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Launch Vehicles
Vehicle family profile

Starship

Family-level launch record combining canonical variants, historical missions, public cadence forecasts, and available payload performance specs.

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Variants
3
Canonical variants linked to this family.
Historical missions
12
Missions in the public mission table with actual launch dates.
Peak listed capacity
150,000 kg
Maximum payload capacity across listed variants and orbits.

Launch Cadence

Historical missions are grouped by actual launch year. Forecast cadence uses family-level launch-rate rows.

YearHistorical missionsForecast launches
202320
202440
202550
202613
202707
2028015
2029031
2030050
2031071
2032087
20330103
20340117
20350129
20360133
20370137
20380137
20390137

Performance Specs

Payload capacity by variant and target orbit when structured capacity rows are available.

VariantOrbitCapacityAltitudeInclinationSource
Starship V3
LEO150,000 kgUnknownUnknownStarlink V3 batch-calibrated Starship capacity assumption
Starship V2
LEO35,000 kgUnknownUnknownSpaceX Starship - Wikipedia

Recent Missions

Latest launched missions using variants in this family.

MissionVariantLaunch
Launch 2026-U02
Starship V3
May 22, 2026
Launch 2025-U04
Starship V2
Oct 13, 2025
Launch 2025-U03
Starship V2
Aug 26, 2025
Launch 2025-U02

Variants

Canonical variants rolled up into this launch vehicle family.

VariantStagesMissionsStatus
Starship V1.0
Not stated6Active
Starship V2
Not stated5Retired
Starship V3
Not stated1Active
20400137
20410137

Forecast Location Split

5 launch locations represented.

YearLocationLaunchesConfidenceBasis
2026Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)050%SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.
2026Cape Canaveral Space Force Station | SLC-37A045%Modeled as second SLC-37 Starship pad, lagging SLC-37B by one to two years. Mature split reaches 38/year by 2037, keeping complex total at 76/year.
2026Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)065%LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range c...
2026Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)365%Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing th...
2026Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)050%Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.
2027Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)050%SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.
2027Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)165%LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range c...
2027Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)565%Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing th...
2027Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)150%Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.
2027Cape Canaveral Space Force Station | SLC-37A045%Modeled as second SLC-37 Starship pad, lagging SLC-37B by one to two years. Mature split reaches 38/year by 2037, keeping complex total at 76/year.
2028Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)250%SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.
2028Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)365%LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range c...
2028Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)765%Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing th...
2028Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)350%Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.
2028Cape Canaveral Space Force Station | SLC-37A045%Modeled as second SLC-37 Starship pad, lagging SLC-37B by one to two years. Mature split reaches 38/year by 2037, keeping complex total at 76/year.
2029Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)650%SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.
2029Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)865%LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range c...
2029Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)865%Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing th...
2029Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)750%Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.
2029Cape Canaveral Space Force Station | SLC-37A245%Modeled as second SLC-37 Starship pad, lagging SLC-37B by one to two years. Mature split reaches 38/year by 2037, keeping complex total at 76/year.
2030Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)1250%SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.
2030Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)1265%LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range c...
2030Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)965%Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing th...
2030Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)1150%Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.
Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)
2026 · 50% confidence
0

SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.

Cape Canaveral Space Force Station | SLC-37A
2026 · 45% confidence
0

Modeled as second SLC-37 Starship pad, lagging SLC-37B by one to two years. Mature split reaches 38/year by 2037, keeping complex total at 76/year.

Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)
2026 · 65% confidence
0

LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range conflicts, tanker ope...

Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)
2026 · 65% confidence
3

Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing the 25/year site cap.

Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)
2026 · 50% confidence
0

Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.

Starship V3
TLI21,000 kgUnknownUnknownSpaceX Starship public vehicle page
Starship V1.0
LEO15,000 kgUnknownUnknownSpaceX Starship public/current block summary
Starship V2
May 27, 2025
Launch 2025-F03
Starship V2
Mar 6, 2025
Launch 2025-F01
Starship V2
Jan 16, 2025
Launch 2024-U06
Starship V1.0
Nov 19, 2024
Launch 2024-U04
Starship V1.0
Oct 13, 2024

Forecasted Missions

Upcoming mission rows with announced launch timing.

MissionVariantAnnounced

No forecasted missions

No upcoming announced mission rows are linked to this vehicle family.

Track
Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)
2027 · 50% confidence
0

SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.

Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)
2027 · 65% confidence
1

LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range conflicts, tanker ope...

Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas)
2027 · 65% confidence
5

Starbase remains the development and early operational hub. Base ramps slowly from test cadence to routine operations; by 2031 it is one of two pads sharing the 25/year site cap.

Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas)
2027 · 50% confidence
1

Second Starbase pad provides incremental operations after pad commissioning. Mature OLP-A + OLP-B total is capped at 25/year in the base/high range.

Cape Canaveral Space Force Station | SLC-37A
2027 · 45% confidence
0

Modeled as second SLC-37 Starship pad, lagging SLC-37B by one to two years. Mature split reaches 38/year by 2037, keeping complex total at 76/year.

Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida)
2028 · 50% confidence
2

SLC-37B is modeled as the first high-throughput CCSFS Starship pad. Base reaches half of the SLC-37 complex cap by 2035, not immediately after redevelopment.

Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida)
2028 · 65% confidence
3

LC-39A Starship is expected to ramp after initial Florida infrastructure/testing. Base remains below the 44/year EIS cap even after maturity to reflect range conflicts, tanker ope...

Mentions
1567
All verified mentions of this launch vehicle family in source documents.
0.0-5.0
Actions

Rocket Lab's CEO stated that small launch vehicles serve different needs than heavy launch vehicles like Starship.

GeneralValue 1.5Feb 24, 2025What Starship can, and can’t, do

Starship could enable large robotic missions that would typically require multiple launches.

Capability
Page48of79
Value 1.8
Feb 24, 2025
What Starship can, and can’t, do

Starship would be used to deliver habitats to Mars, using a system called a 'starcrane' for positioning.

PlanCapabilityValue 3.0Feb 24, 2025What Starship can, and can’t, do

Starship's performance allows for larger expeditions to Mars compared to NASA's current mission architectures.

CapabilityGeneralValue 2.4Feb 24, 2025What Starship can, and can’t, do

Starship's launch capacity and low cost may make it more competitive than existing launch vehicles.

GeneralCapabilityValue 1.5Feb 24, 2025What Starship can, and can’t, do

A successful test flight would bring SpaceX closer to reaching orbit with Starship.

PlanCapabilityValue 2.0Feb 24, 2025What Starship can, and can’t, do

Detouring to the Gateway requires extra propellant, necessitating more refueling flights for the Starship lunar lander.

PlanFinancialValue 3.0Feb 10, 2025Redirecting NASA’s focus: why the Gateway program should be cancelled

The Gateway cannot maintain attitude control with large vehicles like the Starship lunar lander attached.

CapabilityValue 4.0Feb 10, 2025Redirecting NASA’s focus: why the Gateway program should be cancelled

EAC2 and EAC3 for HWO require SpaceX's Starship and its nine-meter payload bay.

CapabilityValue 3.6Feb 3, 2025The lifecycle of space telescopes

Returning Starship directly to Earth from the Moon aids in its maintainability and reusability.

CapabilityGeneralValue 1.8Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

SpaceX proposed the Starship as their entry in the Human Landing System competition for Artemis missions.

PlanGeneralValue 3.0Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

SpaceX has designed Starship's heat shield to withstand the higher temperatures generated by returning from the Moon.

CapabilityValue 4.0Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

The Artemis 3 mission will return astronauts to Earth using the Orion spacecraft, allowing an opportunity to test returning the Starship uncrewed.

PlanCapabilityValue 3.5Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

SpaceX has a plan for returning humans to the lunar surface using only the Starship, originally revealed by Elon Musk in 2017.

PlanValue 3.0Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

NASA is developing two space transportation systems for human exploration of the Moon and Mars: the Space Launch System (SLS) and the Orion spacecraft, and SpaceX's Starship.

CapabilityGeneralValue 3.0Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

Starship must demonstrate high reliability to compensate for its lack of a robust launch abort system compared to SLS and Orion.

CapabilityValue 2.8Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

Starship has a significantly higher launch frequency than the SLS and can land on the Moon and Mars.

CapabilityValue 3.0Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

If Starship reliability is not sufficient for Artemis 4, astronauts could be launched into Earth orbit aboard a Crew Dragon spacecraft.

PlanValue 2.3Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

Elon Musk stated that a Starship launch will eventually cost $10 million or less, with a long-term projection of $2 to $3 million per launch.

FinancialPlanValue 4.0Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship

To transition to Starship-only Artemis missions, SpaceX needs to add fins and a heat shield back onto the Starship.

CapabilityValue 3.6Jan 27, 2025Phasing out the SLS and Orion programs and embracing Starship