ENGINEERINGSYSTEMS
From resonance to plasma — CPE designs, builds, and validates advanced physical systems.
Cymatic Plasma Engineering develops resonance-based systems, piezoelectric and ultrasonic devices, plasma engineering platforms, simulation-driven design tools, and closed-loop automation — from concept through validated prototype.
Engineering Capabilities
Resonance Engineering
Design and analysis of resonant mechanical, acoustic, and electromagnetic systems. Frequency selection, mode shaping, standing wave formation, and resonance-based actuation.
AtenDrive™
CPE's proprietary resonance-driven actuation platform. AtenDrive™ uses precisely controlled resonance fields to produce directed mechanical force without conventional moving parts.
Piezoelectric & Ultrasonic
Design and development of piezoelectric transducers, ultrasonic systems, and precision acoustic devices for sensing, actuation, and energy conversion.
Plasma Engineering
Development of plasma generation, confinement, and application systems. CPE works across low-temperature plasma, atmospheric plasma, and plasma-field interaction research.
Simulation & Digital Engineering
Computational engineering as a core design tool. CPE uses simulation to explore parameter space, optimize designs, and validate concepts before physical fabrication.
Automation & Feedback Control
Closed-loop control systems for precision engineering applications. CPE designs feedback architectures that maintain resonance, track phase, and adapt to changing conditions in real time.
AtenDrive™
Resonance-field actuation. No conventional moving parts.
AtenDrive™ is CPE's core proprietary actuation platform. It uses precisely controlled resonance fields — phase, amplitude, and frequency — to generate directed mechanical force. The architecture eliminates conventional mechanical linkages and enables solid-state force generation in configurations that traditional actuators cannot achieve.
From Concept to Validated System
Requirements
Define the engineering problem, constraints, performance targets, and validation criteria.
Simulation
Model the system computationally. Explore parameter space and identify the most promising design region.
Design
Develop the detailed engineering design based on simulation results and physical constraints.
Prototype
Build the physical system. Integrate sensors, actuators, and control electronics.
Validate
Test against requirements. Compare measured performance to simulation predictions. Iterate.
Start an Engineering Project
Describe your system, your engineering challenge, and your timeline. CPE will respond with a project scope and proposal.