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Quantum Machines

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uuid00004ka

Namestring
Quantum Machines
Legal namestring
QM Technologies Inc.
Company typeenum
Private
Founded yearint
2018
Descriptiontext

Quantum Machines is a Tel Aviv-headquartered, Delaware-incorporated provider of hybrid quantum-classical control systems for quantum computing companies, national laboratories, academic institutions, and HPC centers. Founded in 2018, the company has grown to approximately 300 employees across 17 countries and has raised roughly $280 million in total funding, including a $170 million Series C in February 2025 at a $700 million post-money valuation. Its platform is the de facto control layer for more than half of the world's quantum computing companies, with deployments spanning superconducting, semiconductor spin, neutral atom, and optically addressable qubit modalities.

The company's core technology is the Pulse Processing Unit (PPU), a proprietary processor architecture that unifies real-time quantum pulse control with classical processing on a single programmable FPGA, achieving sub-4 microsecond controller-to-GPU roundtrip latency and 160 ns active reset latency. The product portfolio is organized around the OPX1000 modular high-density control platform (supporting up to 1,000 qubits in 2.5 racks), the OPX+ ultra-fast controller, complementary cryogenic electronics (QCage, QBoard-II, QFilter-II), the QUA pulse-level programming language, and the QUAlibrate open-source automated calibration framework. The recently launched Open Acceleration Stack, co-developed with NVIDIA, AMD, and Riverlane, standardizes microsecond-latency integration between quantum controllers and classical accelerators via NVIDIA NVQLink and the OPNIC optical interconnect. Additional product lines include QDAC-II DACs, Octave up/down converters, and the QSwitch and QBox breakout systems.

Quantum Machines generates revenue primarily through direct enterprise field sales of high-value scientific instrumentation (OPX1000, OPX+, cryogenic electronics) to quantum hardware manufacturers, national labs, and academic institutions, with additional software licensing, recurring support contracts tied to QUA and QUAlibrate, and professional services for integration and custom development. The company employs a horizontal segmentation approach across four primary segments — quantum computing hardware manufacturers, academic and national research laboratories, HPC centers, and quantum sensing/networking — and distributes globally through direct sales, OEM-style integrations with hardware builders (Rigetti, QuEra, Diraq, Alice & Bob), and channel partnerships with HPE, IBM Q Network, NVIDIA, and the QuEra Quantum Alliance. Pricing is not publicly disclosed and is configured per customer.

Short descriptiontext

Quantum Machines provides hybrid quantum-classical control hardware (OPX1000, OPX+) and software (QUA, QUAlibrate) to quantum computing companies, research institutions, and HPC centers, serving more than 50% of the world's quantum computing companies across 17 countries.

Operating statusenum
Operating
Ownership categoryenum
Headcount rangeband
101–250
akta.pro rankint
HeadquartersClaymont, United States
HQ citystring
Claymont
HQ countrystring
United States
HQ regionstring
North America
Markets served

Serves global market

Offices7 records

Each record includes

City, Country, Type, Description, Source

Keyword5 values
quantum control systems, quantum computing hardware, hybrid quantum-classical control, cryogenic electronics, quantum orchestration platform
Industry5 codes
1Quantum Control Electronics (AWG/DAC/ADC, Timing & Synchronization)
CodeHDAGABAFPrimaryYes
2Quantum Control Software & Pulse-Level Programming
CodeHDAGACAJPrimaryNo
3Pulse-Level Compilation & Control Stack Integration
CodeHDAGAKACPrimaryNo
4Hybrid Runtime Orchestration & Workflow Management
CodeHDAGANAAPrimaryNo
5QEC-Aware Control, Calibration & Feedback (active reset, adaptive control)
CodeHDAGAJAGPrimaryNo
NAICS code2 codes
  • Semiconductor and Other Electronic Component Manufacturing33441
  • Computer Systems Design and Related Services54151
SIC code2 codes
  • Instruments For Meas & Testing Of Electricity & Elec Signals3825
  • Printed Circuit Boards3672
Product category
Quantum Computing Control Hardware
GTM motion3 records

Each record includes

Type, Description, Source

Revenue model3 records
1Quantum Control Hardware Systems
TypeHardware Sales
Description

Quantum Machines generates revenue primarily from selling its proprietary quantum control hardware platforms (OPX1000, OPX+, Octave, QDAC-II, QSwitch, QBox) and cryogenic electronics (QCage, QBoard, QFilter) to quantum computing companies, national laboratories, and academic institutions. Sales are made directly through enterprise field sales with long sales cycles typical of high-value scientific instrumentation.

quantum-machines.co
2Quantum Control Software and Licensing
TypeSubscription Recurring
Description

Revenue is also derived from software licensing and support contracts tied to the QUA programming language, QUAlibrate calibration framework, and the Quantum Orchestration Platform. Software is bundled with hardware or sold as part of annual support and maintenance agreements.

quantum-machines.co
3Professional Services and Integration
TypeProfessional Services
Description

Quantum Machines provides customization, integration, and consulting services to help customers deploy its control platforms. This includes on-site installation, calibration support, and co-development of quantum experiments using its open frameworks.

quantum-machines.co
Marketing channels7 records

Each record includes

Title, Type, Stage, Description, Source

Distribution channels6 records

Each record includes

Title, Type, Scope, Target buyer, Description, Source

Cost components6 values
Personnel, Technology or R&D, Supply Chain, Operations, Marketing or Sales, Infrastructure
GTM typeB2B
B2B
Offering typeHardware or Manufacturing
Hardware or Manufacturing
Brand1 of 14 records shown
1QM
Description

Shortened company abbreviation used in legal documents and communications

quantum-machines.co
+13 more records
Core offering1 text field

Quantum Machines designs and sells hybrid quantum-classical control hardware and software platforms used to operate, calibrate, and scale quantum computers. Its flagship products include the OPX1000 and OPX+ quantum controllers built on a proprietary Pulse Processing Unit (PPU), the QUA pulse-level programming language, the QUAlibrate open-source calibration framework, and supporting cryogenic electronics (QCage, QBoard-II, QFilter-II), DACs (QDAC-II), and microwave front-end modules. The Open Acceleration Stack integrates classical accelerators (CPUs, GPUs, FPGAs, ASICs) with quantum processors for real-time error correction and AI-driven calibration.

