Insider Brief
Classiq Introduces Fault Tolerance Engine for Quantum Applications
Insider Brief PRESS RELEASE — Classiq today announced its Fault Tolerance Engine, a new product capability that translates optimized logical quantum programs into fault-tolerant execution plans, and measures from those same plans the…
Mohib Ur Rehman
Publisher The Quantum Insider
Sep 30, 2026 at 12:01 PM UTC · Updated 1 天前 · 5 分钟阅读

- Classiq introduced its Fault Tolerance Engine to translate optimized logical quantum programs into architecture-aware fault-tolerant execution plans.
- The engine estimates physical qubit requirements, error-correction cycles, code distance, runtime, routing, scheduling, and accumulated error from the execution plan it generates.
- The capability extends Classiq’s existing modeling and synthesis workflow to help users assess the physical feasibility and resource requirements of quantum applications on specific hardware.
PRESS RELEASE — Classiq today announced its Fault Tolerance Engine, a new product capability that translates optimized logical quantum programs into fault-tolerant execution plans, and measures from those same plans the physical resources and reliability required to run the application on a real machine.
Fault-tolerant quantum computing introduces a fundamentally different software challenge. A logical quantum operation cannot simply be passed directly to hardware. It may need to be implemented across many physical qubits, protected through repeated quantum error-correction cycles, and coordinated with layout, routing, scheduling, classical feedback and specialized resources.
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