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Supplier: Cole-Parmer
Description: /video capture and measurement Use these digital USB microscopes for science and engineering work, assembly and quality control, detailed repair, forensics, and more. Six LEDs illuminate your object
turn the LEDs on or off and adjust the brightness using the control wheel on the body. - Microscope Type: Other
- Total Magnification: 200 X
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Supplier: Evident Scientific
Description: The AL120 wafer handler series transfers both silicon and compound semiconductor wafers from the cassette to the microscope stage with enhanced capabilities and flexibility, while maintaining an ergonomic design. Accommodates Multiple Wafer Sizes The ability to accommodate
- Application: Semiconductor Inspection
- Digital Display: Yes
- Eyepiece Style: Binocular
- Grade: Benchtop
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Supplier: WDI Wise Device Inc.
Description: This is the only commercially available microscope guaranteeing transmission of more then 80% for all four YAG laser harmonics: 266, 355, 532, and 1064nm - without compromising the review channel fidelity. The MIC4 microscope is instrumental in laser repair of TFT arrays over the
- Application: Biological / Life Science, Measuring / Toolmaker, Metallurgical, Other
- Computer Interface: Yes
- Digital Display: Yes
- Eyepiece Style: Other
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Supplier: Changchun Yutai Optics Co., Ltd.
Description: of fused silica domes? UV applications: UV laser systems, UV spectrometers, UV microscopes. High temperature environments: high temperature imaging, laser processing, high temperature sensors. Chemical corrosive environments: chemical sensors, corrosive liquid detection. High power
- Lens Application: Ultraviolet
- Materials: UV Grade Fused Silica
- Surface Flatness: ?/4
- Surface Quality: 40-20 Scratch / Dig
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Supplier: RS Components, Ltd.
Description: RS Pro ultraviolet ring light is an excellent optional digital microscopes accessory. RS Pro UV ring light provides a uniform and shadow free illumination. Accessory Type = Ultraviolet Ring Light
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Supplier: PCE Instruments / PCE Americas Inc.
Description: PCE-MM 200UV is a UV USB inspection camera, or UV USB microscope, that magnifies objects up to 200 times. This UV inspection camera uses 8 UV LEDs with a wavelength of 365 nm for illumination. The inspection camera captures photos and videos as well as displays magnified objects in real time
- Application / Industry: Scientific / Research
- Camera Function: Still, Video
- Horizontal Resolution: 1200 lines
- Imaging Technology / Camera Type: Digital, UV
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Supplier: Shanghai Optics
Description: achromatic lens assembly, the achromat is installed along with any other components. Assemblies that incorporate achromats include microscope objectives and telescopes. The specific design of the lens will depend on the type of correction required by the application. In some cases
- Lens Application: Ultraviolet
- Lens Type: Achromats
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Supplier: Navitar, Inc.
Description: the Ultraviolet to the Visible and Infrared Regions Applications: Laser Cutting of Solar Cells Laser Drilling of Metal and Ceramic Sheets (PCB's) Laser Marking of Diverse Materials (Automotive Parts, IC's, Smart Cards) Laser Scribing of Ceramic Substrates Confocal Scanning Beam Laser
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Supplier: Changchun Yutai Optics Co., Ltd.
Description: Fused silica balls are high performance optics for scenarios where ultraviolet, high temperatures, chemical corrosion, high power lasers, low thermal expansion and high transmittance are required. Selection requires a trade-off between performance and cost based on specific needs. What are
- Lens Application: Ultraviolet
- Lens Type: Ball Lens
- Materials: BK7 Glass, UV Grade Fused Silica
- Surface Quality: 40-20 Scratch / Dig
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Supplier: Changchun Yutai Optics Co., Ltd.
Description: What is BK7 Lenses? BK7 lens is a lens made of BK7 optical glass, which is a common borosilicate crown glass. What is the application of BK7 Lenses? The main applications of BK7 lenses include: 1. Optical imaging systems: used in cameras, microscopes, telescopes and other
- Lens Application: Ultraviolet
- Materials: BK7 Glass, UV Grade Fused Silica
- Surface Flatness: ?/4
- Surface Quality: 40-20 Scratch / Dig
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Supplier: Chroma Technology Corp.
Description: , structured illumination or PALM/STORM, we recommend our thicker dichroics mounted into Chroma’s custom metal cubes. Our manufacturing process, coupled with thicker substrates, provides the highest level of surface flatness in the industry for imaging dichroics used in microscope cubes.
- Application: Ultra-Violet (UV)
- Center Wavelength: 355 to 375 nm
- Diameter, Square Side, or Rectangular Length: 25 mm
- Filter Shape: Circular, Rectangular
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Supplier: Chroma Technology Corp.
Description: Microscopes: Filter cube mounting options are available when adding to cart. Listed price applies to sizes up to either 25mm diameter or 26x38mm, in 1mm thickness, to fit standard microscope manufacturer filter cubes.
- Application Specific: Infrared (IR), Visible (VIS), Ultra-Violet (UV)
- Diameter, Square Side, or Rectangular Length: 26 to 50 mm
- Filter Shape: Circular, Rectangular
- Filter Type: Hot Mirrors
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Supplier: Chroma Technology Corp.
