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Single Molecule Microscopy
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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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Nanoscale Microscopy Standards
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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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X-ray Microscopy
ZEISS Xradia Ultra
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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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Microscopy
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Aurora is an award-winning Airy Beam Light Sheet imaging system designed for researchers working in fields such as neuroscience, developmental biology, cancer biology, regenerative medicine and other bioscience disciplines, including Plant Sciences and Marine Biology. Compact, affordable and customisable, Aurora is available as a single and multiphoton light sheet fluorescence microscope for rapid, large 3D volumetric imaging, high resolution, multicolour, time-lapse imaging and live cell imaging. Aurora uses ground-breaking Airy Beam Light Sheet imaging techniques to achieve outstanding results in the field. It is currently in use by many leading organisations delivering results previously not possible.
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Optical Microscopy
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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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3D Optical Microscopy
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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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Cathodoluminescence Solutions for Electron Microscopy
CLUE Series
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HORIBA Scientific's Cathodoluminescence Universal Extension enhances any SEM’s analytical capabilities while maintaining its original functionality. Since the sample is able to remain in the same spot, CLUE can easily be combined with other microscopy applications, such as EDS and EBIC.
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Microscopy and Automation Solutions
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Opto already offers automated multifluorescence microscopes for cell analysis, inverted autofocus microscopes for motion analysis of growth processes, and high- throughput fluorescence microscopes for DNA and RNA sequencing.
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Light Microscopy
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Materials Evaluation and Engineering
MEE has a variety of light microscopes with magnifications ranging from 5X to 2400X. Each microscope is connected to a camera with digital image capture for subsequent measurements and/or additional image analyses.
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Scanning Electron Microscopy
SEM
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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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X-ray Microscopy
Xradia Family
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✔ 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.
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CMOS Dual USB3 Cameras
CELERA
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CELERA CMOS Dual USB3 cameras provides unrivaled speed, extreme flexibility and quick system integration. Its double USB3 interface, ultra-fast acquisition rate, extremely reduced dimensions and rugged design make CELERA cameras suitable far the most demanding applications: automated optical inspection, high performance sorting systems, industrial metrology, microscopy, medical diagnostics and machine vision. CELERA cameras are powered directly by the USB3 bus eliminating the need for external power adapters. USB3 provides the most cost effective and widespread interface, pushing speed performances at the top.
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General Microscopy
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Nano-scale precision motion and stability are cornerstones of research grade microscopes for high resolution imaging. Mad City Labs provides nanopositioning systems, micropositoining systems, and stabilization systems that assist users with developing and adapting instrumentation for their own application requirements. Contact our sales and engineering team to discuss the right products for your application.
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High-Speed AFM
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Is a type of atomic force microscopy (AFM) that, unlike conventional AFM, can take an image very quickly and with relatively low imaging force, therefore allowing for visualizing the dynamic behavior of biomolecules.
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Fluorescence Microscopes
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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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EV Profiler Kit V2
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Harness the power of single-molecule localization microscopy to characterize EVs across scales. Quantify nanometer small, rare, and precious EV samples with super-resolution precision. ONI’s EV Profiler helps you focus on answering the right questions about your EV populations.
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Microscopy Software
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Our modular software platforms enable you to acquire, process and analyze images in multiple dimensions and over various timepoints
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PCIe Mono Industrial Camera
CMOSIS CMV2000
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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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Fluorescence Illuminators
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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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Ion Beam Milling Systems
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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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Optical Dilatometry Platform
OPP 868
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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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Desktop Fluorescence Microscope
Nanoimager
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The complete package for super-resolution microscopy
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AFM (Atomic Force Microscope) Optical Platform
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The AFM platform allows fully-integrated use of confocal Raman microscopy and AFM for Tip-Enhanced Optical Spectroscopies (such as Tip-Enhanced Raman Spectroscopy (TERS) and Tip-Enhanced PhotoLuminescence (TEPL)), but also for truly co-localized AFM-Raman measurements.The myriad of AFM (Atomic Force Microscope) techniques that allow study of topographical, electrical and mechanical properties can be performed with any laser source available in Raman spectrometer, or with other external illumination (e.g., solar simulator or other tunable or continuum source). TERS and TEPL can provide nanoscale chemical and structural information, making the AFM-Raman platform a two-way road; where complimentary techniques provide novel and unique imaging capabilities to each other.
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PCIe-5764, 16-Bit, 1 GS/s, 4-Channel PCI FlexRIO Digitizer Device
785961-01
FlexRio Digitizer
The PCIe-5764 is a PCI FlexRIO Digitizer Device 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 PCIe-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 PCIe-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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PXIe-5764, 16-Bit, 1 GS/s, 4-Channel PXI FlexRIO Digitizer
785171-01
FlexRio Digitizer
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 Microscope Systems
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Below you can see examples types for an inverted microscope system created using our components. Typically these examples are for life science applications, however they can be used for industrial or material applications. Many other automated microscopy systems are possible using our components.
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PCIe-5764, 16-Bit, 1 GS/s, 4-Channel PCI FlexRIO Digitizer Device
785957-01
FlexRio Digitizer
The PCIe-5764 is a PCI FlexRIO Digitizer Device 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 PCIe-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 PCIe-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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Highly Dynamic XY Linear Motor Scanning Stage
L-731
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Physik Instrumente GmbH & Co. KG
The magnetic linear direct drive is designed to provide high velocity and acceleration for inspection and microscopy. With a travel range of 205 mm square and solid velocity to 100 mm/sec, the L-731 is equipped to deliver high accuracy and smooth motion. Precision crossed roller bearings with anti-creep cage assist enable superior guiding accuracy (1.5 m straightness for loads up to 20 kg). An integrated optical reference encoder and limit switch provide further positioning control and accuracy for this compact stage with 5 nm resolution. DC servo motor versions are available on request.
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Nanopositioning Systems
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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.





























