TNU1N402PT53

Huawei OSN 9800 U64/U32/U16 2-port 100G/200G or 1-port 400G Programmable Line Service Processing Board

(0 reviews) | 2 sold | 5 QA

0 in stock      inquire lead time

15 People watching this product now!
PN: 03031XDS Category: Tags: , ,
Hardware Compatibility

Hardware Compatibility x

Backed up by our experienced pre-sales support team, and volume documentation, to avoid purchasing incompatible hardware.

Hardware Tested

Hardware Tested x

In order to avoid hardware malfunction, each equipment will be strictly tested before delivery and the test report will be packed inside equipment and delivered together. Learn more

Description

TNU1N402PT53, 2*100G/200G or 1*400G programmable line service processing board

With 150000ps/nm-Extended C Band-Tunable Wavelength-ePDM-100G QPSK/200G 16QAM/400G 16QAM(SDFEC2, SDFEC, T53) fix optical module

Applied to Huawei OSN 9800 U64/U32/U16 subrack

N402P has functional versions of TNU1 and TNU2, TNU1N402P has only one variant: TNU1N402PT53, TNU2N402P has three variants of TNU2N402PT52, TNU2N402PT51, and TNU2N402PF51

TNU1N402PT53 is a programmable line board whose functions vary depending on the working mode of the port. N402P can work in line or relay mode, and the working mode of the port can be flexibly adjusted. N402P uses coherent receiving technologies and applies to coherent systems. It provides two ports that can be set to different working modes, and the working mode can be flexibly adjusted. Both port 1 and port 2 can be set to 100G mode or 200G mode, and only port 1 can be set to 400G mode.

