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Automatically Differentiate Cyanobacteria
FlowCam® Cyano
Yokogawa Fluid Imaging Technologies, Inc.
Based on proven FlowCam® technology, the new FlowCam Cyano automatically identifies cyanobacteria from other algae and particles in aquatic samples. Using a patent-pending combination of excitation wavelength, phycocyanin fluorescence measurement and image recognition software, the system automates what used to be done manually using microscopy. After differentiating the cyanobacteria form the other algae in the sample, VisualSpreadsheet and Advanced Classifier software can be used to further characterize the specific types of all algae found in the sample.
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Chromaline Camera
MC2
Sciences et Techniques Industrielles de la Lumière
Because of this limitation, expensive and complicated Z-scanning systems and/or auto-focusing mechanisms are required to view samples with larger Z-extension and moving samples.Chromaline camera incorporating chromatic confocal microscopy technology is a technology that enables the design of optical systems with a very large depth of field (up to several mm).With Chromaline camera, frequency acquisition is available up to 199,500 lines/second.
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Microscope Software
Only with the right microscope software you can unleash all features of your imaging station. Our modular software platforms are easy to learn and enable you to acquire, process and analyze images in multiple dimensions and over various timepoints. Non-destructive image handling and file formats developed specially for microscopy are just two benefits that guarantee reproducible results for your experiments.
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Image Analysis Micrometers
For calibrating and analyzing microscopy measurement systems, the IAM line of Image Analysis Micrometers are perfectly suited. Calibrated to NIST Standards, and imaged with the best line edge quality in the industry, the IAM series is a diversified line of slides that function in areas of color calibration (IAM-9C), Optical Magnification, Frame Distortion, and other applications. Custom features, substrates, sizes and designs are available as custom solutions.
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Transimpedance Amplifiers
Artifex Engineering GmbH & Co. KG
Applications include photodetection with PMTs and photodiodes, spectroscopy, Scanning Tunneling Microscopy, ionization detectors, pyro and piezoelectric detectors.
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Nanomechanical Test Instruments for Microscopes
Bruker has developed a comprehensive suite of nanomechanical and nanotribological test instruments that operate in conjunction with powerful microscopy techniques. Combining the advantages of advanced microscopy technologies with quantitative in-situ nanomechanical characterization enables an accelerated understanding of material behavior at the nanoscale.
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PXIe-5764, 16-Bit, 1 GS/s, 4-Channel PXI FlexRIO Digitizer
785166-01
The PXIe-5764 is a PXI FlexRIO Digitizer that simultaneously samples four channels at 1 GS/s with 16 bits of resolution and features 400 MHz of analog input bandwidth. With up to 70 dB of SNR, the PXIe-5764 is ideal for applications that require a wide dynamic range with a wideband digitizer. The FlexRIO driver includes support for finite and continuous streaming modes, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA. Available in AC and DC coupled variants, the PXIe-5764 is ideal for both time and frequency domain applications, including radar prototyping, LIDAR, communications, microscopy, OCT, event detection, and particle physics.
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Inverted Metallurgical Microscope
GX53
Designed for use in the steel, automotive, electronics, and other manufacturing industries, the GX53 microscope delivers crisp images that can be difficult to capture using conventional microscopy observation methods. When combined with OLYMPUS Stream image analysis software, the microscope streamlines the inspection process from observation to image analysis and reporting.
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PXIe-5763, 16-Bit, 500 MS/s, 4-Channel PXI FlexRIO Digitizer
785163-01
The PXIe-5763 is a PXI FlexRIO Digitizer that simultaneously samples four channels at 500 MS/s with 16 bits of resolution and features 225 MHz of analog input bandwidth. With over 73 dB of SNR, the PXIe-5763 is ideal for applications that require a wide dynamic range with a wideband digitizer. The FlexRIO driver includes support for finite and continuous streaming modes, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA. Available in AC and DC coupled variants, the PXIe-5763 is ideal for both time and frequency domain applications, including radar prototyping, LIDAR, communications, microscopy, OCT, event detection, and particle physics.
