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Quantum Sensors Market to Hit USD 839 Million by 2031 | Key Growth in Defense, Healthcare & IT – Valuates Reports

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BANGALORE, India, May 23, 2025 /PRNewswire/ — Quantum Sensors Market is Segmented by Type (Atomic Clock, Gravity Sensor, Magnetic Sensor, Rotation Sensors, Imaging Sensors, Temperature Sensors), by Application (Defense, Oil & Gas, Transportation, Construction, Medical & Healthcare, IT & Telecommunication, Agriculture).

The Global Quantum Sensors Market is projected to grow from USD 506 Million in 2024 to USD 839 Million by 2031, at a Compound Annual Growth Rate (CAGR) of 7.6% during the forecast period.

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Major Factors Driving the Growth of Quantum Sensors Market:

The quantum sensors market is expanding steadily as industries seek superior measurement, navigation, and detection capabilities. The convergence of technological miniaturization, rising investment, and real-world applications is accelerating commercialization. Key sectors such as defense, healthcare, aerospace, and infrastructure monitoring are integrating quantum sensors into their operational systems. The ecosystem is also maturing, with startups, academic institutions, and large corporations collectively shaping innovation. Growing awareness about quantum advantages and supportive regulatory environments further aid adoption. As barriers to cost and complexity reduce, quantum sensors are poised to move beyond niche applications into mainstream industrial and consumer markets, marking a transformative shift in precision sensing.

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TRENDS INFLUENCING THE GROWTH OF THE QUANTUM SENSORS MARKET:

Magnetic sensors are a critical segment driving the growth of the quantum sensors market due to their unmatched sensitivity in detecting minute magnetic fields. Quantum magnetic sensors, particularly those based on nitrogen-vacancy (NV) centers in diamonds or superconducting quantum interference devices (SQUIDs), offer significantly enhanced accuracy compared to traditional sensors. Their applications in medical imaging, such as magnetoencephalography (MEG), enable high-resolution brain activity mapping, fostering adoption in the healthcare sector. Additionally, they are increasingly used in geophysical surveys and mineral exploration where ultra-precise magnetic readings are required. As industries prioritize precise diagnostics and non-invasive techniques, the demand for quantum-based magnetic sensing grows, propelling market expansion in both research and commercial applications.

Atomic clocks are a foundational application of quantum sensors, driving substantial market growth due to their unparalleled accuracy in timekeeping. These clocks, based on quantum transitions in atoms like cesium and rubidium, offer stability required for critical infrastructures such as GPS, telecommunications, and high-frequency trading. The need for enhanced synchronization across global networks has heightened demand for compact and portable atomic clocks. In defense and aerospace sectors, atomic clocks support advanced navigation systems, especially where satellite signals are inaccessible. Ongoing advancements in chip-scale atomic clock (CSAC) technology are making precise timekeeping more accessible, fueling commercial adoption. Their role in enabling robust and reliable digital systems underpins the broader expansion of the quantum sensor market.

The defense sector is a major force driving the growth of the quantum sensors market due to its increasing need for precise navigation, communication, and surveillance capabilities. Quantum sensors are being deployed in inertial navigation systems for submarines, aircraft, and spacecraft, offering accurate location tracking even without GPS. Additionally, they are vital for detecting stealth objects and submarines using gravitational and magnetic field anomalies. Governments are heavily investing in defense research and development to incorporate quantum technologies into military applications, driving commercialization efforts. Collaborations between defense agencies and tech companies are accelerating innovation and deployment. This strong institutional backing and critical application scope make defense a key contributor to quantum sensor market growth.

One of the primary drivers of the quantum sensors market is the rising demand for highly accurate measurement tools across industries. Traditional sensors often fall short in extreme or sensitive environments, whereas quantum sensors offer ultra-precise detection of changes in magnetic fields, gravity, time, and acceleration. Industries such as geophysics, aerospace, and navigation require these levels of precision for mapping underground structures, monitoring seismic activity, or guiding autonomous vehicles. As these sectors grow in complexity and scale, the need for precision instruments intensifies, pushing demand for quantum sensors that can operate beyond the capabilities of classical technologies. This demand is fueling research, investment, and commercial interest in quantum sensing solutions.

