Whether you're working with optics or data, clarity makes all the difference. In thin film manufacturing, the ability to see what's happening in real time, layer by layer, can be the difference between a good product and a great one. Just like a motocross racer needs to read the terrain and respond instantly, engineers need visibility into their deposition process to stay ahead of potential issues. When processes are clear and controlled, teams can reduce waste, improve reproducibility, and deliver coatings that perform exactly as intended. It's not just about precision. It's about empowering engineers to make confident decisions and helping the world see more clearly. It’s why we created Zevision IMC300. 📽️ Watch our intro video here: https://lnkd.in/dWyRY3YJ #Quality #IntelligentSensorSolutions
How Zevision IMC300 helps in thin film manufacturing
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Engineering the Invisible ✨ True innovation happens where the eye cannot see, in every nanometer of coating and in every micron of alignment. Our production lines integrate ultra-precision polishing, multilayer vacuum coating, and fully automated inspection systems to ensure optical consistency at the highest international standards. From R&D to mass production, each process follows rigorous control and continuous refinement, turning invisible precision into visible excellence. The difference between good and exceptional is measured in microns. ⚙️ #MECO #PrecisionEngineering #Optics #AdvancedManufacturing #SmartFactory #Innovation
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Like Vision Engineering, we invest heavily in advanced inspection systems—optical and digital—to guarantee every part we coat meets our customers’ stringent requirements. In the parylene process, adhesion and uniformity are everything; the polymer wicks deep into substrate surfaces and its protective properties depend on meticulous inspection throughout production . Our team uses incoming inspections, cleanliness testing and film thickness/adhesion checks—often with spectral reflectance—to verify coverage and quality . Final inspections ensure each assembly meets specification before it leaves our facility . This rigorous quality control goes hand‑in‑hand with the unique capabilities of parylene. Applied as a gas, parylene forms an ultra‑thin, pinhole‑free film that conforms to every crevice . The resulting coating is chemically inert and hydrophobic , providing superior protection against moisture, corrosion, salt spray and solvents . With a lower water‑vapour transmission rate than liquid coatings , parylene shields electronics in demanding environments without adding weight or stress. If you’re exploring ways to enhance inspection and improve product reliability, we’d love to demonstrate how ParaTech combines vision systems with parylene coatings to deliver exceptional results. Let’s connect! #QualityAssurance #Inspection #Parylene #ConformalCoating #Electronics #ParaTech
Vision Engineering is on the move this week, showcasing inspection, metrology, and microscopy solutions at three international events. 🇯🇵 Manufacturing World Japan - highlighting how advanced inspection and 3D stereo viewing support productivity and quality. 🇺🇸 SMTA Houston - our experts are ready to discuss electronics inspection and demonstrate eyepieceless and digital systems that improve accuracy and efficiency. 🇩🇪 all about automation Chemnitz - meet our local team at Halle 1-407 to see optical and digital inspection and measurement systems in action. Wherever you are, visit our team, see the technology, and talk to us about your inspection challenges. #Productivity #Inspection #Manufacturing #Metrology #QualityAssurance
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Every great innovation starts with a vision — and the dedication of those who bring it to life. Here’s a glimpse behind the scenes of our engineering team, where precision, creativity, and teamwork come together to build high-performance camera modules for a smarter world. From R&D to real-world applications, we’re committed to delivering reliable, cutting-edge imaging solutions that empower our partners worldwide.
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🔍 Spotting a “Second Growth Front” in ALD Trenches Chipmetrics has identified a previously unseen second growth front forming at the closed end of the trench and advances toward the entrance, meeting the primary front in the middle. This matters because conventional top-down metrology can miss it, risking hidden non-uniformity in HAR structures. With our PillarHall test chips, engineers can now detect both growth fronts, optimize pulse/purge strategies, and gain tighter control in advanced 3D device fabrication. Read more from the link in the comments section 👇 #ALDep #TestedWithPillarHall #PillarHall #Semiconductor #Chipmetrified
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A brief overview of a study we did in collaboration with Simon Elliott related to what kind of ALD growth there can be in high aspect ratio structures.
