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Date himawari 8 came online

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Himawari 8 (ひまわり8号) is a Japanese weather satellite, the 8th of the Himawari geostationary weather satellites operated by the Japan Meteorological Agency. The spacecraft was constructed by Mitsubishi Electric with assistance from Boeing, and is the first of two similar satellites to be based on the  See more  · The Himawari-8 Real-time Web is an application via big-data technologies developed by the NICT Science Cloud project in NICT (National Institute of Information and East-west station keeping maneuver for Himawari-8 on 22 September, An east-west station-keeping maneuver for Himawari-8 is scheduled from UTC on 22 September, Imagery courtesy of the Japanese Meteorological Agency. Selected Himawari-8 sectors of interest are available below, but every pixel of Himawari-8 imagery is available in SLIDER. Himawari-8 Live Satellite Imagery Portal. Launching History in the 21st Century. Credit: Lee Brandon-Cremer YouTube Channel. West Pacific Wide-View Imagery. Visible. Channel 4: ... read more

Calibration of the visible bands of the AHI on 22 June, East-west station keeping maneuver for Himawari-8 on 17 June, East-west station keeping maneuver for Himawari-8 on 16 June, North-south station keeping maneuver for Himawari-8 on 13 June, Calibration of the visible bands of the AHI on 7 June, East-west station keeping maneuver for Himawari-8 on 3 June, East-west station keeping maneuver for Himawari-8 on 2 June, North-south station keeping maneuver for Himawari-8 on 30 May, Calibration of the visible bands of the AHI on 22 May, East-west station keeping maneuver for Himawari-8 on 19 May, North-south station keeping maneuver for Himawari-8 on 16 May, Calibration of the visible bands of the AHI on 7 May, East-west station keeping maneuver for Himawari-8 on 6 May, East-west station keeping maneuver for Himawari-8 on 5 May, North-south station keeping maneuver for Himawari-8 on 2 May, Calibration of the visible bands of the AHI on 22 April, East-west station keeping maneuver for Himawari-8 on 22 April, East-west station keeping maneuver for Himawari-8 on 21 April, North-south station keeping maneuver for Himawari-8 on 18 April, East-west station keeping maneuver for Himawari-8 on 8 April, Calibration of the visible bands of the AHI on 7 April, East-west station keeping maneuver for Himawari-8 on 7 April, The maintenance of HimawariCast ground system on 5 April, North-south station keeping maneuver for Himawari-8 on 4 April, East-west station keeping maneuver for Himawari-8 on 25 March, East-west station keeping maneuver for Himawari-8 on 24 March, Calibration of the visible bands of the AHI on 22 March, North-south station keeping maneuver for Himawari-8 on 21 March, Japan AHI RGB Airmass HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info.

Japan AHI Band 7 Ash 3. Japan AHI Band 11 Ash 8. Marshall Islands Band 3 0. Marshall Islands Band 9 6. Marshall Islands Band 13 New Zealand AHI Natural Color HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info.

New Zealand AHI Fire Temperature HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info. New Zealand AHI RGB Airmass HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info. New Zealand AHI Band 7 Ash 3. New Zealand AHI Band 11 Ash 8. North Pacific AHI Natural Color HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info.

North Pacific Band 3 0. North Pacific Band 13 North Pacific AHI Band 7 Ash 3. North Pacific AHI Band 11 Ash 8. Philippines AHI Geocolor HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info. Philippines Band 7 3. Philippines Band 8 6. Philippines Band 10 7. Philippines Band 13 South Pacific Islands AHI Natural Color HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info. South Pacific Islands AHI RGB Airmass HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info. Southeast Asia AHI Fire Temperature HTML5 Loop Latest Image 4 Wk Archive Pop-up Loop Product Info.

Southeast Asia Band 3 0. Southeast Asia Band 7 3. Southeast Asia Band 13 Tropics Band 3 0. Tropics Band 9 6. Tropics Band 7 3. Tropics Band 8 6. Tropics Band 10 7. Tropics Band 13 PRECIP Band 3 0. PRECIP Band 9 6. PRECIP Band 13 Site Map - Experimental Products Disclaimer. Privacy Policy - Disclaimer - Information Quality. US Dept of Commerce - NOAA - NESDIS - STAR - CoRP. Problems or questions?

Contact the webmaster. This page verifies as: XHTML , CSS , Section The performance of the AHI on board Himawari-8 is evaluated in ground testing. The test results, including data on the center wavelength, bandwidth, bits, SNR, dynamic range, radiometric calibration accuracy, internal calibration target ICT emissivity and out-of-band response, can be accessed via the following link:.

Himawari-8 and -9 AHI scanning is conducted in the categories of Full Disk whole-earth images , Japan Areas Regions 1 and 2 , Target Area Region 3 and Landmark Areas Regions 4 and 5. The Full Disk and Japan Area scan ranges are fixed, while those for Target Area and Landmark Area scanning are set in prompt response to changes in meteorological conditions.