Government and private sector investments in quantum technologies are significantly boosting the quantum sensors market. Countries like the U.S., China, Germany, and the U.K. are launching national quantum initiatives to develop and commercialize quantum-based solutions. These investments are not only funding academic and industrial R&D but are also facilitating collaborations between universities and enterprises. The result is a pipeline of innovations in quantum sensors, including miniaturized devices, improved stability, and increased portability. As funding becomes more widespread, barriers to entry are lowering, allowing startups and smaller firms to enter the quantum technology landscape. This influx of capital and innovation is accelerating product development and market penetration.

Space exploration and satellite technology are emerging frontiers for quantum sensors, contributing to market growth. Quantum sensors are being used to measure gravitational variations, detect mineral deposits, and monitor environmental changes from space with unprecedented accuracy. They enable mapping of Earth’s gravitational field, essential for understanding tectonic activity and sea-level rise. Additionally, quantum gyroscopes and accelerometers help in autonomous navigation of satellites and spacecraft without reliance on external signals. Space agencies and private space companies are investing in these technologies to enhance mission safety and data accuracy. As space missions become more complex and data-driven, the need for quantum sensors in orbital applications will continue to expand.

Quantum sensors are playing a pivotal role in the advancement of autonomous systems and robotics, particularly in environments where GPS is unavailable or unreliable. Quantum inertial sensors provide precise movement and orientation data, making them valuable in self-driving vehicles, drones, and underwater autonomous systems. These sensors enable machines to navigate and respond to their surroundings with greater accuracy, enhancing safety and functionality. The global trend toward automation and robotics across logistics, defense, and manufacturing sectors creates a robust demand base for such cutting-edge sensor technologies. As autonomous solutions become mainstream, quantum sensors are expected to form an integral part of their sensor stacks, driving adoption.

The ongoing trend of miniaturization in sensor technology is a significant growth driver for the quantum sensors market. Traditionally large and lab-bound, quantum sensors are now being engineered into compact, chip-scale devices suitable for integration into commercial and industrial systems. This evolution has made quantum sensors more accessible and practical for real-world use, especially in fields such as healthcare diagnostics, mobile communications, and wearable technologies. Portable quantum gravimeters, atomic clocks, and magnetometers are now being explored for field applications. Miniaturization also reduces costs and expands the scope of applications, helping quantum sensors move from research settings to commercial and consumer markets.

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QUANTUM SENSORS MARKET SHARE

North America dominates due to heavy investments in defense, space exploration, and quantum research, particularly from the U.S.

Asia-Pacific is witnessing rapid growth driven by strong government support in China, Japan, and South Korea, along with rising demand from manufacturing and navigation sectors.

Europe is a key contributor, with Germany and the U.K. spearheading R&D through public-private partnerships and EU-funded initiatives.

Key Companies:

Muquans SASMicrosemi CorpAOSenseGWR Instruments IncOscilloquartzMSquared Lasers LtdCryogenic LimitedSupracon AG

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DISCOVER MORE INSIGHTS: EXPLORE SIMILAR REPORTS!

PAR Quantum Sensors MarketThe global market for Spherical Underwater Quantum Sensor was valued at USD 121 Million in the year 2024 and is projected to reach a revised size of USD 172 Million by 2031, growing at a CAGR of 5.0% during the forecast period.Carbon Quantum Dots (CQD) MarketFull Spectrum Quantum Sensors MarketUnderwater Quantum Sensors MarketQuantum Dot Image Sensors MarketThe global market for Quantum System was valued at USD 28740 Million in the year 2024 and is projected to reach a revised size of USD 48430 Million by 2031, growing at a CAGR of 7.9% during the forecast period.Quantum Magnetometry MarketThe global market for Infrared Sensors was estimated to be worth USD 734.1 Million in 2023 and is forecast to a readjusted size of USD 1070.8 Million by 2030 with a CAGR of 5.4% during the forecast period 2024-2030.The global market for Cooled Infrared Sensors was estimated to be worth USD 215 Million in 2023 and is forecast to a readjusted size of USD 314.4 Million by 2030 with a CAGR of 5.5% during the forecast period 2024-2030.Quantum Cryptography Solutions market is projected to grow from USD 3824.8 Million in 2024 to USD 4811.7 Million by 2030, at a Compound Annual Growth Rate (CAGR) of 3.9% during the forecast period.

