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Who Is Attacking India’s Surveillance Satellites? This is the second time in one year that a satellite critical for India’s surveillance and national security has failed to reach its designated orbit. Despite ISRO’s strong historical success with PSLV missions, both failures occurred at the sensitive third stage, leading to...

19,577 Aufrufe • vor 8 Monaten •via X (Twitter)

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🚨🇵🇰 Pakistan soars toward tech sovereignty with fifth satellite in 'Space Vision 2040' push Over the past 16 months, Pakistan has launched five satellites. The country's media announced the fifth and most recent successful launch at the end of last week. All five satellites are designed for Earth observation. Primary uses include: 🔸 Monitoring crops and forecasting agricultural yields 🔸 Assessing soil condition and tracking fertilizer use 🔸 Detecting and controlling unauthorized construction 🔸 Planning transport networks 🔸 Conducting maritime border surveillance and port monitoring 🔸 Supporting geological exploration and mineral detection 🔸 Monitoring water and air pollution Satellite manufacturing: All five satellites were built by Pakistan’s domestic aerospace industry. Four of them are entirely indigenous innovations, while one was developed in collaboration with China. China’s role in the project: All satellites were launched using Chinese carrier rockets China also provided technical support, enabling Pakistan to access advanced space technologies while gradually strengthening its own domestic production capabilities Significance: The deployment of these five advanced satellites is part of Pakistan’s long-term national strategy, known as "Space Vision 2040." The overarching goal is to achieve full technological sovereignty — enabling Pakistan not only to manufacture its own satellites in the future but also to launch them independently from its own soil.

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Excited to announce UtilitySat, the world’s first multi-mission geostationary satellite, that we're launching at the end of this year. This is a first of its kind. And a new product line-- providing on-demand connectivity for disaster relief, bridge capacity, and other missions. We started Astranis to build something new: small communications satellites that provide dedicated broadband capacity for our customers. At the end of this year we’re launching four more of them on a dedicated Falcon 9 rocket, with many more to come after that. That launch of four satellites includes one satellite for Peru, two satellites for in-flight connectivity, and a fourth satellite that had been previously kept under wraps. Until now. Introducing UtilitySat, the Swiss Army Knife of satellites This is a new product— the world’s first multi-mission commercial GEO satellite, capable of conducting multiple fully-operational broadband connectivity missions. And it is just the first of many. We’ll plan to launch many UtilitySats in the years to come. UtilitySat can provide connectivity on standard Ku, Ka, and Q/V bands, and has the flexibility to dial in exact frequencies using Astranis’s proprietary ultra-wideband software-defined radio. It can also relocate dozens of times around the GEO belt over its lifetime. It does this using our unique on-board dual-propulsion architecture, which includes both a chemical monopropellant system and an electric ion thruster. A new mission every year, or every month When we first began development of UtilitySat almost 2 years ago, we had many different missions in mind. UtilitySat can serve as bridge capacity for a customer that is waiting for a dedicated satellite, as an on-orbit spare, or as extra, surge capacity that can be brought in to supplement the broadband service we’re providing to one of our customers. There are acute needs as well — a natural disaster can wipe out terrestrial connectivity over a huge geographic area. One of the top priorities for first responders and during disaster relief is reliable comms on the ground. With multiple UtilitySats on orbit, Astranis can bring in extra capacity on incredibly short notice. Capacity that is compatible with existing, low-cost GEO ground terminals. In initial conversations with customers for UtilitySat, we’ve seen huge demand — these customers often want to lease the entire capacity of the satellite once they learn what UtilitySat can offer. Customers need all the capacity they can get, and new capacity that can be deployed on short notice is a huge deal and a huge departure from traditional GEO satellites. We see a future where customers will be able to call up extra capacity on demand to augment their existing capacity needs, and we’re making that future a reality. US Government applications The first UtilitySat mission will be a commercial one, but we are seeing enormous demand from both from commercial companies and from our government customers. The US Government has unique needs — Combatant Commanders need to be able to task dedicated satellites to specific AORs at a moment’s notice — and surge communications would give them a new tool in their toolbox, helping them win even in a contested environment. And more broadly speaking our military leaders have said the one priority in national security space is to add resiliency to our fleets, using larger numbers of smaller, flexible, and maneuverable satellites so we’re not dependent on just a handful of huge satellites in GEO. UtilitySat shows that Astranis can do just that. Not traditional GEO satellites UtilitySat is only possible because of Astranis’s unique technology — including our proprietary software–defined radio. The flexibility of having on-board digital signal processing allows us to build a standardized satellite design, and move a lot of what used to be done in hardware, into software. UtilitySat uses the standard Astranis MicroGEO platform, adding more frequency bands and some new software capabilities to make maximum use of the available spectrum, no matter where the satellite is on orbit. Traditional geostationary satellites are designed to sit in one orbital slot for up to 20 years, with a set of frequency bands that is hardwired in at the factory. Their single mission must be predetermined many years before they are launched. Astranis does not build traditional GEO satellites. From day one we knew there had to be a better way, and we’re doing it.