Differentiator
Functional benefit
Problem solved
Quantifiable outcome1 of 7 values shown
  • Multi-qubit superconducting qubit calibration completed in 140 seconds vs. hours previously, using QUAlibrate at the Israeli Quantum Computing Center.
+6 more records
Product overview1 text field

Quantum Machines provides a comprehensive portfolio of hybrid quantum control solutions organized around the Quantum Orchestration Platform. The core hardware offerings include the OPX1000 (modular high-density control platform for up to 1,000 qubits) and OPX+ (ultra-fast FPGA-based controller) as the primary control systems. Supporting hardware products include QDAC-II and QDAC-II Compact (ultra-low-noise DACs), Octave (up/down conversion to 18 GHz), QSwitch and QBox (breakout boxes for signal routing), and MW-FEM/LF-FEM (frontend modules for OPX1000). Cryogenic products include QCage (sample holders for up to 30 qubits with demonstrated Q factors up to 200 million), QBoard-II (modular chip carrier for spin qubits), and QFilter-II (multi-stage low-pass filter for millikelvin electron temperatures). Software products include QUA (universal quantum programming language for pulse-level control) and QUAlibrate (open-source automated calibration framework reducing calibration from hours to minutes). The Open Acceleration Stack provides an open framework for integrating CPUs, GPUs, FPGAs, and ASICs into quantum control systems via NVIDIA NVQLink and OPNIC technology.

Product and service3 records
1OPX1000
CategoryQuantum Control Hardware
Description

Modular high-density quantum control platform built on Pulse Processing Unit (PPU) architecture, supporting up to 1,000 superconducting qubits using only 2.5 racks. Delivers sub-4 microsecond controller-to-GPU/CPU roundtrip latency, >97% XEB QPU utilization, and Direct Digital Synthesis up to 10.5 GHz via the MW-FEM. Sold to quantum computing companies, national laboratories, and academic institutions.

2OPX+
CategoryQuantum Control Hardware
Description

Ultra-fast FPGA-based quantum controller providing all-in-one quantum control and readout with processing and feedback on the quantum coherence timescale. Enables coding of complex quantum algorithms via the QUA language and is used by Alice & Bob, Diraq, EeroQ, QuEra, and academic groups for superconducting, spin, and neutral atom experiments.

3QDAC-II
Scale indicator7 records

Each record includes

Type, Value, Description, Source

Partnership19 partners
Strategic tierCoreTypeStrategic or Co-development PartnerAnnounced on2026-06-27
Description

Quantum Machines partnered with UChicago PME and the Chicago Quantum Exchange to co-design a workforce development curriculum connecting community college students with quantum engineering roles. QM provided its OPX+ controller unit for the program. The Chicago Quantum Exchange report estimates the Midwest quantum job market could reach 191,000 within a decade, and QM plans to replicate the program across the region.

Strategic tierCoreTypeStrategic or Co-development PartnerAnnounced on2026-06-27
Description

Quantum Machines partnered with the Chicago Quantum Exchange, a regional quantum technology hub, to co-develop the workforce development program using QM's OPX+ controller. The Exchange serves as a research network connecting quantum companies with academic institutions in the Midwest.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2026-06-17
Description

Quantum Machines acquired PCB Engineering, a Hungarian high-performance computing hardware firm, marking its second European acquisition in six weeks. The deal established a new R&D hub in Budapest with 40 developers bringing 20 years of high-speed hardware architecture expertise, strengthening QM's hybrid quantum-classical control architecture.

Strategic tierFlagshipTypeTechnology or IntegrationAnnounced on2026-06-15
Description

HPE expanded collaborations with eight quantum computing companies including Quantum Machines to integrate HPC and quantum computing systems for scalable hybrid classical-quantum applications. The partnerships span multiple quantum modalities (neutral atom, ion trap, superconducting, silicon spin qubits) to build a full-stack hybrid quantum supercomputing platform. The initiative was announced at HPE Discover Las Vegas 2026 and aims to accelerate the transition from research to real-world application.

Strategic tierMinorTypeStrategic or Co-development PartnerAnnounced on2026-06-09
Description

IQCC, a subsidiary of Quantum Machines, signed a strategic cooperation agreement with Quantum X Labs to evaluate Quantum X Labs' AI-based quantum error-correction technology using IQCC's OPX1000 real-time quantum controller (the OPX1000). The collaboration aims to validate Quantum X Labs' AI-driven decoder on real quantum hardware under realistic operating conditions.

