ASX-listed Australian developer of miniaturized X-ray imaging systems using carbon nanotube NEX technology for medical and security applications.
Micro-X Ltd. is an ASX-listed Australian technology company headquartered in Tonsley, South Australia. The company has pioneered Nano Electronic X-ray (NEX) tube technology using carbon nanotubes to create smaller, lighter, and electronically controlled X-ray sources without compromising image quality. Micro-X develops mobile X-ray imaging and compact CT systems for medical diagnostics, as well as X-ray security systems for detecting IEDs and threats in aviation and defense.
Key products include a mobile head CT scanner containing 21 miniature X-ray tubes weighing under 70 kg, compared to conventional 1,200 kg CT systems. Micro-X has received a US ARPA-H contract of up to $25 million to develop a full-body mobile CT. The company collaborates with Flinders University and the University of Adelaide.
Primary type & automation activities this supplier delivers:
Compact mobile CT scanner using 21 miniaturized NEX X-ray tubes for bedside neurological imaging.
Miniaturized X-ray camera system for IED detection and security screening using NEX tube technology.
Contact Micro-X Ltd.
WEBSITE
https://www.micro-x.comPHONE
+61 8 7099 3966HEADQUARTERS
Australia
Company Facts
Founded
2011
Primary Role
Manufacturer
Company Size
-
Primary Region
Oceania
Annual Sales
-
Funding Stage
-
Funding Total
-
During the Nomad Alemi cultural festival in Ulan District, Kazakhstan, police deployed robotic dogs for actual patrol duties. This marks the first time robotic systems have been used for maintaining public order at a large event in the region. The robotic dogs can autonomously patrol designated areas, conduct continuous video surveillance, perform video analysis, and recognize faces, relaying real-time information back to the operations control center. The deployment of robotic dogs is significant as it addresses the challenge of limited police presence at large events while needing to monitor numerous points. These robots can cover areas not reachable by fixed cameras and can navigate through crowds, enhancing public safety. The East Kazakhstan police emphasized that these robotic systems are now part of the region's digital security framework, moving from trial and demonstration to regular operational use. Looking ahead, the capabilities of facial recognition integrated into the robotic dogs raise important questions regarding data retention, comparison permissions, and error handling. While the current deployment is limited in scale and focused on controlled environments, it provides a sample for observing the role of robotic dogs in public safety. Future developments will reveal whether this model expands to routine street patrols and how the data collected will integrate into broader security networks.
leaderobot.com 1 hour ago Robotic Dogs Public Safety Surveillance Technology Law Enforcement AIThe demand for electronic skin in humanoid robots is projected to reach 1.525 million square meters by 2030, with a market size of approximately 27.4 billion yuan. This shift indicates that electronic skin is transitioning from experimental samples to regular procurement items, as evidenced by a company receiving 13,000 orders for biomimetic skin in June alone. The significance of this demand lies in the evolving role of electronic skin, which enhances robots' capabilities in unstructured environments where visual data alone is insufficient. High-performance electronic skin, which collects various physical attributes, is essential for training models to understand object interactions, making it a critical component for robots operating in real-world scenarios. As humanoid robot manufacturers begin small-scale deliveries, the increase in electronic skin orders aligns with this trend. However, the integration of electronic skin with the design of the robots presents challenges, as factors like finger size and sensor layout must be collaboratively defined. The anticipated increase in demand and decrease in price hinges on the manufacturers' production capacity and the ability of electronic skin companies to maintain tactile precision while reducing costs.
leaderobot.com 1 hour ago Humanoid Robots Electronic Skin Tactile Sensors Robotics TechnologyMIT researchers have introduced a novel method that enhances generative artificial intelligence models for high-stakes problem-solving. This technique allows models to generate outputs that not only provide plausible solutions but also adhere to strict safety and task-specific requirements, known as hard constraints. By allowing more freedom during the generation process and enforcing constraints only on the final output, the method consistently delivers better solutions across various applications, including robotics and computer vision. The significance of this development lies in its potential to improve the reliability of AI in safety-critical environments. Traditional methods often struggle to balance the generative capabilities of AI with the necessity of meeting stringent safety standards. The new approach enables pretrained generative models to be adapted for use in scenarios where compliance with safety rules and physical laws is essential, thus expanding their applicability in real-world situations. Looking ahead, the adaptability of this technique suggests a promising future for generative AI in complex environments. As industries increasingly rely on AI for tasks like robot path planning, the ability to enforce hard constraints without compromising output quality will be crucial. No further timeline was disclosed at the time of publication.
