Mitutoyo M Plan Apo NUV & NUV HR Objectives (10x–100x) – High-Resolution UV Imaging Lenses with Extended Working DistanceMicro Kit-No Objectives
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Mitutoyo M Plan Apo NUV & NUV HR Objectives (10x–100x) – High-Resolution UV Imaging Lenses with Extended Working Distance

$3,570.00$14,900.00

The Mitutoyo M Plan Apo NUV and NUV HR objectives are engineered for precision imaging across the near-ultraviolet (NUV) to visible spectrum, offering magnifications from 10x to 100x. These lenses are fully apochromatically corrected for superior image flatness, chromatic correction, and contrast—making them ideal for high-resolution metrology, photolithography, and advanced microanalysis.

The standout 50x HR variant pushes performance further with increased numerical aperture and resolution, optimized for submicron imaging without compromising working distance. Across the entire range, these objectives feature long working distances and no cover glass requirement, providing flexibility and protection for delicate samples and instrumentation.

Built to meet the demands of semiconductor fabrication, cleanroom environments, and optical R&D, the M Plan Apo NUV series defines the standard for UV-corrected, long working distance microscopy.

Mitutoyo G Plan Apo Glass-Compensated Objectives (20x & 50x) – Optimized for 3.5 mm Thick Glass in Brightfield MicroscopyMicro Kit-No Objectives
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Mitutoyo G Plan Apo Glass-Compensated Objectives (20x & 50x) – Optimized for 3.5 mm Thick Glass in Brightfield Microscopy

$4,890.00$4,980.00

The Mitutoyo G Plan Apo series is specifically designed for brightfield reflected light microscopy through 3.5 mm thick glass, making it the perfect solution for imaging samples within microfluidic chambers, petri dishes, or sealed enclosures. These apochromatic objectives, available in 20x and 50x, are finely tuned to compensate for the refractive and optical effects of thick glass, ensuring crisp, high-resolution imaging without aberration.

With long working distances and full color correction across the visible spectrum, these objectives provide an edge in biological, industrial, and precision engineering applications where imaging through transparent barriers is essential. They’re ideal for in situ monitoring, encapsulated sample analysis, and controlled-environment research.