Designed specifically for material science research, it can meet the needs of surface microscopy, screening and scientific research of various metal materials, non-metallic materials and geological materials. The mechanical structure is stable and compact, the ergonomic design, reasonable layout, comfortable to use, and the microscope can be operated in a natural posture. It adopts the NIS infinity optical system that has been researched and continuously improved for many years. It has excellent optical qualities such as long working distance, high color reproduction, and accurate imaging. The imaging is reliable and provides high contrast, clear and bright images. The NM910 microscope adopts a modular design to realize bright field, dark field, differential interference, fluorescence, polarization and other observation methods. It is an ideal tool for quality control and research of semiconductor devices, FPD, electronic devices, materials, and precision mold manufacturing. • Excellent microscopic imaging effect
NM900 adopts the excellent NIS infinity optical system. The field of view is uniform, bright, and has high color reproduction. It is suitable for observing industrial samples such as semiconductors.
• Large field of view eyepiece
NM900 adopts a large field of view eyepiece with a field of view of 25mm, which has a larger field of view, more comprehensive observation content, and faster sample observation. For samples that require a panoramic view, a microscope with a large field of view is a more correct choice.
• Koehler illumination
The perfect microscopic illumination system-Koehler illumination provides a bright and uniform field of view. With the infinity optical system NIS45 and the objective lens with high numerical aperture and high working distance, it provides you with perfect microscopic imaging. • Ergonomic design, comfortable operation experience
NM900 provides excellent optical performance and comfortable operation experience, and is a trustworthy research partner for scientific researchers. The use of the mainstream optical system of scientific research microscopes - the infinity optical system makes it possible to realize a variety of observation methods. And the perfect Kohler illumination provides a bright and uniform field of view for the microscope. On this basis, Nexcope continues to optimize the customer's product experience, ergonomic design, so that observation and operation can maintain a comfortable posture.
• The light turns off when the operator leaves
After more than 30 minutes, the microscope will automatically turn off the transmitted light source. The energy-saving switch can save energy, protect the light source, and increase the service life of the light source. • Variable tilt trinocular observation head
The observation head with adjustable tilt angle can be operated in a more comfortable posture. It effectively reduces muscle tension and discomfort caused by long-term work.
• Left/right hand position interchange mechanism and low hand position operating system
In order to better adapt to users with different operating habits, the focus and stage can be easily adjusted to the left or right hand position for operation. In addition, the focus hand wheel and stage moving platform are in the low hand position, which makes the operation more comfortable and reduces fatigue. • Light intensity management function (optional)
When switching between objective lenses of different magnifications, the light intensity needs to be adjusted to ensure that the light intensity in the field of view is the same at different magnifications. NM910 can intelligently memorize the appropriate light intensity at different magnifications, and automatically adjust it as the objective lens magnification changes to reduce visual fatigue. This function is applicable to lower light sources. • Modular design enables multiple observation methods
The NM910 microscope adopts a modular design to achieve observation methods such as bright field, dark field, differential interference, fluorescence, and polarization. It provides microscopic imaging and data analysis support for industrial fields such as construction, material analysis, semiconductor production and testing.