FEATURED PRODUCT: LS850 Fully Automated Microscope from Etaluma, Inc. The powerful, new LS850 Microscope is the latest generation of our fully automated three-channel flagship model and offers the latest advances in optics, cameras, throughput, and user flexibility. The LS850 improves the image quality, motion speed, illumination, and software flexibility over the previous LS720 model. Exquisite XY motion control, motorized focus that allows autofocus and z-stacks, and easy-to-configure software combine to facilitate your automated microscopy experiments. The LS850 in your incubator allows you to have a live cell imaging system that offers minimum photo toxicity and the most stable environment for long term imaging. Whether imaging multiple fields in your flasks or 1536 wells of cells with 3 fluorophores in a multi-day time-lapse, the LS850 offers a whole new world of walk-away automated microscopy! #photonics #biophotonics
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Microscope Objectives Lenses: A Closer Look 🔬 Microscope objective lenses are the unsung heroes of high-resolution imagery. Located at the base of the microscope, these crucial components gather and focus light from your specimen, creating a magnified image. ➡️ Apochromatic Objectives: https://buff.ly/4gcNY1a Looking for exceptional clarity in your real-time monitoring applications? Our apochromatic lenses offer infinite optical systems ideal for co-axial vision within the 355nm to 1064nm spectral region. They excel in laser processing, micro-imaging, DIC imaging, bio-imaging, touch panel repair, and solar cell repair. ➡️ IR Objective Lenses: https://buff.ly/4iGT9bu Need to visualize temperature distribution and capture detailed thermal images? Our infrared objective lenses integrate seamlessly with infrared vision systems. They focus objects onto detectors for high-resolution thermal image display, perfect for industrial inspections. These lenses can be customized to your specific needs. Contact us today: https://buff.ly/3VYHZDP #microscopy #YourPartnerInInnovation #Singapore #SingaporeBusiness #Photonics #Optics #SingaporeManufacturing
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Magnetic imaging of thermally switchable antiferromagnetic/ferromagnetic modulated thin films https://lnkd.in/gdWdFD_p
Magnetic imaging of thermally switchable antiferromagnetic/ferromagnetic modulated thin films
sciencedirect.com
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Should you configure your Raman microscope with a front-illuminated CCD or a back-illuminated CCD? Back-illuminated CCDs offer superior sensitivity and faster Raman imaging, making them ideal for most Raman applications. However, for specific experiments involving NIR lasers and low-scattering samples, front-illuminated CCDs may be the better option for avoiding etaloning in your spectra. In this Technical Note, we compare the performance of the two detectors and provide an answer. Read to find out more! https://ow.ly/rZ3R50U4e5L #RamanMicroscope #MyEdinburghInstruments
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If you can’t see it, you can’t diagnose it. If you can’t diagnose it, you can’t treat it. Welcome the new NAEOTOM Alpha class – NAEOTOM Alpha.Prime, NAEOTOM Alpha.Pro, and NAEOTOM Alpha.Peak deliver precise anatomical details with Quantum HD 0.2 mm slice thickness. Quantum Spectral imaging in every scan enables precise functional evaluation. Learn more: https://lnkd.in/g_bipMxt #photoncounting #CT #innovation #technology #inthefutureeveryCTwillbephotoncounting #unstoppable Disclaimer: 510(k) pend
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Researchers demonstrate the use of fluorescence saturation for molecular imaging using a standard #Confocal #Microscopy system with continuous-wave lasers. Their approach relies on the non-linear relationship between increasing excitation intensity and endogenous fluorescence due to saturation. The additional information provided by the saturation parameter can be used similarly to fluorescence lifetime for different sensing applications. Click to view the article: https://bit.ly/3QOgoUI
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If you can’t see it, you can’t diagnose it. If you can’t diagnose it, you can’t treat it. Welcome the new NAEOTOM Alpha class – NAEOTOM Alpha.Prime, NAEOTOM Alpha.Pro, and NAEOTOM Alpha.Peak deliver precise anatomical details with Quantum HD 0.2 mm slice thickness. Quantum Spectral imaging in every scan enables precise functional evaluation. Learn more: https://lnkd.in/exACZ4jH #photoncounting #CT #innovation #technology #inthefutureeveryCTwillbephotoncounting #unstoppable Disclaimer: 510(k) pending
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Check out our latest app note to learn how the #VeroAFM has completely revolutionized contact mode imaging! Vero's unprecedented resolution redefines the possibilities of what you can measure and observe. Learn more 👉 https://okt.to/pETSgI. #AtomicForceMicroscopy #Interferometry
Vero Interferometric AFM | AFM results with higher accuracy, precision and repeatability | Quadrature Phase Differential Interferometer (QPDI) AFM
afm.oxinst.com
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Lenses with dynamic focal length, also called zoom functionality, enable a variety of applications related to imaging and sensing. The traditional approach of stacking refractive lenses to achieve this functionality results in an expensive, heavy optical system. Especially for applications in the mid-infrared, light weight and compact form factor are required. In a recent paper published in Applied Physic Letters, we use a meta-optic triplet to demonstrate zoom imaging at mid-wave infrared wavelengths. By varying the axial distances between the optics, the meta-optic triplet achieves high-quality imaging over a zoom range of 5×, with a 50° full field of view in the widest configuration and an aperture of 8 mm. This triplet system demonstrates the potential for meta-optics to reduce conventional components in complex and multi-functional imaging systems to dramatically thinner and lighter components. The paper can be found at: https://lnkd.in/gfHr3k2W
Meta-optics triplet for zoom imaging at mid-wave infrared
pubs.aip.org
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🚀 Based on the world’s first quantitative CMOS camera, discover the 𝗻𝗲𝘄 𝗢𝗥𝗖𝗔®-𝗤𝘂𝗲𝘀𝘁 𝟮! With its performance perfected, it sets the bar even higher with exceptional performance and versatility. 🔹 Extreme low-noise performance at video rate speeds. 🔹 Enhanced UV quantum efficiency, with improvements up to 50% @300nm compared to its predecessor. 🔹 High-resolution imaging with reduced crosstalk. 🔹 Precise quantification of photoelectrons with photon number resolving output – unique to the ORCA-Quest 2. But that's not all. Compared to EM-CCD cameras, it offers higher data rates and lower latency, ideal for demanding applications requiring rapid data acquisition. Other applications include ion and atom imaging for quantum technologies, super-resolution microscopy, bioluminescence imaging, and more! 🌟 👉 For more information, see the product page: https://lnkd.in/dhksRSaH #ORCAQuest2 #ScientificImaging #NewProduct #qCMOS #PerfomancePerfected
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🚀 Based on the world’s first quantitative CMOS camera, discover the NEW 𝗢𝗥𝗖𝗔®-𝗤𝘂𝗲𝘀𝘁 𝟮! With its performance perfected, it sets the bar even higher with exceptional performance and versatility. 🔹 Extreme low-noise performance at video rate speeds. 🔹 Enhanced UV quantum efficiency, with improvements up to 50% @300nm compared to its predecessor. 🔹 High-resolution imaging with reduced crosstalk. 🔹 Precise quantification of photoelectrons with photon number resolving output – unique to the ORCA-Quest 2. But that's not all. Compared to EM-CCD cameras, it offers higher data rates and lower latency, ideal for demanding applications requiring rapid data acquisition. Other applications include ion and atom imaging for quantum technologies, super-resolution microscopy, bioluminescence imaging, and more! 🌟 👉 For more information, see the product page: https://lnkd.in/dhksRSaH #ORCAQuest2 #ScientificImaging #NewProduct #qCMOS #PerfomancePerfected
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