Part-time telework is available.
Stäubli is a global supplier of industrial and mechatronic solutions, organized into four divisions: Electrical Connectors, Fluid Connectors, Robotics, and Textile. The company serves customers across nearly every industry by providing components and systems that connect electrical and hydraulic lines, plus automation robotics and textile machinery. Its products work by offering mating connectors and integrated robotic systems that enable automated handling, assembly, and manufacturing; industrial connectors ensure reliable electrical and fluid connections, while textile machinery enables fabric processing. Stäubli differentiates itself through its broad, four-division portfolio, long-term customer support, and a worldwide network (28 countries with agents in 50) backed by a history dating back to 1892. The company’s goal is to help customers automate and optimize their production with durable, integrated solutions and ongoing support.
Company Size
1,001-5,000
Company Stage
N/A
Total Funding
N/A
Headquarters
Switzerland
Founded
1892
See people who can refer or advise you
Help us improve and share your feedback! Did you find this helpful?
Flexible Work Hours
Remote Work Options
Paid Vacation
Employee Discounts
Training Programs
Professional Development Budget
Gym Membership
Wellness Program
Company Social Events
Stäubli: one partner. All railway connections. Published: 21 Sep 2026 Supporting the Next Generation of Rolling Stock with Integrated Solutions As trains become more complex, the connections between their critical systems are becoming just as important as the systems themselves. At InnoTrans 2026, Stäubli will demonstrate how integrated electrical and fluid connection solutions can help simplify the design and operation of next-generation rolling stock. A system-level approach built for rail realities. Connection technology may not be the most visible part of a train, but every critical onboard function depends on reliable electrical and fluid interfaces. These connections must withstand vibration, thermal cycling, electromagnetic interference and decades of continuous operation - while remaining easy to maintain. For more than forty years, Stäubli has supported the railway industry with connection solutions designed specifically for these demanding environments. As Michel Schmitt, Global Business Head for Railway at Stäubli, puts it: Michel Schmitt, Global Business Head for Railway at Stäubli, said: Our job is to ensure the continuity of critical energy and fluid systems throughout a train's entire service life, and to do so safely, reliably and sustainably. But today's trains incorporate more onboard systems, run at higher frequencies and increasingly rely on battery technologies alongside traditional electrification. At the same time, rail operators are under pressure to do more with less: less installation space, less downtime and lower lifecycle costs - ultimately placing greater demand on the connections that link every subsystem together. Alexandre Lagrange, Product Manager for Railway at Stäubli, said: In cities such as London or Paris, trains are running every 90 seconds. If one train stops during commercial operation, you affect traffic across the entire network. The margin for error is essentially zero. This is forcing designers, and suppliers, to think more carefully about how different onboard systems connect - especially where electrical power and thermal management have to coexist within the same limited space. Reliable power across the traction chain. The traction chain is one of the areas where a train's electrical architecture is most exposed to stress, with connectors required to perform under continuous vibration and extreme temperature variations. Alexandre Lagrange, Product Manager for Railway at Stäubli, said: The EvoTrak range was designed to address that challenge across multiple rolling stock types and power levels. That range includes EvoTrak MPC and EvoTrak Shield, for high-power applications up to 3,000V, connecting transformers, converters and traction motors on locomotives, electric multiple units and high-speed trains. Meanwhile, EvoTrak lite, developed for urban rail applications, addresses voltages up to 1,500V - designed in direct response to what Alexandre Lagrange considered a need in the range. A newer addition to the traction chain offer is EvoTrak Shield, developed in response to increasingly digitalized rolling stock. Alexandre Lagrange, Product Manager for Railway at Stäubli, said: Every new generation of train has more communication systems on board. Integrated Solutions for battery systems. Battery applications, too, reflect broader shifts across the rail market, particularly on non-electrified lines where alternatives to diesel are gaining importance. But as battery capacity increases, so does the need for effective thermal management. Alexandre Lagrange, Product Manager for Railway at Stäubli, said: When you increase the power in a battery system, you also increase heat generation. And when you increase heat, you need more cooling. A traction battery therefore requires both electrical connections for power transfer and monitoring, and