100GBASE-KR4, 100GBASE-CR4, & CAUI-4 Compliance and Characterization Solution for Real Time Scopes

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1 100GBASE-KR4, 100GBASE-CR4, & CAUI-4 Compliance and Characterization Solution for Real Time Scopes This application package is designed in conjunction with the performance levels offered by a 50 GHz 70KSX instrument pair. The 100G-TXE loads the required Bessel Thomson roll-off filter which constrains the channel out to the spec mandated 33 GHz point. This is common across all the IEEE 100G electrical specs today. The unique lower noise levels of the ATI architecture serve key signal to noise and distortion ratio measurements which are attained with margin on the 70KSX systems. The 100G-TXE solutions package is available on non 70KSX systems, such as 23 GHz and higher 70KDX and MSO instruments with the understanding that these are for debug, not spec level conformance validation. Key features 100G-TXE offers streamlined and fully automated transmitter characterization of 802.3bj s 100GBASE-KR4/100GBASE-CR4 electrical transmitter specifications, as well as 802.3bm CAUI specification. Extends DPOJET for low level debug, into 100GBASE- KR4/100GBASE-CR4 and CAUI-4 1. Applications Measurements of electrical transmitter Validation of 100GBASE-KR4/100GBASE-CR4 and CAUI-4 TekExpress 100GBASE-KR4, 100GBASE-CR4, and CAUI-4 solution IEEE 802.3bj (100GBASE-KR4/100GBASE-CR4) and IEEE 802.3bm (CAUI-4) Electrical Real Time Transmitter Compliance and Characterization Solution The new Tektronix Real Time Instrument based 100GBASE- KR4/100GBASE-CR4/CAUI-4 Transmitter Characterization automation systems provides turnkey testing and debug of three of the 100G Ethernet industries most common electrical interfaces. As Silicon designers need to perform 100GBASE-KR4 and 100GBASE-CR4 validation of their silicon, and System designers need to perform 100GBASE-CR4 and CAUI-4 validation, these three tools are brought together in a single package 100G-TXE. IEEE 802.3bj (100GBASE-KR4) Electrical Real Time Transmitter Measurements fully automated Mapping of TP0a 100GBASE-KR4 measurement Signaling rate ±1 00 ppm Differential peak-to-peak output voltage (max) Transmitter disabled mv Transmitter enabled mv DC common-mode output voltage (max) V DC common-mode output voltage (min) V AC common-mode output voltage (RMS, max) Output waveform GBd mv steady-state voltage v f (max) V 1 CAUI-4 is also known as CAUI. 1

2 100GBASE-KR4, 100GBASE-CR4, and CAUI4 Datasheet steady-state voltage v f (min) V Linear fit pulse peak (min) x v f V Normalized coefficient step size (min) Normalized coefficient step size (max) Pre-cursor full-scale range (min) Post-cursor full-scale range (min) Signal-to-noise-and-distortion ratio (min) db Output jitter (max) Even-odd jitter UI Effective bounded uncorrelated jitter, peak-to-peak Effective total uncorrelated jitter, peakto-peak Transmitter test fixture and test points UI UI IEEE 802.3bj (100GBASE-CR4) Electrical Real Time Transmitter Measurements fully automated Mapping of TP2 100GBASE-CR4 measurement Differential peak-to-peak output voltage (max) with Tx disabled mv DC common-mode output voltage (max) V AC common-mode output voltage, v cmi (max., RMS) Differential peak-to-peak voltage, v di (max.) Transmitter waveform Transmitter steady-state voltage, v f (min.) Transmitter steady-state voltage, v f (max.) mv mv V V Linear fit pulse peak (min.) v f V Transmitted waveform abs coefficient step size (min.) abs coefficient step size (max.) minimum precursor full-scale ratio minimum post cursor full-scale ratio Signal-to-noise-and-distortion ratio (min.) Output jitter (max.) db Even-odd jitter, peak-to-peak UI Effective bounded uncorrelated jitter, peak-to-peak Effective total uncorrelated jitter, peakto-peak UI UI Signaling rate, per lane ±1 00 ppm Unit interval nominal ps GBd 2

3 Compliance and Characterization Solution Eye height, differential (min) 83E mv Vertical eye closure (max) 83E db Transition time (min, 20% to 80%) 83E ps DC common mode voltage (min) 2 83E mv DC common mode voltage (max) 83E mv Transmitter test fixture and test points IEEE 802.3bm (CAUI-4) Electrical Real Time Transmitter Measurements fully automated Mapping of TP1a CAUI-4 measurement Signaling rate per lane (range) 83E ± 100 ppm DC common-mode output voltage (max) 83E V DC common-mode output voltage (min) 83E V Single-ended output voltage (max) 83E V Single-ended output voltage (min) 83E V AC common-mode output voltage (max, RMS) Differential peak-to-peak output voltage (max) GBd 83E mv Transmitter disabled 83E mv Transmitter enabled 83E mv Transmitter test fixture and test points Host Control Board (HCB) and Module Control Board (MCB) are for test point TP1a and TP4 respectively. Optional System Probing Setup The Bandwidth requirements of 100GBASE-KR4 are difficult to match with browser or soldered down probes. However, for debug purposes these 33 GHz and lower probes offer effective signal access on backplanes and chip to chip interconnects. Eye width (min) 83E UI Eye height A, differential (min) 83E mv Eye height B, differential (min) 83E mv Transition time (min, 20% to 80%) 83E ps Mapping of TP4 CAUI-4 measurement Signaling rate per lane (range) 83E ± 100 ppm AC common-mode output voltage (max, RMS) GBd 83E mv Differential output voltage (max) 83E mv Eye width (min) 83E UI 2 DC common mode voltage is generated by the host. Specification includes effects of ground offset voltage. 3

