+86-18822802390

New technologies in the field of science, creating high-quality confocal microscopes

Jun 09, 2024

New technologies in the field of science, creating high-quality confocal microscopes

 

Confocal microscopy was only developed in China in the late 1980s. Although the time is still short, its application range is already very extensive. On the basis of fluorescence microscopy, confocal microscopy adds a laser scanning device, which uses ultraviolet light or laser to excite fluorescence probes to obtain fluorescence images of the internal structure of cells or tissues, and uses terminal devices for corresponding image processing to monitor the morphological changes of cells. With the continuous improvement of scientific grade CCD camera performance, various new technologies are jointly driving the emergence of higher quality confocal microscopes. The improvement of the performance of scientific grade CCD cameras has a significant impact on the significant transformation of confocal systems. For example, the increase in sensitivity allows the resolution of confocal microscopes to be infinitely close to that of point scanning confocal microscopes, greatly improving imaging quality. In recent years, confocal microscopy has continuously developed in areas such as high precision, high speed, 3D, and non-destructive. Therefore, compared with ordinary microscopes, confocal microscopy has higher resolution, scanning speed, larger scanning depth, lower cost, higher image quality, and is simpler and more user-friendly.


The main goal is to deepen the development of scientific level CCD technology and its application in analytical instruments and scientific imaging. Since its establishment, the company has been committed to providing the market with the best and most advanced instruments, as well as special and thoughtful services and technical support. SI cameras are customized according to customer needs, providing the best solutions for many applications. For example, the SI900 series camera is designed for applications with extremely high resolution and large field of view requirements. It has a resolution of 16384x16384, low noise readout of<10e-RMS, ultra-low temperature cooling that can cool down to -100 degrees Celsius, and can achieve up to four synchronized readouts per CCD chip, maintaining high-speed and low-noise imaging while achieving extremely high resolution.

 

3 Continuous Amplification Magnifier -

Send Inquiry