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Meet the M1 Abrams' game-changer: a 120mm smoothbore cannon! Using advanced kinetic energy penetrators & high-explosive rounds, it delivers a devastating blow. With pinpoint accuracy, crews can hit targets from over 2 miles away!

220,629 Aufrufe • vor 1 Jahr •via X (Twitter)

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🚨 OFFICIAL ANNOUNCEMENT!🚨 Pakistan🇵🇰 has officially announced to inducted China’s HQ-19 Air Defense System 🇵🇰✅🇨🇳—a true game-changer in missile defense and space warfare! 🎯 Target: Indian Ballistic Missiles (Agni Series) India’s Agni series ballistic missiles, known for their long range and nuclear capability, are among the most serious strategic threats in the region. The HQ-19 system uses advanced phased-array radars and infrared sensors to detect and track these missiles immediately after launch, often while they’re still ascending. It calculates their trajectory in real-time, enabling HQ-19 to fire its interceptor missiles that use a “hit-to-kill” kinetic impactor — meaning the interceptor destroys the target by direct collision without explosives. This technology ensures high accuracy and reliability against fast-moving, high-altitude targets like the Agni missiles. 🛰️ Anti-Satellite (ASAT) Capability HQ-19’s capability isn’t limited to missiles — it can also target and destroy satellites in low Earth orbit (LEO), including Indian military reconnaissance and communication satellites. By using high-precision tracking radars and infrared sensors, HQ-19 locks onto satellites orbiting at altitudes of 200–2,000 km. It launches interceptor missiles equipped with kinetic kill vehicles (KKV) designed to collide with satellites at extremely high speeds, destroying them through sheer impact force. This effectively neutralizes enemy space-based surveillance, communication, and navigation assets — crippling India’s space advantage. ⚙️ How Does HQ-19 Intercept? 1. Detection: Powerful radars scan the skies to identify ballistic missile launches or satellite movements. 2. Tracking & Targeting: Infrared sensors track the heat signature, while onboard computers predict the exact trajectory. 3. Interceptor Launch: HQ-19 fires a fast, maneuverable interceptor missile equipped with a kinetic kill vehicle. 4. Kill Vehicle Guidance: The kill vehicle uses onboard sensors and thrusters to adjust its path mid-flight, ensuring a direct collision with the target. 5. Destruction: The interceptor collides with the missile or satellite at extremely high velocity, destroying it through kinetic energy alone—no explosives needed. ⚡ This official procurement dramatically boosts Pakistan’s defense against India’s missile threat and space assets — signaling a new era of air and space dominance! 👉 With HQ-19, Pakistan sends a crystal-clear message: No missile, no satellite is untouchable anymore! 💪🇵🇰

Defense Intelligence

20,333 Aufrufe • vor 1 Jahr

🚨🇺🇸🇮🇷 TOMAHAWKS OVER IRAN: WHY AMERICA PULLS THE TRIGGER AND ISRAEL DOESN’T When the U.S wants to hit something far away without asking a pilot to risk becoming tomorrow’s hostage video, it reaches for the Tomahawk. A Tomahawk cruise missile launches from a submarine or warship, drops down to skim the earth, navigating mountains, rivers, and cities until it arrives at the exact building someone in Washington decided shouldn’t exist anymore. Then it erases it. No pilot. No warning. Just a very expensive message. That’s why the U.S loves them when dealing with places like Iran. Iran’s nuclear facilities, missile sites, and command bunkers are buried deep inside a country that has spent decades preparing for air attacks. A warship sitting hundreds of miles away in the Persian Gulf or Arabian Sea can launch dozens of them. The missiles slip under radar, snake through terrain, and hit multiple targets almost simultaneously. It’s warfare designed for the age of GPS and satellites: long distance, precise, and politically convenient, because when a pilot gets shot down, you have a crisis. When a missile does the job, you have a press briefing. So if Tomahawks are so useful, why doesn’t Israel have them? Part of the answer is simple: the U.S is extremely picky about who gets its most advanced long-range strike toys. Tomahawks aren’t just weapons, they’re strategic leverage. Handing them out too widely means giving allies the ability to launch deep-strike attacks thousands of miles away without American involvement. Washington prefers to keep that particular button under its own finger, but Israel isn’t exactly defenseless without them. Instead of buying Tomahawks, Israel spent decades building its own strike arsenal. Long-range aircraft, stealth capabilities, submarine-launched cruise missiles, and ballistic missiles that can reach well beyond the Middle East. The difference is that Israeli weapons tend to be designed around regional wars, not global power projection. America fights with a planetary toolbox. Israel fights with a regional one. And when the target sits deep inside Iran, hardened, defended, and politically explosive, the U.S. Navy’s cruise missiles become the cleanest way to start the fight. Which is why when the opening act of a conflict begins with sudden explosions hundreds of miles inland, there’s a good chance the culprit isn’t a jet.

