Satellite Archive · NASA / USGS Landsat Program

Landsat 9 Images: View And Download Satellite Data

Landsat 9 Resolution: 15m Panchromatic · 30m Multispectral · 100m Thermal

The Landsat 9 satellite launched on September 27, 2021, continuing more than 50 years of NASA and USGS Earth observation. XRTech Group makes it simple to view and download Landsat 9 images: all 11 Landsat 9 bands from the OLI-2 and TIRS-2 instruments, sourced, processed, and delivered for your area of interest.

Launched September 2021 15m Panchromatic 11 Spectral Bands Archive Since 2021
Current Status: ActiveThe Landsat 9 satellite is fully operational today, flying alongside Landsat 8 to provide 8-day combined revisit coverage. New Landsat 9 images are added to the archive continuously.
Rendering of the Landsat 9 Earth observation satellite in sun-synchronous orbit
Landsat 9 — NASA/USGS satellite carrying the OLI-2 and TIRS-2 instruments
15m
Panchromatic
30m
Multispectral
185km
Swath Width
8–16 Days
Revisit Cycle
705km
Orbit Altitude
Overview

What Is the Landsat 9 Satellite, and When Was Landsat 9 Launched?

The Landsat 9 satellite was launched on September 27, 2021, from Vandenberg Space Force Base in California aboard a United Launch Alliance Atlas V401 rocket. Landsat 9 is operated jointly by NASA and the U.S. Geological Survey (USGS), continuing a Landsat program data record that stretches back to 1972. It succeeds Landsat 8, which launched in February 2013, and effectively replaces the retired Landsat 7 in the constellation, flying alongside Landsat 8 to provide 8-day combined revisit coverage instead of the 16-day cycle either satellite manages alone.

Landsat 9 carries the most refined instrument set flown on any Landsat satellite to date: the Operational Land Imager-2 (OLI-2), built by Ball Aerospace & Technology Corp, and the Thermal Infrared Sensor-2 (TIRS-2), built by NASA's Goddard Space Flight Center. Together they capture 11 spectral bands, from ultra-blue coastal aerosol through thermal infrared, collecting roughly 750 scenes of Landsat 9 imagery per day. Landsat 9's design life is 5 years, but it carries enough consumables for 10 or more years of operation, following the same conservative-design, long-service pattern as its predecessors.

Because Landsat 9 imagery is freely available under an open data policy, XRTech Group's role is to source, process, and deliver Landsat 9 images in analysis-ready form, matched to your area of interest, date range, and band requirements.

Sensor Detail

Landsat 9 Resolution: OLI-2 and TIRS-2 Explained

Landsat 9 resolution varies by instrument and band, and understanding the difference is essential before choosing which Landsat 9 images to download for your project.

Panchromatic (Band 8)15m, via the Operational Land Imager-2 (OLI-2)
Multispectral (OLI-2)30m across coastal, visible, NIR, SWIR, and cirrus bands
Thermal (TIRS-2)100m native, resampled to 30m for delivery consistency
Swath Width185 km at nadir
Scene Size185 × 180 km

TIRS-2 on Landsat 9 is a meaningful upgrade over the TIRS carried on Landsat 8: it reduces stray light contamination in thermal band data and improves cloud-cover detection, letting the instrument remove more contaminated pixels from raw data before delivery. Combined with OLI-2's improved radiometric performance, Landsat 9 resolution and data quality edge out even Landsat 8 in several respects, despite sharing the same headline 15m and 30m figures.

Spectral Detail

Landsat 9 Bands: Full OLI-2 and TIRS-2 Reference

Every Landsat 9 image is built from 11 total bands: nine from OLI-2 and two thermal bands from TIRS-2.

BandSpectral RangeResolution
Band 1 — Ultra Blue (Coastal/Aerosol)435–451 nm30 m
Band 2 — Blue452–512 nm30 m
Band 3 — Green533–590 nm30 m
Band 4 — Red636–673 nm30 m
Band 5 — Near-Infrared (NIR)851–879 nm30 m
Band 6 — SWIR 11566–1651 nm30 m
Band 7 — SWIR 22107–2294 nm30 m
Band 8 — Panchromatic503–676 nm15 m
Band 9 — Cirrus1363–1384 nm30 m
Band 10 — TIR 1 (Thermal)10,600–11,190 nm100 m
Band 11 — TIR 2 (Thermal)11,500–12,510 nm100 m

How Landsat 9 Bands Support Environmental Analysis

The two thermal Landsat 9 bands (10 and 11) detect thermal energy alongside visible and near-infrared light, supporting detection of changes in water supply and other natural resources tied to droughts, soil erosion, and rainfall disturbances. TIRS-2 also helps detect and remove cloud cover contamination from raw data, improving overall image quality before it reaches your workflow.

Use Cases

Applications for Landsat 9 Satellite Imagery

Agriculture

Landsat 9 enhances agricultural productivity by providing high-quality multispectral and thermal data for reliable crop monitoring and smarter planning.

