As Space Coast skies faded into night, United Launch Alliance launched their Vulcan-Centaur rocket from Space Launch Complex-41 at 7:59 PM Eastern Time, carrying the classified USSF-106 mission for the U.S. Space Force. The evening launch, near the end of the one-hour window, was a successful return for the vehicle after its near-catastrophic solid rocket failure in its last launch in October, 2024.
United Launch Alliance’s Vulcan lifts off carrying the USSF-106 mission from Cape Canaveral Space Force Station on August 12, 2025 Photo: Charles Boyer ./ Talk of Titusville
United Launch Alliance (ULA) launched its Vulcan-Centaur rocket from LC-41 at Cape Canaveral Space Force Station carrying the the USSF‑106 mission Tuesday night. Liftoff was at 8:56 PM ET, close to the end of the launch window and into partly cloudy skies, as the usual summer storms were mostly west of the Cape and far away enough to present no problem for the launch team.
This was Vulcan-Centaur’s first operational mission and the first national security payload to utilize its services, a milestone ULA has been working toward since 2014. ULA has faced scrutiny over Vulcan, with military officials calling for more reliability and accountability as the company shifts gearsto its new fleet. There are no more Delta-family launches left, and a dwindling number of Atlas-V launches, most of which are planned for Amazon’s Kuiper Project as well as the Boeing Starliner program.
The DoD awarded ULA a multibillion‑dollar contract in April 2025, securing 19 missions through 2034 under the NSSL Phase 2 procurement. Having completed its certification for National Security Space Launch (NSSL) missions, Vulcan-Centaur and ULA join SpaceX as one of only two providers cleared to carry critical U.S. military and intelligence assets.
“National security begins at liftoff,” said Gary Wentz, ULA vice president of Government and Commercial Programs. “Vulcan did exactly what it was built to do: deliver a critical mission with power, precision and confidence. We are proud to play a role in strengthening the nation’s space capabilities.”
A closeup of ULA’s Vulcan-Centaur leaping off of the launch pad on August 12, 2025. Photo: Charles Boyer / Talk of Titusville
Two methane‑fueled Blue Origin BE‑4 engines power Vulcan Centaur’s core stage, and for this mission, it was equipped with four Northrop Grumman GEM 63XL solid rocket boosters. Two L3 Harris Rocketdyne RL‑10 engines power the second stage, making Vulcan-Centaur a powerful workhorse for the company as it moves into the future.
Payload
The centerpiece of USSF‑106 is the Navigation Technology Satellite‑3 (NTS‑3) a pioneering PNT (position, navigation, and timing) satellite developed by the Air Force Research Laboratory. It’s the first experimental navigation satellite launched by the U.S. military in nearly half a century—a milestone with huge implications for future secure and adaptive navigation systems.
Also aboard USSF-106 was another undisclosed payload, and requests to the Space Force for any additional information were not granted. That’s the nature of classified payloads, and the fewer questions asked the better.
A partial view of NTS-3, provided by the US Space Force and L3-Harris
More information on the satellite can be found in this video:
Next Launch
Falcon 9 Block 5 | Starlink Group 10-20 Mission Details
Mission
Falcon 9 Block 5 | Starlink Group 10-20
Organization
SpaceX
Location
Cape Canaveral SFS, FL, USA
Rocket
Falcon 9 Block 5
Pad
Space Launch Complex 40
Status
Go for Launch
Status Info
Current T-0 confirmed by official or reliable sources.
Window Opens
Thursday, 08/14/2025 6:47 AM EDT
Window Closes
Thursday, 08/14/2025 10:47 AM EDT
Destination
Low Earth Orbit
Mission Description
A batch of 28 satellites for the Starlink mega-constellation—SpaceX’s project for a space-based Internet communication system.
Information current as of: August 12, 2025 (based on latest verified sources)
Launch dates and liftoff times are subject to change at any time.
ULA’s next launch is the third Atlas mission for Amazon’s Project Kuiper, Kuiper 3, which will launch from Cape Canaveral Space Force Station, Florida. That could occur in 4-6 weeks according to unofficial estimates.