4 100GBASE-KR4, 100GBASE-CR4, and CAUI4 Datasheet 100GBASE-KR4/100GBASE-CR4 Measurement Selection The Setup and test execution is simple with the 100G-TXE software. The oscilloscope acquisition and analysis are all controlled through the 100G- TXE automation solution. The Graphical User Interface (GUI) provides an intuitive and easily repeatable workflow for setup and testing. Backplane and Chip-Chip interconnects can be a significant probing challenge. Electrical System Interconnect Setup Direct electrical connections via a precision fixture or 2.92mm interconnects are the preferred method to access the backplane and cabled signals. The QSFP28 module interconnect point found on 100GBASE-CR4 and CAUI-4 designs is the most typical signal access point. TekExpress 100GBASE-KR4 measurement setup Alternately, a similar set of measurements without the Standards pass fail criteria and reporting tools can be found as extensions to the DPOJET product. These would serve the debug user, rather than the compliance user. DPOJET Standard: 100GBASE-KR4 measurement setup Design characterization is supported beyond 100GBASE-KR4/100GBASE- CR4/CAUI-4 compliance requirements for all measurements. TekExpress 100G-TXE offers flexible control over test configurations such as analysis windows and other parameters. User defined mode lets customers make changes to the test limits, and perform marginal testing beyond compliance. Refer to Wilder Technologies for details regarding the various methods of signal break-out. 4

5 Compliance and Characterization Solution User Defined mode Under user defined mode, users can configure Global parameters, test specific parameters, measurement repeat parameters, and notification parameters. This supports characterization measurements rather than developing custom lab setups, reducing testing time and complexity. Reports & Measurement Results 5

6 100GBASE-KR4, 100GBASE-CR4, and CAUI4 Datasheet Ordering Information IEEE 802.3bj (100GBASE-KR4/100GBASE-CR4) and IEEE 802.3bm (CAUI-4) Electrical Real Time Transmitter Compliance and Characterization Solution KR4/100GBASE-CR4) & CAUI-4 permanent node locked license With a DPS70KSX Real Time Oscilloscope KR4/100GBASE-CR4) & CAUI-4 permanent node locked license With a DPO70KDX Real Time Oscilloscope KR4/100GBASE-CR4) & CAUI-4 permanent node locked license With a MSO70KDX Real Time Oscilloscope KR4/100GBASE-CR4) & CAUI-4 permanent node locked license With a DPO70KSX Real Time Oscilloscope KR4/100GBASE-CR4) & CAUI-4 on a Floating License (any Real Time Oscilloscope listed above) KR4/100GBASE-CR4) & CAUI-4 on a Free 30 Day Trial License (any Real Time Oscilloscope listed above) Oscilloscope DPS77704SX, DPS75904SX, DPS75004SX, DPS73308SX option 100G-TXE Oscilloscope DPO72304DX, DPO72504DX, DPO73304DX option 100G-TXE Oscilloscope MSO72304DX, MSO72504DX, MSO73304DX option 100G-TXE Oscilloscope DPOO72304SX, DPO72504SX, DPO73304SX option 100G-TXE DPOFL-100G-TXE DPOFT-100G-TXE 6

7 Compliance and Characterization Solution Recommended products Probes Tek P7633 (33 GHz) or Tek P7720 (20 GHz) Probe Fixture Wilder MCB/HCB QSFP+ Breakout Fixture ( ) Certifications CE Marking Not Applicable. Tektronix is registered to ISO 9001 and ISO by SRI Quality System Registrar. 7

8 100GBASE-KR4, 100GBASE-CR4, and CAUI4 Datasheet ASEAN / Australasia (65) Austria * Balkans, Israel, South Africa and other ISE Countries Belgium * Brazil +55 (11) Canada Central East Europe and the Baltics Central Europe & Greece Denmark Finland France * Germany * Hong Kong India Italy * Japan 81 (3) Luxembourg Mexico, Central/South America & Caribbean 52 (55) Middle East, Asia, and North Africa The Netherlands * Norway People's Republic of China Poland Portugal Republic of Korea , Russia & CIS +7 (495) South Africa Spain * Sweden * Switzerland * Taiwan 886 (2) United Kingdom & Ireland * USA * European toll-free number. If not accessible, call: 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 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 price change privileges reserved. TEKTRONIX and TEK are registered trademarks of Tektronix, Inc. All other trade names d are the service marks, trademarks, or registered trademarks of their respective companies. 10 Feb W

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