Союз
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 | 16 | 0 |
| 2020 | 15 | 0 |
| 2021 | 21 | 0 |
| 2022 | 17 | 0 |
| 2023 | 15 | 0 |
| 2024 | 14 | 0 |
| 2025 | 12 | 0 |
| 2026 | 6 | 8 |
| 2027 | 0 | 8 |
| 2028 | 0 | 8 |
| 2029 | 0 | 8 |
| 2030 | 0 | 8 |
| 2031 | 0 | 8 |
| 2032 | 0 | 8 |
| 2033 | 0 | 8 |
| 2034 | 0 | 8 |
| 2035 | 0 | 8 |
Payload capacity by variant and target orbit when structured capacity rows are available.
| Variant | Orbit | Capacity | Altitude | Inclination | Source |
|---|---|---|---|---|---|
Soyuz-2-1B Союз-2.1б | LEO | 8,320 kg | 200 km | 51.7 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1B Союз-2.1б | LEO | 8,200 kg | 200 km | 51.8 deg | RKTs Progress Soyuz-2 page |
Latest launched missions using variants in this family.
| Mission | Variant | Launch |
|---|---|---|
| Progress MS-34 Mission | Soyuz-2-1A Союз-2.1а | Apr 25, 2026 |
| Kosmos-2609/2612? | Soyuz-2-1B Союз-2.1б | Apr 16, 2026 |
| Meridian No. 21L? | Soyuz-2-1A Fregat | Apr 3, 2026 |
| Rassvet-3 G1 |
Canonical variants rolled up into this launch vehicle family.
| Variant | Stages | Missions | Status |
|---|---|---|---|
Soyuz-2-1A Союз-2.1а | Not stated | 57 | Active |
Soyuz-2-1A Fregat | Not stated | 23 | Active |
Soyuz-2-1A Volga | Not stated | 1 | Retired |
Soyuz-2-1B Союз-2.1б | Not stated | 24 |
| 2036 | 0 | 8 |
| 2037 | 0 | 8 |
| 2038 | 0 | 8 |
| 2039 | 0 | 8 |
| 2040 | 0 | 8 |
| 2041 | 0 | 8 |
1 launch location represented.
| Year | Location | Launches | Confidence | Basis |
|---|---|---|---|---|
| 2026 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2027 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active crew/cargo and payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2028 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2029 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2030 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2031 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2032 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2033 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2034 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2035 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active crew/cargo and payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2036 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2037 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2038 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2039 | Baikonur Cosmodrome | Site 31/6 | 8 | 30% | Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence. |
| 2040 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active crew/cargo and payload variant; conservative annual rate below historical Soyuz-family ability. |
| 2041 | Baikonur Cosmodrome | Site 31/6 | 8 | 35% | Soyuz-2 active crew/cargo and payload variant; conservative annual rate below historical Soyuz-family ability. Site-year coverage backfill copied nearest prior... |
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Soyuz-2 active crew/cargo and payload variant; conservative annual rate below historical Soyuz-family ability.
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability.
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability.
Soyuz-2-1A Союз-2.1а | LEO | 7,150 kg | 200 km | 51.7 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1A Союз-2.1а | LEO | 7,020 kg | 200 km | 51.8 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1B Fregat | LEO | 6,900 kg | Unknown | Unknown | Manual variant fallback from Soyuz-2-1B family capacity. |
Soyuz-2-1B Союз-2.1б | LEO | 6,900 kg | 200 km | 98.3 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1B Союз-2.1б | Polar | 6,900 kg | 200 km | 98.3 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1A Союз-2.1а | Polar | 5,900 kg | 200 km | 98.3 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1A Fregat | LEO | 5,900 kg | Unknown | Unknown | Manual variant fallback from Soyuz-2-1A family capacity. |
Soyuz-2-1A Союз-2.1а | LEO | 5,900 kg | 200 km | 98.3 deg | RKTs Progress Soyuz-2 page |
Soyuz-2-1B Fregat | SSO | 4,900 kg | 660 km | Unknown | Arianespace Soyuz CSG User's Manual Issue 2.1, May 2018 |
Soyuz-2-1A Fregat | SSO | 4,450 kg | 660 km | Unknown | Arianespace Soyuz CSG User's Manual Issue 2.1, May 2018 |
Soyuz-2-1B Fregat | GTO | 3,250 kg | Unknown | Unknown | Arianespace Soyuz CSG User Manual Issue 2.1 |
Soyuz-2-1B Fregat | TLI | 1,800 kg | Unknown | Unknown | Arianespace Soyuz CSG User Manual; Soyuz/Fregat lunar mission heritage |
Soyuz-2-1B Союз-2.1б | TLI | 1,500 kg | Unknown | Unknown | RKTs Progress Soyuz-2 page |
Soyuz-2-1A Fregat | TLI | 1,500 kg | Unknown | Unknown | Arianespace Soyuz CSG User Manual; Soyuz/Fregat high-energy mission heritage |
Soyuz-2-1B Союз-2.1б |
| Mar 23, 2026 |
| Progress MS-33 Mission | Soyuz-2-1A Союз-2.1а | Mar 22, 2026 |
| Kosmos-2600-2608? | Soyuz-2-1B Fregat | Feb 5, 2026 |
| Aist-2T No. 1/2 | Soyuz-2-1B Fregat | Dec 28, 2025 |
| Obzor-R No. 1 Mission | Soyuz-2-1A Союз-2.1а | Dec 25, 2025 |
Upcoming mission rows with announced launch timing.