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Technology

DATABANK CLOSES $1.45 BILLION IN NEW FINANCING ACROSS TWO TRANSACTIONS

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$800 Million Revolving Credit Facility and $650 Million Upsize of Red Oak, Texas Campus Financing Strengthen DataBank’s Capital Structure and Support Continued Growth

DALLAS, June 15, 2026 /PRNewswire/ — DataBank, a leading provider of enterprise-class edge colocation, interconnection, and managed services, today announced the successful closing of two financing transactions totaling $1.45 billion: an $800 million corporate revolving credit facility and a $650 million upsize of its existing construction financing for its Red Oak, Texas data center campus.

$800 Million Revolving Credit Facility

DataBank closed an $800 million revolving credit facility (the “Corporate Revolver”) maturing in 2031. Proceeds will be used for general corporate purposes, including working capital needs, capital expenditures, and liquidity support for the company’s continued growth and acquisition strategy.

This Corporate Revolver was arranged by a syndicate of banks led by Citizens Bank, N.A. along with Joint Lead Arrangers Citibank, MUFG Bank, Ltd., PNC Bank, N.A., TD Securities (USA) LLC, Truist Securities, Inc., U.S. Bank, N.A. and Wells Fargo Securities.

$650 Million Red Oak Campus Financing Upsize

DataBank also closed a $650 million upsize of its existing $2.0 billion construction financing for its Red Oak, Texas campus, originally announced in April 2026. This brings the total Red Oak campus financing to $2.65 billion. The upsize supports construction of the fourth building on this campus, adding 60 megawatts of incremental IT capacity.

The upsize consists of $400 million in bank financing, led by the same institutions as the April 2026 announcement, and $250 million of notes placed in a private placement, which is  DataBank’s first private placement transaction. The private placement marks a significant milestone for DataBank, opening the company to a new institutional investor base and further diversifying its sources of capital for development projects.  MUFG served as Lead Placement Agent, with TD Securities (USA) LLC and Barclays as Joint Placement Agents, and Citibank, Citizens Bank, N.A., and National Bank of Canada as Co-Placement Agents.

“This new revolving credit facility strengthens our financial flexibility and reflects the confidence our lending partners have in DataBank’s business model and long-term growth trajectory,” said Raul K. Martynek, Chief Executive Officer of DataBank.

 “As demand for data center capacity continues to accelerate, having a robust and flexible capital structure is essential. This revolver, combined with the upsized Red Oak financing and our inaugural private placement, positions DataBank to move decisively as we expand our platform and deepen our relationships with hyperscale, cloud, and enterprise customers,” said Kevin Ooley, President and Chief Financial Officer of DataBank.

Davis Polk & Wardwell LLP served as legal counsel to DataBank on both transactions.

About DataBank

DataBank helps the world’s largest enterprises, technology, and content providers ensure their data and applications are always on, always secure, always compliant, and ready to scale to meet the needs of the artificial intelligence era.

Recognized by Deloitte in 2023 and 2024, and Inc. 5000 in 2024 as one of the fastest-growing private US companies, DataBank’s edge colocation and infrastructure footprint consists of 70+ “HPC-ready” data centers in 25+ markets, 20 interconnection hubs, and on-ramps to an ecosystem of cloud providers with virtually unlimited reach.

We combine these platforms with contract portability, managed security, compliance enablement, hands-on support, and a guarantee of 100% uptime availability, to give our customers absolute confidence in their IT infrastructure and the power to create a boundless digital future for their business.

To learn more, follow us on LinkedIn or subscribe to our YouTube channel. To tour a facility, visit DataBank or call 1(800) 840-7533.

