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Achromatic Doublet Lens: A Complete Buying Guide

01 Sep 2026
Achromatic Doublet Lens: A Complete Buying Guide

An achromatic doublet — often just called an achromat or achromatic lens — is made of two glass elements with different refractive index and dispersion, cemented together. That combination brings two design wavelengths to a common focal point, which sharply reduces chromatic aberration compared with a single lens element. It's the go-to correction lens for any system that has to perform across a range of wavelengths.

Key Specifications at a Glance

Parameter Typical Value
Common glass pairing Crown glass (N-BK7) + flint glass (SF2 / N-SF5)
Configuration Positive achromat, negative achromat
Diameter 5 mm–100 mm
Focal length range 20 mm–1000 mm
Surface accuracy λ/4–λ/10 at 633 nm
Design wavelength pair Commonly 486 nm / 656 nm (visible); custom pairs available
Coating Single-layer MgF2 / broadband AR, matched to the application band

Why Use an Achromatic Doublet

A single lens element refracts different wavelengths of light by different amounts, so red, green, and blue light don't converge at the same point — that's chromatic aberration, and it shows up as color fringing at high-contrast edges. An achromatic doublet pairs a low-dispersion crown glass element with a high-dispersion flint glass element so their dispersion largely cancels out, bringing at least two wavelengths to a shared focus and producing a noticeably sharper, cleaner image.

Positive Achromat vs. Negative Achromat

  • Positive achromatic doublet: net converging power, by far the more common configuration, used in imaging and focusing systems
  • Negative achromatic doublet: net diverging power, used where a compound lens design needs a corrected negative element

How to Choose

  1. Confirm the operating waveband first. For broadband applications — full visible-spectrum imaging, for example — an achromat outperforms a single lens by a wide margin.
  2. Check the design wavelength pair. Catalog achromats are typically optimized for a standard pair such as 486 nm/656 nm or 1050 nm/1550 nm; performance degrades if the actual application band doesn't match.
  3. Match the coating to the waveband. Don't reuse a visible-band AR coating spec on an infrared system — the coating needs to be designed for the wavelengths actually in use.

Applications

  • Microscope and telescope objectives
  • Camera lens groups
  • Medical endoscope imaging systems
  • Industrial inspection and machine vision lenses

Usage Tips

Because an achromatic doublet is a cemented assembly, the adhesive layer can degrade under sustained high temperature or high-power laser exposure. For high-power laser systems, it's worth evaluating whether an air-spaced doublet is a better fit than a cemented one.

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