In the world of industrial equipment and automation, reliability, precision, and protection are essential. 🛡️ Machines and systems must operate precisely under often demanding conditions while being protected from shocks, vibrations, or impacts. This is the only way to minimize downtime and significantly extend the service life of components. The Stabilus Group offers innovative solutions that address precisely these challenges – whether through damping, precise motion control, or pneumatic isolation. Our products are designed to sustainably improve the performance of your industrial equipment and make your automation processes more efficient and safer. Sub-Segments: ➡️ Intralogistics ➡️ Mobile engines ➡️ Mechanical engineering and automation You want to know how our solutions optimise mobility in the field of Industrial machinery & automation? Find out more: https://lnkd.in/eDxyehKr #Stabilus #YourMotionOurSolution #MotionControl
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💨 Power of Pneumatic Control in Modern Manufacturing ⚙️ In today’s manufacturing industry, Pneumatic Control Systems play a crucial role in achieving automation, precision, and efficiency. These machines use compressed air to perform operations like clamping, lifting, pressing, and coating — ensuring smooth and reliable production. 🔹 Key Components: Air Compressor – Supplies the compressed air source FRL Unit (Filter, Regulator, Lubricator) – Maintains clean and steady airflow Control Valves – Direct the air to actuators Cylinders/Actuators – Convert air pressure into motion Sensors & Timers – Enable automation and safety functions 🔹 Why Pneumatics Matter: ✅ High speed and accuracy ✅ Low maintenance cost ✅ Safe and clean operation ✅ Easy integration with PLC systems In industries like Glass and Solar Glass Manufacturing, pneumatic systems are essential for coating, handling, and precision movement — proving that even air can power innovation. 💭 Engineering isn’t just about machines — it’s about how simple ideas like compressed air can drive complex automation. #Pneumatics #Automation #Manufacturing #GlassIndustry #Engineering #ProcessControl #IndustrialAutomation
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New hydraulic pump technology enhances industrial machine efficiency, durability, and motion smoothness – delivering quiet operation and high-speed performance. East Aurora, NY – Moog Inc. (NYSE: MOG.A and MOG.B), a worldwide designer, manufacturer and systems integrator of high-performance precision motion and fluid controls and control systems, today announced the launch of its new AXP Axial Piston Pump Series, a next-generation hydraulic solution engineered to deliver optimal performance, reliability, and cost-efficiency for industrial applications. Read more on the Engineering Maintenance Solutions website.
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Hello LinkedIn Family 👋 ⚡ In Progress: Industrial Automation Specialist @ CEMS ⚡ ⚡ Stage 2: Pneumatics & Hydraulics Lab 👉 8 ⚡ ⚡ Co-Exploring: P5 - Automatic Pneumatic Multi-Cylinder Control System ⚡ ✨ Excited to share my learnings! ✨ 💡 Project: Automatic Pneumatic System for Cardboard Transfer Between Conveyors In this project, I worked on designing a real-world industrial application where pneumatic cylinders and sensors work together to automate material transfer on a conveyor system. 🔧 What I Did: ✅ Controlled two double-acting cylinders to move cardboard pieces between two conveyors. ✅ Used four ball sensors to detect position and trigger cylinder actions. ✅ Controlled airflow with two 5/2 solenoid valves and added an OR gate flow control for logic operation. ✅ Started the process with a push button for automated sequence initiation. 📦 Application: The first cylinder moves a single cardboard piece from one conveyor, and once it reaches the next position, the second cylinder transfers it onto the next conveyor — achieving a smooth, automated material transfer process. 🔩 Key Components Used: 1️⃣ 2 Double-Acting Cylinders 2️⃣ 4 Ball Sensors 3️⃣ 2 5/2 Solenoid Valves 4️⃣ Flow Control OR Gate 5️⃣ Push Button (Start) This project helped me understand how sensors, actuators, and logic control combine to create efficient automation solutions in material handling and packaging industries. 🚀 #Pneumatics #ConveyorAutomation #MaterialHandling #SmartManufacturing #HandsOnLearning #AutomationJourney #IndustrialAutomation #CEMS