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SOURCE DataBank

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Hasung Expands Global Reach with Advanced Precious Metal Processing Solutions

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SHENZHEN, China, June 15, 2026 /PRNewswire/ — Hasung, a professional solutions provider in the field of precious metals and alloys founded in 2014, is leveraging its years of accumulated expertise in precious metal processing and independent R&D capabilities to accelerate the internationalization of Chinese high-end precious metal equipment manufacturing, as the global jewelry manufacturing and precious metal processing industry continues to develop towards higher precision, higher purity, and higher efficiency.

The global jewelry market reached approximately USD 381.5 billion in 2025 and is projected to exceed USD 578 billion by 2033, driving increasing demand for high-precision precious metal manufacturing technologies, according to Grand View Research.

Advanced Precious Metal Processing Technology as the Upgrading Direction

In the field of precious metal processing, purity determines value, and details reveal quality. As global refineries, jewelers, and gold bullion manufacturers place stringent demands on product quality and manufacturing efficiency, traditional processing methods have become the production bottleneck due to unresolved issues such as oxidation, porosity, and precision. As a result, advanced casting, melting, and precision processing technologies are emerging as an important development direction for high-end precious metal manufacturing.

Guided by a focus on technology and product quality, Hasung has gradually formed an independent and highly stable core product system based on its deep understanding of industrial automation systems and advanced technology R&D capabilities. This system covers continuous casting equipment, metal granulating equipment, induction melting furnaces, gold bar casting machines, jewelry casting machines, metal powder making machines, etc.

This precious metal solution, which integrates intelligent control, efficient heating, and precision forming, effectively addresses the core pain points of the precious metal processing industry, such as oxidation control, yield, and production efficiency. Advanced IGBT wafers and high-frequency heating technology not only enable rapid melting of metal in a very short time, but also significantly reduce unit energy consumption. The PID intelligent temperature control system ensures that the molten metal has optimal fluidity, avoiding shrinkage porosity or uneven grain structure caused by temperature fluctuations.

Meanwhile, Hasung places strong emphasis on process stability and precision control. Through continuous optimization of equipment structure, temperature management, and automation systems, the company helps customers achieve greater consistency in precious metal casting and processing operations.

Rising Demand for High-Precision Precious Metal Processing Equipment

High-end precious metal processing equipment has long been dominated by German and Japanese manufacturers, especially when it comes to precision casting, temperature precision, and automation.

As manufacturers worldwide increasingly prioritize casting quality, material utilization, and process consistency, companies with strong engineering capabilities are gaining greater opportunities to compete in the global market.

Through sustained investment in engineering innovation, intelligent control systems, and precision manufacturing technologies, Hasung has continued to strengthen its competitiveness in high-end precious metal processing equipment. The results show up in how the equipment actually performs in production environments: more consistent, more reliable, less operator intervention.

That reputation has opened doors. Hasung’s equipment is now running in jewelry workshops, precious metal refineries, and advanced materials operations across Europe, Southeast Asia, the Middle East, and South America.

Expanding from Jewelry into Advanced Materials

As the global advanced manufacturing industry continues to increase its demand for high-performance metal materials, advanced precious metal processing technology is applied from the jewelry industry to a wider range of industrial applications.

In addition to the traditional jewelry manufacturing market, Hasung has also been actively expanding its applications in advanced materials and scientific research in recent years, like metal powder manufacturing, new material experimentation, precision alloy processing, and others. Its clients include not only jewelry manufacturers but also new material companies, university laboratories, and solder companies.

In the future, Hasung will intensify its R&D investment in precious metal processing technology, intelligent automation, and precision control, continuously improving product performance and global service capabilities.

“Thirteen years ago, we moved into precious metals industry,” said Mr. Xiang, the founder of Hasung, “year after year we’ve kept pursuing technology development and been committed to driving technological innovation in the global precious metals industry through China’s smart manufacturing.”

About Hasung

Hasung is a national high-tech enterprise based in Shenzhen, specializing in the manufacturing of equipment for precious metals and new materials processing. Its main products include vacuum pressure casting machines, gold bar casting machines, silver bullion casting machines, jewelry casting machines, jewelry rolling mills, metal powder making machines, gold chain making machines, etc., which are sold to more than 80 countries and regions around the world.

