Technology

Technical depth across the complete transducer stack.

Materials, physics, arrays, electronics, and measurement brought together to solve demanding acoustic and ultrasonic problems.

Technology Platforms

Deep technical capability across the complete sensor stack.

EPROD combines materials science, transducer physics, array architecture, modeling, electronics, and experimental validation.

Materials

Piezoelectric Materials and Composites

PZT, PMN PT, textured ceramics, 1 3 composites, material characterization, and property driven design.

Modeling

Multiphysics and Acoustic Simulation

COMSOL and MATLAB models for resonance, impedance, coupling, beam patterns, radiation, sensitivity, and optimization.

Arrays

Beam Steering and Phased Arrays

Element architecture, aperture design, steering limits, focusing, channel performance, and array calibration.

Systems

Electroacoustic System Integration

Pulser and receiver selection, amplification, digitization, signal processing, EMI control, and system validation.

Technical Domains

Engineering depth from the active material to the complete system.

01

Electromechanical Transduction

Constitutive behavior, polarization, coupling, resonance modes, impedance, loss, efficiency, and sensitivity.

02

Acoustic Stack Design

Matching layer synthesis, backing and damping, bandwidth control, ringing reduction, lenses, wedges, and interfaces.

03

Radiation and Beam Control

Near field and far field behavior, directivity, focusing, steering, sidelobes, grating lobes, and array optimization.

04

Signal Chain Integration

Excitation, receiving, preamplification, digitization, filtering, beamforming, calibration, shielding, and grounding.

05

Model to Test Correlation

Parameter identification, uncertainty, experimental design, sensitivity analysis, and measured model reconciliation.

Technical Collaboration

Apply advanced transducer technology to a real system requirement.

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