achromat | Photonics Dictionary - achromat
A darkfield microscope is a type of optical microscope that provides high contrast images of unstained specimens by using scattered light. The specimen appears bright against a dark background
Provides high magnification (up to 1000x or more) and high resolution for viewing fine details of cells, tissues, and microorganisms.
HRmirror
Used in fields like biology, geology, entomology, electronics assembly, and manufacturing for tasks requiring manipulation and examination of objects in three dimensions.
EdmundOpticsC-Mount Lens
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Witness the microscopic world in stunning detail with our high-quality optics. Every slide comes to life with crystal-clear clarity, allowing you to delve into the intricacies of biology, chemistry, and beyond.
Opticsmirrors
Uses two separate optical paths with two objective lenses to provide a stereoscopic (3D) view of larger, opaque specimens.
A Compound Microscope is a type of optical microscope that uses multiple lenses to magnify small objects. It consists of two sets of lenses: the objective lens, which is closer to the specimen and provides the initial magnification, and the eyepiece lens, which further magnifies the image for the viewer's eye. Light passes through the specimen and is magnified by the objective lens, then further magnified by the eyepiece lens, resulting in a highly magnified image visible to the observer. Compound microscopes are commonly used in biology, medicine, and other scientific fields for viewing cells, tissues, and other small structures.
Commonly used in biological research, medical diagnostics, and educational settings for detailed examination of specimens.
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EdmundOpticsLens
A microscope is a scientific instrument used to magnify and observe objects that are too small to be seen with the naked eye. It works by focusing light or electrons to create an enlarged image of the specimen.
A binocular microscope head utilizes two eyepieces for simultaneous viewing with both eyes, providing enhanced comfort, depth perception, and superior image quality. Ideal for professional and research settings requiring detailed observation, its design minimizes eye strain and enhances ergonomic support compared to monocular microscopes.
A light field is called coherent when there is a fixed phase relationship between the electric field values at different locations or at different times.
Magnification works by bending light through lenses or using digital technology to enlarge the appearance of an object, allowing for detailed observation and analysis.
Magnification is the process of enlarging the appearance of an object, making it look bigger than its actual size. In optics, it is the ratio of the size of the image produced by a lens or microscope to the actual size of the object being viewed.
Compound microscopes are suited for detailed examination of microscopic structures, while stereo microscopes are more appropriate for observing larger objects in three dimensions and for tasks that involve manipulation and dissection.
Edmundopticshp series
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Eksmaopticsmirrors
Microscope objectives are vital lenses that determine the magnification, resolution, and quality of the images produced by a microscope. They come in various types and magnifications, each suited for different applications and levels of detail, making them indispensable in scientific research, medical diagnostics, and educational settings.
High Resolution lenses
Diffraction is the process of light bending around an obstacle or spreading out after it moves through a small space. If you study physics, you'll learn ...
Capable of high magnification, which is achieved through the combination of the objective lens (typically 4x, 10x, 40x, and 100x) and the eyepiece (usually 10x).
A specimen is a sample or example used for scientific study. It can be anything from biological tissues to materials, examined under a microscope or other instruments for analysis.
Compound Magnification is calculated by multiplying the magnification of the objective lens by the magnification of the eyepiece.
A stereo microscope, also known as a stereoscopic or dissecting microscope, provides three-dimensional viewing of larger, opaque specimens through dual optical paths with objective lenses. It offers lower magnification (typically 5x to 40x) than compound microscopes but enhances depth perception. Ideal for tasks in biology, geology, and manufacturing, it allows comfortable, extended viewing with ergonomic adjustments.
Edmundopticscr series
A phase contrast microscope is an optical microscope designed to enhance the contrast of transparent and colorless specimens without the need for staining. It works by exploiting differences in the refractive index of different parts of the specimen, transforming these differences into variations in light intensity.
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A monocular microscope head is a basic type of microscope head with a single eyepiece, ideal for cost-effective and straightforward applications. It is particularly useful in educational settings and for beginners, but it can lead to eye strain over long periods and lacks the depth perception provided by more advanced binocular and trinocular heads.
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The terms monocular, binocular, and trinocular refer to the different types of microscope heads, each offering a distinct way of viewing the specimen.
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The trifocal constraint represents the trifocal geometry (nearly) without singularities. It only fails is when the cameras are collinear and the 3-D point is on ...
A trinocular microscope head combines the benefits of binocular viewing with the capability to capture digital images or videos of specimens. It is particularly suited for advanced research, educational purposes, and industrial applications where precise imaging and documentation are essential.
Illuminate your subjects with brilliance. Our microscopes feature advanced lighting technologies, providing the perfect balance for optimal observation, even in low-light conditions.
Navigate effortlessly through magnification levels and focus adjustments. Our microscopes feature intuitive controls, allowing you to concentrate on your research without the hassle of complicated settings.
HR laser line mirrors (HR) provide optimized performance at certain wavelength and certain angle of incidence (AOI). Mirror consists of substrate and multilayer coating stacks which help to achieve very high reflectivity at specific laser line wavelength at any designed angle of incidence. Laser line HR coatings are used for external beam manipulation applications where even slight losses may be intolerable. Coatings are provided by electron beam evaporation with/without ion assistance coating technique.