1.27 pin header ensures accurate alignment, providing seamless integration into your PCB designs.
Introducing our 1.27mm Pin Header SMT Type with Double Insulator – the epitome of precision in PCB connectivity. With a compact 1.27mm pitch, this pin header ensures precise alignment, allowing for seamless integration into your high-performance electronic designs. Experience enhanced signal integrity and reliability with every connection.
Double Insulator for Enhanced Protection: Go beyond standard connectors with our innovative Double Insulator design. This feature provides an extra layer of protection, guarding against potential short circuits and ensuring the insulation integrity of your electronic circuits. Elevate the reliability of your PCB layouts with enhanced safety measures.
SMT Efficiency for Streamlined Assembly: Designed for Surface Mount Technology (SMT), this pin header streamlines the assembly process. The SMT type ensures direct placement onto the PCB surface, saving valuable production time. Benefit from efficient workflows without compromising on insulation and reliability, thanks to the Double Insulator feature.
Versatile Applications with Enhanced Safety: Whether you’re working on telecommunications, automotive systems, or industrial controls, the 1.27mm Pin Header with Double Insulator is versatile enough to meet diverse industry needs. Enjoy the peace of mind that comes with enhanced safety measures, making it an ideal choice for projects that prioritize insulation integrity.
Key Features at a Glance:
- 1.27mm pitch for precise alignment
- Double Insulator design for enhanced protection
- SMT type for streamlined surface mount assembly
- Versatile applications across industries
- Engineered for reliability, precision, and enhanced safety
- Compact design for space-efficient PCB layouts
Choose our 1.27mm Pin Header SMT Type with Double Insulator for a connector that goes beyond standard offerings. Elevate your electronic designs with precision, enhanced safety, and insulation integrity, ensuring optimal performance in every high-performance PCB project.