Phoenix Contact HC-M-RJ45 Series Contact Insert, 1A Current Rating, 48V Voltage Rating - 1419886
This contact insert module is designed for use with a heavy-duty power connector, specifically optimised for data applications. With dimensions of 36.7mm in height, 34.2mm in width, and 14.6mm in length, it features a reliable RJ45 connection profile. The module is suitable for operation over a broad temperature range from -40°C to 70°C, ensuring performance in diverse environments.
Features & Benefits
• Female contact insert provides versatility in connections
• 1A current rating connector for reliable power transfer
• 48V voltage rating connector supports various applications
• Gold-plated contact insert enhances conductivity and durability
• Copper alloy contact insert ensures robust performance
• High insertion and withdrawal cycles guarantee longevity
Applications
• Utilised in industrial networking setups
• Suitable for automation and control systems
• Ideal for data transmission in electrical installations
• Used in telecommunications equipment for seamless connectivity
What current and voltage ratings can be expected from this module?
The module is rated for a maximum current of 1A and a voltage of 48V, making it suitable for low-power applications in industrial environments.
How does the environmental rating affect its usability?
Rated for operation in temperatures ranging from -40°C to 70°C, it is designed to perform reliably under extreme environmental conditions, suitable for outdoor and industrial settings.
What materials are used in this contact insert and why are they important?
It incorporates a copper alloy for contacts and gold plating, which contributes to excellent conductivity and resistance to corrosion, extending the product's lifespan and performance.
What are the implications of having over 500 insertion/withdrawal cycles?
Such a high number of cycles indicates that the contact insert is built for durability and repeated use, making it ideal for applications requiring frequent connections and disconnections without degradation in performance.