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Quantum Computers
IQM Spark 5-Qubit Superconducting Quantum Computer for Education and Research
IQM Spark is a 5-qubit superconducting quantum computer developed by IQM Quantum Computers, designed for training and research. The system supports on-premise deployment, fully integrating hardware and software, helping universities and research institutes access, develop, and test practical quantum algorithms.
Quantum Computers
IQM Halocene Quantum Error Correction Platform

IQM Quantum Computers' IQM Halocene is a next-generation superconducting quantum computing system developed for Quantum Error Correction (QEC) research and fault-tolerant quantum computing, supporting logical qubit architectures and providing an open platform for HPC centers, research institutes, and advanced quantum technology development organizations.

Cryogenic Systems
Bluefors Ultra-Compact LD Dilution Refrigerator Measurement Systems
The Ultra-Compact LD helium dilution refrigerator system from Bluefors is a high-end integrated cryogenic solution, allowing for temperatures down to milli-Kelvin in a super compact design. The device combines a cryostat, measurement system, and control infrastructure in a synchronized platform, optimized for low-temperature physics research, quantum computing, and experiments requiring extremely high stability in confined spaces.
Cryogenic Systems
Bluefors LH Dilution Refrigerator Measurement Systems
Bluefors LH is a horizontal dilution refrigerator system, providing a stable milli-Kelvin temperature environment for cryogenic measurement applications and quantum research. The design supports operation at various angles, suitable for cryogenic detectors, beamlines, quantum optics, and ultra-low temperature experiments requiring high stability.
Cryogenic Systems
Bluefors XLDHe 1K High Power Measurement System
Bluefors XLDHehp is a high cooling power 1K cryogenic system, providing a stable low temperature environment for quantum applications and high-performance cryogenic measurements. The system supports large heat loads, high-density wiring, and low noise RF/DC measurements, suitable for spin qubits, cryogenic detectors, and ultra-low temperature research.
Cryogenic Systems
Bluefors XLDHesl 1K Measurement Systems
Bluefors XLDHesl is an integrated 1K side-loading cryogenic system that provides a stable low-temperature environment for quantum applications and high-performance cryogenic research. The side-loading design supports high-density wiring, flexible expansion, and quick replacement of measurement infrastructure for complex quantum experiments.
Cryogenic Systems
Bluefors LDHe 1K Measurement System
The 1K cryogenic measurement system using helium is designed for ultra-low temperature experiments in superconducting material research, quantum physics, and quantum devices. An optimal solution for modern R&D laboratories.
Cryogenic Systems
Bluefors SDHe 1K Measurement System
The 1K cryogenic measurement system using helium (SDHe), compact design for low temperature experiments in superconducting material research, quantum physics, and quantum technology. A flexible solution for modern R&D laboratories.
Cryogenic Systems
Bluefors Cryogenic Wafer Prober
Cryogenic wafer testing system for quantum chips, allowing characterization of quantum devices and superconducting circuits at ultra-low temperatures, supporting research and development of quantum computing technology in a wafer-level environment.
Quantum Computers
IQM Radiance HPC Quantum Computing Platform

IQM Radiance: Our most powerful on-premise quantum computer with 20, 54, or 150 qubits for high-performance computing (HPC) centers and quantum computing pioneers to use for groundbreaking scientific discoveries and real-world challenges.

Digital Platforms & Software
Quantum Transport Measurement Nanonis Tramea™ - SPECS

Nanonis Tramea™ is a new generation quantum measurement and nano-structure testing system, fully integrating traditional laboratory equipment into a single plug-and-play digital solution. Equipped with proprietary 22-bit hrDAC™ technology and a high-speed real-time FPGA processor, the system allows simultaneous data acquisition of up to 24 channels at an extremely fast rate of 20,000 points/second without compromising signal quality. This groundbreaking solution completely eliminates loop noise and the risk of sample damage due to cable changes, providing optimal signal-to-noise ratio (SNR) performance for quantum transport measurement studies and high-performance investigations.

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