MITNews 6 hours ago Research Computer science and technology Artificial intelligence Machine learning Algorithms Mechanical engineeringTokyo University's research team has developed an artificial skin that enables robots to accurately sense joint angles through its deformation. This bionic skin, designed with a tissue-like layered structure, was tested on the Musashi-W humanoid robot. The results indicated that the average estimation error for joint angles could be maintained within approximately 3 degrees, and further accuracy was achievable by integrating skin and muscle information. This advancement is significant as traditional muscle-driven humanoid robots face challenges in measuring joint angles directly, unlike conventional robotic joints that utilize encoders. Current methods rely on limited sensors, such as muscle length and tension sensors, to infer joint angles. The research team's approach mimics biological structures by embedding numerous small sensors within soft tissues, enhancing the robot's ability to discern between external disturbances and internal state changes. Moving forward, the integration of these sensors into robotic systems could revolutionize how robots perceive their own movements and interactions with the environment. No further timeline was disclosed at the time of publication.
leaderobot.com 12 hours ago Humanoid Robots Proprioception Biomimetic Technology Robotic SensorsAlien Control Systems (ACS) is launching a new 191,000-square-foot manufacturing facility in Austin, Texas, to enhance production of its Bullfrog counter-drone system. This expansion is a direct response to increased demand from the U.S. and allied nations for effective countermeasures against weaponized drones. The new facility will allow ACS to rapidly scale production of Bullfrog, which integrates computer vision, autonomous control, and precision robotics. The system has already been deployed by the U.S. Army and Navy, and it has contracts with Joint Interagency Task Force 401 and several allied militaries, underscoring its significance in safeguarding critical infrastructure. Looking ahead, ACS aims to further expand Bullfrog's deployment across U.S. military services, following its recent selection by the U.S. Marine Corps for the Ground Based Air Defense program. No further timeline was disclosed at the time of publication.
InterestingEngineering.com Sep 13, 2026 MilitaryUltraSense has introduced ultrasound technology as a solution to enhance tactile sensing in robotics, addressing the wear and tear associated with traditional electronic skin. As robots evolve to interact more effectively with their environments, reliable touch sensing becomes crucial for various applications, including humanoid hands and industrial systems. The challenge lies in developing a scalable tactile architecture that can withstand harsh mechanical conditions while maintaining signal integrity over time. The significance of this development is underscored by the limitations of current tactile sensing technologies, which often struggle with durability and accuracy due to environmental factors. Traditional methods, such as capacitive and piezoelectric sensors, face challenges like wear, hysteresis, and recalibration burdens, particularly in high-duty-cycle applications. UltraSense's approach aims to provide a more robust solution that can sustain performance across millions of contact cycles, making it a potential game-changer in the field of physical AI. Looking ahead, the industry will need to monitor advancements in ultrasound technology and its integration into robotic systems. As physical AI continues to gain traction, the ability to maintain accurate and reliable tactile sensing will be critical for the success of various robotic applications. No further timeline was disclosed at the time of publication.
RoboticsBusinessReview.com Sep 12, 2026 Artificial Intelligence / Cognition Grippers Human Robot Interaction / Haptics Humanoids Microprocessors / SoCs NewsRecent images have surfaced showing China's WZ-X stealth drone, resembling the American B-2 Spirit. These photos, taken at an undisclosed location, highlight the drone's unique serrated trailing edge, suggesting advanced stealth capabilities. This design feature is intended to deflect radar signals, enhancing its operational effectiveness in contested airspace. The significance of the WZ-X lies in its potential role for reconnaissance missions, akin to the US RQ-170/RQ-180 drones. Analysts speculate that it could gather crucial intelligence while maintaining a low radar profile, thanks to its flying-wing design. The drone's daylight test flights indicate a shift towards a more advanced flight-test phase, suggesting increased confidence in its capabilities. Future developments to watch include the potential integration of advanced sensor systems such as synthetic-aperture radar and electronic-intelligence equipment. However, the exact specifications and operational capabilities of the WZ-X remain largely unverified, as the designation is unofficial and the images have not been independently authenticated.
InterestingEngineering.com Sep 12, 2026 Innovation MilitaryIn the latest edition of Video Friday, a humanoid robot showcases its ability to traverse monkey bars, demonstrating advanced agility and perception of complex 3D structures. This task requires the robot to jump onto the structure, navigate through sparse bar interactions, and land safely, highlighting its whole-body motion capabilities. The significance of this demonstration lies in its implications for humanoid robotics, particularly in environments where navigating thin and overhanging geometries is essential. As humanoid robots become more adept at traversing challenging obstacles, the potential applications in search and rescue, disaster response, and other critical fields continue to expand. Looking ahead, the upcoming Humanoids Summit in Seoul and other robotics events scheduled for late 2026 will likely feature further advancements in humanoid robotics. No further timeline was disclosed at the time of publication.