Tech Specs
Front Panel
N402P
Valid Slots
OptiX OSN 9800 U64 Standard subrack: IU1-IU64
OptiX OSN 9800 U64 Enhanced subrack: IU1-IU64
OptiX OSN 9800 U32 Standard subrack: IU1-IU32
OptiX OSN 9800 U32 Enhanced subrack: IU1-IU32
OptiX OSN 9800 U16 subrack: IU1-IU14
Initial Version: V100R002C10SPC300
Line mode
Basic function The signal conversion that the N402P board performs varies depending on the modes of port 1 and port 2. Details are as follows:
When both port 1 and port 2 are set to 100G mode, the board performs mutual conversion between ODUk signals with the total bandwidth not exceeding 200 Gbit/s and two channels of OTU4 signals.
When one port is set to 100G mode and the other port is set to 200G mode, the board performs mutual conversion between ODUk signals with the total bandwidth not exceeding 300 Gbit/s and one OTU4 signal plus one OTUC2 signal.
When both port 1 and port 2 are set to 200G mode, the board performs mutual conversion between ODUk signals with the total bandwidth not exceeding 400 Gbit/s and two channels of OTUC2 signals.
When port 1 is set to 400G mode, the board performs mutual conversion between ODUk signals with the total bandwidth not exceeding 400 Gbit/s and one OTUC4 signal.
Cross-connect capabilities Supports service grooming with cross-connect boards. The service granularities are the sum of granularities supported by port 1 and port 2.
Port in 100G mode 80 x ODU0/40 x ODU1/10 x ODU2/10 x ODU2e/2 x ODU3/1 x ODU4/80 x ODUflex.
Port in 200G mode 160 x ODU0/80 x ODU1/20 x ODU2/20 x ODU2e/4 x ODU3/2 x ODU4/160 x ODUflex.
Port in 400G mode 320 x ODU0/160 x ODU1/40 x ODU2/40 x ODU2e/8 x ODU3/4 x ODU4/320 x ODUflex.
License The number of licenses is the sum of licenses required by port 1 and port 2.
OTN function The OTN function varies depending on the port mode.
Port in 100G mode 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.
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.
Port in 200G mode Supports the OTUC2 interface on the WDM side.
OTUC2 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.
Port in 400G mode Supports the OTUC4 interface on the WDM side.
OTUC4 layer: supports SM overhead processing.
ODUC4 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.
WDM specifications Supports ITU-T G.694.1-compliant DWDM specifications.
Tunable wavelength function Supported
TNU2N402PT52 supports tunable wavelength optical modules that provide for 80 wavelengths tunable in the C band with 50 GHz channel spacing
TNU1N402PT53, TNU2N402PF51 and TNU2N402PT51 support tunable wavelength optical modules that provide for 96 wavelengths tunable in the extended C band with 50 GHz channel spacing.
Typical channel spacing TNU1N402PT53 100G QPSK: 50 GHz Fix/37.5 GHz SuperChannel
200G 16QAM: 50 GHz Fix/37.5 GHz SuperChannel
400G 16QAM: 2 x (50 GHz Fix/37.5 GHz SuperChannel)
TNU2N402PT52 200G QPSK: 75 GHz Flex/100 GHz fix
400G QPSK: 2 x (75 GHz Flex/100 GHz fix)
200G 16QAM: 50 GHz Fix
400G 16QAM: 2 x (50 GHz Fix)
TNU2N402PT51 100G QPSK: 50 GHz Fix
200G QPSK: 75 GHz Flex/100 GHz fix
400G QPSK: 2 x (75 GHz Flex/100 GHz fix)
200G 16QAM: 50 GHz Fix
400G 16QAM: 2 x (50 GHz Fix)
200G 8QAM: 62.5 GHz Flex
400G 8QAM: 2 x (62.5 GHz Flex)
TNU2N402PF51 100G QPSK(wDCM): 50 GHz Fix
200G QPSK: 75 GHz Flex/ 100GHz fix
400G QPSK: 2 x (75 GHz Flex/100 GHz fix)
200G 16QAM: 50 GHz Fix
400G 16QAM: 2 x (50 GHz Fix)
200G 8QAM: 62.5 GHz Flex/75 GHz Flex/100 GHz Fix
400G 8QAM: 2 x (62.5 GHz Flex/75 GHz Flex/100 GHz Fix)
NOTE:
During the modulation format switching of the board, if the channel spacing increases, the modulation format switching fails, an error message indicating wavelength conflict is displayed, and the system prompts that the current channel spacing is too small to switch the modulation format. In this case, you need to change the channel spacing to a larger value before switching the modulation format.
For example, modulation format A whose channel spacing is 50G can be directly switched to modulation format B whose channel spacing is 37.5G, but cannot be directly switched to modulation format C whose channel spacing is 75G. In this case, you need to change the channel spacing to a larger value first. Otherwise, the modulation format switching fails.
Optical-layer ASON Supported
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.
