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 |
|---|---|---|
| 2026 | 0 | 1 |
| 2027 | 0 | 2 |
| 2028 | 0 | 3 |
| 2029 | 0 | 4 |
| 2030 | 0 | 4 |
| 2031 | 0 | 4 |
| 2032 | 0 | 5 |
| 2033 | 0 | 5 |
| 2034 | 0 | 5 |
| 2035 | 0 | 6 |
| 2036 | 0 | 6 |
| 2037 | 0 | 6 |
| 2038 | 0 | 6 |
| 2039 | 0 | 6 |
| 2040 | 0 | 6 |
| 2041 | 0 | 6 |
1 launch location represented.
Payload capacity by variant and target orbit when structured capacity rows are available.
| Variant | Orbit | Capacity | Altitude | Inclination | Source |
|---|---|---|---|---|---|
Nova | LEO | 7,000 kg | Unknown | Unknown | Stoke Space Nova |
Nova | LEO | 3,000 kg | Unknown | Unknown | Stoke Space Nova |
Latest launched missions using variants in this family.
| Mission | Variant | Launch |
|---|---|---|
No recent missionsNo launched missions are linked to variants in this family. | ||
Upcoming mission rows with announced launch timing.
| Mission | Variant | Announced |
|---|---|---|
No forecasted missionsNo upcoming announced mission rows are linked to this vehicle family. | ||
Canonical variants rolled up into this launch vehicle family.
| Variant | Stages | Missions | Status |
|---|---|---|---|
Nova | Not stated | 0 | Development |
| Year | Location | Launches | Confidence | Basis |
|---|---|---|---|---|
| 2026 | Cape Canaveral Space Force Station | SLC-14 | 1 | 25% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2027 | Cape Canaveral Space Force Station | SLC-14 | 2 | 25% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2028 | Cape Canaveral Space Force Station | SLC-14 | 3 | 25% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2029 | Cape Canaveral Space Force Station | SLC-14 | 4 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2030 | Cape Canaveral Space Force Station | SLC-14 | 4 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2031 | Cape Canaveral Space Force Station | SLC-14 | 4 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2032 | Cape Canaveral Space Force Station | SLC-14 | 5 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2033 | Cape Canaveral Space Force Station | SLC-14 | 5 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2034 | Cape Canaveral Space Force Station | SLC-14 | 5 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2035 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2036 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2037 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2038 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2039 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2040 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
| 2041 | Cape Canaveral Space Force Station | SLC-14 | 6 | 20% | Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operati... |
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
Conservative startup-ramp annual family throughput default: Nova is development-stage; early regulatory material supports phased low-cadence expendable operations before reuse. Si...
| GTO |
| 2,500 kg |
| Unknown |
| Unknown |
| Stoke Space Nova |
Nova | TLI | 1,250 kg | Unknown | Unknown | Stoke Space Nova |
Nova | escape | 800 kg | Unknown | Unknown | Stoke Space Nova |
Exolaunch provided the EXOpod Nova deployer for the mission, a deployer developed in collaboration with Spire.
Intuitive Machines is planning for up to three Nova-C lander launches in 2024.
Intuitive Machines is developing two additional Nova-C landers for IM-2 and IM-3 that will also carry NASA CLPS payloads.
Exolaunch provided its EXOpod Nova deployer for the mission, which was developed in collaboration with Spire.
The Barry-1 payload was built on a platform provided by EnduroSat and integrated into an Exolaunch EXOpod Nova deployer.
Exolaunch provided the EXOpod Nova deployer on Transporter-9, which was developed in collaboration with Spire.
Nova Carter AMR provides 360° perception using cameras and light detection and ranging (LiDAR).
Nova Carter AMR utilizes the NVIDIA AGX Orin for accelerated computing under ROS 2.
Nova Carter AMR is designed with a highly secure and reliable architecture to support autonomous operations.
The Nova-C lunar lander is scheduled to launch to the Moon on a Falcon 9 from Kennedy Space Center’s Launch Complex 39A on November 16.
Intuitive Machines is working on a second Nova-C lander, IM-2, expected to launch next year.
The Nova-C lander weighs 675 kilograms and will attempt a landing at the Moon’s Malapert A crater.
Intuitive Machines completed a pre-ship review for the Nova-C lander, confirming that no work is left to do on the vehicle.
Intuitive Machines is developing the Nova-C lunar lander for its IM-1 mission.
Houston-based Intuitive Machines unveiled its completed first lunar lander, the Nova-C lander.
MANTIS was integrated with its EXOpod Nova deployment system in Berlin prior to completing integrations with SpaceX’s Falcon 9.
Intuitive Machines unveiled the completed Nova-C lander at its new Houston headquarters on 2023-10-03 after completing a pre-ship review.
IM-1 is required to launch from Launch Complex 39A because only that pad is configured to fuel the Nova-C lander with methane and liquid oxygen shortly before liftoff.
Shield AI is developing an AI pilot named Hivemind, which has flown an F-16 fighter jet, a V-BAT drone, and a Nova quadcopter.
Kongsberg NanoAvionics' AYRIS-1, AYRIS-2, and All-DELTA satellites were deployed using EXOpod Nova deployers on Transporter-8.