Family-level launch record combining canonical variants, historical missions, public cadence forecasts, and available payload performance specs.
Historical missions are grouped by actual launch year. Forecast cadence uses family-level launch-rate rows.
| Year | Historical missions | Forecast launches |
|---|---|---|
| 2023 | 2 | 0 |
| 2024 | 4 | 0 |
| 2025 | 5 | 0 |
| 2026 | 1 | 3 |
| 2027 | 0 | 7 |
| 2028 | 0 | 15 |
| 2029 | 0 | 31 |
| 2030 | 0 | 50 |
| 2031 | 0 | 71 |
| 2032 | 0 | 87 |
| 2033 | 0 | 103 |
| 2034 | 0 | 117 |
| 2035 | 0 | 129 |
| 2036 | 0 | 133 |
| 2037 | 0 | 137 |
| 2038 | 0 | 137 |
| 2039 | 0 | 137 |
Payload capacity by variant and target orbit when structured capacity rows are available.
| Variant | Orbit | Capacity | Altitude | Inclination | Source |
|---|---|---|---|---|---|
Starship V3 | LEO | 150,000 kg | Unknown | Unknown | Starlink V3 batch-calibrated Starship capacity assumption |
Starship V2 | LEO | 35,000 kg | Unknown | Unknown | SpaceX Starship - Wikipedia |
Latest launched missions using variants in this family.
| Mission | Variant | Launch |
|---|---|---|
| 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 |
Canonical variants rolled up into this launch vehicle family.
| Variant | Stages | Missions | Status |
|---|---|---|---|
Starship V1.0 | Not stated | 6 | Active |
Starship V2 | Not stated | 5 | Retired |
Starship V3 | Not stated | 1 | Active |
| 2040 | 0 | 137 |
| 2041 | 0 | 137 |
5 launch locations represented.
| Year | Location | Launches | Confidence | Basis |
|---|---|---|---|---|
| 2026 | Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida) | 0 | 50% | 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. |
| 2026 | Cape Canaveral Space Force Station | SLC-37A | 0 | 45% | 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. |
| 2026 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 0 | 65% | 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... |
| 2026 | Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas) | 3 | 65% | 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... |
| 2026 | Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas) | 0 | 50% | 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. |
| 2027 | Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida) | 0 | 50% | 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. |
| 2027 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 1 | 65% | 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... |
| 2027 | Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas) | 5 | 65% | 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... |
| 2027 | Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas) | 1 | 50% | 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. |
| 2027 | Cape Canaveral Space Force Station | SLC-37A | 0 | 45% | 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. |
| 2028 | Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida) | 2 | 50% | 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. |
| 2028 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 3 | 65% | 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... |
| 2028 | Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas) | 7 | 65% | 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... |
| 2028 | Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas) | 3 | 50% | 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. |
| 2028 | Cape Canaveral Space Force Station | SLC-37A | 0 | 45% | 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. |
| 2029 | Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida) | 6 | 50% | 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. |
| 2029 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 8 | 65% | 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... |
| 2029 | Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas) | 8 | 65% | 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... |
| 2029 | Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas) | 7 | 50% | 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. |
| 2029 | Cape Canaveral Space Force Station | SLC-37A | 2 | 45% | 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. |
| 2030 | Space Launch Complex 37B, Cape Canaveral (Cape Canaveral Air Station, Florida) | 12 | 50% | 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. |
| 2030 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 12 | 65% | 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... |
| 2030 | Starship Orbital Pad 1, Boca Chica (Starbase, Boca Chica Beach, Texas) | 9 | 65% | 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... |
| 2030 | Starship Orbital Pad 2, Boca Chica (Starbase, Boca Chica Beach, Texas) | 11 | 50% | 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. |
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.
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.
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...
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.
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 | TLI | 21,000 kg | Unknown | Unknown | SpaceX Starship public vehicle page |
Starship V1.0 | LEO | 15,000 kg | Unknown | Unknown | SpaceX 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 |
Upcoming mission rows with announced launch timing.
| Mission | Variant | Announced |
|---|---|---|
No forecasted missionsNo upcoming announced mission rows are linked to this vehicle family. | ||
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.
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...
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.
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.
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.
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.
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...
The Starbase launch site in Boca Chica, Texas has been adapted for the upcoming Starship V3 launch through installation of Propulsor 19 and construction of a second launch platform.
Voyager's 10-K filing records a $90 million contract to launch the Starlab space station on a SpaceX Starship.
Starship V3 introduces design changes intended to improve performance and propellant management.
Starship V3’s structure has been upgraded to handle heavier lift loads than previous versions.
Starship V3’s grid fins are designed to be stronger than those used on previous Starship flights and include new mechanisms to support the booster’s catch upon reentry.
Starship V3 is intended to carry 100 tons of payload to low Earth orbit (LEO).
Starship-class HLS development has slipped, creating doubt about readiness for a safe polar landing profile within the next few years.
The Super Heavy booster for Starship V3 will have grid fins that are 50% larger than those on V2 but will have one fewer fin.
Starship V3 will be powered by upgraded Raptor V3 engines that produce 280 tf of thrust.
Starship V3 is being developed to compete with Blue Origin for future Artemis Moon flights.
SpaceX plans to combine the Starship launch vehicle, Starlink connectivity, and xAI processing to reduce the cost of AI inference compared with terrestrial solutions.
The cryoproof campaign on Ship 39 was the first test campaign for the Starship V3 configuration.
Starship V3 is equipped with greater payload and propellant capacity compared with Starship V2.
The WB-57F WAVE turret was used to monitor the Artemis 1 launch in 2022 and has been used to monitor Starship launches from Texas.
Elon Musk posted on X that the first launch of Starship V3 was about four weeks away.
Starship V3 is expected to stand about five feet taller than Starship V2.
Ship catch is the recovery system planned by SpaceX to recover Starship vehicles after reentry.
Starship V3 will feature SpaceX docking adapters designed to enable Starships to transfer fuel in space.
Starship V3’s Super Heavy booster will rely on a new propellant transfer tube about the same size as a Falcon 9 rocket to support speedy refueling and simultaneous engine startup.
ASAP raised concerns about Starship-class Human Landing System (HLS) readiness for orbital refueling, deep-space operations, and precision lunar landing performance.