Next-generation simulation platform leveraging tensor networks and quantum algorithms. Achieve 10-100× speedups on complex engineering problems.
Harness quantum-inspired algorithms to solve problems that overwhelm traditional solvers
Tensor network methods deliver 10-100× performance gains on high-dimensional systems through quantum-inspired compression and GPU acceleration.
Seamless transition from classical simulation to quantum hardware. Built for the quantum future, delivering value today.
Drop-in modules for ANSYS, COMSOL, Abaqus. No workflow disruption. Your tools, quantum-enhanced.
Rigorously benchmarked on real-world problems. Published results. <1% error rates. Mission-critical reliability.
Advanced tensor network solvers that mimic quantum mechanical computation on classical hardware
Matrix Product States and PEPS efficiently encode high-dimensional quantum states using entangled representations and adaptive truncation.
Optimized CUDA implementations for NVIDIA A100/H100 achieve peak performance on tensor contractions and sparse linear algebra.
Classical simulation of HHL and block-encoded methods prepare workflows for quantum hardware while delivering speedups today.
Dynamic rank truncation maintains accuracy while minimizing memory footprint through intelligent state-space reduction.
Handle coupled thermal-structural, FSI, and EM problems with quantum-inspired entanglement between physical domains.
Exponential speedups for eigenvalue problems in structural dynamics and modal analysis through quantum-inspired techniques.
From workstation to cloud to quantum hardware—PlanckSim scales with your ambitions
GPU-accelerated tensor network solvers integrated directly into your engineering workflow.
Cloud-native platform with on-demand GPU clusters and quantum simulator access.
Bespoke quantum solver development for mission-critical applications.
Join leading aerospace, automotive, and semiconductor firms leveraging quantum-enhanced simulation