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✨ Showcasing Our Latest Engineering Masterpiece ✨ U3S Engitech Private Limited, as the Hydraulic Technology Center for Parker Hannifin – Global Leaders in Motion Control Technology, is proud to announce the successful execution of another advanced solution for our Middle East Market. 🚀 Key Highlights of the System: High IQ Control with RVDT/LVDT closed-loop precision Closed Loop Hydraulic Pump for superior motion accuracy Simocode-enabled Soft Starter Panel with integrated bypass DOL Siemens PLC with HMI offering intuitive, feature-rich operational control ⚙️ Application: Engineered for a Reciprocating Conveyor in a Steel Pelletization Unit, this solution demonstrates our capability to deliver cutting-edge motion and control technology for the most demanding industrial environments. At U3S Engitech, we continue to combine global technology leadership of Parker Hannifin with local engineering expertise to power industries with reliability, precision, and innovation. 🌍💡 #U3SEngitech #ParkerHannifin #HydraulicTechnology #MotionControl #MiddleEastExports #pellet #EngineeringInnovation
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Precision in Motion: Intermediate Shaft Sub-Assembly Automation Proud to highlight the power of automation in achieving critical tolerances! This is a High-Precision Press Machine designed for the essential sub-assembly of Intermediate Steering Shafts (or similar components) in the automotive/machinery sector. Engineered by Rasco Industries, this Special Purpose Machine (SPM) ensures quality and repeatability through: ✅ Controlled Pressing: Utilizes advanced Hydraulic/Hydro-Pneumatic power with force and distance monitoring for exact component seating (e.g., bearings, detents). ✅ Quality Assurance: Integrated PLC and HMI controls provide real-time data, error proofing, and digital traceability of every press cycle. ✅ Robust Design: Built on a stable 4-Pillar/C-Frame structure, ready for continuous, heavy-duty production. www.rasco.co.in In modern manufacturing, precision is non-negotiable. This type of automation is key to achieving zero-defect assembly and boosting line efficiency. #Automation #SPM #Manufacturing #PrecisionEngineering #PressMachine #SteeringShafts #Automotive #RascoIndustries #AssemblyAutomation
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✨ Showcasing Our Latest Engineering Masterpiece ✨ U3S Engitech Private Limited, as the Hydraulic Technology Center for Parker Hannifin – Global Leaders in Motion Control Technology, is proud to announce the successful execution of another advanced solution for our Middle East Market. 🚀 Key Highlights of the System: High IQ Control with RVDT/LVDT closed-loop precision Closed Loop Hydraulic Pump for superior motion accuracy Simocode-enabled Soft Starter Panel with integrated bypass DOL Siemens PLC with HMI offering intuitive, feature-rich operational control ⚙️ Application: Engineered for a Reciprocating Conveyor in a Steel Pelletization Unit, this solution demonstrates our capability to deliver cutting-edge motion and control technology for the most demanding industrial environments. At U3S Engitech, we continue to combine global technology leadership of Parker Hannifin with local engineering expertise to power industries with reliability, precision, and innovation. 🌍💡 #U3SEngitech #ParkerHannifin #HydraulicTechnology #MotionControl #pellet #EngineeringInnovation
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Mastering Bearing Installation: Differential Case Sub-Assembly Automation Critical assembly requires unparalleled precision! 🛠️ This is a specialized Bearing Sub-Assembly Press Machine designed for the secure and accurate installation of bearings onto a Differential Case. This component is vital for the final drive assembly in automotive and heavy machinery powertrains. Engineered by Rasco Industries, this automated station ensures quality and operational efficiency by: ✅ Precision Pressing: Applying measured force to seat the differential case bearings (e.g., side bearings) at the required position and preload, minimizing damage risk. ✅ Process Control: Features PLC and HMI integration for real-time monitoring of force-vs-displacement curves, ensuring every bearing is pressed to exact engineering specifications. ✅ High Throughput: Designed as a robust Special Purpose Machine (SPM) to handle the continuous demands of high-volume automotive assembly lines. www.rasco.co.in Accurate bearing assembly is foundational to reducing noise, vibration, and harshness (NVH) and ensuring the long-term reliability of the final axle. #Automation #Manufacturing #Differential #Bearings #PressMachine #SPM #AutomotiveIndustry #RascoIndustries #AssemblyLine
