Pacific Highway Japan

CAE SOFTWARE

CAE Software

Quanscient Allsolve logo

Authorized Distributor in Japan for Quanscient Oy (Finland)

A fast, scalable and flexible multiphysics simulation platform. All the benefits of cloud computing — in nothing more than a browser.

Transforming R&D with Cloud and Quantum Computing

As the authorized distributor in Japan for Finland's Quanscient, we deliver Quanscient Allsolve, their cloud-native multiphysics simulation platform, to customers in Japan — from licensing through technical support and post-deployment adoption. Powered by the cloud and quantum computing, it transforms R&D through digital prototyping — reshaping the very process of product development in manufacturing and shortening simulation time from weeks to hours. This enables faster R&D and time-to-market for industrial companies in fields such as fusion energy, electric motors and 5G technology.

Allsolve inherits the ultrasound and piezoelectric analysis strengths of OnScale and PZFlex while extending its coverage into MEMS and, further, into next-generation simulation incorporating quantum computing techniques — with deployment advancing across the aerospace, marine and automotive sectors. For the background to the CAE technology we work with, see our history page.

Overwhelming compute speed

Fully leverage cloud compute resources to cut analysis time from weeks to hours

Scalable by design

Scale compute resources exactly as needed, from small models to large, high-fidelity ones

Complete in a browser

No installation required — modeling, analysis and visualization all run in your PC browser

One-touch execution

Run even complex multiphysics analyses with a single click

AI assistant

AI support for setting up analysis conditions and building models

Cloud- and quantum-powered simulation illustration

Up to 1,000×

throughput via massive cloud parallelism

10–100×

speed-up of an individual solve

3 weeks → 8 hours

real-user reduction in solve time

Massively parallel cloud computing delivers up to 1,000× the total development throughput, while quantum-inspired solvers make each individual solve 10–100× faster.

* Figures are indicative, based on Quanscient's published data and real user cases. Results vary with the analysis, model size and run conditions.

Two Axes of R&D Acceleration

Allsolve's speed comes from two distinct axes: the ability to run a great many simulations in parallel (throughput), and the raw speed of each individual solve. Together they enable a pace of R&D that was previously out of reach.

Up to 1,000×

Massively parallel cloud computing (throughput)

Allsolve is cloud-native, scaling automatically on AWS. Unlike traditional on-premise environments where jobs queue for a single server, hundreds or thousands of simulation variants can run at once. Parameter sweeps for optimal design and large-scale data generation for AI training that once took weeks now complete in a fraction of the time — compressing the development cycle itself.

10–100×

Faster individual solves

Combining cloud parallelism with Quanscient's own quantum-inspired algorithms (such as QCFD), each heavy multiphysics solve — coupling electromagnetics, fluids and structures — runs 10–100× faster. A calculation that took a week on traditional on-premise CAE finishes in a few hours.

A Technical Edge: the Harmonic Balance (HB) Method

One of Allsolve's distinguishing features is that the Harmonic Balance (HB) method is built in as standard.

CONVENTIONAL APPROACH

Transient analysis in the time domain

For nonlinear multiphysics problems — such as a MEMS device where an electrostatically driven structure couples with fluids and acoustics — most FEM tools have no choice but to fall back on transient analysis in the time domain. Transient analysis must step through a great many time increments until the system settles into steady state, and solve times grow sharply as models get larger and nonlinearity stronger.

HB METHOD IN ALLSOLVE

Solving directly for the steady state in the frequency domain

The HB method solves the periodic response directly as a Fourier series in the frequency domain. Because there is no need to follow the transient evolution towards steady state, the same nonlinear problem can be solved in a fraction of the time.

By combining this with elastic cloud compute resources, Allsolve is designed so that the HB method can be applied to large models and broad parameter sweeps without being constrained by hardware limits such as memory or core count. The result: even nonlinear multiphysics problems at a scale that was impractical for conventional tools — whether on solve time or hardware constraints — can be solved quickly, while remaining within FEM.

Multiphysics Domains Covered

From magnetics and electromagnetics to acoustics, heat transfer, structural mechanics and fluids (CFD), Allsolve covers a wide range of coupled (multiphysics) analyses.

Key Platform Capabilities

Features

Fully Digital Product Development

Reduce the need for expensive physical prototypes and run everything from design to testing fully digitally. For example, costly and time-consuming physical tests such as aircraft wind-tunnel testing can be replaced with simulation.

Cloud × Quantum Computing

In addition to large-scale simulation on the cloud, we are building quantum computing algorithms to accelerate simulations even further.

Physics-aware AI

By making physics simulation code-driven and cloud-scalable, we generate the large volumes of multiphysics data that AI needs to learn. The goal is to train 'physics-aware AI' — something existing tools cannot achieve at scale — to autonomously propose and optimize hardware designs.

Target Fields

Adoption Record

Adopted by leading manufacturers in measurement, medical, precision and electronics — companies engaged in advanced product development.

* Company names are withheld under confidentiality agreements; clients are listed by industry category.