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COMMUNICATIONS TEST & MEASUREMENT SOLUTIONS www.jdsu.com/ont Key features Overview 40GE, 100GE and OTU3/OTU4 are here and the challenge of transition from a proof of concept into an economically viable product must be met. e technical discontinuities driven by 40GE and 100GE are formidable and without the correct test and measurement equipment they are nearly impossible. is 40/100G test solution is specifically designed from the ground up to meet the needs of developers, manufacturers and installers of 40GE,100GE and OTU3/OTU4 equipment. It offers full scalability to cover the current and future challenges of hardware, firmware and soſtware development through manufacturing and installation and into the turn up phase. Target Applications Component test: Powerful and flexible electrical interface (via an adapter) and unframed BERT stream generation and lambda mapping with migration up to L3 and beyond Transponder test: Compatibility and interoperability validation at both optical and electrical interfaces System integragion of complex 40GE, 100GE and OTU3/OTU4 elements: Validation and verification of key components against standards interoperability tests. Service turn-up: Installation, validation and interoperability tests of 40GE, 100GE and OTU3/4 equipment 40GE and100GE on one integrated module. OTU3/4 support in preparation Wide range of unframed 40G and 100G bit rates including 39.81, 41.25, 43.018, 44.57, 44.58, 103.12, and 111.81 Gbps Offers all the key features required for component manufacturers with strong focus on transponder validation and integration, network equipment manufacturers and service providers Unique support of static and dynamic skew for in-depth testing of 40GE and 100GE applications Testing and validation of optical and electrical level functionality with unframed BERT, PCS Layer (also known as MLD), and QoS for Ethernet and IPv4/v6 traffic, this includes various types of frame formats like QinQ, MPLS and more Prepared for support of various types of 40G and 100G transponders. Initial CFP support with optional in-depth MDIO capabilities Applications aligned to needs and timing of market – in depth hardware and physical layer applications followed by comprehensive QoS applications for Ethernet, IP and OTU3/4 JDSU ONT-503/506/512 Optical Network Tester 40/100G CFP-based Test Module

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Page 1: Electronic Test Equipment Rental l TRS-RenTelco - …...Optical Network Tester 40/100G CFP-based Test Module 2 ONT-5xx OPTICAL NETWORK TESTER Technical Description 40/100G test solution

COMMUNICATIONS TEST & MEASUREMENT SOLUTIONS

www.jdsu.com/ont

Key features

Overview40GE, 100GE and OTU3/OTU4 are here and the challenge of transition from a proof of concept into an economically viable product must be met. The technical discontinuities driven by 40GE and 100GE are formidable and without the correct test and measurement equipment they are nearly impossible. This 40/100G test solution is specifically designed from the ground up to meet the needs of developers, manufacturers and installers of 40GE,100GE and OTU3/OTU4 equipment. It offers full scalability to cover the current and future challenges of hardware, firmware and software development through manufacturing and installation and into the turn up phase.

Target ApplicationsComponent test: Powerful and flexible electrical interface (via an adapter) and •unframed BERT stream generation and lambda mapping with migration up to L3 and beyondTransponder test: Compatibility and interoperability validation at both optical and •electrical interfacesSystem integragion of complex 40GE, 100GE and OTU3/OTU4 elements: •Validation and verification of key components against standards interoperability tests.Service turn-up: Installation, validation and interoperability tests of 40GE, 100GE •and OTU3/4 equipment

40GE and100GE on one integrated module. OTU3/4 support •in preparation

Wide range of unframed 40G and 100G bit rates including •39.81, 41.25, 43.018, 44.57, 44.58, 103.12, and 111.81 Gbps

Offers all the key features required for component •manufacturers with strong focus on transponder validation and integration, network equipment manufacturers and service providers

Unique support of static and dynamic skew for in-depth •testing of 40GE and 100GE applications

Testing and validation of optical and electrical level •functionality with unframed BERT, PCS Layer (also known as MLD), and QoS for Ethernet and IPv4/v6 traffic, this includes various types of frame formats like QinQ, MPLS and more

Prepared for support of various types of 40G and 100G •transponders. Initial CFP support with optional in-depth MDIO capabilities

Applications aligned to needs and timing of market – in •depth hardware and physical layer applications followed by comprehensive QoS applications for Ethernet, IP and OTU3/4

