Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand

SKU:
SA02161103
Condition:
New
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
  • Top Halogen Light + Bottom Fluorescent Illumination Base Attachments for Microscope Stand
$357.98
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Quick Overview
Matte Finish Glass Plate. Plate Size: Dia. 95x5mm. HF Dual Illuminated Base. Double Sides Plane/Concave Mirror. Aperture Diaphragm Outer Diameter: Dia. 91mm. 15W. 9W. DC 12V. Double U Shape. Umbrella Shape. Light Bulb Pin Standard: G4 (4mm). Power Cord Connector Type: DC Plug. Length: 0.4m. Fusing Current: 1A/220V. For ST0201, ST0501, ST1901, ST0801, ST0802 Series Post Stand. ST0203, ST0204 ST0403 Series Track Sta. For SA02161103 Illumination Base. For SA02161102, ML05321131, ML05321132 Illumination Base. For SA0216 Series Illumination Base. For ST0201 and ST0203 Series Microscope Stand.


SA02161103 HF Illumination Base
Microscope Plate
95x5mm Matte Glass Plate
Plate TypeMatte Finish Glass Plate
Plate Size Dia. 95x5mm
MaterialMatte Finish Float Glass
Applied FieldFor ST0201, ST0501, ST1901, ST0801, ST0802 Series Post Stand. ST0203, ST0204 ST0403 Series Track Stand
Illumination Base
Plate TypeMatte Finish Glass Plate
Plate MaterialClear Float Glass
Plate Size Dia. 95x5mm
Illumination Base TypeHF Dual Illuminated Base
Illumination Base Dimensions330x290x45mm (12.992x11.417x1.772 in. )
Mirror TypeDouble Sides Plane/Concave Mirror
Mirror Rotatable Range360°
Mirror Diameter Dia. 50mm
Bulb Rated Power15W
Bulb Rated VoltageDC 12V
Bulb ShapeUmbrella Shape
Light Bulb Pin StandardG4 (4mm)
Surface TreatmentElectroplating Black
MaterialMetal
ColorBlack
Net Weight2.10kg (4.63lbs)
Applied FieldFor ST0201 and ST0203 Series Microscope Stand
Iris Diagram
Aperture DiaphragmFixed Aperture Diaphragm
Aperture Diaphragm Mounting PositionVertical Illuminator
Aperture Diaphragm Outer Diameter Dia. 91mm
Fluorescence Bulb
Bulb Rated Power9W
Bulb ShapeDouble U Shape
Halogen Bulb
12V 15W Halogen Bulb
Bulb Rated Power15W
Bulb Rated VoltageDC 12V
Bulb ShapeUmbrella Shape
Bulb Mounting ModeBi-Pin
Light Bulb Pin StandardG4 (4mm)
MaterialGlass
Applied FieldFor SA02161102, ML05321131, ML05321132 Illumination Base
Power Supply
Power Cable
Power Cord Connector TypeDC Plug
Length0.4m
MaterialPlastic
ColorBlack
Fuse
1A Fuse
Fusing Current1A/220V
Fuse TypeGlass Tube Fuse (Fast Acting)
Fuse Size5x20
Fuse StandardGB
MaterialGlass
ColorSilver
Net Weight0.002kg (0.004lbs)

 


Technical Info

Instructions
IlluminatorClose Λ
The conditions of different illumination of the microscope are a very important parameter. Choosing the correct illumination method can improve the resolution and contrast of the image, which is very important for observing the imaging of different objects.

The wavelength of the light source is the most important factor affecting the resolution of the microscope. The wavelength of the light source must be smaller than the distance between the two points to be observed in order to be distinguished by the human eye. The resolution of the microscope is inversely proportional to the wavelength of the light source. Within the range of the visible light, the violet wavelength is the shortest, providing also the highest resolution. The wavelength of visible light is between 380~780nm, the maximum multiple of optical magnification is 1000-2000X, and the limit resolution of optical microscope is about 200nms. In order to be able to observe a much smaller object and increase the resolution of the microscope, it is necessary to use light having a much shorter wavelength as the light source.
The most commonly used technical parameters for describing illumination are luminescence intensity and color temperature. Luminescence intensity, with lumen as unit, is the physical unit of luminous flux. The more lumens, the stronger the illumination. Color temperature, with K (Kelvin) as unit, is a unit of measure indicating the color component of the light. The color temperature of red is the lowest, then orange, yellow, white, and blue, all gradually increased, with the color temperature of blue being the highest. The light color of the incandescent lamp is warm white, its color temperature is 2700K, the color temperature of the halogen lamp is about 3000K, and the color temperature of the daylight fluorescent lamp is 6000K.


