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Single Frequency CW Diode Pumped Lasers
04-01 Series
*457 nm, 473 nm, 491 nm, 515 nm, 532 nm, 561 nm, 594 nm, 660 nm, 1064 nm,*CW DPSSL with output power up to 400 mW*Perfect TEM00 beam*Ultra-robust, hermetically sealed packages*Low noise, <0.25% rms*True fiber pigtail option, integrated isolator available*Optional integrated modulation up to 3MHz*Perfect for interferometry, Raman, holography, microscopy
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Auto-Correlator
FR-103TPM
The FR-103TPM is a high resolution, easy-to-use Autocorrelator for Two Photon Microscopy. It can be introduced into the beam path without disturbing the optical alignment, with the detector package replacing the sample.
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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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Scanning Electron Microscopy
SEM
Materials Evaluation and Engineering
JEOL JSM-6610 LV LaboratoryScanning electron microscopy (SEM) uses electrons for imaging to obtain higher magnifications and greater depth of field than light microscopes. The instruments at MEE are capable of variable-pressure, or low vacuum, SEM (VPSEM), as well as traditional high-vacuum conditions for sample observation. VPSEM is a specialized method using a variable-pressure sample chamber that allows direct evaluation of samples that are not readily examined with a traditional high-vacuum SEM. Nonconductive or vacuum sensitive samples that would typically require additional sample preparation can be directly analyzed in VPSEM without the need for additional sample preparation, such as carbon or metallic conductive coatings. This reduces both sample preparation time and distractions in microanalysis. Our laboratory also has a field emission SEM (FESEM) for critical high-magnification work and low-voltage (LVSEM) applications. Each instrument has a spacious sample chamber that can accommodate large and irregularly-shaped specimens and accessories for feature dimensional analysis and chemical microanalysis.
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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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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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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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Micro-CT for Life 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 micron level.
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1.4 MP USB 3.0 Microscopy Camera CCD
INFINITY3S-1UR
The Teledyne Lumenera INFINITY3S-1UR is the go-to microscope camera when versatility, ease of use, and price are part of the selection criteria.The INFINITY3S-1UR is an ultra-sensitive, low noise CCD camera that offers the speed and accurate color to meet your brightfield imaging requirements, and helps save money by converting into a solution for your routine fluorescence imaging needs.
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Microscopy Software Suite/IC Diagnostics
Crystal Vision
Crystal Vision Microscopy suites are transforming the world of IC Diagnostics and failure analysis. Intuitive software allows user friendliness and enables the breadth of analytical disciplines available. Realtime imaging from both Topside and Backside, allows for maximum productivity.
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Digital Microscopy Cameras
Micrometrics®
Designed for use in brightfield microscopy applications and defect analysis.
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Nanopositioning Systems
Mad City Labs'' nanopositioning systems move and maintain the position of objects with sub-nanometer precision and high stability. Applications for nanopositioners include super resolution microscopy, high speed confocal imaging, AFM, NSOM, SPM, optical trapping, fiber positioning, single molecule spectroscopy, single molecule/particle tracking, high resolution optical alignment, nanoscopy and lithography.
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X-ray Microscopy
ZEISS Xradia Ultra
Synchrotron X-ray nanotomography enables non-destructive 3D imaging at the nanoscale but you have to apply for very limited beamtime. What if you didn’t have to wait for synchrotron time anymore? Imagine if you had synchrotron capabilities in your own lab. With the ZEISS Xradia Ultra family, you have 3D non-destructive X-ray microscopes (XRM) at hand that deliver nano-scaled resolution with synchrotron-like quality. Choose between two models: both ZEISS Xradia 810 Ultra and ZEISS Xradia 800 Ultra are tailored to gain optimum image quality for your most frequently-used applications.
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Digital Microscopy Cameras
Lumenera®
Designed to be a cost-effective, versatile solution for clinical, life science, materials science and educational professionals.
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Scanning Probe Microscopy/Atomic Force Microscopy (SPM/AFM Analysis)
Rocky Mountain Laboratories, Inc.
Scanning probe microscopy (SPM) refers to a family of measurement techniques that utilize a scanning probe. The most common measurement is Atomic Force Microscopy (AFM Analysis), which measures surface topography. Imaged areas can be from the nm scale to as large as 100 µm X 100 µm. Heights and depths of features can be measuredand many surface roughness parameters, e.g Ra, can be calculated. 3-D images can also be produced for dramatic data presentation. Magnetic and electrical response can also be measured with SPM.
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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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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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Atomic Force Microscope for SEM/FIB
AFSEM® AFM Insert
AFSEM is an atomic force microscope (AFM), designed for integration in a SEM or Dualbeam (SEM/FIB) microscope. Its open access design allows you to simultaneously operate SEM and AFM inside the SEM vacuum chamber. The correlated image data of AFM and SEM enable unique characterization of your sample, and the combination of complementary techniques is a key success factor for gaining new insights into the micro and nano worlds. AFSEM enables you to easily combine two of the most powerful analysis techniques to greatly extend your correlative microscopy and analysis possibilities.
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CMOS USB3 Cameras
CELERA One Series
CELERA One camera series provide the same excellence in quality, flexibility and performances of CELERA cameras, with the only exception of a single USB3 interface, while keeping the original extremely reduced dimensions and rugged design that make CELERA One cameras suitable for most applications: automated optical inspection, high performance sorting systems, industrial metrology, microscopy, medical diagnostics and machine vision.
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Illuminators
ScopeLED F-Series
ScopeLED's F-Series LED based fluorescence microscope illuminator is designed to replace the conventional arc lamp sources for fluorescence microscopy applications.
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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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Illuminators
FRAEN®
Our newest line of FRAEN® illuminators for 1, 2 and 3 color reflected light fluorescence can transform a standard brightfield microscope into a unit capable of fluorescence! FRAEN’s FLUOLED® 1CFW and 3CFW represent a fast, cost-effective and reliable solution for fluorescence microscopy using LEDs as a source for excitation.
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Heating Microscope
Heating microscopy is a non-contact technique that, based upon an advanced image analysis of a specimen subjected to a thermal treatment reproducing industrial firing conditions, identifies several characteristic shapes and related temperatures key to the optimization of manufacturing processes in ceramics, metals, and alloys.
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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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PCIe-5763, 16-Bit, 500 MS/s, 4-Channel PCI FlexRIO Digitizer Device
786166-01
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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8.9 Megapixel Color/Mono USB3 Microscope Camera
INFINITY8-9
Fast, 4K Ultra-High-Definition Display, 9-Megapixel Microscopy Camera.
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PXIe-5764, 16-Bit, 1 GS/s, 4-Channel PXI FlexRIO Digitizer
785167-01
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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2.9 Megapixel Color/Mono USB3 Microscope Camera
INFINITY8-3
Teledyne Lumenera’s INFINITY8-3 microscopy camera is designed to be a versatile solution for life science, clinical, and material science applications.
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X-ray Microscopy
Xradia Family
✔ Characterize the properties and behaviors of your materials non-destructively.✔ Reveal details of microstructures in three dimensions (3D).✔ Develop and confirm models or visualize structural details.✔ Achieve high contrast and submicron resolution imaging even for relatively large samples.