Canon Microscope InterfaceThe microscope interface of Canon digital cameras, such as the microscope interface of the Canon G11 digital camera, was applicable to all the single-lens reflex camera series of Canon digital cameras (such as Canon 450D/1000D/500D/350D/400D, etc.) and civilian camera series (various internal threads of 58mm, 42mm, 28mm, 37mm digital cameras, such as G10, G11, etc.). This interface can be connected to a variety of brands of microscopes, including Olympus microscopes, Nikon microscopes, LEICA microscopes, ZEiss microscopes, and all other brands of polar microscopes, biological microscopes, gold-phase microscopes, and holographic microscopes. It is suitable for most brands of microscopes.
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Xiao Bai Microscope 60The phrase "Xiao Bai Microlens 60" wasn't clear enough. If you want to ask about the 60 micro lens (which may refer to a macro lens with a 60x magnification), here are some possible situations:
From a photographic perspective, a macro lens with a 60x magnification (such as the Old Frog 60 macro lens) could show the details of the microscopic world. When filming, one needed to master some techniques. For example, when shooting macro objects such as snowflakes, pay attention to the camera settings. The aperture is generally set to F11 or smaller to obtain a large enough depth of field. The shutter speed must ensure the stability of hand-held shooting (For objects like snowflakes that are easy to melt, it is difficult to shoot clearly when the shutter speed is less than 1/200s). Since autofocus is difficult for macro shooting, it is recommended to use manual focus or open the camera for live view zooming. For this type of macro lens, some auxiliary equipment may be needed, such as a soft light mask to soften the light, a flash (such as a ring flash to provide uniform illumination), and so on.
If this is not what you want to ask, please clarify the question.
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How funny are microscope cartoons?They can be really hilarious! Microscope cartoons often have creative and unexpected elements that make you laugh.
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2025-03-28 15:06
Nikon fluorescence microscope parametersTake the Nikon E600 Biofluorescence Microscope as an example. Its parameters are as follows:
Total Magnification: 10 - 1000X, Observation: 2 - 500X (for 35mm microphotography); with a CFI60 telephoto optical system with a parfocal distance of 60mm; equipped with a three-eye tube; using a Nikon lens; the condensing lens is achromatic with a numerical aperture of 0.9; there are 12V-100W long-life and 6V-30W halo lamps; the objective lens plate is a six-hole objective lens changer and a six-hole DIC objective lens changer; the stage is a super-hard film coated surface; the eyepieces have a magnifying power of 10; 10 times the objective lens; The origin is Japan; The brand is Nikon; The model number was the E600. No processing; Non-cross-border goods.
In addition, there was also a Nikon upright microscopic imaging system, which was equipped with 4X, 10X, 20X, 40X, 60X, and 100Xoil lenses, a fully automatic electric stage, a Nikon microscopy-specific color digital CCD', an LED fluorescent light source, and Dapi, Green, and Blue fluorescent filter. It also had Nikon's advanced image analysis and processing software, NSI-Elements AR. It is mainly used for slide sample imaging and supports basic applications such as bright-field, phase contrast, DIC, and multi-channel fluorescence photography. It has a module image processing and analysis system that can automatically take multi-channel fluorescence photos. The fully automatic software controls the lens and channel, field of view, and focal length adjustment. It has the function of big picture stitching and can perform stitching and scanning on tissue samples.
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Microscope objective lens parametersThe parameters of the microscope objective lens mainly included the following aspects:
1. ** Magnification **: It can be divided into low-power objectives (such as 2x, 4x/5x, and 10x), medium-power objectives (such as 20x, 40x), and high-power objectives (such as 60x/63x, 100x). Different magnifying lenses used different media. High power lenses (60x and 100x) often used oil to obtain high resolution, while lenses with lower magnifying powers used air as the medium.
2. ** Observation method **: There are many types of microscope objectives. The common observation methods marked on the lens shell are: FF (bright-field), TF (dark-field), PL (phase contrast), Po (polar light), DIC (differential interference), FF (fluorescence observation, such as blue, green, purple, etc.), UVFO (ultraviolet-fluorescence observation), etc.
3. ** Chromatic Deviation correction ability **:
- Achromatic objective lens: It can only correct the color difference of red and blue light.
- Semiapochromatic objective (TL): Able to correct the color difference of red, green, and blue light.
- Apoachromatic objective lens (Apo): It can correct the color difference of red, green and blue light twice, and can correct the spherical aberrations of red and blue light at the same time.
4. ** Flat-field correction function **: Choose an objective lens with flat-field correction function (marked with Plan) for better imaging effect. For example, a flat-field achromatic objective (Ach) could be used to view transparent sections; a semi-apochromatic objective (TL) could be used to view fluorescence, which had a long working distance and could be used to observe glass slips and petri dishes; a full-apochromatic objective (Apo) could be used for better imaging effects. However, Apo objectives did not have a long working distance and were only suitable for viewing glass slips, not for viewing thick samples such as petri dishes or culture bottles.
5. ** Numeric Aperture (NAC value)**: This is the main parameters of the objective lens and the condensing device. It is directly proportional to the resolution of the microscope, directly proportional to the magnifying power, and inverse proportional to the depth of field. UA = n * sin alpha. Under the same amplification, the higher the UA, the better. In the case where the working distance is satisfied, the objective lens with a high UA value should be selected. The numerical aperture of the dry objective lens was 0.05 - 0.95, and the numerical aperture of the oil-immersed objective lens was 1.25.
6. ** Working Distance (WD)**:
- Ordinary working distance objective lens: The working distance is small, and the slices can be observed, but the petri dish cannot be observed.
- [Long working distance objective lens: Used for inverted microscope. It can be used for microscopic examination of tissues, suspension, and other materials.]
7. ** Glass slide thickness **: After the optical type of the objective lens (infinity/0)(210/0), the number behind the slash represents the applicable glass slide thickness. For example,(infinity/0.17)(210/0.17), the applicable glass slide thickness is 0.17 mm. The objective lens with a higher NAC value was more sensitive to the thickness of the cover glass. Some objective lenses with high NAC values and those with long working distances had an adjustment ring for the thickness of the cover glass, which could be used for observation in petri dishes.
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Microscope lens modification photographyThere were many ways to modify a microscope lens for photography. For example, a microscope lens could be modified into a camera lens for shooting, but this modification needed further improvement. There were also people who used the Hikvision camera and microscope lens to modify the electron microscope, but they might encounter some problems during the modification process. For example, the image was unclear, which might be a problem with the camera. When modifying, they had to consider the compatibility of the lens and the equipment. For example, when combining the microscope lens with the Hikvision network camera, they had to solve problems such as sensors, equipment errors, video storage, and so on. It may require the assistance of software such as the computer video recording software, the IVS- 4200.
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