Showing posts with label Vast. Show all posts
Showing posts with label Vast. Show all posts

Thursday, February 12, 2026

A Commercial Company Other Than Axiom Space Will Send a Crew to the ISS...

A mosaic of the International Space Station...using photos taken by an astronaut aboard SpaceX's Crew Dragon Endeavour capsule on November 8, 2021.
NASA

Vast Selected by NASA for Sixth Private Astronaut Mission to International Space Station (Press Release)

Vast, the company developing next-generation space stations, has signed an order with NASA for the sixth private astronaut mission to the International Space Station, targeted to launch no earlier than summer 2027 from Florida. It is Vast’s first private astronaut mission to the space station in partnership with NASA.

“Vast is honored to have been selected by NASA for the sixth private astronaut mission to the International Space Station,” said Max Haot, CEO of Vast. “Leveraging the remaining life of the International Space Station with science and research-led commercial crewed missions is a critical part of the transition to commercial space stations and fully unlocking the orbital economy.”

The Vast private astronaut mission crew is expected to spend up to 14 days aboard the space station. A specific launch date will depend on overall spacecraft traffic at the orbital outpost and other planning considerations. SpaceX’s Falcon 9 rocket will launch the crew on a Dragon spacecraft to the space station as previously announced.

The mission will generate invaluable insights into the infrastructure and processes required for Vast to safely accomplish human spaceflight missions. The mission supports deeper collaboration with NASA and international space agencies in addition to strengthening Vast’s position as a candidate to deliver its proposed successor to the space station, the multi-module, continuously-crewed Haven-2.

Vast is planning a robust science and research portfolio with a focus on biology and biotechnology, physical sciences, human research, and technology demonstrations for the mission. Last year, Vast announced a call for research proposals for a potential PAM mission. In addition, Vast’s current agreement with CASIS will enable increased throughput of high-quality science that aligns with its science strategy.

Source: VastSpace.com

Tuesday, January 20, 2026

The Latest Update on One of the Orbital Successors to the ISS...

Integration is conducted on the primary flight structure for the Haven-1 space station...at Vast HQ in Long Beach, CA.
Vast

Vast Advances Haven‑1 Into Integration Phase (News Release)

Vast, the company developing next-generation space stations, announced that integration has begun on Haven-1. Scheduled to be the world’s first commercial space station, Haven-1 is designed as a standalone, crewed station and serves as the first step for Haven-2, a multi-module station capable of supporting a continuous human presence in low-Earth orbit (LEO) that is Vast’s proposed successor to the International Space Station (ISS).

Haven-1 is an integral part of the company’s hardware-rich development approach that is putting flight-hardware and systems through rigorous ground and in-space testing to accelerate learning, reduce technical and schedule risk, and unlock new commercial and government capabilities in LEO. Haven-1 is designed to expand access to space and provide an affordable platform for microgravity research, manufacturing, and both national and international space infrastructure.

The first phase of Haven-1 integration includes installation of the station’s pressurized fluid systems, including thermal control, life support, and propulsion system tubes, and component trays and tanks. These systems will undergo pressure, leak and functional testing. The second phase of integration will incorporate avionics, guidance, navigation and control systems, and air revitalization hardware.

The third and final phase will complete the vehicle with crew habitation and interior closeouts, exterior micrometeoroid and orbital debris (MMOD) shielding, thermal radiator installation, and solar array integration, bringing Haven-1 to a fully flight-ready configuration. Vast remains focused on completing integration and conducting a suite of system environmental tests at NASA’s Neil Armstrong Test Facility later in 2026.

Based on the current integration timeline, Vast is updating its schedule for Haven-1 to be ready to launch Q1 2027. Haven-1 is contracted to launch on a SpaceX Falcon 9 from Cape Canaveral, Florida. With each milestone, the team gains more data and greater certainty, enabling timelines to become progressively more precise.

Haven-1 represents a true zero-to-one development, and as Vast moves on to its second, third and subsequent stations, schedule precision will continue to improve as systems, processes, and integration maturity increases. Throughout this process, human safety remains the team’s top priority, with development and manufacturing pace carefully balanced to ensure mission integrity.

