SANLAB's high-payload 2DOF motion platform is designed for advanced industrial applications, offering up to 25 tons of payload capacity and precise rotational movements. Ideal for sectors like defense, aerospace, and heavy industry, it ensures reliable performance in testing, training, and simulations.
The SM25000-E2D 2DOF motion platform is a cutting-edge solution designed to meet the demanding needs of industrial, defense, and aerospace sectors. With its exceptional payload capacity and robust engineering, this platform delivers unmatched performance for dynamic testing and simulation tasks. Below are its standout features:
• Payload Capacity: Up to 25 tons, ideal for heavy-duty operations.
• Rotational Movement: High-precision rotational axis for dynamic applications.
• Durable Design: Built to withstand extreme industrial conditions.
• Versatile Applications: Suitable for defense, aerospace, and industrial testing.
The SM25000-E2D 2DOF motion platform offers unparalleled versatility across a range of industries. Below are some of its key applications:
• Enables precise testing of tanks, armored vehicles, and other military equipment under dynamic conditions.
• Provides realistic simulation environments for operator training, allowing personnel to prepare for challenging scenarios without risks.
• Performs dynamic testing of spacecraft and aircraft systems with high precision.
• Simulates critical operations such as launch sequences, orbital adjustments, and landing procedures.
• Enhances equipment reliability and ensures the safety of aerospace missions.
• Supports rigorous testing of large machinery and industrial equipment.
• Accurately replicates real-world stresses to assess the durability and performance of systems.
• Ensures the reliability of critical equipment in demanding industrial environments.
The SM25000-E2D 2DOF motion platform is fully customizable to suit the unique requirements of different industries. From payload capacity to control systems, every aspect can be tailored to ensure maximum performance and adaptability for specific applications.