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ROCKET SCIENCE
Rocket Lab demonstrates new orbital maneuvering capability
by Staff Writers
Long Beach CA (SPX) Jan 28, 2021

File image of Rocket Lab's Electron Kick Stage being tested in orbit.

Rocket Lab, the global leader in dedicated small satellite launch, demonstrated the increased maneuvering capability of the Kick Stage during the company's 18th Electron launch, successfully burning the Curie engine for more than twice the standard mission duration and delivering more than 1,700 km of perigee change.

On January 20, 2021, Rocket Lab successfully launched a communications satellite for European space technology company, OHB Group, deploying the 50 kg class GMS-T satellite to a 1,200 km circular orbit - around 700 km higher than most Electron missions to date.

It's an orbit increasingly in demand for a growing number of constellations, but the unique altitude isn't a common target orbit for most rideshare missions, leaving satellites facing a long delay to find a ride going to their preferred orbit. Electron eliminates the wait time by delivering a dedicated service to orbit on a timeline that meets our customers' diverse needs.

After separating from Electron's second stage into an elliptical transfer orbit, the Kick Stage's 3D printed Curie engine performed two separate burns; one to raise OHB Group's satellite to a 1,200 km circular orbit, and a second burn to lower the Kick Stage's perigee after payload deployment, speeding up the de-orbit process to avoid the Kick Stage becoming long-term orbital debris.

Across the two maneuvers, Curie completed more than 267 seconds of total burn time and delivered 1,722 km of perigee change, ascending 982 km and descending 740 km. The complex maneuvers saw Curie burn for more than twice the standard Kick Stage mission profile to low Earth orbit. The extended burn time was made possible thanks to the adaptable design of the Kick Stage which enabled engineers to double the standard number of propellant tanks from four to eight, delivering more on-orbit performance.

"Increasingly we're seeing small satellite operators seeking unique orbits and complex mission profiles on tight timelines," said Peter Beck, Rocket Lab founder and CEO. "The Kick Stage delivers an unmatched level of on-orbit maneuverability for our customers, enabling them to get exactly where they need to, and get the most functionality from their spacecraft, all on a tight timeline."

'Another One Leaves the Crust' was launched just six months after the launch contract was signed with OHB Group, shaving more than two years off common wait times small satellites can experience to get on orbit. Beyond providing the launch service, Rocket Lab also built the reaction wheels and star tracker used in OHB's payload inside the six-month window too.

"By being fully vertically integrated, our team is in control of critical supply chain areas and can quickly scale manufacturing pace to meet customer demand, delivering a vehicle for launch in as little as 30 days," said Mr. Beck.

"As the second most frequently launched U.S. last year, our team has proven they can deliver an integration and launch campaign with unmatched speed and efficiency for the small satellite industry. In this instance the mission delivery time was just six months, but our team, manufacturing facilities, and launch infrastructure are capable of supporting even tighter timelines measured in short weeks."


Related Links
Rocket Lab
Rocket Science News at Space-Travel.Com


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ROCKET SCIENCE
Hot Fire met many objectives, test assessment underway
Bay St. Louis MS (SPX) Jan 26, 2021
For the Green Run hot fire test on Jan. 16, NASA set out to acquire test data to support 23 detailed verification objectives. To satisfy the objectives, hot fire test data is used in combination with analysis and testing that has already been completed. These detailed verification objectives are used to certify the design of the Space Launch System rocket's core stage. The preliminary assessment indicates that the data acquired met the goals for a number of the 23 objectives, such as those related ... read more

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