JDSU ONT-503/506/512Optical Network Tester 40/100G CFP-based Test Module

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Technical Description

40/100G test solution in a portable unit

Modular HardwareThe heart of the power and flexibility of the 100G test solution is the concept of the transponder carrier card. This board allows the critical high speed differential electrical signals from the 40G/100G engine to be interfaced with transponders, ICs, systems or any other 100G element that needs to be developed, tested, manufactured and commissioned.The signals are handed off to the device under test via an adapter. Today it is a CFP interface, but later interfaces like CXP and QSFP as well as versions for transport based on the proposed OIF MSA for 100G DWDM transponders may be added. Electrical access is available by the optional electrical access CFP. This 10x10G CFP module brings out the electrical I/O on SMA cables, see below for technical details.

40G/100G EngineThe 40G/100G Engine handles all the Ethernet/IP (L3 and below) requirements and contains as examples a powerful array of BERTs, a MAC/IP core and framers. It also contains low noise synthesizers developed from our market leading jitter solutions to allow precise control of the clocks across the full required range. The engine is ready for 40GE, 100GE and OTU3/OTU4 applications and builds on our leadership in high bit rate transport and datacom test and measurement.

Application Types

Unframed or Raw BERTThis layer focuses on testing and validating the physical interface and photonic layer. Especially critical in the transponder development & integration phase.

PCS (multi-lane) BERTThe PCS layer is key to allowing 40G & 100G traffic to be effectively carried over the physical layer. In depth applications help validate and test all aspects of the PCS layer.

L2/L3 trafficEthernet & IP traffic are what 40GE & 100GE are all about. Powerful applications help fully test and stress every aspect of L2 & L3. Since this runs in parallel with our PCS and physical layer applications if errors do occur the user can quickly identify the cause of the problem.

Interfaces and I/O

TX/RX clock ratesRates 39.81G (SDH/SONET), 41.25G (40GEthernet),

43.018G (OTU2), 44.57G (OTU3e1), 44.58G (OTU3e2),

103.12G (100G Ethernet), 111.81G (OTU4) Adjustable In 0.1 ppm increments to ± 500 ppm

(Note: the actual transponder used may support a lower range)Clock source Internal reference, recovered from RX,

external clock reference via clock module input

or via high speed sync clock input

CFP InterfaceAccording to CFP MSA 1.2Reference clock 1/16 and 1/64 of electrical lane rate switchablePower class 1, 2 and 3. Class 4 depending on transponder actual optical power

outputTransponder MDIO control mode

internal or external

Internal mode Control by the ONT directly

External mode Control via a RJ45 connector on the module (optional with BN 3061/92.52)

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General I/OFast trigger output General purpose high speed,

low jitter outputNominal 600 mV into 50 ohmsSupported trigger Fast clock with 1/4 clock rate

single-ended SMAGeneral purpose I/O triggers Two with application

specific functions (TBD) via SMATX clock output 1/16 or 1/64 of the electrical lane

rate selectable for synchronization or trigger for eye diagrams

Nominal 1200 mV into 100 ohms differential via SMA

High-speed sync TX clock input Frequency locked to external clock at 1/16 or 1/64 of nominal

electrical lane rateRange 100 mV to 1000 mV into 100 ohms

differential via SMA Pull in range > 100 ppm

Unframed ApplicationUnframed 4/10Channel BERT

Channels used 4 at 40G rates using 40G Ethernet option

10 for 100G rates

Data rates supported

Application 40G Bit rate (Gbps) Lane speed (Gbps)

OC-768 39.8131 9.95328Ethernet 41.25 10.3125OTU3 43.01841 10.7546OTU3e1 44.57097 11.1427OTU3e2 44.5833 11.14583100GEthernet 103.125 10.3125OTU4 111.8099 11.1809

TXPatterns 27-1, 29-1, 223-1 and 231-1 PRBS normal and inverted,

32 bit data word, square wave

Channel clock Common phase locked clockData word Independently set for every channelChannel pattern Independently skewed for PRBS to give per channel offsetSkewing modes Synchronous, staggered, user

Bit error generation Selected channels, all channels

Low jitter trigger (1/4 electrical line rates, approx. 2.5 GHz)

