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QPHY-PCIE6-TX-RX

PCI Express 6.0 introduces a new set of physical-layer testing demands at a transfer rate of 64 Gb/s. QPHY-PCIE6-TX-RX addresses these challenges with a fully automated test solution for both Transmitter (Tx) and Receiver (Rx) testing to the PCI Express 6.0 Base specification. PCI Express 5.0, 4.0, and 3.0 transmitter, receiver and link equalization testing are also supported, for complete PCIe ecosystem coverage.

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Key Features
  • Automated collection and analysis of captured waveforms
  • Automated stressed-eye calibration
  • BER and JTOL tests
  • Jitter Measurements
  • SNDR and RLM Measurement
  • SDAIII measurement toolset available:
    • Eye Diagrams
    • Fixture De-embedding
    • Channel Embedding
  • Report generation feature creates comprehensive reports with all pertinent test information

 

Debugging to Compliance Testing
QPHY-PCIE6-TX-RX connection diagram

Teledyne LeCroy’s QPHY-PCIE6-TX-RX PCI Express 6.0 electrical transmitter and receiver software is a fully automated test solution meeting the PCIe 6.0 Base specification requirements for characterizing and testing both transmitters and receivers.

Transmitter Characterization
QPHY-PCIE6-TX-RX transmitter equalization tools

Simple yet powerful transmitter equalization analysis software guides the user though setting up the physical test setup connections. Clear, informative connection diagrams help simplify complex test setups and reduce mistakes. QPHY-PCIE6-TX-RX automatically configures the test equipment and device under test to perform transmitter base specification measurements.

Receiver Calibration and Testing
QPHY-PCIE6-TX-RX calibration test connection diagram

To test a PCI Express receiver, the signal applied must meet stipulated voltage swing and preset levels, precisely calibrated noise and jitter impairments, and a prescribed level of eye closure due to channel loss. QPHY-PCIE6-TX-RX controls both the oscilloscope and the BERT to automate the entire iterative calibration process.

  • Voltage swing and preset emphasis levels
  • Random and sinusoidal jitter addition
  • Differential-mode and common-mode noise
  • Eye closure through loss channel selection

 

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