LED Chip versus LED Component We offer optoelectronic semiconductors and distinguish between LED chips (synonym for chip: bare die, die or dice) and LED component. LED chips are pure semiconductors without substrate, encapsulation material and possibly optics. The contacted chip is the actual light-emitting source. If the chip is contacted on a carrier (ceramic, FR4, pre-molded leadframe...) and then encapsulated, so to speak built into a package, then we speak of a LED component. The component is the finished part, which can then be soldered onto a circuit board. Why use bare dies instead of packaged LEDs? Advantages include compactness, miniaturization, custom configurations, and the ability to position optics closer to the chip. Applications: sensors, optical fiber coupling, endoscopy, medical equipment, COB lighting, and miniaturization needs. Feel free to contact us for more information! 😊 #ledbaredice #ledchips #optoelectronicdevices #sensing #medical #miniaturization #lighting #indicators #semiconductors
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LED Chip versus LED Component We offer optoelectronic semiconductors and distinguish between LED chips (synonym for chip: bare die, die or dice) and LED component. LED chips are pure semiconductors without substrate, encapsulation material and possibly optics. The contacted chip is the actual light-emitting source. If the chip is contacted on a carrier (ceramic, FR4, pre-molded leadframe...) and then encapsulated, so to speak built into a package, then we speak of a LED component. The component is the finished part, which can then be soldered onto a circuit board. Why use bare dies instead of packaged LEDs? Advantages include compactness, miniaturization, custom configurations, and the ability to position optics closer to the chip. Applications: sensors, optical fiber coupling, endoscopy, medical equipment, COB lighting, and miniaturization needs. Feel free to contact us for more information! 😊 #ledbaredice #ledchips #optoelectronicdevices #sensing #medical #miniaturization #lighting #indicators #semiconductors
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Marktech's new Series 4 silicon photodiodes offer 3x faster response speed, reduced capacitance, and an isolated version for noise reduction, ideal for high-precision applications. Marktech Optoelectronics, Inc. #Series4photodiodes #siliconphotodiodes #lowcapacitance #highspeedphotodiodes #responsespeed #opticalcommunication #biomedicalimaging #motiondetection #isolatedphotodiodes #noisereduction #signalintegrity #ElectronicsNews #latestelectronicsnews
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Semiconductor devices are fabricated through a series of repetitive process steps, where the structures are built layer by layer. To ensure devices work properly on completion, it is crucial that the different layers are perfectly aligned with each other. Special features called overlay marks are placed on the wafers to verify the alignment of the wafer masks. These marks need to be measured regularly throughout the manufacturing process. Overlay marks can have various layouts, such as box-in-box, bar-in-bar, or cross-in-box structures. During overlay measurements, several factors are monitored, including the shift in the x and y directions between the structures on different layers, the rotational misalignment of the structures relative to each other, and the distortion or deformation of the individual structures. Nikon’s video measuring system NEXIV VMZ-S offers the perfect solution for measuring overlay marks in various sizes, both quickly and accurately, with nanometer repeatability. The fast and flexible edge detection helps to measure all types of overlay marks and accurately determine the overlay across the full wafer. The world-renowned Nikon optics and built-in autofocus guarantee a fast and repeatable measurement on structures down to micrometre size. Find out more about the NEXIV series and how it can help you control your semiconductor process: https://okt.to/5VC39l #Nikon #NikonMetrology #NEXIV #AutoMeasure #VideoMeasuring #Confocal
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Introducing: The Ultimate Ultra-Fast, Low-Noise CMOS Sensor Redefining Advanced Imaging! Engineered and manufactured in the USA and EU for exceptional quality and reliability. Forza Silicon STMicroelectronics UHD 3840 (H) x 2160 (V) 4/3", 5µm, Backside-Illuminated 1200 FPS @ 10-Bit, 1500 FPS @ 8-Bit 78% Peak QE @ 550 nm 68 db Excited to share Forza's latest image sensor, designed for cutting-edge 3D laser scanning, industrial inspection, and biomedical applications. With versatile, configurable modes, it delivers optimized performance, including: · Row/column windowing for ultra-high frame rates · Selectable output ports, balancing throughput with power efficiency · CDS for low-noise or non-CDS for high-speed operations · High dynamic range with programmable pixel gain modes · Adjustable ADC bit depth for superior frame rate control A game-changer in precision imaging. Curious to hear more? Connect with us to explore how we can help drive innovation in your field! #cmos #imaging #3D #machinevision #highspeedimaging
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When flat optics are needed for semiconductor machines, companies turn to Sydor Optics for their quality and experience in manufacturing these substrates. As semiconductor applications become more complex, the importance of high-quality, tight cosmetic requirements, and copy exactly processes increases. Sydor’s precision clean wafers are considered the highest level of quality in the industry. We can precisely control total thickness variation (TTV) and for lower wavelength semiconductor needs, we understand the extreme importance to eliminate cosmetic surface defects such as scratches, digs and sleeks. Sydor semiconductor solutions include: • High-volume glass carrier wafers • Precision deep ultraviolet (DUV) and extreme ultraviolet (EUV) optics • Laser windows Learn more about applications and solutions within the semiconductor industry at: https://lnkd.in/gTVceC-5 #Semiconductor #FlatOptics #Manufacturing #NYPhotonics