“From the beginning, our business plan has been about building a sustainable future in orbit, one that meets today’s market while creating the foundation for what comes next,” said Max Haot, CEO of Vast. “Haven-1 is not a concept; it is real, flight-tested hardware designed to carry forward a continuous human presence in low-Earth orbit for America and its allies. By vertically integrating design, manufacturing, testing and operations, we’re moving with both speed and autonomy. Haven-1 brings the next era of space stations within reach and helps ensure there is no gap in our ability to live and work in space beyond the ISS.”

Vast’s hardware-rich, stepping-stone approach accelerates development while improving safety and reducing cost by building, testing and flying systems early. This is reinforced by Vast’s vertically-integrated model, which has already delivered a 10X reduction in primary structure manufacturing costs compared to traditional space station programs, while increasing capability, improving schedule certainty, and shortening manufacturing timelines.

Haven-1 Development: Recap of 2025 Milestones

Throughout 2025, Vast completed a series of major Haven-1 milestones, advancing the station from component-level development to a fully-qualified flight structure.

In October, Vast installed and completed fit verification of the passive docking system on Haven-1, confirming mechanical alignment, and interface compatibility with visiting crewed spacecraft.

In late 2025, Vast conducted acceptance testing of the Haven-1 flight primary structure, culminating in full-scale pressure testing at Vast’s testing site in Mojave, California. The flight primary structure was pressurized beyond nominal operating conditions to validate structural margins, weld integrity, and leak performance, marking a critical step towards human-rated operations.

The Haven-1 primary structure represents the second primary structure that Vast has completed in one year and demonstrates the company’s leadership in returning space station manufacturing and testing to the United States after more than two decades.

Vast is now the only operational commercial space station company to have successfully flown and operated its own spacecraft in orbit. On November 2, 2025, Haven Demo, an in-orbit testbed for key space station technologies and the first step in our stepping stone approach, achieved mission success. Through Haven Demo, core systems, including power, avionics, ground systems, propulsion, and guidance, navigation and control, were validated in space, directly informing the final design of Haven-1.

Source: VastSpace.com

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Integration is conducted on the primary flight structure for the Haven-1 space station...at Vast HQ in Long Beach, CA.
Vast

Friday, May 30, 2025

The Latest Update on One of the Orbital Successors to the ISS...

An artist's concept of a SpaceX Crew Dragon capsule docked to Vast's Haven-1 orbital outpost.
Vast

NASA Helps with Progress on Vast’s Haven-1 Commercial Space Station (News Release - May 28)

NASA-supported commercial space station, Vast’s Haven-1, recently completed a test of a critical air filter system for keeping future astronauts healthy in orbit. Testing confirmed that the system can maintain a safe and healthy atmosphere for all planned Haven-1 mission phases.

Testing of the trace contaminant control system was completed at NASA’s Marshall Space Flight Center in Huntsville, Alabama, as part of a reimbursable Space Act Agreement. Vast also holds an unfunded Space Act Agreement with NASA as part of the second Collaborations for Commercial Space Capabilities initiative.

The subsystem of the environmental control and life support system is comprised of various filters designed to scrub hazardous chemicals produced by both humans and materials on the commercial station. During the test, a representative chemical environment was injected into a sealed environmental chamber, and the filtration system was turned on to verify that the trace contaminant control system could maintain a healthy atmosphere.

“Testing of environmental control systems and subsystems is critical to ensure the health and safety of future commercial space station crews,” said Angela Hart, program manager for NASA’s Commercial Low-Earth Orbit Development Program at the agency’s Johnson Space Center in Houston. “Through NASA’s agreements with Vast and our other industry partners, the agency is contributing technical expertise, technologies, services and facilities to support companies in the development of commercial stations while providing NASA important insight into the development and readiness to support future agency needs and services in low-Earth orbit.”

Experts used the same environmental chamber at Marshall to test the International Space Station environmental control and life support system.