United Launch Alliance (ULA) is gearing up for a Vulcan launch tonight from SLC-41, USSF-106. Liftoff is set between 7:59 and 8:59 p.m. Eastern Daylight Time (2359–0059 UTC). And, if weather and timing permits, the launch may come with a bonus: a jellyfish plume, one of the most spectacular sights a launch spectator can see.
The weather looks favorable, with an 80% chance of conditions being acceptable through the launch window. The primary concerns include cumulus clouds, lightning potential, and surface electric fields. This is of course a common scenario for late-afternoon summer launches on the Space Coast. Final launch preparations by ULA and the Space Force, including the launch vehicle readiness review, are complete and “GO” for tonight.
Launch Time Is Near Local Sunset
If the skies cooperate and if the timing is just right, one of tonight’s most awe-inducing side effects could be a “space jellyfish”, a glowing, jellyfish-shaped plume formed by sunlight illuminating rocket exhaust at high altitude, while the ground below remains in twilight or darkness.
Here’s how it works:
Timing is critical: Launching during twilight means the rocket ascends into sunlight while observers are in shadow. That’s because on the ground, the sun is below the horizon but is still visible in the ultra high altitudes a rocket travels through on its way to space. That’s simple geometry: the angle to the horizon is different for the rocket.
Clear Skies: If low clouds are between the spectator and the rocket, they won’t see much.
High-altitude expansion: If you have seen only a few launches, you probably remember the phase towards the end of the first stage’s part of the flight where gases spread into a broad, diffuse cloud that forms a conical shape behind the rocket. This is not the Max-Q contrail, something common to most rockets, instead, it happens very high in the sky when the rocket’s is mostly outside of Earth’s atmosphere.
Optical spectacle: Because it is still in sunlight, the rocket plume is an illuminated cloud that takes on a jellyfish-like shapes, maybe with tendrils trailing behind, formed by thinner exhaust streams.
Darkness: the relative contrast between the ground and the sky makes this phenomenon highly visible to launch spectators.
Details
Vulcan VC4S | USSF-106 Mission Details
Mission
Vulcan VC4S | USSF-106
Organization
United Launch Alliance
Location
Cape Canaveral SFS, FL, USA
Rocket
Vulcan VC4S
Pad
Space Launch Complex 41
Status
Go for Launch
Status Info
Current T-0 confirmed by official or reliable sources.
Window Opens
Tuesday, 08/12/2025 7:59 PM EDT
Window Closes
Tuesday, 08/12/2025 8:59 PM EDT
Destination
Geosynchronous Orbit
Mission Description
USSF-106 is a mission for the United States Space Force deploying payloads—including NTS-3 (Navigation Technology Satellite 3), a demonstrator of a reprogrammable navigation signal generator—directly into GEO.
Information current as of: August 11, 2025, 12:00 PM EDT
Launch dates and liftoff times are subject to change at any time.
Trajectory
Slightly south from due East:
Weather
The 45th Weather Squadron of Space Launch Delta 45 estimates an 80% chance of acceptable launch conditions throughout the hour-long window:
Online Viewing
ULA will have a livestream of the launch on their website: USSF-106.
Spaceflight Now will have coverage of the launch starting about one hour before liftoff on Youtube: link
For official updates regarding launch times, ULA’s website is the best source of information. Look for the Live Updates section: USSF-106
Remember that there is a delay between a launch stream and the actual countdown clock. That is simply because of physics: it takes time for the signal to travel from the launch site, through the Internet, and back down to your phone, resulting in a five to fifteen-second delay.
Next Space Flight an app for iOS and Android phones, has a real-time countdown clock that is accurate to a second, give or take. The app is free. Search the App Store or Google Play. They are also on the web: nextspaceflight.com.
Launch Viewing: In Person
The best free options are available for spectators: Titusville parks on Washington Avenu / US-1 are your best bets: Space View Park, Sands Park, Rotary Riverfront Park, Kennedy Point Park, etc. Jetty Park is also good, as are the pullouts on 528W near the Banana River Bridge.
