Cavitation-driven micro-scrubbing reaches crevices, blind holes, and intricate details—without abrasion and with consistent, repeatable results.
We’re here to help—contact us for any inquiries or support you need.
What We Do
We deliver high-power ultrasonic cleaning systems and chemistries that use high-frequency sound to create cavitation microbubbles. Those bubbles collapse inside the cleaning bath to lift oils, flux, oxides, and particulates—even from blind holes and deep recesses. The process is non-abrasive, energy-adjustable for different materials, and automation-ready for consistent, repeatable results across healthcare, automotive, electronics, aerospace, and more.
Project Case Study


Triple 7 Aircraft and Metal Cleaner Prevents Rust on Ultrasonic Machine Cleaned Parts.


Enhancing Cleaning Efficiency in an Auto Component Manufacturing Industry.


Enhancing HSS Tool Bit Coating Performance with Triple 7 Aircraft and Metal Cleaner.
Why Ultrasonic
Efficient, precise, and cost-effective cleaning—without abrasion. Ideal for delicate components and tough contaminants alike.
Our Clients
Send us your parts — we’ll run test cycles and share a full report with photos & parameters.
Real Stories from Our Customers
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Faq
Ultrasonic transducers send high-frequency sound waves through a liquid, creating microscopic bubbles. These bubbles collapse (cavitation) and release localized energy that dislodges contaminants—even in tiny crevices—without scrubbing.
No. It’s one of the least abrasive cleaning methods. Cavitation energy removes soils while preserving the surface integrity of delicate or sensitive parts.
Yes. Cavitation occurs throughout the liquid volume, so blind holes, deep recesses, capillaries, and intricate features are effectively cleaned where manual or spray methods struggle.
Absolutely. Energy levels are programmable, allowing you to tune the process for specific materials and soils to achieve efficient, precise cleaning.
Yes. Our systems integrate with conveyors/robots and recipe-based controls to deliver predictable, consistent results while reducing manual labor and cycle variability.