The knowledge and data gained during the recent testing will help validate Vast’s Haven-1 and support future Haven-2 development.

NASA supports the design and development of multiple commercial space stations through funded and unfunded agreements. NASA plans to procure services from one or more companies following the design and development phase as part of the agency’s strategy to become one of many customers for low-Earth orbit stations.

Source: NASA.Gov

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The trace contaminant control system for Vast's Haven-1 space station inside an environmental chamber at NASA's Marshall Space Flight Center in Huntsville, Alabama.
NASA

Monday, April 7, 2025

The Latest Update on One of the Orbital Successors to the ISS...

An artist's concept of a SpaceX Crew Dragon capsule docked to Vast's Haven-1 orbital outpost.
Vast

Vast Secures Agreement with NASA to Test Haven-1 Flight Vehicle at Armstrong Test Facility (Press Release - April 3)

Vast and NASA have signed an agreement to allow Vast to perform the final environmental test campaign of the Haven-1 flight-ready station at the Neil Armstrong Test Facility at NASA’s Glenn Research Center in Sandusky, Ohio. Haven-1 testing will occur at the Neil Armstrong Test Facility’s Space Environments Complex, home to some of the world's largest and most capable space simulation test facilities. Scheduled to begin in early 2026, Haven-1 will undergo rigorous testing to verify its performance and reliability when exposed to environments that it will experience during launch and on-orbit operations, including acoustics, vibration, electromagnetic interference and thermal vacuum.

‍Haven-1, Vast’s commercial space station and crewed microgravity research, development and manufacturing platform, built at historically low-costs, aims to open up new frontiers in space science by broadening access for more nations and commercial partners to conduct research and contribute to making long-term space habitation possible. This testing agreement is another significant milestone, demonstrating Vast’s rapid progress as an official Commercial Low-Earth Orbit Development Program partner.

"We're thankful for NASA's support to test the Haven-1 flight vehicle at this historical and world-renowned facility; it is a testament to the growing importance of Vast as a commercial destination partner. Having a proven commercial space station on orbit before the International Space Station is retired is critical," said Max Haot, CEO of Vast.

Vast recently successfully completed its pressure test of the Haven-1 primary structure qualification article, and is currently building the flight-ready primary structure for this testing milestone. Haven-1 is scheduled to launch no earlier than May 2026.

Source: VastSpace.com

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A file photo of the Thermal Vacuum Chamber inside the Neil Armstrong Test Facility at NASA’s Glenn Research Center in Sandusky, Ohio.
NASA

Thursday, February 6, 2025

The Latest Update on One of the Orbital Successors to the ISS...

A snapshot of Vast's Haven-1 Pathfinder article inside its test stand at Mojave, California.
Vast

Vast Passes Critical Haven-1 Test Milestone (Press Release)

Vast is making rapid progress in designing and engineering Haven-1, establishing ourselves as a space station company—a title we believe is only earned by successfully building a station and safely hosting crew in orbit. Today, there are no operational commercial space station companies—only those working to achieve that milestone.

With the successful completion of the first crewed mission to Haven-1 on the updated timeline outlined below, Vast is on track to become the world’s first operational commercial space station company—well ahead of any other efforts. We kicked off the development of Haven-1, the first commercial space station, as part of a strategic plan to rapidly iterate on space station manufacturing for three main reasons:

1. Win NASA’s Commercial Low-Earth Orbit Destination (CLD) Phase II Contract

Vast was founded in 2021. At the time, NASA had already launched the CLD program and awarded funding to other companies. Recognizing the need for a leapfrog strategy, we developed Haven-1 to set us apart. When NASA selects its partner(s) to carry forward its low-Earth orbit (LEO) legacy, we will be the only company operating a crewed space station—one we designed, built, tested and verified for safety entirely in-house.

By then, we will have:

- Conducted crewed missions
- Established commercial partnerships for R&D
- Leveraged microgravity for economic and scientific benefits
- Developed and implemented crew training procedures
- Built capabilities for science, research and all phases of flight operations

Every lesson learned from Haven-1 will be applied to our CLD Phase II proposal—Haven-2. No team will have more operational experience than Vast. No design will carry as much flight heritage.