Strategic tierMinorTypeStrategic or Co-development PartnerAnnounced on2026-05-20
Description

Quantum Machines co-organized the Quantum San Diego Convening alongside UC San Diego's Qualcomm Institute and HPE Quantum as part of California's Quantum California initiative to establish the state as a global quantum technology hub. The convening brought together approximately 200 participants from industry, academia, national laboratories, and government to address quantum scaling challenges.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2026-05-08
Description

Quantum Machines acquired QHarbor, a spin-out from Delft University of Technology in the Netherlands, adding QHarbor's software infrastructure for quantum experimentation — including workflow orchestration, experiment management, and data handling — to QM's orchestration platform. The acquisition extended QM's European footprint to Denmark, Germany, and France.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2026-03-18
Description

Quantum Machines co-developed the Open Acceleration Stack with NVIDIA, enabling integration of any classical processor into quantum control systems. The collaboration leverages NVIDIA's DGX Quantum platform and NVQLink open architecture to achieve sub-4 microsecond roundtrip latency between the OPX1000 and NVIDIA GPUs. The partnership also includes the OPNIC optical interconnect interface and extends to AI-driven qubit calibration and real-time quantum error correction workflows.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2026-03-18
Description

Quantum Machines collaborated with AMD as part of the Open Acceleration Stack to enable integration of AMD processors into quantum control systems for hybrid quantum-classical workloads, complementing the NVIDIA partnership and supporting a multi-vendor accelerator strategy.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2026-03-18
Description

Riverlane, a quantum error correction company, co-developed the Open Acceleration Stack with Quantum Machines, NVIDIA, and AMD to enable real-time quantum error correction through standardized quantum-classical integration interfaces. Riverlane provides quantum error correction expertise as part of the multi-partner stack development.

Strategic tierFlagshipTypeStrategic or Co-development PartnerAnnounced on2026-02-04
Description

Quantum Machines committed to establishing a flagship hub at the 138-acre Illinois Quantum and Microelectronics Park in Chicago, focusing on hardware-control co-design for quantum processors and classical infrastructure. QM becomes the sixth tenant at the state-backed research campus, supported by $500 million in Illinois government funding. QM also selected Chicago to host the 2026 Adaptive Quantum Circuits conference and is partnering with IQMP stakeholders on workforce development initiatives.

12Israeli Quantum Computing Center (IQCC)
Strategic tierFlagshipTypeStrategic or Co-development PartnerAnnounced on2026-02-04
Description

Quantum Machines supports the Israeli Quantum Computing Center (IQCC) at Tel Aviv University, a national quantum computing hub. The IQCC deploys advanced superconducting qubit devices and serves as both a research facility and a cloud-accessible quantum computing service. QM's OPX1000 controller is a core component of the IQCC's infrastructure.

thequantuminsider.com
Strategic tierFlagshipTypeStrategic or Co-development PartnerAnnounced on2025-11-11
Description

Quantum Machines is a founding member of the Quantum Scaling Alliance alongside HPE, Applied Materials, Synopsys, 1QBit, Riverlane, Qolab, and the University of Wisconsin. Co-led by Nobel Laureate John M. Martinis, the alliance aims to design and develop a cost-effective quantum supercomputer by leveraging existing supercomputing and semiconductor manufacturing infrastructure. The goal is to move from artisanal lab assembly to industrial-scale quantum computer manufacturing.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2025-10-28
Description

Quantum Machines announced integration with NVIDIA NVQLink, an open platform for real-time quantum-classical computing. This extends QM's quantum control solutions to enable low-latency communication and real-time quantum-classical program execution supporting scalable quantum error correction. Early adopters include Diraq, MIT, and ENS Lyon.

Strategic tierCoreTypeTechnology or IntegrationAnnounced on2025-09-01
Description

Jülich Supercomputing Centre, home to Europe's fastest supercomputer, became the world's first HPC center to deploy NVIDIA DGX Quantum with Arque Systems and Quantum Machines. This deployment demonstrates QM's control platform integration with production HPC infrastructure for hybrid quantum-classical supercomputing.

Strategic tierCoreTypeStrategic or Co-development PartnerAnnounced on2024-09-01
Description

ORNL partnered with HPE and Quantum Machines as part of the Quantum Scaling Alliance and broader hybrid quantum computing integration efforts, leveraging QM's control systems with ORNL's HPC infrastructure for quantum algorithm development and error correction.

Strategic tierCoreTypeChannel Partner/ Reseller/ DistributorAnnounced on2024-08-01
Description

Quantum Machines joined the QuEra Quantum Alliance as a founding member alongside 18 other companies. The alliance offers partners early access to QuEra technology, joint go-to-market activities, and direct support from QuEra's scientific team for neutral atom quantum computing deployments.

Strategic tierCoreTypeStrategic or Co-development PartnerAnnounced on2020-02-01
Description

Harvard Professor Amir Yacoby joined Quantum Machines' Scientific Advisory Board. Prof. Yacoby's research group at Harvard works on quantum information and quantum optics, and he has publicly endorsed QM's dedicated hardware for controlling quantum bits as the technology the field has been dreaming of.

Strategic tierCoreTypeChannel Partner/ Reseller/ DistributorAnnounced on2020-01-01
Description

Quantum Machines joined the IBM Q Network in January 2020, enabling its Quantum Orchestration Platform to be offered alongside IBM's quantum computing systems and integrated with IBM's Qiskit ecosystem for enterprise and research users.

Recent move8 records

Each record includes

Date, Type, Title, Description, Source

Expansion highlight7 records

Each record includes

Type, Description

Peers10 records
TypeDirect peer
Description

Swiss manufacturer of quantum control electronics (HDAWG, SHF, UHFQA, PQ box) directly competing with QM's OPX and QDAC lines for AWG/DAC/ADC and signal generation in superconducting and spin qubit labs.

TypeDirect peer
Description

Dutch quantum control electronics vendor whose Cluster and Qubit Reader systems compete head-to-head with QM's OPX+ and OPX1000 in superconducting and spin qubit research labs across Europe.

TypeBroad incumbent
Description

Large test-and-measurement incumbent offering quantum control products (e.g., M5300A PXIe AWG) and broader instrumentation that overlaps with QM's OPX/QDAC lines, but as part of a much wider portfolio serving many industries.

TypeBroad incumbent
Description

Global T&M incumbent whose signal generators and analyzers are used in quantum research labs; competes indirectly with QM's Octave up/down conversion and AWG/DAC solutions.

TypeEmerging player
Description

Quantum control software company specialising in error suppression and optimisation algorithms; operates in an adjacent layer of the stack to QM's QUAlibrate and QUA, sometimes as a partner and sometimes as a substitute.

