About Cabling Installation & Maintenance

Our mission: Bringing practical business and technical intelligence to today's structured cabling professionals

For more than 30 years, Cabling Installation & Maintenance has provided useful, practical information to professionals responsible for the specification, design, installation and management of structured cabling systems serving enterprise, data center and other environments. These professionals are challenged to stay informed of constantly evolving standards, system-design and installation approaches, product and system capabilities, technologies, as well as applications that rely on high-performance structured cabling systems. Our editors synthesize these complex issues into multiple information products. This portfolio of information products provides concrete detail that improves the efficiency of day-to-day operations, and equips cabling professionals with the perspective that enables strategic planning for networks’ optimum long-term performance.

Throughout our annual magazine, weekly email newsletters and 24/7/365 website, Cabling Installation & Maintenance digs into the essential topics our audience focuses on.

  • Design, Installation and Testing: We explain the bottom-up design of cabling systems, from case histories of actual projects to solutions for specific problems or aspects of the design process. We also look at specific installations using a case-history approach to highlight challenging problems, solutions and unique features. Additionally, we examine evolving test-and-measurement technologies and techniques designed to address the standards-governed and practical-use performance requirements of cabling systems.
  • Technology: We evaluate product innovations and technology trends as they impact a particular product class through interviews with manufacturers, installers and users, as well as contributed articles from subject-matter experts.
  • Data Center: Cabling Installation & Maintenance takes an in-depth look at design and installation workmanship issues as well as the unique technology being deployed specifically for data centers.
  • Physical Security: Focusing on the areas in which security and IT—and the infrastructure for both—interlock and overlap, we pay specific attention to Internet Protocol’s influence over the development of security applications.
  • Standards: Tracking the activities of North American and international standards-making organizations, we provide updates on specifications that are in-progress, looking forward to how they will affect cabling-system design and installation. We also produce articles explaining the practical aspects of designing and installing cabling systems in accordance with the specifications of established standards.

Cabling Installation & Maintenance is published by Endeavor Business Media, a division of EndeavorB2B.

Contact Cabling Installation & Maintenance

Editorial

Patrick McLaughlin

Serena Aburahma

Advertising and Sponsorship Sales

Peter Fretty - Vice President, Market Leader

Tim Carli - Business Development Manager

Brayden Hudspeth - Sales Development Representative

Subscriptions and Memberships

Subscribe to our newsletters and manage your subscriptions

Feedback/Problems

Send a message to our general in-box

 

IQM Quantum Computers Unveils Development Roadmap Focused on Fault-tolerant Quantum Computing by 2030

  • IQM's development roadmap aims to achieve fault-tolerance by 2030 and outlines a path to scaling up to 1 million qubits with combined quantum error reduction and error correction​.
  • The roadmap is underpinned by merging IQM's two processor topologies Star and Crystal for hardware efficient error correction as well as an open modular software stack for HPC integration.
  • IQM also ​demonstrates early industry use cases in quantum machine learning, simulation of quantum systems and optimization.

IQM Quantum Computers (IQM), a global leader in superconducting quantum computing, today announced its development roadmap with technical milestones targeting fault tolerant quantum computing by 2030, while enabling a dedicated Noisy Intermediate-Scale Quantum (NISQ) approach for near-term usage.

This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20241113963297/en/

IQM Quantum Computers Development Roadmap (Graphic: Business Wire)

IQM Quantum Computers Development Roadmap (Graphic: Business Wire)

Since its start, IQM has successfully delivered full-stack quantum computers based on its first three processor generations. IQM's 12-year roadmap reflects its vision for pioneering quantum solutions through novel algorithmic approaches, modular software integration, and scalable hardware advancements. It leverages the company's ability to design and fabricate next-generation quantum processors with seamless integration into full-stack systems controlled by an open software stack.

IQM's unique co-design capabilities steer the roadmap towards efficient error-correction implementations with high system performance by merging IQM's two processor topologies IQM Star and IQM Crystal. To enable the roadmap, IQM systematically invests in its R&D, testing and fabrication facilities to boost technology scaling up to 1 million qubits while maintaining high qubit quality and gate fidelity.

To support the developer community and to ease the usage of quantum computing, IQM will also enable tight high-performance computing (HPC) integration and create a special software development kit (SDK). Open interfaces will empower the ecosystem, including quantum error mitigation, co-develop libraries and use-cases on IQM’s quantum computers.

The company aims to achieve quantum advantage across multiple industry domains, focusing on quantum simulations, optimization, and quantum machine learning. According to a McKinsey report, these selected use-cases will unlock a value potential of more than US$28 billion by 2035.

Quantum advantage will be provided by fully error-corrected systems with hundreds to thousands of high-precision logical qubits, for which error correction will be enabled by efficiently implementing novel quantum low-density parity-check (QLDPC) codes. This approach reduces the hardware overhead by a factor of up to 10 compared to surface code implementation.

Furthermore, IQM is targeting high-precision logical qubits with error rates below 10^-7, enabling quantum advantage for applications demanding exceptional accuracy, such as in chemistry and materials science.

“We are implementing Quantum low-density parity-check (QLDPC) codes through a novel chip topology, enabled by our uniquely connected Star topology, long-distance couplers and a very compact approach for advanced packaging and signal routing,” said Dr. Jan Goetz, Co-Founder and Co-CEO of IQM Quantum Computers. “This underlines our commitment to hardware efficiency, enabling a feasible and scalable pathway to fault tolerance combined with an open and modular software architecture.”

Goetz emphasizes that the company’s proprietary cleanroom facilities will support the fabrication of complex processors with unique long-range connections, facilitating high-performance quantum processors.

To this end, IQM will implement novel solutions for advanced packaging and 3D integration to ensure scalability while maintaining its ambitious goals to reduce error rates, while its large-scale processors will be built up in a modular way and powered by cryogenic electronics. The results are reduced heat load, strongly miniaturized packaging solutions, and reduced cost per qubit. These features will result in more performant and affordable products for IQM's customers in the HPC and enterprise market.

Offering on-premises and cloud access, IQM has been specializing in integrating quantum systems into HPC centers since 2020. The latest is Germany’s first hybrid quantum computer at the Leibniz Supercomputing Centre.​

IQM aims to explain further details of the roadmap in future publications, blog posts, and at industry and academic events.

About IQM Quantum Computers:

IQM is a global leader in designing, building, and selling superconducting quantum computers. IQM provides both on-premises full-stack quantum computers and a cloud platform to access its computers anywhere in the world. IQM customers include the leading high-performance computing centres, research labs, universities and enterprises which have full access to IQM's software and hardware. IQM has over 280 employees with offices in Espoo, Madrid, Munich, Paris, Palo Alto, Singapore and Warsaw.

Contacts

Stock Quote API & Stock News API supplied by www.cloudquote.io
Quotes delayed at least 20 minutes.
By accessing this page, you agree to the following
Privacy Policy and Terms Of Service.