Media Contact:

Shenzhen Hasung Precious Metals Equipment Technology Co., Ltd
No.11, Jinyuan 1st Road, Heao Community, Yuanshan Street, Longgang District, Shenzhen, China 518115
Email: sales@hasungmachinery.com
Tel: +86 17898439424
www.hasungmachinery.com 

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SOURCE Shenzhen Hasung Precious Metals Equipment Technology Co., Ltd

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LifeNet Health, NASA, and UNOS Complete First-of-Its-Kind Drone Kidney Transport Study to Help Save More Lives

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HAMPTON, Va., June 15, 2026 /PRNewswire/ — Teams from the United Network for Organ Sharing (UNOS), NASA Langley Research Center, and LifeNet Health successfully completed a groundbreaking study transporting human kidneys by drone beyond visual line of sight, marking a major milestone in the future of organ transportation and transplantation.

The June 5 flights highlight the potential for drone technology to support future innovations in organ transportation, with the goal of improving reliability, reducing transit times, and helping save more lives through transplantation.

During the study, the kidneys were biopsied and placed on preservation pumps before and after the flights to assess whether drone transportation affected organ integrity. Temperature, pressure, and altitude were monitored throughout the approximately 15-minute flights. Preliminary findings showed no evidence that the flights negatively affected the organs.

Organ transplantation is one of the most time-sensitive processes in healthcare. Once recovered, organs have only a limited window of viability, making efficient transportation critical to successful transplantation. Delays can impact organ function, patient outcomes, and whether a transplant can occur at all. Transportation innovation, including the exploration of drone technology, has the potential to expand access to transplantation for patients on the waitlist or reduce the time to transplant, improving patient outcomes.

“With more than 100,000 people currently waiting for a lifesaving transplant nationwide, innovation in organ transportation is essential,” said UNOS Interim CEO Mark Johnson. “This successful collaboration represents an important step toward making organ transportation safer, faster, and more efficient.”

According to national transplant data, another person is added to the U.S. transplant waiting list every eight minutes, while 13 people die each day waiting for an organ that never arrives. More than 3,000 people in Virginia alone are currently waiting for a lifesaving transplant.

The kidneys used in the study were donated for research by a donor family working with LifeNet Health after it was determined the organs would not be transplanted. Through these gifts, the organizations were able to evaluate how drone transportation may support future advances in transplantation logistics and organ preservation.

While transplantation saves lives today, donation for research helps save lives tomorrow. Organs and tissues that cannot be used for transplant can still help scientists improve preservation methods, develop new therapies, and explore future innovations in transplantation and patient care.

“Just as every patient waiting for a transplant matters, so does the timely transportation of the organs and tissues that can save and heal lives,” said Rony Thomas, President and CEO of LifeNet Health. “Advancing transportation and logistics innovation can make a meaningful difference in ensuring these lifesaving gifts reach patients when they are needed most.”

The study also highlights the broader impact of research donation. A single research donation can support multiple scientific studies and discoveries that may improve transplant outcomes and benefit patients for years to come. Many medical advances used in transplantation today were made possible through the generosity of donors and their families.

Donation for research occurs only with proper authorization and under strict ethical and regulatory standards. Families receive clear information about the process and can make informed decisions that honor their loved one’s wishes.

UNOS, NASA, and LifeNet Health continue exploring opportunities to further evaluate drone transportation in operational environments, including transporting research organs between hospitals and airports.

For updates and more information, follow:

NASA Langley Research Center LinkedIn
NASA Langley Research Center X
NASA Langley Research Center Instagram
NASA Langley Research Center Facebook
NASA Langley Research Center YouTube
UNOS Facebook
UNOS LinkedIn
UNOS Instagram
LifeNet Health LinkedIn
LifeNet Health Facebook
LifeNet Health Instagram

About UNOS
UNOS is a nonprofit organization with decades of experience in helping save lives through research, technology, innovation and education.

About LifeNet Health
As a global leader in regenerative medicine, LifeNet Health continues to push the boundaries to give healing every advantage. The organization offers groundbreaking transplantation and cellular solutions that support healthcare providers and powers scientific research. This forward-focused approach has improved life for millions of patients, all while honoring donor heroes and their families. For more information, visit: www.lifenethealth.org.

EX-3896.00

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SOURCE LifeNet Health

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