Watch just about any science fiction movie from the 1950s, and you’ll see robots doing everything from building spaceships to serving dinner. But it’s been taking a while for this futuristic utopia to become reality. Finally, though, the real world is catching up to the fictional one—at least in #electronicsmanufacturing. Learn how new developments in #robotics technology are remaking the manufacture of everything from cars to #medicaldevices. #BusinessExcellence https://loom.ly/L_Xtlgs Image: Thick, white robotic arms assemble printed circuit boards on an assembly line.
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With #3dprinting it´s never getting boring! 💯 Let´s get to the next level of metal #additvemanufacturing 🚀 Integrating sensors into metal additive manufacturing using a robot ❓ Frauenhofer IGCV & AMCM GmbH just made that possible, opening up countless new applications. 💡 Kind regards, Mark stop warehousing, source on demand with Replique 🩵 First seen: Tuan TRANPHAM #digitalmanufacturing #supplychain #robotics #automation #maschinenbau
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In Robotics we use different types of motors like Dc motors, BLDC motors, servo motors, PMDC motors, stepper motors etc. Here I am showing a stepper motor, a stepper motor is a type of electric motor that rotates in discrete steps, rather than continuously. This allows for precise control and positioning of the motor shaft, without the need for a feedback mechanism. Stepper motors are widely used in applications such as robotics, CNC machines, medical equipment, and automation systems. The performance of a stepper motor depends on factors such as step size, speed, torque, and control method. Some common control methods are single excitation, full-step, half-step, and microstepping. **They are simple, robust, and reliable **They have high torque at low speeds **They can operate in open-loop mode,without sensors or feedback **They can be easily controlled by digital signals #robotics #3dprinting #electronics #arduino #arduinoprojects
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𝐓𝐡𝐞 𝐬𝐦𝐚𝐥𝐥𝐞𝐬𝐭 𝐚𝐧𝐝 𝐛𝐢𝐠𝐠𝐞𝐬𝐭 𝐫𝐨𝐛𝐨𝐭𝐬 𝐰𝐞'𝐯𝐞 𝐢𝐧𝐭𝐞𝐠𝐫𝐚𝐭𝐞𝐝 𝐢𝐧𝐭𝐨 𝐨𝐮𝐫 𝐬𝐨𝐥𝐮𝐭𝐢𝐨𝐧𝐬 🤖 For a project that demanded exceptional precision, we integrated our smallest robot— 𝐔𝐑3 𝐜𝐨𝐥𝐥𝐚𝐛𝐨𝐫𝐚𝐭𝐢𝐯𝐞 𝐫𝐨𝐛𝐨𝐭 by Universal Robots. This 6-axis robot was used to apply thermal paste to printed circuit boards (PCBs) ➡ a task that might seem minor, but is crucial for the performance and longevity of electronic components. Its compact size allowed for easy integration into the production line without requiring extensive modifications. 🤖 Our largest integrated robot, on the other hand, is the 𝐘𝐚𝐬𝐤𝐚𝐰𝐚 𝐆𝐏180 Yaskawa Slovenija. Designed for heavy industrial environments and handling large, heavy components, we mounted it on a 6-meter rail to maximize its operational reach and flexibility. This setup allows the GP180 to perform tasks that require significant movement across a large area. With its impressive payload capacity, speed, and reach, the GP180 has improved operational efficiency and safety by taking on tasks that are hazardous or ergonomically challenging for human workers. 💪🏗️ By working closely with our clients, we gain a deep understanding of their specific challenges and requirements, allowing us to select and integrate the best robotic solutions to achieve optimal results. #blubit #robotics #automation #Engineering #industrialautomation #roboticautomation #tech #customsolutions #industrialrobot
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Watch our Robotic Inkjet Stencil System in action! Our custom end-of-arm tool, powered by a FANUC robot and REA JET inkjet, applies customer logos and product info with precision. Using advanced sensors, the system automatically calculates the height and position for seamless stenciling. Check out this video and just see how we're revolutionizing product marking! Learn more about the automated systems we're creating here: https://lnkd.in/gF22enBM #PRETEC #automatedsolutions #roboticsintegrator #automation #robotics #manufacturing #robot #technology #engineering #programming
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NACHI’s game-changing gripper design shatters speed limits! 🚀 With a groundbreaking independent axis, this gripper accelerates cycles without moving the entire robot arm, unleashing rapid, precise control—as if it’s supercharging torque itself. The result? Blazing efficiency, minimal strain, and productivity like never before. Perfect for high-speed automation that demands nothing less than the best. Advanced Engineering in Robotics #nachi #robotics #mechanical #engineering #automation #3dprinting #manufacturing #innovation #automotive #testing #additivemanufacturing #aerospace #cnc #europe #robots #machining #palletizing #deburring #injection #molding #electronic
