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OmniRAM acoustic mixer with hooded configuration.
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OmniRAM

Production Mixer

The OmniRAM™ is Resodyn's first production scale acoustic mixer, capable of processing 11 lb (5 kg). It's designed to provide world-class ResonantAcoustic® Mixing (RAM) performance while bridging the gap between the LabRAM II's 1 kg bench-scale capacity and the RAM5's 36 kg production system. It represents a critical step in Resodyn's seamless scale-up pathway — delivering the same industry-leading RAM technology at a capacity and footprint ready for real-world production environments.

Need a custom solution? All mixers can be customized for unique automations and applications.

The Bridge From Bench to Production

The OmniRAM's capacity of 11 lb (5 kg) is designed for larger than bench-scale development, pilot and small-scale production. With the ability to accept larger vessels, new scales are possible. The onboard system can retain 100 recipes, allowing for the rapid transition between different processes and products. Designed for floor operation, the unit is 75’’ wide and 35’’ deep. The work area is 42’’ off the ground, higher when vessels are used.

OmniRAM 29 crew photo

Key Processing Capabilities

  • Processes up to 11 lb (5 kg) per batch
  • Handles solids, powders, liquids, gases, and viscous materials
  • Supports milling, grinding, sieving, and coating (spray or dry)
  • Enables temperature control from -15.8°F (-9°C) to 194°F  (90°C) (optional)
  • Offers vacuum processing down to 10 Torr (optional)
  • Provides real-time monitoring and downloadable data for analysis
  • Stores up to 100 recipes for repeatable operations

Key Advantages

  • 10–100x faster processing compared to traditional mixers
  • Highly repeatable results for consistent product quality
  • Direct scalability across the RAM product line
  • Exceptional ingredient distribution
  • Proven performance across global industries and applications
  • Housing and enclosure materials are sealed and purged

The Bridge Between Lab Precision and Production Scale

Uncompromising Mixing Performance

The OmniRAM can process materials faster, better, more efficiently, and more productively, with customers trusting the core RAM technology for mixing of powders, liquids, gases, and viscous materials at higher quality and lower cost than many traditional mixing technologies. Operating as a non-contact, bladeless system, it eliminates contamination risks, reduces cleanup time, and ensures batch-to-batch repeatability — all hallmarks of Resodyn's ResonantAcoustic® platform.

Advanced Control & Security

The OmniRAM's onboard operating system provides machine operations control, recipe development and storage, as well as multiple level digital security and access control from operator to supervisor level. Vacuum and jacketed accessories are also available to increase processing capabilities, eliminating cross-contamination and cleanup while processing virtually any type of material. The jacketed vessel allows for mixing vessel temperatures ranging from 302°F (150°C) down to 34°F (1.1°C), giving operators precise thermal control throughout the process.

Trusted by World-Class Customers

The OmniRAM serves customers across advanced materials, pharmaceuticals, chemicals, and defense. Resodyn has worked with demanding customers such as NASA, multiple U.S. military agencies, well-known pharmaceutical manufacturers, top defense contractors, national laboratories, and advanced battery producers — all of whom rely on RAM technology to achieve results that simply aren't possible with conventional mixing equipment.

The OmniRAM is where bench-scale discovery becomes production-scale reality — proudly engineered and manufactured in Butte, Montana.

Compare the RAM family

ResonantAcoustic® mixing scaled to your needs, from the lab to the production floor.

Resonant Acoustic Mixers Scale - From LabRAM II up to RAM 5.

OmniRAM FAQ

What is the OmniRAM used for?

What types of materials can the OmniRAM process?

What is the maximum batch capacity of the OmniRAM??

How does acoustic mixing differ from traditional mixing methods?

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