/* Namespaced styles — safe for WordPress themes */
.flirmix-header{display:flex;gap:14px;align-items:center;margin-bottom:14px}
.flirmix-header img{width:64px;height:64px;object-fit:contain;border-radius:6px;flex:0 0 64px}
.flirmix-title{margin:0;font-size:20px}
.flirmix-lead{margin:6px 0 12px;color:var(--muted);font-size:14px}
.flirmix-grid{display:grid;grid-template-columns:1fr 320px;gap:16px}
.flirmix-card{background:var(--card);padding:14px;border-radius:10px;box-shadow:0 1px 4px rgba(12,20,40,0.04)}
.flirmix-full{grid-column:1/-1}
.flirmix-h2{margin:0 0 8px 0;color:#0b3f91;font-size:16px}
.flirmix-h3{margin:8px 0;color:#0b3f91;font-size:14px}
.flirmix-small{font-size:13px;color:var(--muted)}
.flirmix-list{margin:0;padding-left:18px}
.flirmix-table{width:100%;border-collapse:collapse;font-size:13px;margin-top:8px}
.flirmix-table th,.flirmix-table td{padding:8px;border:1px solid #e6e9ee;text-align:left;vertical-align:top}
.flirmix-table th{background:#f0f7ff;color:#0b3f91;font-weight:600}
.flirmix-footer{font-size:12px;color:var(--muted);text-align:center;margin-top:12px}
@media (max-width:880px){.flirmix-grid{grid-template-columns:1fr}.flirmix-container{padding:14px}}
FLIR logo

FLIR MIX — Multispectral Infrared eXperience (Overview)

FLIR MIX synchronizes high-speed thermal and visible imaging into temporally and spatially aligned datasets—designed for high-speed research, materials testing, and precise multispectral analysis.

Executive Summary

FLIR MIX is a multispectral imaging solution that captures synchronized infrared (thermal) and visible-light imagery, enabling pixel-perfect temporal and spatial alignment between the two modalities. It is offered as starter kits (for X-Series and A-Series cameras) and as a Toolkit for detailed post-processing and research workflows.

Core Benefits

  • Temporally synchronized thermal & visible channels for precise event correlation.
  • High frame-rate capture for fast transient events (high-speed testing).
  • Pixel-perfect alignment reduces manual post-processing and registration errors.
  • Integrates with FLIR Research Studio for analysis and export workflows.

Technical Overview

How MIX Works

MIX couples a high-frame-rate thermal camera with a matched visible camera, plus precision mounting, optics, and synchronization electronics. The system records both channels with exact timestamps and geometric calibration so frames can be merged or compared frame-by-frame without spatial or temporal ambiguity.

Key Components

  • Thermal imager (X-Series or A-Series depending on kit).
  • High-speed visible camera and optics tuned for alignment.
  • Mounting hardware and cabling for rigid co-alignment.
  • Software support (Research Studio + MIX Toolkit) for capture, alignment, and analysis.

Starter Kits & Performance (Examples)

KitTarget CameraNotable PerformanceCommon Applications
FLIR MIX — X-Series Starter KitFLIR X-Series thermal camerasHigh-speed capture up to ~1004 FPS (full-speed configurations)Airbag tests, ballistics, materials failure, high-speed thermal events
FLIR MIX — A-Series Starter KitFLIR A-Series thermal camerasHigh-quality synchronized capture; A-Series kit supports industry R&D workflows (varies by model, e.g., up to ~125 FPS in some configs)Electronics testing, battery & thermal runaway studies, component level testing

Exact frame rates and supported resolutions depend on camera model and chosen configuration — verify with product documentation for your selected camera and kit.

MIX Toolkit & Software

The MIX Toolkit (an add-on to FLIR Research Studio) provides frame-by-frame alignment, advanced merging tools, and export options that simplify post-processing of multispectral datasets. This toolkit is intended for researchers who require precise control over registration and analysis workflows.

  • Precise spatial registration & temporal alignment tools.
  • Export synchronized datasets for analysis and reporting.
  • Workflow integrations with research and test environments.

Application Examples & Use Cases

  • Aerospace / Ballistics: visualize heat generation during high-speed events with visible context to locate structural responses.
  • Automotive / Airbag testing: correlate thermal signatures with deployment mechanics.
  • Battery & Electronics R&D: capture thermal runaway or transient heating events with visual confirmation.
  • Materials testing & research: study rapid thermal phenomena and their visual causes.

Best Practices

  • Use rigid mounting to maintain spatial alignment; avoid flexible couplings for high-speed tests.
  • Calibrate optical alignment in your test setup before critical captures.
  • Record raw synchronized files and keep metadata (timestamps, lens, distance) for reproducibility.
  • Document camera models and kit configurations in reports to preserve data provenance.

Report-Ready Quick Reference

FieldSuggested Entry
Dataset Nameproject_testID_date_mixXseries (e.g., MIX_projectA_2025-09-08_XS1)
Kit / CamerasFLIR MIX X-Series Kit — Xxxx camera + visible camera (specify models)
Frame RateSpecify thermal & visible FPS (e.g., thermal 1004 FPS / visible 1004 FPS)
NotesDistance, optics, mounting, environmental conditions, and whether toolkit alignment used

PHP Code Snippets Powered By : XYZScripts.com