Eye trigger for oscilloscope

RXPatterns 27-1, 29-1, 223-1 and 231-1 PRBS normal and inverted,

32 bit data word,Failure count of 0 and 1

Absolute and ratio

Count 0 and 1, absolute and ratio

Results Summary, per channel

Error Count and ratio, start/stop and timed measurements

Alarm Pattern loss

Unframed 10x10.3G BERT pattern configuration screen

Unframed 10x10.3G BERT pattern tabular results screen

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Unframed 20 Channel BERT for 4x25 Gear BoxesTest pattern mode 10x2 (5x G multiplexed onto

1 phys 10G lane or 20 channel PRBS on 10 phys lanes

Test pattern 27-1, 29-1, 223-1 and 231-1 PRBS normal and inverted, square wave

Results Summary, per channel

Features as unframed 10 channel BERT

Per Lambda Mapping Feature (option with BN 3061/92.52)The 100G BERT offers a unique feature which allows the individual virtual lanes to be grouped on a per-lambda basis greatly increasing the depth and breadth of testing that can be done over the link.

Visibility 25G optical lanes

Virtual lanes Mapped onto different lambdas, based on gearbox in CFP module

Lambda groups setup screen

Lambda groups results screen

PCS TestingEach lane is clocked from common clock.

TX/RX scrambler On/off independent (only available for L2/L3 layer testing)

TX ignore link faults On/off(only available for L2/L3 layer testing)

PayloadAs follows or client signal from higher layer application.

Pattern mode Virtual lane, aggregate

PRBS pattern PRBS 231-1, 223-1, 29-1 normal and inverted

TX lane offset Auto staggered, user-defined offset

User-defined offset 10 to 64 000 bits (depends on PRBS pattern)

Aggregate pattern Scrambled idles

Error insertionSimultaneous error and alarm insertion is supported

Type Invalid sync header, Invalid alignment marker,

User defined alignment marker,BIP-8 error,

Bit error (all lanes/single lane),Block error

Range (depends on type) All lanes, single laneTrigger Once, rate, burst once/cont.Rate 9.9 × 10-3 to 1 × 10-10

Burst N events off, M events on N, M 1 up to 16 777 215 eventsSync header value Editable 0 to 3Alignment marker M0, M1, M2 Editable 0 to 255BIP-8 error mask Editable 0 to 255

Alarm insertionSimultaneous error and alarm insertion is supported

Type LOBL (loss of block lock), LOAML (Loss of alignment marker),

HI BER (high bit error rate),Local and remote fault,

Bit error (total, per lane),Errored zeros (total, per lane),

Errored ones (total, per lane)Range (depends on type) All lanes, single lane

Trigger (depends on type) Continuous, burst once/cont.Burst N events off, M events on TX/RX

N, M 8 up to 134 217 720 events(local and remote fault)

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Error evaluationType Invalid sync header,

Invalid alignment markerLoss of alignment marker event,

BIP-8 error, BIP-8 bit error,LOBL (loss of block lock event),

HI BER event,Local and remote fault event,

Block errorEvaluation (depends on type) Count, ratio, rate, seconds

Summary and per lane

Alarm evaluationType LOBL (loss of block lock),

Summary,per lane,

LOAML (loss of alignment marker)*,LOA (loss of alignment),

HI BER (high bit error rate),Local and remote fault,

Link down (only available for higher layer testing)

Evaluation Seconds

Lane alignment marker insertionFor all virtual lanes User-defined

PCS lane mappingTX lane mapping User-programmable (shift)

Lane rotator allows manual allocation and re-alignment of virtual lanes

Lane skew generation (optional with BN 3061/92.52)Static skew per physical lane 0 to 64 000 bitsResolution 1 bit per physical lane

Lane Skew generation screen. Allows injection of large static skew into each of the physical lanes for validation of PCS receivers under extreme conditions.

Dynamic skew (for selected lanes, optional with BN 3016/94.56)This mode requires an external clock to drive the reference clock input at line rate/16 /i.e. approximately 644 MHz for 100 GE).