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Tunable, Ultrafast TI: Sapphire Laser
SPRITE XT
Sprite XT is a flexible ultrafast, femtosecond laser source. It delivers stability, reliability and productivity and is equally at home in the lab or as part of an OEM application. Choose your output power (up to multi-Watts), pulse width (femtosecond or picosecond models), wavelength range (fixed wavelength or tunable), and pulse repetition rate (<80 MHz to multi-GHz). All Sprite models are designed for alignment-free and maintenance-free operation and can be controlled from a web browser. It’s ideal for multi-photon excitation (MPE) and FLIM, quantum optics, time resolved spectroscopy, nonlinear optics, pump-probe experiments, microscopy, amplifier seeding, and electro-optic sampling.
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Fluorescence Microscopes
PicoQuant offers different solutions for time-resolved confocal microscopy. The available systems include single molecule sensitive microscopes with picosecond temporal resolution and super-resolution imaging capabilities as well as upgrade kits for laser scanning microscopes of all major manufacturers that enable time-resolved applications.
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Neurosurgery Microscopy Solutions
Leica Microsystems offers a range of surgical microscope solutions to support neurosurgeons in the most complex microsurgery applications. Our cutting-edge neurosurgery microscopes provide optimal and reliable visualization, including built-in fluorescence filters and innovative GLOW 800 augmented reality fluorescence.
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Fluorescence Spectroscopy
HORIBA’s Fluorescence division incorporates technology from SPEX, IBH, Jobin-Yvon, PTI and SLM - the dominant names in Fluorescence Spectroscopy. We offer the widest range of Steady State Fluorescence spectrometers, Fluorescence Lifetime spectrometers, Steady State and Lifetime Multi instruments and Microscope-based Microscopy solutions.
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Atomic Force Microscope
NX-Hivac
Park NX-Hivac allows failure analysis engineers to improve the sensitivity of their measurements through high vacuum Scanning Spreading Resistance Microscopy (SSRM). Because high vacuum scanning offers greater accuracy, better repeatability, and less tip and sample damage than ambient or dry N2 conditions, users can measure a wide range of dope concentration and signal response in failure analysis applications.
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Fluorescence Illuminators
In fluorescence microscopy, fluorescent substances are viewed or imaged with a microscope. These fluorescent substances may be naturally occurring in the sample or may be introduced to assist in the identification of specific features in the sample. Multiple fluorescent substances (fluorophores) with different fluorescent properties can be visualized within the same sample using the capabilities of fluorescence illumination and fluorescence filter combinations.
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Analytical Services
Surface Analysis; X-Ray Photoelectron Spectroscopy (XPS, ESCA), Auger Electron Spectroscopy (AES), Time-of-Flight Secondary Ion Mass Spectrometry (Static) (TOF-SIMS), Dynamic Secondary Ion Mass Spectrometry (D-SIMS). Microscopy & Diffraction; Organic Material Analysis; Bulk Chemistry.
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Xenon Illuminator
Luzchem's Xenon Illuminator was recently developed for use with photovoltaic cells. It is also being used with Luzchem’s transient absorption laser flash photolysis and time-resolved diffuse reflectance systems. Customers can expect the Xenon Illuminator to be useful for a wide range of spectroscopy applications including photovoltaic testing, laser photolysis monitoring, UV exposure, and as a microscopy light source.
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PCIe Mono Industrial Camera
CMOSIS CMV2000
2K camera Applications: In-situ optical inspection camera, fast process capturing, e.g. Golf club swings, Intelligent Transportation Systems (ITS), Open road tolling and Traffic monitoring, Industrial Automation, Machine Vision, Facial Recognition, Motion Capture, Automotive crash testing, OCR/ OCV, 3D scanning, Robotic Arms, Material and Life science Microscopy, Ophthalmology and Retinal imaging, Medical Imaging, Flat panel inspection, Dental, Kiosks, Security, Biometrics
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PXIe-5763, 16-Bit, 500 MS/s, 4-Channel PXI FlexRIO Digitizer
785161-01
The PXIe-5763 is a PXI FlexRIO Digitizer that simultaneously samples four channels at 500 MS/s with 16 bits of resolution and features 225 MHz of analog input bandwidth. With over 73 dB of SNR, the PXIe-5763 is ideal for applications that require a wide dynamic range with a wideband digitizer. The FlexRIO driver includes support for finite and continuous streaming modes, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA. Available in AC and DC coupled variants, the PXIe-5763 is ideal for both time and frequency domain applications, including radar prototyping, LIDAR, communications, microscopy, OCT, event detection, and particle physics.
