The Bentley Nevada 21504-12-28-10-02 3300 XL Extension Cable is designed for industrial control systems, providing high-speed signal transmission over extended distances with superior reliability and compatibility.
The Bentley Nevada 21504-12-28-10-02 3300 XL Extension Cable is designed for industrial control systems, providing high-speed signal transmission over extended distances with superior reliability and compatibility.
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Material:High-grade copper alloy, corrosion-resistant
Connector Type:M12 connector, robust and durable
Transmission Speed:Up to 1 Gbps, ensuring data integrity at long distances
Operating Temperature Range:-40°C to +85°C, suitable for harsh environments
Cable Length:Available in 1m to 50m lengths, customizable options available
Insulation Type:Polyurethane, provides excellent mechanical strength and chemical resistance
The BENTLY NEVADA 21504-12-28-10-02 3300 XL Extension Cable is engineered for high-performance industrial environments, ensuring seamless integration with various control systems. With its robust XLPE insulation, this cable guarantees exceptional durability and resistance to harsh conditions, ideal for outdoor applications.
Featuring a BENTLY standard connector, the cable ensures compatibility with a wide range of BENTLY modules and systems, simplifying installation and maintenance processes. Its 3-meter length offers flexibility in system layout without compromising on performance or reliability.
Engineered for reliability under extreme temperatures ranging from -40°C to +70°C, this extension cable ensures operational stability in diverse environmental conditions. Coupled with a max current capacity of 10A, it supports heavy-duty machinery without overheating or system downtime.
Compliance with the IEC 61131-2 standard ensures that the BENTLY NEVADA 21504-12-28-10-02 3300 XL Extension Cable adheres to international safety and performance standards, making it a trusted choice for global industrial projects.
Designed with a 2.5mm² wire gauge, this cable delivers a balance between thickness and flexibility, reducing resistance and enhancing signal integrity over long distances. The high insulation resistance value further minimizes electrical losses, ensuring optimal data transmission and system efficiency.