| Mission | Variant | Announced |
|---|---|---|
No forecasted missionsNo upcoming announced mission rows are linked to this vehicle family. | ||
| Active |
Soyuz-2-1B Fregat | Not stated | 59 | Active |
Soyuz-FG | Not stated | 60 | Retired |
Soyuz-FG Fregat | Not stated | 10 | Retired |
Soyuz-ST-A Fregat | Not stated | 9 | Retired |
Soyuz-ST-B Fregat | Not stated | 18 | Retired |
Soyuz-U | Not stated | 633 | Retired |
Soyuz-U2 | Not stated | 72 | Retired |
Soyuz-U-PVB | Not stated | 144 | Retired |
Soyuz-U-PVB Fregat | Not stated | 4 | Retired |
Soyuz-U-PVB Ikar | Not stated | 6 | Retired |
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Soyuz-2 active crew/cargo and payload variant; conservative annual rate below historical Soyuz-family ability.
Editable low-confidence Soyuz-2/Fregat variant annual throughput default inherited from Soyuz-2 family cadence.
Soyuz-2 active payload variant; conservative annual rate below historical Soyuz-family ability.
Progress Rocket Space Center will build both the first and second stages of Soyuz-5.
Soyuz-5 will use existing infrastructure at Baikonur that was originally built for the Zenit rocket, with certain upgrades to the launch pad and processing facilities.
GK Launch Services does not plan to recover and reuse Soyuz-5 components to reduce launch costs.
A heavy-lift rocket using six Soyuz-5 first-stage boosters would be designed to place more than 100,000 kg into low Earth orbit.
The current Soyuz-5 design uses a version of the RD-0124 engine to power its second stage.
Soyuz-2 will continue to be used for human spaceflight and for launching smaller satellites.
NASA astronaut Chris Cassidy will fly to the International Space Station (ISS) next April on a Soyuz spacecraft alongside Russian cosmonauts Nikolai Tikhonov and Andrei Babkin.
NASA has decided to fly Cassidy on the only available Soyuz seat due to delays in commercial crew vehicles.
In addition to 20 Soyuz launches, OneWeb agreed to launch 30 satellites on Arianespace's maiden flight of the Ariane 6 in the second half of 2020.
Sergei Krikalev of Roscosmos stated that NASA has made only a preliminary request for additional Soyuz seats.
NASA Administrator Jim Bridenstine indicated that there will likely be negotiations for at least one additional Soyuz seat with Roscosmos.
Cassidy will use the last Soyuz seat currently reserved by NASA with Roscosmos.
Hazza Al Mansoori launched to the International Space Station on Soyuz MS-15 on 2019-09-25 and returned on Soyuz MS-12 on 2019-10-03.
NASA expects to buy at least one more Soyuz seat from Russia to provide assured access to the International Space Station should commercial crew vehicles suffer additional delays.
Astroscale’s End-of-Life Service by Astroscale-demonstration (ELSA-d) mission is scheduled to launch in 2020 on a GK Launch Services Soyuz 2 mission.
ELSA-d is scheduled to launch in 2020 on a Soyuz rocket from Baikonur Cosmodrome in Kazakhstan.
GK Launch Services will use Soyuz-2 family launch vehicles to launch Kepler’s next-generation satellites.
Kepler arranged the Soyuz launch through Innovative Space Logistics, the Dutch launch broker that arranged Kepler’s first two prototypes to launch in 2018 on a Chinese Long March 11 and an Indian PSLV.
Kepler will launch two six-unit cubesats on a Russian Soyuz rocket operated by GK Launch Services in mid-2020.
Kepler has two more launches planned in 2020 in addition to the GK Launch Services Soyuz mission.