ESC function Supported
PRBS function Supported on the WDM side
Monitoring of alarms and performance events 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.
Regeneration board Supported
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 TNU2N402P board supports PM latency measurement at the ODUC2 layer.
The TNU1N402P board does not support latency measurement at the ODUC2 layer.
Test frame Not supported
IEEE 1588v2 Not supported
Physical clock Supported
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.
Port in 400G mode: Do not support intra-board 1+1 protection.
Loopback WDM-side loopback Supported
Channel loopback Port in 100G mode ODUk (k=0, 1, 2, 3, flex)
Port in 200G mode or 400G mode ODUk (k=0, 1, 2, 3, 4, flex)
Relay mode
Basic function The N402P board applies to electrical regeneration sites to provide the electrical regeneration function for optical signals using port 1 and port 2. Details are as follows:
When both port 1 and port 2 are set to 100G mode, the board electrically regenerates two channels of OTU4 signals.
When both port 1 and port 2 are set to 200G mode, the board electrically regenerates two channels of OTUC2 signals.
When port 1 is set to 400G mode, the board electrically regenerates one OTUC4 signal.
License The number of licenses is the sum of licenses required by port 1 and port 2.
OTN function The OTN function varies depending on the port mode.
Port in 100G mode 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
Port in 200G mode Supports the OTUC2 interface on the WDM side.
OTUC2 layer: supports SM overhead processing.
ODUC2 layer: supports PM overhead processing.
Port in 400G mode Supports the OTUC4 interface on the WDM side.
OTUC4 layer: supports SM overhead processing.
ODUC4 layer: supports PM overhead processing.
WDM specifications Supports ITU-T G.694.1-compliant DWDM specifications.
Tunable wavelength function Supported
TNU2N402PT52 supports tunable wavelength optical modules that provide for 80 wavelengths tunable in the C band with 50 GHz channel spacing
TNU1N402PT53, TNU2N402PF51 and TNU2N402PT51 support tunable wavelength optical modules that provide for 96 wavelengths tunable in the extended C band with 50 GHz channel spacing.
Typical channel spacing TNU1N402PT53 100G QPSK: 50 GHz Fix/37.5 GHz SuperChannel
200G 16QAM: 50 GHz Fix/37.5 GHz SuperChannel
400G 16QAM: 2 x (50 GHz Fix/37.5 GHz SuperChannel)
TNU2N402PT52 100G QPSK: 50 GHz Fix
200G QPSK: 75 GHz Flex/ 100 GHz fix
400G QPSK: 2 x (75 GHz Flex/100 GHz fix)
200G 16QAM: 50 GHz Fix
400G 16QAM: 2 x (50 GHz Fix)
TNU2N402PT51 100G QPSK: 50 GHz Fix
200G QPSK: 75 GHz Flex/100 GHz fix
400G QPSK: 2 x (75 GHz Flex/100 GHz fix)
200G 16QAM: 50 GHz Fix
400G 16QAM: 2 x (50 GHz Fix)
200G 8QAM: 62.5 GHz Flex
400G 8QAM: 2 x (62.5 GHz Flex)
TNU2N402PF51 100G QPSK(wDCM): 50 GHz Fix
200G QPSK: 75 GHz Flex/100 GHz fix
400G QPSK: 2 x (75 GHz Flex/100 GHz fix)
200G 16QAM: 50 GHz Fix
400G 16QAM: 2 x (50 GHz Fix)
200G 8QAM: 62.5 GHz Flex/75 GHz Flex/100 GHz Fix
400G 8QAM: 2 x (62.5 GHz Flex/75 GHz Flex/100 GHz Fix)
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.
400G dual-carrier does not support ASON.
Test frame, PRBS function, IEEE 1588v2, Physical clock, Electrical-layer ASON, Protection scheme, Loopback
150000ps/nm-Extended C Band-Tunable Wavelength-ePDM-100G QPSK/200G 16QAM/400G 16QAM(SDFEC2, SDFEC, T53)
Parameter Value
100G Mode 200G Mode/400G Mode
Line modulation format 100G ePDM-QPSK(SDFEC2) 200G ePDM-16QAM(SDFEC)
DGD tolerance (ps) 90 120
Transmitter parameter specifications at point S
Center frequency (THz) Extended C band:
191.3 to 196.05 (Fixed grid)
191.29375 to 196.05625(Flex grid)
Extended C band:
191.3 to 196.05 (Fixed grid)
191.29375 to 196.05625(Flex grid)
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)
Maximum -3 dB spectrum 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 1568 1529 to 1568
Receiver sensitivity (FEC enabled) (dBm) -16 -16
Minimum receiver overload (FEC enabled) (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) 4.8
Power Consumption (W) PortNMS Typical Power Consumption (W) Maximum Power Consumptiona (W)
When both port 1 and port 2 are set to 200G_16QAM mode or the port 1 is set to 400G_16QAM mode 251 263
When both port 1 and port 2 are set to 100G_QPSK mode 21 228
Additional information
Bandwidth