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LAST CHANCE: Tomorrow - on April 16th from 2 p.m. (CET) - the webinar 'Cameras' will take place with three presentations from IDS Imaging Development Systems GmbH, Opto Engineering and N.A.T.: Opto Engineering - GigE cameras: New technological developments & their applications In this presentation Opto Engeenering will discuss the main latest developments in Gig-E area scan camera technology, including liquid lens technology integration, IV vs II generation Sony sensors and polarized sensors, including real case application examples. IDS Imaging Development Systems GmbH - Unique requirement, unique camera solutions Tailor-made cameras with individual designs, circuit board electronics or connector configurations are often developed. There are also economical solutions for smaller projects from batch size 1, which can avoid costly development times. IDS will introduce such special cases: From Plug'n Play models with unique hardware components to a flexible camera kit that allows you to configure a wide range of board level variants - with different image sensors, interfaces, extensions and expansion boards. N.A.T. - Real-time-evaluation of multi-high-end-cameras The FPGA-based vision platform NATvision is based on the MicroTCA standard. Users can process imaging data streams from multiple high-resolution high-end cameras in real time on a single platform. Thanks to their scalability, up to twelve FPGA cards per system can be combined in a single system. Free registration for the webinar at... https://lnkd.in/epcw5_5F #machinevision #patternrecognition #imageprocessing #cameras #computervision #inspection #qualityassurance
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🔬CPU Decapsulation with Laser Ablation⚡ 🔍 Laser ablation, a cutting-edge technique, is revolutionizing the way we uncover CPUs for analysis and repair. By focusing intense laser beams to precisely remove material layer by layer, this method offers unmatched accuracy and minimal damage risk compared to traditional mechanical decapsulation. 💬 Can you spot the joke in this clip? 🔦 Laser ablation is a non-contact process that modifies the surface of a workpiece and has applications in various fields such as medicine, manufacturing, and production of nano materials. It has advantages such as low maintenance and operative costs, automated process, and reduced need for manual labor. 🔗Learn more about laser ablation: https://lnkd.in/d5MHMTVc 💳Content Credit: vilalaseroficial #LaserAblation #CPUUnveiling #SemiconductorResearch #Microelectronics #ReverseEngineering #FaultDiagnosis #TechnologyInnovation #EngineeringExcellence #TechInsights #InnovationInTech
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In medical engineering, semiconductors, optics, and various other industries, there is an increasing demand for extremely smooth surfaces with specific properties. This is where the new Mahr White Light Interferometer comes into play, offering: ✅ ICA Technology - An algorithm designed to ensure optimal correlation. ✅ Optimal Signal-to-Noise Ratio - Achieving minimal noise levels of just 80 picometers. ✅ Manual to Automated Options - Three devices catering to a wide range of applications. ✅ Large Positioning Volume - Enabling flexible measurement of bulky or clamped components. Discover how the Mahr White Light Interferometer can enhance your precision measurement capabilities! Interested in finding out more? Just visit our website - https://lnkd.in/eJ5QfzMv 📧 salesuk@mahr.com ☎️ +44 1908 563700 #metrology #measurements #manufacturing #surfacematters #exactly #precision #surfacefinish #precisionengineering #opticalmeasurement
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On April 16th from 2 p.m. (CET) the webinar 'Cameras' will take place with three presentations from IDS Imaging Development Systems GmbH, Opto Engineering and N.A.T.: IDS Imaging Development Systems GmbH - Unique requirement, unique camera solutions Tailor-made cameras with individual designs, circuit board electronics or connector configurations are often developed. There are also economical solutions for smaller projects from batch size 1, which can avoid costly development times. IDS will introduce such special cases: From Plug'n Play models with unique hardware components to a flexible camera kit that allows you to configure a wide range of board level variants - with different image sensors, interfaces, extensions and expansion boards. Opto Engineering- Choosing the perfect camera Choosing the right camera is not easy and requires a thorough understanding of many parameters and is fundamental to achieving the necessary performance and simplifying the software processing. Opto Engineering will explain several characteristics including sensor types, resolution and interface, explaining how the appropiate choice impacts the final image you getin different applications. N.A.T. Europe - Real-time-evaluation of multi-high-end-cameras The FPGA-based vision platform NATvision is based on the MicroTCA standard. Users can process imaging data streams from multiple high-resolution high-end cameras in real time on a single platform. Thanks to their scalability, up to twelve FPGA cards per system can be combined in a single system. Free registration for the webinar at... https://lnkd.in/eRqYykQ #machinevision #patternrecognition #imageprocessing #cameras #computervision
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Low-Cost Blood Pressure and Heart Rate Monitor Reference Design Exciting times in the world of medical electronics! 🌐 Just stumbled upon this innovative low-cost Blood Pressure and Heart Rate Monitor Reference Design. 🩸💓 Kudos to the team leveraging TI's Microcontroller (MCU) for low-noise performance, making it perfect for portable battery-operated devices. 🚀 The integration of precision analog with MSPM0L1306 not only reduces costs but also streamlines external components. 🧰 #MedicalElectronics #Innovation #BloodPressureMonitor What caught my eye is the versatility - designers can seamlessly switch to the INA350 for alternative low-cost architectures and experiment with TI's DRV8210, the smallest motor and pump driver. 🤯 #ElectronicDesign #InnovativeTech #HealthTech With ultra-low-power standby mode, this design promises extended battery life, and the inclusion of a GUI for testing and evaluation adds an extra layer of convenience. 📈💡 #TechInHealthcare #PrecisionAnalog #GUIIntegration Let's celebrate advancements that not only prioritize functionality but also consider the footprint. 🌱 Imagine the impact on healthcare with smaller, efficient devices! 🏥 #HealthcareInnovation #ElectronicHealth #MedicalDevices This Reference Design is a testament to the exciting possibilities in the intersection of technology and healthcare. 🌟 Can't wait to see more breakthroughs that make a real difference! 🚀 #TechInMedicine #BiomedicalEngineering #InnovateForHealth
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