No company will be better positioned to deliver for NASA as fast—thanks to our work and over $1 billion investment in Haven-1 ahead of CLD Phase II.

2. Build a World-Class Team, Processes and Facilities for Crewed Space Systems

‍At Vast, we believe that building a spacecraft under real-world budget and timeline constraints is the only way to develop the capabilities required for a successful space station. Others focus solely on design milestones, but what works on paper often breaks down when faced with manufacturing, supply chain and testing realities.

For example, Vast initially selected stainless steel as the primary structural material for Haven-1. However, due to manufacturing challenges and delays, we launched a parallel effort in November 2023 to explore aluminum as an alternative. By March 2024, after hands-on manufacturing experience with both materials, our team completed a trade study and selected aluminum—driven by real-world constraints, not theoretical assumptions.

This philosophy applies to every critical subsystem, including avionics, control moment gyroscopes (CMGs), power systems, life support and propulsion. We are actively maturing these technologies in-house and with trusted partners to ensure that they are mission-ready for Haven-1 and future Vast stations. These are just a few reasons why no bidder will have more direct experience going into the CLD Phase II selection than Vast.

3. Ensure a Continuous U.S. and International Partner Presence in LEO

‍With the planned retirement of the ISS in 2030, we believe that it is imperative that the U.S. government have at least two years of overlap between its decommissioning and any successor station. To fill this critical gap, Vast is committed to developing safe and capable space stations at unprecedented speed and cost efficiency.

By leveraging Haven-1’s proven design, team, facilities and subsystems, we are confident that, if selected by mid-2026, we can launch Haven-2’s first module and have it ready to host crew as early as the end of 2028.

Haven-1 Primary Structure Development

‍Vast rapidly built the Haven-1 primary structure qualification article—the first space station primary structure built in the U.S. in over two decades—to demonstrate its ability to withstand the launch and on-orbit environments throughout its operational lifetime. This effort began with the Haven-1 Pathfinder article, manufactured between November 2023 and June 2024, which established the necessary tooling, team and processes. The Pathfinder validated our ability to fabricate all critical geometries and interfaces required for Haven-1.

‍In July 2024, we began milling, inspecting, rolling and welding the primary structure qualification article, completing it in six months. Building on that success, we began manufacturing our flight-ready primary structure in January 2025. We remain on track to complete it by July 2025—a major milestone leading into the Haven-1 flight integration campaign.

Vast is producing space station primary structures in-house at an unprecedented pace—under six months per hull. This efficiency sets a new benchmark in space station manufacturing and is a key differentiator in our bid to succeed the ISS.

Vertically-integrated production of Haven-1 is happening in the United States. This approach strengthens U.S. leadership in space and benefits our future international partners, ensuring an affordable, rapid build of the successor to the ISS, and preventing any gap in human spaceflight and scientific research in LEO.

Haven-1 Primary Structure Qualification Proof Test

‍On Friday, January 31, our team began the test campaign for Haven-1’s primary structure qualification article after completing all on-test stand integration tasks, procedure checks and rehearsals. This marks the first of many full-scale vehicle test campaigns for Vast.

We initiated the test with a decay leak check at 0.2 barD, which passed successfully.

Next, we performed the proof test, pressurizing the vehicle to 1.8 barD (26 psig). As expected:

- No visual changes were observed.
- No leaks were detected.
- The pressure held steady for 5 hours, with the leak rate remaining within specification for 10 minutes.
- All strain gauges stayed within acceptable ranges.

Following this, we maintained the vehicle at 3 psi (0.2 bar) for 48 hours without adding new nitrogen gas to measure the leak rate. The leak rate was indiscernible, exceeding NASA’s 1.2 standard cubic centimeters per minute requirement. This test procedure follows NASA Standard 5001, ensuring compliance with rigorous safety and performance standards.