Description: Microscopes: Filter cube mounting options are available when adding to cart. Listed price applies to sizes up to either 25mm diameter or 26x38mm, in 1mm thickness, to fit standard microscope manufacturer filter cubes.
- Application Specific: Infrared (IR), Visible (VIS), Ultra-Violet (UV)
- Diameter, Square Side, or Rectangular Length: 25 mm
- Filter Shape: Circular, Rectangular
- Filter Type: Hot Mirrors
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Supplier: Changchun Yutai Optics Co., Ltd.
Description: play an important role in optics, medicine, scientific research, communications and industry due to their high light transmission, high temperature resistance and chemical stability. 1. Optical instruments: microscopes, telescopes, laser systems. 2. Semiconductor manufacturing: high precision
- Lens Application: Ultraviolet
- Materials: UV Grade Fused Silica
- Surface Flatness: ?/4
- Surface Quality: 40-20 Scratch / Dig
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Supplier: Foctek Photonics, Inc.
Description: Applications Biomedical Fluorescence Microscope Laser System Inspection Apparatus Selective Interference Hg Lamp Spectrum Analyzing Spectrum Imaging Optics Systems
- Application: Infrared (IR), Visible (VIS), Ultra-Violet (UV)
- Center Wavelength: 220 to 750 nm
- Diameter, Square Side, or Rectangular Length: 12 to 24 mm
- Filter Bandpass: 10 to 80 nm
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Supplier: CASTECH, Inc.
Description: and high reliability which comes from our sustaining tightly quality control. We set up a complete ISO 9001:2000 certified quality system and invested in advanced metrology instruments including Zygo Interferometers, Perkin-Elmer Lambda 950 spectrometer, Nikon Microscope, Photo-Thermal Common
- Capabilities: Coatings, Grinding and Polishing, High Volume Production
- Location: East Asia / Pacific Only
- Optic Type: Beamsplitters, Crystals, Lenses, Mirrors, Polarizing Optics, Prisms, Waveplates, Windows
- Substrate: Glass, Other
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Supplier: Changchun Sunday Optics Co., Ltd.
Description: . Magnesium fluoride under high energy radiation has only a slight effect on the preferred ultraviolet radiation optical element for space stations.It has been proved that magnesium fluoride material with high laser damage threshold and no color center is more suitable for the optical window
- Mirror Materials: Other Mirror Material
- Surface Quality: 10-5 Scratch / Dig
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Supplier: Ushio America, Inc.
Description: , high luminance, and ultra-stable arc, spectral outputs in the ultraviolet and visible light regions, DC- and AC-operated versions up to 200 watts. USHIO lamps are used in all microscopy units, diagnostic, industrial analytical equipment, including spectrofluorometers, blood analyzers,
- Lamp Power: 100 watts
- Lamp Type: High Intensity Discharge Lamps
- Maximum Overall Length: 3.54 inch
- Mean Lumens: 3000 lm
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Description: ) • Standardized focal lengths and diameters convenient for OEM • Various coating options: uncoated, 350-650 nm/650-1050 nm/1050-1580 nm BBAR, or custom • Applications: lasers, microscopes, projectors. cameras and other imaging instruments Description:
- Diameter / Length: 50.8 mm
- Focal Length: 150 mm
- Materials: UV Grade Fused Silica, Other
- Surface Flatness: λ/2
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Description: ) • Standardized focal lengths and diameters convenient for OEM • Various coating options: uncoated, 350-650 nm/650-1050 nm/1050-1580 nm BBAR, or custom • Applications: lasers, microscopes, projectors. cameras and other imaging instruments Description:
- Diameter / Length: 25.4 mm
- Focal Length: 250 mm
- Materials: UV Grade Fused Silica, Other
- Surface Flatness: λ/2
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Description: ) • Standardized focal lengths and diameters convenient for OEM • Various coating options: uncoated, 350-650 nm/650-1050 nm/1050-1580 nm BBAR, or custom • Applications: lasers, microscopes, projectors. cameras and other imaging instruments Description:
- Diameter / Length: 50.8 mm
- Focal Length: 300 mm
- Materials: UV Grade Fused Silica, Other
- Surface Flatness: λ/2
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Description: ) • Standardized focal lengths and diameters convenient for OEM • Various coating options: uncoated, 350-650 nm/650-1050 nm/1050-1580 nm BBAR, or custom • Applications: lasers, microscopes, projectors. cameras and other imaging instruments Description:
- Diameter / Length: 12.7 mm
- Focal Length: 40 mm
- Materials: UV Grade Fused Silica, Other
- Surface Flatness: λ/4
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Supplier: ASTM International
Description: mostly for the visible range of wavelengths (approximately 400 to 780 µm); however, some methods can be extended to the ultraviolet and near infrared, using radiation detectors other than the human eye. 1.1.1 List of test methods included in this guide: 1.1.1.1 Becke line (method of
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Supplier: ASTM International
Description: mostly for the visible range of wavelengths (approximately 400 to 780m); however, some methods can be extended to the ultraviolet and near infrared, using radiation detectors other than the human eye. 1.1.1 List of test methods included in this guide: Becke line (method of central