TypeEmerging player
Description

Quantum error correction company and Open Acceleration Stack co-developer with QM; adjacent in the stack (QEC decoders and decoders hardware) and a deep partner on QM's hybrid-classical roadmap.

TypeEmerging player
Description

Quantum computing software platform that integrates with multiple hardware backends, partially overlapping with QM's Quantum Orchestration Platform as a layer for experiment management and access.

TypeEmerging player
Description

Quantum software company focused on high-level circuit synthesis; competes for the same software dollar attached to quantum control platforms and is a peer in the broader quantum software infrastructure market.

TypeBroad incumbent
Description

Full-stack quantum computing incumbent with proprietary control stack and Qiskit ecosystem; both a customer/distribution partner (IBM Q Network) and the most credible vertical-integration threat to QM's control layer.

TypeBroad incumbent
Description

Established full-stack quantum computing company with its own proprietary control and processor architecture; competes broadly in the same end market but uses annealing rather than gate-based qubits.

Market position
Strengths5 records

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Headline, Details, Source

Weaknesses5 records

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Competitive moat6 records

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Type, Details

Key risks6 records

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Key highlights7 records

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Headline, Details, Source

Customer concentration

Classification, Details

Named customers20 records

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Name, Industry, Type, Use case, Source, UUID

Segment4 records

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Title, Type, Primary, Description, Pain point addressed, Use case, Source

Ideal customer profile4 records

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Profile, Firmographic size, Sales motion, Sales cycle length, Buying structure, Purchase trigger, Buyer persona, Geography, Industry vertical, Primary use case, Description, Pain points, Evidence proof points, Target buyer

Technology focused
Yes
API detail
Has APIbool
No

Docs URL, Description

Integration8 records

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Title, Type, Description, Source

AI capability3 records

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Type, Description, Source

AI maturity
App detail

Has app

Feature12 records

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Title, Differentiator, Description, Source

Core technology
Revenue estimate
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Profiles10 records

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Name, Designation, Designation category, Overview, Profile commentary, Source

Subsidiaries4 records

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Name, Acquired on, Relationship type, Type, Business focus

No data
Funding overview

Funding stage, Last funding date, Total funding USD

Funding rounds6 records

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Round, Amount USD, Date, Pre money valuation, Total investors, Investors, News

Investors18 records

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Name, Type, Date of entry, Rounds participated, Website

Funding detail is available on the Subscription and Enterprise plan.Contact sales →

M&A3 records

Each record includes

Name, Acquisition type, Announced date, Completed date, Status, Website, News

Investment

Each record includes

Name, Round, Announced date, Lead investor, Website, News

M&A and investment is available on the Subscription and Enterprise plan.Contact sales →

Quantum Machines

Quantum Computing Control Hardwarequantum-machines.co

Quantum Machines provides hybrid quantum-classical control hardware (OPX1000, OPX+) and software (QUA, QUAlibrate) to quantum computing companies, research institutions, and HPC centers, serving more than 50% of the world's quantum computing companies across 17 countries.

What Quantum Machines does

Quantum Machines is a Tel Aviv-headquartered, Delaware-incorporated provider of hybrid quantum-classical control systems for quantum computing companies, national laboratories, academic institutions, and HPC centers. Founded in 2018, the company has grown to approximately 300 employees across 17 countries and has raised roughly $280 million in total funding, including a $170 million Series C in February 2025 at a $700 million post-money valuation. Its platform is the de facto control layer for more than half of the world's quantum computing companies, with deployments spanning superconducting, semiconductor spin, neutral atom, and optically addressable qubit modalities.

The company's core technology is the Pulse Processing Unit (PPU), a proprietary processor architecture that unifies real-time quantum pulse control with classical processing on a single programmable FPGA, achieving sub-4 microsecond controller-to-GPU roundtrip latency and 160 ns active reset latency. The product portfolio is organized around the OPX1000 modular high-density control platform (supporting up to 1,000 qubits in 2.5 racks), the OPX+ ultra-fast controller, complementary cryogenic electronics (QCage, QBoard-II, QFilter-II), the QUA pulse-level programming language, and the QUAlibrate open-source automated calibration framework. The recently launched Open Acceleration Stack, co-developed with NVIDIA, AMD, and Riverlane, standardizes microsecond-latency integration between quantum controllers and classical accelerators via NVIDIA NVQLink and the OPNIC optical interconnect. Additional product lines include QDAC-II DACs, Octave up/down converters, and the QSwitch and QBox breakout systems.

Quantum Machines generates revenue primarily through direct enterprise field sales of high-value scientific instrumentation (OPX1000, OPX+, cryogenic electronics) to quantum hardware manufacturers, national labs, and academic institutions, with additional software licensing, recurring support contracts tied to QUA and QUAlibrate, and professional services for integration and custom development. The company employs a horizontal segmentation approach across four primary segments — quantum computing hardware manufacturers, academic and national research laboratories, HPC centers, and quantum sensing/networking — and distributes globally through direct sales, OEM-style integrations with hardware builders (Rigetti, QuEra, Diraq, Alice & Bob), and channel partnerships with HPE, IBM Q Network, NVIDIA, and the QuEra Quantum Alliance. Pricing is not publicly disclosed and is configured per customer.

