Our PCIe 3.0 to 6.0 series connectors deliver ultra-high transmission rates up to 64 GT/s, ensuring superior signal integrity and stable performance for high-speed computing. Designed with high reliability, durability, and hot-plug capability, each connector undergoes rigorous testing in our automated production lines to guarantee consistent quality. We provide comprehensive OEM/ODM customization, covering both board-end and cable-end solutions. Widely used in AI servers, data centers, GPU accelerators, and industrial automation, our PCIe connectors enable secure, efficient, and high-bandwidth interconnections for next-generation systems. ShuangYi Precision — Powering Smarter Connections.
ShuangYi Precision — Powering Smarter Connections.
Why Choose Us:
• Free samples available for quality evaluation.
• Support for both OEM & ODM customization.
• Trade Terms: EXW, FOB, CIF, CPT, etc.
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This SAS 68-Pin Solder-Type Female Connector is designed for high-speed, high-bandwidth signal transmission, supporting the latest PCIe 5.0 and SAS standards.
It features a durable copper-alloy terminal structure with gold-over-nickel plating on the contact area to ensure excellent conductivity, corrosion resistance, and long-term stability.
The solder-type construction is optimized for secure PCB mounting in applications requiring strong mechanical stability. The terminal solder area uses bright-tin plating, offering superior solderability for mass-production environments.
With an extended operating temperature range of –20°C to +85°C, low contact resistance, and reliable mechanical performance, this connector is a robust solution for servers, storage systems, communication devices, automotive electronics, and industrial control equipment.



| Product Type | SAS 68-Pin Female Connector (Solder Type) |
| Compatibility | SAS Standard / PCIe 5.0 High-Speed Signals |
| Housing Material | Black Plastic (High-Temperature Resistant) |
| Metal Material | Copper Alloy Terminals |
| Gold Plating – Contact Area | Gold over Nickel (Ni ≥ 50µ") |
| Solder Area Plating | Bright Tin (Sn) |
| Operating Temperature | –20°C to +85°C |
| Rated Current / Voltage | 1.5A @ 40VAC |
| Contact Resistance | ≤30mΩ |
| Insulation Resistance | ≥1000MΩ |
| Withstanding Voltage | 500VAC / 1 minute |
| Insertion Force | ≤59N |
| Withdrawal Force | ≥6N (updated per latest association standard) |
| Durability | 200 cycles/hour; Max. 500 cycles |
| Salt Spray Test (Gold Area) | 48 hours |
| Environmental Compliance | HF + RoHS 2.0 |
| Key Dimensional Notes | Pin pitch measured at terminal centerline |
| Special Notes | Rear plug glue reduction to avoid deformation; dimension adjustments based on real measurement |
Key Features
- Supports PCIe 5.0 / SAS High-Speed Transmission
- Gold-plated Contact Terminals (≥50µ" nickel underplating) for exceptional signal integrity
- Bright Tin Solder Area for strong and stable solder joints
- High Mechanical Reliability with enhanced withdrawal force (≥6N per updated spec)
- Low Contact Resistance ≤30mΩ ensuring stable electrical performance
- Durability up to 500 cycles in high-frequency mating environments
- RoHS 2.0 + Halogen-Free Compliant
- Ideal for High-Frequency PCB Designs and Precision Electronics
⚙️ Applications
1. Server & Storage Equipment
SAS HDD/SSD
RAID expansion cards
Storage backplanes
Data center servers
2. Communication & Networking Devices
Routers and switches
Edge computing devices
Telecom base stations
3. Industrial & Automation Systems
PLC controllers
Industrial IPC motherboards
Motion control modules
4. Automotive Electronics
ADAS data logging
Vehicle storage modules
Smart cockpit controllers
5. High-Density PCB Designs
Compact electronic systems
Multi-board interconnection modules
⚠️ Notes
- Ensure proper soldering temperature to avoid housing deformation.
- Keep gold contact areas clean and free from dust, oil, or oxidation before assembly.
- Follow ESD protection procedures during handling.
- Make sure PCB hole pitch matches centerline pin distancing per drawing.
- Avoid excessive insertion force that may cause terminal deformation.
- Store connectors in moisture-proof packaging until assembly.
- Avoid pairing with low-quality or oxidized male connectors to maintain signal quality.
- Follow RoHS/HF environmental requirements during production and storage.