Testing Results

‍We are proud to report that Haven-1 successfully passed its primary structure qualification proof test on the first attempt—a critical milestone in our journey. This achievement demonstrates:

- The full proof qualification of a space station pressure vessel
- A space station structure designed, built and tested entirely in-house by Vast
- A record timeline—completed in just 15 months from zero aluminum work to a proof-tested structure

This is just the beginning for Vast’s vehicle operations. Our team is incredibly proud of this milestone and remains focused on what’s next. Over the coming weeks, we will complete the full qualification test campaign, which involves:

- Applying simulated launch and on-orbit forces using hydraulic actuators
- Conducting structural load tests under pressure
- Replicating the flight conditions that the vehicle will experience in orbit

Stay tuned for updates on our social media and a full blog post once the campaign is complete.

Source: VastSpace.com

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An updated timeline for Haven-1's development and launch campaign.
Vast

Tuesday, December 24, 2024

A Christmas Eve Update: Another Private Company Wants to Join Axiom Space in Sending Astronauts to the ISS...

A SpaceX Falcon 9 rocket carrying the Crew Dragon Freedom capsule lifts off from Kennedy Space Center's Launch Complex 39A in Florida...on January 18, 2024.
SpaceX

Vast Announces Deal with SpaceX to Launch Two Human Spaceflight Missions to the International Space Station (News Release - December 19)

Vast, the pioneering space habitation technology company building Haven-1, which is expected to become the world’s first commercial station when it launches in 2025, announced today that SpaceX’s Falcon 9 rocket will launch up to two Dragon missions to the International Space Station (ISS) in support of Vast’s future bid for NASA’s private astronaut missions (PAM). These missions, contingent on Vast being selected by NASA, will be the fifth and sixth PAMs ever awarded by the agency.

While Vast is developing its private space station, Haven-1, the company plans to leverage additional missions to the ISS in partnership with NASA to draw on the agency’s extensive expertise. These missions provide opportunities to collaborate with private individuals and international space agency customers through the NASA PAM program and strengthen current partnerships. This is an important step as Vast prepares to compete with its Haven-2 design in NASA’s upcoming Commercial Low-Earth Orbit Destination (CLD) Phase II program, which is positioned to select a successor to the ISS.‍

‍"Enabling payload and crewed missions to the ISS is a key part of Vast’s strategy, allowing us to further our collaboration with NASA and global space agencies. These missions not only strengthen our expertise in human spaceflight operations and collaboration with NASA, but also position Vast as a leading contender to deliver the next-generation successor to the ISS, advancing the future of human space exploration," said Max Haot, Chief Executive Officer of Vast.‍

‍These two missions expand Vast’s launch manifest with SpaceX, which includes the company’s Falcon 9 rocket delivering Haven-1 to low-Earth orbit and a subsequent Dragon mission to fly crew to the commercial space station. Haven-1 will also be supported by Starlink laser-based high-speed internet.

‍ ‍“I am excited to work with Vast as they build more opportunities and destinations for more people to travel amongst the stars,” said Gwynne Shotwell, SpaceX’s President and Chief Operating Officer.‍

‍With SpaceX’s Falcon 9 and Dragon human spaceflight system, a Vast PAM mission is set to achieve multiple NASA objectives, including increasing the number of PAM providers, more widely sharing the knowledge and experience gained from conducting PAM missions, and supporting NASA in further meeting its mandate of enabling a low-Earth orbit (LEO) space economy.

NASA’s PAM strategy was introduced in 2019 to accelerate a burgeoning LEO space economy and highlight the utility of future commercial destinations. PAMs have allowed commercial industry partners to gain valuable insight into the costs and operations of LEO destinations, giving them insight into the infrastructure and processes required to safely accomplish a human spaceflight mission. This includes crew selection and training, mission planning and execution, mission management, cargo integration, and crew health and medical care protocols.

The success of these missions has subsequently increased the demand for more PAMs, now exceeding NASA’s supply of opportunities as the ISS nears retirement in 2030.

