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IPassolink NEC
24
NEC Confidential Presentation: Yes Submission : Yes For “customer’s name” on 2011/xx/xx iPASOLINK 200/400/1000 Next generation PASOLINK © NEC Corporation 2010 Page 1 2011/02/08 8th ver.
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Page 1: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

iPASOLINK 200/400/1000Next generation PASOLINK

© NEC Corporation 2010Page 1

2011/02/08 8th ver.

Page 2: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx© NEC Corporation 2011

2

Positioning of iPASOLINK in Mobile Backhaul

Access Aggregation Metro Core

12-way

iPASOLINK 1000

Domain

Capacity

2-way

12-way Nodal Redundancy High Speed INTF SDH and All IP with CWDM

iPASO400

2G3G

2G3G

iPASO200

iPASO400

BSC/RNC aGW

LTEiPASO200

iPASO1000

Wired TDM Wired EthernetWireless TDM Wireless Ethernet

iPASO1000iPASO1000

iPASO1000 iPASO1000

iPASO1000 iPASO1000

iPASO200

iPASOLINK 200

4-way

iPASOLINK 400

4-way Nodal Redundancy Pay as grow architecture

Compact packet radio 2-way radio (iPASO200) Redundancy (iPASO200)

Page 2

Page 3: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx© NEC Corporation 2011

iPASOLINK Radio Transmission Method

TDMTDM(E1)Ethernet Ethernet

TDM(E1)

2) Hybrid Radio (Native Ethernet + Native TDM)

Ethernet

NEO, Ceragon IP-10, HW RTN Hybrid Ver.

PWE

SW PWE

EthernetTDM(E1)

Ethernet EthernetTDM(E1)

3) Packet Radio ALU MPR, HW RTN Packet Ver.

MU

X

IP over E1 MU

X

IP over E1 TDMTDM(E1)

Ethernet EthernetTDM(E1)

1) TDM Radio Stratex Eclipse

PWE

SW PWE EthernetTDM(E1)

Ethernet EthernetTDM(E1)

4) Hybrid + Packet Radio

TDM(E1) TDM(E1)

iPASOLINK

TDMS

WS

W

Page 3

Page 4: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx© NEC Corporation 2011

iPASOLINK capability for Evolution of Mobile Backhaul

BS

TDM Based Network

2/3G Backhaul

BSC/ RNC

MMES-GWeNB

IP Based Network

BS

TDM Based Network

2/3G/LTE Backhaul

BSC/ RNC

Option-2ALL IP based Backhaul

Option-1TDM + IP based Backhaul

TDM based Backhaul

MMES-GW

eNB

IP Based Network

BS

2/3G/LTE Backhaul

BSC/ RNCPWE PWE TDM Core

Only iPASOLINK can make these transitions on the same platform

Page 4

Page 5: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx© NEC Corporation 2011

iPASOLINK 100 iPASOLINK 200 iPASOLINK 400 iPASOLINK 1000Operation Frequency 6/7/8/10/11/13/15/18/23/26/28/32/38/42 GHz

Radio Nodal capability One Way Two way 4 Way 12 Way(Rel.1)

Interfaces

Main Board 16xE1 + 2xFE (or 4xGbE) + 2xGbE(SFP Slots)

16xE1 + 2xFE (or 2xGbE) + 2xGbE(SFP Slots) 4xGbE

Optional16xE1 cardchSTM-1 cardMSE card (16xE1 TDM PWE)

16xE1 cardchSTM-1 with APS option card4xGbE card (RJ-45x2 + SFPx2)MSE card (64xE1 TDM/ATM PWE)10GbE card (for iPASOLINK 1000 Rel.2)CWDM card (for iPASOLINK 1000 Rel.2)

Packet Switching Capacity 20 Gbps 40 Gbps 48 Gbps

Ethernet FunctionalityPort based & Tag based VLANCoS/ ToS/ Diffserv/ MPLS EXP based Priority ControlStrict priority, D-WRR with Bandwidth ManagementPolicing with CIR/EIR

