Senior R&D Engineer Acoustic Simulation and Device Modeling

Icelandic technology company providing cloud-based acoustic simulation, spatial-audio, and synthetic audio-data products for audio AI, consumer electronics, automotive, pro audio, and building design.

Reykjavík, Iceland
About Treble Technologies ehf.

Treble Technologies develops a cloud-native acoustic simulation platform combining wave-based finite-element and geometrical-acoustics solvers. Its products support room and product acoustics, audio-ML training and validation, virtual prototyping, spatial-audio rendering, and scalable physics-based audio datasets.

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Skills

Candidate Availability

Required and preferred rules are kept separate and reflect the wording in the original posting.

About the Role

You will develop numerical methods and production software for device-scale acoustics. You will improve device models, source models, boundary conditions, material representations, CAD preparation, and meshing workflows. You will verify and validate models, improve solver performance, integrate maintainable software, and collaborate on valuable customer capabilities.

Requirements

  • Industry experience developing acoustic simulation software or solver capabilities for audio devices
  • Expertise in modelling microphones, transducers, wearables, hearing devices, or comparable audio systems
  • Knowledge of computational acoustics and finite element methods
  • Knowledge of numerical linear algebra, discretisation, convergence, and modelling error
  • Programming and scientific computing software development skills
  • Experience implementing, testing, and maintaining scientific computing software
  • Verification and validation experience
  • Experience comparing models with measurements or reference solutions
  • Experience developing robust, maintainable simulation software
  • Proficiency using AI tools to improve work quality and efficiency

Responsibilities

  • Develop and implement numerical methods for acoustic device modelling, including finite element formulations
  • Extend device models with vibroacoustic and other coupled effects
  • Develop source models, boundary conditions, and material representations
  • Improve CAD model preparation and meshing workflows
  • Verify implementations against analytical solutions and numerical benchmarks
  • Validate models against measurements
  • Improve solver accuracy, robustness, and computational efficiency
  • Integrate methods into maintainable production software with tests, documentation, and examples
  • Collaborate with Product, Applications, and customers to identify and demonstrate valuable capabilities

Benefits

  • Stock options
  • Flexible, family-friendly work environment
  • Competitive benefits