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 | 6 | 0 |
| 2020 | 7 | 0 |
| 2021 | 6 | 0 |
| 2022 | 9 | 0 |
| 2023 | 9 | 0 |
| 2024 | 14 | 0 |
| 2025 | 18 | 0 |
| 2026 | 8 | 22 |
| 2027 | 0 | 23 |
| 2028 | 0 | 26 |
| 2029 | 0 | 29 |
| 2030 | 0 | 30 |
| 2031 | 0 | 30 |
| 2032 | 0 | 30 |
| 2033 | 0 | 30 |
| 2034 | 0 | 30 |
| 2035 | 0 | 30 |
Payload capacity by variant and target orbit when structured capacity rows are available.
| Variant | Orbit | Capacity | Altitude | Inclination | Source |
|---|---|---|---|---|---|
Electron | LEO | 300 kg | Unknown | Unknown | Rocket Lab Electron vehicle page |
Electron | SSO | 200 kg | 500 km | Unknown | Rocket Lab Electron Payload User's Guide |
Latest launched missions using variants in this family.
| Mission | Variant | Launch |
|---|---|---|
| VICTUS HAZE Puma Mission | Electron | Jun 19, 2026 |
| Viva La StriX | Electron | May 22, 2026 |
| Kakushin Rising | Electron | Apr 23, 2026 |
| Daughter of the Stars |
Canonical variants rolled up into this launch vehicle family.
| Variant | Stages | Missions | Status |
|---|---|---|---|
Electron | Not stated | 81 | Active |
| 2036 | 0 | 30 |
| 2037 | 0 | 30 |
| 2038 | 0 | 30 |
| 2039 | 0 | 30 |
| 2040 | 0 | 30 |
| 2041 | 0 | 30 |
3 launch locations represented.
| Year | Location | Launches | Confidence | Basis |
|---|---|---|---|---|
| 2026 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 10 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2026 | Wallops Flight Facility / MARS | Launch Complex 2 | 2 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2026 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 10 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2027 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 10 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2027 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 10 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2027 | Wallops Flight Facility / MARS | Launch Complex 2 | 3 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2028 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 11 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2028 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 11 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2028 | Wallops Flight Facility / MARS | Launch Complex 2 | 4 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2029 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2029 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2029 | Wallops Flight Facility / MARS | Launch Complex 2 | 5 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2030 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2030 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2030 | Wallops Flight Facility / MARS | Launch Complex 2 | 6 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2031 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2031 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2031 | Wallops Flight Facility / MARS | Launch Complex 2 | 6 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2032 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2032 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2032 | Wallops Flight Facility / MARS | Launch Complex 2 | 6 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
| 2033 | Rocket Lab Launch Complex 1A, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opport... |
| 2033 | Rocket Lab Launch Complex 1B, Mahia Peninsula (Rocket Lab Launch Complex 1, Onenui Station, Mahia Peninsula) | 12 | 75% | LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count. |
| 2033 | Wallops Flight Facility / MARS | Launch Complex 2 | 6 | 65% | NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030. |
LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count.
NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030.
LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opportunities.
LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opportunities.
Electron |
| Mar 28, 2026 |
| Eight Days A Week | Electron | Mar 20, 2026 |
| Insight At Speed Is A... | Electron | Mar 5, 2026 |
| Bridging the Swarm | Electron | Jan 30, 2026 |
| Cosmos Will See You Now | Electron | Jan 22, 2026 |
Upcoming mission rows with announced launch timing.
| Mission | Variant | Announced |
|---|---|---|
No forecasted missionsNo upcoming announced mission rows are linked to this vehicle family. | ||
LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count.
NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030.
LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opportunities.
LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count.
NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030.
LC-1A is modeled as half of Rocket Lab's practical Mahia cadence. Base is anchored by Rocket Lab's 21-launch 2025 record, not the theoretical 120 launch opportunities.
LC-1B doubles scheduling flexibility; modeled equal to LC-1A after mature operations. Base remains demand-constrained and far below published opportunity count.
NASA says LC-2 can support up to 12 launches/year, but U.S. Electron demand and range/customer processing likely keep practical base around 6/year by 2030.
Rocket Lab expects roughly 20% growth in launches, including both Electron orbital launches and HASTE suborbital launches.
Rocket Lab flew a record 21 Electron missions in 2025.
Rocket Lab achieved a record cadence of seven Electron launches in Q4 2025.
BlackSky will have a total of 17 Electron launches after the additional four-launch contract with Rocket Lab.
Rocket Lab contracted an additional four Electron launches for BlackSky.
HASTE is the suborbital version of the Electron launch vehicle designed to support high-speed test campaigns.
HASTE stands for Hypersonic Accelerator Suborbital Test Electron.
The "Solar Induced Hot Electron Current Measurements via Quantum Dot Upconversion" experiment will be led by principal investigator Dr. Dong Hee Son of the Department of Chemistry with co-principal investigator Ian Murray of the Department of Chemistry to measure hot electron currents generated by quantum dot upconversion under solar illumination in space.
Celeste Pathfinder A will launch aboard Rocket Lab’s Electron mission named Daughter Of The Stars.
The Xihe-2 payload includes a High-Energy Radiation Spectrometer to detect hard X-rays and gamma rays and determine non-thermal electron and ion acceleration sites during flares.
In 2025 the Eastern and Western Ranges accounted for all but one orbital launch from the United States, with the exception being a Rocket Lab Electron launch from the Mid-Atlantic Regional Spaceport on Wallops Island, Virginia.
Similar inverted V electron spectra have been observed at Jupiter by NASA’s Juno spacecraft, linking Jupiter’s powerful auroras to comparable acceleration signatures.
Electron energy spectra above auroral regions display characteristic inverted V-shaped structures that are signatures of a steady potential drop along the magnetic field line.
Rocket Lab established operations at Wallops Island for Electron and plans to operate Neutron from Wallops to avoid Cape congestion.
The UMass Amherst team hypothesizes that the dark charge sector includes a very heavy, hypothesized particle called a 'dark electron'.
Electron provides dedicated access to tailored low Earth orbits for small satellite missions.
Electron is a dedicated small launch vehicle for commercial, civil, and national security customers.
Rocket Lab’s upcoming Electron missions in 2026 include flights for commercial Earth observation operators, international space agencies, national security customers, and hypersonic technology development programs.
The intensity and energy reach of the CEBAF electron beam enabled the team to extend the data into higher kinematic regions.
The high heat flux installation is planned to be the most powerful facility of its kind in the United States and will reproduce intense thermal loads using electron beam technology.