Sierra’s Dream Chaser Successfully Passes NASA Testing in Preparation for Launch

Sierra’s Dream Chaser Successfully Passes NASA Testing in Preparation for Launch

Sierra Space, a leading commercial space company and defense tech prime that is Building a Platform in Space to Benefit Life on Earth, announced it has successfully completed and passed its Joint Test 10B milestone in collaboration with NASA on the Dream Chaser spaceplane.

The test demonstrated several capabilities of Dream Chaser, including its ability to power-on, air-cool, and exchange data with multiple powered payloads inside its pressurized cabin. This is an important progression toward Dream Chaser’s planned mission to resupply the International Space Station (ISS).

“Tests like these are critical demonstrations of the capabilities of the Dream Chaser spaceplane and confirms our ability to handle specialized payloads such as vital scientific research that will be integral to our mission to the ISS,” said Pablo Gonzalez, Vice President of Crew & Cargo Transportation Systems at Sierra Space. "This milestone highlights Dream Chaser’s flexibility, reliability, and capability to meet the diverse needs of our payload customers – including NASA and commercial partners – and it brings us another step closer to launch."

The successful completion of this milestone confirms that Dream Chaser will accommodate various payloads. The Joint Test 10B demonstrated that Sierra Space can provide power within a specific voltage range and maintain the necessary environmental requirements for payloads. It also ensured all vehicle and payload data are seen in both Sierra Space’s mission control room in Louisville, Colorado, and in the payload support control rooms at NASA’s Marshall Spaceflight Center (MSFC) in Huntsville, Alabama.

During the Joint Test 10B, the test team successfully evaluated three key payloads, all of which are candidates for flight on DCC-1, the first official mission of Dream Chaser.

These payloads included:

  • Polar: A cryogenic preservation system developed by the University of Alabama at Birmingham and managed by NASA's Cold Stowage Lab and the University of Alabama at Birmingham. Polar is designed to preserve scientific samples aboard the ISS and other visiting spacecraft at temperatures ranging from -95°C to +10°C.
  • Powered Ascent Utility Locker (PAUL): A facility developed by Space Tango that holds two CubeLab experiments requiring power during ascent. These experiments often focus on biological research, such as cell and tissue cultures.
  • NASA’s Single Stowage Locker: A standard stowage system designed to carry experiments and other payloads in the Dream Chaser spaceplane.

"Space Tango's recent integration testing with the Sierra Space Dream Chaser went well and all teams were very happy with the results," said Anne Currin, Director of Mission Management at Space Tango. "We appreciate the steps the Sierra Space team has taken to get both the vehicle and Space Tango ready for a successful flight. It's been exciting to see this come together as we count down to a maiden flight that is scheduled to increase access for payload delivery to the International Space Station."

Click here to learn more about Sierra Space's National Security

Publisher: SatNow
Tags:-  LaunchGround

GNSS Constellations - A list of all GNSS satellites by constellations

beidou

Satellite NameOrbit Date
BeiDou-3 G4Geostationary Orbit (GEO)17 May, 2023
BeiDou-3 G2Geostationary Orbit (GEO)09 Mar, 2020
Compass-IGSO7Inclined Geosynchronous Orbit (IGSO)09 Feb, 2020
BeiDou-3 M19Medium Earth Orbit (MEO)16 Dec, 2019
BeiDou-3 M20Medium Earth Orbit (MEO)16 Dec, 2019
BeiDou-3 M21Medium Earth Orbit (MEO)23 Nov, 2019
BeiDou-3 M22Medium Earth Orbit (MEO)23 Nov, 2019
BeiDou-3 I3Inclined Geosynchronous Orbit (IGSO)04 Nov, 2019
BeiDou-3 M23Medium Earth Orbit (MEO)22 Sep, 2019
BeiDou-3 M24Medium Earth Orbit (MEO)22 Sep, 2019

galileo

Satellite NameOrbit Date
GSAT0223MEO - Near-Circular05 Dec, 2021
GSAT0224MEO - Near-Circular05 Dec, 2021
GSAT0219MEO - Near-Circular25 Jul, 2018
GSAT0220MEO - Near-Circular25 Jul, 2018
GSAT0221MEO - Near-Circular25 Jul, 2018
GSAT0222MEO - Near-Circular25 Jul, 2018
GSAT0215MEO - Near-Circular12 Dec, 2017
GSAT0216MEO - Near-Circular12 Dec, 2017
GSAT0217MEO - Near-Circular12 Dec, 2017
GSAT0218MEO - Near-Circular12 Dec, 2017

glonass

Satellite NameOrbit Date
Kosmos 2569--07 Aug, 2023
Kosmos 2564--28 Nov, 2022
Kosmos 2559--10 Oct, 2022
Kosmos 2557--07 Jul, 2022
Kosmos 2547--25 Oct, 2020
Kosmos 2545--16 Mar, 2020
Kosmos 2544--11 Dec, 2019
Kosmos 2534--27 May, 2019
Kosmos 2529--03 Nov, 2018
Kosmos 2527--16 Jun, 2018

gps

Satellite NameOrbit Date
Navstar 82Medium Earth Orbit19 Jan, 2023
Navstar 81Medium Earth Orbit17 Jun, 2021
Navstar 78Medium Earth Orbit22 Aug, 2019
Navstar 77Medium Earth Orbit23 Dec, 2018
Navstar 76Medium Earth Orbit05 Feb, 2016
Navstar 75Medium Earth Orbit31 Oct, 2015
Navstar 74Medium Earth Orbit15 Jul, 2015
Navstar 73Medium Earth Orbit25 Mar, 2015
Navstar 72Medium Earth Orbit29 Oct, 2014
Navstar 71Medium Earth Orbit02 Aug, 2014

irnss

Satellite NameOrbit Date
NVS-01Geostationary Orbit (GEO)29 May, 2023
IRNSS-1IInclined Geosynchronous Orbit (IGSO)12 Apr, 2018
IRNSS-1HSub Geosynchronous Transfer Orbit (Sub-GTO)31 Aug, 2017
IRNSS-1GGeostationary Orbit (GEO)28 Apr, 2016
IRNSS-1FGeostationary Orbit (GEO)10 Mar, 2016
IRNSS-1EGeosynchronous Orbit (IGSO)20 Jan, 2016
IRNSS-1DInclined Geosynchronous Orbit (IGSO)28 Mar, 2015
IRNSS-1CGeostationary Orbit (GEO)16 Oct, 2014
IRNSS-1BInclined Geosynchronous Orbit (IGSO)04 Apr, 2014
IRNSS-1AInclined Geosynchronous Orbit (IGSO)01 Jul, 2013