Sovereign governments have also expressed strong interest in flying crews to the ISS. Vast is in active discussions with multiple governments regarding PAMs, including the Czech Republic, which signed an MOU with Vast in November 2024.‍

In preparation for missions to Haven-1 and the NASA CLD Phase II contract competition, NASA’s PAM program offers Vast an additional opportunity to demonstrate its capability and competency to plan, manage, and safely and successfully execute a crewed mission in its entirety. These missions will augment knowledge and lessons learned applicable to Haven-1 and Haven-2, Vast’s CLD space station and proposed successor to the ISS.

Source: VastSpace.com

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An artist's concept of a SpaceX Crew Dragon capsule docked to Vast's Haven-1 orbital outpost.
Vast

Thursday, October 17, 2024

Another Orbital Outpost Is in the Works (Hopefully)...

An artist's concept of Vast's Haven-2 space station in low-Earth orbit.
Vast

Vast Announces Haven-2, Its Proposed Space Station Designed to Succeed the International Space Station (Press Release - October 14)

Future Space Station’s Advanced Capabilities Projected to Surpass the ISS at an Unprecedented Low Cost to Government and Commercial Customers

During the 75th International Astronautical Congress (IAC), Vast, the U.S.-based space habitation technology company, unveiled Haven-2 — the proposed successor to the International Space Station (ISS) and the next step in the company’s vision to pioneer a path to long-term living and thriving in space.

With the planned retirement of the International Space Station (ISS) by 2030, NASA conceived the Commercial LEO Destination (CLD) program and is expected to select its Phase 2 winner(s) in mid-2026. Laser-focused on securing this prestigious contract to build the successor to the ISS, Vast has developed Haven-2, designed to offer the most compelling solution to ensure continued U.S. and international partner presence in low-Earth orbit (LEO).

“Our focus this decade is to win the NASA Commercial LEO Destination (CLD) contract and build the successor to the International Space Station,” said Max Haot, Vast CEO. “To achieve this, we will first demonstrate our capability by building and operating the world’s first commercial space station, Haven-1, which is set to launch in 2025.”

Haven-2: The Future of Commercial Space Stations

If selected in 2026, Vast plans to have the first module of Haven-2, an evolved and NASA-certified version of Haven-1, fully operational in orbit by 2028. This near-term timeline is made possible by leveraging Vast's significant private investment in the design, build, launch and operation of Haven-1. The first Haven-2 Module will be 5 meters longer than Haven-1, offering nearly twice the livable volume of its predecessor while utilizing all the same proven systems.

Vast’s demonstrated progress with Haven-1, combined with architecture based on this proven heritage, positions the company as the best choice to safeguard U.S. and international partner interests in space.

Scalable, Cost-Efficient Expansion of Haven-2

Following the deployment of the first Haven-2 module, Vast plans to build and launch three additional modules over a two-year period. These modules will adhere to the same efficient and cost-effective design template, further expanding the station's usable volume, enhancing available facilities, and efficiently delivering additional critical life support systems and consumables.

With each successive Haven-2 module delivery, Vast will introduce more advanced and efficient life support technologies. Each subsequent module will feature expanded payload facilities while maintaining the same fundamental module design and heritage.

Andrew Feustel, a Vast advisor and veteran NASA astronaut with over 23 years of experience and three missions to the ISS, provided input into the features of the station design, noting that the potential for international collaboration is continued into the station’s architecture: “Haven-2 is being designed with compatibility in mind, ensuring that international partners can integrate seamlessly into this next-generation platform. This vision of global cooperation in space will create opportunities for scientific and technological advancements, benefiting new and current sovereign partners as well as industries around the world.”

Haven-2 features the Haven-2 Lab, which offers state-of-the-art laboratory facilities to support a wide range of microgravity research and in-space manufacturing. With more volume and power capacity than its predecessor, Haven-1, the Haven-2 Lab accommodates larger payloads and laboratory equipment, provides extensive integration options for experiments and specialized equipment, and increases operational flexibility while ensuring ample power and thermal control for high-demand projects.

Additionally, the Haven-2 Lab meets all of NASA’s Basic Laboratory Capabilities for the CLD program, aligning with the highest standards for orbital research facility readiness.

