Huawei OSN 9800 U64/U32/U16 and M24 1-port 100G/200G Programmable Line Service Processing Board
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TNU1N401PT53, 1-port 100G/200G Programmable Line Service Processing Board
With 150000ps/nm-C band-Tunable Wavelength-ePDM-100G QPSK/200G 16QAM(SDFEC2, SDFEC, T53) fix optical module
Applied to Huawei OSN 9800 U64/U32/U16 and OSN 9800 M24 subrack
TNU1N401PT53 can work in line or relay mode. It is a programmable line board whose WDM-side rate can be flexibly adjusted to 100G or 200G. The board can be set to support 100G or 200G on a port basis. It supports the setting of 100G or 200G when working as a line board or a regeneration board. The N401P board uses coherent detection technologies and is designated for coherent systems.
The differences between 100G mode and 200G mode lie in the conversions of service signals. The two modes are compared as follows:
The N401P board performs the following conversions: 80 x ODU0/40 x ODU1/10 x ODU2/10 x ODU2e/2 x ODU3/1 x ODU4/80 x ODUflex <-> 1 x OTU4. The OTU4 signal is an optical signal carried over an ITU-T G.694.1-compliant DWDM wavelength.
The same IN/OUT port can transmit a mixture of ODU0, ODU1, ODU2, ODU2e, ODU3, and ODUflex signals, the total bandwidth cannot exceed 100 Gbit/s.
The N401P board performs the following conversions: 160 x ODU0/80 x ODU1/20 x ODU2/20 x ODU2e/4 x ODU3/2 x ODU4/160 x ODUflex <-> 1 x OTUC2. The OTUC2 signal is an optical signal carried over an ITU-T G.694.1-compliant DWDM wavelength.
The same IN/OUT port can transmit a mixture of ODU0, ODU1, ODU2, ODU2e, ODU3, ODUflex and ODU4 signals, the total bandwidth cannot exceed 200 Gbit/s.
Front Panel | |||||||
Valid Slots | |||||||
OSN 9800 U64 Standard subrack: IU1-IU64 OSN 9800 U64 Enhanced subrack: IU1-IU64 OSN 9800 U32 Standard subrack: IU1-IU32 OSN 9800 U32 Enhanced subrack: IU1-IU32 OSN 9800 U16 subrack: IU1-IU14 OSN 9800 M24 subrack: (IU1, IU13), (IU2, IU14), …… , (IU11, IU23), (IU12, IU24) |
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Initial Version: V100R002C10&V100R002C00SPC810 | |||||||
Line mode | |||||||
Function and Feature | 100G Mode | 200G Mode | |||||
Basic functions | Supports the following service conversions: 80 x ODU0 / 40 x ODU1 / 10 x ODU2 / 10 x ODU2e / 2 x ODU3 / 1 x ODU4 / 80 x ODUflex <-> 1 x OTU4 The board supports a mix of ODU0, ODU1, ODU2, ODU2e, ODU3, and ODUflex signals. |
Supports the following service conversions: 160 x ODU0 / 80 x ODU1 / 20 x ODU2 / 20 x ODU2e / 4 x ODU3 / 2 x ODU4 / 160 x ODUflex <-> 1 x OTUC2 The board supports a mix of ODU0, ODU1, ODU2, ODU2e, ODU3, ODU4 and ODUflex signals. |
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Cross-connect capabilities | Supports backplane cross-connections of 80 ODU0, 40 ODU1, 10 ODU2, 10 ODU2e, 2 ODU3, 1 ODU4, or 80 ODUflex signals from/to the cross-connect board. | Supports backplane cross-connections of 160 ODU0, 80 ODU1, 20 ODU2, 20 ODU2e, 4 ODU3, 2 ODU4, or 160 ODUflex signals from/to the cross-connect board. | |||||
License | No license is required. | To configure the board to work in 200G mode, you must obtain a license (1*100G/200G Programmable Line License). | |||||
OTN functions | Supports the OTU4 interface on the WDM side. | Supports OTUC2 interface the WDM side. | |||||
Supports the OTN frame format and overhead processing defined by ITU-T G.709. | OTUC2 layer: supports SM overhead processing. | ||||||
OTU4 layer: supports SM overhead processing. | ODUC2 layer: supports PM overhead processing. | ||||||
ODUk (k=0, 1, 2, 2e, 3, 4, flex) layer: supports PM and TCM overhead processing, and non-intrusive monitoring of PM and TCM overheads. | ODUk (k=0, 1, 2, 2e, 3, 4, flex) layer: supports PM and TCM overhead processing, and non-intrusive monitoring of PM and TCM overheads. | ||||||
Line modulation format | TNU2N401PF51: 100G ePDM-QPSK, 100G ePDM-QPSK wDCM TNU1N401P: 100G ePDM-QPSK |
200G ePDM-QPSK 200G ePDM-16QAM 200G ePDM-8QAM Note: When using a board whose line modulation format is 200G ePDM-QPSK in an 80-wavelength system with a 50 GHz spacing, set the center wavelength to the median of two adjacent standard wavelengths (that is a standard wavelength plus 25 GHz), because the board must use a 100 GHz spacing during transmission. |
