Microscopes
Enlarge view of minute objects.
See Also: Scopes, Microscopy, Fiberscopes, Borescopes, Endoscopes, Oscilloscopes, Stethoscopes, Stroboscopes, Synchroscopes, Telescopes, Vectorscopes, Acoustic Microscopes, Infrared Microscopes, Atomic Force Microscopes
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Filar Micrometer
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*This item is suitable for the microscope using eyepiece lens with a 23.2 mm (diameter) eyepiece sleeve.
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Metallurgical/Metallographic Testing
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A partial view of our Metallurgical examination areas, showing metallurgical microscopes with digital filar micrometers. These instruments, along with our cross-sectioning and polishing equipment, make the Optical Metallography facilities at Pacific Testing among the most extensive in the industry. In addition, these facilites are under the supervision of our Chief Metallurgist, with a Ph.D. in Metallurgy.
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Imaging Systems & Components
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Thorlabs offers a wide selection of laser scanning, widefield imaging, and OCT imaging systems, including multiphoton microscopes, confocal microscopes, electrophysiology rigs, swept-source OCT systems, and spectral-radar OCT systems.
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Scanning Electro-chemical Microscope
920D
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The scanning electrochemical microscope (SECM) was introduced in 19891 as an instrument that could examine chemistry at high resolution near interfaces. By detecting reactions that occur at a small electrode (the tip) as it is scanned in close proximity to a surface, the SECM can be employed to obtain chemical reactivity images of surfaces and quantitative measurements of reaction rates.
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Microscopy Software/Hardware
ZEISS Atlas 5
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Atlas 5 is your powerful hardware and software package that extends the capacity of your ZEISS scanning electron microscopes (SEM) and ZEISS focused ion beam SEMs (FIB-SEM). Use its efficient navigation and correlation of images from any source, e.g. light- and X-ray microscopes. Take full advantage of high throughput and automated large area imaging. Unique workflows help you to gain a deeper understanding of your sample.
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Materials Technology
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The quality of the materials used is crucial for the technical innovation of a component. Our materials experts will support you in analyzing and optimizing materials so that every product can be manufactured in the highest quality. We will also be by your side as a competent partner in complex electron microscopic investigations and advise you in the practical development of modern materials.
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Optical Fiber Cable Testing Equipment
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Optical fiber consists of a core and a cladding layer, selected for total internal reflection due to the difference in the refractive index between the two. In practical fibers, the cladding is usually coated with a layer of acrylate polymer or polyimide. This coating protects the fiber from damage but does not contribute to its optical waveguide properties. Individual coated fibers then have a tough resin buffer layer and/or core tube(s) extruded around them to form the cable core. Several layers of protective sheathing, depending on the application, are added to form the cable. Rigid fiber assemblies sometimes put light-absorbing ("dark") glass between the fibers, to prevent light that leaks out of one fiber from entering another. This reduces cross-talk between the fibers, or reduces flare in fiber bundle imaging applications Optical fibers are very strong, but the strength is drastically reduced by unavoidable microscopic surface flaws inherent in the manufacturing process. The initial fiber strength, as well as its change with time, must be considered relative to the stress imposed on the fiber during handling, cabling, and installation for a given set of environmental conditions. There are three basic scenarios that can lead to strength degradation and failure by inducing flaw growth: dynamic fatigue, static fatigues, and zero-stress aging.
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Portable Video Microscope
Cl-1000
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Video microscope system ideal for installation site. Enables the user to inspect mounted connector endface from the other side of adapter.
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High-Resolution Scanning Probe Microscope (SPM)
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High-Resolution Scanning Probe Microscope (SPM)
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Microscope
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An optical instrument used for viewing very small objects, such as mineral samples or animal or plant cells, typically magnified several hundred times.
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Confocal FLIM System
DCS-120
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*FLIM Upgrade for Existing Conventional Microscope*Two Fully Parallel TCSPC FLIM Channels*Compact bh Simple-Tau or Power-Tau System*Scanning by Fast Galvanometer Mirrors*Channel Seperation by Dichroic or Polarising Beamsplitters*Individually Selectable Pinholes and Filters*One or Two BDL-SMN or BDS-SM ps Diode Lasers*Two Fully Confocal Detection Channels*Two HPM-100-40 GaAsP Hybrid Detectors*Optional: Two HPM-100-06 Hybrid Detectors, IRF Width < 20 ps FWHM*Optional: HPM-100-50 Hybrid Detectors for NIR FLIM*Optional: Multi-Wavelength FLIM*Excellent Time Resolution: Electrical IRF Width 6.5 ps FWHM*Time Channel Width Down to 813 fs*Megapixel FLIM, Up to 2048 x 2048 Pixels at 256 Time Channels*Simultaneous FLIM/PLIM*Wideband Version, Compatible with Tuneable Lasers*Electronic Pinhole Alignment*Z-Stack FLIM Acquisition with Zeiss Axio Observer Z1*Optional: Spatial Mosaic FLIM via Motorized Sample Stage
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LCD Module Repair System
LCD-4400M
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The LCD 4400M is a precision instrument designed to repair large size LCD modules. Featuring light weight, state of the art technology, the LCD4400 focuses a Nd:NAG laser directly through a microscope objective.
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NanoLattice Pitch Standard (NLSM)
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The NanoLattice™ (NLSM) 100 nm pitch standard utilizes gratings with near perfect periodicity to calibrate magnification and scan linearity of CD-SEM and Atomic Force Microscopes (AFM). Make the grade, with the only pitch standard of its kind available below the 130 nm node.
