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SpaceX ViaSat-3 F3 (ViaSat-3 Asia-Pacific) Falcon Heavy

Launch Status
Success

Rocket Launch Video Streams

Weather Forecast During Launch

According to weather officials, there's a 85% chance of favorable weather conditions at the time of the launch. Officials are monitoring weather conditions with concerns related to Thick Cloud Layers Rule. The forecast calls for a temperature of 75°F, overcast clouds, 100% cloud cover and a wind speed of 3mph.

Rocket Launch Trajectory & Flight Path

Track the complete rocket launch trajectory with real-time flight data from FlightClub.io . View detailed telemetry including rocket velocity, altitude progression, thrust levels, acceleration, orbital insertion parameters, and 3D flight path visualization throughout all mission phases from liftoff to orbit.

Learn about rocket launch trajectory physics

Rocket Launch Timeline

Track every phase of the rocket launch with our detailed mission timeline. From T-minus countdown events and pre-launch preparations through liftoff, stage separation, and orbital insertion, follow each critical milestone in real-time. Our comprehensive launch sequence timeline includes payload integration, propellant loading, engine ignition, and post-launch telemetry tracking.

Launch timeline events for Falcon Heavy | ViaSat-3 F3 (ViaSat-3 Asia-Pacific)
Time Event
T- 00 : 53 : 00 GO for Prop Load
Launch director verifies go for propellant load
T- 00 : 50 : 00 Stage 1 Propellant Load
Start of propellant loading in the first stage
T- 00 : 45 : 00 Stage 1 LOX Load
Start of liquid oxygen loading in the first stage
T- 00 : 35 : 00 Stage 2 Propellant Load
Start of propellant loading in the second stage
T- 00 : 18 : 30 Stage 2 LOX Load
Start of liquid oxygen loading in the second stage
T- 00 : 07 : 00 Engine Chill
Start of engine chilling
T- 00 : 00 : 59 Startup
The onboard computer takes control over the countdown and runs last checks
T- 00 : 00 : 45 GO for Launch
Launch director verifies go for launch
T- 00 : 00 : 20 Tank Press
Fuel tanks are pressurized to flight levels
T- 00 : 00 : 06 Ignition
Start of the engine ignition sequence
T+ 00 : 00 : 00 Liftoff
First upwards movement of the rocket
T+ 00 : 01 : 09 Max-Q
Maximum dynamic pressure
T+ 00 : 02 : 21 SBECO
Cut-off of the side boosters
T+ 00 : 02 : 25 Boosters Separation
Separation of the side boosters
T+ 00 : 02 : 30 Boosters Flip
Flip maneuver of the side boosters
T+ 00 : 02 : 41 Boosters Boostback Burn Startup
Start of the boosters boostback burn
T+ 00 : 03 : 47 Boosters Boostback Burn Shutdown
End of the boosters boostback burn
T+ 00 : 03 : 50 MECO
Cut-off of the main engine
T+ 00 : 03 : 54 Stage 2 Separation
Separation of the second stage from the first
T+ 00 : 04 : 01 SES-1
First start of the second engine
T+ 00 : 04 : 17 Fairing Separation
Separation of the payload fairing
T+ 00 : 06 : 28 Boosters Entry Burn Startup
Start of the boosters atmospheric entry burn
T+ 00 : 06 : 44 Boosters Entry Burn Shutdown
End of the boosters atmospheric entry burn
T+ 00 : 07 : 41 Boosters Landing Burn
Start of the boosters landing burn
T+ 00 : 07 : 58 Boosters Landing
Landing of the boosters
T+ 00 : 08 : 13 SECO-1
First cut-off of the second engine
T+ 00 : 26 : 05 SES-2
Second start of the second engine
T+ 00 : 27 : 33 SECO-2
Second cut-off of the second engine
T+ 04 : 47 : 47 SES-3
Third start of the second engine
T+ 04 : 48 : 30 SECO-3
Third cut-off of the second engine
T+ 04 : 57 : 31 Payload Separation
Final deployment of the payload from the rocket

