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🚨 BREAKING: India puts an eye in geosynchronous orbit. 🇮🇳🛰️ ISRO’s GSLV-F17 has successfully placed EOS-05 into orbit — India’s first-ever imaging satellite operating from geosynchronous orbit. From nearly 36,000 km above Earth, EOS-05 can continuously monitor the Indian landmass and sub continent, capturing images every 30 minutes and...

46,061 views • 17 hours ago •via X (Twitter)

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Orbit AI Satellite Successfully Achieve World’s First Orbital AI Deployment and Launching Digital AI Sovereignty Decentralized Orbital AI Network Orbit AI Orbit AI🛰️ today announced that the first satellite, “OAI Genesis-1,” has successfully launched and entered Low Earth Orbit (LEO). Amidst fierce competition from tech giants (e.g., Starlink Starlink Elon Musk , Google AI Project Suncatcher) in space AI computing, this launch signifies Orbit AI’s position as the first to achieve real-world AI deployment, formally inaugurating its "Orbit AI Cloud Platform." Genesis-1 is equipped with NVIDIA NVIDIA AI Compute Cores, running a 2.6B parameter AI model for real-time analysis of infrared remote sensing data in space. By processing data on orbit, Genesis-1 drastically reduces critical information retrieval time (e.g., disaster alerts, maritime monitoring) from hours to mere seconds, while cutting transmission bandwidth costs by over 90%. Furthermore, Orbit AI has partnered with from energy company Powerbank (NASDAQ: SUUN) ( utilizing infinite solar power to achieve carbon-neutral computing and projecting a reduction in overall energy operational costs by 60%. Following its triumph at the BNB Chain Hackathon ( Orbit AI protocol is committed to creating an ultimate censorship-resistant deployment environment: Developers can deploy AI models, privacy applications, financial algorithms, and even blockchain nodes on the satellite network. This ensures that code and data operate in a physically isolated, neutral environment beyond the jurisdiction of major nations, guaranteeing extreme digital sovereignty and service resilience. Orbit AI will also leverage the RWA (Real World Assets) mechanism to allow community users to purchase satellite NFT shares, becoming co-owners of this space infrastructure and sharing in its compute revenues, thus building a community-owned orbital AI economy.

Orbit AI🛰️

24,839 views • 8 months ago

🇹🇼 SPACEX JUST LAUNCHED TAIWAN’S FIRST HOME-BUILT SATELLITE SpaceX fired up its Falcon 9 rocket from California and gave Taiwan’s brand-new Formosat-8 satellite a ride to space. This isn’t just some shiny tech toy. It’s the first fully built-in-Taiwan satellite meant for serious business: watching Earth, tracking disasters, and showing the world that Taiwan’s space game is no joke. The satellite, named “Chi Po-lin” after a famous Taiwanese aerial photographer, is the first in a planned constellation of eight. It’ll orbit at 561 kilometers above the Earth and snap high-res images for everything from urban planning to spotting deforestation. And no, it’s not just science class stuff. This thing helps with disaster response, climate monitoring, and yes, national security. About 84% to 86% of the satellite was built using Taiwanese-made tech, a huge leap for a country trying to grow its space independence. Taiwan’s space agency (TASA) plans to launch a new Formosat satellite every year until 2031. When it’s done, Taiwan will have its own sky-eye network scanning Earth like a sci-fi movie come to life. While some countries still rent satellite time or import the tech, Taiwan is doing it DIY-style. This is not only about building cool hardware, it’s about making sure they’re not depending on anyone else when it comes to critical data from space. And props to SpaceX for being the go-to launch partner for countries that actually build their own satellites. Elon’s rocket crew keeps proving that if it fits in the payload bay, they’ll get it to orbit fast, smooth, and with a cloud of fire. Sources: Al Arabiya English, RTI Taiwan, TVBS, Taiwan News