Quantum Machines firmographics

Firmographics
Name
Quantum Machines
Legal name
QM Technologies Inc.
Website
https://quantum-machines.co
Company type
Private
Founded year
2018
Operating status
Operating
Headcount range
101–250 employees
Short description
Quantum Machines provides hybrid quantum-classical control hardware (OPX1000, OPX+) and software (QUA, QUAlibrate) to quantum computing companies, research institutions, and HPC centers, serving more than 50% of the world's quantum computing companies across 17 countries.
Ownership category
akta.pro rank

Quantum Machines industry classification

Industry
Product category
Quantum Computing Control Hardware
NAICS
Semiconductor and Other Electronic Component Manufacturing (33441), Computer Systems Design and Related Services (54151)
SIC
Instruments For Meas & Testing Of Electricity & Elec Signals (3825), Printed Circuit Boards (3672)
akta.pro primary industry
Quantum Control Electronics (AWG/DAC/ADC, Timing & Synchronization) (HDAGABAF)
akta.pro secondary industries
Quantum Control Software & Pulse-Level Programming (HDAGACAJ), Pulse-Level Compilation & Control Stack Integration (HDAGAKAC), Hybrid Runtime Orchestration & Workflow Management (HDAGANAA), QEC-Aware Control, Calibration & Feedback (active reset, adaptive control) (HDAGAJAG)

Keywords

  • Quantum control systems
  • Quantum computing hardware
  • Hybrid quantum-classical control
  • Cryogenic electronics
  • Quantum orchestration platform

Where Quantum Machines is headquartered

Location

Headquarters

HQ city
Claymont
HQ country
United States
HQ region
North America

Offices7 records

Markets served

Quantum Machines business model

Business model
GTM type
B2B
Offering type
Hardware or Manufacturing
Cost components
Personnel, Technology or R&D, Supply Chain, Operations, Marketing or Sales, Infrastructure

Revenue model

  1. Quantum Control Hardware Systems: Quantum Machines generates revenue primarily from selling its proprietary quantum control hardware platforms (OPX1000, OPX+, Octave, QDAC-II, QSwitch, QBox) and cryogenic electronics (QCage, QBoard, QFilter) to quantum computing companies, national laboratories, and academic institutions. Sales are made directly through enterprise field sales with long sales cycles typical of high-value scientific instrumentation.
  2. Quantum Control Software and Licensing: Revenue is also derived from software licensing and support contracts tied to the QUA programming language, QUAlibrate calibration framework, and the Quantum Orchestration Platform. Software is bundled with hardware or sold as part of annual support and maintenance agreements.
  3. Professional Services and Integration: Quantum Machines provides customization, integration, and consulting services to help customers deploy its control platforms. This includes on-site installation, calibration support, and co-development of quantum experiments using its open frameworks.

Go-to-market motion3 records

Distribution channels6 records

Marketing channels7 records

Quantum Machines product offering

Product offering

Core offering

Quantum Machines designs and sells hybrid quantum-classical control hardware and software platforms used to operate, calibrate, and scale quantum computers. Its flagship products include the OPX1000 and OPX+ quantum controllers built on a proprietary Pulse Processing Unit (PPU), the QUA pulse-level programming language, the QUAlibrate open-source calibration framework, and supporting cryogenic electronics (QCage, QBoard-II, QFilter-II), DACs (QDAC-II), and microwave front-end modules. The Open Acceleration Stack integrates classical accelerators (CPUs, GPUs, FPGAs, ASICs) with quantum processors for real-time error correction and AI-driven calibration.

Product overview

Quantum Machines provides a comprehensive portfolio of hybrid quantum control solutions organized around the Quantum Orchestration Platform. The core hardware offerings include the OPX1000 (modular high-density control platform for up to 1,000 qubits) and OPX+ (ultra-fast FPGA-based controller) as the primary control systems. Supporting hardware products include QDAC-II and QDAC-II Compact (ultra-low-noise DACs), Octave (up/down conversion to 18 GHz), QSwitch and QBox (breakout boxes for signal routing), and MW-FEM/LF-FEM (frontend modules for OPX1000). Cryogenic products include QCage (sample holders for up to 30 qubits with demonstrated Q factors up to 200 million), QBoard-II (modular chip carrier for spin qubits), and QFilter-II (multi-stage low-pass filter for millikelvin electron temperatures). Software products include QUA (universal quantum programming language for pulse-level control) and QUAlibrate (open-source automated calibration framework reducing calibration from hours to minutes). The Open Acceleration Stack provides an open framework for integrating CPUs, GPUs, FPGAs, and ASICs into quantum control systems via NVIDIA NVQLink and OPNIC technology.

Differentiator

Problem solved

Functional benefit

Brands

  • QM: Shortened company abbreviation used in legal documents and communications
  • OPX1000
  • OPX+
  • QDAC-II
  • Octave
  • QUA
  • QUAlibrate
  • QFilter
  • QBoard
  • QCage
  • QSwitch
  • QBox
  • Open Acceleration Stack
  • IQCC (Israeli Quantum Computing Center)

Products and services

  • OPX1000 Modular high-density quantum control platform built on Pulse Processing Unit (PPU) architecture, supporting up to 1,000 superconducting qubits using only 2.5 racks. Delivers sub-4 microsecond controller-to-GPU/CPU roundtrip latency, >97% XEB QPU utilization, and Direct Digital Synthesis up to 10.5 GHz via the MW-FEM. Sold to quantum computing companies, national laboratories, and academic institutions.
  • OPX+ Ultra-fast FPGA-based quantum controller providing all-in-one quantum control and readout with processing and feedback on the quantum coherence timescale. Enables coding of complex quantum algorithms via the QUA language and is used by Alice & Bob, Diraq, EeroQ, QuEra, and academic groups for superconducting, spin, and neutral atom experiments.
  • QDAC-II

Quantifiable outcome

  • Multi-qubit superconducting qubit calibration completed in 140 seconds vs. hours previously, using QUAlibrate at the Israeli Quantum Computing Center.
  • +6 more outcomes

Companies that use Quantum Machines

Customer profile

Named customers20 records

Segments4 records

Ideal customer profiles4 records

Quantum Machines technology and API

Technology

Technology focussed Yes

API detail

Has API
No
API docs
API detail

Core technology

AI maturity

App detail

Integration8 records

AI capability3 records

Feature12 records

Quantum Machines partnerships and signals

Strategic signal

Partnerships

19 partnerships are on record, tiered core, flagship and minor.

