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 Government Accountability Office rejected on 2021-07-30 protests filed by Blue Origin and Dynetics regarding the SpaceX NASA contract for Starship development.
SpaceX won a $2,900,000,000 NASA award in April to develop a version of its Starship vehicle for NASA’s Human Landing System program to perform a demonstration mission to land astronauts on the Moon on Artemis 3 as early as 2024.
As of 2021-08-03, the FAA did not have a schedule for completing the environmental assessment of Starship/Super Heavy launches from Boca Chica.
SpaceX’s manufacturing surge and assembly activities at Starbase in 2021 included construction of a launch mount to support Super Heavy and Starship integration.
NASA awarded a $2,900,000,000 contract in April to SpaceX to develop a crewed lunar lander based on the Starship vehicle and perform a demonstration mission.
Blue Origin stated that the single-source HLS selection locks lunar missions into 10+ Super Heavy/Starship launches to deliver a single lander to the surface.
NASA’s Human Landing System program awarded a $2,900,000,000 contract to SpaceX on 2021-04-16 to fund development of a lunar lander based on Starship and to fly one demonstration mission with astronauts.
The FAA concluded that the 2014 environmental impact statement prepared for potential Falcon 9 and Falcon Heavy launches from Boca Chica is not applicable to the larger Starship/Super Heavy vehicles.
Four previous Starship prototypes failed to achieve successful landings in tests between December 2020 and March 2021.
SpaceX plans an orbital flight profile using a Super Heavy booster and Starship upper stage from the Boca Chica, Texas test site.
The FAA’s Office of Commercial Space Transportation is performing an environmental review of Starship launches from Boca Chica.
SpaceX lacks the FAA launch license required for orbital Starship/Super Heavy launches from Boca Chica, Texas.
SpaceX flew Starship prototype SN15 on 2021-05-05 to an altitude of 10 km and achieved a successful landing.
SpaceX won a Human Landing System contract on 2021-04-16 valued at $2,900,000,000 to develop a lunar lander version of its Starship vehicle and perform one crewed mission to the lunar surface.
NASA made an Option A award on 2021-04-16 to SpaceX that covers development of a lander based on SpaceX’s Starship vehicle and a single crewed landing.
The FAA has not provided a schedule for completing the ongoing environmental assessment of Starship/Super Heavy launches from Boca Chica.
SpaceX filed an application with the Federal Communications Commission on 2021-05-13 for special temporary authority for communications to support a Starship test launch from Boca Chica, Texas.
The FCC application states Starship will complete less than one full orbit and perform an entry and landing in the Pacific Ocean approximately 100 km northwest of Kauai about 90 minutes after liftoff.
Yusaku Maezawa purchased a SpaceX Starship circumlunar flight in 2018.
NASA awarded a single Human Landing System Option A contract to SpaceX on 2021-04-16 valued at $2,890,000,000 to develop a lander based on Starship and to fly a single demonstration mission.