Super-resolution microscope Eclipse Ti2 Series
opticallaboratoryinverted

super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
super-resolution microscope
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Characteristics

Type
optical
Applications
laboratory
Ergonomics
inverted
Microscope head
binocular
Observation technique
super-resolution
Light source
laser
Configuration
benchtop
Options and accessories
with color camera
Magnification

1 unit, 2 unit

Length

668 mm, 738 mm
(26.3 in, 29.1 in)

Width

240 mm
(9.4 in)

Description

Leading platform for advanced imaging. The Eclipse Ti2 delivers an unparalleled 25mm field of view (FOV) that revolutionizes the way you see. With this incredible FOV, the Ti2 maximizes the sensor area of large-format CMOS cameras without making compromises, and significantly improves data throughput. The Ti2's exceptionally stable, drift-free platform is designed to meet the demands of super-resolution imaging while its unique hardware-triggering capabilities enhance even the most challenging, high-speed imaging applications. Furthermore, the Ti2's unique, intelligent functions guide users through imaging workflows by gathering data from internal sensors, eliminating the possibility of user errors. In addition, the status of each sensor is automatically recorded during acquisition, providing quality control for imaging experiments and enhancing data reproducibility. In combination with Nikon's powerful acquisition and analysis software, NIS-Elements, the Ti2 is a total innovation in imaging. Key Features Groundbreaking FOV As research trends evolve towards large-scale, systems-level approaches, there is an increasing demand for faster data acquisition and higher throughput capabilities. Development of large-format camera sensors and improvements in the data processing capabilities of PCs have facilitated such research trends. The Ti2, with its unprecedented 25mm field of view, provides the next level of scalability, enabling researchers to truly maximize the utility of large-format detectors and future-proof their core imaging platform as camera technologies continue to develop at a rapid pace.

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