🔍 Spotting a “Second Growth Front” in ALD Trenches Chipmetrics has identified a previously unseen second growth front forming at the closed end of the trench and advances toward the entrance, meeting the primary front in the middle. This matters because conventional top-down metrology can miss it, risking hidden non-uniformity in HAR structures. With our PillarHall test chips, engineers can now detect both growth fronts, optimize pulse/purge strategies, and gain tighter control in advanced 3D device fabrication. Read more from the link in the comments section 👇 #ALDep #TestedWithPillarHall #PillarHall #Semiconductor #Chipmetrified
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What are the biggest engineering challenges when designing ultra-precise laser processing machines? Machine Design’s Sharon Spielman asked Scott Schmidt this question. The applications engineering group manager at Aerotech, Inc. provided key considerations for machine designers and integrators who implement complex laser scanning and motion control systems. In this case, Aerotech partnered with Light Conversion, a manufacturer of femtosecond lasers, to establish an advanced R&D laboratory in Sunnyvale, Calif. The collaboration integrates Light Conversion’s Carbide 80W femtosecond laser with Aerotech’s custom laser scanning and motion control components. Read the full Q&A below... Jeremy Cohen Keith Larson #MotionControl #laserscanning #Automation #Mechatronics ##IndustrialDesign #Engineering
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What does it take to design ultra-precise laser processing machines? I posed this question to Scott Schmidt, Applications Engineering Group Manager at Aerotech, Inc. His insights highlight critical considerations for machine designers and integrators working with complex #LaserScanning and #MotionControlSystems. In this case, Aerotech partnered with Light Conversion to establish an advanced R&D lab in Sunnyvale, Calif. The collaboration combines Light Conversion’s Carbide 80W femtosecond laser with Aerotech’s custom laser scanning and motion control components—pushing the boundaries of precision and performance. 👉 Read the full Q&A here: https://lnkd.in/eSwTWFUZ
What are the biggest engineering challenges when designing ultra-precise laser processing machines? Machine Design’s Sharon Spielman asked Scott Schmidt this question. The applications engineering group manager at Aerotech, Inc. provided key considerations for machine designers and integrators who implement complex laser scanning and motion control systems. In this case, Aerotech partnered with Light Conversion, a manufacturer of femtosecond lasers, to establish an advanced R&D laboratory in Sunnyvale, Calif. The collaboration integrates Light Conversion’s Carbide 80W femtosecond laser with Aerotech’s custom laser scanning and motion control components. Read the full Q&A below... Jeremy Cohen Keith Larson #MotionControl #laserscanning #Automation #Mechatronics ##IndustrialDesign #Engineering
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Need precise measurement data for your R&D projects, but without investing in your own system? With PolyMeasure, our experts handle your demanding measurement tasks using the latest optical technology and over 50 years of experience. For example, in the development of haptic displays—a fascinating technology shaping the future. These systems create artificial tactile feedback, enhancing driving safety and making vehicle interaction more intuitive. Whether for product development, validation, or quality assurance—PolyMeasure provides accurate, traceable data to support reliable decisions, especially when budgets or time are tight. Learn more about PolyFlex with PolyMeasure https://lnkd.in/g87zKEXV Read the full technical article https://lnkd.in/guUjGHax #measurewhatmatters #hapticdisplays #innovation #opticalmeasurement #vibrationmeasurement #vibrometry #researchanddevelopment #automotive #safety #polytec #PolyMeasure #PolyFlex
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Advancing Micro-Electronics with Precision Laser Solder Ball Welding At VILASER, we are pushing the boundaries of micro-joining technology. Our VIL-LWB-CS2 system is engineered for applications where precision, reliability, and minimal thermal impact are non-negotiable. This video demonstrates the clean, contactless process of laser-driven solder ball jetting, resulting in perfect joints for the most demanding industries, from aerospace to medical devices. Key advantages for your R&D and production: Superior joint quality and consistency Protects heat-sensitive components Enables further miniaturization of electronics Discover how the VIL-LWB-CS2 can transform your manufacturing process. Learn more on our website: en.vilaser.cn #VILASER #PrecisionEngineering #LaserWelding #MicroElectronics #Semiconductor #MedicalDevices #AdvancedManufacturing #Industry40
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Discover how Windrose Technology is leveraging SCANOLOGY’s #wireless3Dscanning system — NimbleTrack — to elevate precision, efficiency, and quality in #smarttruck manufacturing. From tooling verification to body-in-white inspection, NimbleTrack delivers accurate, real-time 3D data that enhances every stage of the process — design, prototyping, and production — setting a new standard for automotive innovation. ⚙️ Wireless. Marker-free. Ultra-precise. It’s how Windrose Auto drives smarter, faster, and with confidence. 🎥 Watch the full customer story to see innovation in motion. #SCANOLOGY #NimbleTrack #3DScanning #Automotive #Metrology #SmartManufacturing #Innovation #QualityControl
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