  • University of Chicago Pritzker School of Molecular Engineering (UChicago PME)coreStrategic or Co-development Partner · 27 June 2026Quantum Machines partnered with UChicago PME and the Chicago Quantum Exchange to co-design a workforce development curriculum connecting community college students with quantum engineering roles. QM provided its OPX+ controller unit for the program. The Chicago Quantum Exchange report estimates the Midwest quantum job market could reach 191,000 within a decade, and QM plans to replicate the program across the region.
  • Chicago Quantum ExchangecoreStrategic or Co-development Partner · 27 June 2026Quantum Machines partnered with the Chicago Quantum Exchange, a regional quantum technology hub, to co-develop the workforce development program using QM's OPX+ controller. The Exchange serves as a research network connecting quantum companies with academic institutions in the Midwest.
  • PCB Engineering (Hungary)coreTechnology or Integration · 17 June 2026Quantum Machines acquired PCB Engineering, a Hungarian high-performance computing hardware firm, marking its second European acquisition in six weeks. The deal established a new R&D hub in Budapest with 40 developers bringing 20 years of high-speed hardware architecture expertise, strengthening QM's hybrid quantum-classical control architecture.
  • Hewlett Packard Enterprise (HPE)flagshipTechnology or Integration · 15 June 2026HPE expanded collaborations with eight quantum computing companies including Quantum Machines to integrate HPC and quantum computing systems for scalable hybrid classical-quantum applications. The partnerships span multiple quantum modalities (neutral atom, ion trap, superconducting, silicon spin qubits) to build a full-stack hybrid quantum supercomputing platform. The initiative was announced at HPE Discover Las Vegas 2026 and aims to accelerate the transition from research to real-world application.
  • IQCC (Quantum Machines subsidiary) / Quantum X LabsminorStrategic or Co-development Partner · 9 June 2026IQCC, a subsidiary of Quantum Machines, signed a strategic cooperation agreement with Quantum X Labs to evaluate Quantum X Labs' AI-based quantum error-correction technology using IQCC's OPX1000 real-time quantum controller (the OPX1000). The collaboration aims to validate Quantum X Labs' AI-driven decoder on real quantum hardware under realistic operating conditions.
  • UC San Diego / Qualcomm InstituteminorStrategic or Co-development Partner · 20 May 2026Quantum Machines co-organized the Quantum San Diego Convening alongside UC San Diego's Qualcomm Institute and HPE Quantum as part of California's Quantum California initiative to establish the state as a global quantum technology hub. The convening brought together approximately 200 participants from industry, academia, national laboratories, and government to address quantum scaling challenges.
  • QHarbor (TU Delft spin-out)coreTechnology or Integration · 8 May 2026Quantum Machines acquired QHarbor, a spin-out from Delft University of Technology in the Netherlands, adding QHarbor's software infrastructure for quantum experimentation — including workflow orchestration, experiment management, and data handling — to QM's orchestration platform. The acquisition extended QM's European footprint to Denmark, Germany, and France.
  • NVIDIAcoreTechnology or Integration · 18 March 2026Quantum Machines co-developed the Open Acceleration Stack with NVIDIA, enabling integration of any classical processor into quantum control systems. The collaboration leverages NVIDIA's DGX Quantum platform and NVQLink open architecture to achieve sub-4 microsecond roundtrip latency between the OPX1000 and NVIDIA GPUs. The partnership also includes the OPNIC optical interconnect interface and extends to AI-driven qubit calibration and real-time quantum error correction workflows.
  • AMDcoreTechnology or Integration · 18 March 2026Quantum Machines collaborated with AMD as part of the Open Acceleration Stack to enable integration of AMD processors into quantum control systems for hybrid quantum-classical workloads, complementing the NVIDIA partnership and supporting a multi-vendor accelerator strategy.
  • RiverlanecoreTechnology or Integration · 18 March 2026Riverlane, a quantum error correction company, co-developed the Open Acceleration Stack with Quantum Machines, NVIDIA, and AMD to enable real-time quantum error correction through standardized quantum-classical integration interfaces. Riverlane provides quantum error correction expertise as part of the multi-partner stack development.
  • Illinois Quantum and Microelectronics Park (IQMP)flagshipStrategic or Co-development Partner · 4 February 2026Quantum Machines committed to establishing a flagship hub at the 138-acre Illinois Quantum and Microelectronics Park in Chicago, focusing on hardware-control co-design for quantum processors and classical infrastructure. QM becomes the sixth tenant at the state-backed research campus, supported by $500 million in Illinois government funding. QM also selected Chicago to host the 2026 Adaptive Quantum Circuits conference and is partnering with IQMP stakeholders on workforce development initiatives.
  • Israeli Quantum Computing Center (IQCC)flagshipStrategic or Co-development Partner · 4 February 2026Quantum Machines supports the Israeli Quantum Computing Center (IQCC) at Tel Aviv University, a national quantum computing hub. The IQCC deploys advanced superconducting qubit devices and serves as both a research facility and a cloud-accessible quantum computing service. QM's OPX1000 controller is a core component of the IQCC's infrastructure.
  • Quantum Scaling AllianceflagshipStrategic or Co-development Partner · 11 November 2025Quantum Machines is a founding member of the Quantum Scaling Alliance alongside HPE, Applied Materials, Synopsys, 1QBit, Riverlane, Qolab, and the University of Wisconsin. Co-led by Nobel Laureate John M. Martinis, the alliance aims to design and develop a cost-effective quantum supercomputer by leveraging existing supercomputing and semiconductor manufacturing infrastructure. The goal is to move from artisanal lab assembly to industrial-scale quantum computer manufacturing.
  • NVIDIA (NVQLink Integration)coreTechnology or Integration · 28 October 2025Quantum Machines announced integration with NVIDIA NVQLink, an open platform for real-time quantum-classical computing. This extends QM's quantum control solutions to enable low-latency communication and real-time quantum-classical program execution supporting scalable quantum error correction. Early adopters include Diraq, MIT, and ENS Lyon.
  • Jülich Supercomputing CentrecoreTechnology or Integration · 1 September 2025Jülich Supercomputing Centre, home to Europe's fastest supercomputer, became the world's first HPC center to deploy NVIDIA DGX Quantum with Arque Systems and Quantum Machines. This deployment demonstrates QM's control platform integration with production HPC infrastructure for hybrid quantum-classical supercomputing.
  • Oak Ridge National Laboratory (ORNL)coreStrategic or Co-development Partner · 1 September 2024ORNL partnered with HPE and Quantum Machines as part of the Quantum Scaling Alliance and broader hybrid quantum computing integration efforts, leveraging QM's control systems with ORNL's HPC infrastructure for quantum algorithm development and error correction.
  • QuEra Quantum AlliancecoreChannel Partner/ Reseller/ Distributor · 1 August 2024Quantum Machines joined the QuEra Quantum Alliance as a founding member alongside 18 other companies. The alliance offers partners early access to QuEra technology, joint go-to-market activities, and direct support from QuEra's scientific team for neutral atom quantum computing deployments.
  • Harvard University (Prof. Amir Yacoby)coreStrategic or Co-development Partner · 1 February 2020Harvard Professor Amir Yacoby joined Quantum Machines' Scientific Advisory Board. Prof. Yacoby's research group at Harvard works on quantum information and quantum optics, and he has publicly endorsed QM's dedicated hardware for controlling quantum bits as the technology the field has been dreaming of.
  • IBM Q NetworkcoreChannel Partner/ Reseller/ Distributor · 1 January 2020Quantum Machines joined the IBM Q Network in January 2020, enabling its Quantum Orchestration Platform to be offered alongside IBM's quantum computing systems and integrated with IBM's Qiskit ecosystem for enterprise and research users.