The Space Bar will be open through the launch window. Restaurants in Port Canaveral, specifically Gators Dockside, Fishlips and Grills Seafood should have good views after the rocket clears obstructions.
ULA’s Vulcan with the USSF-106 mission on the launch pad. Photo: Charles Boyer / Talk of Titusville
United Launch Alliance (ULA) is preparing to launch Vulcan on its first national security mission early next week from SLC-41 at Cape Canaveral Space Force Station. Scheduled for Tuesday, August 12, the USSF-106 mission will lift off from Cape Canaveral’s Space Launch Complex 41, carrying the U.S. Space Force’s Navigation Technology Satellite-3 (NTS-3) into geosynchronous orbit.
Current T-0 confirmed by official or reliable sources.
Window Opens
Tuesday, 08/12/2025 7:59 PM EDT
Window Closes
Tuesday, 08/12/2025 8:59 PM EDT
Destination
Geosynchronous Orbit (GEO)
Mission Description
USSF-106 is a U.S. Space Force mission deploying multiple payloads—including the NTS-3 (Navigation Technology Satellite 3), a demonstration satellite testing a reprogrammable digital signal generator to improve navigation resilience—directly into GEO using the new Vulcan Centaur VC4S rocket.
Information current as of: August 10, 2025, 11:54 AM EDT
Launch dates and liftoff times are subject to change at any time.
USSF-106 will be Vulcan’s first operational flight, a milestone years in the making. ULA started work on the Vulcan family of rockets in 2014, and later the same year decided to use Blue Origin’s BE-4 methane-oxygen (methalox) engines. The decision was somewhat controversial at the time, given that Blue had not completed the final design of BE-4 much less started producing them at scale. It is ULA’s first rocket that the company has designed completely by itself.
This decision was a result of a way to move away from reliance on Russian RD-180 engines, which powered ULA’s Atlas V, and to ensure a domestically produced alternative for national security launches, and was mandated by Congress.
High Stakes for ULA
The mission is a key test not only of the rocket’s technical reliability but also of ULA’s ability to deliver on commitments that have been delayed by the vehicle’s troubled rollout. Military leaders, including Major General Stephen G. Purdy, have voiced frustration with setbacks that pushed back four major national security missions.
Vulcan CERT-2, midflight. Photo: Charles Boyer / Talk of Titusville
For ULA, this launch is more than just another flight; it is a chance to restore customer confidence after the near-disaster of Vulcan’s second certification mission last October. That launch succeeded in reaching orbit, but only after a solid rocket booster nozzle broke off mid-flight, causing asymmetric thrust that had to be corrected in real time by the in-flight software and by ground controllers. The incident raised concerns about the Vulcan’s Northrup Grumman-built GEM 63XL solid rocket motors, which lead to months of investigation and a test firing before certification for Vulcan was granted in March.
ULA holds a $5.3 billion contract to provide launch services through 2034, a lucrative and strategically important deal that depends on consistent, fault-free performance. A successful USSF-106 flight would help Vulcan’s place as a major part of the nation’s launch capability. A failure would put the company’s reputation and perhaps even government contracts in peril.
Photo: Charles Boyer / Talk of Titusville
Payload
The mission’s payload, NTS-3, is an experimental navigation satellite designed to test advanced technologies designed to augment the GPS system.
The Air Force Research Lab released this video describing NTS-3:
Artist’s concept for NTS-3 in geostationary orbit. L3Harris Corporation will integrate NTS-3 using Northrop Grumman’s ESPAStar bus, building on EAGLE’s flight heritage. Graphic Credit: 1st Lt. Jacob Lutz
The small shower that soaked SpaceX’s Falcon 9 during the last two minutes of the terminal count today at the Cape. They will try again tomorrow. Photo: Charles Boyer / Talk of Titusville
A popup shower over the launch pad soaked another SpaceX launch at the last minute today, forcing a scrub of their launch of Falcon 9 carrying the Kuiper KF-02 mission from Space Launch Complex 40 with about 29 seconds remaining before liftoff. The company online announced that it will try again tomorrow. Lather, rinse, repeat.