Mode Manual, triangleRange ± 32 UISettable resolution 25 mUIMinimum skew rate 25 mUI/sMaximum skew rate 1000 mUI/s

AnalysisLane alignment marker For all lanesLane ID For all lanes Lane skew For all lanes (0 to 32 000 bits)Lane skew variation In bits and pico seconds

Block statistics 64B/66BTransmit block types Total, data, controlReceive block types Total, data, control, good, erroredEvaluation (depends on type) Count, ratio

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40GE and 100G Ethernet/IPHighlights

Sophisticated PCS• layer testing with dynamic block errors, coding statisticsAdditional • VPLS and MAC-in-MAC Ethernet frame formatsUp to • 256 traffic flows and independent receiver filters (optional)Up to • 2 VLANs and 2 MPLS tags; in any combinationOnline • hitless traffic controlReal-time QoS, service disruption and packet jitter • analysis per flowIPv4/IPv6• (optional)

InterfaceThe 40GE & 100GE Ethernet/IP applications use the on board CFP slot allowing use of IEEE standards compliant CFP optics as well as other types based on the CFP MSA 1.2 standard.

Basic Ethernet FeaturesOne MAC flow for TX and RX supported.

Ethernet GeneratorFrame type Ethernet II, SNAP,

VPLS with inner and outer MACMAC-in-MAC 802.1ah

Ethertype Editable value

VLAN taggingType Available for all frame types

single IEEE 802.1q, double (Q-in-Q) IEEE 802.1ad

Editable parameters TPI, priority, CFI/DEI, VID

MAC addressesDestination address User defined, multicast, broadcastSource address User defined, factory defaultMAC frame size User defined, JumboPredefined values 64, 128, 256, 512,

1024, 1280, 1518, 2000, 9000, 9600, 10000

User defined 64 to 10k bytesDynamic frame size Incr./decr., random,

Max/min user definedSelectable increment step size

1 to 10k bytes

VPLS framing

Inner frame structureAs per standard Ethernet frame including MAC addresses, VLAN tags (2), Frame Type, Ethertype and payload

Outer frame structureParameters MAC addresses, frame type, EthertypeTunnel and VC label Label, CoS, TTLControl Word Reserved bits, sequence number

MAC-in-MAC 802.1ah framing

Inner frame structureAs per standard Ethernet frame including MAC addresses, VLAN tags (2), Frame Type, Ethertype and payload

Outer frame structure (PBB/PBT)Parameters MAC addressesB-Tag TPI, VID, Priority, DEII-Tag TPI, SID, Priority, DEI, NCA, Res1, Res2

Payload of MAC framesType JDSU test frame, PRBS patternJDSU test frame Time stamp and sequence numberFilling pattern Editable digital word, PRBS 231-1PRBS pattern PRBS 231-1 and inverted

Flow controlModes Generation, emulation, analysis Generation of PAUSE frames Off, once, continuousOnce Number of frames per shot 1 to 216

Pause frame interval Editable 60 ns to 10 sPause quanta Editable 0 to 64k / 0 to 3.35 msEmulation of flow control Throttling on/offAnalysis of PAUSE frames See analyzer

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Traffic Generator

Traffic controlMode Bandwidth controlled, gap controlledTrigger Continuous, once (bandwidth controlled)Continuous Ongoing traffic as definedOnce Triggers generation of programmed number of

frames/bursts per flow (see traffic profiles – burst)

All flows are started synchronously

Gap controlled trafficGives the user precise and direct control over the IPG sequence generated. Resolution of 1 byte. Can be used in combination with multiple flows (option) IP / multi streams, BN 3061/94.54.

Traffic profile for bandwidth controlled traffic Traffic type Constant, burst, back to backFrame size Editable, fixed values,

Dynamic incr./decr., random Back to back (enables max. bandwidth by forcing the traffic to min IPG)

On/off

Constant modeBandwidth Adjustable utilization in Mb/s and %Utilization accuracy 0.1%

Burst modePeak, sustained bandwidth Adjustable utilization

in Mb/s and %Burst size 1 to 64k framesUtilization accuracy 0.1%

Traffic profile for gap controlled trafficTraffic type Constant IPG, incr./decr. IPG, random IPGFrame size Editable, fixed values,

Dynamic incr./decr and randomIPG constant 1 to 232 bytesIPG incr./decr. start/stop min to 210 bytes IPG step size 1 to 64k bytesIPG random min/max values min to 64 bytes

MAC error insertion (any flow or per flow)Error type MAC, Runt, Oversized, FCS erroredTriggering Once, continuous, burst once/burst cont.Rate 9.9 × 10-3 to 1 × 10-9

