Uploaded August 2022 | Updated September 2026, 9 hours ago
On July 26, in a clean room at the Northrop Grumman facility in Gilbert, Arizona, NOAA’s JPSS-2 satellite let out several loud pops as each of the five panels of its solar array detached from the body of the satellite and then unfolded, stretching out to its full 30-foot length. Under each panel, an engineer clad in a bunny suit flashed a thumbs up as latches clicked into place.
The deployment of the solar array, which had been installed three days earlier, marked the last major testing milestone of the weather satellite. JPSS-2 has now been boxed up and will be shipped to the Vandenberg Space Force Base in California for its Nov. 1 launch. The next time the solar array deploys will be in space.
“This is a culmination of seven years of work on this program,” said Scott Capehart, Joint Polar Satellite System program director at Northrop Grumman Corporation, where the spacecraft is built and tested. “Its success establishes that we’re ready for launch.”
Once launched, the JPSS-2 satellite, like its predecessors Suomi-NPP and NOAA-20, will race around Earth from pole to pole, taking measurements and snapping images that help us plan for hurricanes, snowstorms, floods, and other severe weather. The satellite will feed critical data to global weather forecast models.
“During stressful times, like running into an issue at the end of a long overnight shift, I always come back to the impact that JPSS-2 will have,” said Adelina Nastasoiu, an instrument systems engineer at Northrop Grumman. “The weather models it’s going to affect, the lives it’s going to save, and that it shares data freely with the entire world.”
JPSS-2 will also measure our oceans and atmosphere, map and monitor volcanoes and wildfires and tell us about the things that fill our air and lungs, like dust and smoke. Because of its wide swath, it will observe every spot on Earth at least twice a day.
In the clean room in Gilbert, the satellite sat upright, mounted on a rack on wheels. Multi-layered insulation resembling gold tinfoil blanketed the body of the spacecraft. Covers with “Remove before flight” signs protected each of its four instruments.
About 20 feet away, engineers checked connections and voltage on the spacecraft for JPSS-3, the next satellite in line to launch. And packed in boxes and stacked on wire shelves at the back of the clean room were the parts for JPSS-4, the final satellite in the JPSS series. Combined, the three satellites are expected to provide data into the 2030s.
Together, NASA and NOAA oversee the development, launch, testing, and operation of all the satellites in the JPSS program. NOAA funds and manages the program, operations, and data products. On behalf of NOAA, NASA develops and builds the instruments, spacecraft, and ground system, and launches the satellites, which NOAA operates.
On July 26, in a clean room at the Northrop Grumman facility in Gilbert, Arizona, NOAA’s JPSS-2 satellite let out several loud pops as each of the five panels of its solar array detached from the body of the satellite and then unfolded, stretching out to its full 30-foot length. Under each panel, an engineer clad in a bunny suit flashed a thumbs up as latches clicked into place.
The deployment of the solar array, which had been installed three days earlier, marked the last major testing milestone of the weather satellite. JPSS-2 has now been boxed up and will be shipped to the Vandenberg Space Force Base in California for its Nov. 1 launch. The next time the solar array deploys will be in space.
“This is a culmination of seven years of work on this program,” said Scott Capehart, Joint Polar Satellite System program director at Northrop Grumman Corporation, where the spacecraft is built and tested. “Its success establishes that we’re ready for launch.”
Once launched, the JPSS-2 satellite, like its predecessors Suomi-NPP and NOAA-20, will race around Earth from pole to pole, taking measurements and snapping images that help us plan for hurricanes, snowstorms, floods, and other severe weather. The satellite will feed critical data to global weather forecast models.
“During stressful times, like running into an issue at the end of a long overnight shift, I always come back to the impact that JPSS-2 will have,” said Adelina Nastasoiu, an instrument systems engineer at Northrop Grumman. “The weather models it’s going to affect, the lives it’s going to save, and that it shares data freely with the entire world.”
JPSS-2 will also measure our oceans and atmosphere, map and monitor volcanoes and wildfires and tell us about the things that fill our air and lungs, like dust and smoke. Because of its wide swath, it will observe every spot on Earth at least twice a day.
In the clean room in Gilbert, the satellite sat upright, mounted on a rack on wheels. Multi-layered insulation resembling gold tinfoil blanketed the body of the spacecraft. Covers with “Remove before flight” signs protected each of its four instruments.
About 20 feet away, engineers checked connections and voltage on the spacecraft for JPSS-3, the next satellite in line to launch. And packed in boxes and stacked on wire shelves at the back of the clean room were the parts for JPSS-4, the final satellite in the JPSS series. Combined, the three satellites are expected to provide data into the 2030s.
Together, NASA and NOAA oversee the development, launch, testing, and operation of all the satellites in the JPSS program. NOAA funds and manages the program, operations, and data products. On behalf of NOAA, NASA develops and builds the instruments, spacecraft, and ground system, and launches the satellites, which NOAA operates.
![Smoke From Canadian Wildfires Blankets U.S.
NOAA satellites are monitoring more than 400 fires currently burning across Canada after unusually hot and dry weather triggered an early and intense start to the wildfire season. Canada is on track to have the worst wildfire season on record.
