1410141-1 Overview
The 1410141-1 is a high-performance electrical connector designed for robust industrial and electronic applications. Engineered to provide secure and reliable connectivity, this component supports efficient signal transmission and mechanical stability. Its compact design ensures easy integration into complex assemblies, reducing installation time and space requirements. Built with durable materials, it offers excellent resistance to environmental factors, making it suitable for demanding operational conditions. Available through ICメーカー, this connector meets rigorous industry standards, delivering consistent electrical performance and long service life.
1410141-1 Technical Specifications
パラメータ | 仕様 |
---|---|
ポジション数 | 2 |
コンタクトタイプ | Socket |
マウントタイプ | Surface Mount |
コンタクト材料 | リン青銅 |
コンタクトめっき | Gold over Nickel |
動作温度範囲 | -55??C to +125??C |
現在の評価 | 3 A per Contact |
絶縁抵抗 | 最低1000M? |
Dielectric Withstanding Voltage | 500 VAC |
Pitch | 2.54 mm (0.1 inch) |
1410141-1 Key Features
- Compact two-position design: Enables efficient use of PCB space, allowing higher density configurations without compromising reliability.
- Gold-plated contacts: Ensure low contact resistance and excellent corrosion resistance, contributing to stable signal integrity over time.
- Surface mount technology (SMT) compatible: Supports automated assembly processes, reducing manufacturing costs and improving production throughput.
- 広い動作温度範囲: Suitable for harsh environments, maintaining performance between -55??C and +125??C for versatile industrial use.
1410141-1 Advantages vs Typical Alternatives
This connector provides superior reliability and signal integrity compared to typical alternatives by combining gold-plated contacts with robust phosphor bronze material. Its surface mount design enhances manufacturing efficiency while maintaining secure mechanical retention. With a wide temperature tolerance and high insulation resistance, it outperforms many standard connectors in demanding industrial environments where accuracy and durability are critical.
ベストセラー商品
代表的なアプリケーション
- Industrial control systems requiring reliable low-current signal connections, benefiting from high insulation resistance and compact size to optimize PCB layout.
- Consumer electronics where space-saving and dependable electrical connections are essential for device performance and longevity.
- Automotive electronics that demand connectors capable of withstanding temperature extremes and vibration without signal degradation.
- Communication equipment ensuring consistent contact performance for signal transmission in various environmental conditions.
1410141-1 Brand Info
This product is offered under a trusted brand known for precision-engineered electronic components. The 1410141-1 embodies the brand??s commitment to quality, durability, and innovation in connector technologies. Designed to meet stringent industry standards, it supports a wide range of applications across industrial, automotive, and consumer sectors. The brand??s focus on advanced materials and manufacturing processes ensures that each unit delivers consistent performance and long-term reliability.
よくあるご質問
What is the current rating of this connector?
The connector supports a current rating of 3 amperes per contact, which is suitable for low to moderate power applications typically found in industrial and electronic equipment.
注目商品
Can this connector be used in high-temperature environments?
Yes, it operates reliably within a temperature range from -55??C to +125??C, making it well-suited for harsh environments including automotive and industrial applications.
What type of mounting does this connector support?
This device is designed for surface mount technology (SMT), allowing for automated assembly on printed circuit boards and enabling compact and efficient layouts.
お問い合わせ
How does the contact plating benefit performance?
The gold plating over nickel enhances corrosion resistance and reduces contact resistance, ensuring consistent electrical performance and longevity, especially in challenging environments.