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DSA8300 Digital Serial Analyzer Sampling Oscilloscope
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1. There are specific reference receiver groupings supported for the 80C07B See the 80Cxx Optical Module datasheet for detailed information There are specific reference receiver groupings supported for the 80C12B See the 80Cxx Optical Module datasheet for detailed information The clock recovery trigger pick off Option CRTP for the 80C10C can support trigger pick off for data rates to gt 43 Gb s 10 Mask test sensitivity of the 80C08D reduced by 1 dBm with internal clock recovery options 11 Mask test sensitivity of the 80C10C reduced by 0 6 dBm with internal clock recovery trigger pick off Option CRTP www tektronix com 9 Datasheet Clock recovery for optical testing In many optical applications there is no data clock directly available to provide a reference signal for acquiring the signals from the device under test In these situations it is necessary to recover the clock from the data signal The Tektronix 8000 Series of sampling oscilloscope products provides a complete complement of clock recovery solutions to meet this need Each of these solutions is fully calibrated so that users do not need to do any manual calibration of the system to take into account any losses due to data pick off being routed to the input of the clock recovery unit Shown below is a clock recovery solutions selection guide with the key specifications for each solution to help you select the solution s most appropria
2. 12 Electrical clock recovery sensitivity is for differential input and varies with the input clock rate See clock recovery datasheets for more information 10 www tektronix com DSA8300 Digital Serial Analyzer Sampling Oscilloscope Stand alone electrical clock recovery modules instruments Characteristic 80A05 Std 80A05 Opt 106 CR125A CR175A 4 CR286A Continuously Variable Rate 50 3 188 50 3 188 0 1 12 5 0 1 17 5 0 1 28 6 Range Gb s 4 25 3 267 4 25 4 900 6 375 9 8 12 6 Clock Recovery Sensitivity lt 15 lt 15 15 15 15 Vp Adjustable Clock Recovery n a a Loop Bandwidth and Peaking 5 Standard rates supported 125 155 Mb s a n n n n 622 Mb s n n a n n 1063 Mb s DI a n n LI 1250 Mb s DI a LI a n 2125 Mb s n LI n n n 2488 2500 Mb s a n a n n 2 66 Gb s n n n n n 3 125 3 188 Gb s n n a n n 4 25 Gb s a a n n n 5 00 Gb s n a E n 6 14 Gb s n a n n 7 37 Gb s al a n a 8 5 Gb s n n n n 9 95 Gb s al n n a 10 31 Gb s n a a n 10 52 Gb s a a n a 10 66 Gb s a a a n 10 71 Gb s a a a a 11 10 Gb s a a a n 11 30 Gb s a a n a 12 50 Gb s a a a 14 025 Gb s a a n 14 063 Gb s a n a 25 78 Gb s n 27 74 Gbls m 3 The clock recovery module plugs into one of the 8000 Series large module slots and is controlled from the Trigger Setup menu 4 Stand alone clock recovery instrument controlla
3. DSA8300 Rack Mount Kit Optical modules plug directly into the large slot of the DSA8300 sampling oscilloscope mainframe See the Optical Sampling Modules 80C07B 80C08D 80C10C 80C11B 80C12B 80C14 80C15 datasheet for more details All optical modules have FC PC connectors installed Other connector adapters available as options are ST PC D4 PC Biconic SMA 2 5 SC PC DIN PC HP PC SMA DIAMOND 3 5 80C07B 80C08D 80C10C 80C11B 80C12B 80C14 80C15 22 www tektronix com 2 5 GHz single mode and multi mode amplified 750 to 1650 nm optical module for multirate datacom and telecom applications w optional integrated clock recovery 9 GHz optical channel single mode and multi mode amplified 750 to 1650 nm optical module optimized for 8 5 to 12 5 Gb s applications with optional integrated clock recovery 55 70 80 GHz single mode 1290 to 1330 nm and 1520 to 1620 nm optical module with reference receiver filters for multirate datacom and telecom 40 Gb s and 100 Gb s 4 x 25 Gb s applications with optional calibrated trigger pick off for use with external clock recovery instruments such as the CR286A 30 GHz single mode 100 to 1650 nm optical module with reference receiver filters for 8 5 to 14 1 Gb s telecom and datacom standards Optional integrated clock recovery for 8 5 to 12 6 Gb s applications 12 GHz optical channel single mode and multi mode amplified 750 to 1650 nm optical module with optical
4. 0 1 of interval STDEV 3 ps Horizontal scale lt 20 ps div right most point of measurement interval lt 150 ns Mean Accuracy 1 ps 0 5 of interval Horizontal scale gt 20 ps div right most point of measurement interval lt 150 ns Mean Accuracy 0 01 of interval STDEV 1 ps 0 1 ps typical Maximum timing deviation 0 1 of phase reference signal period typical relative to phase reference signal For more information on phase reference modes of operation see the Phase Reference Module for the DSA8300 Sampling Oscilloscope datasheet Maximum timing deviation relative to phase reference signal gt 40 ns after trigger event 0 2 of phase reference signal period typical lt 40 ns after trigger event 0 4 of phase reference signal period typical 500 ps to 100 ns on any individual channel in 100 fs increments Mainframe slot deskew only the 80E07B 80E08B 80E09B 80E10B 80E11 and 80E11X1 remote sampling modules include additional channel deskew range 50 100 250 500 1000 2000 4000 8000 or 16000 samples magnification views have maximum record length of 4000 samples IConnect 1M samples 80SJNB Jitter Noise and BER Analysis Software 10M samples 100k unit intervals 100 samples per unit interval Trigger system Trigger Sources Clock Input Prescale Trigger Input Clock Input Sensitivity Minimum Slew Rate Clock Input Range Pattern Lengths Supported for Pattern Triggering with ADVTRI
5. 39 81312 Gb s FEC42 66 42 6569 Gb s FEC43 02 43 018414 Gb s Fibre Channel Optical FC133 132 81 Mb s FC266 265 6 Mb s FC531 531 2 Mb s FC1063 1 0625 Gb s FC2125 2 125 Gb s FC4250 4 250 Gb s 8GFC 8 500 Gb s 10GFC 10 518750 Gb s FC11317 11 3170 Gb s 16GFC MM 16 1 14 025 Gb s 16GFC SM r6 1 14 025 Gb s 32GFC 28 05 Gb s Fibre Channel Electrical FC133 132 81 Mb s FC266 265 6 Mb s FC531 531 2 Mb s FC1063 1 0625 Gb s FC2125E 2 125 Gb s Abs Beta Tx Rx Abs Gamma Tx Rx FC4250E 4 250 Gb s Abs Beta Tx Rx Abs Gamma Tx Rx FC8500E 8 500 Gb s Abs Beta Tx Rx Abs Gamma Tx Rx SATA G1 1 500 Gb s Tx Rx G2 3 000 Gb s Tx Rx G3 6 000 Gb s Tx Rx www tektronix com 17 Datasheet Display system Touch Screen Display Colors Video Resolution Magnification Views Input output ports Front Panel USB 2 0 Port s Anti static Connection Trigger Direct Input Clock Input Prescale Trigger TDR Clock Output DC Calibration Output Rear Panel USB Ports LAN Port Serial Ports GPIB DVI I Video Port PS2 Serial Ports Audio Ports Data storage Waveform Databases Hard Disk Drive Optical Drive Nonvolitile storage 18 www tektronix com 264 mm 10 4 in diagonal color LCD 16 777 216 24 bits 1024 horizontal by 768 vertical displayed pixels In addition to the main time base the DSA8300 supports two magnification views These magnifications are independently acquired using s
6. and electrical transmitter characterization as well as compliance verification for devices modules and systems used in these products In addition the DSA8300 is well suited for electrical signal path characterization whether for packages PCBs or electrical cables With exceptional bandwidth signal fidelity and the most extensible modular architecture the DSA8300 provides the highest performance TDR and interconnect analysis most accurate analysis of signal impairments and BER calculations for current and emerging serial data technology 2 www tektronix com 0Waveforms _ MskUISamp 997920 of 1000000 Tektronix _ x E ks Es 2 i gt Ruastopsg trig clock Prescale Mode Eye Psyne App z Amplitude xx z4 Sb BE SRE 4380 rw pre vc or El 1000mv div B oov Ea M 210000pssdiv f 30 09266ns d 10 21 am 8 30 2013 Z Mask Main C6 10GBASE R Measurement B Mask 0 Mask3 0 BIBI B BiR GE Mask2 4 ps El 10 36736Gbps Wfms 135 Margin 40 6 5 Ul Sa 997920 HitRat 4 01e 08 D ise n m T amp Total 4 a a Optical eye diagram testing 23 eda Teci Li a fi SA a Gi a fi 2 i DI Buston trig ror z AcqMode Average 300kH2 nrz Amplitude xx 3 4 Xt BG RE we BE Oty ne te or aor BI 1000mvdiv Bf 2500mv fe mf gt 111420ns div ff gt 4111398ns fa LA 3 37 Pm 5 16 2011
