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ENGINEERED QUANTUM

Moving fault-tolerant quantum computingfrom laboratory prototypesto scalable engineered systems

Traverse Quantum focuses on scalable fault-tolerant quantum computing. Through full-stack R&D in quantum error correction, control electronics, quantum design automation, and quantum compilers, we explore a quantum-computing foundation for drug discovery, advanced materials, and artificial intelligence.

  • REAL-TIME QEC
  • FULL STACK
QPU LAYERSuperconducting quantum processorCONTROLReal-time QEC and control
FULL STACK / PROCESSOR · CONTROL · QEC · COMPILER

REAL TASKS

Three real tasks customers need to solve

From experimental apparatus to engineered systems, value must pass through validation, stability, and integration.

CYCLE

Long validation cycles

Changing environments, versions, and criteria hinder reproducibility and slow decisions.

SHORTER VERIFICATION LOOP

STABILITY

Demanding system stability

Peak lab performance does not ensure long-term availability; stable operation and controlled drift determine delivery quality.

PREDICTABLE OPERATION

INTEGRATION

Complex engineering integration

Devices, controls, software, and site systems are tightly coupled, requiring unified interfaces and clear implementation boundaries.

CONTROLLED INTEGRATION

PRODUCT SYSTEM

An end-to-end fault-tolerant quantum computing stack

  1. Superconducting quantum processor

    Foundational processor design

  2. Quantum control electronics

    High-speed, high-precision control and readout

  3. Architecture and error correction

    ISA, microarchitecture, and real-time error correction

  4. Quantum design automation

    Simulation optimization and physical verification tools

  5. Quantum compilation and applications

    Compilers and industry application exploration

CORE OFFERINGS

Core products and service capability

Control electronics
RFSoC interconnect
GPU server
Conceptual architecture, not measured performance. Direct RDMA access to GPU memory is not assumed.

PRODUCT

Low-latency control–GPU interconnect module

Connect quantum control electronics with GPU computing through LVDS/Aurora interfaces and a bidirectional 100G RDMA data path for real-time decoding and control feedback.

  • LVDS / Aurora
  • 100G RDMA
  • Bidirectional feedback
Quantum control engineering teams / Real-time QEC algorithm teams / System integration teamsView details

TECHNOLOGY PILLARS

From experimental breakthroughs to engineering transformation

Fault-tolerant architecture

Co-designing quantum instructions, error correction, and control.

Real-time error correction

Real-time decoding and feedback for scalable quantum systems.

Quantum design automation

Connecting chip design, simulation, and physical verification.

High-speed precision control

Quantum control, fast readout, and dynamic feedback.

INSIGHTS

Insights and updates

COMPANY UPDATE

Company updates

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START A CONVERSATION

Bring the problem; take away a validation standard

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