QUANTUM CONTROL & OPERATING SYSTEM

A unified, dependable control core for complex quantum experiments

RF control, signal acquisition, deterministic synchronization and low-latency feedback in a modular distributed architecture—from early experiments to thousand-qubit-scale systems.

Control electronics chassis
< 300 psInter-chassis output skew
nsReal-time feedback
1000+Scalable to 1,000+ Qubits

SYSTEM CAPABILITIES

One system across the complete experiment loop

Unified timing and open software interfaces reduce integration overhead while control capacity scales with the experiment.

01

Scalable architecture

A modular, distributed system that scales smoothly from experimental validation to thousand-qubit control.

02

Cross-Clock Synchronization and Coordinated Control

Coordinated multi-chassis timing with inter-chassis output skew below 300 ps.

03

Modular Multi-Channel Configuration

Combine RF control, acquisition, digital triggering and feedback modules around each experiment.

04

High-Performance, Low-Noise Signal Chain

High-bandwidth, high-dynamic-range, low-noise signal chains improve control fidelity and readout accuracy.

05

Low-latency feedback

High-speed data processing and nanosecond-scale response support quantum error correction, dynamic calibration and advanced control algorithms.

06

Open software architecture

Open interfaces and programming frameworks span experiment orchestration, system monitoring and automated optimization.

MODULAR PLATFORM

Precise by design. Scalable by architecture.

Dense modular slots combine control, acquisition and digital triggering in one chassis. Add channels and functions as requirements grow without rebuilding the control stack.

Modular control electronics front view
Control electronics perspective view

REAL-TIME CONTROL LOOP

Deterministic timing through every control stage

01

Waveform

Multi-channel RF and baseband output

02

Synchronization

Deterministic coordination across chassis

03

Acquisition

High-dynamic-range real-time processing

04

Feedback

Nanosecond decisions and adaptive control

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Turn your next quantum hardware iteration into a deliverable result

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