This scrub was a near repeat of the Jul 31st attempt to launch Crew 11 from LC-39A up at Kennedy: everything was great until it wasn’t. Both launch attempts ended abruptly, as the scrubs came with only seconds remaining on the countdown clock.
Because SpaceX uses densified propellants, once the rocket is fueled, it must launch — or not — on time. If it doesn’t, the launch is scrubbed, and the rocket is defueled for the day.
Summers are like that on the Space Coast. A single cloud can pop up at any time and stop a countdown. Locals shrug and go about their day, but tourists cross their fingers and hope that their luck holds out. Today it didn’t.
Captain James A. “Jim” Lovell Jr., the NASA astronaut who commanded the the Apollo 13 mission and became a symbol of courage and ingenuity, died Thursday at the age of 97 in Lake Forest, Illinois. Lovell’s death was confirmed by family members.
Born March 25, 1928, in Cleveland, Ohio, Lovell logged more than 700 hours in space over four missions. His calm under pressure during Apollo 13—immortalized by the phrase “Houston, we’ve had a problem”—cemented his place in history. Lovell was, as one former NASA engineer told us, “a cool customer.”
Captain James A. “Jim” Lovell Jr., the NASA astronaut who commanded the the Apollo 13 mission and became a symbol of courage and ingenuity, died Thursday at the age of 97 in Lake Forest, Illinois. Lovell’s death was confirmed by family members.
Born March 25, 1928, in Cleveland, Ohio, Lovell logged more than 700 hours in space over four missions. His calm under pressure during Apollo 13—immortalized by the phrase “Houston, we’ve had a problem”—cemented his place in history. Lovell was, as one former NASA engineer told us, “a cool customer.”
While he and his family were never Space Coast residents, Lovell still had deep connections to the area, dating back to the mid-1960s when, as a member of NASA’s “Next Nine” astronaut class.
His first mission, Gemini 7 in 1965, launched from Cape Canaveral’s Launch Complex 19, set a then-record for space endurance. More importantly, GEmini 7 was part of the first orbital rendezvous between two crewed spacecraft. Gemini 6A, piloted by Wally Schirra and Tom Stafford, and Gemini 7 achieved an orbital rendezvous.
Many overlook the importance of Gemini 7 and 6A: they proved NASA’s capability to calculate and coordinate two spacecraft in flight, and therefore that the Apollo capsule (CSM) and lander (LM) could rendezvous and dock. While today, those maneuvers are a routine part of any crewed mission, the two Gemini flights were the first actually to do it. And that with mid-1960’s computing power, meaning that the calculations were largely done by hand and that at great pace.
The Gemini 7 Astronauts: Jim Lovell, left, and Frank Borman, right.
Photo: NASA
Lovell would return to Florida’s coast for the launch of Gemini 12 in 1966. The last flight of the Gemini program, he commanded the mission with Edwin “Buzz” Aldrin as his co-pilot. The pair rendezvoused and docked with a target vehicle, and that mission served to further NASA’s and America’s confidence in the spaceflight capabilities of their program.
While those flights were record-breaking, Lovell’s best-known flights were on Apollo 8 in 1968—the first human flight around the Moon, and later, Apollo 13. Gemini proved that Lovell was a cool customer and an incredible space jockey, but the Apollo flights turned him into a legendary hero.
On Apollo 8, Lovell served as the Command Module Pilot. Apollo 8 was a daring mission: the first crewed mission to leave Earth orbit, the first humans to escape Earth’s gravity, the first to orbit another celestial body, and at the time, the farthest humans had ever traveled away from their home planet. Apollo 8 also set a record for re-entry speed after completing its mission. Jim Lovell drove.
Launched from Kennedy Space Center on December 21, 1968, the mission was a bold response to the Soviet Union’s lunar efforts. The Russian program was rumored to be preparing a circumlunar crewed Zond mission to beat NASA and the Americans to the moon, and snatching away another space record from America’s grasp. That would have been yet another coup for the Soviets and yet another crushing defeat for the United States on the global stage.
Four months before launch, Apollo 8’s mission plan was changed, and a lot of chips were pushed into the middle of the table by NASA and the Johnson administration.