Spectrum.ieee.orgAutomaton Sep 11, 2026 Humanoid-robots Video-friday Drones Robot-videos Center-for-robot-assisted-search Quadruped-robotsACE Robotics and NTU S-Lab have announced the open-source release of Puffin-World, a multimodal world model that integrates physics, geometry, and appearance. This model utilizes the Puffin-16M dataset and achieves state-of-the-art camera absolute pose errors, reporting sub-degree accuracy across four public benchmarks. The significance of this release lies in its potential to enhance various applications in robotics and computer vision by providing a unified framework for understanding complex environments. By achieving such high accuracy in pose estimation, Puffin-World could facilitate advancements in autonomous navigation and scene understanding. Looking ahead, the impact of Puffin-World on the robotics community will be closely monitored, particularly in how it influences future research and development in multimodal models. No further timeline was disclosed at the time of publication.
PanDaily.com Sep 11, 2026Sandbox AQ has successfully tested its quantum sensor-based Magnetic Navigation (MagNav) on Northrop Grumman’s Lumberjack drone, marking a significant milestone in unmanned aircraft systems. This test is the first of its kind for an attritable drone, showcasing the potential of quantum navigation in GPS-denied environments, which is increasingly relevant given current military operations. The successful integration of MagNav with Lumberjack's visual navigation system is crucial as the U.S. military seeks alternatives to GPS for navigation and targeting. The ongoing conflicts in Ukraine and West Asia highlight the need for resilient navigation systems that can operate effectively even when GPS signals are jammed or spoofed. This advancement could enhance operational capabilities in contested domains. Looking ahead, the deployment of Sandbox AQ’s AQNav technology in various aircraft platforms could revolutionize military navigation. The ease of integration into existing systems, as demonstrated by the rapid installation on Lumberjack, suggests a promising future for quantum navigation solutions in defense applications. No further timeline was disclosed at the time of publication.
InterestingEngineering.com Sep 10, 2026 MilitaryFive vendor archetypes, MIR’s composite top ten, eight company profiles and six field deployments — every firm linked to the RobotToday supplier directory.
ByThomas Siew Sep 06, 2026MIR Databank puts China dexterous hand shipments above 30,000 units in 2026, yet only 3.5% of 2025 demand came from factory production. Part 1 of 3.
ByThomas Siew Sep 04, 2026Linkage, tendon, direct drive or hybrid — and why hardware is converging while the DL1–DL5 manipulation scale decides who wins. Part 2 of 3.
ByThomas Siew Sep 04, 202647 WRC 2026 exhibitors supply robot software, compute or interaction — but only 19 call themselves software companies. Five open artefacts, licence-checked.
ByThomas Siew Aug 31, 2026The third report in the WRC 2026 series. Report 1 mapped all 248 exhibitors by category and Report 2 covered the 139 that build finished robots. This one covers the 137 that build what goes inside them.
ByThomas Siew Aug 28, 2026Your weekly robotics briefing: Unitree's IPO is swamped by retail demand, the US puts 100% tariffs on imported drones, LG and Nvidia commit to a 2027 humanoid, and Uber and Pony.ai bring 2,000 robotaxis to Europe.
ByRobotToday Reporter Aug 15, 2026A comprehensive industry analysis of Physical AI — covering Embodied AI, Field AI, Factory AI, VLM, World Model, VLA, and the VLA vs WAM architecture debate. Includes 20+ companies, 28 references, and the RobotToday Physical AI Landscape diagram. July 2026.
ByLeona Tang Jul 10, 2026Access the definitive 2026 directory of 150+ agricultural robotics companies. A comprehensive reference guide covering autonomous tractors, harvest automation, precision weeding, and AI data platforms across the global agtech ecosystem.
BySarah Bakery May 10, 2026Six incumbent categories and 17+ venture-backed challengers compete for $1.37–6.8 billion in construction robotics. China's 295,000 annual robot installations run on state capital. The US leads on innovation. This analysis maps tiers, business models, and regional dynamics — using the Agricultural Robotics Series methodology.
BySimon Dicky Mar 09, 2026Lunar rovers face -180°C nights and glass-sharp dust while building moon infrastructure. Inside the engineering challenges, commercial strategies, and international competition shaping planetary robotics.
ByThomas Siew Feb 09, 2026