1、 Instrument usage
YDF-90The inverted fluorescence microscope consists of an epifluorescence microscopy system and an inverted biological microscopy system, utilizing an advanced infinite optical system. The objective lens adopts a long working distance flat field design and is equipped with a large field eyepiece. The high rigidity body is compact and stable, solving the anti vibration requirements of microscopic operations. The spotlight system uses a rotating pendulum in and out mechanism to observe non contaminated cultured cells in cylindrical flasks or high culture dishes.
YDF-90The inverted fluorescence microscope adopts a modular design concept for the epifluorescence microscopy system, which can safely and conveniently adjust the illumination system and quickly switch the fluorescence filter components. Can be applied to the microscopic analysis and observation of transparent liquid tissues and cellular tissues. The product is widely used in scientific research, university experiments, rubber production, polymer observation, luminescent material research, dyeing observation, and structural analysis.
IISystem Introduction
YDF-90Inverted fluorescence microscope has an image output system. Traditional optical microscopes can be connected to computer computers (digital cameras) through professional industrial cameras, allowing for direct observation on the eyepiece tube and real-time observation on display devices such as computer computers (digital cameras), making it easy to save and print observation images and dynamic videos.
3、 Technical parameters
Instrument configuration | |||||||
model |
YDF-90 |
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eyepiece |
Wide field of view WF10X (Φ 22mm) |
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Infinite long distance flat field achromatic objective lens (cover thickness 1.2mm) |
objective |
PLL 10X0.25 working distance: 4.3 mm |
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PLL 20X0.40 working distance: 8.0 mm | |||||||
PLL 40X0.60 working distance: 3.5 mm | |||||||
phase contrast objective |
PLL 10X0.25 PHP2 working distance: 4.3 mm |
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PLL 20X0.40 PHP2 working distance: 8.0 mm | |||||||
PLL 40X0.60 PHP2 working distance: 3.5 mm | |||||||
Focuser |
Coarse micro focusing coaxial, with locking and limiting devices, micro grid value: 2 μ m |
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eyepiece tube |
Tilt at 45 degrees, with an adjustment range of 53-75mm for pupillary distance |
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converter |
Five holes, internal positioning and bending of ball bearings |
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Epifluorescence Lighting System
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Power box 110V/230V selectable |
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Mercury lamp 100W/DC | |||||||
Fluorescent filter group | |||||||
group |
type |
Excitation plate wavelength |
Transmitting film wavelength |
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UV+V |
Ultraviolet (UV) |
330nm~400nm |
425nm |
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Purple (V) |
395nm~415nm |
455nm |
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Blue+Green (B+G) |
Blue (B) |
420nm~485nm |
515nm |
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Green (G) |
460nm~550nm |
590nm |
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Transmissive lighting system |
Rotary phase contrast spotlight with a working distance of 55mm, |
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6V30W halogen lamp, adjustable brightness | |||||||
Frosted glass, blue and green color filters | |||||||
stage |
Fixed stage size: 227mmX208mm |
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The size of the glass circular loading platform is Ø 118mm | |||||||
Mechanical movement size, movement range: longitudinal 77mm, transverse 114mm, | |||||||
Culture dish tray one |
Inner groove size: 86mm (width) X129.5mm (length), suitable for circular culture dishes with a diameter of 87.5mm |
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Cultivation dish tray 2 |
Inner groove size: 34mm (width) X 77.5mm (length), suitable for circular culture dishes with a diameter of Ø 68.5mm |
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Petri dish tray three |
Inner groove size: 57mm (width) X82mm (length) 57mm (W) X82mm (L) |
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anti-mold |
Unique anti mold system |
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Select accessories |
eyepiece |
10X division wide-angle eyepiece (Φ 22mm), grid value 0.1mm/grid |
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objective |
Infinite flat field achromatic PL 5X/0.12 W.D26.1 |
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software |
Specialized 2D measurement software |
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Computer Type |
1. Fluorescence microscope 2. Adaptor 3. Camera (CMOS) 4. Computer (optional) |
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Digital |
1. Fluorescence microscope 2. Adaptor lens 3. Digital camera (optional) |
4、 Detailed Explanation of Instruments