Strongly coupled multiphysics with virtually unlimited computational resources
Multiphysics couplings out-of-the-box
- All physics included in every plan
- All physics interactions readily available and integrated
- No need for additional modules or manual integration
Cloud computing and the Domain Decomposition Method (DDM)
- Access to virtually unlimited computational resources with efficient scaling
- Runtimes from days to coffee breaks with enhanced accuracy
- Large-scale simulations infeasible with local hardware
Robust, precise, and modern solver technology
- Robust algorithms with strongly coupled multiphysics
- Double and quadruple precision
- Direct and iterative solvers
- Linear and nonlinear solvers
Algorithms developed in-house
- Direct access to algorithm experts for support
- Faster development of custom solutions
- Easily extended or modified functionalities
Proven applications and advantages

Medical devices
Simulate massive ultrasound arrays and therapeutic transducers without simplification.
Ultrasound · HIFU · PMUT/CMUT

Consumer electronics
Optimize next-gen MEMS, RF, and audio components with cloud-scale precision.
Audio MEMS · RF Filters · AR/VR Optics

Automotive
Ensure the reliability of LiDAR, RF, and safety sensors with multiphysics precision.
LiDAR · Inertial Sensors · V2X RF

New space
Scalable, high-speed simulations for the most demanding multiphysics problems.
RF & Satcom · ADCS · EMI/EMC
From ultrasonic arrays to inertial sensors
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Couple structural, electrostatic, acoustic, and thermal physics in one model, and run thousands of cloud sims to optimize performance and yield.
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Simulate full PMUT and CMUT arrays with elastic–acoustic coupling intact, and hit a working design on the first iteration.
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Model gyroscopes and accelerometers with the real damping effects that set Q-factor and eigenfrequencies, before fabrication.
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Capture the nonlinear coupling behind harmonic distortion, and push higher SPL while keeping THD low.
Quanscient Allsolve has a wide range of physics available in the GUI, all natively coupled. More physics are being added continuously.

Electromagnetics
- Magnetism A
- Magnetism H
- Magnetism φ
- Electromagnetic waves
- Electrostatics
- Current flow

Thermal analysis
- Heat solid
- Heat fluid

Mechanics
- Solid mechanis
- Elastic waves
- Mesh deformation

Fluid dynamics (CFD)
- Laminar flow

Acoustics
- Acoustic waves
Couplings
- A-v
- H-φ
- Fluid-Structure Interaction
- Acoustic-Structure Interaction
- Electromechanics
Add custom physics through the Python scripting interface
Users can add physics through the Python scripting interface by inputting the weak-form equations and coupling equations.
See how it could work for you
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“Quanscient Allsolve provides effortless scaling of compute power, enabling examination of larger design spaces for the most critical parameters. It allows us to advance with MEMS speaker designs we truly trust and to scale our development effectively.”
Nilavazhagan Subbiah, PhD — Staff Engineer, Infineon

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