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 |
|---|---|---|
| 2019 | 11 | 0 |
| 2020 | 25 | 0 |
| 2021 | 31 | 0 |
| 2022 | 60 | 0 |
| 2023 | 91 | 0 |
| 2024 | 132 | 0 |
| 2025 | 165 | 0 |
| 2026 | 82 | 140 |
| 2027 | 0 | 157 |
| 2028 | 0 | 185 |
| 2029 | 0 | 203 |
| 2030 | 0 | 211 |
| 2031 | 0 | 211 |
| 2032 | 0 | 210 |
| 2033 | 0 | 209 |
| 2034 | 0 | 209 |
| 2035 | 0 |
Payload capacity by variant and target orbit when structured capacity rows are available.
| Variant | Orbit | Capacity | Altitude | Inclination | Source |
|---|---|---|---|---|---|
Falcon 9 | LEO | 22,000 kg | Unknown | Unknown | SpaceX Capabilities & Services |
Falcon 9 FT5 | LEO | 22,000 kg | Unknown | Unknown | SpaceX Capabilities & Services (live vehicle spec sheet) |
Latest launched missions using variants in this family.
| Mission | Variant | Launch |
|---|---|---|
| Starlink-408 | Falcon 9 FT5 | Jul 11, 2026 |
| Starlink-407 | Falcon 9 FT5 | Jul 9, 2026 |
| Transporter-17 | Falcon 9 FT5 | Jul 7, 2026 |
| Starlink-406 |
Canonical variants rolled up into this launch vehicle family.
| Variant | Stages | Missions | Status |
|---|---|---|---|
Falcon 9 | Not stated | 7 | Retired |
Falcon 9 1.1 | Not stated | 14 | Retired |
Falcon 9 FT3 | Not stated | 24 | Retired |
Falcon 9 FT4 | Not stated | 12 | Retired |
| 209 |
| 2036 | 0 | 209 |
| 2037 | 0 | 209 |
| 2038 | 0 | 209 |
| 2039 | 0 | 209 |
| 2040 | 0 | 209 |
| 2041 | 0 | 209 |
4 launch locations represented.
| Year | Location | Launches | Confidence | Basis |
|---|---|---|---|---|
| 2026 | Space Launch Complex 40, Cape Canaveral (Cape Canaveral Air Station, Florida) | 85 | 85% | SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-sh... |
| 2026 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 15 | 65% | LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vand... |
| 2026 | Space Launch Complex 4-East, Vandenberg AFB (South Vandenberg AFB, California) | 40 | 85% | SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also ... |
| 2026 | Space Launch Complex 6, Vandenberg AFB (South Vandenberg AFB, California) | 0 | 65% | SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below... |
| 2027 | Space Launch Complex 40, Cape Canaveral (Cape Canaveral Air Station, Florida) | 95 | 85% | SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-sh... |
| 2027 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 12 | 65% | LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vand... |
| 2027 | Space Launch Complex 4-East, Vandenberg AFB (South Vandenberg AFB, California) | 45 | 85% | SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also ... |
| 2027 | Space Launch Complex 6, Vandenberg AFB (South Vandenberg AFB, California) | 5 | 65% | SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below... |
| 2028 | Space Launch Complex 40, Cape Canaveral (Cape Canaveral Air Station, Florida) | 105 | 85% | SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-sh... |
| 2028 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 10 | 65% | LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vand... |
| 2028 | Space Launch Complex 4-East, Vandenberg AFB (South Vandenberg AFB, California) | 50 | 85% | SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also ... |
| 2028 | Space Launch Complex 6, Vandenberg AFB (South Vandenberg AFB, California) | 20 | 65% | SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below... |
| 2029 | Space Launch Complex 40, Cape Canaveral (Cape Canaveral Air Station, Florida) | 110 | 85% | SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-sh... |
| 2029 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 8 | 65% | LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vand... |
| 2029 | Space Launch Complex 4-East, Vandenberg AFB (South Vandenberg AFB, California) | 50 | 85% | SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also ... |
| 2029 | Space Launch Complex 6, Vandenberg AFB (South Vandenberg AFB, California) | 35 | 65% | SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below... |
| 2030 | Space Launch Complex 40, Cape Canaveral (Cape Canaveral Air Station, Florida) | 110 | 85% | SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-sh... |
| 2030 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 6 | 65% | LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vand... |
| 2030 | Space Launch Complex 4-East, Vandenberg AFB (South Vandenberg AFB, California) | 50 | 85% | SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also ... |
| 2030 | Space Launch Complex 6, Vandenberg AFB (South Vandenberg AFB, California) | 45 | 65% | SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below... |
| 2031 | Space Launch Complex 40, Cape Canaveral (Cape Canaveral Air Station, Florida) | 110 | 85% | SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-sh... |
| 2031 | Launch Complex 39A, NASA Kennedy Space Center, Florida (NASA John F. Kennedy Space Center, Florida) | 6 | 65% | LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vand... |
| 2031 | Space Launch Complex 4-East, Vandenberg AFB (South Vandenberg AFB, California) | 50 | 85% | SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also ... |
| 2031 | Space Launch Complex 6, Vandenberg AFB (South Vandenberg AFB, California) | 45 | 65% | SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below... |
SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-ship cycles, and Stars...
LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vandenberg as Starship i...
SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also online.
SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below SLC-4E.
SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-ship cycles, and Stars...