Burst M errored, N non errored framesM, N 1 to 224 frames

MAC error insertion (per flow only)Error type (test frame) Loss, misinsertion,

duplication, swappingError type (test pattern) Bit error Triggering Once

Generator statisticsBandwidth Current and average, Mb/s or %,

plus graphicsBytes total CountFrames total Count and ratePause frames Count, rate, ratioMAC bandwidth per flow Current and average in Mb/sUtilization per flow Current and average in %Bytes per flow CountFrames per flow Count, rate, ratio

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Ethernet Analyzer

MAC flow filteringThe flow filter defines the parameters particular flows have to fulfil to pass the filter and to be analyzed in detail. Others are not looped through to the per flow analysis. Besides definable values, don’t cares are also offered

Frame type Ethernet II, SNAP,VPLS with inner and outer MAC

MAC-in-MAC 802.1ahEthertype Editable value

VLAN taggingType Available for all frame types

Single IEEE 802.1q, double (Q-in-Q) IEEE 802.1ad

Editable parameters TPI, Priority, CFI/DEI, VID

MAC addressesDestination address EditableSource address Editable

VPLS framing supported, see Ethernet GeneratorMAC-in-MAC framing supported, see Ethernet Generator

Total Link Analysis (Non Flow Selective)

Error counts MAC types Errored , FCS errored, runt, oversizedEvaluation Count, rate, ratio, seconds

MAC frame/Byte countsBytes TotalFrames Total, good, errored,

Broadcast, Multicast, PauseEvaluation (type dependent) Count, rate, %, and graphicsPause quanta and time Last, min, max , count, rate, ratio

Bandwidth/utilizationTotal used bandwidth and utilization Bandwidth Current, average in Mb/sUtilization (used bandwidth/link bandwidth)

Current, average in %

Frame sizeResults Min., max., averageFrame size distribution Count, rate, ratio

Graphical display of resultsDistribution classes 64, 65 to 127, 128 to 255, 256 to 511, 512 to 1023, 1024

to 2000, >2000

Analysis per Flow

Evaluation of the traffic flows

Filtered In bandwidth Bandwidth of all filtered flowsBandwidth Current, average in Mb/sUtilization (used bandwidth/link bandwidth) Current, average in %

Bandwidth/utilization measurements per flowBandwidth of single filtered flowsTypes Current MAC, current payload, average MAC,

average payload Bandwidth (used bandwidth/link band-width)

Mb/s

Utilization (link) in %

Frame counts per flowTypes Bytes, frames Evaluation Count, rate, ratio

QoS measurements per flowGraphical error/alarm matrix for all active flows with current and history results. Results of particular flows are selectable .

QoS alarms LPAC (Loss of Performance Assessment Capability) cor-

responds to “no sync of test frame possible “NFTF (No

Flow Test Frame) QoS errors Lost, duplicated, misinserted,

out of order framesEvaluation (type dependent) Count, rate, ratio, secondsThroughput MAC/IP Bandwidth, utilization in B/s and % Transfer delay Min., max., average, variation (packet jitter)

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BERT measurements (single flow)BERT alarms LPAC (Loss of Performance Assessment Capability)

Corresponds to “no sync of test frame possible” Pattern loss

BERT errors Bit errorEvaluation (type dependent) Count, rate, ratio, seconds

Service disruption measurements per flowGraphical service disruption matrix for all active flows with “Threshold exceeded” and “Disruption” results. Results of particular flows are selectable Disruption results are given for any disruption occurring which is above the disruption time threshold

Port disruption (non flow selective)Disruption result Longest

Flow selectiveDisruption result Shortest, longest, lastParameters Duration, size, typeSize 1 to 232 framesType Lost, duplication, out of order, Misinsertion, time-

out, link alarm

Disruption countersResults Total disruptions, disruptions exceeding thresholdEvaluation Count, rate, seconds

Packet jitter analysis per flowPacket jitter is usually caused by queuing and routing across or buffering in a switched transport networks. The final effect of high packet jitter is the number of rejected packets.Instantaneous Jitter is defined as the difference between packet spacing of the transmitter compared to packet spacing of the receiver. Instantaneous jitter is a measure of jitter dynamics.