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Compact Hyperspectral Cathodoluminescence
F-CLUE
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The F-CLUE is the optical fiber coupled solution offering a flexible interface for Cathodoluminescence Imaging and Spectroscopy analysis.Thanks to its rugged ultra-compact footprint and deported spectroscopy modules, it can be installed even on very busy microscopes and/or in harsh industrial environments or extreme conditions (clean room, mobile laboratories…).
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Thermal Microscope Stage For Petri Dish
TS-4SMP
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With our TS-4SMP Thermal Stage for Petri Dish, a specimen on a microscope slide or culture dish can be maintained at any temperature between -20°C and +60°C. Setup is easy, takes little time, and the controller will regulate the stage temperature to within +/-0.1°C. The collar on the stage is designed to accommodate a 35mm 'Nunc' petri dish. The collar may also be removed for use with slides.
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Micro Vickers Hardness Tester
900-392
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The 900-392 Micro Vickers Hardness Tester is engineered to produce a clearer indentation and hence a more precise measurement. By means of a 10 × lens and a 40 × lens the 900-392 vickers hardness tester has a wide measurement field and a broad usage range. Equipped with a digital microscope, it shows the measuring methods, the test force, the indentation length, the hardness value, the dwell time of the test force as well as the number of the measurements, all shown on its LCD screen.
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Microscope Cameras
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High-performance USB microscope cameras with the latest SONY global and rolling-shutter sensors and advanced feature sets such as external trigger and readout functions.
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Fiber Microscope
WL-C400S
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The WL-C series fiber microscopes use coaxial illumination to provide users with maximum detail. It easily can detect the finest scratches and contamination, making it ideal for critically inspecting polish quality.
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Microhardness Testing
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Materials Evaluation and Engineering
Microhardness testing (or microindentation hardness testing) is a method for measuring the hardness of a material on a microscopic scale.
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Stereo Microscopes & Macroscopes
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Leica Microsystems offers customized stereo microscopes for research, industry and education. Our macroscopes for industry, medicine and research offer exceptional optics and ultra convenient operation. Stereo microscopes and macroscopes from Leica enable you to view, analyze and document your specimens in two and three dimensions for any application.
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Controller
Tiger
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Applied Scientific Instrumentation
The Tiger controller is an expandable modular card rack based system. Racks are available with either 8 or 16 card slots.The Tiger is designed to control one or more microscope workstations simultaneously from a single USB connection.
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High-Speed Video Camera
Hyper Vision HPV-X2
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Medical science and engineering have made dramatic progress thanks to visualization technology. Examples include the invention of microscopes capable of enlarged observations of phenomena occurring in the microscopic domain, invisible to the human eye, X-ray inspection systems, which enable the observation of images utilizing light at imperceptible wavelengths, and infrared cameras. Our eyes are incapable of capturing phenomena occurring at times shorter than 50 to 100 ms. As a result, high-speed video cameras have become necessary in order to record phenomena occurring at intervals that cannot be seen with the human eye, and then replay them at a slower rate so that they can be visualized. As the standard tool for visualizing ultra high-speed domains, the Hyper Vision high-speed video camera contributes to our understanding of ultra high-speed phenomena in a variety of fields.
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Powerful, Fully Integrated Workstation for Emission Microscopy
PEM-1000
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The PEM-1000 emission microscope incorporates the latest technology in real time, high quantum efficiency, mega-pixel CCD detectors in a back-thinned cooled camera. A portable system, the PEM 1000 can interface with all analytical probe stations, ATE (automated test equipment) and bench top configurations for high speed functional testing.
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Advanced Stand-Alone AFM
SmartSPM
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The SmartSPM Scanning Probe Microscope is the first 100% automated system that offers its cutting-edge technology of ultra-fast, metrological and high-resolution measurements for the most advanced materials research at the nanoscale in all AFM and STM modes. With the SmartSPM zooming in from large up to 100 µm overview scans down to atomic resolution has become a reality. Its design has been specially developed to be capable of being seamlessly integrated with optical spectroscopies (SNOM, Raman, Photoluminescence and TERS/SERS techniques).
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Inverted Metallurgical Microscope
GX53
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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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Microscopic Probes
M12PP
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CAPRES M12PP Microscopic Twelve-Point Probes are specialized versions of the CAPRES Micro Multi-Point Probes. By using a dedicated 12-by-4 multiplexer, a total of 495 different pin-configurations can be obtained, each with different probe pitch. This is utilized in e.g. the CIPTech, where 8 or more combinations are used to obtain a “depth profiling” of the measured structures.
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Atomic Force Microscopy
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Bruker’s industry-leading AFM microscopes provide the highest levels of performance, flexibility and productivity, and incorporate the very latest advances in atomic force microscopy techniques. Applications range from materials science to biology, from semiconductors to data storage devices, from polymers to optics with measurement of nanoscale topography, nano-mechanical, nano-electrical and nanoscale chemical mapping.
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Imaging Station
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Standard upright microscopes were not designed to work with temperature controlled stages. Microscopes are optimized to get the best possible image for a number of different techniques (phase contrast, DIC, polarized etc...) Unfortunately due to the confines of the standard microscope frame, it is not easy to get samples under the objective lens and into the stage.





