fluid connections to manage cooling circuits. Stäubli's approach is to address these requirements together, combining electrical and fluid expertise within a single connection strategy. The company's portfolio includes CombiTac CT-HE for blind and rackable power and monitoring interfaces inside battery enclosures, EvoTrak lite for the electrical connection between battery and vehicle, and SPT and RME fluid connectors for thermal management. Alexandre Lagrange, Product Manager for Railway at Stäubli, said: Most importantly, we can integrate both technologies into one product and one interface. This integration philosophy is already reflected in Stäubli's multi-connections for cooling applications (MCC) range, designed for power electronics applications such as converters, transformers and inverters. By combining electrical and cooling circuits into a single docking operation, MCC helps simplify installation while reducing the risk of connection errors. Meanwhile, integrated guidance features support accurate positioning during assembly, while non-spill disconnection and overpressure protection enable repeated maintenance operations throughout the vehicle's service life. Engineered for forty years of service. That focus on long-term performance is essential in the railway industry, where the value of connection technology is measured by its ability to perform over decades. Michel Schmitt, Global Business Head for Railway at Stäubli, said: Train platforms are built for forty to forty-five years with midlife operation at 20-25years. There is no opportunity to change a connector halfway through their operational life. To meet these expectations, Stäubli develops, qualifies and manufactures its products in-house. Supported by railway-related activities certified to IRIS ISO/TS 22163, the industry's quality management standard, Stäubli also relies on a dedicated railway testing laboratory. There, products undergo comprehensive validation under conditions encountered throughout railway service, including shock, vibration, thermal cycling, salt spray and electromagnetic stress. Meanwhile, the company's patented MULTILAM contact technology helps ensure consistent electrical performance over the lifetime of the connection, maintaining low contact resistance over hundreds of mating cycles - particularly valuable in railway applications where connectors are repeatedly disconnected and reconnected during maintenance. Michel Schmitt, Global Business Head for Railway at Stäubli, said: We have forty years of experience in this market. We develop our products, we qualify them, we produce them. We manage the complete value chain. That's what stands behind the reliability we talk about. One partner. All railway connections. For Stäubli, this lifecycle approach goes beyond individual products. It means supporting customers from the initial engineering phase through integration, operation and maintenance. Michel Schmitt, Global Business Head for Railway at Stäubli, said: Whatever connection challenge exists on a train - electrical, fluid, or both - there is one team to talk to, and one supplier accountable for the solution across the full lifecycle. Michel Schmitt, Global Business Head for Railway at Stäubli, said: Combining electrical and fluid systems within a unified approach simplifies installation, facilitates maintenance and reduces operational risk over the lifetime of the train. But beyond a portfolio of products, what we offer is a cross-functional approach to connections - reducing complexity for our customers and ultimately saving both time and cost. As rolling stock becomes more sophisticated, the ability to manage these interfaces effectively will become increasingly important. By combining electrical and fluid connection expertise with decades of railway experience, Stäubli aims to provide customers with a single, reliable partner for the critical connections that keep trains running. Visit Stäubli at InnoTrans. Visitors to Stäubli's stand at InnoTrans 2026 in Berlin (Hall 12 / Booth 350) will be able to explore this integrated approach through demonstrations of the company's latest electrical and fluid connection technologies, including a model train illustrating traction chain and battery applications in their operational context.
Stäubli has expanded its BosCon connector portfolio with permanent protective caps and panel receptacles for utility-scale photovoltaic applications, battery energy storage systems, and EV charging infrastructure. The BosCon panel receptacles support connections to power equipment such as combiner boxes and central inverters. They're rated for up to AC/DC 1,500 V and 620 A, featuring MULTILAM contact technology for low contact resistance. The products include IP68 sealing and are certified according to UL6703 and SCA C22.2 No. 182.5. The permanent protective caps protect unmated connectors and unused panel receptacles from environmental exposure. They feature integrated tag loops for lock out/tag out device applications and enable system modularity for future expansion. The products are part of Stäubli's renewable energy ecosystem, which includes the MC4 connector and BosCon cable harness solutions.
