Taiwan-based maker of linear motion components and industrial robots, founded 1989, serving precision machinery, medical, and semiconductor industries globally.
HIWIN Technologies Corp., established in 1989 and headquartered in Taichung, Taiwan, is one of the world's largest manufacturers of linear motion components and precision machinery. The company produces ball screws, linear guideways, linear actuators, bearings, ball splines, and direct drive rotary tables used across CNC machine tools, semiconductor fabrication, and medical equipment. HIWIN has expanded into industrial robotics, offering articulated robots, SCARA robots, Cartesian coordinate robots, delta (spider) robots, and silicon wafer-handling robots.
Its medical product line includes a robotic endoscope system and a robotic gait-training rehabilitation device. HIWIN holds ISO 9001, ISO 14001, OHSAS 18001, and ISO 13485 certifications. The company operates subsidiaries in Germany, the United States, Japan, and other countries, and is listed on the Taiwan Stock Exchange under ticker 2049.
Primary type & automation activities this supplier delivers:
High-precision recirculating ball linear guideways for CNC machines, semiconductor equipment, and medical devices.
Six-axis industrial articulated robots for pick-and-place, assembly, and welding applications.
Customised robotic palletising cells using ABB robots for food, beverage, and FMCG end-of-line automation.
Contact HIWIN Technologies Corp.
WEBSITE
https://www.hiwin.comPHONE
8478272270HEADQUARTERS
Taiwan
Company Facts
Founded
1989
Primary Role
Manufacturer
Company Size
-
Primary Region
Asia-Pacific
Annual Sales
-
Funding Stage
-
Funding Total
-
Certifications & Memberships
Dreame Technology has announced a strategic adjustment to its business operations, narrowing its focus to four primary areas: smart homes, outdoor yard care, smart mobility, and embodied AI. This decision comes as the company aims to streamline its efforts and enhance stability in its main operations. The shift in focus is significant as it allows Dreame to allocate resources more effectively towards core technology, product development, manufacturing, and expanding its presence in overseas markets. By concentrating on these key sectors, the company aims to strengthen its competitive edge in the rapidly evolving technology landscape. Looking ahead, it will be important to monitor how Dreame Technology implements this refined strategy and the impact it has on its market positioning. No further timeline was disclosed at the time of publication.
TechNode.com 6 hours ago News FeedShutu Technology has successfully completed nearly 100 million yuan in angel funding, with investors including cornerstone capital and Nanshan New Investment. The funds will primarily support the development of human behavior data products, core technology iterations, and the establishment of an industrial production system. The significance of this funding lies in the shift of focus within the embodied intelligence industry from models and robots to data production, training adaptation, and large-scale delivery. As embodied intelligence transitions from task demonstrations to product delivery, the demand for data is evolving, necessitating continuous and stable data products that can adapt to various models and tasks. Shutu Technology aims to convert specialized human behavior into learnable physical experiences for robots, creating a product matrix that covers multiple forms of human behavior data. Following this funding round, the company plans to enhance production and delivery efficiency while continuing to develop core technologies and industrial production systems. No further timeline was disclosed at the time of publication.
leaderobot.com 12 hours ago Embodied Intelligence Human Behavior Data Industrial Automation Robotics AICollins Aerospace has successfully completed altitude testing of its Enhanced Power and Cooling System (EPACS) for the F-35 jet. This new system is designed to enhance the thermal capacity of the aircraft, enabling it to support future technology upgrades. The testing involved simulating various mission demands and altitude conditions to evaluate the system's performance. The significance of EPACS lies in its ability to meet the increasing thermal and power demands of modern aircraft electronics. As new sensors and mission systems are integrated into the F-35, they generate more heat and require additional electrical power. EPACS aims to provide the necessary thermal margin to accommodate these upgrades without exceeding the aircraft's thermal limits. Looking ahead, the successful altitude testing marks a critical milestone in the development of EPACS, increasing confidence in its performance under real-world conditions. No further timeline was disclosed at the time of publication.
InterestingEngineering.com 12 hours ago MilitaryDJI has integrated LiDAR technology into its latest consumer drones, including the Air 3S, Mavic 4 Pro, Mini 5 Pro, and Neo 2, primarily to enhance flight safety. The Federal Communications Commission (FCC) has proposed new regulations that classify certain foreign-made drones with advanced technologies like LiDAR as 'military-grade,' raising concerns for DJI. LiDAR technology provides a significant advantage over traditional cameras, especially in low-light conditions. While cameras rely on ambient light to detect obstacles, LiDAR emits laser pulses to create a detailed map of the environment, allowing drones to navigate safely even at night. This capability is crucial for preventing crashes and ensuring safe returns during flights. As regulatory scrutiny increases, it will be important to monitor how these proposed rules impact DJI and its use of LiDAR technology. The focus on flight safety rather than military applications may shape future developments in drone technology and regulations. No further timeline was disclosed at the time of publication.
Dronedj.com 12 hours ago NewsStar Catcher Industries and Aethero have formed a partnership to enhance high-performance computing and AI capabilities in orbit by addressing power limitations. Aethero will utilize Star Catcher's upcoming orbital energy grid to access additional power on demand, enabling spacecraft to manage increased computing loads without extensive onboard energy systems. This collaboration is significant as it aims to support the growing demand for space-based data centers and content distribution networks, driven by the increasing volume of satellite-generated data. By processing data in orbit, the need for extensive ground communications is reduced, alleviating potential bottlenecks. Looking ahead, Aethero plans to deploy its NxA-ECM compute module during its Titan mission in October, which will facilitate advanced computing in low Earth orbit. Star Catcher's innovative power-beaming technology is expected to allow spacecraft to generate up to 10 times more power on demand, enhancing operational efficiency and expanding the capabilities of satellite missions. No further timeline was disclosed at the time of publication.