100G, 200G, 400G

Features

,

Port

1-10

Q&A

Q: How many function versions is N402P available?

A: N402P has two versions TNU1 and TNU2;

NU1N402P has only one variant: TNU1N402PT53, TNU2N402P has three variants of TNU2N402PT52, TNU2N402PT51, and TNU2N402PF51.

Q: Is license required when configure N402P OSN 9800?

A: Please view N402P Application:

Application scenario Working Mode of the Port Function License
IN1/OUT1 IN2/OUT2
Line mode 100G_QPSK Mode
100G_QPSK wDCM Mode
100G_QPSK Mode
100G_QPSK wDCM Mode
Port 1 and port 2 have the same service mapping path. Each port implements mutual conversion between ODUk signals with the total bandwidth not exceeding 100 Gbit/s and one OTU4 signa No license is required.
100G_QPSK Mode
100G_QPSK wDCM Mode
200G_16QAM Mode or 200G_QPSK Mode
or 200G_8QAM Mode
The port in 100G mode implements mutual conversion between ODUk signals with the total bandwidth not exceeding 100 Gbit/s and one OTU4 signal.
The port in 200G mode implements mutual conversion between ODUk signals with the total bandwidth not exceeding 200 Gbit/s and one OTUC2 signal.
The port in 200G mode requires one license.
200G_16QAM Mode or 200G_QPSK Mode
or 200G_8QAM Mode
100G_QPSK Mode
100G_QPSK wDCM Mode
200G_16QAM Mode or 200G_QPSK Mode
or 200G_8QAM Mode
200G_16QAM Mode or 200G_QPSK Mode
or 200G_8QAM Mode
Port 1 and port 2 have the same service mapping path. Each port implements mutual conversion between ODUk signals with the total bandwidth not exceeding 200 Gbit/s and one OTUC2 signal Every port requires one license, and two licenses are required.
400G_16QAM Mode or 400G_QPSK Mode
or 400G_8QAM Mode
NONE Mode Perform mutual conversion between ODUk signals with the total bandwidth not exceeding 400 Gbit/s and one OTUC4 signal, Two licenses are required.
Board-Level Relay Mode 100G_QPSK Mode
100G_QPSK wDCM Mode
100G_QPSK Mode
100G_QPSK wDCM Mode
Port 1 and port 2 have the same service mapping path. Each port regenerates one OTU4 signal No license is required.
200G_16QAM Mode or 200G_QPSK Mode
or 200G_8QAM Mode
200G_16QAM Mode or 200G_QPSK Mode
or 200G_8QAM Mode
Port 1 and port 2 have the same service mapping path. Each port regenerates one OTUC2 signal, Every port requires one license, and two licenses are required.
400G_16QAM Mode or 400G_QPSK Mode
or 400G_8QAM Mode
NONE Mode Regenerate one OTUC4 signal Two licenses are required
Port-level regeneration The 400G mode does not support port-level regeneration. Two ports are independent of each other and can be set to relay mode and common service mode respectively

100G mode is short for 100G_QPSK Mode.
200G mode is short for 200G_16QAM Mode, 200G_8QAM Mode or 200G_QPSK Mode.
400G mode is short for 400G_16QAM Mode, 400G_8QAM Mode or 400G_QPSK Mode.
TNU1N402P does not support the 200G_QPSK Mode, 400G_QPSK Mode, 200G_8QAM Mode, and 400G_8QAM Mode.
TNU2N402PT52 does not support 200G_8QAM Mode, 400G_8QAM.
a: Only the TNU2N402PF51 board support 100G_QPSK wDCM.

Q: What are the mode of  TNU1N402P and TNU2N402P?

A:

Board Working Mode of the Port
TNU1N402PT53 100G_QPSK Mode
200G_16QAM Mode
400G_16QAM Mode
TNU2N402PT52 100G_QPSK Mode
200G_16QAM Mode
400G_16QAM Mode
200G_QPSK Mode
400G_QPSK Mode
TNU2N402PT51 100G_QPSK Mode
200G_QPSK Mode
200G_8QAM Mode
200G_16QAM Mode
400G_QPSK Mode
400G_8QAM Mode
400G_16QAM Mode
TNU2N402PF51 100G_QPSK Mode
100G_QPSK wDCM Mode
200G_QPSK Mode
200G_8QAM Mode
200G_16QAM Mode
400G_QPSK Mode
400G_8QAM Mode
400G_16QAM Mode

Q:  What are the function differences between port modes?

