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Near-field Scanning Optical Microscope
NSOM
Near-field Scanning Optical Microscope (NSOM) is a versatile tool for nano-characterization and nanomanufacturing.Conventional microscopes have fundamentally limited resolution due to diffraction, but there is no such restriction for near-field interactions, that is why near-field microscopy is becoming one of the most important techniques for nano-science.
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sCMOS Camera
Quantalux
Thorlabs' Quantalux™ Scientific CMOS (sCMOS) Camera offers extremely low read noise and high sensitivity for demanding imaging applications. The compact housing has been engineered to provide passive thermal management for the sensor, reducing dark current without the need for a cooling fan or thermoelectric cooler. These features makes the Quantalux camera ideally suited for low-light imaging applications such as fluorescence microscopy.
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Desktop Fluorescence Microscope
Nanoimager
The complete package for super-resolution microscopy
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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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Infrared, Near Infrared and Raman Spectroscopy
From the very compact FTIR spectrometer to the world’s highest resolution: Bruker offers the industry's largest selection for demanding routine and High End FTIR research application including the new and unique verTera cw THz functionality.Process monitoring with FTIR / FT-NIR process spectrometers.A complete line of Near Infrared Spectrometers to fit all your needs, including Process Monitoring.FTIR Microscopy and Raman Microscopy and Spectral Imaging for high sensitivity at high spatial resolution.High spectral resolution, high performance Raman and FT-Raman spectrometers for advanced routine solutions.
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High-resolution, SWIR megapixel camera
Wildcat+ 1280 Series
The Wildcat+ 1280 series is based upon a state-of-the-art InGaAs photodiode array with 1280×1024 pixels and 5 μm pixel pitch. The camera offers superior, high-resolution SWIR imaging capabilities, comes in a versatile and industry-proven Wildcat camera package (GenICam compliant) and offers advanced on-board image processing.The Wildcat+ 1280 camera outputs full frame images at 120 Hz via either a CameraLink or USB3 Vision interface.The Wildcat+ 1280 is suitable for semiconductor inspection, display inspection (mobile phone and TV), microscopy and laser beam analysis.Benefits & Features• Compact and industry-proven camera design• High-resolution SWIR imaging• Advanced on-board image processing performance• GenlCam compliant• Flexible optical mount and lens options
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Widely Tunable Ultrafast Laser System For Multiphoton Imaging
InSight X3
Spectra-Physics’ new InSight® X3™ is the third generation of Spectra-Physics’ industry leading InSight platform, specifically designed for advanced multiphoton microscopy applications. Based on patented technology1, InSight X3 features a broad 680 nm to 1300 nm continuous, gap free tuning from a single source, nearly double the tuning range of legacy Ti:Sapphire ultrafast lasers. InSight X3 delivers high average and peak power levels across the tuning range, including critical near infrared wavelengths above 900 nm for deepest penetration in-vivo. With Spectra-Physics’ integrated patented DeepSee™, the industry standard dispersion pre-compensator, the short pulses are optimally delivered through a microscope to the sample for maximum fluorescence and penetration depth. InSight X3 also has exceptional beam pointing stability, beam quality and output power stability, as well as fast wavelength tuning, making it ideal for microscopy.
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Electron Microscope Sample Preparation
Excellent sample preparation is the prerequisite for first-class electron microscopy. Be prepared – for great results in EM Sample Preparation! Perfect preparation makes the difference between trying and achieving, between failure and success, between results and excellent results. So be prepared for great results with Leica Microsystems!
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Digital Color Camera for Microscopy
LC30
The LC30 is a 3.1 megapixel digital color camera for microscopy that combines versatility with performance. The LC30 is the ideal entry-level microscope camera for quality bright-field imaging - suitable for material science applications. The Olympus LC30 color camera for microscopy combines versatility with performance. With up to 37 frames per second (fps), faithful color reproduction, full integration into Olympus imaging platforms, and an excellent cost-performance ratio, the LC30 is the ideal entry-level microscope camera for quality bright-field imaging - suitable for material science applications.. The sensitivity and frame rate of the 3.1-megapixel CMOS chip can be increased using various binning modes, resulting in easy observation and focusing. The LC30 camera can be quickly and easily mounted on all microscopes equipped with a standard C-mount adaptor, and requires only a single USB 2.0 cable for high-speed data transfer and power supply. Its complete integration into the OLYMPUS Stream imaging platforms helps ensure the seamless interaction of microscope, camera, and additional devices, delivering intuitive and efficient operation.
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Semiconductor
Aerotech has a long history of engineering and manufacturing motion systems and components for high precision wafer processing, scanning electron microscopy (SEM), wafer bumping, 450 mm wafer manufacturing, lithography equipment and advanced laser micromachining. We also specialize in systems and components for vacuum applications, such as EUV lithography. So whether you need off-the-shelf wafer bumping components or a custom-engineered SEM system manufactured and tested to exacting specifications, Aerotech can provide the optimal solution for your application.