7. can match system performance to your evolving needs The ability to swap sampling modules without powering down the DSA8300 available for scopes with firmware versions 6 1 and later provides additional flexibility in configuring your DSA8300 to changing test needs Featuring industry leading signal fidelity the family of electrical modules includes bandwidth performance from 20 GHz to gt 70 GHz while the optical modules support optical testing from 125 Mb s to 100 Gb s and beyond with optical bandwidth exceeding 80 GHz The DSA8300 supports all of the legacy 8000 Series electrical and optical sampling modules and accessories 3 In addition specialized modules supporting features such as single ended and differential electrical clock recovery electrostatic protection for electrical samplers and connectivity to the popular TekConnect probing system brings you the performance of state of the art Tektronix probes for high impedance and differential probing Low impedance probes for 50 Q probing and for TDR probing are also available The raw acquisition performance of the DSA8300 and its sampling modules and accessories is further augmented by the comprehensive measurement and analysis capabilities of the DSA8300 and its associated software applications For example the IConnect software applications provide complete TDR S parameter and signal integrity analysis for passive electrical interconnects packages printed circuit boards bac
8. clock recovery Clock recovery to 28 6 Gb s for the 80C10C is provided using the CR286A clock recovery instrument sold separately When equipped with Option HSPR a separate high sensitivity photo receiver is provided with independent electrical outputs that can be used with external equipment such as a Tektronix BERTScope for high accuracy optical measurements The 80C10C is also optionally available in a bundled ordering configuration which includes a single channel 70 GHz electrical sampling module www tektronix com 7 Datasheet Module Description 80C11B Multirate 10 Gb s Datacom and Telecom The 80C11B module is a long wavelength 1100 to 1650 nm multirate optical sampling module optimized for testing 10 Gb s datacom and telecom standard rates at 9 953 10 3125 10 51875 10 664 10 709 11 0957 11 317 and 14 025 Gb s With its high optical bandwidth of up to 30 GHz typical it is well suited for general purpose high performance 10 Gb s optical component testing The 80C11B can be optionally configured with clock recovery that can support any standard or user defined rate in the continuous range from 9 8 to 12 6 Gb s 80C12B Multirate Datacom and Telecom The 80C12B module is a broad wavelength 700 to 1650 nm multirate optical sampling module providing telecom and datacom testing for standards from 155 Mb s to 11 4 Gb s This highly flexible module can be configured to support a wide variety of 10 Gb s applic
9. description of each available optical sampling module See the Optical sampling module selection guide table for key specifications for each module For more complete information on these modules see the Optical Sampling Modules 80C07B 80C08D 80C10C 80C11B 80C12B 80C14 80C15 datasheet Optical sampling modules Module Description 80C07B Multirate Datacom and Telecom The 80C07B module is a broad wavelength 700 to 1650 nm multirate optical sampling module optimized for testing datacom telecom signals from 125 Mb s to 2 5 Gb s With its amplified O E converter design this module provides excellent signal to noise performance allowing users to examine low power optical signals The 80C07B can be optionally configured with fully calibrated internal clock recovery that supports 125 155 622 1063 1250 2125 2488 2500 and 2666 Mb s rates 80C08D Multirate Broad Wavelength High Sensitivity 10 Gb s The 80C08D module is a broad wavelength 700 to 1650 nm multirate optical sampling module providing datacom rate testing for 10GbE 40GbE R4 100GbE SR10 applications at 9 953 10 3125 11 0957 Gb s and 10G Fibre Channel applications at 10 51875 and 11 317 Gb s The 80C08D also provides telecom rate testing at 9 953 10 664 and 10 709 Gb s With its amplified O E converter design this module provides excellent signal to noise performance and high optical sensitivity allowing users to examine low power level optical s
10. enables you to keep pace with today s most demanding Serial Data Network Analysis SDNA requirements The 80E10B and 80E08B TDR modules feature a fully integrated independent dual channel 2 meter remote sampler system to minimize fixturing and assure optimal system fidelity Independent sampler deskew ensures fast and easy fixture and probe de embedding The user can characterize differential crosstalk by using TDR steps from a differential module to drive one line pair while monitoring a second line pair with a second differential module The DSA8300 is the industry s most versatile TDR measurement system accommodating up to 4 dual channel true differential TDR modules for fast accurate multilane impedance and S parameter characterization 5 Rise times are 10 90 Typical reflected rise times for the 80E10B are lt 10 ps DSA8300 Digital Serial Analyzer Sampling Oscilloscope The P80318 True differential TDR probe and P8018 Single ended Passive Handheld TDR probe provide high performance probing solutions for circuit board impedance and electrical signal characterization The P80318 an 18 GHz 100 Q input impedance differential TDR hand probe enables high fidelity impedance measurements of differential transmission lines The adjustable probe pitch enables a wide variety of differential line spacing and impedances The P8018 is a 20 GHz Single ended Passive Handheld TDR probe Both the P80318 and P8018 can be used as stand alone pro
11. gt PhaseRef C5_C6 Cursors Mn C3 D br tl 382839ns t2 43 At 4 85454ns 1 At 205 993MHz Passive interconnect test Finally with its exceptional signal fidelity and resolution the DSA8300 is the gold standard for electrical and optical applications which require ultra high bandwidths very fine vertical resolution low jitter and or exceptional time interval accuracy The DSA8300 provides unmatched measurement system fidelity with the lowest native instrument jitter floor 425 fs RMS typical for serial data signals at rates gt 1 25 Gb s that ensures the most accurate acquisition of up to 8 high bandwidth signals simultaneously You get additional analysis benefits from acquisition jitter as low as 100 fs RMS when using the 82A04B Phase Reference module The multiprocessor architecture with dedicated per slot digital signal processors DSPs provides fast waveform acquisition rates reducing the test times necessary for reliable characterization and compliance verification The DSA8300 s versatile modular architecture supports a large and growing family of plug ins enabling you to configure your measurement system with a wide variety of electrical optical and accessory modules that best suit your application now and in the future With 6 module slots the DSA8300 can simultaneously accommodate a Clock Recovery module a precision Phase Reference module and multiple acquisition modules electrical or optical so you
12. reference receivers to support 155 Mb s to 12 5 Gb s applications with calibrated trigger pick off for use with external clock recovery instruments such as the 80A05 or CR125A 12 GHz optical channel single mode and multi mode amplified 750 to 1650 nm optical module optimized for 8 5 to 12 5 Gb s applications with calibrated trigger pick off for use with external clock recovery instruments such as the CR175A or CR286A 32 GHz single mode and multi mode optical module with bandwidth filters for multirate datacom and telecom 25 and 100 4x25 Gb s applications Electrical modules DSA8300 Digital Serial Analyzer Sampling Oscilloscope Electrical modules plug directly into one of four small slots of the DSA8300 sampling oscilloscope mainframe See the Electrical Sampling Modules 80E11 80E11X1 80E10B 80E09B 80E08B 80E07B 80E04 80E03 80E01 datasheet for more details 80E11 80E11X1 80E10B 80E09B 80E08B 80E07B 80E04 80E03 80E01 Phase reference module 70 60 40 GHz electrical sampler dual channel 70 60 40 GHz electrical sampler single channel Remote Sampling Module 50 40 30 GHz electrical dual channel with true differential TDR capabilities Remote 8 Sampling Module 60 40 30 1 GHz electrical dual channel Remote Sampling Module 30 20 GHz electrical dual channel with true differential TDR capabilities Remote 8 Sampling Module 30 20 1 GHz electrical