About the ViaSat-3 F3 (ViaSat-3 Asia-Pacific) Mission

Mission details for ViaSat-3 F3 (ViaSat-3 Asia-Pacific)
TypeCommunications
OrbitGeostationary Transfer Orbit
Launch Cost$90,000,000

The ViaSat-3 is a series of three Ka-band satellites is expected to provide vastly superior capabilities in terms of service speed and flexibility for a satellite platform. Each ViaSat-3 class satellite is expected to deliver more than 1-Terabit per second of network capacity, and to leverage high levels of flexibility to dynamically direct capacity to where customers are located.

Launch Pad & Location

Launch Complex 39A

Kennedy Space Center, FL, USA

Launch statistics for Launch Complex 39A at Kennedy Space Center, FL, USA
Launches222
Orbital Launch Attempts221
Total Launches281

The John F. Kennedy Space Center, located on Merritt Island, Florida, is one of NASA's ten field centers. Since 1968, KSC has been NASA's primary launch center of American spaceflight, research, and technology. Launch operations for the Apollo, Skylab and Space Shuttle programs were carried out from Kennedy Space Center Launch Complex 39 and managed by KSC. Located on the east coast of Florida, KSC is adjacent to Cape Canaveral Space Force Station (CCSFS).

Find the best place to watch the launch from Florida

SpaceX Falcon Heavy Rocket

The Falcon Heavy is a variant of the Falcon 9 full thrust launch vehicle and consists of a standard Falcon 9 rocket core, with two additional boosters derived from the Falcon 9 first stage.

Learn more about the SpaceX Falcon Heavy Rocket

Booster Landing & Recovery

Strap-On Booster B1075

Booster details for B1075
Serial NumberB1075
Last Flight04/29/2026
Successful Landings22
DetailsFalcon 9 Block 5 booster first used for the Starlink Group 2-4 mission. Converted to a Falcon Heavy booster in 2026 after 21 launches.

The Falcon Heavy side booster B1075 has landed back at the launch site at Landing Zone 40 after its 22nd flight.

Landing Zone 40 - LZ-40

Landing Pad at SLC-40 for Falcon 9 boosters. Built as an replacement for LZ-1 & LZ-2.

Return to Launch Site - RTLS

A return to launch site usually means that after stage separation the booster flips and does a burn back towards the launch site, landing near where it initially launched from.

A sonic boom may occur during booster recovery as the first stage returns to the landing zone. This atmospheric phenomenon creates a loud sound as the rocket breaks the sound barrier during its descent.

Understand rocket booster landing sonic booms

Strap-On Booster B1072

Booster details for B1072
Serial NumberB1072
Last Flight04/29/2026
Successful Landings2
DetailsFalcon Heavy side booster first flown during the GOES-U mission.

The Falcon Heavy side booster B1072 has landed back at the launch site at Landing Zone 2 after its 2nd flight.

Landing Zone 2 - LZ-2

LZ-2 Pad located at Cape Canaveral Space Force Station at the previous LC-13. Directly next to LZ-1

Return to Launch Site - RTLS

A return to launch site usually means that after stage separation the booster flips and does a burn back towards the launch site, landing near where it initially launched from.

A sonic boom may occur during booster recovery as the first stage returns to the landing zone. This atmospheric phenomenon creates a loud sound as the rocket breaks the sound barrier during its descent.

Understand rocket booster landing sonic booms

Core B1098

Booster details for B1098
Serial NumberB1098
Last Flight04/29/2026
DetailsFalcon Heavy core booster expended during the ViaSat-3 F3 mission.

The Falcon Heavy center core B1098 has been expended.