Landmark Area scanning data are used only for Himawari-8 navigation, and are not intended for use as satellite products. JMA plans to use Region 5 for observation of rapidly developing cumulonimbus cloud enabling provision of data to users. Each minute period incorporates one Full Disk scan, four Japan Area and Target Area scans, and twenty scans for each Landmark Area. This minute sequence is a basic unit of the observation schedule timeline.

Himawari-8 and Himawari-9 have a new payload called the Advanced Himawari Imager AHI for dedicated meteorological mission. Table 1 shows the AHI observation bands. The functions and specifications are notably improved from those of the imagers on board MTSATs, and the AHI contributes to better nowcasting, improved numerical weather prediction accuracy and enhanced environmental monitoring.

Color images are derived by compositing three visible band blue: 0. The figures below show the SRFs Spectral Response Functions of the AHIs on board Himawari-8 as of September and -9 as of October Microsoft Excel workbooks zip files of the SRFs for AHIs on Himawari-8 and -9 can also be downloaded from the hyperlinks below. The performance of the AHI on board Himawari-8 is evaluated in ground testing.

The test results, including data on the center wavelength, bandwidth, bits, SNR, dynamic range, radiometric calibration accuracy, internal calibration target ICT emissivity and out-of-band response, can be accessed via the following link:. Himawari-8 and -9 AHI scanning is conducted in the categories of Full Disk whole-earth images , Japan Areas Regions 1 and 2 , Target Area Region 3 and Landmark Areas Regions 4 and 5.

The Full Disk and Japan Area scan ranges are fixed, while those for Target Area and Landmark Area scanning are set in prompt response to changes in meteorological conditions. Landmark Area scanning data are used only for Himawari-8 navigation, and are not intended for use as satellite products.

JMA plans to use Region 5 for observation of rapidly developing cumulonimbus cloud enabling provision of data to users. Each minute period incorporates one Full Disk scan, four Japan Area and Target Area scans, and twenty scans for each Landmark Area.

This minute sequence is a basic unit of the observation schedule timeline. In Himawari-8 and -9 baseline observations, the timeline is repeated every 10 minutes except during housekeeping operation. The following animation shows the concept of the AHI observation sequence on a minute timeline:. The AHI unit to be installed on the Himawari-8 satellite is under manufacture. Photos © ITT Exelis. Your browser does not support the video tag. Figure 2: AHI observation sequence within a minute time frame Click figure to enlarge.

Figure 3: Coverage of the Japan Area Subject to slight changes based on the results of in-orbit testing after launch. Observations per timeline Time cycle [min. Observation area Band number see Table 1 Spatial resolution at SSP sub satellite point [km] Numbers of pixels East-west direction North-south direction Full Disk 3 0.

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Himawari-8 Operational Schedule,Latest commit

Himawari8 Visualizer. This repository provides some handy tools to visualize the Himawari-8 data.. Examples. Aerosol optical thickness at east Asia. Download Himawari-8 Loop of Interest - History. - Dust plume revealed in Mongolia - Visible (left) and Dust RGB (right) - HTML5 Loop | Animated GIF | MP4 Video. - Dust Himawari 8 (ひまわり8号) is a Japanese weather satellite, the 8th of the Himawari geostationary weather satellites operated by the Japan Meteorological Agency. The spacecraft was constructed by Mitsubishi Electric with assistance from Boeing, and is the first of two similar satellites to be based on the  See more East-west station keeping maneuver for Himawari-8 on 22 September, An east-west station-keeping maneuver for Himawari-8 is scheduled from UTC on 22 September,  · The Himawari-8 Real-time Web is an application via big-data technologies developed by the NICT Science Cloud project in NICT (National Institute of Information and himawari-8/full_disk_ahi_true_color. Below are the available images for this product, sorted in reverse chronological order (newest images are first). By default, the first 12 images are ... read more

Indonesia Band 3 0. East-west station keeping maneuver for Himawari-8 on 25 August, Retrieved 27 May The Full Disk and Japan Area scan ranges are fixed, while those for Target Area and Landmark Area scanning are set in prompt response to changes in meteorological conditions. MIT license. North Pacific AHI Band 7 Ash 3. Payloads deployed from other spacecraft are enclosed in parentheses.

PRECIP Band 13 The Full Disk and Japan Area scan ranges are fixed, while those for Target Area and Landmark Area scanning are set in prompt response to changes in meteorological conditions. East-west station keeping maneuver for Himawari-8 on 28 January, The figures below show date himawari 8 came online SRFs Spectral Response Functions of the AHIs on board Himawari-8 as of September and -9 as of October North-south station keeping maneuver for Himawari-8 on 25 July,

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