13. s With its amplified O E converter design this module provides excellent signal to noise performance and high optical sensitivity allowing users to examine low power level optical signals Clock recovery for the 80C14 is provided by the CR175A or CR286A sold separately 80015 The 80C15 module provides integrated and selectable reference receiver filtering enabling conformance testing for single and multi mode optical signals at 850 nm 1310 nm or 1550 nm of all standard 25 32 Gb s standard rates This module provides bandwidth filters for the following rates standards 25 781 Gb s 100GBase ER4 100GBase LR4 100GBase SR4 Infiniband EDR 27 952 Gb s OTU4 28 050 Gb s 32G Fibre Channel In addition to the filter rates the user may also select bandwidths for the 80C15 for optimal noise vs bandwidth performance for accurate signal characterization Optical sampling module selection guide Character 80C07B 80C08D 80C12B 80C12B 80C14 80C11B 80C15 80C10C Opt 80C10C Opt 80C10C Opt istic Opt F0 F12 Opt 10G F1 F2 F3 10GP Wavelength 700 1650 700 1650 700 1650 700 1650 700 1650 1100 1650 700 1650 1290 1330 1290 1330 1290 1330 Range nm 1520 1620 1520 1620 1520 1620 Unfiltered 2 5 12 5 12 9 12 12 30 32 70 55 80 Optical Bandwidth GHz Fiber Input 9 50 62 5 9 50 62 5 9 50 62 5 9 50 62 5 9 50 62 5 9 9 50 62 5 9 9 9 um 6 Ther
14. 88 1401 Germany 00800 2255 4835 Italy 00800 2255 4835 Mexico Central South America amp Caribbean 52 55 56 04 50 90 Norway 800 16098 Portugal 80 08 12370 South Africa 41 52 675 3777 Switzerland 00800 2255 4835 USA 1 800 833 9200 For Further Information Tektronix maintains a comprehensive constantly expanding collection of application notes technical briefs and other resources to help engineers working on the cutting edge of technology Please visit www tektronix com Copyright Tektronix Inc All rights reserved Tektronix products are covered by U S and foreign patents issued and pending Information in this publication supersedes that in all previously published material Specification and gx price change privileges reserved TEKTRONIX and TEK are registered trademarks of Tektronix Inc All other trade names referenced are the service marks trademarks or registered trademarks of their respective companies SL www tektronix com 21 Nov 2014 85W 26988 13 Tektronix
15. BER analysis High speed serial data link measurements and analysis are supported with three software solutions 80SJARB 80SJNB essentials and 80SJNB Advanced 80SJARB Option JARB is a basic jitter measurement tool capable of measuring jitter on any waveform random or repetitive The simplicity of acquisition limits the amount of analysis possible so only the simplest decomposition can be used repeatability is pattern dependent 80SJNB Essentials Option JNB offers complete analysis of jitter noise and BER with decomposition of components for clear understanding of a signal s problems and margins The acquisition methodology requires a repetitive pattern Both accuracy and repeatability are improved relative to 80SJARB since the tool has access to the complete signal pattern 80SJNB Advanced Option JNB02 adds features to 80SJNB Essentials for serial data link analysis de embedding of fixture channel emulation FFE DFE equalization and preemphasis de emphasis 3 The DSA8300 does not support the 80A06 Pattern Synchronization module as this capability is superseded by the integrated Advance Trigger option Option ADVTRIG for the DSA8300 4 These software applications can be purchased to install on currently owned DSA8300 oscilloscopes with the DSA83UP upgrade kits www tektronix com 3 Datasheet SDLA analysis SDLA Visualizer and JNB signal path JNB s Signal Path function is now complemented with the adv
16. G Option Clock Input Jitter in Clock eye and Clock pattern Trigger Modes Typical Clock Input Jitter in Clock eye and Clock pattern Trigger Modes Max TDR Trigger TDR Step Rate TDR Trigger Jitter Phase Reference Time Base Phase Reference Input Range Phase Reference Input Sensitivity Jitter Trigger Direct Input Trigger Sensitivity Trigger Level Range Trigger Input Range DSA8300 Digital Serial Analyzer Sampling Oscilloscope Clock Input Prescale Trigger front panel TDR clock generated internally Clock recovery triggers from Optical Sampling modules and Electrical Clock Recovery modules internally connected Phase Reference when using the 82A04B Phase Reference module time base supports acquisitions without a trigger signal in its Free Run mode Trigger Direct Input front panel 100 mV p 0 15 to 20 GHz typical 200 MVp p 0 15 to 15 GHz guaranteed 22 Vins 1 0 Vp p Max AC coupled 2 to 223 8 388 608 inclusive 0 15 0 40 GHz 900 fs RMS 0 40 1 25 GHz 800 fs 1 25 20 GHz 425 fs 0 80 1 25 GHz 900 fs RMS 1 25 11 20 GHz 500 fs 11 20 15 0 GHz 600 fs Selectable from 25 to 200 kHz in 1 kHz steps Actual TDR step rate may vary up to 2 from requested rate 1 3 ps RMS typical 1 8 ps RMS max Standard 82A04B 8 32 GHz guaranteed 2 32 GHz typical 82A04B Option 60G 8 60 GHz guaranteed 2 70 GHz typical For clock frequencies lt 8 GHz it may be n
17. Tektronix A E E D E a DSA8300 Datasheet Digital Serial Analyzer Sampling Oscilloscope Key features e una With today s sampling module portfolio the DSA8300 supports up to a 4 oe 8 simultaneously acquired signals Awide variety of optical electrical and accessory modules to support your specific testing requirements Optical modules Fully integrated optical modules that support all standard optical data rates from 155 Mb s to 100 Gb s Certified optical reference receivers support specified requirements for standards mandated compliance testing Optical bandwidths to gt 80 GHz High optical sensitivity low noise and wide dynamic range of the optical sampling modules allows accurate testing and characterization of short reach to long haul optical communications standards The DSA8300 is a state of the art Equivalent Time Sampling Oscilloscope Fully calibrated clock recovery solutions no need to manually that provides the highest fidelity measurement and analysis capabilities for calibrate for data pick off losses Communications Signal Analysis Serial Data Network Analysis and Serial Calibrated extinction ratio measurements ensure repeatability of Data Link Analysis applications extinction ratio measurements to lt 0 5 dB among systems with modules with this factory calibration option Key performance specifications Electrical modules Very low time base jitter Very low noise electrical sa
18. anced features of SDLA Visualizer SDLA Visualizer extends the de embedding and channel emulation capabilities of JNB signal path by offering a complete 4 port de embed that models not only the effects of insertion loss but also models the effects of return loss and cross coupling SDLA Visualizer also complements the DFE FFE receiver equalization support in JNB and adds the ability to model CTLE equalization SDLA Visualizer works with the Signal Path function built into JNB Advanced After configuring SDLA Visualizer selecting the desired test point and applying the model the application automatically loads the filter for the selected test point into the Signal Path filter block If DFE or FFE equalization are required those parameters can be quickly entered in the JNB Signal Path and then the final measurements can be taken These are just a few examples of the many features available from SDLA Visualizer For more details see the SDLA Visualizer datasheet available at www tektronix com Jitter analysis of arbitrary data BOSJARB The 80SJARB jitter measurement application software for the DSA8300 Series addresses IEEE 802 3ba applications requiring the J2 and J9 jitter measurements It also enables basic jitter measurements for NRZ data signals including PRBS31 random traffic and scrambled data This provides an entry level jitter analysis capability with simple Dual Dirac model jitter analysis and no pattern synchronization requirem