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Supplier: ASTM International
Description: mostly for the visible range of wavelengths (approximately 400?µm to 780?µm); however, some methods can be extended to the ultraviolet and near infrared, using radiation detectors other than the human eye. 1.1.1 List of test methods included in this guide: 1.1.1.1 Becke line
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Supplier: ASTM International
Description: mostly for the visible range of wavelengths (approximately 400 to 780µm); however, some methods can be extended to the ultraviolet and near infrared, using radiation detectors other than the human eye. 1.1.1 List of test methods included in this guide: 1.1.1.1 Becke line (method of
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Apochromatic Lenses are the most sophisticated microscope objective lenses available and include the most aberration corrections. Their high resolving power means they are a good choice for research applications in which color photomicrography is required, and can be designed with a higher (read more)
Browse Microscope Lenses and Objectives Datasheets for Avantier Inc. -
characteristics of these two materials. Fused Silica (SiO2): Abbe number: High (about 67.8), a low dispersion material. Refractive index: moderate (about 1.46 in the visible range). Transparent range: good from ultraviolet to near infrared. Calcium Fluoride (CaF2 (read more)
Browse Optical Lenses Datasheets for Changchun Yutai Optics Co., Ltd. -
applications spanning ultraviolet (UV), visible, and infrared (IR) spectra, catering to diverse optical environments and light sources. Customizable Coating Options: Tailored coatings can be applied to enhance performance, including anti-reflective coatings to minimize surface (read more)
Browse Optical Lenses Datasheets for Suzhou Jiujon Optics Co., Ltd
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Microstructural Analysis of Optical Materials (.pdf)
at ultraviolet wavelengths. It also exhibits piezoelectric and pyroelectric behavior. ZnO has been produced in a wide variety of forms tailored for specific optoelectronic applications. A new form produced by a vapor growth process has been characterized using electron backscatter diffraction (EBSD
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Drug Makers Fight Back!
readers such as ultraviolet light or a microscope, can be integrated into packaging substrates, adhesives inks and print, he adds. Today, says PSL Director Culbertson, bar coding is a very effective method. There are ways to add more dimensions to allow it to carry more information, he explains
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Confocal Microscopy and Multiphoton Excitation Microscopy: The Genesis of Live Cell Imaging
Perhaps a precursor of the fluorescence microscope was the ultraviolet micro- scope developed at the Carl Zeiss factory by August Köhler at Jena, Germany.
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DEVELOPMENT OF THE VIBRATING‐MIRROR FLYING SPOT MICROSCOPE FOR ULTRAVIOLET SPECTROPHOTOMETRY *
Ultraviolet microscope objectives of almost any type may be employed in this microscope system.
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Resolution enhancement techniques in microscopy
That demonstration stimulated the de- velopment of an ultraviolet microscope .
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OSA | Extreme ultraviolet laser-based table-top aerial image metrology of lithographic masks
M. Osugi, K. Tanaka, N. Sakaya, K. Hamamoto, T. Watanabe, and H. Kinoshita, âResolution Enhancement of Extreme Ultraviolet Microscope Using an Extreme Ultraviolet Beam Splitter,â Jpn. J. Appl. Phys. 47(6), 4872â4877 (2008).
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OSA | Thickness effects on the optical transmission characteristics of small hole arrays on thin gold films
J. R. Maldonado, S. T. Coyle, J. K. Varner, R. C. Moore, P. R. H. Stark, and D. N. Larson, "Preliminary evaluation of surface plasmon enhanced light transmission with a scanning 257 nm ultraviolet microscope ," J. Vac.
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Scanning optical microscope on base CRT with a ultraviolet luminescence of the screen
Thus maximum achievable increase in a scanning optical ultraviolet microscope can be commensurable with initial value of increases in raster electronic microscopes (10000Х – 20000Х ).
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Scanning Microscopy in Medicine and Biology
14 E. H. Land, E. R. Blout, D. S. Grey, M. S. Flower, H. Husek, R. C. Jones, C. H. Matz, and D. P. Merrill, "Color translating ultra- violet microscope ," Science, vol.
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C ytological S tudies on L ymphogonia *
… phagocytosis and movement at 37°C; and to observe the cytoplasmic characters and nuclear minute structures, espesially nucleoli, Mann's methylblue eosin,* methyl green- pyronin,** Feulgen-light green" and toluidine blue staining with ribonuclease ; a phase contrast microscope*** and a ultraviolet microscope were used.
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Development of coherent EUV scatterometry microscope with high-order harmonic for EUV mask inspection
[9] Kamaji, Y., Takase, K., Yoshizumi, T., Sugiyama, T., Uno, T., Watanabe, T. and Kinoshita, H., "Study of Critical Dimensions of Printable Phase Defects Using an Extreme Ultraviolet Microscope ," Jpn. J. Appl. Phys. 48, 06FA07 1-4 (2009).
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