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FEC coding | SDFEC2 | SDFEC | |||||
NOTE: Boards that use different FEC modes cannot interconnect with each other. |
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WDM specifications | Supports ITU-T G.694.1-compliant DWDM specifications. | ||||||
Tunable wavelength function | Supported TNU1N401PT53 supports tunable wavelength optical modules that provide for 80 wavelengths tunable in the C band with 50 GHz channel spacing TNU2N401PF51 support tunable wavelength optical modules that provide for 96 wavelengths tunable in the extended C band with 50 GHz channel spacing. |
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Typical channel spacing | TNU1N401PT53: 100G QPSK:50GHz Fix/37.5GHz SuperChannel 200G 16QAM:50GHz Fix/37.5GHz SuperChannel TNU2N401PF51: 100G QPSK(wDCM):50GHz Fix 200G QPSK :75GHz Flex/100GHz fix 200G 16QAM:50GHz Fix 200G 8QAM :62.5GHz Flex/75GHz Flex/100GHz Fix |
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Optical-layer ASON | Supported NOTE: The flex ASON must be enabled for the modulation formats whose channel spacing is greater than 50 GHz, including 200G 8QAM and 200G QPSK. 200G 8QAM supports only 62.5 GHz/100 GHz flex ASON. 200G QPSK supports only 75 GHz/100 GHz flex ASON. Superchannel does not support ASON. |
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Latency measurement | The board supports latency measurement in the WDM-side optical port direction (upstream direction). When higher-order ODU4 cross-connections are created on the board, TCM latency measurement is supported for higher-order ODU4 channels. When lower-order ODUk cross-connections are created on the board, PM/TCM latency measurement is supported for higher-order ODU4 channels, and TCM latency measurement is supported for lower-order ODUk channels. The TNU2N401P board supports PM latency measurement at the ODUC2 layer. The TNU1N401P board does not support latency measurement at the ODUC2 layer. |
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ESC function | Supported | ||||||
PRBS function | Supports the PRBS function on the WDM side. | ||||||
Alarms and performance events monitoring | Monitors BIP8 bytes (Bursty mode) to help locate line failures. Monitors parameters such as the bias current, temperature, and optical power of the laser. Monitors OTN alarms and performance events. |
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Regeneration board | When N401P boards are set to the same WDM-side rate, the WDM-side signals of an N401P board can be regenerated using other N401P boards using of the same WDM-side rate. | ||||||
Test frame | Not supported | ||||||
IEEE 1588v2 | Not supported | ||||||
Physical clock | Only the TNU2N401PF51 board supports the Physical clock. | ||||||
Electrical-layer ASON | Supported | ||||||
Protection scheme | Supports ODUk SNCP. Supports tributary SNCP protection. Supports intra-board 1+1 protection (when working with the OLP/DCP/QCP board). NOTE: When the cross-connect granularity is ODUflex, the board does not support tributary SNCP protection. |
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Loopback | 100G Mode, supported: WDM Side Loopback ODUk (k=0, 1, 2, 3, flex) Channel Loopback |
200G Mode, supported: WDM Side Loopback ODUk (k=0, 1, 2, 3, 4, flex) Channel Loopback |
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Relay mode | |||||||
Function and Feature | 100G Mode | 200G Mode | |||||
Basic functions | Electrical regenerates OTU4 signals at an electrical REG station. | Electrical regenerates OTUC2 signals at an electrical REG station. | |||||
Supported service rate | OTU4: OTN service at a rate of 111.81 Gbit/s | OTUC2: OTN service at a rate of 211.45 Gbit/s | |||||
License | No license is required. | To configure the board to work in 200G mode, you must obtain a license (1*100G/200G Programmable Line License). | |||||
OTN functions | Supports the OTU4 interface on the WDM side. Supports the OTN frame format and overhead processing defined by ITU-T G.709. OTU4 layer: supports SM overhead processing. ODU4 layer: Supports PM and TCM overhead processing and non-intrusive monitoring of PM and TCM overheads |