19. and user masks to data acquired into a waveform database The mask test system can also automatically determine the mask margin based either on the total number of mask violations or the hit ratio of mask violation to the number of samples acquired in the mask test unit interval Users can also create custom masks for automated mask testing Histograms and cursor measurements are also available to analyze optical signals acquired by the DSA8300 Finally the 80SJNB applications support complete jitter noise and BER analysis for optical signals The advanced version of this software Option JNB02 supports evaluating the emphasis and equalization on impaired signals Sampling modules DSA8300 Digital Serial Analyzer Sampling Oscilloscope High speed optical test solutions The DSA8300 with its highly configurable mainframe and a wide variety of optical modules provide complete optical test solutions with superior system fidelity from 125 Mb s to 100 Gb s and beyond The modules cover a range of wavelengths for both single and multi mode fibers Each module can be optionally configured with several selectable Optical Reference Receiver ORR filters and or a full bandwidth path Each module also supports fully calibrated clock recovery solutions whether integrated into the module or through a data pick off routed to an external clock recovery module or stand alone clock recovery instrument See the Optical sampling modules table for a brief
20. aracteristics Dimensions Microsoft Windows 7 Ultimate 32 bit 3 GHz Intel Core 2 Duo CPU 90 V to 250V 50 Hz to 400 Hz 205 W typical mainframe only 330 W typical fully loaded 600 W maximum DSA8300 Digital Serial Analyzer Sampling Oscilloscope mm Inches Width 475 18 0 Height 343 13 5 Depth 419 16 5 kg Ib Weight 21 46 EMC environment and safety Temperature Operating Nonoperating Altitude Operating Nonoperating Relative Humidity Operating CD ROM not installed Electromagnetic compatibility Safety 10 to 40 C 22 to 60 C 3 048 m 10 000 ft 12 190 m 40 000 ft 20 to 80 at or below 40 C upper limit de rates to 45 relative humidity at 40 C 2004 108 EC UL3111 1 CSA1010 1 EN61010 1 IEC61010 1 www tektronix com 19 Datasheet Ordering information For more detailed information about the DSA8300 Digital Serial Analyzer sampling oscilloscope download the DSA8300 Digital Serial Analyzer 80C00 Series Sampling Modules 80E00 Series Sampling Modules 80A00 Modules Specifications Technical Reference Tektronix part number 077 0571 xx from www Tektronix com Models DSA8300 Digital Serial Analyzer Sampling Oscilloscope Standard accessories 071 2897 XX DSA8300 Digital Serial Analyzer Quick Start User Manual 119 7083 00 Keyboard 19 7054 00 Mouse 200 4519 00 Instrument front cover 016 1441 00 Accessory pouch 19 6107 00 Tou
21. ations lower data rate applications 155 Mb s to 7 4 Gb s or a combination of 10G and lower data rate standards The low data rate applications include Telecom applications from 155 to 2666 Mb s 1G 2G and 4G Fibre Channel multilane standards such as 10GBASE X4 and 4 Lane 10 Gb s Fibre Channel and Infiniband SDR and DDR rates The supported 10 Gb s application includes both datacom and telecom standards The supported 10 Gb s datacom applications include 10GbE 40GbE R4 100GbE SR10 applications at 9 953 10 3125 11 0957 Gb s and 10G Fibre Channel applications at 10 51875 Gb s and 11 317 Gb s The 80C12B also provides telecom rate testing at 9 953 10 664 and 10 709 Gb s With its amplified O E converter design this module provides excellent signal to noise performance and high optical sensitivity allowing users to examine low power optical signals Clock recovery for the 80C12B is provided using the 80A05 module or CR125A clock recovery instrument sold separately 80C14 Multirate Datacom and Telecom The 80C14 module is a broad wavelength 700 to 1650 nm multirate optical sampling module providing 8G 10G and 16G telecom and datacom testing The supported 10 Gb s datacom applications include 10GbE 40GbE R4 100GbE SR10 applications at 9 953 10 3125 and 11 0957 Gb s Fibre Channel applications include 8 500 10 51875 11 317 14 025 and 14 063 Gb s The 80C14 also provides telecom rate testing at 9 953 10 664 10 709 and 12 5 Gb
22. bes but are especially designed to work with the 80A02 EOS ESD module to provide EOS ESD protection Multi gigabit signal path characterization and analysis Serial Data Network Analysis Iconnect and Meas ct File Edit View Compute Model Shrudstes Tools mm D eds Sin ve ee De ns ca OM SOOMM IGM 1SGH Gks 2SGH JG 35GH AGH 45GH Tektronix Ready Serial data network analysis As clock speeds and rise times of digital circuits increase interconnect signal integrity dramatically affects digital system performance Accurate and efficient Serial Data Network Analysis SDNA of the signal path and interconnects in time and frequency domains is critical to predict signal losses jitter crosstalk terminations and ringing digital bit errors and eye diagram degradation ensuring reliable system operation Tektronix offers several true differential TDR modules which in combination with IConnect software allow S parameter measurements with up to 70 dB of dynamic range This performance assures accurate repeatable measurements in serial data analysis digital design signal integrity and electrical compliance testing applications TDR module performance with IConnect TDR Module S parameter measurement bandwidth performance 80E10B 50 GHz 80E08B 30 GHz 80E04 20 GHz www tektronix com 5 Datasheet With the long record length acquisitions IConnect provid
23. ble from the BERTScope clock recovery instrument control application accessible from the App menu of the 8000 Series oscilloscope 5 Electrical clock recovery sensitivity is for differential input and varies with the input clock rate See clock recovery datasheets for more information 6 For more information on clock recovery loop bandwidth and peaking see clock recovery datasheets www tektronix com 11 Datasheet High performance electrical test solutions The DSA8300 is also well suited for a variety of high performance electrical applications With the modular system users can configure their DSA8300 with a variety of electrical modules that are best suited to their requirements the following table provides key specifications for the current electrical sampling modules available for use with the DSA8300 to help you select the electrical module s most appropriate for your application Detailed specifications are available in the 80E00 Electrical Sampling Modules datasheet Electrical sampling module selection guide Characteristic 80E01 80E03 80E07B 80E09B 80E11 80E11X1 80E04 80E08B 80E10B TDR Module TDRModule TDR Module Channels 1 2 2 2 2 80E11 2 2 2 1 80E11X1 Bandwidth 50 GHz 20 GHz 20 30 GHz user 30 40 60 GHz 40 60 70 GHz 20 GHz 20 30 GHz user 30 40 50 GHz selectable user selectable user selectable selectable user selectable Step response at 7 p
24. ch screen styluses 2 006 3415 04 ESD wrist strap with 6 foot coiled cord 020 3082 XX DSA8300 Product Documentation Kit CD Not orderable Not orderable 020 3088 XX Type dependent on selection during order placement 013 0347 00 Instrument options 20 www tektronix com DSA8300 Online Help part of application software DSA8300 Programmer Online Manual part of application software DSA8300 TekScope Product Software Install Kit Power cord VGA female to DVI male adapter Options ADVTRG Add advanced triggers with pattern sync CEI VSR OIF CEI 3 0 Compliance Solution for DSA8300 ICMX IConnect and MeasureXtractor Signal Integrity and Failure Analysis Software ICON IConnect Signal Integrity and Failure Analysis Software JARB Add 80SJARB included with Option JNB or JNB02 JNB Add 80SJNB Essentials JNB02 Add 80SJNB Advanced SPAR IConnect S parameters Software Power plug options Opt A0 Opt A1 Opt A2 Opt A3 Opt A4 Opt A5 Opt A6 Opt A10 Opt A11 Opt A12 Opt A99 Language options Opt LO Opt L7 Opt L8 Opt L10 North America power plug 115 V 60 Hz Universal Euro power plug 220 V 50 Hz United Kingdom power plug 240 V 50 Hz Australia power plug 240 V 50 Hz North America power plug 240 V 50 Hz Switzerland power plug 220 V 50 Hz Japan power plug 100 V 50 60 Hz China power plug 50 Hz India power plug 50 Hz Brazil power plug 60 Hz No power cord English manual Simplif