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Leveling Up the Line Follower: Version 2.0 🚀🤖 In 2022, I pushed the boundaries of my line-following robot with a groundbreaking upgrade. Version 2.0 featured self-calibration capabilities, 3D-printed parts for enhanced customization, and a brand new, custom-designed PCB tailored specifically for this robot. This project showcased my skills in robotics, electronics, and design, resulting in a faster and more efficient machine. #robotics #linefollower #upgrade #DIY #engineering
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Unlocking precision and creativity with laser cutting.Our advanced laser cutting technology allows for intricate designs and high-quality finishes. Transform your ideas into reality with ThinkRobotics. #LaserCutting #PrecisionEngineering #MakersGonnaMake #FabLab #TechInnovation #CustomDesign #Engineering #SmartManufacturing #TechTrends #CNC #DigitalFabrication #MakersMovement #3DPrinting #Robotics #IndustrialDesign
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🚀 𝗖𝗡𝗖 𝗠𝗮𝗰𝗵𝗶𝗻𝗲 𝗧𝗲𝗻𝗱𝗶𝗻𝗴 𝘀𝗼𝗹𝘂𝘁𝗶𝗼𝗻 𝗶𝗻 𝗮𝗰𝘁𝗶𝗼𝗻 The standardized SCAPE CNC Machine Tending solution is transforming operations at TNDA Gas Equipment. By integrating the SCAPE Pro C-XL 3D Scanner, Vision Controller, Robot, and Software, this solution streamlines the loading and unloading process for CNC machining with unmatched precision and efficiency. 𝗞𝗲𝘆 𝗕𝗲𝗻𝗲𝗳𝗶𝘁𝘀: ✔️ Free proof of concept ✔️ Cost-effective ✔️ Rapid deployment in just 3 months Watch the full video here 👉 https://lnkd.in/drQ2qVhY #CNC #Automation #Efficiency #ScapeTechnologies #Robotics #Engineering #MachineTending
SCAPE CNC Machine Tending solution with FREE proof of concept 🦾
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🚀 Exploring Incremental Rotary Encoders and MAX7219 LED Matrix Displays In my latest video, I demonstrate the functionality of an Incremental Rotary Encoder with 100 pulses, paired with a MAX7219 LED Matrix Display. This setup allows us to visualize the encoder's value in real time when connected to a motor, showcasing the practical applications of rotary encoders. What is a Rotary Encoder? A rotary encoder is a position sensor that converts the angular position or motion of a shaft into an electrical signal. This device is essential in applications requiring precise control and feedback, such as robotics, CNC machinery, and industrial automation. There are two primary types of rotary encoders: incremental and absolute. In this project, I focus on an incremental rotary encoder, which provides information about the direction of rotation and the number of pulses generated as the shaft turns. This enables accurate tracking of position and movement. Applications of Rotary Encoders: Rotary encoders are widely used in various fields: Motor Control: They monitor speed and direction, providing feedback to control systems for precise movement. Robotics: Encoders maintain accurate positioning, allowing for smooth and controlled motion. Industrial Automation: In Camera sliders, conveyor systems, CNC machines, and other automated processes, encoders enhance efficiency and precision. Real-Time Display with MAX7219: In the video, I connect the rotary encoder to a MAX7219 LED Matrix Display, which shows the encoder's real-time value or position. This immediate visual feedback makes it easier to monitor movements and adjustments. The MAX7219 is a versatile LED driver that can control multiple LED matrix with minimal wiring, making it ideal for displaying encoder values clearly and concisely. This project emphasizes the significance of rotary encoders in various applications and demonstrates how easily we can visualize their outputs using modern display technologies. Understanding and utilizing rotary encoders can greatly enhance precision and functionality in robotics, motor control, and automation projects. Thank you for watching! #RotaryEncoder #MAX7219 #LEDDisplay #MotorControl #Robotics #Engineering #Electronics
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Key Features and Specifications 1. Selective Compliance: SCARA robots exhibit compliance in the x,y directions while maintaining rigidity in the z-axis, making them ideal for tasks such as inserting pins into holes or assembling printed circuit boards with precision. 2. 3 Rotational Joints: Equipped with three rotational joints, the SCARA robot is capable of positioning and orienting itself precisely within a planar workspace. 3. High Speed: Boasting a maximum speed of up to 10m/s, the SCARA robot outperforms traditional articulated robots, enabling faster production cycles and higher throughput. 4. Precision Control: With highly accurate motion control, SCARA robots are suitable for tasks requiring uniformity and repeatability, such as electronic component placement on PCBs. 5. Versatility: SCARA robots can be customized to various sizes and configurations, with work radii ranging from 100mm to 1000mm and payload capacities from 1kg to 20kg. This allows them to be tailored to specific applications and production needs. #DeltaRobots #Automation #SecondaryPackaging #HighSpeedRobotics #PickAndPlace #VisionSystems #Grippers #PackagingSolutions #SupplyChainAutomation #SCARArobot
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