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Eclipse Ni-E/Ni-U正置荧光显微镜
The leap forward of research grade microscopes, visible evolution! After years of technological innovation and optical improvement, Nikon's new genera
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The leap forward of research grade microscopes, visible evolution!


After years of technological innovation and optical improvement, Nikon has been endowed with a new generationEclipse Ni-EThe revolutionary modular design of the upright research microscope makes functional expansion so simple that it can be accurately matched with various customized systems. brand-newCFIFlat field color correctionLambdaObjective lens, Nikon's patented nanocrystal coating technology ensures higher transmittance and presents brighter and higher resolution images. Add more outstanding wide field and point laser lighting devices with electric modules. Nikon's new generation of research grade microscopes allows your research to have no limitations!





|Hierarchical structure improves system scalability

NikonThe unique layered structure allows a microscope to have two optical paths simultaneously, making it suitable for different applications. This structure can provide a dual layer optical path of fluorescence illumination and filter disk or photoactivation component, and the photoactivation component used for upright microscopes is also provided by Nikon.

Ni-E (objective focusing) equipped with electric fluorescence and photoactivation device dual layer optical path

|High speed electric components

Provide high-speed electric components with various functions. If equipped with a higher speed electric excitation blocking filter wheel and electric light gate, the wavelength can be quickly changed, thereby reducing the degree of photobleaching of the sample. The use of easily operable control buttons can significantly improve operational efficiency.

|Two interchangeable focusing mechanisms

The microscope provides two ways of focusing: stage focusing and objective focusing. The configuration of an electric focusing fixed stage can meet the requirements of experiments such as multiphoton live imaging.

 Ni-E (objective focusing) equipped with multiphoton system

|Automatic adjustment of objective lens switching

Focusing lens, aperture stop, and field stopNDThe filter will automatically set to the optimal position when the objective lens is switched. In addition, every time the handle is turned, the loading platformXYZThe deviation correction of movement and focus distance will also be automatically adjusted. At the same time, various settings of the microscope can also be manually adjusted.

|Automatic switching of observation mode

You can bring MingchangDICObservation methods such as aberration and fluorescence are assigned to each button, and can be easily switched by simply tapping the corresponding button. This is very useful when imaging the same specimen using multiple observation methods.

|High precision electric focusing

Ni-EHigh precision adoptedZAxis focusing technology can provide precise height information required by confocal laser microscopes. The independent coarse and fine adjustment knobs make the operation easier.

|Excellent optical performance

As an optical microscope manufacturer, Nikon has accumulated rich technology and experience in this field. Nikon's advanced technology covers various fields from optical glass production to lens design, assembly, coating, and processing, making Nikon's optical products unparalleled in performance.

high-performance objective

CFI Plan Apochromat λseries

Nikon's unique nano crystalline coating technology enables Nikon's lenses to have extremely high performanceNAThe transmittance is greatly improved within the long wavelength range, and color difference correction spans across different wavelengths435-850 nmNot only applicable to Mingchang andDICObservation, and also highly suitable for fluorescence observation. This series of lenses can obtain bright and clear images in any wavelength band, suitable for near-infrared imaging and multi-color fluorescence imaging. Due to the ability to capture bright images even when the excitation light is weak, damage to the specimen can be minimized.

Nano crystal coating

The anti reflective coating composed of nanoscale particles was first applied in the manufacturing of microscope objectives, stimulating the application of semiconductor manufacturing technology to Nikon's camera lenses. This coarse texture structure arranges particles in a sponge like structure while maintaining uniform space between particles, resulting in a significant decrease in refractive index and an increase in the light transmittance of the objective lens.

Water mirror

This series of objective lensesThe working distance is longHigh definition imaging of fine structures of thick specimens in observation mode.NALarge, it can provide excellent transmittance in the near-infrared band.40xand60xThe axial chromatic aberration of the objective lens has been corrected to850 nmCan be found onIR-DIC

25xW MPand100xObjective lens hasNABig(1.1)Long working distance2.0 mmcharacteristic.This type of objective lens can perform chromatic aberration correction in the infrared region and is suitable for multi photon excitation observation. In addition, due to the device equipped with compensation for spherical aberration changes that occur at different temperatures and observation depths, clear images can be captured of deep areas of thick specimens.






Uniform illumination

compound eyeLenses are extremely suitable for transmissive lighting systems. Uniform and bright illumination can also be achieved at the edge of the field of view at any magnification.

Fluorescence noise elimination

The filter block turntable and filter block are equipped with Nikon's unique noise cancellation device in between. By completely eliminating scattered light in the filter block, the signal-to-noise ratio is greatly improved, and images of weak fluorescence signals can be captured with high contrast and brightness.

|Simple operation

Easy digital shooting

The eyes do not need to leave the eyepiece, simply press the image capture button on the microscope base to obtain the image.

3DErgonomically Designed

The buttons on the side of the microscope have a certain inclinationConvenient touch based operation during observation.Clear display screen at a glanceIt is easy to view the microscope settings displayed on the screen from the observation position.

Independent controllerDS-L3

Through an independent controllerDS-L3No connection requiredPCJust rightDigital Sight Set up and operate a series of digital cameras.Images can also be obtained from a PC through the internet.

  • The best image parameters for each observation method can be selected through icons, and simple measurements can be performed.

  • It can provide comprehensive control over digital cameras, electric microscope components, and peripheral devices.

  • After installing electric or intelligent devices, microscope status data such as objective lens, fluorescence filter block, and condenser lens information will be automatically saved together with the captured images.

  • Various operations can be controlled by using a mouse or operating the touch screen through a stylus.


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