25. ding as much as 50 cost savings compared to similar bandwidth VNAs and dramatically speeding up measurements You can also take advantage of the IConnect S parameters command line interface which automates the S parameter measurements to the overall suite of manufacturing tests you perform using your TDR instrument significantly reducing test time while increasing measurement repeatability The simplicity of S parameter calibration using a reference open short or through and an optional 50 load makes measurements fixture de embedding and moving the reference plane a snap Touchstone file format output enables easy S parameter file sharing for further data analysis and simulations Tektronix offers several true differential TDR modules which in combination with Connect offers S parameter measurements up to 50 GHz with up to 70 dB of dynamic range This performance exceeds requirements for serial data analysis digital design and signal integrity applications resolving down to 1 40 dB accuracy of crosstalk while electrical compliance testing masks typically call for measurements in the 10 to 30 dB range 6 www tektronix com IConnect software lets you Quickly and easily generate SPICE and IBIS models for your PCBs flex boards connectors cables packages sockets and I O buffer inputs directly from TDR T or VNA S parameter measurements Display eye diagram degradation jitter loss crosstalk reflectio
26. dual channel 20 GHz electrical sampler dual channel with true differential TDR capabilities For remote sampling use the 80X01 or 80X02 Electrical Sampling Module Extender Cables 20 GHz electrical sampler dual channel For remote sampling use the 80X01 or 80X02 Electrical Sampling Module Extender Cables 50 GHz single channel electrical sampler For remote sampling use the 80X01 or 80X02 Electrical Sampling Module Extender Cables The 82A04B Phase Reference module when installed in the DSA8300 and provided with a clock synchronous with the data to be acquired provides a very low jitter time base for acquiring signals from the device under test It can accommodate clocks from 2 GHz to gt 60 GHz 82A04B Phase Reference Module Standard module supports clocks up to 32 GHz With Option 60G it supports clocks to gt 60 GHz Clock recovery module instrument 80A05 CR125A CR175A CR286A Electrical Clock Recovery module Applicable to electrical signals and for the 80C12B The standard version of 80A05 supports signals in the following ranges 50 Mb s 2 700 Gb s 2 700 Gb s 3 188 Gb s 4 250 Gb s 4 Gigabit Fibre Channel Option 10G adds the ranges of 3 267 Gb s 4 250 Gb s 4 900 Gb s 6 375 Gb s 9 800 Gb s 12 60 Gb s Electrical Clock Recovery instrument CR125A recovers clocks from serial data streams for all of the most common electrical standards in the continuous 100 Mb s to 12 5 Gb s range Applicabl
27. e Measurements RN h Horizontal component of random noise Measurement Description DN Deterministic noise J2 Total jitter for BER 2 563 DDN1 Data dependent noise on logical level 1 J9 Total jitter for BER 2 5e710 DDNO Data dependent noise on logical level 0 Tj Total jitter for BER 2 561 PN Periodic noise DJ dd Deterministic jitter Dual Dirac model PN v Vertical component of periodic noise Ruaa Random jitter Dual Dirac model PN h Horizontal component of periodic noise EO at BER Vertical eye opening at specified BER BUN Bounded uncorrelated noise NPN Non periodic noise 4 www tektronix com 80SJNB Advanced Opt JNB02 80SJNB Advanced Opt JNB02 supports FFE Feed Forward Equalization to 100 Taps DFE Decision Feedback Equalization to 40 Taps Filter for support of linear filters from fixture de embed to transmitter equalization Channel emulation supported for channels with gt 30 dB of loss at 1st harmonic frequency TDR Time Domain Reflectometry applications Tee aT Aa Cust 17 180p Sipi Cusoe 35 Quickly identify the exact location of faults with the 80E10B sub millimeter resolution and IConnect True Impedance Profile The DSA8300 is the industry s highest performance fully integrated Time Domain Reflectometry TDR measurement system Offering true differential TDR measurements up to 50 GHz bandwidth with 15 ps reflected rise time and 12 ps incident rise time the DSA8300
28. e are specific reference receiver groupings supported for the 80C07B See the 80Cxx Optical Module datasheet for detailed information 7 There are specific reference receiver groupings supported for the 80C12B See the 80Cxx Optical Module datasheet for detailed information 8 The clock recovery trigger pick off Option CRTP for the 80C10C can support trigger pick off for data rates to gt 43 Gb s 9 The full 12 GHz bandwidth for the 80C12B is only available with Option FO 10G or 10GP 8 www tektronix com DSA8300 Digital Serial Analyzer Sampling Oscilloscope Character 80C07B 80C08D 80C12B 7 80C12B 80014 80C11B 80C15 80C10C Opt 80C10C Opt 80C10C Opt istic Opt F0 F12 Opt 10G F1 F2 F3 10GP Mask Test 22 16 1 19 15 15 9 9 8 8 8 Sensitivity dBm Optical reference receivers supported 155 mb s n n 622 mb s n a 1 063 Gb s m a 1 250 Gb s m a 2 125 Gb s m a 2 488 Gb s m a 2 500 Gb s m n 2 66 Gb s n 3 125 Gb s m 3 188 Gb s n 4 250 Gb s LI 5 000 Gb s n 6 144 Gb s n 7 373 Gb s a 8 500 Gb s a n DI n 9 953 Gb s n E n a 10 31 Gb s n n n a 10 51 Gb s n al n n 10 66 Gb s n n n n 10 71 Gb s n a n a 11 1 Gb s n a a n 11 3 Gb s n a a n 14 025 Gb s n n 14 063 Gb s a n 25 78 Gb s a n n 27 74 Gb s n a a 28 05 Gb s n 39 81 Gb s n a 41 25 Gb s a n 43 02 Gb s a E
29. e to electrical signals and for 80C12B Electrical Clock Recovery instrument CR175A recovers clocks from serial data streams for all of the most common electrical standards in the continuous 100 Mb s to 17 5 Gb s range Applicable to electrical signals and for 80C12B and 80C14 Electrical Clock Recovery instrument CR286A recovers clocks from serial data streams for all of the most common electrical standards in the continuous 100 Mb s to 28 6 Gb s range Applicable to electrical signals and for 80C12B 80C14 and 80C10B 80C10C for rates up to 28 6 Gb s 17 User selectable bandwidth 18 Each remote sampler TDR generator is on a separate 2 meter remote cable for easy co location with the device under test and best acquired signal fidelity 19 For clock frequencies lt 8 GHz it may be necessary to filter the clock input to eliminate harmonics from the clock signal see Other Accessories 020 2566 xx 020 2567 xx and 020 2568 xx www tektronix com 23 Datasheet Product bundle for 10 28 Gb s applications 80B28G Recommended Accessories 80A09 80A02 80A03 80A08 80X01 80X02 Product bundle which includes one each of the following products 80E09B Electrical Sampling Module 82A04B Phase Reference Module CR286A 28 6 GHz Clock Recovery instrument 80X01 1 meter sampling module extender cable and 80A08 28 Gb s Measurements Accessory Kit 26 GHz ESD Protection Device EOS ESD isolation module for electrical static isolation of el
30. ecessary to filter the clock input to eliminate harmonics from the clock signal see accessories 020 2566 xx 020 2567 xx and 020 2568 xx Best jitter performance is with the clock input to the 82A04B in the following range 0 6 1 8 V The phase reference time base remains operational to 100 mV typical with increased jitter f 28 GHz 100 fs RMS on a 10 GHz or faster sampling module 2 GHz lt f lt 8 GHz 140 fs RMS typical on a 10 GHz or faster acquisition module For clock frequencies lt 8 GHz it may be necessary to filter the clock input to eliminate harmonics from the clock signal see accessories 020 2566 xx 020 2567 xx and 020 2568 xx 50 mV DC 4 GHz typical 100 mV DC 3 GHz guaranteed 1 0V 1 5V www tektronix com 15 Datasheet Trigger system Trigger Holdoff Trigger Direct Input Jitter Acquisition system Acquisition modes Number of sampling modules accommodated Number of simultaneously acquired inputs Maximum acquisition rate Waveform measurements System Measurement Rate Measurement Set Amplitude Measurements Timing Measurements Area Measurements Cursors Waveform Processing Mask Testing 16 www tektronix com Adjustable 5 us to 50 ms in 0 5 ns increments 1 1 ps RMS 5 ppm of horizontal position typical 1 5 ps RMS 10 ppm of horizontal position max Sample Normal Envelope and Average Up to 4 dual channel electrical up to 2 optical sampling modules Populat