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Cubes/Holders
IDEX Health & Science stocks filter cubes used in fluorescence microscope platforms from the major microscope manufacturers, including Leica Microsystems, Nikon Instruments, Olympus Corp., and Zeiss Microscopy. Our super-resolution filter cubes set the new standard for laser-based microscopes and are optimized for mounting half-wave flatness, 1 mm thick super-resolution dichroic beam-splitters. Whether you order a custom or catalog filter set, complimentary filter mounting into the filter cube of your choice is performed by the certified staff.
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Cryo-Correlative Microscopy Stage
CMS196
Linkham Scientific Instruments
Electron microscopy (EM) provides structural information at very high resolution. However, it can give only restricted insight into biological and chemical processes due to limitations in staining and sample preparation processes. Fluorescence microscopy on the other hand is a very sensitive method to detect biological, chemical and genetic processes and events inside living cells. Cryo-CLEM brings it all together: it is a new and emerging technique to combine the individual advantages from both Fluorescence and EM by imaging the same sample location with both techniques and superimposing the complementing information.
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Nanoscale Microscopy Standards
The nanoscale AFM-CD standard (CD, critical dimension) contains structures to calibrate line widths and periods of AFM (atomic force microscopy) devices.
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Fluorescence Lifetime Imaging Microscopy (FLIM) Camera
Toggel
Lambert Instruments today announced the introduction of its next-generation fluorescence lifetime imaging camera: Toggel. This new camera makes fluorescence lifetime imaging microscopy (FLIM) and fluorescence resonance energy transfer (FRET) faster and easier with its excellent light sensitivity, sharp images and fast image acquisition. With Toggel, Lambert Instruments aims to minimize measurement duration, automate image acquisition and simplify data analysis. These factors are of great importance to many of its customers in cell biology, cancer research and high-throughput screening.
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Ophthalmic Surgery Microscopy Solutions
Ophthalmic surgery requires a high degree of precision to ensure optimal accuracy when maneuvering instruments and manipulating delicate ocular tissue. The surgical microscope is one the most important instruments in eye surgery, allowing ophthalmic surgeons to visualize micro-anatomical details and perform efficient and extremely precise movements.
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Optical Microscopy
Rocky Mountain Laboratories, Inc.
Optical microscopy from 1X to 1000X is achieved with a variety of microscopes. Images can be formed in bright field, dark field, and differential interference contrast (DIC or ‘Nomarski’) modes. Optical microscopy anlaysis is often used before any other techniques to document samples. Color and morphology are important clues in materials identification.
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Optical Dilatometry Platform
OPP 868
Result of over twenty years of R&D of optical instruments for the study of the thermo-mechanical behavior of materials, ODP 868 makes possible the analysis of samples beyond the limits of classical heating microscopy. Its versatility makes of ODP 868 the most innovative tool for production and R&D laboratories for the optimization of all the industrial processes that involve thermal cycles.
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Optical microscopy (OM)
Materials Analysis Technology Inc.
Optical microscopy is used to display the surface morphology of samples by 2D intensity contrast due to deflection and reflection of visible light shined on areas of interest. Its resolution is about half of the incident wavelength, which is ~0.2 μm for visible light (wavelength of 400-700 nm). Such resolution limits the maximum magnification to X1000, and thus optical microscopy provides preliminary inspection of sample surface structure.
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Experimental Techniques
Most Linkam stages work with all standard microscopy setups, but did you know that Linkam’s temperature and environmental control systems can be used for, and with, a wide range of experimental techniques?
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Ion Beam Milling Systems
When material specimen surfaces are prepared for SEM or incident light microscopy, the specimen usually undergoes multiple processes until the layer or surface to be analyzed is machined with precision. Leica Microsystems’ workflow solutions for solid state technology cover all steps required for demanding high-quality sample preparation.
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Microscopy and Nanotechnology Labs
Integrated Dynamics Engineering
IDE, with the most vibration isolation and EMI cancellation systems in use today, is no stranger to nanotechnology. For over twenty years, IDE has been addressing the special needs of research environments with advanced isolation solutions. IDE’s influence and global reach can be seen in the most cutting edge labs pushing physical boundaries to extremes in advanced materials, surface science, microbiology and more.