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Microscopes
Bruker's world-leading microscopy systems are helping scientists and engineers to make breakthrough discoveries and develop new applications and products that improve nearly all aspects of our world. Our microscopes enable scientists to explore life and materials at the molecular, cellular and microscopic levels.
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Surface Analysis
Innova-IRIS
This provides researchers a perfect combination of chemical or crystallographic information at high spatial and spectral resolution with the most advanced atomic force microscopy characterization. The Innova-IRIS can be integrated with your choice of a leading Raman system to provide the best opaque sample TERS investigations available today. However you tailor your system, your application will benefit from Bruker exclusive, high-contrast IRIS TERS probes and the best tip preservation and lowest drift, guaranteeing that alignment is preserved even over the optical integration times necessary to interrogate weak Raman scatterers.
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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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Scientific Cameras
Thorlabs' Scientific-Grade Cameras are specifically designed for microscopy and other demanding applications. The Zelux™ CMOS cameras have small footprints and provide cost-effective solutions for general-purpose imaging applications. Kiralux® cameras have CMOS sensors with high quantum efficiency in a compact housing and are offered in monochrome, color, NIR-enhanced, and polarization-sensitive versions. Our polarization-sensitive CMOS camera is ideal for materials inspection, flaw detection, and other advanced techniques using polarization. The Quantalux® monochrome sCMOS cameras are fast frame rate imagers that combine high dynamic range with extremely low read noise for low-light applications. They are available in either a passively cooled compact housing or a hermetically sealed TE-cooled housing. We also offer scientific CCD cameras with a variety of features, including versions optimized for operation at UV, visible, or NIR wavelengths; fast-frame-rate cameras; TE-cooled or non-cooled housings; and versions with the sensor face plate removed. An intuitive software package, API and SDK for developers, and third-party software support provide options for custom system control and image acquisition.
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Single Molecule Microscopy
Nano-scale precision motion and stability are cornerstones of research grade microscopes for single molecule imaging. Mad City Labs has developed modular microscopes that ease integration of optical components and assist users with developing and adapting instrumentation for their own application requirements. Contact our single molecule microscopy application development team to discuss the right products for your application.
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Nanopositioning Stage & Controller
PInano
Physik Instrumente GmbH & Co. KG
PInano® XY and XYZ low-profile piezo scanning stages are optimized for easy integration into high-resolution microscopes. They feature a very low profile of 20 mm (0.8") and a large aperture designed to hold Petri dishes and standard slide holders. The long travel ranges of up to 200 x 200 x 200 µm with nanometer closed-loop resolution are ideal for leading-edge microscopy and imaging applications. PInano® series piezo positioning stages are available in two versions: A) Highest Stability, Linearity and Precision with capacitive feedback sensors. B) High Precision with lower cost piezoresistive sensor feedback. Both types provide very high sensitivity and responsiveness as well as nanometer resolution. A proprietary servo controller significantly improves the motion linearity of the piezoresitive version compared to conventional piezoresistive sensor controllers.
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Sputter Coater & Freeze Fracture Solutions
To obtain high-quality images of samples with scanning (SEM) or transmission electron microscopy (TEM), your samples need to be conductive to avoid charging. If a sample does not have a high enough conductivity, then you can quickly cover it with a conductive layer using the method of sputter coating. Also, a carbon or e-beam evaporator coating can be used. Such coatings protect the sample, allow enhancing of the EM image contrast, or can act as a TEM-grid support film for small scale samples.
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TEM Lamella Preparation And Volume Imaging Under Cryogenic Conditions
ZEISS Correlative Cryo Workflow
ZEISS Correlative Cryo Workflow connects widefield, laser scanning, and focused ion beam scanning electron microscopy in a seamless and easy-to-use procedure. The solution provides hardware and software optimized for the needs of correlative cryogenic workflows, from localization of fluorescent macromolecules to high-contrast volume imaging and on-grid lamella thinning for cryo electron tomography.
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Temperature Controlled Microscope Stage
Linkham Scientific Instruments
Specialists in temperature controlled microscopy, Linkam Scientific Instruments, announce the launch of their Optical DSC450 which enables simultaneous visualization of thermal processes for improved materials characterisation. The Optical DSC450 enables the user to measure glass transitions and melting behaviour of a wide range of substances whilst accurately controlling temperature from -196 °C to 450 °C. The atmosphere of the stage can also be purged with gas as required by the user. A new feature which will increase the characterisation capabilities of the DSC system is to combine it with imaging capability. The new LINK Digital Imaging module enables additional information to be obtained by correlating optical changes such as colour with temperature. The new TASC analysis tool takes this further. TASC (Thermal Analysis by Surface Characterisation) is a new image analysis capability which enables structural changes in samples to be tracked and quantified optically. It has the unique ability to measure local transition temperatures allowing different points on a sample to be identified. The new DSC system is great tool to use in research and quality control to measure quantitative values for glass transitions, melting peaks and sample purity and, when combined with TASC, even sample homogeneity.