Synchronization Synchronous EthernetIEEE 1588v2

TDM Cross-Connect E1 Cross-Connect with ADM for Radio and chSTM-1TDM SW Capacity E1 x 126chRadio Protection - HS/HS,HS/SD,FD

Resiliency Packet RSTP RSTP, MSTP, ITU-T G.8031/8032v2TDM E1 SNCP with Radio Ring

Ethernet OAM IEEE 802.1ag Service OAM and ITU-T Y.1731 PM

Other Functions - XPIC, Traffic Aggregation XPIC, Traffic Aggregation, ATM Aggregation

iPASOLINK Series Functionalities Summary

Page 5

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NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

iPASOLINK 200 features overview

▐ iPASOLINK200 - High Performance Tail and Repeater solution 1U single board, all-in-one model 16xE1, 2xFE (or 4xGbE) and 2xGbE(SFP) ports 2 AMR Modems are equipped on single main board. Configurable as 1+0, 1+1, 2+0 and 1+0 XPIC, by Software Key. Additional sub-board slots are available for 16E1, STM-1 or PWE. SNCP TDM ring and LAG for Ethernet

▐ Full TDM to Full IP▐ Built-in TDM Cross-Connect(126E1x126E1) and Power-full Packet Switch▐ Enhanced system gain with new ODU(IHG)▐ Ether OAM, Sync ETH

© NEC Corporation 2010Page 6

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NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

LCT/NMS

SFP(GbE)

16xE1

ALM/DSC

USBMemorySlot

LEDIndication(status/alarm)

Power Supply(Option:Second power inlet)

Fan unit

2xFE or 4xGbE (option)

AUX(DI/DO Option)

Optional card slot (Mounted on main board)•16E1•Channelized STM-1•Multi service engine (TDM/PWE)

ODU interfaceiPASO100: 1 portiPASO200: 2 ports

“2 x FE (Electrical)” on the main board is set as “default”. By software key, it can be changed into “4 x GbE (10/100/1000Base-T)“2xSFP(GbE)” can be set either “Optically” or “Electrically”. Same SFP type is required.“LCT/NMS interface” has “NE 1” and “NE2“. These interfaces are to be usedfor IDU-IDU back-to-back stacking.“AUX” interface” can be used e.g. for taking in alarms of air-conditioners, doors etc. Sync. ETH Clock module will be mounted onto the main board for Sync ETH, chSTM-1 etc..

iPASOLINK200Equipment Layout and Configuration Options

Page 7

1U

Page 8: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

iPASOLINK 400 features overview

▐ iPASOLINK400 – Flexible Converged Node for tail or 4way Nodal 1U with main card and 4 universal slots model. Main card with 16E1, 2xFE and 2 GbE (SFP). Flexible AMR modem configuration, 1+0, 2 to 4+0, 2x (1+1), 2x (1+0 XPIC) , 1x(1+1

XPIC), and modem-less optical node. Various Interface Card type

• 16E1 card, 4xGE card, MSE card (for TDM PWE, ATM PWE), STM-1 card Converged Node for Wireless/Optical

▐ Full TDM to Full IP▐ Built in TDM Cross-Connect(126E1x126E1) and Power-full Packet Switch▐ Enhanced system gain with new ODU(IHG)▐ ETH OAM, Sync Ether

© NEC Corporation 2010Page 8

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NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Universal Slot Card VariationModem (QPSK/16/32/64/128/256QAM, 7/14/28/56MHz)16E1 TDM interface with digital cross connect (126E1 x 126E1)Multi-service engine for PWE3 interface (TDM/ATM PWE)  ( This function is available as the combination of nxE1 interface cards) STM-1 interface with 63E1 ADM function (electrical/optical, SFP), ASP supported as an option.4xGbE interface(2xRJ45+2xSFP)AUX card for ALM/EOW/DSC

LCT/NMS/FE *(or GbE)x2

SFPx2 16xE1ALM/DSC/NMS

USBMemorySlot

UniversalSlot #4

UniversalSlot #2

UniversalSlot #3

UniversalSlot #1

Fan unitPower Supply(Option:   Second PS)

(Sync. ETH Clock module will be mounted onto the main card.)

iPASOLINK400Equipment Layout and Configuration Options

Page 9

1U

*FE1 interface is used for FE (or GbE) or “NE1”. “NE1” interface to be used for IDU-IDU back-to-back connection.