Next event: TECH.CON 2026 - your future in automation. 09.09.2026 Joining forces at Tech.con: Dessl Maschinenbau and Stäubli showcase innovations in Dornbirn. Autumn highlight at the Dornbirn Exhibition Centre: At this year's Tech.con, Dessl Maschinenbau GmbH is joining forces with Stäubli, one of the leading providers of high-precision robotics and connection technology. Dessl Maschinenbau GmbH will be exhibiting together at the trade fair from 23 to 24 September 2026. Tech.con is regarded as the leading platform for production, automation and digitalisation in the four-country region. Its joint exhibition stand will focus on forward-looking solutions and bespoke concepts in the fields of mechatronics, automation and robotics. Visitors to its stand can expect to see the perfect synergy between mechanical engineering and Stäubli's first-class components. Talk directly to its experts and discover, in a one-to-one conversation, how Dessl Maschinenbau GmbH can make your manufacturing processes even more efficient and future-proof. Dessl Maschinenbau GmbH look forward to your visit and to inspiring discussions in Dornbirn! Key informatione: Date: 23-24 September 2026 Opening hours: Wednesday 9.00 am to 5.00 pm | Thursday 9.00 am to 4.00 pm Venue: Messequartier Dornbirn (Hall 11 - Stand No. 3-58) Joint stand: Dessl Maschinenbau GmbH & Stäubli Robotics Admission: Free for you (subject to prior online registration) Get your free trade fair ticket now TECH.CON opening times and tickets
Woosung Metal at OCP Korea Tech Day 2026: the shift toward liquid-cooled AI infrastructure. Woosung Metal reviews the move toward liquid-cooled AI infrastructure and its implications for plant-side cast and machined cooling-water components. September 4, 2026 On 21 August 2026, Woosung Metal Company attended OCP Korea Tech Day 2026 at COEX in Seoul. The event brought together the organisations developing and operating the next generation of computing infrastructure. For Woosung, the central takeaway was not a single rack-level product, but a clear direction of travel: as AI computing density increases, thermal management is becoming a core infrastructure decision. That shift reaches beyond servers and racks into the cooling-water and fluid-handling equipment that supports the wider facility. It also changes the questions asked of industrial manufacturers, because capacity, maintainability and inspection must be considered across the complete operating chain rather than within one item of equipment. AI infrastructure, cooling and power in one programme. Event material described a programme of approximately 1,500 participants, around 60 presentations and roughly 30 exhibition booths. Dedicated tracks for AI Factory & Data Center and Cooling & Power placed the physical requirements of AI infrastructure alongside compute, networking and software. This was important context: accelerated computing cannot be separated from the power, heat-rejection and fluid-distribution systems required to operate it reliably. The programme connected rack density with practical subjects such as cooling architecture, flow interfaces, facility design and scalable deployment. That breadth helped show where specialist products meet conventional industrial equipment, and why those boundaries need clear technical ownership. Across the programme, speakers addressed the move from conventional air cooling towards liquid-based architectures. Topics included single-phase and two-phase direct-to-chip cooling, immersion cooling, coolant selection, high-flow quick-disconnect interfaces and the Open Rack v3 environment. Modular data-centre deployment and the practical requirements of high-density rack installation were also prominent. Together, these subjects showed how thermal design is increasingly being considered at the beginning of a project rather than added after the computing platform has been selected. The programme combined multiple technical tracks, including sessions focused on AI infrastructure, data centres, cooling and power. Liquid cooling is moving into the core design conversation. The technical sessions treated liquid cooling as a system of connected decisions. Heat must be collected at the equipment, transferred through controlled fluid circuits and rejected through plant-side infrastructure. Each transition introduces questions of flow, pressure, sealing, materials, maintenance access and inspection. Standardised interfaces can help equipment from different suppliers work together, while careful engineering remains necessary wherever a cooling loop crosses from rack-level assemblies to larger distribution and facility equipment. The CEJN exhibition display presented liquid-cooling connection equipment for data-centre applications. Exhibition displays from CEJN and Stäubli illustrated the continuing development of quick-connect couplings, hoses and connection assemblies for liquid-cooling circuits. These products sit close to the rack and show the precision required at small fluid interfaces: compact geometry, repeatable connection, controlled leakage risk and compatibility with the selected coolant all matter. The event also highlighted manifold and cold-plate technology, although those items are outside Woosung's stated manufacturing scope. Machined connection components displayed at the CEJN booth illustrated the precision interfaces used within liquid-cooling circuits. Stäubli displayed quick-connect couplings and connection assemblies for liquid-cooling applications. The presence of both direct-to-chip and immersion-cooling discussions was equally significant. The two approaches organise heat removal differently, but both depend on a stable supporting system. Pumping, filtration, valves, pressure control, heat exchange and distribution must be considered as part of a complete operating environment. For owners, designers and equipment builders, this creates a need to coordinate the high-precision components inside the computing system with the heavier fluid-handling equipment serving the facility. A broader ecosystem for modular AI data centres. The event also placed cooling within a wider discussion about how data centres are built. The NeoCube display presented a modular AI data-centre concept, while programme material addressed the shift from conventional construction towards assembly-based deployment. Modularisation can shorten installation sequences and create repeatable infrastructure units, but it also makes interface control more important. Mechanical connections, service