Trusted by both industry and academia









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Built for research groups
Multiphysics-heavy groups keep hitting the same wall: the model outgrows the desktop, and a real run waits in the cluster queue. The Academic Program removes that wall. It starts with MEMS and micromachined ultrasonic transducer (PMUT/CMUT) labs, and is expanding to more fields.
The desktop runs out of room
An array with inter-element crosstalk doesn't fit in workstation memory
The cluster needs a specialist
Tuning a run for a high-performance cluster takes specific skill, and grant cycles are short.
The model drifts from the bench
The simplified stand-in stops matching the transducer being measured, often before anyone notices why.
Everything the group needs on one account
Full Allsolve core plan
Every physics module, unlimited users on one account. Add a researcher without new licensing.
Cloud-native, nothing to install
No HPC cluster to requisition, no IT ticket. Open a browser and compute scales with the sweep the project needs.
Academic pricing, fixable for the grant
Set a price that holds for the length of the funded project, so budgeting stays simple.
AI Assistant and example library
A new researcher sets up a model from a rich set of MEMS/MUT examples, without waiting on the one person who knows how.
Computational experiments with AI agents
Build studies straight from the research plan, driven by agents from your own scripts.
A partnership, not just a license
Visibility for your lab and co-marketing on the publications that come out of the work.
The same platform runs in industry and academia
Nothing here is hypothetical. These are worked PMUT examples from our own technical library — cloud-scale studies that aren't practical on a desktop.
Open our scientific publications -->
10,000
parallel cloud simulations, one sweep
MultiphysicsAI trained a surrogate model on 10,000 cloud simulations to map the sensitivity–bandwidth trade-off, then found a design lifting fractional bandwidth from 65% to about 100% at 12 MHz.
260×
faster than a sequential desktop run
A Monte Carlo sweep of 1,000 fabrication variations ran in 15 minutes on the cloud, versus about 66 hours sequentially, predicting 71.9% manufacturing yield and pinpointing oxide-layer thickness as the main driver.
Program terms
| Term length | Compute allowance | Included benefits |
|---|---|---|
| 1–3 years, with the option to fix pricing for the grant period. | 32, 64, 128, 256, 512… parallel cores. An example range that scales with what the project needs. | Innovation examples for your field, the AI Assistant, email support, and publication co-marketing. |
Academic use only. Solutions acquired through the Academic Program may not be used for commercial activity, including commercial production design, design validation or assessment, manufacturing-engineering work, commercial research, consulting performed by academic students, faculty or account staff, or training of company employees.
What we ask back
- A short case story about your research, written with our marketing team, on your terms.
- A willingness to take part in Quanscient events, under a separate agreement.
- A mention of Allsolve in the papers, posters and theses that come out of the work.
