and 100GE, maps these optical signals into an OTUC2 or OTU4 signal, and converts the OTUC2 or OTU4 signal into a standard WDM wavelength
Front Panel | ||
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Valid Slots | ||
OptiX OSN 9800 M12 Subrack:IU2-IU13
OptiX OSN 9800 M24 subrack: In 1:1 mode: IU2-IU6, IU8-IU12, IU14-IU18, IU20-IU24; In 1:3 mode: IU2-IU5, IU9-IU12, IU14-IU17, IU21-IU24 OptiX OSN 9800 M05 Subrack: IU2-IU5 |
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Initial version of different subrack: | ||
M12/M24: V100R007C00SPC700 M05: V100R019C10SPC600 |
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Functions and features (in transponder or muxponder mode) | ||
Basic functions | The M502DM board on the client side receives three types of signals, which are OTU4, 100GE and 4 x 10GE. The M502DM converts signals as follows: | |
Transponder mode: | ||
2 x OTU4 <-> 2 x ODU4 <-> 2 x OTU4 2 x 100GE <-> 2 x ODU4 (Bit transparent mapping/MAC transparent mapping) <-> 2 x ODU4 <-> 2 x OTU4 |
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Muxponder mode: | ||
2 x 4 x 10GE <-> 8 x ODU2 (Bit Transparent Mapping(11.1G IMP+BMP)/MAC transparent mapping(10.7G)) <-> ODU4 <-> OTU4 2 x 4 x 10GE <-> 8 x ODU2 (Bit Transparent Mapping(11.1G IMP+BMP)/MAC transparent mapping(10.7G)) <-> 2 x ODU4 <-> OTUC2 2 x 100GE <-> 2 x ODU4 (Bit transparent mapping/MAC transparent mapping) <-> 2 x ODU4 <-> OTUC2 2 x OTU4 <-> 2 x ODU4 <-> OTUC2 |
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Latency measurement | Supports PM and TCM latency measurement | |
Supports PM and TCM latency measurement for upstream higher-order ODU channels Supports PM and TCM latency measurement for upstream lower-order ODU channels when non-OTN services are received on the client side Supports TCM latency measurement for downstream lower-order ODU channels when OTN services are received on the client side |
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WDM specification | Supports DWDM specifications | |
Protection scheme | Supports client 1+1 protectio | |
Supports intra-board 1+1 protection (implemented with optical protection boards) | ||
Tunable wavelength function | M502DM supports tunable wavelengths of WDM-side optical signals in Super C band (1524 nm to 1573 nm) | |
Optical-layer ASON | Supported | |
PRBS test function | Supports the PRBS function on the client side | |
PRBS signals can be sent from the client-side optical port to the WDM side only when the client-side service type is OTU4 and the board works in Muxponder mode The PRBS function in the client-side optical port direction is supported only when the client-side service type is OTU4 |
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Supports the PRBS function on the WDM side | ||
Alarm and performance event monitoring | Monitors BIP8 bytes (Bursty mode) to help locate line failures | |
Monitors OTN alarms and performance events | ||
Monitors parameters such as the bias current, temperature, and optical power of the laser | ||
Supports the remote monitoring (RMON) of Ethernet services | ||
Supports the monitoring of CD and PMD performance | ||
Service encryption | When the client-side service type is 10GE/100GE, the board supports the bidirectional service encryption | |
FEC coding | On the client side: | |
Supports ITU-T G.709-compliant forward error correction (FEC) on the client side when the client-side service type is OTU4 Supports RS_FEC coding when the client-side service type is 100GE |
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On the WDM side: SDFEC2 and SDFEC | ||
OTN function | Supports OTUC2 or OTU4 interfaces on the WDM side | |
Uses the frame formats and overhead processing methods defined in ITU-T G.709 | ||
At the ODU4 layer: | ||