Mario Nawfal

103,643 views • 9 months ago

Shijian-31: a satellite with an orbit we have never seen before China launched Shijian-31 on June 16 from Xichang, officially described as a "space environment detection" mission. The orbital elements suggest more going on. The inclination 63.46° sits at the value where perigee advance goes to zero. Anyone who's tracked Molniya-class satellites will recognize that immediately. But the resemblance stops there. A classic Molniya parks its apogee over high northern latitudes and dwells for hours, that's the whole design premise. SJ-31's argument of perigee is 171°, which puts perigee near the equator and its apogee on the opposite side. (Image 1: SJ-31 at 171° argument of perigee vs. a generic Molniya at 270° argument of perigee.) So the long dwell isn't over any particular latitude — it's over altitude. Apogee reaches ~39,900 km, about 4,100 km above the operational GEO belt where comms and missile-warning satellites sit. Nearly a third of each 12.5-hour orbit is spent above that shell, crossing it twice per pass at a steep 63° angle. (Video 1: SJ-31's orbit visualized with example GEO assets.) It's also not fixed on one region. The period is just off a clean repeating ground track, so the sub-apogee point slowly drifts around the globe — sweeping past every longitude roughly once every 24 days. Net effect: an orbit that periodically looks down on the entire GEO belt from above, at an angle, on a rotating schedule, rather than fixating on one target. What's it actually doing up there? SpaceNews Breaking Defense Joey Roulette Space Domain Awareness Jonathan McDowell Integrity ISR

COMSPOC_OPS

301,729 views • 1 month ago

Neil deGrasse Tyson just revealed that we're building a trap around Earth that could switch off the modern world. And every major country is making it worse on PURPOSE. Right now there is a land grab happening a few hundred miles above your head: SpaceX alone has already put more than 10,000 Starlink satellites into orbit. Around 5,000 objects went up in 2025, and even more are planned this year. By 2040, there could be 100,000 active satellites circling the planet. Every major nation is trying to claim its share and there are almost NO laws governing any of it. Tyson describes the current state of space as a wild west. So why should you care? The hidden trap: In 1978, a NASA scientist named Donald Kessler ran a calculation that space agencies have feared ever since. He found there is a threshold. Once you pack enough satellites into orbit, a single collision stops being an accident and becomes a chain reaction. How it works: Objects in orbit travel at roughly 17,000 miles per hour, which is FASTER than a rifle bullet. At that speed, even a fleck of paint hits with the force of a bullet. So when two satellites collide, they shatter into thousands of pieces, and every single piece becomes a hypersonic bullet of its own. Each of those pieces can strike another satellite, which explodes into thousands more. One collision becomes ten. Ten become a hundred. A hundred become a thousand. Tyson warns that within just a few orbits, this cascade could wipe out close to 100% of the satellites around Earth. Now think about what those satellites run... There is no GPS without them, which means no Google Maps, no ride-sharing, and no navigation. As Tyson put it, there is no Uber without GPS. There is no high-speed internet for ships, planes, remote towns, or entire militaries. There is no reliable weather forecasting and no global financial timing. The invisible backbone of modern life runs through a few thousand machines in orbit, and we are stacking them closer together every year with no traffic rules and no cleanup crew. And it has already begun: Four countries have already blown up their own satellites just to flex their military power. The US, China, Russia, and India have all done it, and every one of those tests scattered thousands of fresh bullets into orbit. Tyson even joked that if aliens ever came to visit, they took one look at the cloud of junk we wrapped around our own planet and decided it was not worth the risk to land. Every player already knows the danger. The problem is that the same logic that fills the sky also traps everyone inside it. Starlink is worth a fortune. Global satellite internet is worth a fortune. Military control of orbit is priceless. So everyone keeps launching, because the first one to stop simply hands the lead to a rival. No country will slow down, because no law forces them to and there is no reward for going first. So we keep running the same experiment on the one thin layer of space that every phone, map, market, and military on Earth depends on. We are simply betting that nobody triggers the first big collision. The scary part is that it only has to happen ONCE. We spent decades dreaming about everything we would build out in space but we may end up locked underneath the garbage we left there instead. This is easily the best interview Steven Bartlett has done in a while.