A:

Function and Feature Working Mode of the Port
100G mode 200G mode 400G mode
Supported port Port 1, port 2 Port 1, port 2 Port 1. And port 2 must be set to NONE Mode.
Carrier technology Single-carrier technology Single-carrier technology The board in 400G mode uses the dual-carrier technology and transmits or receives signals at port 1 and port 2.
Basic function Line mode 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 port supports a mixture 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 port supports a mixture of ODU0, ODU1, ODU2, ODU2e, ODU3, ODU4, and ODUflex signals.
Supports the following service conversions:
320 x ODU0/ 160 x ODU1/ 40 x ODU2/ 40 x ODU2e/ 8 x ODU3/ 4 x ODU4/ 320 x ODUflex <-> 1 x OTUC4.
The ports support a mixture of ODU0, ODU1, ODU2, ODU2e, ODU3, ODU4, and ODUflex signals.
Relay mode Electrically regenerates OTU4 signals at an electrical REG station.
Supported service rate: OTU4, at a rate of 111.81 Gbit/s
Electrically regenerates OTUC2 signals at an electrical REG station.
Supported service rate: OTUC2, at a rate of 224.61 Gbit/s
Electrically regenerates one OTUC4 signal at an electrical REG station.
Supported service rate: OTUC4, at a rate of 449.22 Gbit/s
FEC SDFEC2 SDFEC SDFEC
NOTE:
Boards that use different FEC modes cannot interconnect with each other.
Line modulation format TNU2N402PF51: 100G ePDM-QPSK, 100G ePDM-QPSK wDCM
Other boards: 100G ePDM-QPSK
200G_QPSK Mode: 200G ePDM-QPSKa
200G_16QAM Mode: 200G ePDM-16QAM
200G_8QAM Mode:200G ePDM-8QAM
400G_QPSK Mode: 2 x 200G ePDM-QPSKa
400G_16QAM Mode: 2 x 200G ePDM-16QAM
400G_8QAM Mode:2x200G ePDM-8QAM
Number of licensesb N/A 1 2
a: When using a board whose line modulation format is 200G ePDM-QPSK or 2 x 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.
b: The license name is 1*100G/200G Programmable Line License.

 

Q: Is there any board which can replace N402P?

A:

Original Board Substitute Board
TNU1N402P TNS2N502
TNU1N402P TNU6N502
TNU1N402P TNS7N502
TNU2N402P None
Reviews (0)

Reviews

There are no reviews yet.

Be the first to review “TNU1N402PT53”

Your email address will not be published. Required fields are marked *

You have to be logged in to be able to add photos to your review.

Why Thunder-link.com

10 Years Experience

As a global leading professional Huawei network hardware and solution provider, we have delivered Huawei, ZTE, Nokia, CISCO, Fiberhome, etc, equipment to 500+ customer groups in 90+ countries over the past 10 years. Know more

Premium Quality Guaranteed

Strict 3-Level Quality Control procedure: 1st-Level inspection; 2nd-Level In-stock test; 3rd-Level 24 hour pre-delivery test to guarantee premium quality. Know more

Value over price

What we offer to our customers is value rather than price. We make customers enjoy the benefit of our reliable delivery products and generate more value to the greatest extent. Know more

Tailored Technical Support

We provide customers personalized and professional tech support by remote diagnosis, fault-location and troubleshooting. "We are here to help you instantly when you need it."

Flexible Payment

We continuously offer flexible payment methods such as Wire Transfer, Paypal, L/C, Western Union and Alipay, to help customer enjoy a more convenient shopping experience. Know more

Official Document Resource

We provide official and extensive document resources to guide our customers to targetly solve the problem they may meet. Know more

1 Year Warranty Guaranteed

Our products come with 1 year warranty. Customers can ask for a repair, replacement or refund for a major product failure. Know more

Fast Global Shipping

We won't stop to develop rapid and cost effective shipping options, provide the excellent experience for our global customers. Know more

One Stop Solution

We provide not only network products but also network proposal, mainstream and cost efficient solution to assist customers eliminate the concerns.