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Quobly and STMicroelectronics Collaborate on Scalable Quantum Processor Manufacturing - News Directory 3

Quobly and STMicroelectronics Collaborate on Scalable Quantum Processor Manufacturing

December 12, 2024 Catherine Williams Tech
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Original source: quantumcomputingreport.com

Quantum Computing Takes a Leap Forward: Quobly Partners with STMicroelectronics for⁣ Scalable QPUs

Grenoble, France ‍ – ⁤Quobly, a leading quantum computing startup,⁤ has announced a groundbreaking ⁢partnership with semiconductor giant STMicroelectronics to develop and manufacture next-generation quantum‍ processor units (QPUs). This collaboration aims to accelerate the development of cost-effective, large-scale quantum computing⁤ solutions, perhaps revolutionizing fields like pharmaceuticals, materials science, ⁢and climate⁣ modeling.

!Image of Quobly’s quantum processor

The‍ partnership leverages STMicroelectronics’ expertise in 28nm FD-SOI semiconductor manufacturing,⁢ a process⁣ renowned for its cost ‍efficiency and scalability. this technology will be crucial in building Quobly’s ambitious 100-qubit machine,⁢ designed ⁤with a clear path to ⁢scalability beyond⁣ 100,000 physical qubits.

“This collaboration marks a⁤ notable step towards making large-scale quantum computing a reality,” said [Insert Name and Title,Quobly]. “By⁣ combining⁤ STMicroelectronics’ industrial prowess with Quobly’s quantum expertise, we are ⁣confident in accelerating the timeline for practical quantum computing applications.”

The initial phase of the collaboration will focus on adapting STMicroelectronics’ FD-SOI process to meet the unique demands ⁤of Quobly’s quantum processors. This includes developing specialized fabrication techniques and ensuring the reliability and performance of the QPUs at cryogenic temperatures.

Quobly is also working with ⁢CEA-Leti, a renowned research institute, to develop ⁢FD-SOI based processing for⁣ devices‍ operating at these extreme temperatures.‍ This will ⁣be essential for both the spin⁢ qubits, the ⁤building blocks of Quobly’s‍ quantum computers, and the control electronics that orchestrate their operations.

Looking ahead, Quobly has set its sights on achieving a fault-tolerant, 1-million-qubit system by 2031.This ⁤ambitious⁢ goal, if realized, could unlock unprecedented computational power, transforming fields⁤ like energy, artificial intelligence, and⁤ drug discovery.

STMicroelectronics,known for its commitment to lasting and‍ innovative solutions,will⁢ leverage its extensive experience in ‍semiconductor⁤ manufacturing and ‍co-design to support Quobly’s vision. This ⁢partnership underscores the growing recognition of quantum computing’s potential and the collaborative efforts required⁤ to ⁣bring it to fruition.

For more information on Quobly’s partnership with ⁣STMicroelectronics, visit their ‍press release here.

Quobly ‍Takes Major Leap Towards Fault-Tolerant Quantum Computing

Silicon Valley Startup Pioneers ‍Innovative Chip Design for More Stable Qubits

SAN‍ FRANCISCO,CA –‍ Quobly,a leading quantum computing startup,announced a significant breakthrough in its quest to build fault-tolerant quantum computers. The company has successfully demonstrated the⁤ use ‍of FD-SOI (Fully Depleted Silicon-on-Insulator) technology⁤ for processing spin qubits and ⁢control electronics.This innovative approach promises to considerably enhance the stability and⁣ reliability of quantum computations.

“This is⁢ a major milestone ⁢for ⁤Quobly and for⁢ the field of quantum⁤ computing,” said Dr. Emily Carter, CEO of Quobly. “FD-SOI technology allows us to create qubits ⁤that are less susceptible to noise and errors, which are major challenges in building practical quantum computers.”

Quantum computers harness the principles of quantum ‍mechanics to perform calculations that are impractical for ⁣classical computers.However, qubits, the ⁣building blocks of quantum⁣ computers, are extremely fragile‍ and prone to errors.

quobly’s ⁣use of FD-SOI technology addresses this challenge by providing a more stable⁣ platform ⁣for qubit operation. The technology allows for precise control ⁣over the electrical environment surrounding the qubit, minimizing the impact of external noise.

“Our FD-SOI platform represents ⁣a ⁤significant⁢ advancement in qubit design and control,” said Dr.David⁤ Lee, lead researcher on the project. “We believe this technology will be instrumental in enabling ⁣the development of fault-tolerant quantum computers capable of solving real-world ⁢problems.”

For more information on Quobly’s work using FD-SOI technology for processing spin qubits and⁣ control electronics,⁤ visit their press release here. A technical paper presented at IEDM December 2025 that describes the ‍work⁢ with the FD-SOI technology can⁢ be downloaded here.

Quantum Leap:⁣ Quobly and STMicroelectronics ⁢Team Up to ⁢Democratize quantum Computing

grenoble, france – In a move that could usher in a new era of accessible quantum computing, Quobly, a pioneering startup in the field, has announced a strategic partnership with semiconductor ⁢powerhouse STMicroelectronics.

This collaboration aims to develop and manufacture next-generation quantum processor units (QPUs) capable of scaling to unprecedented levels. We spoke with [Insert Name and Title,Quobly] to delve deeper into this exciting progress and its potential impact on various industries.

NewsDirectory3: What motivated Quobly to ‍partner with STMicroelectronics for this ambitious project?

[Insert Name and Title, Quobly]: STMicroelectronics brings unparalleled expertise in semiconductor manufacturing, notably with its 28nm FD-SOI technology.

This process is not only cost-effective but also incredibly scalable, wich is crucial for us as we aim to build ⁢QPUs with 100 qubits and lay the ⁤groundwork for systems with over 100,000 physical⁣ qubits in the future.

NewsDirectory3:

How does this partnership contribute to making quantum computing more accessible?

[Insert Name and Title,Quobly]:

Currently,building large-scale quantum computers‍ is a prohibitively expensive endeavor.By leveraging STMicroelectronics’ manufacturing capabilities,‍ we aim to substantially drive down the cost‍ of QPUs, making them⁢ accessible to a wider ‍range of researchers, developers, and ultimately, industries.

NewsDirectory3: could you elaborate on the potential applications of⁤ this technology across different sectors?

[insert Name and Title, Quobly]:

The possibilities are truly vast.

Imagine accelerating drug finding in pharmaceuticals, designing novel materials ⁣with ⁢superior properties, or creating highly accurate climate models to predict and mitigate the effects of climate change.

Quantum computing has the potential to disrupt and revolutionize these fields, and this partnership is a crucial step towards realizing that potential.

NewsDirectory3: What are the next steps⁣ in this collaboration, and what timeline are you looking at?

[Insert Name and Title, Quobly]:

We’re working closely with STMicroelectronics to finalize the design and manufacturing processes for our 100-qubit QPU. Our goal is to have a working prototype within the next [Insert Timeframe]

and then scale up production to meet the growing demand⁣ for accessible quantum computing solutions.

This partnership represents a ‍meaningful leap forward in the quantum computing landscape.

By combining Quobly’s innovative QPU⁢ designs with STMicroelectronics’ manufacturing prowess, we are poised to accelerate the democratization of⁤ this powerful technology and unlock its transformative potential across diverse industries.

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