To foster international collaboration, the Haven-2 Lab also offers the option to dedicate an entire module or a specific laboratory facility to international partners, creating opportunities for global participation in microgravity research.

2030 and Beyond: Full Capability of Haven-2 Realized

Between 2030 and 2032, Vast will add a larger 7-meter diameter core module and four more Haven-2 modules, fully realizing the next-generation commercial space station capable of meeting the needs of international partners, NASA, commercial researchers & manufacturers, and private astronauts.

Key features of the completed station include an unprecedented 3.8-meter diameter cupola window, external payload hosting capabilities, a robotic arm, visiting vehicle berthing capabilities, external payload airlock, and an extravehicular activity (EVA) airlock to support customers' needs. Each module will also feature two Haven-1-like 1.1-meter dome windows, totaling 16 windows by 2032.

Vast’s design is projected to surpass all other proposed on-orbit space stations in terms of volume, functionality and operational efficiency. With unparalleled capabilities, Haven-2 will be the benchmark for next-generation space stations, ensuring that the U.S. and its international partners continue to lead and foster the LEO economy.

Earlier this week, Vast unveiled its final Haven-1 design — introducing never-before-seen features to support productivity and microgravity lab advancements. Haven-2 will iterate upon this visionary design philosophy.

Source: VastSpace.com

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Wednesday, May 10, 2023

Another Commercial Space Station Lurks on the Horizon...

An artist's concept of a SpaceX Crew Dragon capsule docked to Vast's Haven-1 orbital outpost.
Vast

VAST Announces the Haven-1 and VAST-1 Missions (Press Release)

Scheduled to be the world's first commercial space station, Haven-1 and subsequent human spaceflight missions will accelerate access to space exploration.

LONG BEACH, Calif. — Vast, a pioneer in space habitation technologies, announced today their plans to launch the world’s first commercial space station, called Haven-1. Scheduled to launch on a SpaceX Falcon 9 rocket to low-Earth orbit no earlier than August 2025, Haven-1 will initially act as an independent crewed space station prior to being connected as a module to a larger Vast space station currently in development.

The mission will be quickly followed by Vast-1, the first human spaceflight mission to Haven-1 on a SpaceX Dragon spacecraft. The vehicle and its four-person crew will dock with Haven-1 for up to 30 days while orbiting Earth.

Vast also secured an option with SpaceX for an additional human spaceflight mission to Haven-1.

This represents the first time in history that a commercial space station company has both a contracted launch for its space station and a visiting human spaceflight mission.

“Vast is thrilled to embark on this journey of launching the world's first commercial space station, Haven-1, and its first crew, Vast-1,” said Jed McCaleb, CEO of Vast. “We are grateful to SpaceX for this exciting partnership that represents the first steps in Vast’s long-term vision of launching much larger, artificial gravity space stations in Earth orbit and beyond.”

“A commercial rocket launching a commercial spacecraft with commercial astronauts to a commercial space station is the future of low-Earth orbit, and with Vast we’re taking another step toward making that future a reality,” said Tom Ochinero, Senior Vice President of Commercial Business at SpaceX. “The SpaceX team couldn’t be more excited to launch Vast’s Haven-1 and support their follow-on human spaceflight missions to the orbiting commercial space station.”

Vast’s long-term goal is to develop a 100-meter-long multi-module spinning artificial gravity space station launched by SpaceX’s Starship transportation system. In support of this, Vast will explore conducting the world’s first spinning artificial gravity experiment on a commercial space station with Haven-1.

Vast is selling up to four crewed seats on the inaugural mission to Haven-1. Expected customers include domestic and international space agencies and private individuals involved in science and philanthropic projects. Visit vastspace.com/reserve for more details.

SpaceX will also provide crew training on Falcon 9 and the Dragon spacecraft, emergency preparedness, spacesuit and spacecraft ingress and egress exercises, as well as partial and full mission simulations including docking and undocking with Haven-1 for return to Earth.

Source: VastSpace.com

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