Supports OTUC2 interface the WDM side. OTUC2 layer: supports SM overhead processing. ODUC2 layer: supports PM overhead processing. |
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FEC coding | SDFEC2 | SDFEC | |||||
Line modulation format | TNU2N401PF51: 100G ePDM-QPSK, 100G ePDM-QPSK wDCM TNU1N401P: 100G ePDM-QPSK |
200G ePDM–QPSK 200G ePDM-16QAM 200G ePDM-8QAM NOTE: When using a board whose line modulation format is 200G ePDM-QPSK in an 80-wavelength system with a 50 GHz spacing, set the center wavelength to the median of two adjacent standard wavelengths (that is a standard wavelength plus 25 GHz), because the board must use a 100 GHz spacing during transmission. |
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Typical channel spacing | TNU1N401PT53: 100G QPSK:50GHz Fix/37.5GHz SuperChannel 200G 16QAM:50GHz Fix/37.5GHz SuperChannel TNU2N401PF51: 100G QPSK(wDCM):50GHz Fix 200G QPSK:75GHz Flex/100GHz fix 200G 16QAM:50GHz Fix 200G 8QAM:62.5GHz Flex/75GHz Flex/100GHz Fix |
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WDM specifications | Supports ITU-T G.694.1-compliant DWDM specifications. | ||||||
Tunable wavelength function | TNU1N401PT53 supports tunable wavelength optical modules that provide for 80 wavelengths tunable in the C band with 50 GHz channel spacing TNU2N401PF51 support tunable wavelength optical modules that provide for 96 wavelengths tunable in the extended C band with 50 GHz channel spacing. |
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Optical-layer ASON | Supported NOTE: The flex ASON must be enabled for the modulation formats whose channel spacing is greater than 50 GHz, including 200G 8QAM and 200G QPSK. 200G 8QAM supports only 62.5 GHz/100 GHz flex ASON. 200G QPSK supports only 75 GHz/100 GHz flex ASON. Superchannel does not support ASON. |
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Test frame, PRBS function, IEEE 1588v2, Physical clock, Electrical-layer ASON, Protection scheme and loopback not supported | |||||||
150000ps/nm-C band-Tunable Wavelength-ePDM-100G QPSK/200G 16QAM(SDFEC2, SDFEC, T53) | |||||||
Parameter | Value | ||||||
100G Mode | 200G Mode | ||||||
Line code format | 100G ePDM-QPSK(SDFEC2) | 200G ePDM-16QAM (SDFEC) | |||||
DGD tolerance (PS) | 90 | 120 | |||||
Transmitter parameter specifications at point S | |||||||
Center frequency (THz) | 192.1 to 196.05 (Fixed grid) 192.09375 to 196.05625 (Flex grid) |
192.1 to 196.05 (Fixed grid) 192.09375 to 196.05625 (Flex grid) |
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Maximum mean launched power (dBm) | 0 | 0 | |||||
Minimum mean launched power (dBm) | -5 | -5 | |||||
Center frequency deviation (GHz) | ±2.5 (Fixed grid) ±1.5 (Flex grid) |
±2.5 (Fixed grid) ±1.5 (Flex grid) |
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Maximum -3 dB spectral width (nm) | 0.3 | 0.3 | |||||
Dispersion tolerance (back-to-back) (ps/nm) | 150000 | 40000 | |||||
Receiver parameter specifications at point R | |||||||
Receiver type | PIN | PIN | |||||
Operating wavelength range (nm) | 1529 to 1561 | 1529 to 1561 | |||||
Receiver sensitivity (dBm) | -16 | -16 | |||||
Minimum receiver overload (dBm) | 0 | 0 | |||||
Maximum reflectance (dB) | -27 | -27 | |||||
Mechanical Specifications | |||||||
Dimensions (H x W x D,mm) | 477.3 x 30.5 x 220.0 | ||||||
Weight (kg) | 4 | ||||||
Typical Power Consumption (W) | 100G Mode: 180 200G Mode: 235 |
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Maximum Power Consumption (W) | 100G Mode: 190 200G Mode: 250 |
Bandwidth |
100G, 200G |
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Features | |
Port |
1-10 |
Q: How many function versions is N401P available?
A: N401P has two versions TNU1 and TNU2, namely TNU1N401PT53 and TNU2N401PF51.
Q: What are the mode of TNU1N401PT53 and TNU2N401PF51?
A:
Board | Working Mode of the Port |
TNU1N401PT53 | 100G_QPSK Mode 200G_16QAM Mode |
TNU2N401PF51 | 100G_QPSK Mode 100G_QPSK wDCM Mode 200G_QPSK Mode 200G_8QAM Mode 200G_16QAM Mode |
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Huawei OSN 9800 U64/U32/U16 and M24 1-port 100G/200G Programmable Line Service Processing Board
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