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ATTEND 126A-80A00 DDR5 SODIMM Connector 262 Pins, Horizontal SMT 8 mm

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HT Part No. HT206662

Mfr. Part No. 126A-80A00

Manufacturer: ATTEND

Technical Documents: Datasheet(datasheets)

10 - In Stock pcs
Price:
£ 5.78
Units Per Unit Price
1 - 299 £ 5.78
300 + £ 5.26
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Product Specification

Product Attributes
Memory Type DDR5 SDRAM
Series 126A
Number of Pins 262 Pins
Contact Finish Copper Alloy+Selective Gold Plating Over Nickel
Manufacturer ATTEND
Mounting Type SMT R/A
Mounting Feature Standart
Connector Style SODIMM
Rohs ROHS
Packaging TAPE&REEL

More Information

The ATTEND 126A‑80A00 is a robust DDR5 SODIMM memory socket, crafted for high-performance computing and embedded systems. With a 262-pin, 0.5 mm pitch design in a horizontal SMT orientation and a compact 8 mm profile, this socket provides seamless JEDEC-standard compatibility and superior electrical performance.

Standout Features and Benefits of this DDR5 SODIMM Memory Socket

  • Memory Type: DDR5 SDRAM, offering ultra-high bandwidth and speed compared to DDR4.
  • Pin Count & Pitch: 262 contact points at 0.5 mm pitch, high density for compact layouts.
  • Mounting & Orientation: Surface-mount technology with right-angle, horizontal orientation for streamlined PCB integration.
  • Height (H): 8.0 mm, balances low profile with mechanical accessibility.
  • Contact Finish: Copper alloy base with selective gold plating over nickel, ensuring low contact resistance and corrosion protection.
  • Compliance: RoHS-certified and offered in tape-and-reel packaging for efficient pick-and-place manufacturing.

Product Use Cases

  • Embedded systems
  • Industrial PCs
  • Edge computing
  • Servers
  • Box PCs
  • Routers
  • Switches
  • Notebook PCs

Why Choose this Socket?

Engineered for technical B2B buyers, the 126A-80A00 socket delivers compact design, JEDEC-standard reliability, and high electrical performance. The selective gold plating ensures longevity in harsh environments, while its SMT compatibility and horizontal orientation streamline assembly workflows. Its versatility across computing platforms, from industrial edge nodes to enterprise-grade servers, makes it a highly attractive, future-proof choice.

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