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Data for two long wavelength infrared bands will be collected with TIRS. This provides data continuity with Landsat 7's single thermal infrared band and adds a second. With TIRS being a late addition to the Landsat 8 satellite, the design life requirement was relaxed in order to expedite development of the sensor.
Landsat 8 is the successor to Landsat 7 and was ... Band 7: SWIR 2: 2.11 - 2.29 μm: 30 m Band 8: Panchromatic (PAN) ... Band 8 is helpful in creating images with ...
Landsat 8/9 and Landsat Next spectral band comparison. Landsat 8 launched on 11 February 2013. It was launched on an Atlas V 401 from Vandenberg Air Force Base by the Launch Services Program. It will continue to obtain valuable data and imagery to be used in agriculture, education, business, science, and government.
Landsat 8 and Landsat-9 also acquires thermal data in two 10 and 11 bands from Thermal Infrared Sensor (TIRS). [ 18 ] Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) utilizes a unique combination of wide spectral coverage and high spatial resolution in the visible near-infrared through shortwave infrared to the thermal ...
Within the 13 bands, the 10 m (33 ft) spatial resolution allows for continued collaboration with the SPOT-5 and Landsat-8 missions, ... Band 12 – SWIR 2202.4 175 2185.7
In the case of Landsat satellites, several different band designations have been used, with as many as 11 bands comprising a multispectral image. [ 17 ] [ 18 ] [ 19 ] Spectral imaging with a higher radiometric resolution (involving hundreds or thousands of bands), finer spectral resolution (involving smaller bands), or wider spectral coverage ...
Band Label Wavelength Resolution (m) Nadir or backward Description B1 VNIR_Band1 0.520 - 0.60 15 Nadir Visible green/yellow B2 VNIR_Band2 0.630 - 0.690 15 Nadir Visible red B3N VNIR_Band3N 0.760–0.860 15 Nadir Near infrared B3B VNIR_Band3B 0.760–0.860 15 Backward B4 SWIR_Band4 1.600–1.700 30 Nadir Short-wave infrared B5 SWIR_Band5
Landsat Program: Landsat 5-8 Operational Land Imager (OLI) [5] Developed by Ball Aerospace & Technologies Corporation, the OLI is a crucial aspect of modern LandSat vehicles. Using 7000 sensors per band (Spectrum band), the OLI on NASA's most recent LandSat (LANDSAT 8) Satellite, will image/view the entire earth every 16 days.