Page 10: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

▐ Design Concept; 3U with 12 way(Rel.1)/10 way(R3) Nodal Radio Redundant Main card (TDM/L2 Switch matrix with CPU) 10GbE, and CWDM Metro Network interface (R3) Metro Ethernet Upgradable (i.e. MPLS-TP)

▐ Multi way Nodal Radio Satisfy most Nodal Node requirements Full Compatible with iPASOLINK400 modems

▐ Intelligent Converged Node Gateway for High Speed Optical Metro Network for LTE

• Higher capacity optical network interface at Metro side. (R3)– 10GbE– CWDM

• Provides upgradable interoperability with Core MPLS cloud Independent handling of Native traffic

• TDM with SNCP Ring• Carrier Class L2 switching with Ether Ring and 10GbE for Packet Traffic. (R3)

Scalable SW capacity from Multi-way nodal to Metro Optical node.

© NEC Corporation 2010Page 10

iPASOLINK 1000 features overview

Page 11: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

iPASOLINK1000Equipment Layout and Configuration Options

Universal Slot Card Variation (same as iPASOLINK 400) Main board RedundancyHigh Speed Interface card (10GbE, CWDM) (R3)Main Board is not compatible with iPASOLINK 400 TERM card for NMS connectionNo E1 in Main Board

Page 11

3U

Universal Slot (10 slots/R3)

Main Board Slot

Universal slots(R1) orHigh Speed Interface Card Slot (R3)Power Supply Unit SlotTerm card Slot

Fan Unit

Page 12: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

High Speed Interface Slot ( R3)

4 Universal Card Slots 4 Universal Card Slots

10 Universal Card Slots (R3) 10 Universal Card Slots (R3)

Main Card (Not a common card) MAIN INTFC CPU / Main SW (L2/TDM) / CLK LCT/NMS Port / ALM

Term Slot NMS port

10 GbE CWDM

Universal Interface Slot MODEM card

INTFC card

Multi-function card

MODEM

16E1

STM-1

MSE

etc.4xGbE

Scalable Modular Architecture - Universal Slot -

1000 series1000 series

400 series400 series Universal SlotsUniversal Slots Any Universal Interface Card ( Modem/INTFC) can

be mounted on any Universal Interface Slot  

Page 12

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NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Pay as grow Flexible Soft-key Parameters iPASOLINK 100

Radio Common Key Radio Bit Rate (Fixed, Free or AMR) NEO ODU(NHG/NHG2) Compatibility.

Radio Capacity Key Radio Capacity per on-line modem (10/20/50/100/150/200/300/400Mbps)

ETH & TDM Key RJ45 Port Usage in main board(2xFE or 2xFE+2xGbE or 4xGbE) SFP Port Usage in main board LAG and LACP for Ethernet Line (in Future) Ethernet OAM(CC/LT/LB) Ethernet OAM(LM/DM) (in Future) E1 SNCP : Clock module is necessary STM-1 MUX/DEMUX : STM-1 card and Clock module are necessary

Advanced Key Sync ETH Clock (in Future) : Clock module is necessary IEEE 1588v2 PTP clock*(in Future) : (in Future) Clock module is necessary

Page 13

Note: The following function and key is for iPASOLINK200 Only1)Radio redundancy2)ETH traffic aggregation@N+0 Radio3)XPIC function

Page 14: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Pay as grow Flexible Soft-key Parameters iPASOLINK 200

Radio Common Key Radio Redundancy (1+1) : for 1+1 HS and 1+1 TP ETH Traffic Aggregation Radio Bit Rate (Fixed, Free or AMR) XPIC NEO ODU(NHG/NHG2) Compatibility.