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Quantum Machines competitors and assessment

Company assessment

Direct peers

  • Zurich Instruments: Swiss manufacturer of quantum control electronics (HDAWG, SHF, UHFQA, PQ box) directly competing with QM's OPX and QDAC lines for AWG/DAC/ADC and signal generation in superconducting and spin qubit labs.
  • Qblox: Dutch quantum control electronics vendor whose Cluster and Qubit Reader systems compete head-to-head with QM's OPX+ and OPX1000 in superconducting and spin qubit research labs across Europe.

Broad incumbents

  • Keysight Technologies: Large test-and-measurement incumbent offering quantum control products (e.g., M5300A PXIe AWG) and broader instrumentation that overlaps with QM's OPX/QDAC lines, but as part of a much wider portfolio serving many industries.
  • Rohde & Schwarz: Global T&M incumbent whose signal generators and analyzers are used in quantum research labs; competes indirectly with QM's Octave up/down conversion and AWG/DAC solutions.
  • IBM Quantum: Full-stack quantum computing incumbent with proprietary control stack and Qiskit ecosystem; both a customer/distribution partner (IBM Q Network) and the most credible vertical-integration threat to QM's control layer.
  • D-Wave Systems: Established full-stack quantum computing company with its own proprietary control and processor architecture; competes broadly in the same end market but uses annealing rather than gate-based qubits.

Emerging players

  • Q-CTRL: Quantum control software company specialising in error suppression and optimisation algorithms; operates in an adjacent layer of the stack to QM's QUAlibrate and QUA, sometimes as a partner and sometimes as a substitute.
  • Riverlane: Quantum error correction company and Open Acceleration Stack co-developer with QM; adjacent in the stack (QEC decoders and decoders hardware) and a deep partner on QM's hybrid-classical roadmap.
  • Strangeworks: Quantum computing software platform that integrates with multiple hardware backends, partially overlapping with QM's Quantum Orchestration Platform as a layer for experiment management and access.
  • Classiq: Quantum software company focused on high-level circuit synthesis; competes for the same software dollar attached to quantum control platforms and is a peer in the broader quantum software infrastructure market.

Market position

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Customer concentration

Quantum Machines social profiles

Digital presence

Quantum Machines financial estimates

Financial estimate

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Quantum Machines leadership team

Management profile

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Profiles10 records

Quantum Machines subsidiaries and ownership

Company hierarchy

Subsidiaries4 records

Quantum Machines funding detail

Funding detail

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Funding rounds6 records

Investors18 records

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Quantum Machines M&A and investment

M&A and investment

M&A3 records

Investments

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Frequently asked questions about Quantum Machines

What does Quantum Machines do?

Quantum Machines designs and sells hybrid quantum-classical control hardware and software platforms used to operate, calibrate, and scale quantum computers. Its flagship products include the OPX1000 and OPX+ quantum controllers built on a proprietary Pulse Processing Unit (PPU), the QUA pulse-level programming language, the QUAlibrate open-source calibration framework, and supporting cryogenic electronics (QCage, QBoard-II, QFilter-II), DACs (QDAC-II), and microwave front-end modules. The Open Acceleration Stack integrates classical accelerators (CPUs, GPUs, FPGAs, ASICs) with quantum processors for real-time error correction and AI-driven calibration.

Is Quantum Machines a public or private company?

Quantum Machines is a private company. It is classified as venture growth investor backed and is currently operating.

When was Quantum Machines founded?

Quantum Machines was founded in 2018. It employs 101 to 250 people.

Where is Quantum Machines based?

Quantum Machines is headquartered in Claymont, United States, in the North America region.

