• Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals
  • Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals

Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals

Magnification: 40X~1000X
Type: Metallographic
Number of Cylinder: Binocular, Trinocular
Mobility: Desktop
Stereoscopic Effect: Stereoscopic Effect
Kind of Light Source: Ordinary Light
Samples:
US$ 1200/Piece 1 Piece(Min.Order)
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Customization:
Diamond Member Since 2018

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Basic Info.

Model NO.
LMDJ100, 200
Shape
Single-lens
Usage
Teaching, Research
Principle
Optics
Principle of Optics
Polarizing Microscope
Product Name
Metallographic Microscope
Eyepiece
Wf 10X-18 mm
Lwd Infinity Plan Objectives
5X, 10X, 20X, 50X, 80X, 100X
Amplification Range
40X~1000X
Observing Tube
Binocular, Trinocular
Nosepiece
Quadplex
Monocular Head
Inclined 45
Filter
Blue, Green, Grey
Illumination
LED, Halogen Lamp
Product Usage
Scientific Study
Function
Mental Study
Applicable Popluation
Student or Researchers
Applicable Location
Lab or School
Camera
Digital Camera
Objective Type
Optional
Transport Package
Plywood Case Package
Specification
437mm x 268mm x 522mm
Trademark
LABOAO
Origin
China
HS Code
8486402900
Production Capacity
1200

Product Description

Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals

Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals

Definition 1: Microscope with stage on top of objective lens. Applied disciplines: mechanical engineering (first-level discipline); optical instruments (second-level discipline); microscope-microscope name (third-level discipline)

Definition 2: An optical microscope in which the objective lens is placed below the stage. Suitable for microscopic observation and micromanipulation of cultured cells. Applied disciplines: cell biology (first-level discipline); cell biology technology (second-level discipline)



Feature

(1) Mirror holder: It is the base of the microscope to support the entire mirror body.

(2) Mirror post: It is the upright part above the mirror base, which is used to connect the mirror base and the mirror arm.

(3) Mirror arm: one end is connected to the mirror column and one end is connected to the lens barrel.

(4) Lens barrel: It is connected to the front and upper of the lens arm. The upper end of the barrel is equipped with eyepieces, and the lower end is equipped with objective lens converter.

(5) Objective lens converter (rotator): It is connected to the lower part of the prism housing and can be rotated freely. There are 3-4 round holes on the disk. It is the part for installing the objective lens. Turning the converter can change the objective lens of different multiples. Observation can be made only when the sound of bumps hits. At this time, the optical axis of the objective lens is exactly aligned with the center of the light hole, and the optical path is connected.

(6) Mirror stage (stage): there are square and round shapes under the lens barrel, which are used to place glass specimens, and there is a light hole in the center. The microscope specimen used in our microscope is equipped with a glass specimen advancer ( Slider), there is a spring clip on the left side of the pusher to hold the slide specimen, and there is a pusher adjustment wheel under the stage, which can make the slide specimen move left and right and back and forth.

(7) Adjuster: It is two kinds of screws, which are mounted on the mirror column. When adjusting, the mirror table moves up and down.

1)Coarse adjuster (coarse spiral): A large helix is called a coarse adjuster, which can make the stage move up and down quickly and greatly when moving, so it can quickly adjust the distance between the objective lens and the specimen so that the object image appears in the field of vision, usually in the field of vision. When using a low power lens, first use the coarse adjuster to quickly find the object image.

2)Fine adjuster (fine helix): The small helix is called a fine adjuster, which can slowly raise and lower the stage when moving. It is mostly used when using a high-power lens to get a clearer image and observe different levels and depths of the specimen. Structure.


Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals
Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals



Specification

 
Items Specifications LMDJ100 LMDJ200
Eyepieces WF 10×-18 mm Y Y
WF 10×-18 mm(adjustable,Reticule 0.1 mm) O O
Metallurgical LWD Infinity
Plan Objectives
LPL  5×/0.13         W.D=16.04mm Y Y
LPL 10×/0.25         W.D=18.48mm Y Y
LPL 20×/0.40         W.D=8.35mm O O
LPL 50×/0.70         W.D=1.95mm Y Y
LPL  80×/0.80        W.D.= 0.85mm O O
LPL 100×/0.90(Dry)    W.D=1.10mm O O
Binocular Head Inclined 45º   Y
Monocular Head Inclined 45º Y  
Nosepiece Quadplex Y Y
Mechanical Stage Size: 180×180mm,Travel Range: 30×30mm,
Round slide size:φ110mm
Y Y
3W-LED  llumination Input voltage:100V~240V Y Y
12V/20W  Ilumination O O
Filters Blue, Green, Grey Y Y
Micrometer Division 0.01mm O O
Note: "Y" In Table Is Standard outfits, "O" Is Optional Accessories.
Packing Size: 437mm×268mm×522mm     Gross Weight: 8 kgs     Net Weight: 7 kgs
 




Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals
Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals
Digital Optical Metallographic Inverted Microscope for Observing Metals and Minerals





 

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