Instantaneous jitter Current, Peak, Average, Minimum in ns Hits in count values

Hit threshold editable 10 ns to 10 s

Advanced Packet FeaturesRequires option BN 3061/94.54 (IP/Multi-streams)

MAC/IP multi-stream Up to 256 fully independent streams with JDSU test frame payload

MPLS labeling (per flow)Type Available for Ethernet II and SNAP frames with IP header,

Multiple labels up to 2 Editable parameters Label, CoS (class of service/exp), TTL

IPv4/IPv6 Is supported for all frame types except VPLS and MAC-in-MAC

IPv4/IPv6/UDP/TCP settings (per flow)IP types IPv4, IPv6IPv4 header ToS, DSCP, Flags, Protocol, TTL source and destination addressIPv6 header Traffic class, flow label, next header, hop limit, source and

destination address UDP, TCP header Source and destination ports

IPv4 error insertion (any flow or per flow)Error type Header errorTriggering Once

Bandwidth/utilization measurements per flowTypes Current IP, current TCP/UDP, average IP, average TCP/UDPBandwidth Mb/sUtilization in %

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Accessories

CFP - CFP Actives CableA CFP = CPP active cable based on parallel multimode optics (BN 3061/92.99)

User-defined transponderDate rates All data rates in 100G and 40GE

10 * 10G Electrical CFP Interface BN 306192/98This adapter is designed to meet the needs of developers who want to be able to develop and debug CFP components and optics pre-CFP.The native electrical adapter brings out the CAUI-like interface on a SMA pigtailed cable allowing connectivity to prototype boards and systems. No control or power signals are brought out.This is a passive adapter and therefore the electrical parameters are determined by the CAUI interface that the adapter is connected to.The cable assembly is removable and can be replaced by the user.

Electrical eye at 11.18 Gbps at SMA connector at the end of the cable

DetailElectrical signal accessed via high-density co-ax connector mounted on front panel of card. Pigtailed cables with the high-density co-ax connector on one end and SMA male connectors on the other are used to connect to the DUT.

Electrical signal Differential with 20 RX and 20 TX lines (i.e. 10 pairs in each direction). An additional pair brings out a

CFP reference clock (electrical lane speed 1/16 or 1/64, user selectable).

Data rates Supports all unframed ratesCable length ~30 cm

TXFixed level Differential with ~800 mV swingNominal impedance 100 ohms (differential)

All lanes have fixed timing and are driven by the same –reference clock.A degree of electrical pre-emphasis is offered to compensate –for the length of cable and PCB trace. The exact drive length is a complex factor of PCB material, layout and ASIC i/o characteristics.

The physical layer application allows normal and high pre-emphesis on the TX signal at the CAUI.

RXElectrical signal DifferentialSensitivity range 400 - 1200 mVNominal impedance 100 ohms (differential).Remark:The electictrical interface card is laboratory grade equipment and has no specific ESD protection so care must be taken while han dling cables etc. Full ESD precautions must be taken

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Order information

MainframesBN 3075/01 ONT-503 Optical Network Tester

3-slot mainframe with 15” TFT display to take any combination of modules.Please check number of slots required per module.

BN 3075/92.45 Carrying case

BN 3075/94.01 Calibration report

BN 3062/01 ONT-506 Optical Network Tester

6-slot mainframe with 15” TFT display to take any combination of modules. Please check number of slots required per module.

BN 3062/92.45 Carrying case

BN 3062/94.01 Calibration report

BN 3061/01 ONT-512 Optical Network Tester

12-slot rack mount mainframe to take any combination of modules. Please check number of slots required per module.

BN 3061/94.01 Calibration ReportBN 3061/92.01 Rack mount kit

It is required to install a support bar in the rack when mounting the ONT-512 by using the rack mount kit.

Some modules are only available for the ONT-503. The BN starts in this case with BN 3075/...

Options

100G Base versionBN 3061/92.50 100G Module CFP slot – V2

supports unframed 100G rates (103.125G & 111.8G) and at 103.125G PCS BERT and Ethernet.Requires 3 slots

BN 3061/94.51 Additional 40G rates for 100G baseAdds unframed bit rates at 39.81G, 41.25G, 43.01G, 44.57G and 44.58G and supports at 40G Ethernet.Requires BN 3061/92.50

40G Base versionBN 3061/92.51 40G Module CFP slot – V2

Unframed bit rates at 39.81G, 41.25G, 43.01G, 44.57G and 44.58G and supports at 40G Ethernet. Requires 3 slots

BN 3061/94.50 Additional 100G rates fro 40G baseSupports unframed 100G rates (103.125G & 111.8G) and at 103.125G PCS BERT and Ethernet.Requires BN 3061/92.51