Radio Capacity Key Radio Capacity per on-line modem (10/20/50/100/150/200/300/400Mbps)

ETH & TDM Key RJ45 Port Usage in main board(2xFE or 2xFE+2xGbE or 4xGbE) ** SFP Port Usage in main board LAG and LACP for Ethernet Line (in Future) Ethernet OAM(CC/LT/LB) Ethernet OAM(LM/DM) (in Future) E1 SNCP : Clock module is necessary STM-1 MUX/DEMUX : STM-1 card and Clock module are necessary

Advanced Key Sync ETH Clock (in Future) : Clock module is necessary IEEE 1588v2 PTP clock*(in Future) : (in Future) Clock module is necessary

Note **: for iPASOLINK200 only

Page 14

Page 15: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Pay as grow Flexible Soft-key Parameters iPASOLINK 400/1000

Radio Common Key Radio Redundancy (1+1) per modem pair : for 1+1 HS and 1+1 TP ETH Traffic Aggregation Radio Bit Rate (Fixed, Free or AMR) XPIC per modem pair NEO ODU(NHG/NHG2) Compatibility NEO/c IDU Compatibility*(in Future) : Modem for NEO/c is necessary.

Radio Capacity Key Radio Capacity per on-line modem (10/20/50/100/150/200/300/400Mbps)

ETH & TDM Key RJ45 Port Usage in main board(2xFE or 2xGbE)(400 only)* SFP Port Usage in main board QoS Classify (4 or 8 level) VLAN table(256 or 4094 VLAN)* LAG and LACP for Ethernet Line (in Future) Ethernet Ring Protection* (in Future) Ethernet OAM(CC/LT/LB) Ethernet OAM(LM/DM) (in Future) E1 SNCP : Clock module is necessary STM-1 APS Protection* : STM-1 card is necessary STM-1 MUX/DEMUX : STM-1 card and Clock module are necessary SFP Port Usage per optional card (per card)*

Advanced Key Sync ETH Clock (in Future) : Clock module is necessary IEEE 1588v2 PTP clock*(in Future) : Clock module is necessary Additional PWE E1 channels (per 16E1 up to 63E1)* (in Future) : MSE card is necessary TDM over MPLS*(in Future) : MSE card is necessary ATM over MPLS*(in Future) : MSE card is necessary ATM/IMA (ATM Aggregation)* (in Future) : MSE card is necessary

Note *: for iPASOLINK400/1000 only

Page 15

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NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

50

60

70

80

90

100

6 7 10 13 15 18 23 26 32 38Frequncy(GHz)

Sys

tem

Gai

n(dB

)

NEO HP with NHG2 iPASOLINK with IHG

(256QAM/56MHz)Enhanced System GainEnhanced System GainAdvanced Technologies and Superb

Performance•High Modulation scheme (up to 256 QAM) for native Ethernet and native TDM transmission with high spectrum efficiency achieved by 256 QAM and by dual polarization transmission technologies.•AMR Function with hitless modulation switchover.

High System Gain•High System Gain achieved by Low Density Parity Check (LDPC) Forward Error Correction (FEC) technology and distortion cancelling technique called linearizer allowing smaller antennas and reducing platform cost.

Frequency Agility and Easy Tuning•Field tunable to your licensed radio frequency channel within sub-band through Web based LCT.

