120 kV TEM - JEM-120i

"Compact", "Easy To Use", and "Expandable"


120kV TEM

 

What Can We Help You Achieve?

JEM-120i

120 kV - JEM-120i

Transmission Electron Microscopes (TEM) of 120kV accelerating voltage are widely used in soft material fields such as biology and polymer. We developed the JEM-120i with the concept of "Compact", "Easy To Use", and "Expandable". With the new external appearance, this instrument has evolved into a useful tool that anyone can use easily, from operation to maintenance.

 

Screen capture JEM-120i

Compact, Easy to Use, Expandable

Compact – With the drastic reduction in size, the JEM-120i has a filament replacing position and specimen holder insertion position lower than existing instruments. A newly developed cartridge type filament unit helps make filament replacement easy and safe for anyone.

Easy to Use – It takes only 4 steps from loading a specimen to completing observation. After inserting the specimen holder, clicking the Start Button automatically performs observation preparation operations such as voltage increase and emission start. A wide area image is captured at the same time. So, clicking the target field will move the stage to the clicked position.

Expandable – The JEM -120i supports a variety of retrofits. It also meets the need for additional functions after purchase.


JEM-120i with dimensions

Specifications

  • Resolution – 0.2 nm (HC)※1, 0.14 nm (HR)※2
  • Accelerating voltag – 20-120 kV
  • Magnification – 50-1,200,000 (HC)※1, 50-1,500,000 (HR)※2
  • Standard camera – NEOView Camera 4 M pixel, 30 fps
  • Optional camera – SightSKY 19 M pixel, 58 fps – Cameras by other company can be mounted.
  • Main unit dimensions – W 840 mm/ D 1,734 mm/ H 1,782 mm
※1 (HC) : High contrast configuration ※2 (HR) : High resolution configuration

Seamless observation without switching magnification mode

The JEM-120i is equipped with an enhanced TEM control system and fully automated apertures, eliminating the need for switching magnification modes and selecting an aperture. Observation operations can be performed more smoothly than with previous models.

Rat Liver images


 

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