Options

BN 3061/92.52 Physical layer validation. This includes features such as skew generation, lambda mapping, VL rotation and MDIO access.Requires BN 3061/92.50 or BN 3061/92.51

BN 3061/94.56 Skew variation. This adds the ability to generate dynamic skew over a range of ± 16 UI on the physical CAUI interface. Requires BN 3061/92.52 or BN 3061/92.52

BN 3061/94.54 IP/multi streams. This application gives additional IP functionality including generation and monitoring of QoS with up to 256 streams.Requires BN 3061/92.50 or BN 3061/92.51

Upgrades

BN 3061/82.52 Physical layer validation application. This includes features such as skew generation, lambda mapping, VL rotation and MDIO access. Factory upgradeRequires BN 3061/92.50 or BN 3061/92.51

Accessories

BN 3061/92.97 User-defined transponder.For delivery information please contact JDSU.

BN 3061/92.98 10 x 10G electrical interface10 x 10.3/11.18G electrical access CFP with CAUI access, terminated via high density co-ax SMA connectors. For delivery information please contact JDSU.

BN 3061/92.99 CFP – CFP active cableFor delivery information please contact JDSU.

JDSU offers a wide range of optical power meters, sources and attenuators. Contact your local sales representative for details.

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Test & Measurement Regional Sales

NORTH AMERICATEL: +1 866 228 3762FAX: +1 301 353 9216

LATIN AMERICATEL: +1 954 688-5660FAX: +1 954 3454668

ASIA PACIFICTEL: +852 2892 0990FAX: +852 2892 0770

EMEATEL: +49 7121 86 2222FAX: +49 7121 86 1222

www.jdsu.com/test

ONT-5xx OPTICAL NETWORK TESTER

Product specifications and descriptions in this document subject to change without notice. © 2010 JDS Uniphase Corporation 30162741 003 0510 40-100G.DS.TNT.TM.AE May 2010

JDSU 100 G PortfolioOnly JDSU has the complete 40/100 G Test Portfolio that covers the photonic layer through components and systems to installation and turn-up of 40 and 100 G services. The products below highlight some of our unique test applications to help accelerate your time to market.

Optical Test AccessThe MAP-200 Optical Test Platform provides optical signal conditioning, routing, and power measurement and is a critical addition to the ONT 40/100GE solution. With its industry-leading 14 optical test modules, users can characterize the optical layer with the precision and detail required for new advanced formats. Forty and 100 GE are based on multiple parallel optical streams at 10 or 28 G. The MAP-200 provides modules that allow for streams to be split onto individual fibers and tested independently.

Only with each signal on an independent fiber allow for measurements of critical parameters such as optical lane power, optical signal-to-noise ratio (OSNR), receiver sensitivity, or eye mask margin. Also, industry-leading, low loss optical attenuator and optical switch modules ensure that the test fixture does not exceed tight loss budgets, while still allowing manipulation of optical attenuation or noise injection. The MAP-200 and ONT, work together to identify general photonic layer issues or issues only present on one specific lane and offer a detailed view into the quality of the transmission not found viewing the data layer exclusively.

Optical Stress Testing using HydraThe IEEE 802.3ba standard defines the 100 G transmission as four 25 G WDM channels each with stressed receiver sensitivity that must be tested with 802.3ba-compliant stressed signals. The JDSU Hydra LR1021 produces just such a required stressed signal on the individual wavelength. The Hydra Compliance Test System can accommodate electrical or optical data returns when used with the ONT 40/100 GE solution. The Hydra system automates module, host card, IC, and system level testing to make SRS compliance fast, easy, and accurate by generating a compliant stressed eye. When used with an appropriate sampling scope, the Hydra and ONT 40/100 GE solution forms a complete test system.

Optical Spectrum Analysis OSA-500RNew technologies bring new challenges. Tight channel spacing (50 GHz) which results in overlapping spectra come along with high date rate networks such as 40/100 G. In this environment OSNR measurement becomes more complex to achieve. To fulfill these requirements specialized high performance test sets are needed.The OSA-500R now offers a new technique for measuring the true OSNR in reconfigurable optical add-drop multiplexer (ROADM) systems and in 40/100 G systems. Besides, the signal analysis capabilities ensure a precise measurement of the power level even for very high data rates.

MAP-200 with 100GE Mux / Demux module plus VOA, Optical Power Meter and Optical Switches