With Commander Frank Borman focusing on overall mission leadership and Lunar Module Pilot Bill Anders focused on photography and scientific observations, Lovell’s primary responsibility was navigation and spacecraft systems management. His expertise was crucial in ensuring the spacecraft, Columbia, stayed on the correct trajectory during its unprecedented journey to lunar orbit. Lovell was in charge of getting Apollo 8 there and back.
During the mission, he handled much of the celestial navigation, using stars and onboard instruments to verify the spacecraft’s position and the accuracy of on-board computers. This was critical when Apollo 8 entered lunar orbit on December 24, 1968, becoming the first crewed spacecraft to do so. Shortly afterwards, they were the first humans to ever lay their eyes on the far side of the moon.
Lovell’s steady performance during complex orbital maneuvers gave mission control the confidence to execute the burns that allowed the crew to circle the Moon ten times. His navigational skill ensured the spacecraft maintained its proper course for both the lunar operations and the eventual return trip.
Lovell also served as the mission’s communicator within the crew, reading from the Book of Genesis during the Christmas Eve broadcast viewed by millions around the world.
When Apollo 8 successfully fired its engine to break free of lunar orbit on December 25 and head back to Earth, Lovell’s precision and calm professionalism played a vital role in ensuring the maneuver was executed flawlessly. Apollo 8’s success paved the way for the Moon landing just seven months later, and Lovell’s performance cemented his reputation as one of NASA’s most reliable and skilled astronauts.
Contemporary documentary of the Apollo 8 mission
As daring and accomplished as Apollo 8 was, it was eclipsed quickly by Apollo 11 and later, Apollo 13, but it should not be overlooked. Apollo 8 is probably the most daring spaceflight NASA has ever flown.
“I was asked to escort Charles Lindbergh to watch the launch of Apollo 11,” Jim Lovell once related, “As we listened to the countdown, I said, ‘Take a look at that Saturn V rocket. The spacecraft on top will try to land on the Moon.” But I could tell he was in deep thought, his mind elsewhere. I suspected he was thinking of his own voyage, that perilous 34-hour overwater flight from New York to Paris.”
“Suddenly he answered, “Apollo 11 will be quite an accomplishment. But your flight–Apollo 8– that initial 240,000-mile voyage from the Earth to the Moon. That’s the flight I will remember.”
Lovell and Lindbergh were two of a kind.
Apollo 13
Lovell is well known as the commander of Apollo 13, NASA’s third planned lunar landing mission. Launched from Kennedy Space Center on April 11, 1970, with Command Module Pilot Jack Swigert and Lunar Module Pilot Fred Haise, the crew’s primary objective was to land in the Fra Mauro highlands of the Moon. That was not to be.
The Apollo 13 Crew after successfully landing in 1970. Photo: NASA
Two days into the mission, an oxygen tank in the Service Module exploded, crippling the spacecraft. While the event was unfolding and all hell was breaking loose, Lovell’s calm voice relaying, “Houston, we’ve had a problem,” became an enduring symbol of composure under pressure. As commander, he was immediately responsible for diagnosing the situation alongside Mission Control and determining how to keep his crew alive with rapidly diminishing resources.
The explosion left the Command Module without enough power, heat, or oxygen to support the crew for the trip home, forcing Lovell, his crewmates and ground controllers to make quick, calculated decisions under extreme stress, all to keep Apollo 13’s capsule from turning into an icy tomb for the three astronauts. They did just that in what may be NASA’s finest hour. Lovell was front and center.
A photo of the damaged Apollo 13 Service Module after it was jettisoned before the capsule re-entered Earth’s atmosphere. Photo: NASA, Reprocessed by Andy Saunders.
One of his most critical calls was to use the Lunar Module, Aquarius, as a “lifeboat.” This shift required rerouting power, conserving water, and relying on limited life-support systems never designed for the full crew over such a long duration. Lovell coordinated with flight controllers in Houston to develop new procedures for navigation and course corrections, all while managing the psychological and physical strain on himself and his crew.
