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Products

RNA design and build custom automated systems tailored to meet our customers’ diversified requirements.

At RNA Automation, we design and manufacture a comprehensive range of automated feeding and handling systems and tailored flexible automation equipment that help manufacturers increase throughput, reduce manual handling, and improve reliability across assembly, packaging, and production lines.

Our product portfolio covers industry-proven vibratory feeding technologies alongside advanced digital and flexible feeding solutions, enabling reliable part orientation, controlled delivery, and seamless integration into automated processes. Backed by decades of engineering expertise, RNA systems are trusted worldwide in high-performance manufacturing environments.

Automated Feeding & Handling

RNA offers a comprehensive range of automated feeding and handling systems designed to reliably sort, orient, and present components for downstream processes. Our portfolio spans vibratory bowl feeders, linear feeders, centrifugal feeders, step feeders, and flexible feeding systems, supporting a wide variety of component sizes, shapes, and production speeds. This includes conventional vibratory bowl feeders for proven, high-volume applications, advanced digital bowl feeders developed using simulation and digital tools for greater precision and faster development, and flexible feeders that enable rapid changeovers and efficient handling of part variation across modern production environments.

Custom Automation

RNA’s custom automation offering is centred around the FlexType™ automation system, a modular platform that combines feeding, handling, robotics, and assembly/bagging into a unified solution. Designed for flexibility and scalability, FlexType™ systems support a wide range of component types and process requirements, enabling efficient automation for assembly, packaging, and inspection tasks. By integrating RNA’s core feeding technology with standardised robotic modules and vision inspection, the FlexType range offers significantly reduced lead times and lower engineering risks while remaining versatile enough to adapt to various assembly tasks.

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