Ricardo

70,058 views • 1 month ago

If you're new to $EOS.AX, here's everything that matters. I think this is a prime in the making. Here's why. What they actually do Electro Optic Systems is an Australian defence technology company with four decades of experience in lasers, optics, and weapons systems. They build remote weapon stations, high-energy lasers, counter-drone systems, and space domain awareness infrastructure; and now the AI command-and-control layer to connect all of it. Land EOS has sold over 2,500 remote weapon stations globally. Their R400 Slinger is battle-proven in Ukraine; 160 systems deployed, with the Ukrainian Ambassador visiting EOS headquarters this week and publicly confirming the Slinger is receiving positive operational feedback from the battlefield. General Dynamics selected EOS as sole partner to integrate the R400 autonomously onto the M1 Abrams tank. Thousands of platforms, $3B addressable market over 15 years. Counter-drone Apollo is their 100kW high-energy laser. The Netherlands signed the world's first 100kW HELW export contract at €71.4M, and it's running six months ahead of schedule. Their Slinger cannon system is the kinetic layer. EOS has recently acquired MARSS, bringing NiDAR; an AI-enabled command and control system with 60+ fielded systems globally as the brain connecting everything. EOS can now sell a full integrated kill chain - detect, decide, engage. Sea EOS doesn't build ships. What it does is provide the weapon layer on unmanned surface vessels. R400 RWS demonstrated on BlackSea Technologies' USV at Sea-Air-Space in April alongside Lockheed Martin. A €31M order for Slinger counter-drone systems configured for naval deployment; EOS's largest ever naval RWS contract, funded by a Western European government. Space This is the part most people miss. EOS has been tracking objects in orbit from Mount Stromlo for four decades. Atlas Space Control - unveiled at IAC 2025 - weaponises that capability. Ground-based high-energy lasers, fixed or mobile, scalable from surveillance through to active engagement. As Russia parks military satellites 500 metres from commercial imaging assets supplying Ukraine, this stops being a niche product. They just appointed Air Vice-Marshal (Ret'd) Catherine Roberts to the board; inaugural Commander of Defence Space Command in Australia, 40 years of aerospace engineering, and oversight of $16B in major programmes. They're stacking the deck to own the space domain. C2 - the connective tissue Without command and control, EOS is a components vendor, but MARSS NiDAR changes that. It fuses sensors and orchestrates effectors across all domains at machine speed. The integrated EOS-MARSS stack has already defeated Iranian Shahed drones defending Gulf infrastructure in active conflict. Netherlands World's first export contract for a 100kW high-energy laser weapon @ €71.4M and running ahead of schedule. The Dutch client is already signalling readiness for serial production orders before first delivery. This is NATO reference architecture. Germany Defence Minister Pistorius visited Mount Stromlo in March 2026. CEO Schwer presented binding offers for 10 Apollo 100kW systems (€380M) plus Atlas. EOS pitch - twice the power, half the price, half the time. A German CEO with Rheinmetall executive pedigree doesn't walk into those rooms by accident. Middle East 500+ EOS remote weapon stations already in Emirati service. Calidus - Abu Dhabi's major defence integrator - took a A$40M strategic stake in EOS and is co-producing systems in a UAE manufacturing hub. Their joint system DAMITA is the UAE's first indigenous integrated counter-drone platform; EOS laser, EOS turret, MARSS NiDAR brain. This is the Gulf reference architecture, with a clear replication path into Saudi Arabia, Kuwait, Qatar, and Bahrain. Africa MARSS is finalising a >US$190M C4I programme with Nigeria's Ministry of Defence; NiDAR as a national command architecture, regional hubs, ISR UAVs. One of the largest defence programmes ever commissioned in Africa, with both sides publicly confirming they're moving toward contract signature. When it converts, it pushes the combined order book toward A$1B. The ITAR advantage US laser and defence companies are world class but export restricted, whereas EOS is ITAR free. They can sell to Europe, the Middle East, and Asia without years of Washington approval. That's not a minor detail; it's the entire competitive moat in a market where every NATO ally is scrambling to rearm. The numbers Order backlog - A$700M+ and growing. Gross margins - 76%. Net cash: ~A$235M post capital raise. A$190M institutional raise just completed with Calidus as strategic anchor investor. The setup The market is still pricing this like a small Australian manufacturer. The order book, the partnerships, the product depth, the combat validation, and the geopolitical tailwinds say something else entirely. Air, land, sea, space, and the brain to run them. That's the company EOS is becoming.

