5223963-1 Overview
The 5223963-1 is a precision electrical connector designed to deliver reliable and secure connections in demanding industrial environments. Engineered for applications requiring robust mechanical performance and consistent electrical conductivity, this connector ensures stable signal and power transmission. Its compact design facilitates easy integration into tight spaces while maintaining durability under vibration and thermal stress. Ideal for use across automation, instrumentation, and control systems, the product supports efficient assembly and long-term operation. For detailed technical support and sourcing, visit the Fabricant de circuits intégrés website.
5223963-1 Technical Specifications
Paramètres | Spécifications |
---|---|
Nombre de postes | 2 |
Type de contact | Female Socket |
Matériau de contact | Bronze phosphoreux |
Placage de contact | Or sur nickel |
Valeur nominale actuelle | 7.5 A per contact |
Tension de fonctionnement | 250 V AC/DC |
Résistance de l'isolation | 1000 M?? minimum |
Plage de température de fonctionnement | -55??C to +125??C |
Durabilité | 500 mating cycles minimum |
Type de montage | PCB Mount |
5223963-1 Key Features
- Robust Contact Design: The phosphor bronze contacts with gold plating offer excellent conductivity and corrosion resistance, ensuring reliable signal integrity over extended use.
- Compact 2-Position Layout: Enables space-saving PCB mounting, critical for high-density electronic assemblies where board real estate is limited.
- Capacité de courant élevée : Rated to 7.5 amps per contact, supporting power delivery in mixed-signal applications without overheating.
- Wide Operating Temperature: Suitable for harsh industrial environments, the connector maintains performance from -55??C to +125??C.
5223963-1 Advantages vs Typical Alternatives
This connector excels over typical alternatives by combining high current capacity with a compact form factor and superior corrosion resistance. Its phosphor bronze contacts with gold plating provide enhanced durability and signal stability, reducing failure rates in critical systems. Additionally, the wide temperature range and proven mating cycle endurance make it a reliable choice for long-term industrial applications where consistent electrical performance is essential.
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Applications typiques
- Industrial control panels requiring secure, low-voltage power and signal connections within compact assemblies, ensuring reliable operation in factories and automation lines.
- Instrumentation devices where precise and stable electrical connections are necessary for accurate sensor signal transmission.
- PCB mounting in telecommunications equipment, benefiting from the 2-position design to support modular configurations.
- Embedded systems and small-form-factor electronics demanding robust connectors capable of withstanding vibration and thermal cycling.
5223963-1 Brand Info
The 5223963-1 is part of a trusted lineup of high-quality connectors from a leading manufacturer recognized for precision-engineered interconnect solutions. This product embodies the brand??s commitment to delivering components that meet stringent industrial standards for durability and electrical performance. Designed with exacting manufacturing processes, it supports seamless integration into various electronic systems, backed by comprehensive technical resources and global supply chain support.
FAQ
What is the maximum current rating of the 5223963-1 connector?
This connector is rated for a maximum current of 7.5 amperes per contact, making it suitable for moderate power transmission applications in industrial and electronic systems.
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Can this connector operate in extreme temperature conditions?
Yes, the device is qualified to operate reliably within a temperature range from -55??C to +125??C, supporting usage in both cold and high-temperature industrial environments.
How many mating cycles can the connector withstand?
The connector is designed for durability, supporting a minimum of 500 mating cycles, which ensures long-term reliability and reduces maintenance needs in repetitive use scenarios.