2057750-1 Overview
The 2057750-1 is a high-performance connector designed for robust industrial and electronic applications. Engineered to provide reliable electrical connections, it features a compact design that supports efficient integration into complex systems. This product ensures consistent signal integrity and mechanical stability, meeting stringent industry standards. Ideal for engineers and sourcing specialists, it balances durability with ease of assembly, making it suitable for high-demand environments. For detailed specifications and sourcing options, visit the IC Manufacturer.
2057750-1 Technical Specifications
| Parameter | Specification |
|---|---|
| Connector Type | Board-to-Board |
| Number of Positions | 6 |
| Pitch | 2.54 mm (0.1 inch) |
| Mounting Type | Through-Hole |
| Current Rating | 3 A per contact |
| Contact Material | Phosphor Bronze |
| Contact Plating | Gold Flash over Nickel |
| Operating Temperature Range | -40??C to +105??C |
| Durability | 500 mating cycles |
2057750-1 Key Features
- Compact 2.54 mm pitch enables high-density PCB layouts, saving valuable board space without sacrificing performance.
- High current capacity of 3 A per contact supports power-intensive applications, ensuring reliable operation under demanding electrical loads.
- Through-hole mounting provides strong mechanical retention, enhancing connector stability and resistance to vibration and mechanical stress.
- Gold flash plating on contacts reduces oxidation and ensures low contact resistance for consistent signal quality over time.
- Durability rated for 500 mating cycles guarantees long-term reliability in applications requiring frequent connection and disconnection.
- Wide temperature tolerance from -40??C to +105??C suits harsh industrial environments and extended operational conditions.
2057750-1 Advantages vs Typical Alternatives
This connector offers superior reliability through its phosphor bronze contacts and gold flash plating, which minimize wear and signal degradation compared to standard tin-plated alternatives. Its 3 A current rating exceeds many typical connectors at this pitch, enabling enhanced power delivery. The through-hole design ensures robust mechanical integrity, advantageous in high-vibration contexts where surface-mount connectors might fail. Overall, it delivers a balanced combination of electrical performance and durability that meets demanding industrial standards.
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Typical Applications
- Industrial control systems requiring dependable board-to-board connections with high current capacity and mechanical stability in harsh environments.
- Power supply modules and embedded computing devices where compact, reliable connectors are critical for efficient PCB layout and signal integrity.
- Consumer electronics that demand connectors capable of withstanding frequent mating cycles while maintaining consistent electrical performance.
- Instrumentation and measurement equipment benefiting from wide operating temperature ranges and robust connector design.
2057750-1 Brand Info
The 2057750-1 is part of a comprehensive connector portfolio from a leading global manufacturer recognized for quality and innovation in electronic interconnect solutions. This product exemplifies the brand??s commitment to delivering durable, high-performance connectors tailored to meet the rigorous demands of industrial and commercial electronics markets. Backed by extensive engineering support and global availability, it enables seamless integration into complex electronic assemblies.
FAQ
What type of mounting does this connector use, and why is it important?
This connector employs through-hole mounting. This method is important because it provides enhanced mechanical strength and stability compared to surface-mount options, making it well-suited for applications exposed to vibration or mechanical stress.
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What is the current rating per contact, and how does it affect application design?
The current rating is 3 amperes per contact. This allows designers to use it in applications requiring moderate power delivery, ensuring reliable electrical performance without the risk of overheating or contact degradation.
How durable is the connector in terms of mating cycles?