Supports PM overhead processing when 100GE/10GE services are received on the client side. Supports PM and TCM overhead processing when OTU4 services are received on the client side. This board supports non-intrusive monitoring of PM and TCM overheads. |
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Supports PM and TCM overhead processing at the ODU2/ODUC2 layer | ||
Supports SM overhead processing at the OTU4 layer on the client side | ||
Supports SM overhead processing at the OTUC2 and OTU4 layer on the WDM side | ||
ESC function | Supported | |
Functions and features (in bidirectional regeneration mode) | ||
Basic function | The M502DM board applies to electrical regeneration sites to provide the electrical regeneration function for bidirectional optical signals | |
WDM specification | Supports DWDM specifications | |
Tunable wavelength function | M502DM supports tunable wavelengths of WDM-side optical signals in Super C band (1524 nm to 1573 nm) | |
FEC coding | SDFEC2 and SDFEC | |
Latency measurement | TCM section latency measurement is supported for OTU4/OTUC2 channels | |
Optical-layer ASON | Supported | |
Loopback | Optical port outloop is supported | |
Alarm and performance event monitoring | Monitors OTN alarms and performance events | |
Monitors parameters such as the bias current, temperature, and optical power of the laser | ||
Supports CD and PMD performance monitoring | ||
OTN function | 200G regeneration: | |
Supports OTUC2 interfaces on the WDM side Uses the frame formats and overhead processing methods defined in ITU-T G.709 ODUC2 layer: supports PM and TCM overhead processing, and non-intrusive monitoring of PM overheads OTUC2 layer: supports SM overhead processing |
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100G regeneration: | ||
Supports OTU4 interfaces on the WDM side Uses the frame formats and overhead processing methods defined in ITU-T G.709 ODU4 layer: supports PM and TCM overhead processing, and non-intrusive monitoring of PM and TCM overheads OTU4 layer: supports SM overhead processing |
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Pluggable Optical Module Supported | ||
WDM-Side | CFP- 200G-(1529.17nm to 1567.1nm)(DWDM,Tunable,T15)-SMF 40000ps/nm-Extended C band-Tunable wavelength-ePDM-e16QAM (configurable rate and modulation format, coherent, LHD, high optical power, T23)-200G CFP 40000ps/nm-Extended C band-Tunable wavelength-ePDM-e16QAM (configurable rate and modulation format, coherent, LHD, T23)-200G CFP 40000ps/nm-Extended C band-Tunable wavelength-ePDM-e16QAM (configurable rate and modulation format, coherent, LHC, T22)-200G CFP Extended C band-Tunable wavelength-ePDM-200G e16QAM/100G QPSK/etc.(SDFEC2, LHB, T2U)-CFP Super C band-Tunable wavelength-ePDM-200G e16QAM/100G QPSK/etc.(SDFEC2, LHD, F23)-CFP Super C band-Tunable wavelength-ePDM-200G 16QAM/100G QPSK/etc.(SDFEC/SDFEC2, Metro, F15)-CFP Extended C band-Tunable wavelength-ePDM-200G e16QAM/100G QPSK/etc.(Configurable rate and modulation format, Coherent, LHD, A23)-CFP Super C band-Tunable wavelength-200G e16QAM/100G QPSK/etc.(LHD, High optical power, T23)-CFP-PIN |
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Client-Side | QSFP28-100G(4x25G)-1271 to 1331nm(CLR4)-SMF-2km QSFP28-100G(4x25G/28G,Dualrate)-1295nm to 1310nm(LR4)-SMF-10km QSFP28-103.1G/111.8G(4x25G/4x28G, Dualrate)-1310nm(ER4 Lite)-SMF-30km QSFP28-100G(4x25G)-1310nm(ER4)-SMF-40km QSFP28-100G(4x25G)-850nm(SR4)-MPO-MMF-0.1km QSFP+ -40G(4x10G)-1310nm(PSM4)-MPO-SMF-10km |
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Mechanical Specifications | ||
Dimensions (W x H x D,mm) | 237.1x61x 220 | |
Weight (kg) | 3.2 | |
Typical Power Consumption (W) | 132 | |
Maximum Power Consumption (W) | 141 |
Bandwidth |
100G |
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Features | |
Port |
1-10 |
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