Perhaps Lovell’s most remarkable feat in space was his role in guiding Apollo 13’s manual course corrections. Without a functioning navigation computer in the Command Module, Lovell had to align the spacecraft using Earth’s position in the window and fire the Lunar Module’s descent engine at precise moments. These maneuvers, executed flawlessly, ensured the spacecraft stayed on a trajectory that would safely bring it back to Earth. The accuracy of these burns, given the limited tools available, remains one of the most celebrated acts of piloting in space history.
The Apollo 13 crew being interviewed in 1970 by Johnny Carson
By April 17, 1970, Lovell had successfully brought his crew home, splashing down safely in the Pacific Ocean. While Apollo 13 never landed on the Moon, the mission became known as a “successful failure” because of the safe return against all the odds.
Much of that success is credited to Lovell’s steady leadership, problem-solving skills, and ability to maintain composure under life-threatening conditions. His role in Apollo 13 is often cited as one of the finest examples of crisis management in the history of human spaceflight.
To be sure, everyone involved pitched in with every bit of their vigor and considerable skill, and Jim Lovell would have been the first to tell you that. In fact, he always did, showing hius stellar leadership long after Apollo 13.
After NASA
Lovell retired from NASA and the U.S. Navy in 1973, but he frequently returned to Florida for anniversaries, commemorations, and educational events. He co-authored Lost Moon: The Perilous Voyage of Apollo 13, which inspired the 1995 film Apollo 13. In later years, he appeared at Kennedy Space Center events to discuss the mission’s lessons in leadership and resilience as well as meeting members of an adoring public.
Lovell is survived by his four children: Barbara Harrison, James Lovell III, Susan Lovell, and Jeffrey Lovell, along with 11 grandchildren and 7 great-grandchildren. His wife Marilyn passed away in 2023.
Rocket Lab’s Electron lifts off. Photo: Charles Boyer / Talk of Titusville
Rocket Lab USA, Inc. reported another record quarter yesterday, posting $144.5 million in Q2 2025 revenue — up 36% year-over-year and above guidance. CEO Peter Beck credited strong demand for Electron launches, with five completed in the quarter, and new contracts with agencies including NASA and the European Space Agency.
This is of interest to more than investors, as it shows that there is a robust market for space services and hardware, something that’s surely good news to Space Coast residents. The engine of the local economy in the area is space, and if space is healthy, it stands to reason that the local economy will be the same.
Rocket Lab also has two satellites bound for Mars in processing at The Cape currently as they await their launch aboard Blue Origin’s second flight of New Glenn scheduled for sometime soon — Blue stated their target was August 15th, but that’s out the window as there is currently no sign of the rocket being placed on the company’s site at LC-36 at Cape Canaveral Space Force Station. More than likely the launch will be in September, if not October or later.
By The Numbers
The company advanced its Neutron heavy-lift program, with Launch Complex 3 at Wallops Island now operational and Neutron’s first components en route to Virginia. Beck also confirmed plans to acquire Geost, positioning Rocket Lab as a “one-stop shop for national security,” and flagged readiness to compete for the U.S. Department of Defense’s $175 billion “Golden Dome” program. The company has already secured over $500 million in contracts from the Space Development Agency (SDA).
A 2024 Rocket Lab Electron launch at Wallops Island in Virginia.
Photo: Charles Boyer / Talk of Titusville
CFO Adam Spice reported GAAP (Generally Accepted Accounting Prnciples) gross margin at 32.1%, exceeding guidance, with a growing launch backlog and a healthy pipeline of multi-launch and satellite contracts. Space Systems delivered $97.9 million in revenue, while Launch Services rose 31% sequentially to $6.6 million.
Looking ahead, Rocket Lab projects Q3 revenue between $145 million and $155 million, with margins expected to improve further. However, operating expenses will remain high — $104 million to $109 million — as Neutron development ramps up, contributing to continued negative free cash flow. Management targets positive cash flow in 2026.
Analysts pressed for updates on Neutron’s customer commitments and SDA contract timing. Beck cautioned that many customers want to see Neutron fly before signing, and emphasized a no-rush approach: “We’re not going to take stupid risks to get a launch before it’s ready.”