How does Quantum Machines make money?

Three revenue lines are on record. Quantum Control Hardware Systems are the primary driver. The others are quantum Control Software and Licensing and professional Services and Integration.

Who are Quantum Machines's main competitors?

Direct peers on record are Zurich Instruments and Qblox. Broad incumbents are Keysight Technologies, Rohde & Schwarz, IBM Quantum and D-Wave Systems. Emerging players are Q-CTRL, Riverlane, Strangeworks and Classiq.

Does Quantum Machines have an API?

No public API is recorded for Quantum Machines.

What industry is Quantum Machines in?

Quantum Machines's product category is Quantum Computing Control Hardware. Its primary akta.pro industry code is HDAGABAF, Quantum Control Electronics (AWG/DAC/ADC, Timing & Synchronization), with a secondary code of HDAGACAJ, Quantum Control Software & Pulse-Level Programming. Its NAICS code is 33441 and its SIC code is 3825.

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Live signals
Quantum ZeitgeistRoadrunner Quantum Lab state investment fills gaps in national quantum strategyQuantum Machines is leasing lab space and installing an OPX control system at the Roadrunner Quantum Lab in Albuquerque, New Mexico, ahead of its opening. The move supports New Mexico's $450 million quantum investment and provides testing infrastructure for startups and researchers. The company's technology powers over half of all quantum computing companies.Quantum ZeitgeistAMD chips help Quantum Machines control qubits with nanosecond precisionQuantum Machines integrates AMD Versal, EPYC, and Alveo accelerators into its Hybrid Control architecture to achieve nanosecond-precision qubit control. The partnership enables real-time pulse processing and error correction, with Alveo accelerators boosting quantum simulation performance by up to 30x. The company anticipates scaling to 10,000–100,000 qubits, requiring heterogeneous computing.Quantum ZeitgeistQuantum Machines runs NVIDIA code on live qubits with NVQLinkQuantum Machines ran an end-to-end NVIDIA CUDA-Q program across live qubits and a classical processor using NVQLink, completing the exchange in about one millionth of a second. The integration simplifies quantum programming by allowing Python and C++ code to run across heterogeneous hardware, reducing the need for low-level control. This advances toward unified quantum-classical supercomputing systems.EIN PresswireQuantum Machines Makes Quantum Computers Easier for Software Developers to Program with NVIDIA CUDA-Q and NVQLinkQuantum Machines demonstrated running an end-to-end NVIDIA CUDA-Q program across live qubits and a PPU classical processor with NVQLink, completing the full exchange in about a millionth of a second. The integration abstracts low-level control, enabling hybrid quantum-classical applications and reducing time-to-value for developers.Quantum ZeitgeistQuantum Machines and Academia Sinica speed up qubit tuning with AIQuantum Machines and Academia Sinica reported that a reinforcement learning agent, connected to their OPX1000 controller via OPNIC to a classical GPU, reduced two-qubit gate calibration from about 15 minutes to roughly 25 seconds. The agent also optimized all parameters of a five-qubit circuit to prepare a GHZ state. The company said parameters drift by 5 to 15 percent, requiring continuous in-situ control.ThequantuminsiderMichaela Eichinger (Quantum Machines): Why classical compute and HPC integration will define useful quantumIn a QuEra Computing interview, Quantum Machines product solutions physicist Michaela Eichinger discusses her transition from academia to industry, her newsletter covering the quantum stack, and her focus on superconducting qubits. She argues that classical processing and HPC integration are becoming central to useful quantum computers, and that HPC centers need the full compute environment to scale.Quantum ZeitgeistQuantum computing’s growth demands a skilled workforce nowQuantum Machines' Kristina Callaghan reports a shortage of quantum technicians and engineers, roles not requiring a doctorate, as the field moves into commercial data centers. The company's OPX+ hardware and QUAlibrate software are being integrated into curricula at institutions including Central New Mexico Community College, the University of Oregon and the University of Chicago. Industry reports estimate up to 191,000 quantum jobs in Illinois, Wisconsin and Indiana within a decade.PeraltaBCC and LBNL Partner to Expand Quantum Workforce ReadinessBerkeley City College and Lawrence Berkeley National Laboratory have launched the BERQ program, a three-week summer initiative designed to introduce community college students to quantum information science and prepare them for careers in the field. The curriculum includes expert-led lectures, hands-on laboratory work, and site visits to facilities such as Rigetti, IonQ, and Quantum Machines. Funded by the DOE Office of Science, the program aims to cultivate a skilled workforce for the emerging quantum technology sector.ThequantuminsiderHorizon Quantum Reports Second Quarter 2026 Financial ResultsHorizon Quantum Holdings reported Q2 2026 financial results, including an operating loss of $7.2 million and a net loss of $115.2 million, which included a $108.3 million non-cash charge from warrant liability remeasurement due to share price appreciation. The company achieved key milestones during the quarter, including the release of its Beryllium quantum programming language to early access users and opening its Ember-1 testbed to first users in Singapore, while also announcing a strategic collaboration with Quantum Machines and receiving $27.5 million from warrant exercises, ending the quarter with $113.3 million in cash.Stock TitanHorizon Quantum Q2 Earnings: $115.2M Net LossHorizon Quantum Holdings Ltd. reported a net loss of $115.2 million for Q2 2026, compared to a $2.9 million loss in Q2 2025, with the increase driven primarily by a $108.3 million non-cash charge from the remeasurement of warrant-related derivative liabilities due to a rise in the company's share price. The company simultaneously announced several operational milestones including the release of its Beryllium quantum programming language to early access users, a strategic collaboration with Quantum Machines for calibration technology, and opened its Singapore-based Ember-1 testbed system to first users, while cash proceeds of $27.5 million from warrant exercises increased its total cash balance to $113.3 million.