  • Crop condition analysis: detect stress and growth stages with NDVI and other indices.
  • Yield prediction support: track vegetation trends and seasonal patterns to estimate productivity.
  • Soil moisture estimation: analyze irrigation needs using Landsat 9 thermal and spectral data.
  • Irrigation planning: spot water-stressed zones and improve irrigation timing.
  • Field boundary mapping: map cropland with updated Landsat 9 satellite images.

Construction and Urban Planning

Landsat 9 data supports monitoring of rapidly changing urban areas with consistent, timely imagery.

  • Urban expansion detection: track land use changes with recent, cloud-free Landsat 9 data.
  • Infrastructure monitoring: observe construction and city growth over time.
  • Environmental impact analysis: evaluate how development affects vegetation and ecosystems.
  • Urban heat island monitoring: detect temperature hotspots with thermal band data.
  • Pre-development assessment: review site conditions before major projects begin.

Environmental and Climate Change

Landsat 9 extends decades of Earth monitoring with detailed imagery to detect early signs of environmental change and support climate action.

  • Forest disturbance tracking: monitor deforestation and reforestation with frequent revisit data.
  • Wetland and water monitoring: track seasonal and long-term surface water trends.
  • Climate impact analysis: observe glacier retreat, vegetation shifts, and land degradation.
  • Disaster damage mapping: assess impacts of fires, floods, and droughts.
  • Biodiversity assessment: detect ecosystem changes and threats to protected areas.
Analytics Capabilities

Turn Landsat 9 Images into Valuable Insights

Indices & Band Combinations

Choose from 20+ preconfigured indices and band combinations across every Landsat 9 band to monitor vegetation, soil, and environmental indicators, or build custom indices for specific needs.

Change Detection

Compare Landsat 9 satellite images captured at different times to reveal landscape change from urban growth, environmental degradation, or natural disasters.

Time Series Analysis

Build time series graphs from Landsat 9 satellite images to track seasonal cycles, ecological shifts, and the progression of urban development.

Technical Data

Full Technical Specifications

Sensor & Coverage

ProviderNASA / United States Geological Survey (USGS)
InstrumentsOLI-2 & TIRS-2
OLI-2 Built ByBall Aerospace & Technology Corp.
TIRS-2 Built ByNASA Goddard Space Flight Center
Spectral Bands11 total (9 OLI-2 + 2 TIRS-2)
Daily Scene Count~750 scenes per day
Stereo ImagingNot available

Orbit & Mission

Orbit TypeSun-synchronous, near-polar
Altitude705 km (438 mi)
Inclination98.2°
Spacecraft Speed~16,760 mph
Repeat Cycle16 days solo; 8 days combined with Landsat 8
Design Life5 years; consumables rated for 10+ years
Launch DateSeptember 27, 2021
Launch Vehicle / SiteAtlas V401, Vandenberg Space Force Base
Sample Output

Landsat 9 Satellite Image Gallery

Capabilities

Key Features and Benefits of the Landsat 9 Satellite

  • Cost-Effective, Open DataLandsat 9 satellite imagery is available under a Creative Commons-like license, ideal for public, commercial, and academic use.
  • Wide Swath, Frequent RevisitA 185km swath and 16-day cycle, improving to 8 days when combined with Landsat 8, delivers repeatable coverage for global change detection.
  • Improved Thermal SensingTIRS-2 reduces stray light contamination and improves cloud detection compared to the sensor flown on Landsat 8.
  • Part of a 50+ Year ArchiveContinuity with the full Landsat program record supports long-term research and policy planning back to 1972.
Why XRTech Group

End-to-End Support to Download Landsat 9 Images

Expert Consultation

Our geospatial specialists help you choose the right Landsat 9 bands and resolution tier for your analysis.

Rapid Delivery

Direct access to a 130+ satellite constellation network, including the ongoing Landsat 9 archive, for faster turnaround.

Seamless Integration

Landsat 9 images delivered in industry-standard formats, ready for your GIS, CAD, or modeling workflow.

Frequently Asked Questions

Common Questions About the Landsat 9 Satellite

When was Landsat 9 launched?

Landsat 9 launched on September 27, 2021, from Vandenberg Space Force Base in California aboard a United Launch Alliance Atlas V401 rocket.

What is the resolution of Landsat 9?

15m for the panchromatic Band 8, 30m for the multispectral OLI-2 bands, and 100m for the native thermal TIRS-2 bands, resampled to 30m for delivery.

How many Landsat 9 bands are there?

11 total: nine bands from the OLI-2 instrument (coastal aerosol through cirrus) and two thermal bands from TIRS-2.

Is Landsat 9 satellite data free to use?

Yes. Landsat 9 imagery is available under an open, Creative Commons-like license, suitable for public, commercial, and academic use.

How do I download Landsat 9 images for my area of interest?

XRTech Group sources, processes, and delivers Landsat 9 images matched to your AOI, date range, and preferred bands, in analysis-ready formats for GIS and remote sensing software.

Ready to View and Download Landsat 9 Images?

Talk to our geospatial team about band selection, resolution needs, and delivery for your area of interest.

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