Rocket Lab ended Q2 with $754 million in liquidity, bolstered by a $303.8 million equity raise. While risks remain in Neutron propulsion and integration testing, management remains confident in execution and market positioning, citing expanding international contracts, national security opportunities, and continued revenue growth.
These are the sorts of numbers that investors like to see, and Rocket Lab’s share price reflects just that: RKLB (Rocket Lab’s stock symbol on NASDAQ) is up 800% in the past year, and the share price climbed a bit after yesterday’s earnings call.
Starship Heavy lifts off from Boca Chica, Texas to start the IFT-6 mission. Photo: Richard Gallagher, FMN
The Federal Aviation Administration has released the long-awaited draft Environmental Impact Statement (EIS) evaluating SpaceX’s plan to launch its Starship-Super Heavy rocket from Launch Complex 39A at NASA’s Kennedy Space Center. The report concludes that the proposed operations would not result in significant environmental harm, paving the way for a positive finding for the company in the final document, due sometime late this year.
According to the draft EIS, the FAA determined that impacts from launch operations such as noise, sonic booms, and visual disturbances—would be “less than significant” when evaluated in the context of the surrounding spaceport and existing activity.
Still, the report acknowledges potential stressors to wildlife, including bald eagles, sea turtles, manatees, and migratory birds, especially during nesting seasons. The closest bald eagle nest is roughly 2.5 miles from the proposed Starship launch pad. In between, another avian raptor, ospreys, probably have dozens of nests. The FAA, in coordination with the U.S. Fish and Wildlife Service and other agencies, has initiated formal consultations under the Endangered Species Act and other environmental protections.
The Reports
Instead of one single document, the FAA released 28, and are linked below.
“The FAA is releasing the Draft Environmental Impact Statement for SpaceX’s proposed licensing and operation of the Starship Super-Heavy vehicle at Launch Complex 39A (LC-39A) at Kennedy Space Center (KSC) (Draft EIS). The National Aeronautics and Aerospace Administration (NASA), the Department of the Air Force (DAF), the United Stated Coast Guard (USCG), the United States Fish and Wildlife Service (USFWS), and the National Park Service (NPS) are cooperating agencies.”
The Executive Summary of the Draft EIS is available below:
The FAA is now accepting public comments on the draft EIS, with a public comment period open through September 22, 2025. Four in-person meetings and one virtual session have been scheduled:
August 26, 2025 — 1:00–3:00 PM and 5:00–7:00 PM at Kennedy Space Center Visitor Complex
August 28, 2025 — 1:00–3:00 PM and 5:00–7:00 PM at Cape Canaveral Public Library
September 3, 2025 — Virtual public meeting (details available on the FAA’s website)
Members of the public and local stakeholders are encouraged to provide feedback. Other than written feedback, this will be the last public opportunity for the public to enter its feedback into the process.
What Happens Next
After the public comment period closes, the FAA will review all input, complete consultations with relevant federal and state agencies, and prepare a final EIS.
Only then will it decide on whether to issue a launch license to SpaceX. The FAA also noted that a completed EIS does not guarantee license approval—SpaceX must still meet all safety, risk, and indemnification standards under federal law.
If approved, Starship operations at Kennedy Space Center would mark a significant expansion of the company’s heavy-lift launch capabilities in Florida, complementing its existing activities in Texas.
SpaceX, NASA and the Crew 11 astronauts beat the clouds and rain showers and launched before summer showers washed over Kennedy Space Center today, but just barely. With dark skies and rain rapidly advancing from the south, liftoff of SpaceX’s 18th crewed flight was at 11:43 AM ET from venerable Launch Complex 39A. Crew 11’s four astronauts are now on their way to the International Space Station after today’s launch, with an expected arrival time at the orbital outpost around 3 AM ET tomorrow, August 2.
Gravity Turn: After Max-Q and now in its supersonic flight phase, Falcon 9 enters another gear, leaving the contrail it just made behind quickly. The cloud is from the rocket, not the storms it was escaping on August 1, 2025.
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