A complex and complete lighting system can include a light source, a lampshade or lamp compartment, a condenser lens, a diaphragm, a variety of wavelength filters, a heat sink cooling system, a power supply, and a dimming device etc. Select and use different parts as needed. Of which, selection and use of the illuminating light source is the most important part of the microscope illumination system, as and other components are designed around the illuminating wavelength curve and characteristics of the illuminating light source.

Some of the microscope light sources are pre-installed on the body or frame of the microscope, and some are independent. There are many types and shapes of light sources. Depending on the requirements of the microscope and the object to be observed, one type or multiple types of illumination at the same time can be selected. In addition, the whole beam and band adjustment of the light source, the position and illumination angle of the light source, and the intensity and brightness of the light all have a great influence on the imaging.
For microscope imaging, a good lighting system may be a system that allows for more freedom of adjustment. In actual work, such as industry, too many adjustment mechanisms may affect the efficiency of use, therefore choose the appropriated configured lighting conditions is very important.
Microscope PlateClose Λ
According to different objects to be observed, the appropriate platen should be selected. The microscope plate materials include black and white, black and white finish; transparent glass, frosted glass, metal, etc.
Standard stands are generally configured with a suitable microscope plate, but different plates may need to be purchased separately.
Black and white microscope plate are made of general plastics, and the different backgrounds in black and white make the object more prominent.
Finish microscope plate eliminates reflections during observation.
Transparent glass plate is used when observing transparent or translucent objects, and the use of transmitted light source is to make the light penetrate the object to be observed as much as possible.
Finish glass plate, with its rough glass surface, can make the transmitted light more uniform and create a diffusing effect, avoiding exposure of the light shadow of the filament directly onto to the observed object.
Metal plate, relatively more solid, is more suitable when it is necessary to operate and cut.
Microscope plate is generally round shaped, on one side of the base there is a spring clip. When installing, align the plate with the clamp and push it in, and then press down the other end, so that the plate is smoothly embedded in to the circular card slot of the bottom plate.
When removing, grab the other end of the clip, push and lift up the plate.
Aperture DiaphragmClose Λ
The diaphragm that determines the image plane necessary for imaging through the objective lens is called the aperture diaphragm. All irises of the traditional microscope are aperture diaphragm.

The function of aperture diaphragm is mainly to limit the size of the imaging beam, change the luminous flux, thereby improving the imaging quality. The size of the aperture diaphragm is usually variable, and it is also called iris diaphragm. When the aperture diaphragm lock is too small and the luminous flux of the imaging beam is insufficient, the fraction ratio of the objective lens is low, the imaging will become dark; however, when the aperture diaphragm is too large, there will be strong light in the field of view, and even though viewed from the eyepiece, it may have high resolution, the image on the display will be overexposed.
After replacing the objective lens, the aperture diaphragm should also be adjusted appropriately, rather than adjusting the brightness of the light.
The aperture diaphragm of the transmitted light is generally mounted on the microscope base. The aperture diaphragm of the biological microscope is mounted on the condenser device. On the other hand, the aperture diaphragm of compound microscopes, such as large upright metallurgical or fluorescence microscopes, is generally mounted on the in the coaxial reflection illuminator.
In the use of the aperture diaphragm, it is often necessary to adjust the center of the diaphragm. Generally, it is adjusted together with the condenser. Please refer to the adjustment method of the condenser.
PackagingClose Λ
After unpacking, carefully inspect the various random accessories and parts in the package to avoid omissions. In order to save space and ensure safety of components, some components will be placed outside the inner packaging box, so be careful of their inspection.
For special packaging, it is generally after opening the box, all packaging boxes, protective foam, plastic bags should be kept for a period of time. If there is a problem during the return period, you can return or exchange the original. After the return period (usually 10-30 days, according to the manufacturer’s Instruction of Terms of Service), these packaging boxes may be disposed of if there is no problem.

More Info

Contains  
Parts Including
PictureP/NProduct Name
EP990311201A Fuse
SA0214110295x5mm Matte Glass Plate
SA02141104Transmitted Illumination Iris
BU990213019W Fluorescent Bulb
EC02491402Power Cable
BU9903220112V 15W Halogen Bulb
Packing  
Packaging TypeCarton Packaging
Packaging MaterialCorrugated Carton
Packaging Dimensions(1)38x36x19cm (14.961x14.173x7.480″)
Inner Packing MaterialPlastic Bag
Ancillary Packaging MaterialsStyrofoam
Gross Weight3.25kg (7.17lbs)
Minimum Packaging Quantity1pc
Transportation CartonCarton Packaging
Transportation Carton MaterialCorrugated Carton
Transportation Carton Dimensions(1)38x36x19cm (14.961x14.173x7.480″)
Total Gross Weight of Transportation(kilogram)3.25
Total Gross Weight of Transportation(pound)7.17

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