31. ectrical sampling modules TEKConnect probe interface module Accessory kit for electrical measurements up to 28 Gb s 1 meter electrical sampling module extender cable 2 meter electrical sampling module extender cable Interconnect cables 3rd party Tektronix recommends using quality high performance interconnect cables with these high bandwidth products to minimize measurement degradation and variations The W L Gore and Associates cable assemblies in teh following table are compatible with the 2 92 mm 2 4 mm and 1 85 mm connector interface of the 80E00 modules Assemblies can be ordered by contacting Gore by phone at 800 356 4622 or on the Web at www gore com tektronix Cable Frequency Connectors Length Bench top test cable assemblies TEK40PF18PP 40 GHz 2 92 mm male 18 0 in TEK50PF18PP 50 GHz 2 4 mm male 18 0 in TEK65PF18PP 65 GHz 1 85 mm male 18 0 in High frequency interconnect cables for electrical sampling modules TEK40HFO6PP 40 GHz 2 92 mm male 6 0 in TEK40HFO6PS 40 GHz 2 92 mm male 6 0 in 2 92 mm female TEK50HFO6PP 50 GHz 2 4mm male 6 0 in TEK50HFO6PS 50 GHz 2 4mm male 6 0 in 2 4 mm female TEK65HFO6PP 65 GHz 1 85 mm male 6 0 in TEK65HFO6PS 65 GHz 1 85 mm male 6 0 in 1 85 mm female Calibration kits and accessories 3rd party For best S parameter measurement results with the 80E10B 80E08B and 80E04 electr adapter kits connector sav
32. ent 80SJARB can acquire continuously in Free Run mode delivering acquisitions and updates beyond the IEEE minimum requirement of 10 000 data points Plots include jitter and eye opening bathtub curves for both measured and extrapolated data as well as a histogram of the acquired data 80SJNB jitter analysis available measurements Measurement Description TJ at BER Total jitter at specified BER J2 Total jitter for BER 2 5e J9 Total jitter for BER 2 5e710 RJ Random jitter RJ h Horizontal component of random jitter RJ v Vertical component of random jitter RJ d d Random jitter according to the Dual Dirac model DJ Deterministic jitter DDJ Data dependent jitter DDPWS Data dependent pulse width shrinkage DCD Duty cycle distortion DJ d d Deterministic jitter computed in the Dual Dirac model PJ Periodic jitter PJ h Horizontal component of periodic jitter PJ v Vertical component of periodic jitter EO at BER Horizontal eye opening at specified BER BUJ Bounded uncorrelated jitter NPJ Non periodic jitter uncorrelated and bounded SSCMagnitude Magnitude of SSC modulation in ppm SSCFrequency Frequency of SSC modulation in ppm 80SJNB noise analysis available measurements Measurement Description RN Random noise n RN v Vertical component of random noise S03JAR8 jiReranaly si
33. eparate time base settings which allow same or faster time div than that of the main time base One USB 2 0 connector instruments shipped after 12 2012 have 3 USB ports on the front panel Banana jack connector 1 MQ See Trigger System specification See Trigger System specification See Trigger System specification 1 25 V maximum 4 USB 2 0 connectors RJ 45 connector supports 10 100 1000BASE T DB 9 COM1 COM2 ports IEEE488 2 connector DVI connector female Connect to show the oscilloscope display including live waveforms on an external monitor or projector The primary Windows desktop can also be displayed on an external monitor using these ports Alternatively the DVI I port can be configured to show the secondary Windows desktop also called extended desktop or dual monitor display DVI to VGA 15 pin D sub connector adapter provided Mouse and keyboard inputs 1 8 in microphone input and line output 4 independently accumulated waveform records of up to 4M waveform points each Variable waveform database mode with true first in first out of up to 2000 waveforms available on each of 4 waveform databases 2M samples maximum waveform database Rear panel removable hard disk drive 500 GB capacity Front panel DVD Read Only CD Read Write drive with CD creation software application USB 2 0 flash memory Computer system Operating System CPU Power source Line voltage and frequency Power Consumption Physical ch
34. ers airlines torque wrenches and connector gauges from Maury Microwave ical TDR modules and IConnect software we recommend precision calibration kits These components are compatible with the 2 92 mm 2 4 mm and 1 85 mm connectors of the 80E00 modules Contact Maury Microwave www maurymw com tektronix htm to order calibration kits and other components 24 www tektronix com Tektronix is registered to ISO 9001 and ISO 14001 by SRI Quality System Registrar DSA8300 Digital Serial Analyzer Sampling Oscilloscope www tektronix com 25 Datasheet ASEAN Australasia 65 6356 3900 Belgium 00800 2255 4835 Central East Europe and the Baltics 41 52 675 3777 Finland 41 52 675 3777 Hong Kong 400 820 5835 Japan 81 3 6714 3010 Middle East Asia and North Africa 41 52 675 3777 People s Republic of China 400 820 5835 Republic of Korea 001 800 8255 2835 Spain 00800 2255 4835 Taiwan 886 2 2656 6688 European toll free number If not accessible call 41 52 675 3777 Austria 00800 2255 4835 Brazil 55 11 3759 7627 Central Europe amp Greece 41 52 675 3777 France 00800 2255 4835 India 000 800 650 1835 Luxembourg 41 52 675 3777 The Netherlands 00800 2255 4835 Poland 41 52 675 3777 Russia amp CIS 7 495 6647564 Sweden 00800 2255 4835 United Kingdom amp Ireland 00800 2255 4835 Balkans Israel South Africa and other ISE Countries 41 52 675 3777 Canada 1 800 833 9200 Denmark 45 80
35. es great flexibility for obtaining the desired frequency range and frequency step when performing S parameter measurements Up to 1 000 000 points can be acquired When you use Connect Signal Integrity TDR and S parameter software with the DSA8300 you have an efficient easy to use and cost effective solution for measurement based performance evaluation of multi gigabit interconnect links and devices including signal integrity analysis impedance S parameter and eye diagram tests and fault isolation IConnect can help you complete interconnect analysis tasks in minutes instead of days resulting in faster system design time and lower design costs IConnect also enables impedance S parameters and eye diagram compliance testing as required by many serial data standards as well as full channel analysis Touchstone SnP file output and SPICE modeling for multi gigabit interconnects Failure analysis quickly identify fault location The 80E10B with its 12 ps typical TDR rise time provides superior resolution enabling the fastest and most efficient fault isolation in package circuit board and on chip failure analysis applications IConnect Signal Integrity TDR and S parameter software Operating on the DSA8300 TDR platform IConnect S parameters is the most cost effective and highest throughput approach for S parameter measurements in digital design signal integrity analysis and interconnect compliance testing provi
36. hese signals The DSA8300 with its modular architecture and its associated modules and accessories provides all of the components necessary to fully test multi lane high bit rate signals To simplify configuring a system to test such devices Tektronix offers the following product bundle 80B28G a DSA8300 product bundle for 28 Gb s applications This bundle when used with a DSA8300 provides all of the electrical sampling modules accessories and clock recovery capabilities needed to test applications at rates from 10 Gb s to 28 6 Gb s per lane The bundle includes the following products 1 ea 80E09B dual channel 70 GHz Remote Electrical Sampling Module 1 ea 82A04B Phase Reference Module that supports sub 100 fs instrumentation jitter when used with the 80E09B 1 ea CR286A 28 6 GHz clock recovery instrument that supports clock recovery at rates from 150 Mb s to 28 6 Gb s 1 ea 80X01 1 meter sampling module extender cable used to extend the phase reference module to connect directly to the clock recovery module 1 ea 80A08 accessory kit with all of the necessary cables adapters DC blocks and other accessories to configure a complete test solution To extend this solution to test additional lanes in a multi lane application simply install additional 80E09B dual channel remote sampling modules www tektronix com 13 Datasheet Specifications Product specifications and descriptions in this document are subject to change