Atlantic Ocean - ATL

Atlantic Ocean

Expended - EXP

Vehicle did not perform any landing operations after launch

Track the booster recovery and droneship return to port

About SpaceX

Space Exploration Technologies Corp., known as SpaceX, is an American aerospace manufacturer and space transport services company headquartered in Hawthorne, California. It was founded in 2002 by entrepreneur Elon Musk with the goal of reducing space transportation costs and enabling the colonization of Mars. SpaceX operates from many pads, on the East Coast of the US they operate from SLC-40 at Cape Canaveral Space Force Station and historic LC-39A at Kennedy Space Center. They also operate from SLC-4E at Vandenberg Space Force Base, California, usually for polar launches. Another launch site is being developed at Boca Chica, Texas.

Learn more about SpaceX

Frequently Asked Questions

When was the SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) launch scheduled?

The SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) launch was scheduled for:
.

Where can I watch the SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) launch video?

You can watch the SpaceX Falcon Heavy launch video on this page. The official video includes full mission coverage with multiple camera angles, onboard views, and expert commentary covering pre-launch procedures, liftoff, stage separation, and payload deployment.

Where did the SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) mission launch from?

The SpaceX Falcon Heavy rocket launched from Launch Complex 39A at Kennedy Space Center, FL, USA. The John F. Kennedy Space Center, located on Merritt Island, Florida, is one of NASA's ten field centers. Since 1968, KSC has been NASA's primary launch center of American spaceflight, research, and technology. Launch operations for the Apollo, Skylab and Space Shuttle programs were carried out from Kennedy Space Center Launch Complex 39 and managed by KSC. Located on the east coast of Florida, KSC is adjacent to Cape Canaveral Space Force Station (CCSFS).

What rocket was used for the ViaSat-3 F3 (ViaSat-3 Asia-Pacific) mission?

The ViaSat-3 F3 (ViaSat-3 Asia-Pacific) mission launched aboard a SpaceX Falcon Heavy rocket. The Falcon Heavy is a variant of the Falcon 9 full thrust launch vehicle and consists of a standard Falcon 9 rocket core, with two additional boosters derived from the Falcon 9 first stage. Detailed rocket specifications and performance data are available in the rocket details above.

Did the SpaceX Falcon Heavy booster for ViaSat-3 F3 (ViaSat-3 Asia-Pacific) attempt a landing?

Yes, the Falcon Heavy first stage booster attempted a Return to Launch Site at a designated landing zone. Booster recovery allows SpaceX to reuse rocket components, significantly reducing launch costs. Learn more about the landing details.

What weather conditions could have delayed the SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) launch?

The SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) launch could have been delayed by various weather conditions including lightning within 10 nautical miles, high winds (especially upper-level winds), thick cloud layers, precipitation, and poor visibility. Weather must be favorable at the launch site, downrange landing zones, and abort landing sites.

How can I get updates if the SpaceX Falcon Heavy ViaSat-3 F3 (ViaSat-3 Asia-Pacific) launch was delayed?

This page was updated in real-time with the latest SpaceX Falcon Heavy launch status, including any delays or scrubs for the ViaSat-3 F3 (ViaSat-3 Asia-Pacific) mission. You can also check our space launch schedule for historical launch information. Our mobile app provides push notifications for instant alerts about launch status changes. Official SpaceX live streams provided the most immediate range updates during the launch window.

Last Updated

Last Updated:

  • Launch success with spacecraft signals acquisition.

  • Spacecraft separation.

  • Unofficial Re-stream by SPACE AFFAIRS has started

  • Unofficial Re-stream by SPACE AFFAIRS has started

  • Liftoff!

  • Unofficial Re-stream by SPACE AFFAIRS has started

  • Updated launch weather, 90% GO.

  • Rescheduled for April 29.

  • Scrub for the due to weather.

  • Launch aborted due to weather.

  • Unofficial Re-stream by SPACE AFFAIRS has started

  • Updated launch weather.

  • Updated launch weather, 70% GO.

  • Launch time is to the second.

  • GO for launch.

  • NET April

  • NET Q2 on Falcon Heavy.

  • De-manifested from Ariane 6, new launch vehicle TBD.

  • NET 2025

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