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What Are the Key Features of Rexroth Hydraulic Pumps? Hydraulic systems drive many of the most essential machines in the world today, from construction equipment and factory presses to marine systems and energy plants. The hydraulic pump, which receives mechanical input and converts it to pressurised fluid flow, is a key component in these systems. Among the leading names in hydraulic technology, Bosch Rexroth has built a reputation for manufacturing pumps that combine reliability, efficiency, and precision. This blog describes key features, major benefits of Rexroth hydraulic pumps and where they are commonly used. Well-known for their engineering quality, innovative design and good performance. Some of their features, which they include are discussed below: 1. High Pressure Performance – Many piston pumps can safely run at over 300 bar, well-suited for heavy service. 2. Efficient Design – Extended internal geometry reduced both leakage and energy loss, thus improving operational costs. 3. Options for Variable Displacement - More sophisticated control systems can optimize pumps to only provide the necessary flow to increase energy efficiency. 4. Durability - Made from quality materials and constructed to precise specifications, ensuring use in extreme conditions for an extended period of time. 5. Modularity - There are flexible options in designs that allow the pumps to be fitted to design issues in order to meet specifications for the system. 6. Advanced Controls - Mechanical or electronic controls to be compatible with basic designs or high-tech designs for these types of pumps. check it out - https://lnkd.in/gxDfMtXS #rexrothhydraulicpump #hydraulicpumprepair #rexrothpumpservice #pumpmaintenance #rexrothpumprepair #excellenthydraulicworks #hydraulicpumrepair
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Turning Compressed Air into Smart Automation 💨⚙️ I recently designed this pneumatic schematic diagram, which demonstrates how multiple cylinders can be controlled to operate in a defined sequence without the need for complex electronic programming. 🔧 How it works: The system uses directional control valves (DCVs), limit switches, and actuators. Each cylinder’s end position triggers the next movement through signal feedback. This ensures that Cylinder A must complete its stroke before Cylinder B starts, and so on—creating a safe and reliable sequence of operations. The logic is fully pneumatic, meaning it’s powered by compressed air rather than electricity. 💡 Applications: Such sequential pneumatic systems are widely used in: Automated packaging lines (pushing, clamping, ejecting operations). Material handling systems (sequential lifting and placing). Pressing and assembly machines where precision timing is critical. ✅ Key Benefits: Simple, cost-effective automation. Reliable in environments where electrical systems may be unsuitable. Easy to troubleshoot and maintain. This project is part of my continuous learning in industrial automation and control systems. It’s amazing to see how pneumatics can simplify complex tasks with just air, valves, and some clever logic design. 👉 Where else do you think sequential pneumatics could be applied effectively? Let’s discuss! #Automation #Pneumatics #IndustrialEngineering #ControlSystems #MechanicalEngineering
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🚀 Introducing the 18.600 G Pressure Transmitter – Accuracy Meets Versatility Engineered for precision and reliability, the 18.600 G is designed to deliver exceptional performance in both low- and high-pressure environments. ✅ High Accuracy – 0.5% Full-Scale Output (FSO) as per IEC 60770 standards ✅ Wide Nominal Pressure Range – from 0 … 100 mbar up to 0 … 6 bar ✅ Silicon Sensor Without Media Isolation – ensures accurate readings without compromise ✅ Consistent & Reliable Data – robust performance for continuous operation ✅ Versatile Design – equally effective across a spectrum of industrial systems 🌍 Where it makes an impact: 🔧 Compressed Air Networks – monitor and control air pressure to optimize energy consumption, detect leaks, protect equipment, and enhance safety. ⚙️ General Mechanical Engineering – trusted in hydraulic & pneumatic circuits, industrial presses, braking systems, and a wide array of machinery, ensuring operational efficiency and reliability. 💡 Designed with precision, robustness, and adaptability in mind, the 18.600 G is a trusted solution for modern industrial applications. 👉 Discover the full potential of the 18.600 G Pressure Transmitter here: https://lnkd.in/eVxB7RRi #PressureTransmitter #IndustrialAutomation #EngineeringSolutions #ProcessControl #Pneumatics #MechanicalEngineering #Efficiency
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