NanoFraction / Holomoire software

Turn optical patterns into measurement evidence.

Capture, reconstruct and analyze optical data in one connected workspace. Holomoire keeps the source images, processing choices and calibration context behind each result in view.

Holomoire node workspace showing image input, Fourier analysis and reconstruction preview
Holomoire’s visual workspace connects image inputs, frequency analysis and reconstruction previews. Development interface shown.
One platform. Two workspaces.

Fast feedback. Deeper analysis.

Holomoire Live

Check the incoming image and reconstruction preview while you work at the instrument.

  • Preview streams, sequences and image inputs.
  • Adjust acquisition and application presets.
  • Capture evidence for detailed analysis.
Holomoire Live pattern input and diagnostic reconstruction preview
Pattern input alongside a reconstruction preview. Preview output is diagnostic; measurement requires calibration and validation.

Holomoire Studio

Build an analysis you can inspect, repeat and explain.

  • Connect processing steps in a visual node workspace.
  • Inspect Fourier data, masks and phase recovery.
  • Review intermediate results and prepare outputs.
Holomoire Studio connected analysis nodes
A connected processing graph makes the analysis sequence visible.

Live and Studio are designed around a shared reconstruction core, connecting instrument-side previews with more detailed analysis.

From capture to review

Keep the path to the result.

01 / CAPTURE

Start with the source.

Bring in images or sequences with the sample and acquisition context.

02 / RECONSTRUCT

Inspect each step.

Explore frequency content, isolate carriers and recover phase.

03 / VALIDATE

Check the evidence.

Compare with references, calibration artifacts and acceptance criteria.

04 / SHARE

Make it reviewable.

Prepare images, data and processing context for technical review.

Analysis in context

Follow the signal.
Understand the surface.

Explore phase, shape, periodic structure and changes relative to a reference. Surface, depth and strain workflows depend on the optical setup, sample and calibration.

Holomoire 3D portal displaying a colored surface visualization
3D visualization in the analysis workspace. A rendered surface is not, by itself, a calibrated height measurement.
Holomoire workspace comparing a shirt image and color-mapped output
Textile input and a color-mapped output displayed side by side for inspection.

Visible processing

Follow the transformation from source image to output, including intermediate stages and adjustable parameters.

Calibration context

Define the scale, reference and geometry needed to interpret an application-specific result.

Repeatable workflows

Develop reusable analysis recipes and preserve the settings needed to review and repeat them.

Applications

Built around your measurement question.

Configure the capture and analysis workflow for your material, instrument and decision—from surface screening to exploratory research.

Materials & microelectronics

Inspect surfaces, patterned structures and local optical variation.

Manufacturing & research

Explore particles, textiles and custom optical setups with explicit reference and validation requirements.

Before you get started.

Can Holomoire work with my instrument?

Input and deployment options depend on your camera, optical method and data format. NanoFraction can assess compatibility during a technical discussion or pilot.

Does Live reconstruct every frame?

Live is designed for responsive previews at a controlled processing cadence. Full-resolution analysis and performance requirements are scoped to the application.

What makes an output a measurement?

Application-specific calibration, known references and validation. A compelling image or reconstruction alone does not establish measurement accuracy.

How is the software available?

Deployment is currently scoped around the application and instrument workflow. Contact NanoFraction about a demonstration, feasibility study or integration pilot.

Start with one question

What do you need to measure?

Tell us about your sample, image source and intended result. We’ll help define a practical software workflow and the evidence needed to test it.