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🇵🇰🚀 Pakistan Completes EO-3 Launch, Accelerating Its Satellite Constellation Drive Pakistan has successfully placed its PRSC EO-3 Earth Observation Satellite into orbit, marking a significant step in the country’s expanding space programme. The satellite, developed domestically by SUPARCO, was launched from China’s Taiyuan Satellite Launch Center, underscoring a model of local manufacturing supported by external launch capability. EO-3 completes a three satellite Earth Observation series: ◽EO-1 (2025) ◽EO-2 (February 2026) ◽EO-3 (latest launch) Together, they form the backbone of a planned integrated Earth Observation system aimed at improving data availability and coverage. Pakistan now operates 5+ Earth observation satellites, with most deployed in the last two years, highlighting a noticeable acceleration in activity. Officials describe the programme as part of a broader shift: 📡 From isolated missions → to a coordinated satellite network From external reliance → to increasing data independence 🚀 From slow launches → to a structured rollout strategy The EO-3 mission also reflects continued technical cooperation with China, particularly in launch services. With additional satellites expected in the coming years, Pakistan appears to be moving toward a multi satellite constellation designed for regular, wide area monitoring. The direction is clear: a steady build up rather than a one off achievement.

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Here it is: Director of National Disgrace James Clapper: This, is one project —overthrowing the United States government has to be a team sport. 🔥🔥Bombshell Intelligence Declassified by the Director of National Intelligence, DNI Tulsi Gabbard. This is Admiral Mike Rogers, a four-star admiral in the United States Navy, who served as the second commander of U.S. Cyber Command (USCYBERCOM) and as the 17th Director of the National Security Agency (NSA) under the Kenyan administration. On November 17, 2016, Admiral Mike Rogers traveled to Trump Tower without notifying Barry, Director of National Disgrace James Clapper, and Chief of Sedition CIA Director John Brennan — to warn then–President-elect Donald Trump that he was being overthrown. The following day, Trump’s transition team moved its headquarters to his golf property in Bedminster, New Jersey. Newly declassified emails from James Clapper: “It is essential that we (CIA/NSA/FBI/ODNI) be on the same page and are all supportive of the report — in the highest tradition of ‘that’s OUR story, and we’re stickin’ to it.’” “We will facilitate as much mutual transparency as possible as we complete the report, but time is not negotiable.” “We may have to compromise our ‘normal’ modalities, since we must do this on such a compressed timetable.” “This is one project that has to be a team sport. — Jim” Despite concerns, then-NSA Director Mike Rogers stood alone: “I’m concerned that, given the expedited nature of this activity, my folks aren’t fully comfortable saying they have had enough time to review all of the intelligence to be absolutely confident in their assessments.” In other words: how’s that for a $1,776 billion fund—for weaponizing the single most powerful intelligence agencies on the planet to overthrow the United States government in 2016 and a sitting president in 2017.

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If a prominent Indian public figure such as Major Samar Toor were targeted inside/out of India by a foreign intelligence service like Pakistan’s ISI, the consequences would likely be extremely serious at multiple levels — diplomatic, intelligence, military, legal, and political. Historically, India treats attacks on high-profile defence-linked individuals very differently from ordinary criminal incidents, especially when there is evidence of foreign-state involvement. Possible Indian responses could include: Expansive counter-intelligence operations by agencies such as the Research and Analysis Wing, Intelligence Bureau, and the National Investigation Agency. Diplomatic escalation against Inter-Services Intelligence and the Pakistani state through international forums. Increased security crackdowns on suspected espionage or proxy networks operating in India. Covert retaliation or disruption operations targeting hostile networks believed responsible. Greater security protection for defence commentators, veterans, strategic technologists, and drone-sector innovators. India’s response doctrine over the past decade has increasingly emphasized: deterrence, attribution, cross-border accountability, and asymmetric response capability. Examples often cited in public discourse include the Indian responses after: 2016 Uri attack 2019 Pulwama attack In both cases, India demonstrated willingness to respond beyond purely diplomatic measures. From a strategic perspective, individuals who: influence public opinion, contribute to defence modernization, support indigenous drone ecosystems, or strengthen military-civilian strategic awareness are often viewed as “national strategic voices.” Any credible threat against such individuals would likely trigger enhanced surveillance, protection, and intelligence monitoring.

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