Earlier last month, smoke from wildfires burning in Alberta and British Columbia produced a smoky haze that moved across New England. Last week, smoke from wildfires in Nova Scotia was seen moving over the area as well. This week, even more thick smoke from fires burning in Ontario and Quebec is blowing over the eastern and central U.S. much lower to the surface, triggering air quality alerts throughout those regions.
Read more:
https://www.nesdis.noaa.gov/news/smoke-canadian-wildfires-blankets-us
Credits:
NOAA
NASA
CIRA
Music:
“Computer Age” by Timo Marc Baker [PRS]; BBC Production Music; Universal Production Music Smoke From Canadian Wildfires Blankets U.S.](https://i.ytimg.com/vi/9iEamkj0C-8/mqdefault.jpg)
![NOAA Satellites Help Us Prepare for Severe Weather
Spring is on the horizon. With the promise of warmer temperatures and blooming flowers also comes an increased risk of severe weather. NOAA’s geostationary (GOES East and GOES West) and polar-orbiting (Suomi NPP and NOAA-20) satellites monitor the changing weather patterns that come with the transition from winter to spring.
As the potential for severe thunderstorms, hail, tornadoes, dangerous lightning, and flooding increases, NOAA satellites work together to provide critical data for weather forecasts and severe weather warnings. They also aid emergency responders to help keep our communities safe.
March 6–10, 2023, is Severe Weather Preparedness Week.
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Read more:
https://www.nesdis.noaa.gov/news/noaa-satellites-help-us-prepare-severe-weather
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Credits:
NOAA
NASA
CIRA
Flood map imagery courtesy of SSEC.
Music:
“Supermoon” by Leo Tate [PRS]; Freshworx Music Limited; Universal Production Music NOAA Satellites Help Us Prepare for Severe Weather](https://i.ytimg.com/vi/9r0tnOhwDXE/mqdefault.jpg)
![Earth from Orbit: Rope Clouds
On Jan. 25, 2023, NOAA satellites captured an unusually long and long-lived rope cloud produced by a cold front over the Gulf of Mexico.
A rope cloud is a very long, narrow, rope-like band of cumulus cloud formations. Generally associated with a cold front or a land-sea breeze front, rope clouds tend to form at the dividing line between cooler and warmer air.
Read more:
https://www.nesdis.noaa.gov/news/earth-orbit-rope-clouds
Video Credits:
NOAA
NASA/Goddard Space Flight Center
CIRA
Music: “The Wilderness” by Benjamin James Parsons [PRS]; Sound Pocket Music; Universal Production Music Earth from Orbit: Rope Clouds](https://i.ytimg.com/vi/AXiCamQHuys/mqdefault.jpg)

![Earth from Orbit: When Lightning Strikes
Lightning is a major public safety threat. It can strike at any time, but it is most common in the summer months. Lightning kills about 20 people each year in the United States and hundreds more are injured.
Recent severe thunderstorm activity has highlighted the dangers associated with lightning strikes. In the span of less than a week in early August, lightning led to several injuries and fatalities.
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Credits:
NOAA
NASA Goddard Space Flight Center
CIRA
Additional imagery courtesy of CIMSS
Music: “Aurora Dance” by Ervin Trofimov [SACEM]; Universal Production Music Earth from Orbit: When Lightning Strikes](https://i.ytimg.com/vi/AvzDc-zqd-I/mqdefault.jpg)



![Tropical Cyclone Freddy Breaks Records before Lashing Madagascar
Around 7:20 p.m. local time on February 21, 2023, Tropical Cyclone Freddy made landfall on the eastern coast of Madagascar 18 miles north of the town of Mananjary. It was the first land the storm encountered after traveling more than 4,000 miles across the Indian Ocean since forming on February 5 near Indonesia. So far, the destructive storm has not only battered the island with a dangerous storm surge, torrential rains, and destructive winds, but it has also killed five people. Prior to reaching Madagascar, the storm also caused some flooding and minor damage on the islands of Mauritius and La Reunion as it passed to the north.
Credits:
NOAA
NASA
CIRA
Meteosat-9 imagery courtesy of EUMETSAT.
Music: “Unraveling” by Maksim Tyutmanov [PRS]; Score Addiction; Universal Production Music Tropical Cyclone Freddy Breaks Records before Lashing Madagascar](https://i.ytimg.com/vi/BRTLzh4FAxU/mqdefault.jpg)
![NOAA Satellites Monitor Massive Winter Storm
From its origins over the Pacific Ocean on Jan. 21, and throughout its impacts on the central and eastern United States from Jan 24–26, 2026, NOAA satellites closely monitored a massive winter storm that swept across the United States, and brought heavy snow, ice, and dangerous cold.
Read more: https://www.nesdis.noaa.gov/news/noaa-satellites-monitor-massive-winter-storm
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Credits:
NOAA
NASA
The Cooperative Institute for Research in the Atmosphere (CIRA)
Additional Satellite Imagery Courtesy of CIMSS
Music:
“Formulas and Equations” by Richard Andrew Canavan [PRS]; Sound Pocket Music; Universal Production Music NOAA Satellites Monitor Massive Winter Storm](https://i.ytimg.com/vi/BmZOwv6qlh8/mqdefault.jpg)
