Notice:
As of 4:45 p.m. EDT on 7/16/2026 this site has restored production and delivery
of GOES-East imagery from the GOES-19 ABI. We are still awaiting
restoration of GLM and SUVI data, and will update this banner
when more information is available. Please direct any questions to
nesdis.star.webmaster@noaa.gov.
12 Aug 2026 - 10:25 EDT
12 Aug 2026 - 14:25 UTC
GOES-19 Full Disk - Fire Temperature
2 hour loop - 12 images - 10 minute update
To enlarge, pause animation & click the image. Hover over popups to zoom. Use slider to navigate.
While GOES animation code will not run on older Internet Explorer browsers,
they work in the newest versions of Microsoft Edge. If you are using
Internet Explorer, please try a different browser: Chrome, Firefox, Safari, or
MS Edge are all supported.
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1210 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1220 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1230 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1240 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1250 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1300 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1310 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1320 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1330 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1340 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1350 UTC
Fire Temperature - RGB used to highlight fires - 12 Aug 2026 - 1400 UTC
Fire Temperature key:
1 - Warm fire 2 - Very warm fire 3 - Hot fire 4 - Very hot fire 5 - Burn scars 6 - Clear sky: land 7 - Clear sky: water/snow/night 8 - Water clouds 9 - Ice clouds
Fire Temperature RGB allows the user to identify where the most intense fires are occurring and differentiate these from "cooler" fires. The RGB takes advantage of the fact that from 3.9µm to shorter wavelengths, background solar radiation and surface reflectance increases. This means that fires need to be more intense in order to be detected by the 2.2 and 1.6µm bands, as more intense fires emit more radiation at these wavelengths. Therefore, small/"cool" fires will only show up at 3.9µm and appear red while increases in fire intensity cause greater contributions of the other channels resulting in white very intense fires.