QuEL, Inc. provides a quantum computing control system that links quantum software to qubit hardware via dedicated control hardware and middleware. The platform translates high‑level instructions into precise analog and digital signals, automates calibration, and offers a unified API to improve gate fidelity and simplify scaling of qubit arrays for hardware manufacturers, research labs, and quantum startups.
Funding
Funding not disclosed
Founders
Product
Problem
Quantum software developers and hardware manufacturers often face challenges integrating control signals with qubit chips, requiring extensive manual calibration and limiting system fidelity and scalability.
Solution
QuEL, Inc. offers a dedicated quantum computing control system that bridges quantum software and qubit hardware through specialized control hardware and middleware. The platform translates high‑level quantum instructions into precise analog and digital signals required to operate qubits, automating calibration routines to reduce manual setup. By handling signal generation and timing internally, the system improves gate fidelity and enables easier expansion to larger qubit arrays. Its middleware provides a standardized API, allowing developers to focus on algorithm design rather than low‑level hardware interfacing.
Target Audience
Primary customers are quantum hardware manufacturers, research laboratories, and quantum computing startups that need reliable, high‑fidelity control solutions for developing and scaling qubit processors.
Features
- Dedicated control hardware that converts quantum software commands into high‑precision control waveforms for qubit chips
- Middleware layer with a unified API for seamless integration with existing quantum programming frameworks
- Automated calibration and error‑correction routines that minimize manual tuning and improve gate fidelity
- Scalable architecture designed to support incremental addition of qubits without redesigning the control stack
- Real‑time signal generation with low latency to meet the timing requirements of superconducting and trapped‑ion qubits
- Compatibility with multiple qubit technologies through configurable signal profiles