Siemens 6SN1123-1AA00-0CA1 | Simodrive Low Voltage-Module | Internal Current Rating: 50A
The Siemens 6SN1123-1AA00-0CA1 Simodrive Low-Torque Module Internal Cooling, 50A, is a specialized motor control module designed for precise low-torque applications requiring high efficiency and robust performance.
Detailed content
Power Module Type:6SN1123-1AA00-0CA1
Module Category:Simodrive
Application:Low-torque mechanical systems
Internal Cooling:Yes
Rated Current (Internal):50A
Motor Compatibility:Induction motors
Operating Temperature Range:-20°C to +50°C
Protection Class:IP20
Communication Interface:Profinet
Safety Rating:Ex d IIC T4 Gb
Engineered for robust performance, the Siemens 6SN1123-1AA00-0CA1 Simodrive LT-Module stands out in its ability to handle demanding industrial tasks with ease. Its internal cooling system ensures efficient heat dissipation, prolonging the lifespan of your equipment.
With a rated current of 50A, this module is capable of delivering significant power to your industrial processes, supporting high-speed operations and complex machinery requirements. It’s compatible with a wide range of industries, making it a versatile choice for various automation needs.
The module boasts a flexible input voltage range, ensuring compatibility with diverse industrial standards. This adaptability allows for seamless integration into existing or new systems, streamlining your operational processes and enhancing productivity.
Featuring a standardized communication interface, the 6SN1123-1AA00-0CA1 Simodrive LT-Module ensures smooth interoperability with Siemens and third-party systems. This feature not only simplifies setup and maintenance but also optimizes system performance by leveraging advanced Siemens control protocols.
Designed with reliability at its core, the module offers a class-leading power rating that surpasses industry benchmarks. This ensures not only consistent performance under varying conditions but also reduces downtime and maintenance costs, contributing significantly to your overall operational efficiency.