Falcon 9 FT5 | LEO | 17,400 kg | Unknown | Unknown | Falcon 9 - Wikipedia (citing SpaceX Capabilities & Services spec sheet, archived 2025-08-06) |
Falcon 9 FT5 | GTO | 8,300 kg | Unknown | Unknown | SpaceX Falcon 9 vehicle page |
Falcon 9 | GTO | 8,300 kg | Unknown | 28.5 deg | SpaceX Capabilities & Services |
Falcon 9 | SSO | 7,742 kg | 500 km | 97.4 deg | SpaceX Falcon 9 User's Guide 2009, Table 4-3 via Spaceflight Now |
Falcon 9 FT5 | SSO | 7,742 kg | 500 km | 97.4 deg | SpaceX Falcon 9 User's Guide 2009, Table 4-3 via Spaceflight Now |
Falcon 9 FT5 | GTO | 5,800 kg | Unknown | Unknown | Falcon 9 - Wikipedia (citing SpaceX Capabilities & Services spec sheet, archived 2025-08-06) |
Falcon 9 | GTO | 5,500 kg | Unknown | 28.5 deg | SpaceX Capabilities & Services |
Falcon 9 FT5 | escape | 4,020 kg | Unknown | Unknown | SpaceX Falcon 9 vehicle page |
Falcon 9 | escape | 4,020 kg | Unknown | Unknown | SpaceX Capabilities & Services |
Falcon 9 FT5 |
| Jul 5, 2026 |
| Starlink-405 | Falcon 9 FT5 | Jul 2, 2026 |
| SXM-11 Mission | Falcon 9 FT5 | Jun 29, 2026 |
| Starlink-404 | Falcon 9 FT5 | Jun 28, 2026 |
| Starlink-403 | Falcon 9 FT5 | Jun 24, 2026 |
Upcoming mission rows with announced launch timing.
| Mission | Variant | Announced |
|---|---|---|
No forecasted missionsNo upcoming announced mission rows are linked to this vehicle family. | ||
Falcon 9 FT5 | Not stated | 606 | Active |
LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vandenberg as Starship i...
SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also online.
SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below SLC-4E.
SLC-40 is the Falcon high-throughput workhorse. Base stays below the FAA-analyzed 120/year cap to reflect range weather, maintenance, pad turnarounds, drone-ship cycles, and Stars...
LC-39A remains useful for crewed Dragon, high-priority NASA/commercial missions, and Falcon Heavy, but Falcon 9 single-stick work shifts toward SLC-40 and Vandenberg as Starship i...
SLC-4E already supports high polar/SSO and NRO/Starshield cadence. Base rises to about half of the authorized VSFB combined Falcon capacity once SLC-6 is also online.
SLC-6 provides the main incremental West Coast capacity. Ramp starts after pad modifications and operational shakeout, then reaches a mature cadence just below SLC-4E.
SpaceX planned to launch most Falcon 9 missions from SLC-40, including all Dragon missions, with LC-39A dedicated to Falcon Heavy and Starship operations.
Reditus Space, co-founded and led by CEO Stef Crum, is developing a reusable satellite named ENOS for on-orbit pharmaceutical and semiconductor manufacturing and plans to launch its first full orbital mission ENOS Mk1 as a rideshare on SpaceX’s Falcon 9.
As of August 28, 2017, SES moved SES-14 to an Ariane 5 ECA launch in early Q1 2018 and planned to have SpaceX launch SES-12 on a Falcon 9 in Q1 2018.
As of January 13, 2026, the U.S. Space Force swapped launch vehicles for GPS satellites so that GPS III Space Vehicle 09 (SV09) would fly on a Falcon 9 and GPS IIIF SV13 would fly on ULA's Vulcan.
SpaceX launched the GPS III-9 satellite to orbit on a Falcon 9 rocket.
SpaceX launched GPS III SV09 (GPS III-9) to orbit on January 28, 2026 using a Falcon 9.
The MB Group satellite will launch on Astranis’s Block 3 mission aboard a dedicated Falcon 9 targeting summer 2026.
Astranis purchased a dedicated Falcon 9 for its Block 3 mission a year before the announcement.
SpaceX is scheduled to launch its 10th Falcon 9 rocket of January 2026.
Deutsche Bank forecasts 3 New Glenn launches and 5 Falcon 9 launches for AST, with each carrying multiple satellites.
SpaceX launched 25 Starlink satellites from California using the Falcon 9 rocket on January 25, 2026.
SpaceX conducted Starship tile tests during a Falcon 9 launch from Vandenberg on January 25, 2026.
SpaceX completed the encapsulation of the GPS III-9 satellite inside the Falcon 9 fairing on January 22, 2026.
The head of the Polish Space Agency was dismissed following the Falcon 9 re-entry incident due to incorrect information being sent to the Ministry of National Defence.
After encapsulation, the integrated payload will be transferred to hangar at pad 40 for final integration with Falcon 9's first stage.
No one was injured and no property was damaged due to the Falcon 9 re-entry incident in Poland.
On 21 January 2025, ESA's Space Safety Programme published a call for tender for a study utilizing data collected from the Falcon 9 re-entry event over Poland.
SpaceX is targeting January 26, 2026 for the Falcon 9 launch of the U.S. Space Force's GPS III-9 mission.
The study aims to maximize the scientific return from the Falcon 9 re-entry event using publicly available data.
The encapsulation process involves placing the GPS III-9 satellite within Falcon 9's protective fairing to shield it during ascent through the atmosphere.