OptimusDelta

226,487 views • 3 months ago

Like it or not, Space is now a dangerous neighborhood. It's time to bring back the neighorhood watch. Today we're announcing Perceptor-- our new Space Domain Awareness spacecraft, and our first product line outside of comms. The message we've heard from Space Force these last few years has been loud and clear-- GEO is the most important orbit for military space. But that presents a problem, since there are few companies that can reliably and quickly deploy spacecraft to GEO. And it's not just for the military. The infrastructure operating in GEO provides communications, navigation and other critical services that billions of people rely on. It is well known that China and Russia are now launching spacecraft capable of approaching, inspecting and potentially interfering with other satellites. Based on the flight proven MicroGEO platform Astranis is already flying on orbit today, Perceptor brings monitoring and maneuverability to GEO and other high orbits. When an unfamiliar object begins maneuvering near a critical asset, operators need more than a dot on a screen. They need eyes in the sky they can rely on. Satellites in GEO operate across an enormous area nearly 36,000 kilometers up, that encompasses the entire Earth. Ground-based systems can’t provide the persistent, close-range awareness needed to understand exactly what another spacecraft is doing or why it may be maneuvering near a critical asset. As humanity expands outward from LEO and builds out the infrastructure layer higher up, it needs safety and security in place to protect it. That's why Astranis has answered the call. Ad astra per aspera.

John Gedmark

14,072 views • 21 days ago

Elon Musk built a second internet above the first one. Nobody asked him to. Thousands of satellites orbit at 550 kilometers. Moving at 25 times the speed of sound. Talking to each other through lasers in the vacuum of space. Musk: “Thousands of satellites providing low latency, high-speed internet throughout the world.” Before Starlink, satellite internet lived at 36,000 kilometers. Geostationary orbit. Signals traveling a tenth of the way to the moon before bouncing back. The lag made it barely functional. Musk dropped the altitude by 98%. One decision rewrote the physics of an entire industry. But the altitude wasn’t the real play. Musk: “There are laser links between the satellites. It forms a laser mesh. The satellites can communicate between each other and provide connectivity even if the cables are cut.” Every internet connection you’ve ever used runs through cables. Fiber optic lines buried in soil. Dragged across ocean floors. Threaded through chokepoints that every military maps before anything else. A single anchor drop can black out a country. An earthquake can sever a continent. The entire digital world hangs from threads in the mud. Musk built a network that doesn’t touch the ground. No cables. No trenches. No ocean floor. No single point of failure. A constellation of machines whispering to each other through light at the edge of the atmosphere. The men who tried before him weren’t fools. Gates backed Teledesic at the height of Microsoft’s power. Motorola built Iridium with the best engineers alive. Both paid someone else to reach orbit. Both went to zero. Musk owned the rocket. SpaceX made launch reusable. Built the satellites in-house. Flew them on its own rockets. Owned every inch of the chain from factory floor to orbit. That isn’t a cost advantage. It’s a moat no one can cross without first building a rocket company from scratch. Starlink passed 10 million subscribers as a side project. Every telecom executive on Earth watched it happen. Not one of them can explain the architecture underneath. They think he built a better satellite company. He built the only network that survives when the ground gives out. And the ground always gives out.

Dustin

96,928 views • 3 months ago