37. ied Chinese manual Traditional Chinese manual Russian manual Language options include translated front panel overlay for the selected language s Service options Opt C3 Opt C5 Opt CA1 Opt D1 Opt D3 Opt D5 Opt IF Opt R3 Opt R5 Calibration Service 3 Years Calibration Service 5 Years sj ngle Calibration or Functional Verification Calibration Data Report Calibration Data Report 3 Years with Opt C3 Calibration Data Report 5 Years with Opt C5 Upgrade Installation Service Repair Service 3 Years including warranty Repair Service 5 Years including warranty DSA8300 Digital Serial Analyzer Sampling Oscilloscope Probes and accessories are not covered by the oscilloscope warranty and Service Offerings Refer to the datasheet of each probe and accessory model for its unique warranty and calibration terms www tektronix com 21 Datasheet DSA83UP DSA8300 upgrade kit ADVTRIG HDD8 JARB JNB JNB02 JNBTOJNB02 JNB01TOJNB02 CEI VSR DSA8300 Rack Mount 016 1791 02 Optional Accessories Optical modules Add advanced triggers with pattern sync Additional hard disk drive complete with assembled mounting bracket operating system and oscilloscope application Add 80SJARB included with Option JNB or JNB02 Add 80SJNB Essentials Add 80SJNB Advanced Upgrade from JNB to JNB Advanced Upgrade JNB01 to JNB02 Adds SDLA Visualizer OIF CEI 3 0 Compliance Solution for DSA8300
38. ignals The 80C08D can be optionally configured with an integrated clock recovery option that supports acquiring signals at any standard or user specified rate from 9 8 to 12 6 Gb s 80C10C Multirate Datacom and Telecom 40 Gb s and 100 Gb s The 80C10C module provides integrated and selectable reference receiver filtering enabling conformance testing at either 1310 nm or 1550 nm of all standard 25 40 and 100 4 x 25 Gb s standard rates There are three configurations for the 80C10C Option F1 Provides standard compliant optical reference receivers for the following rates standards m 25 781 Gb s 100GBase LR4 and 100GBase ER4 27 952 Gb s OTU4 m 39 813 Gb s OC 768 STM 256 VSR2000 G 693 40G NRZ G 959 1 m 41 25 Gb s 40GBase FR 43 018 Gb s G 709 FEC OTU3 4x10G LAN PHY Option F2 Provides standard compliant optical reference receivers for the following rates standards m 25 781 Gb s 100GBase LR4 and 100GBase ER4 27 952 Gb s OTU4 Option F3 Provides standard compliant optical reference receivers for the following rates standards 39 813 Gb s OC 768 STM 256 VSR2000 G 693 40G NRZ G 959 1 m 41 25 Gb s 40GBase FR m 43 018 Gb s G 709 FEC OTU3 4x10G LAN PHY In addition to the filter rates the user may also select bandwidths for the 80C10C for optimal noise vs bandwidth performance for accurate signal characterization When equipped with Option CRTP an electrical signal pickoff is provided for
39. ion of the CH1 CH2 large slot with any module other than one requiring power only displaces functionality of the CH1 CH2 small slot population of the CH3 CH4 large slot with any module other than one requiring power only displaces functionality of the CH3 CH4 small slot 8 channels maximum 300 kS s per channel in TDR mode 200 kS s per channel in all other nonphase reference modes 120 kS s per channel in phase reference modes The DSA8300 supports up to 8 simultaneous measurements updated 3 times per second with optional display of per measurement statistics min max mean and standard deviation Over 120 automated measurements include RZ NRZ and pulse signal types and the following measurement types High Low Amplitude Peak to Peak Max Mid Min Mean Overshoot Overshoot P P Average Optical Power dBm watts Noise RMS Noise SNR Eye Height Eye Opening Factor Extinction Ratio Ratio dB Suppression Ratio Ratio dB OMA Q factor RMS AC RMS Cycle RMS Cycle Mean Gain Crossing Crossing Level Rise Fall Period Bit Rate Bit Time Frequency Crossing Time Cross Cross Jitter P P RMS Eye Width Width Width Burst Width Duty Cycle Duty Cycle Duty Cycle Distortion Delay Phase Pulse Symmetry Area Cycle Area Dot vertical bar and horizontal bar cursors Up to 8 math waveforms can be defined and displayed using the following math functions Add Subtract Multiply Divide Average Diffe
40. kplanes cable etc while the 80SJNB applications provide complete jitter noise and bit error rate analysis as well as channel and equalization analysis and emulation for both optical and electrical serial data links DSA8300 Digital Serial Analyzer Sampling Oscilloscope Jitter noise BER and serial data link analysis 80SJNB Jitter Noise and BER Analysis Ey BER Bathtub Results 11 0957 Gbps 127 bits Filter False Channel False Equalizer None Data Source CH1 SSC Off Phase Reference None Data Rate 11 0957 Gbps Pattern 127 bits Sample Count 132 70 k Jitter Decision Threshold 215 35 uw Noise Sampling Phase 0 Random Jitter Random Noise RJ RMS 1 18 ps RN RMS 2 56 uW Ri h RMS 1 14 ps RN v RMS 2 56 uW RI v RMS 291 77 fs RN h RMS 38 02 nw Deterministic Jitter Deterministic Noise DI 12 62 ps DN 68 55 uW DDI 9 84 ps DDN 62 88 uW DCD 1 32 ps DDN level 1 55 93 uw DDPWS 10 00 ps DDN level 0 50 99 uw BUI d d Os BUN d d ow PI 1 03 ps PN 5 60 uw P3 h 806 56 fs PN v 5 60 uW Pi v 638 05 fs PN h 26 82 nW NPJ d d 0s NPN d d OW Total Jitter BER Total Noise BER T 1E 12 27 86 ps TN 1E 12 101 73 uw Eye Opening 1E 12 62 26 ps Eye Opening 1E 12 300 18 uw Eye Amplitude 401 90 uw SSC Modulation RI d d 1 40 ps Magnitude Oppm DJ d d 8 13 os Frequency 0 Hz analysis complete Ug ox Jitter noise and
41. mplers 280 uV at 20 GHz 450 uV at 425 fs typical on up to 8 simultaneously acquired channels 60 GHz typical Selectable bandwidths allow the user to trade off sampler bandwidth and noise for optimal data acquisition performance Remote samplers or compact sampling extender module cables lt 100 fs on up to 6 channels with 82A04B phase reference module Industry s highest vertical resolution 16 bit A D Electrical resolution lt 20 uV LSB for 1 v full range support minimal signal degradation by allowing the sampler to be located in cl imity to the device under test Optical resolution from lt 20 nW for the 80C07B 1 mW full range to oe n SIA f lt 0 6 uW for the 80C10C 30 mW full range World s highest performance integrated TDR 10 ps typical step 1 rise time supports exceptional impedance discontinuity Optical bandwidths to gt 80 GHz characterization and high dynamic range for s parameter Electrical bandwidths to gt 70 GHz measurements to 50 GHz Over 120 automated measurements for NRZ RZ and pulse signal types Automated mask testing with over 80 industry standard masks 1 With 80E07B 80E08B 80E09B 80E10B 80E11 and 80E11X1 modules 2 80E07B 80E08B 80E09B and 80E10B only www tektronix com 1 Datasheet Analysis Complete suite of over 120 automated measurements for NRZ RZ and pulse signal types Automated Mask Testing with over 80 Industry standard Masks New Masks ca
42. n be Imported into the DSA8300 to support New Emerging Standards Users can Define their own Masks for Automated Mask Testing Vertical and Horizontal Histograms for Waveform Statistical Analysis Vertical Horizontal and Waveform Cursors with measurements Jitter Noise BER and Serial Data Link Analysis is provided through the 80SJNB Basic and Advanced Software Application Options Advanced TDR Analysis S parameter measurements simulation model extraction and serial link simulation capabilities are provided through the IConnect Software Application options High test throughput High sample acquisition rate up to 300 kS s per channel Efficient programmatic interface IEEE 488 Ethernet or local processor access enables high test throughput Applications Design Verification of telecom and datacom components and systems Manufacturing testing for ITU ANSI IEEE SONET SDH compliance High performance true differential TDR measurements Impedance characterization and network analysis for serial data applications including S parameters Advanced jitter noise and BER analysis Channel and eye diagram simulation and measurement based SPICE modeling Superior performance with extraordinary versatility The DSA8300 Digital Serial Analyzer is the most versatile tool for developing and testing communications computers and consumer electronics which use multi gigabit data transmission It is used for optical