boundaries and the relationship between packaged equipment and site utilities need to be defined clearly if capacity is to be added in stages. The NeoCube display presented a modular AI data-centre concept, reflecting the wider move towards packaged and scalable infrastructure. This broader ecosystem perspective matters because no single supplier provides every layer. Rack manufacturers, cooling specialists, connector manufacturers, equipment builders, plant contractors and operators each contribute different elements. The photographs in this article record technologies presented at the event; they do not indicate partnerships, meetings or supply relationships between Woosung and the exhibiting companies. Woosung's interest is in understanding how these infrastructure trends may influence demand for larger cast and machined components on the facility and plant side. Where Woosung fits: plant-side flow-control components. Woosung's relevant manufacturing scope begins where cooling and fluid-handling systems require substantial pressure-containing or structural metal components. Depending on the approved drawing and specification, this can include cast and fully machined components such as pump casings, valve bodies, filter housings and filtration components, large flanges, and related cooling-water components. These are not cold plates, rack manifolds or proprietary quick-disconnect products. They are the heavier components that may form part of pumps, valves, filtration equipment and other plant serving the cooling loop. All casting and machining presented as current Woosung production is carried out in South Korea. Projects can be supported through Woosung's manufacturing facilities from technical and manufacturability review through pattern and tooling development, moulding, casting, heat treatment, machining and preparation for delivery. The route is drawing-led: material grade, wall transitions, machining allowances, pressure-containing geometry and interface requirements are reviewed against the intended component and applicable acceptance requirements. Quality planning is particularly important for components used in controlled fluid systems. Depending on the agreed scope, Woosung can support material verification, non-destructive examination, dimensional inspection and documented quality control. The correct inspection plan depends on the component, material, service conditions and customer specification; attendance at OCP Korea Tech Day does not change those fundamentals. It does, however, reinforce why reliable plant-side manufacturing will remain relevant as AI facilities place greater demands on cooling infrastructure. For data-centre equipment builders, cooling-system integrators and industrial customers evaluating cast or fully machined plant-side components, Woosung welcomes drawing-based enquiries. Send the component drawings, material and inspection requirements, expected annual quantities and project timing so that manufacturability and the appropriate production route can be reviewed. Continue exploring Other applications. Discuss your project. Send Woosung Metal Company your drawings, specifications or equipment requirements for an initial technical review. Whether the requirement is a large cast and machined component, repeat industrial production or tube mill equipment, its team can review the scope and confirm the next steps.
Stäubli targets medical device automation at Galway trade show. August 14, 2026 Stäubli Robotics will showcase automation technologies for medical device manufacturing at Medical Technology Ireland 2026, taking place on September 23-24 at Galway Racecourse. The company will present robotic solutions designed for applications ranging from assembly and machining to inspection, injection molding and material handling, with particular emphasis on systems capable of operating under the hygiene and regulatory requirements of medical manufacturing. Automation is becoming increasingly important as manufacturers contend with higher production volumes alongside tighter traceability and quality requirements, according to Stäubli. "In the medical world, the rising demand for single-use devices like surgical staplers, which require precise assembly and testing, increasingly involves automation and robotics to meet high production volumes and stringent medical device requirements," said Sébastien Lagarde, Global Leader, Life Robotics at Stäubli Robotics. Robots deployed in medical applications can also be required to withstand intensive cleaning and decontamination procedures, making machine design and compatibility with controlled production environments important considerations. Stäubli said it has worked with OEMs and system integrators in medical technology for almost four decades. Its portfolio includes hygienic and cleanroom-ready four- and six-axis robots covering a range of payload capacities, as well as models developed specifically for life science and aseptic applications. The company will also highlight its Access series, which is intended to provide a lower-cost entry point for medical device automation while retaining the performance characteristics of its wider robotics portfolio. Stäubli holds ISO 13485 certification for medical-device quality management systems. The company said its documented processes and quality controls can help manufacturers reduce the validation work required when integrating automation into regulated production environments. For applications requiring flexible material movement, Stäubli also offers mobile robotic systems including platform automated guided vehicles, autonomous forklifts and its Sterimove system, which the company describes as the first mobile robot compatible with Grade A/B environments. Among the applications illustrating Stäubli's medical technology capabilities is a production cell developed jointly by MGA Technologies and Infiplast. The system uses a TS2-60 SCARA robot alongside a TX2-90 six-axis robot for the manufacture of medical filters. The company said greater automation can help medical device manufacturers improve throughput and process consistency while reducing human error and supporting real-time production data collection. Flexible robotic manufacturing is also becoming increasingly relevant as manufacturers move towards more personalized medical products and shorter or more varied production runs. Visitors to Medical Technology Ireland will be able to see Stäubli's medical manufacturing automation technologies during the two-day event in Galway.