User manual TEKTRONIX 80E06 DATASHEET

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[. . . ] Electrical Sampling Modules 80E10 · 80E09 · 80E08 · 80E07 · 80E06 · 80E06X2 · 80E04 · 80E03 · 80E03-NV · 80E01 Data Sheet Applications Impedance Characterization and S-parameter Measurements for Serial Data Applications Advanced Jitter, Noise, and BER Analysis Channel and Eye-diagram Simulation and Measurement-based Spice Modeling 80E10, 80E08, and 80E04 High-performance TDR/T Measurements Impedance Profile, Inductance, Capacitance, and S-parameters Transmission Line Quality, Impedance, and Crosstalk Features & Benefits All Modules Up to 70 GHz Bandwidth and 5 ps Measured Rise Time (10 - 90%) Lowest Noise for Analysis ­ 450 VRMS at 60 GHz, 300 VRMS at 30 GHz Remote Samplers*1 enable Location of Sampler Near DUT and ensure Best Signal Fidelity Independent Sampler Deskew ensures Easy Fixture and Probe De-embedding Dual Channel (Except 80E01 and 80E06) Precision Microwave Connectors (3. 5 mm, 2. 92 mm, 2. 4 mm, and 1. 85 mm) Probe Support (Except 80E06) True Differential, Common Mode, and Single-ended Measurements Efficient Fault Isolation 80E09, 80E07, 80E06, 80E01 High-frequency, Low-noise Signal Acquisition Fast Rise Time Measurements Jitter Analysis and Waveform Analysis 80E03, 80E03-NV Device Characterization, Transmission Quality, Waveform Parameters Low Signal Measurements *1 Integrated on 80E07 - 80E10 and optional on 80E01 - 80E04 and 80E06. TDR Modules 15 ps Reflected True Differential Fully Integrated TDR Rise Time (12 ps Incident) and feature Resolution Below 1 mm Efficient, Accurate, Easy to Use, and Cost-effective S-parameters up to 50 GHz Data Sheet TDR Modules: 80E10, 80E08, and 80E04 The 80E10, 80E08, and 80E04 are dual-channel Time Domain Reflectometry (TDR) sampling modules, providing up to 12 ps incident and 15 ps reflected rise time in the 80E10 (18 ps incident in 80E08 and 23 ps incident in 80E04). Each channel of these modules is capable of generating a fast step for use in TDR mode and the acquisition portion of the sampling module monitors the incident step and any reflected energy. The polarity of each channel's step can be selected independently. [. . . ] IConnect also enables impedance, S-parameters, and eye-diagram compliance testing as required by various serial data standards, as well as full channel analysis, Touchstone (SnP) file output, and SPICE modeling for gigabit interconnects. Sampling Modules: 80E09, 80E07, 80E06, 80E03, 80E03-NV, and 80E01 The 80E09 and 80E07 are dual-channel modules with remote samplers, capable of 450 VRMS noise at 60 GHz sampling bandwidth, and 300 V at 30 GHz sampling bandwidth. Each small form factor remote sampler is attached to a 2-meter cable in order to minimize the effects of cables, probes, and fixtures, allow close location of the sampler to the DUT, and ensure best signal fidelity. User-selectable bandwidth settings (60/40/30 on 80E09 and 30/20 on 80E07) offer optimal noise/bandwidth trade-off. The 80E06 and 80E01 are single-channel, 70+ and 50 GHz bandwidth sampling modules. The 80E06 provides the widest measurement bandwidth and fastest rise time measurements with world-class signal fidelity. Both the 80E06 and 80E01 provide a superior maximum operating range of ±1. 6 V. Both of these modules can be used with the optional 2-meter extender cable, which ensures superior signal fidelity and measurement flexibility. These sampling modules provide an acquisition rise time of 17. 5 ps or less. When used with Tektronix 80SJNB Jitter, Noise, and BER software, these modules enable separation of both jitter and noise into their components, understanding precise causes of eye closure, and obtaining highly accurate extrapolation of BER and 3-D eye contour. When used with the 82A04 phase reference module, time-base accuracy can be improved down to 200 fsRMS jitter, which together with the 300 V noise floor and 14 bits of resolution ensures the highest signal fidelity for the measured signals. 2 www. tektronix. com Electrical Sampling Modules -- 80E10 · 80E09 · 80E08 · 80E07 · 80E06 · 80E06X2 · 80E04 · 80E03 · 80E03-NV · 80E01 Characteristics Characteristic Application Type Channels Input Impedance Channel Input Connector Bandwidth*2 80E10 True differential TDR, S-parameters, and fault isolation High-frequency, low-noise signal acquisition and jitter characterization True differential TDR and S-parameters Optimal noise/performance trade-off for jitter characterization High-speed electrical device characterization TDR impedance and crosstalk characterization Device characterization High-frequency, high maximum operating range signal acquisition 2 50 ±1. 0 80E09 2 50 ±1. 0 80E08 80E07 80E06 2 2 1 50 ±1. 0 50 ±1. 0 50 ±0. 5 1. 85 mm female, precision adapter to 2. 92 mm included with 50 SMA termination 1. 85 mm female, precision adapter to 2. 92 mm included with 50 SMA termination 2. 92 mm female 2. 92 mm female 1. 85 mm female, precision adapter to 2. 92 mm included with 50 SMA termination 3. 5 mm female 3. 5 mm female 2. 4 mm female, precision adapter to 2. 92 mm included with 50 SMA termination 50/40/30 GHz*3, 4 60/40/30 GHz*3, 4 30/20 GHz*3, 4 30/20 GHz*3, 4 70+ GHz 80E04 80E03 80E03-NV 80E01 2 2 1 50 ±0. 5 50 ±0. 5 50 ±0. 5 20 GHz*3 20 GHz*5 50 GHz *2 Values shown are warranted unless printed in an italic typeface which represents an unwarranted characteristic value that the instrument will typically perform to. *5 The 80E03 bandwidth is calculated from 0. 35 bandwidth rise time product. G5 ­ Complete Care 5 Years (includes loaner, scheduled calibration and more). G3 ­ Complete Care 3 Years (includes loaner, scheduled calibration and more). Interconnect Cables (3rd party) Tektronix recommends using quality high-performance interconnect cables with these high-bandwidth products in order to minimize measurement degradation and variations. Gore & Associates' cable assemblies, accessible at www. gore. com/tektronix, are compatible with the 2. 92 mm, 2. 4 mm, and 1. 85 mm connector interface of the 80Exx modules. [. . . ] 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. Information in this publication supersedes that in all previously published material. All other trade names referenced are the service marks, trademarks, or registered trademarks of their respective companies. [. . . ]

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