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Attribut | Valeur |
---|---|
High Frequency (range) | 10GHz <= 20GHz |
The DSA8300 Series Sampling Oscilloscope, when configured with one or more electrical sampling modules, provides complete test solutions for multi-channel, high-bandwidth electrical applications. This highly configurable solution is well suited for debugging, characterizing and analyzing components, modules and systems with signaling rates at 10, 40 and even 100 Gb/s.
The 80E00 family of electrical sampling modules provide a wide variety of capabilities, allowing the user to configure a test solution specifically adapted to their application.
The 80E03 and 80E03-NV are dual-channel, 20 GHz sampling modules. These sampling modules provide an acquisition rise time of 17.5 ps or less. Used with DSA8300 Tektronix Sampling Oscilloscopes.
Key Features |
Independent sampler deskew ensures easy fixture and probe de-embedding |
Dual channel (except 80E11X1) |
Precision Microwave Connectors (3.5 mm, 2.92 mm, 2.4 mm, and 1.85 mm) |
Probe support |
Key Performance Specifications |
Up to 70 GHz bandwidth and 5 ps measured rise time (10-90%) |
Lowest noise for analysis: 450 μVRMS at 60 GHz, 300 μVRMS at 30 GHz |
15 ps reflected true differential fully integrated TDR rise time (12 ps incident) and feature resolution below 1 mm (TDR modules) |
Efficient, accurate, easy to use, and cost-effective S-parameters up to 50 GHz |
Remote samplers¹ enable location of sampler near DUT and ensure best signal fidelity note: ¹ Integrated on 80E07B - 80E10B and optional on 80E03, 80E04, 80E11 and 80E11X1. |
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 |
80E10B, 80E08B, and 80E04: High-performance TDR/T measurements Impedance profile, inductance, capacitance, and S-parameters Transmission line quality, impedance, and crosstalk True differential, common mode, and single-ended measurements Efficient fault isolation |
80E11, 80E11X1, 80E09B, 80E07B: 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 |
Specifications | |||||
Electrical Sampling Modules | |||||
Model Overview | |||||
Module | Application | Bandwidth¹ | Channels | Input impedance | Input connector |
80E11 80E11X1 | High-frequency Low-noise Signal acquisition and jitter characterization | 70/60/(40) GHz² | 2/1 | 50 ±1.0 Ω | 1.85 mm female |
80E10B | True differential TDR S-parameters Fault isolation | 50/40/(30) GHz² | 2 | 50 ±1.0 Ω | 1.85 mm female |
80E09B | High-frequency Low-noise Signal acquisition and jitter characterization | 60/40/(30) GHz² | 2 | 50 ±1.0 Ω | 1.85 mm female |
80E08B | True differential TDR and S-parameters | 30/(20) GHz² | 2 | 50 ±1.0 Ω | 2.92 mm female |
80E07B | Optimal noise/performance trade-off for jitter characterization | 30/(20) GHz² | 2 | 50 ±1.0 Ω | 2.92 mm female |
80E04 | TDR impedance and crosstalk characterization | 20 GHz³ | 2 | 50 ±0.5 Ω | 3.5 mm female |
80E03 80E03-NV | Device characterization | 20 GHz⁴ | 2 | 50 ±0.5 Ω | 3.5 mm female |
Notes:
¹ Normal text is warranted values. Values in parenthesis are typical (unwarranted) value to which the instrument will typically perform.
² User selectable.
³ Calculated from 0.35 bandwidth rise time product.
⁴ The 80E03 bandwidth is calculated from 0.35 bandwidth rise time product. The 80E03-NV bandwidth is directly verified.
Specifications | |
Electrical Sampling Modules | |
Model Overview | |
Models | Description |
80E11 | Dual channel, 70+ GHz sampling module |
80E11X1 | Single channel, 70+ GHz sampling module |
80E10B | Dual-channel, 50 GHz true differential TDR sampling module with remote samplers |
80E09B | Dual-channel, 60 GHz sampling module |
80E08B | Dual-channel, 30 GHz true differential TDR sampling module with remote samplers |
80E07B | Dual-channel, 30 GHz sampling module |
80E04 | Dual-channel, 20 GHz true differential TDR sampling module |
80E03/80E03-NV | Dual-channel, 20 GHz sampling module ¹ |
Instrument Options | |
80E04 Opt. 09 | Include two 80A09 EOS/ESD Protection Devices with the 80E04 module |
Recommended Accessories | |
80E04UP Opt. 09 | 80E04 Upgrade kit; That provides two 80A09 EOS/ESD Protection Devices in a case that can hold an 80E04 module |
015-1001-xx | 2X attenuator (SMA Male-to-Female) |
015-1002-xx | 5X attenuator (SMA Male-to-Female) |
011-0157-xx | Adapter; (2.4 mm male to 2.92 mm female – can also be used as 1.85 mm male to 2.92 mm female) |
P8018 | 20 GHz single-ended TDR probe. 80A02 module (below) recommended for static |
P80318 | 18 GHz differential TDR probe. 80A02 module (below) recommended for static protection of each channel of the sampling or TDR module |
80A09 | 26 GHz ESD Protection Accessory |
80A02 | EOS/ESD isolation module (1 channel). P8018 or P80318 TDR probe (above) recommended |
80X01 | One-meter sampling module extender cable (for 80E11, 80E11X1, 80E04, 80E03, 80E03-NV) |
80X02 | Two-meter sampling module extender cable (for 80E11, 80E11X1, 80E04, 80E03, 80E03-NV) |
Note:
¹ For the 80E03-NV, bandwidth is directly verified and the Calibration Certification Report includes test data on the module's bandwidth test results.
Specifications | |
Electrical Sampling Module | |
Series Overview | |
Model | Description |
80E01 | 50 GHz Bandwidth Single Channel 2.4 mm Precision Connector |
80E02 | 12.5 GHz Bandwidth Dual Channel Low Noise |
80E03 | 20 GHz Bandwidth Dual Channel |
80E04 | 20 GHz Bandwidth Dual Channel 35 ps TDR Reflected Rise Time True Differential TDR |
80E06 | 70+ GHz Electrical Bandwidth (typical) Single Channel 2.0 mVRMS Noise (typical) 1.85 mm Precision Connector |
80E07 | 30 GHz Sampling Module Dual Channel |
80E08 | 30 GHz True Differential TDR Sampling Module Remote Samplers Dual Channel |
80E09 | 60 GHz Sampling Module Dual Channel |
80E10 | 50 GHz True Differential TDR Sampling Module Remote Samplers Dual Channel |