Quick Takeaways
  • Molex HSAutoLink G Connector enables compact 25Gbps automotive Ethernet.
  • New system supports advanced vehicle networking applications efficiently.

Molex has expanded its HSAutoLink Interconnect portfolio by introducing the HSAutoLink G Connector System, a compact solution engineered to provide automotive Ethernet connectivity of up to 25Gbps. Developed for next-generation Software-Defined Vehicles, the connector is compatible with existing USCAR Ethernet interfaces, allowing vehicle manufacturers to upgrade networking capabilities without significant design changes. The system is intended to support increasingly data-intensive vehicle platforms while maintaining space efficiency and reducing overall component weight.

Designed for High-Bandwidth Vehicle Architectures

The HSAutoLink G Connector System is built to support applications that demand high-speed data transmission across modern vehicle platforms. It is suitable for Advanced Driver Assistance Systems, radar, LiDAR, zonal architectures, immersive displays and central compute modules, where reliable multi-gig Ethernet communication is essential. By fitting within established USCAR interface standards, the connector simplifies integration into existing vehicle designs while helping manufacturers transition toward more software-centric electrical and electronic architectures.

Key Capabilities of the HSAutoLink G Connector System

  • Supports automotive Ethernet connectivity up to 25Gbps.
  • Compatible with existing USCAR Ethernet interfaces.
  • Designed for Software-Defined Vehicle architectures.
  • Advanced EMI shielding enhances signal protection.
  • Controlled differential impedance improves transmission quality.
  • Multiple ground-contact points strengthen connection reliability.
  • Anti-stubbing design helps prevent incorrect connector mating.
  • Product family includes terminals, connectors, PCB headers and cables.

HSAutoLink Portfolio and Product Availability

The latest connector builds on the HSAutoLink portfolio, which has delivered more than 700 million connectors since 2008. In addition to providing higher bandwidth capability, the new design incorporates advanced EMI shielding, controlled differential impedance, multiple ground-contact points and an anti-stubbing design to improve signal integrity, reliability and protection against mis-mating. Product samples are now available for customer qualification and design testing, enabling manufacturers to evaluate integration into future vehicle platforms.

HSAutoLink G Connector System Highlights

Feature Details
Maximum Ethernet Speed Up to 25Gbps
Compatibility USCAR Ethernet Interface
Target Applications ADAS, Radar, LiDAR, Zonal Architectures, Immersive Displays, Central Compute Modules
Included Components Terminals, Connectors, PCB Headers, Cables
Current Status Customer Qualification and Design Testing Samples Available

Showcase at Electronica China 2026

The HSAutoLink G Connector System will be showcased during Electronica China 2026, where Molex will also present its latest solutions for electrification, battery connectivity and vehicle networking. The introduction highlights the company's continued focus on supporting the increasing networking demands of Software-Defined Vehicles through scalable, high-performance interconnect technologies designed for future automotive platforms.

Frequently Asked Questions

What is the Molex HSAutoLink G Connector System designed for?
The Molex HSAutoLink G Connector System is designed to deliver automotive Ethernet connectivity of up to 25Gbps for Software-Defined Vehicles. It supports bandwidth-intensive applications including ADAS, radar, LiDAR, zonal architectures, immersive displays and central compute modules. Compatible with existing USCAR Ethernet interfaces, it enables easier system upgrades while offering advanced EMI shielding, improved signal integrity, enhanced reliability and a comprehensive product family that includes terminals, connectors, PCB headers and cables.

Official Disclosures, Public Data & GAI Analysis

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