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Qilimanjaro Launches EduQit: On-Site Modular Quantum Computing for Research and Education

Quantum Computing Report
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⚡ Quantum Brief
Qilimanjaro Quantum Tech unveiled EduQit, a modular quantum computing kit for universities and research labs, enabling on-site, hands-on access to physical quantum hardware instead of simulators or cloud-based systems. The kit includes a full operational stack: a cryogenic dilution refrigerator, specialized control electronics for RF/microwave signals, and QPUs using proprietary fluxonium superconducting qubits in analog, digital, or hybrid setups. Its modular design allows component upgrades, reducing technological lock-in as quantum hardware evolves, while maintaining expandability for future advancements. EduQit integrates QiliSDK (open-source Python framework) and SpeQtrum cloud platform, blending on-site experiments with remote workflows and cross-paradigm benchmarking. The system aims to close the quantum education "theory-practice gap," fostering workforce development and enabling comparative research on qubit modalities.
Qilimanjaro Launches EduQit: On-Site Modular Quantum Computing for Research and Education

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Qilimanjaro Launches EduQit: On-Site Modular Quantum Computing for Research and Education Qilimanjaro Quantum Tech has announced the release of EduQit, a modular, “build-your-own” quantum computing kit designed to provide universities and research institutions with on-site, hands-on access to physical quantum hardware. Unlike traditional educational models that rely on simulators or remote cloud access, EduQit is a deployable system that allows students and researchers to engage directly with the complete physical stack of a quantum computer. This includes direct interaction with cryogenic platforms, control electronics, and calibration processes essential for understanding the operational realities of superconducting quantum systems. The hardware package covers the full technical requirement for an operational quantum computer. It includes a cryogenic platform consisting of a dilution refrigerator with specialized wiring and shielding, and control electronics for RF and microwave signal conditioning.

The Quantum Processing Units (QPUs) are based on Qilimanjaro’s proprietary fluxonium superconducting qubits, which are available in analog, digital, or hybrid configurations. The modular architecture is designed to be expandable, reducing technological lock-in by allowing institutions to upgrade components as hardware capabilities evolve. On the software side, the kit is integrated with the QiliSDK (an open-source Python framework) and the SpeQtrum cloud platform. This allows institutions to complement on-site laboratory work with remote workflows and benchmarking across multiple computing paradigms. By providing an open design, Qilimanjaro aims to bridge the “theory-practice gap” in quantum education, facilitating advanced research in qubit modality comparison and enabling the development of the next generation of the quantum workforce. Read the official announcement from Qilimanjaro Quantum Tech here, and the EduQit Product Page here. January 29, 2026 Mohamed Abdel-Kareem2026-01-29T10:31:06-08:00 Leave A Comment Cancel replyComment Type in the text displayed above Δ This site uses Akismet to reduce spam. Learn how your comment data is processed.

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Source: Quantum Computing Report