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IndiRAM CTR With Quantum Characterizer
The IndiRAM CTR Raman/PL system with Quantum Emitter Microscope is a multi-purpose system capable of performing Quantum Emitter Characterization, Raman, Photoluminescence as well as Optical Emission Spectroscopy. The system consists of a Pulse Laser along with a single photon counting module (SPCM), a Pulse Synchronization unit, Motorized Scanning stage and a research grade microscope (Upright or Inverted) for TCSPC measurements. Along with these, it also contains a High throughput Spectrometer with a TE Cooled CCD and an optics box assembly to perform Raman/PL and OES Spectroscopy and Microscopy. obtained after the multiple set of experiments gives the lifetime function.
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PCIe-5763, 16-Bit, 500 MS/s, 4-Channel PCI FlexRIO Digitizer Device
786168-01
The PCIe-5763 is a PCI FlexRIO Digitizer Device 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 PCIe-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 PCIe-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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Versatile AFM Optical Coupling
TRIOS
The TRIOS platform is an advanced research instrument that provides the entry path for researchers in materials science, biology, spectroscopy and photonics. TRIOS is the most versatile optical coupling platform providing three ports for optical spectroscopy measurements with top-down, side (oblique) and inverted accesses to the AFM tip and sample.If you work with opaque and/or transparent samples, either in air or in liquid looking at nanoscale structures and near-field optical properties investigation, the TRIOS platform is the right solution for you. It perfectly combines upright optical, inverted optical, and atomic force microscopies, and unleash all the power of both techniques providing instrument adjustment and measurement automation, high resolution and integration flexibility. Such performance is only available from HORIBA.
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Atomic Force Microscope (AFM)
CombiScope
The CombiScope Atomic Force Microscope (AFM) is an advanced research instrument that provides the entry path for researchers in biology, spectroscopy and photonics. If you work with transparent samples either in air or in liquid towards nano-scale structures and (near-field) nano-optical properties investigation, the CombiScope is the right solution for you. It perfectly combines inverted optical and atomic force microscopies and unleash all the power of both techniques providing the instrument adjustment and measurement automation, high resolution and high speed. Plus it can be easily upgraded to our Raman spectrometers.
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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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Fourier Transform Infrared Spectroscopy (FTIR)
Rocky Mountain Laboratories, Inc.
FTIR Analysis is used to analyze organic materials. Bulk and small particle materials can be analyzed. FTIR microscopy analysis allows for the identification of particle as small as 10 µm.
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Light Sheet Microscopes
Life science research can place high demands on your imaging capabilities: Sometimes you need to image whole living model organisms, tissues and cells as they develop. Or you may want to observe subcellular dynamics in living samples over hours and even days. Light sheet fluorescence microscopy (LSFM) with its unique illumination principle is ideal for fast and gentle imaging of such specimens.
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Infrared, Near Infrared and Raman Spectroscopy
rom the very compact FTIR spectrometer to the world’s highest resolution: Bruker offers the industry's largest selection for demanding routine and High End FTIR research application including the new and unique verTera cw THz functionality.Process monitoring with FTIR / FT-NIR process spectrometers.A complete line of Near Infrared Spectrometers to fit all your needs, including Process Monitoring.FTIR Microscopy and Raman Microscopy and Spectral Imaging for high sensitivity at high spatial resolution.High spectral resolution, high performance Raman and FT-Raman spectrometers for advanced routine solutions.FTIR Gas Analyzers for the fully automated and high precision real-time monitoring of gas compoundsImaging Remote Sensing systems for analysis of gases, liquids and solids.CryoSAS semiconductor material quality control for photovoltaic and electronics industry.OPUS, the "all-in-one" IR and Raman spectroscopy software consists of a suite of software packages that cover both standard and specialized applications.ONET, software for the setup, administration and control of large FT-NIR spectrometer networks.
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3D Optical Microscopy
Bruker is the worldwide leader in 3D surface measurement and inspection, offering fast, non-contact analyses for samples ranging in size from microscopic MEMS to entire engine blocks. Our microscopes are the culmination of ten generations of proprietary Wyko® Technology advances that provide the high sensitivity and stability necessary for precision 3D surface measurements in applications and environments that are challenging for other metrology systems.
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Scientific Solutions
Our backside illuminated (BSI) and backthinned Charge Coupled Devices (CCDs) and front and back illuminated CMOS image sensors (CIS) are seen as the gold standard for scientific and quantum imaging in applications in spectroscopy, microscopy, in vivo, x-ray and astronomy. We understand that every imaging application is unique and requires our engineers and scientists to work closely with our customers providing highly tailored imaging solutions.
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Micro-CT for material science
Micro computed tomography is X-ray imaging in 3D, by the same method used in hospital CT scans, but on a small scale with massively increased resolution. It really represents 3D microscopy, where very fine scale internal structure of objects is imaged non-destructively. Bruker microtomography is available in a range of easy-to-use desktop instruments, which generate 3D images of your sample’s morphology and internal microstructure with resolution down to the sub-micron level.





