43. ns and ringing in your digital system Substantially simplify the signal integrity analysis of the interconnect link equalization and emphasis component design and analysis of the interconnect link with transmitter and receiver Connect Linear Simulator lets the designer link several interconnect channels together to evaluate the total time frequency domain performance and eye diagram of the overall channel For more information regarding the IConnect software applications see the Connect Signal Integrity TDR and S Parameter SW 80SICMX 80SICON 80SSPAR datasheet Measurement and analysis tools for optical testing applications The DSA8300 includes a wide variety of measurement and analysis tools which specifically address optical testing applications In addition to the standard amplitude and timing parametric measurements such as rise fall times amplitude RMS jitter RMS noise frequency period and so on the measurement suite for the DSA8300 includes measurements specifically tailored to measuring optical signals average optical power extinction ratio eye height eye width optical modulation amplitude OMA and so on For a complete list of measurements see the Measurement section of this datasheet The DSA8300 also includes standard compliance testing masks for all of the common optical standards from 155 Mb s to 100 Gb s The DSA8300 mask testing system includes the ability to automatically fit standard
44. om 80E106 Insertion Loss S21 Dynamic Range Frequency GHz DSA8300 Digital Serial Analyzer Sampling Oscilloscope 80E10B Return Loss 11 Magnitude Uncertainty 80E106 Return Loss id 1 Phase ene 12 dB nominal 10 dB nominal 20 dB nominal ca 26 dB nominal T 20 dB nominal 26 dB nominal TT Phase degrees 0 10 20 30 40 50 Frequency GHz Frequency GHz 80E10B uncertainty Test solutions for 100 Gb s 4 x 25 Gb s electrical standards With the continued increase in high bandwidth applications the need to test electrical components modules and systems at high data rates is proliferating An example of such data rates is the CEI 3 0 VSR 28 interface This interface transfers data over multiple electrical channel at rates up to 28 6 Gb s Such signals place significant performance challenges on the test and measurement equipment used to acquire and analyze the devices under test Some of these challenges include The need to acquire the signal with excellent signal fidelity this requirement has several implications for the test instrumentation Lowinstrumentation noise Lowinstrumentation jitter The need to acquire the signal as close to the DUT as possible thereby reducing signal degradation and potential inter symbol interference The need to recover the clock from the data stream to acquire signals under test and to do detailed analysis of t
45. rentiate Exponential Integrate Natural Log Log Magnitude Min Max Square Root and Filter In addition measurement values can be utilized as scalars in math waveform definitions For many applications standard masks are available as predefined built in masks Many of the most commonly used standard masks are shown in the following supported standards list Contact your local Tektronix representative to get a list of all available masks Unless otherwise noted file based masks are used to distribute new Tektronix factory created updated masks as a file loadable by the firmware User defined masks allow the user to create through UI or Pl user masks Waveform measurements Supported standards DSA8300 Digital Serial Analyzer Sampling Oscilloscope Type Standard Ethernet 100BASE LX10 125 0 Mb s 100BASE BX10 125 0 Mb s Gigabit Ethernet 1 250 Gb s 1000BASE KX 1 250 Gb s 2 GBE 2 500 Gb s 10GBASE X4 3 125 Gb s 10GBASE W 9 95328 Gb s 10GBASE R 10 3125 Gb s FEC11 10 11 095728 Gb s 10GBASE LRM 10 31250 Gb s 40GBASE FR 41 25 Gb s 40GBASE LR4 10 3125 Gb s 40GBASE SR4 10 3125 Gb s 100GBASE ER4 25 71825 Gb s 100GBASE LR4 25 71825 Gb s 100GBASE SR10 10 3125 Gb s 100GBASE SR4 25 7185 Gb s SONET SDH OC 1 STM 0 51 84 Mb s OC 3 STM 1 155 52 Mb s OC 12 STM 4 622 08 Mb s OC 48 STM 16 2 48832 Gb s FEC2 666 2 6660571 Gb s OC 192 STM 64 9 95328 Gb s FEC10 66 10 6642 Gb s FEC10 71 10 709225 Gb s OTU4 27 95 Gb s OC 768 STM 256
46. s 17 5 ps 11 7 ps 5 8 ps 5 0 ps 17 5 ps 11 7 ps 7 ps full bandwidth 10 90 RMS Noise 1 8 mV 600 uV 280 uV at 20 GHz 300 uV at 30 GHz 330 pV at 40 GHz 600 uV 280 uV at 20 GHz 300 uV at 30 GHz 300 uV at 30 GHz 330 uV at 40 GHz 450 pV at 60 GHz 300 uV at 30 GHz 370 uV at 40 GHz 450 uV at 60 GHz 950 uV at 70 GHz 600 uV at 50 GHz Incident TDR 23 ps 18 ps 12 ps Step Rise Time 10 90 Reflected TDR 28 ps 20 ps 15 ps Step Rise Time 10 90 Remote Sampling w optional 80X01 w optional 80X01 Fully integrated Fully integrated w optional 80X01 w optional 80X01 Fully integrated Fully integrated Capability or 80X02 or 80X02 2m remote cable 2 m remote cable or 80X02 or 80X02 2m remote cable 2 m remote cable extender cable extender cable extender cable extender cable S parameter performance characteristics 80E10B All measurements were performed after proper warm up as specified in the DSA8300 manual Standard S parameter dynamic range measurement practices were used to determine the dynamic range of the module Uncertainty results were derived from a wide range of devices with 250 averages Better dynamic range can be achieved by selecting lower bandwidth settings on the 80E10B module due to a lower RMS noise floor Results apply to single ended or differential measurements 80E10B Return Loss 11 Dynamic Range Frequency GHz 80E10B dynamic range 12 www tektronix c
47. te for your application For more detailed information on these solutions see the 80Cxx Optical Sampling Modules datasheet for clock recovery options integrated into the 80C07B 80C08D or 80C11B or the appropriate clock recovery datasheets for stand alone clock recovery modules or instruments Note The stand alone clock recovery modules instruments have electrical inputs and can be used to recover clocks from electrical signals as well as from the electrical data pick off outputs from the 80CXX Series optical sampling modules Note Clock recovery is integrated into the optical module and controlled from the Trigger Setup menu of the 8000 Series oscilloscope Integrated clock recovery options Characteristic 80C07B 80C08D Opt 80C08D Opt 80C08D Opt 80C11B Opt 80C11B Opt 80C11B Opt 80C11B Opt CR1 CR2 CR4 CR1 CR2 CR3 CR4 Continuously Fixed Rates Fixed Rates Fixed Rates 9 8 12 6 Fixed Rates Fixed Rates Fixed Rates 9 8 12 6 Variable Rate Range Gb s Clock Recovery 22 15 15 15 9 9 9 9 Sensitivity dBm 12 Standard rates supported 125 155 Mb s n 622 Mb s n 1063 Mb s n 1250 Mb s CI 2125 Mb s m 2488 2500 Mb s m 9 95 Gb s n n a n n n 10 31 Gb s n n n n 10 52 Gb s n n n 10 66 Gb s n n n 10 71 Gb s n n n 11 10 Gb s n n 11 30 Gb s n n 14 025 Gb s 14 063 Gb s 25 78 Gb s 27 74 Gbls
48. without notice Vertical system Rise Time Bandwidth Vertical Resolution Horizontal system Main and Magnification View Time Bases Horizontal Scale Time Interval Accuracy Trigger Direct Front Panel Input Clock Input Prescale Trigger Front Panel Eye or Pattern Mode Clock Input Prescale Trigger Front Panel Other Mode TDR Clock Trigger Lock to External 10 MHz Clock Random Phase Corrected Mode Clock Input to 82A04B Triggered Phase Corrected Mode Clock Input to 82A04B Horizontal Deskew Range Available DSA8300 Record Length Longer Records Available 14 www tektronix com Determined by the sampling modules used 16 bits over the sampling modules dynamic range Electrical Resolution lt 20 uV LSB for 1 V full range Optical resolution depends on the dynamic range of the optical module ranges from lt 20 nW for the 80C07B 1 mW full range to lt 0 6 uW for the 80C10C 30 mW full range 100 fs div to 1 ms div in 1 2 5 sequence or 100 fs increments Horizontal scale gt 20 ps div right most point of measurement interval lt 150 ns Mean Accuracy 0 1 of interval STDEV 1 ps Horizontal scale lt 20 ps div right most point of measurement interval lt 150 ns Mean Accuracy 1 ps 0 5 of interval Mean accuracy determined by clock input accuracy STDEV lt 0 7 ps max lt 0 1 ps typical Horizontal scale gt 20 ps div right most point of measurement interval lt 150 ns Mean Accuracy
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