2.54mm Pin Header Dual Row SMT Connector for High-Reliability PCB Applications
2.54mm Pin Header Dual Row SMT connectors provide a reliable and cost-effective PCB interconnection solution for industrial electronics, communication equipment, embedded systems, development boards, and consumer devices. Featuring an industry-standard 2.54mm pitch and SMT mounting design, these connectors support automated production while delivering stable electrical performance and long service life.
Dual Row Pin Header Product Overview
The 2.54mm Pin Header Dual Row SMT connector is designed to provide dependable board-level interconnections in a wide range of electronic applications. Utilizing the industry-standard 2.54mm pitch, this connector is compatible with numerous sockets, IDC cable assemblies, wire harnesses, and PCB interconnect systems.
The dual-row configuration significantly increases connection density while maintaining a compact PCB footprint. This makes the connector ideal for industrial control systems, communication equipment, embedded electronics, IoT devices, development boards, and power management modules where reliable signal transmission and efficient space utilization are critical.
Manufactured using high-quality copper alloy contacts and precision molding technology, the connector delivers excellent conductivity, low contact resistance, and long-term durability. The SMT design supports automated pick-and-place assembly, helping manufacturers reduce production costs while improving assembly consistency.
Engineers seeking PCB connector design standards may reference the IEC International Electrotechnical Commission. Additional PCB interconnection solutions can be found in Vistar’s Board-to-Board Connector Collection.
The connector provides an excellent balance of mechanical reliability, electrical performance, production efficiency, and global compatibility for modern electronic product development.
SMT Pin Header Connector Specifications
| Parameter | Specification |
|---|---|
| Product Name | vs-ph-01 |
| Part Number | 2.54mm Pin Header Dual Row SMT |
| Connector Type | Male Pin Header |
| Pitch | 2.54mm |
| Row Configuration | Dual Row |
| Mounting Type | SMT Surface Mount |
| Contact Material | Copper Alloy |
| Plating | Gold Flash / Tin Plating |
| Current Rating | 3A Max |
| Voltage Rating | 250V AC |
| Contact Resistance | 20mΩ Max |
| Insulation Resistance | 1000MΩ Min |
| Operating Temperature | -40°C to +105°C |
| Compliance | RoHS & REACH |
Why Engineers Choose This 2.54mm Male Header
Industry Standard 2.54mm Pitch
Compatible with a broad range of mating connectors, sockets, IDC assemblies, and development boards.
High-Density Dual Row Design
Provides more connection points within a compact PCB area for advanced electronic designs.
SMT Manufacturing Ready
Supports automated SMT production lines and high-volume assembly processes.
Reliable Electrical Performance
Low contact resistance ensures stable signal and power transmission.
Long Mechanical Life
Designed for repeated mating cycles without significant performance degradation.
RoHS & REACH Compliant
Suitable for global electronic manufacturing and export applications.
Board to Board Connector Applications
2.54mm Pin Header Frequently Asked Questions
What is a 2.54mm pin header?
Why use a dual row pin header?
Is this connector suitable for SMT assembly?
What industries commonly use 2.54mm pin headers?
Is the connector RoHS compliant?

Best Overview About 40 Pin Connector Header 2.54mm Male and Female
The 2.54mm pitch 40 pin connector header (also known as the Bergstik connector) is a classic and versatile board-to-board connection solution. Below...

The Main international standards and certifications in the pin header industry 2025
International standards and certifications in the pin header industry are crucial for ensuring the quality, safety, and compatibility of connector products. The...
Market Trends and Prospects for Pin Header Connector in china Industry (2025-2030)
The industry of pin header connector in China is poised for steady growth from 2025 to 2030, driven by technological advancements and...