Enhanced Radio Performances with new ODU (IHG)

Page 16

Page 17: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Expanded AMR functionality

    CS*

Modulation

Mode 17 MHz*

Mode 214 MHz*

Mode 328 MHz*

Mode 456 MHz*

QPSK 11 Mbps 26 Mbps 53 Mbps 110 Mbps

16 QAM 26 Mbps 53 Mbps 110 Mbps 220 Mbps

32 QAM 33 Mbps 66 Mbps 136 Mbps 273 Mbps

64 QAM 40 Mbps 80 Mbps 160 Mbps 320 Mbps

128 QAM 47 Mbps 94 Mbps 189 Mbps 388 Mbps

256 QAM - 110Mbps 220 Mbps 441 Mbps

*: Channel Separation -: Not appliedNote: Maximum throughput at 64 byte-passed rate based.

Available AMR operation mode

AMR is a technology to improve robustness mainly in the packet transmission environment by utilizing thermal threshold difference between modulation hierarchy such as QPSK and 256 QAM. On the fine day, the operator can get the 220Mbps throughput over the link which is designed for 53Mbps throughput as illustrated in the figure.

iPASOLINK support hitless modulation switchover from 256QAM to QPSK as shown in table.

Page 17

Page 18: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

iPASOLINK XPIC (Cross Polarization Interference Canceller)

iPASOLINK can double its transmission capacity up to 880Mbps in 56MHz bandwidth by adopting NEC’s state of the art XPIC technology. The additional required components for XPIC are;

Dual polarized antenna, Additional ODU, Associated IF cable kit, Soft-key upgrade in IDU.

(In case of iPASOLINK200, no cable connection is required at the front panel for XPIC )

Page 18

iPASOLINK400 can be configured 2 pair of XPIC links with one IDU.

Page 19: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Double the capacity with same IDU

iPASOLINK 200 IDU

56MHz

400MB400Mbps400Mbps

400Mbps400Mbps

Single configuration

ODU

ODU

800Mbps

ODU

ODU

800Mbps

V

H800Mbps800Mbps

56MHz

XPIC (1 CH)

400MB

400MB

XPIC with ETH Traffic Aggregation configuration

ODU ODU

iPASOLINK 200 IDU

iPASOLINK 200 IDU

iPASOLINK 200 IDU

XPIC is available for 14/28/56MHz.

Same IDU doubles Link Capacity.

Page 19

Page 20: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Example of the network configurationExample of the network configurationwith iPASOLINK with iPASOLINK

Access Aggregation

16xE116xE1

16xE1 32xE1

STM-1STM-1

STM-1 transparent

16E1/MDR x 2 orChannelized STM-1

1) E1 with Ethernet Transmission

2) STM-1 with Ethernet transmission

Ethernet

Ethernet

FE or GbE

FE or GbEFE or GbE

Page 20

Page 21: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Easy Link Extension by 2way IDU

Just ODU and Antenna make new link

No additional IDUNo additional rack spaceNo external cablesNo cable wiring works

Traditional wayTraditional way

New wayNew way

New siteNew site

New siteNew site

It makes CAPEX downaround 20%

Page 21

Page 22: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Risk free migration to All IPRisk free migration to All IP

The migration from TDM based network to All IP network is achievedby simply adding the MSE (Multi Service Engine) card.

Hybrid Radio

MSE

16xE1

Packet RadioMigration

MSE: Multi Service Engine

Page 22

Note: Network needs to be synchronized by sync ETH , etc.

(PWE)

16xE1

Page 23: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx

Flexible PWE configurationFlexible PWE configurationiPASOLINK can configure PWE at both access site and aggregation site.It allows operator easy configuration of the network.

Page 23

PWE

E1/TDM E1/Ethernet

Access Aggregation1) PWE at Access site

E1/TDM E1/Ethernet

Access Aggregation2) PWE at Aggregation site

PWE

core

core

E1/TDM

Access AggregationInitial Configuration

core

or

Page 24: iPaso100_200_400_1000_v8.0_20110301 to zte

NEC Confidential

Presentation: Yes

Submission : Yes

For “customer’s name” on 2011/xx/xx24 iPASOLINK Introduction

Thank youThank you


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