We’re deeply humbled to stand alongside so many visionary, future-forward companies announced this week on the 2026 Inc. 5000 list.
Pushing the limits of what’s possible to make extreme environments safer for human discovery, defense, and exploration truly takes a village. Endless gratitude to our committed, caring, and brilliant customers, partners, suppliers, investors, and above all - our small but mighty team! 🚀
👉 Read our full press release: https://t.co/R30O8SI8GP
@PalmerLuckey The American component ecosystem is hustling to deliver the best in microelectronics. We would love to make a video like this for @anduriltech:
While NASA’s Artemis III mission moves forward, work on Artemis IV and V is already underway! 🚀
At NASA's Michoud Assembly Facility in New Orleans, Louisiana, teams are making steady progress on the core stages for the SLS rockets.
Here’s a look at some recent moves and tests:
The Nancy Grace Roman Space Telescope has officially launched and is heading to its forever home at L2!
Over the next three months, the observatory will perform final checks and power its instruments before revealing its first images by early 2027.
https://t.co/IdabpolHmh
The Nancy Grace Roman Space Telescope has officially launched and is heading to its forever home at L2!
Over the next three months, the observatory will perform final checks and power its instruments before revealing its first images by early 2027.
https://t.co/IdabpolHmh
Onboard compute and radiation-hardened silicon are enabling the next era of autonomous, intelligent space systems.
@NOVI_Space deeply understands the technology challenges, the mindset shift, and the solutions needed to turn raw space data into actionable intelligence. Already in use by established space-industry leaders, explore NOVI’s flight-proven onboard computers, smart-satellite infrastructure, and mission capabilities.
Here's the premiere from @SmallSat yesterday: https://t.co/6K7yZLKuCO
Tired of trade-offs between radiation tolerance, cost, and schedule? With over 70 Missions flown, VORAGO's new innovative Twin Chip MCUs (rad-hard and rad-tolerant variants) give you mission redundancy without complexity, enabling faster development cycles and lower-risk deployments for smallsats in any orbit.
From deep space, GEO, MEO, LEO, VLEO down to subsurface exploration, our MCU solutions are built for the harshest conditions of on and off-planet extremes. Meet our team at SmallSat 2026, Salt Lake City next week and Achieve Your Mission at Booth #1734
@zerohedge The space economy requires the proper level of radiation-protected semiconductors for satellites in each orbit so payloads do not suffer impacts from a wide variety of radiation-induced errors. We specialize in that, and are here to serve.
VORAGO Technologies hardens ordinary silicon to survive 200+ krad of space radiation - using standard chip fabs.
Our cover story on @voragotech
https://t.co/UzCNGzY2Oj via Yespress
A great week visiting some of the teams across American industry helping make Artemis III possible.
From Collins Aerospace @RTX_News and @ScotForge to @L3HarrisTech and @blueorigin, it was great to get on the factory floor, see the hardware coming together, and talk with the teams behind it.
Returning American astronauts to the Moon is an enormous undertaking. It takes the best of NASA and American industry working together to deliver.
Over the past two weeks, @NOAA (National Oceanic & Atmospheric Administration) observed several waves of elevated geomagnetic activity driven by a mix of coronal mass ejections (CMEs) and coronal hole high-speed streams (CH HSS). With high-energy particles striking like microscopic bullets, we are reminded that radiation threats to microelectronics aren't limited to space. ⚡
Elevated TID levels and direct particle strikes can compromise success in every domain across every operational layer ==> from orbital satellites and atmospheric flight down to ground fleets and subsurface energy exploration.
Balancing performance, reliability, and cost is critical: over-specifying rad-hard chips destroys your checkbook, while under-specifying risks mission survival.
So how do you map the right radiation and thermal protection across 4 different domains—from space to sea and in between?
Read our latest deep-dive to find out 👇
https://t.co/Wxa8YaiYZv
💰Space budgets are tight, and Development schedules are tighter. VORAGO's Twin MCUs let you prototype and launch missions on Rad-Tol and Rad-Hard silicon with no rework, no requalification pain. Come talk mission economics and requirements with our engineers at Booth #1734 during
@SmallSat 2026, Aug 23–26 • Salt Lake City. Private Room available 8.26 at 3:20pm. Email [email protected] to schedule.
The space race is very real.
Artemis III launches in 2027. American astronauts return to the lunar surface in 2028. And in parallel, we’re building the Moon Base and establishing an enduring American presence.
With the direction and resources from @POTUS, America is going back to stay.
Current Space-Economy Challenge: Maximizing repeatability while still meeting specific customer requirements. The more you can standardize the underlying design and production approach, the faster your Speed-to-Orbit. With VORAGO, you can design once, and achieve mission-matched radiation protection for any orbit, whether Rad-tolerant or Rad-Hard is required. Learn how at https://t.co/XSd2XVRKaN