InterestingEngineering.com 12 hours ago AI and Robotics SpaceSaab has announced the development of three unmanned aircraft, designated A1, A2, and A3, aimed at creating a loyal wingman fighter system for the Swedish Air Force. The A1 will serve as a supersonic demonstrator powered by an AI-driven GE F414 engine, while the A2 will include an internal weapons bay. Both models are expected to take flight within the next four years, with the A1 anticipated to fly in just 15 months. The significance of this development lies in its potential integration with the Gripen system, as highlighted by Swedish Defense Minister Pål Jonson. He emphasized the importance of having an unmanned wingman component that can conduct deep operations alongside the manned platform. The A3 model, which may become the primary sales product, could enter service within ten years, contingent on government funding decisions. Looking ahead, Saab's loyal wingman initiative reflects a broader trend towards mixed squadrons of manned and unmanned assets, as noted by Brig. Gen. Niclas Magnusson. The Swedish parliament is expected to make critical decisions regarding Sweden's fighter aircraft capabilities between 2028 and 2030, with ongoing studies and technology development supporting this initiative.
BreakingDefense 12 hours ago Air Warfare Air Force CCA collaborative combat aircraft Drones EuropeManufacturing general managers widely agree that a clear strategy is crucial before embarking on digital transformation initiatives. Many already possess a strategy, which may include a phased roadmap or specific targets like reducing unplanned downtime by 5%. However, successful transformation requires more than just a well-crafted plan; it necessitates effective delivery that engages all stakeholders across various functions. The interplay between strategy and delivery is vital for overcoming operational challenges. A good strategy involves understanding current business operations and capturing insights from stakeholders in production, maintenance, IT, and finance. This collaborative approach helps identify existing problems early, ensuring that all teams share a common understanding of key metrics, such as unplanned downtime, which can vary across departments. To maintain momentum during the delivery phase, dedicated teams should work alongside internal staff, allowing them to focus on operations rather than administrative tasks. Continuous alignment between functions is essential, especially when facing delays or shifting priorities. Ongoing facilitation and technical judgment are necessary to adapt objectives and ensure a successful transformation process.
AutomationWorld.com Aug 24, 2026 Factory / Digital TransformationResearchers at Delft University of Technology (TU Delft) have created a system that allows passengers to influence the driving style of autonomous vehicles using natural language requests. This system utilizes a large language model (LLM) to interpret user instructions, such as adjusting speed or smoothness based on individual preferences, while maintaining safety through a motion-planning algorithm. The significance of this development lies in its potential to enhance user experience in self-driving cars by making them more adaptable to personal preferences. By allowing passengers to communicate their needs in everyday language, the system aims to bridge the gap between human driving styles and autonomous vehicle behavior, ensuring a smoother and more comfortable ride. Looking ahead, the researchers plan to further refine the system and explore its applications in real-world scenarios. The system's interactive nature, which allows for continuous adjustments based on passenger feedback, could pave the way for more personalized and user-friendly autonomous driving experiences. No further timeline was disclosed at the time of publication.
IEEESpectrumAI Aug 24, 2026 Autonomous-vehicles Journal-watch Large-language-modelsSolar panel cleaning robots are evaluated based on their dust removal efficiency, but the brush roller's design is crucial for effective cleaning. It must balance cleaning action with controlled contact and serviceability, considering the specific conditions of photovoltaic modules. Real-world environments often present challenges such as loose dust, bird droppings, and mineral deposits, making the selection of roller brushes complex. The choice of roller brush is not solely based on softness; it must align with the module specifications, site conditions, cleaning methods, and robot interfaces. For OEMs and replacement projects, it is essential to review brush assemblies in relation to module requirements and planned service cycles. The term 'soiling' encompasses a variety of contaminants, from light dust to compacted particles, each requiring different cleaning approaches. As moisture can significantly affect cleaning effectiveness, understanding the interaction between dust and moisture is vital. In water-scarce areas, robotic dry cleaning can be beneficial, but care must be taken to avoid abrasive damage from trapped hard particles. No further timeline was disclosed at the time of publication.
RoboticsAndAutomationNews.com Aug 24, 2026 Energy Environment Robotics brush rollers cleaning robots industrial brushesTeradyne, Inc. has declared a quarterly cash dividend of $0.13 per share, scheduled for payment on September 25, 2026. Shareholders of record as of September 4, 2026, will be eligible to receive this dividend. This announcement reflects Teradyne's ongoing commitment to returning value to its shareholders. The significance of this dividend lies in Teradyne's strong position in the automated test equipment and advanced robotics sectors. The company's solutions are critical for ensuring quality and reliability in the AI device supply chain, which spans from wafer production to data centers. This dividend declaration may enhance investor confidence in Teradyne's financial health and operational stability. Looking ahead, it is important to monitor Teradyne's future dividend declarations, as these are subject to board approval and may change based on market conditions and company performance. No further timeline was disclosed at the time of publication.
investors.teradyne.com Aug 24, 2026iREX 2025 revealed Asia’s dominance in industrial robotics, with Japan, China, Korea, and Taiwan shaping the global automation supply chain far beyond humanoid hype.
ByKelly Stone Dec 06, 2025iREX 2025 revealed Asia’s dominance in industrial robotics, with Japan, China, Korea, and Taiwan shaping the global automation supply chain far beyond humanoid hype.
ByKelly Stone Dec 06, 2025China’s humanoid robotics vendors are battling over actuator screw tech, fueling a multi-billion-dollar race for precision components that power robot motion.
ByKelly Stone Oct 04, 2025