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PCIe 4.0 x1 Tx to Rx Cross Over Jumper Cable, Male to Female
P4X1-CRO-M-F PCIe 4.0 x1 Tx to Rx Cross Over Jumper Cable, Male to Female
 
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Product Code: P4X1-CRO-M-F


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Description
 

PCIe 4.0 x1 Tx to Rx Cross Over Jumper Cable, Male to Female

The PCIe 4.0 x1 Tx to Rx Cross Over Jumper Cable, Male to Female is a specialized high-performance interface solution designed for unique connectivity scenarios requiring signal crossover between transmission (Tx) and reception (Rx) lanes. This cable features a PCIe 4.0 x1 male connector on one end and a PCIe 4.0 x1 female connector on the other end, with internal wiring that crosses Tx and Rx pairs to enable specific testing, debugging, or custom configuration requirements. Engineered for exceptional signal integrity, this cable utilizes 85? low-impedance twin-axial cable technology (e.g., 31 AWG signal wires, as utilized in premium 3M™ designs) to minimize signal degradation and ensure high-speed data transfer. It is ideal for advanced testing environments, development setups, and specialized applications where conventional straight-through cables cannot meet specific signal routing needs.

Features

  • Signal Crossover Design: Unique internal wiring crosses Tx and Rx lanes between connectors, enabling specific testing and debugging scenarios.
  • High-Speed Performance: Supports PCIe 4.0 specifications with data transfer rates up to 16 GT/s (16 Gbps, 2 GB/s per lane for x1), ensuring PCIe 4.0 bandwidth integrity despite crossover configuration.
  • Low Impedance: Optimized 85? impedance matching (per PCIe 4.0 standards) ensures minimal signal degradation and superior signal integrity.
  • Enhanced Compatibility: Compatible with PCIe 4.0/3.0/2.0 protocols and works with both Intel and AMD motherboards. Compatible with Card Electromechanical (CEM) connectors.
  • Secure Connection: Precision-engineered connectors ensure reliable mating and stable operation.
  • Durable Construction: High-quality materials (e.g., gold-plated contacts: min. 0.76µm gold thickness per premium specs, braided shielding) ensure longevity and repeated use. Features EMI shielding to reduce electromagnetic interference.
  • Flexible Design: Utilizes thin, flat twin-axial cable (e.g., 3M™ Low Loss Twin Axial Cable with 31 AWG wires) that supports tight bending radii for installation flexibility.

Specifications

  • Host Connector: PCIe 4.0 x1 Male
  • Device Connector: PCIe 4.0 x1 Female
  • Data Rate Support: Up to 16 GT/s (PCIe 4.0 x1), compatible with PCIe 3.0/2.0.
  • Supported Protocols: PCIe 4.0/3.0/2.0.
  • Impedance: 85? ±5% (differential).
  • Cable Construction: Twin-axial cable (e.g., 3M™ Low Loss Twin Axial Cable) with fine signal wires (e.g., 31 AWG), offering flexibility and good bend radius.
  • Cable Length: Common lengths include 250mm (0.25m), 300mm (0.3m), 500mm (0.5m). (Specify your preferred length when ordering.)
  • Operating Temperature: -20°C to +85°C (aligns with common PCIe cable specs).
  • Durability Rating: 2,500+ mating cycles (connectors).
  • Shielding: Individual pair shielding with overall braid protection to minimize EMI.
  • Contact Plating: Gold-plated contacts (0.76µm minimum gold thickness, per premium specs).
  • Dielectric Withstanding Voltage: 300V AC.

Applications

  • Testing & Debugging: Essential for validating PCIe signal integrity, protocol analysis, and hardware debugging where signal crossover is required.
  • Development Environments: Used in R&D labs for prototyping and testing custom PCIe implementations or troubleshooting signal path issues.
  • Data Centers: Specialized configurations in enterprise equipment and data center computing devices where unique signal routing is necessary.
  • High-Performance Computing: Custom setups in HPC environments requiring specific signal management.
  • Quality Assurance: Manufacturing testing and validation of PCIe devices and interfaces.

Compatibility Notes

This cable is designed for specialized applications requiring Tx/Rx crossover. Ensure the host system’s PCIe slot supports PCIe 4.0 or earlier versions (3.0/2.0) for backward compatibility. Note: This is not a standard extension cable and should only be used in specific scenarios where signal crossover is explicitly required.


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