2.0mm 0.079in Dip Dual Row Box Header For Automotive Body Electronics Module

2.0mm 0.079in Dip Dual Row Box Header For Automotive Body Electronics Module

2.0mm 0.079in  Dip Dual Row Box Header For Automotive  Body Electronics Module

Product Specifications

Current Rating3 Amp
Insulator Resistance5000 Megohms Min.
Dielectric WithstandingAC 1000 V
No. of Positions01 Pin-100 Pin
Plating OptionTin Gold
Soldering Temperature260℃ for 3~5sec Max.
Contact MaterialCopper Alloy
Insulator MaterialPBT, PA6T, PA9T, LCP
Flame RatingUL 94V-0
Insulator HighOptional

Product Description

The YYE 2.0mm (0.079in) Pitch Box Header Connector is a high-precision interconnect solution designed for high-density PCB applications where space-saving and mating reliability are critical. As a flagship product from Dongguan Yuanyue Electronics Co., Ltd. (YYE), this shrouded header is engineered to provide a secure, polarized connection that prevents accidental mismating and protects sensitive contact pins from mechanical damage during handling and assembly.

This connector series is manufactured using high-grade, UL-rated thermoplastic insulators (such as PBT or PA6T) that offer exceptional thermal stability, making them compatible with modern lead-free reflow and wave soldering processes. The 2.0mm pitch provides a significantly smaller footprint compared to traditional 2.54mm headers, allowing engineers to maximize circuit density in compact industrial controls, telecommunications equipment, and consumer electronics. The copper alloy contacts are available with various plating options, including selective gold or tin, ensuring low contact resistance and superior long-term anti-oxidation performance.

Key Features

  • 0.079" (2.0mm) pitch for standard PCB layouts
  • .006" (0.15mm)square post contact system  mm) square post contact system
  • Vertical and right-angle orientations available
  • Fully automated production for consistent quality
  • 100% CCD visual inspection to ensure defect-free products
  • Multiple plating options to enhance durability and conductivity
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