Our SATA connector series is designed for stable data transmission and high reliability. With customizable pin count, pitch, materials, and plating specifications, we offer tailored solutions for diverse applications. Produced in our automated facilities with strict quality control, these connectors ensure excellent durability, heat resistance, and hot-swap performance. Widely used in computers, servers, and industrial storage devices, they deliver precision connection and long-lasting performance.
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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The SATA 15P Male Connector features a crimp-type terminal design with 15µ” gold-plated contact areas, ensuring stable electrical performance and long-term reliability.
The terminals are manufactured from BRASS C2680-H (T=0.25) and plated with ≥50µ” nickel for corrosion resistance, while the crimp area is coated with ≥80µ” tin to enhance bonding strength with wires.
The connector uses a UL94-V0 rated LCP housing reinforced with glass fiber, providing excellent heat resistance and mechanical durability.
Electrical ratings strictly follow the drawing specifications: 1.5A@40VAC, ≤30mΩ contact resistance, ≥1000MΩ insulation resistance, and 500VAC withstand voltage, ensuring stable operation in various applications.
Mechanical characteristics also comply with the drawing requirements, including a maximum mating force of 45N, unmating force ≥10N, and single-pin retention ≥0.8kgf.
This connector is compliant with HF and suitable for a wide range of SATA power and data cable assemblies.



| Product Type |
SATA 15P Male Connector, Crimp-Type Terminal |
| Operation Temperature |
–20°C to +85°C |
| Rated Current |
1.5A @ 40VAC |
| Contact Resistance |
≤ 30mΩ |
| Withstand Voltage |
500VAC / min |
| Insulation Resistance |
≥ 1000MΩ |
| Terminal Plating Requirements |
Ni ≥ 50µ” over terminal |
| Contact Area Gold Plating |
Au 15µ” |
| Tin Plating on Crimp Area |
Sn ≥ 80µ” |
| Mating Force |
≤ 45N |
| Unmating Force |
≥10N for 50 cycles |
| Single Pin Retention Force |
≥ 0.8kgf |
| Terminal Material |
BRASS–C2680–H, T=0.25 |
| Housing Material |
LCP, G/F, UL94-V0 |
| Plating Specification Code |
Au 15u” Plated |
| Environmental Standard |
HF |
⚙️ Applications
- Server & Data Center Equipment – Used as SAS / SATA electronic signal and power connectors on HDD/SSD backplanes, RAID cards, JBOD/NAS and 1U/2U server boards.
- Communication & Networking Systems – For routers, switches, base stations and other networking equipment that need compact PCB connectors and reliable high-speed transmission.
- Industrial & Automation Electronics – Applied in industrial PCs, PLCs, motion controllers, data loggers and test instruments as PCB-to-wire or cable connectors.
- Automotive & New Energy Applications – Used in in-vehicle data recorders, infotainment units, EV chargers and energy-storage systems for signal and low-power transmission.
- Custom Wire Harness & Cable Assemblies – Suitable for OEM/ODM projects that require connector customization for PCB, wire and cable layouts in electrical and electronic devices.
⚠️ Notes
- Make sure the working voltage, current and temperature of your design stay within the connector’s rated values, with proper safety margin.
- Design PCB pads, holes and mechanical space according to the drawing and pitch, and avoid bending or twisting stress on the connector after soldering or assembly.
- Select appropriate wire gauge, insulation and cable structure based on current load, signal speed and bending requirements for both power and signal terminals.
- For IDC / crimp types, use matched tooling and press-force to ensure full insulation displacement; for solder types, follow a controlled soldering profile to avoid overheating the LCP housing.
- Insert and pull out the connector along the mating direction, avoid pulling on the cable itself, and do not exceed the specified mating/unmating force or durability cycles.
- Keep gold-plated contact areas clean and dry, avoid touching them with bare fingers, and store products in dry anti-static packaging before assembly.