Mario Nawfal

630,015 Aufrufe • vor 5 Monaten

Unique footage has emerged showing remote control of interceptor drones. The 190th Training Center of the SBS reportedly used a drone-interceptor to shoot down a Shahed UAV remotely, with the pilot located at a significant distance from the launch site. The system used was LITAVR, developed by FDrones. According to the company, an operator can control the interceptor from hundreds of kilometers away from the launch point. The F7 LITAVR is already a well-known and highly effective system. As a reminder, here are the technical details (this is all open-source information): Development of the system began in autumn 2024. It was successfully tested and officially adopted in summer 2025. Serial production and deliveries to the military started in autumn 2025. Maximum speed: 350 km/h Flight time: up to 15 minutes Equipped with two cameras: daytime and thermal imaging The officially stated tactical range is 36 km, though in practice it can reach up to 60 km and operate at altitudes of up to 9.5 km. The warhead (separately codified) weighs 500 g. Detonation can occur via kinetic impact, self-destruction upon contact with the target, or manual activation by the operator. The system uses inertial guidance without GPS and features automatic terminal guidance (“last mile” / target lock system). At present, it reportedly destroys hundreds of targets per week, including Shaheds, Gerberas, Molniyas, Orlans, Lancets, and others. What is fundamentally new? Until now, mobile air defense fire groups and frontline crews using interceptor drones required a qualified pilot on-site. It has now been successfully demonstrated that a different tactic is possible: pilots can operate from protected, remote locations. The only requirement is internet access at both the control center and the launch site. Ukraine’s defense sector continues to develop innovative solutions. 📹 Oleksii Kopytko/Facebook

Anton Gerashchenko

22,311 Aufrufe • vor 4 Monaten

The Russian FAB-3000 with Extended 200 km Glide Kit: A Devastating Precision Weapon The FAB-3000, or Fugasnaya Aviabomba 3000, represents one of Russia's most formidable unguided aerial bombs from the Soviet era, now revolutionized by modern glide kits. Originally developed in the 1950s as a high-explosive demolition weapon, the FAB-3000 weighs approximately 3,000 kilograms (6,614 pounds), with a length of 3.84 meters and a diameter of 680 millimeters. Its warhead contains about 1,370 kilograms of TNT or a similar high-explosive filler, capable of generating a blast radius exceeding 200 meters and penetrating up to 1.5 meters of reinforced concrete. Designed for strategic bombing, it was historically dropped from heavy bombers like the Tu-22M3, but its revival in contemporary conflicts stems from integration with advanced guidance systems. The key transformation comes from the Universal Module for Planning and Correction (UMPK), a tail-mounted kit produced by Russia's Bazalt Design Bureau. The standard UMPK equips the bomb with folding wings spanning up to 3 meters when deployed, a streamlined fairing for aerodynamic stability, and a satellite-navigation system using GLONASS for mid-course corrections. This converts the inert FAB-3000 into a standoff glide bomb, extending its effective range from a mere free-fall drop to 50-60 kilometers when released from altitudes of 5,000-12,000 meters. Guidance achieves a circular error probable (CEP) of 10-30 meters, allowing strikes on bunkers, fortifications, and urban targets with minimal collateral risk compared to unguided variants. The kit adds roughly 200-250 kilograms, including control surfaces and inertial sensors, and is compatible with Su-34 fighter-bombers, which carry it externally on the centerline pylon. Recent upgrades have pushed the envelope further with the jet-powered UMPK-PD variant, achieving an extended range of up to 200 kilometers. This iteration incorporates a compact turbojet engine—sourced from commercial Chinese suppliers like the SW800Pro-Y—mounted in a tubular rear section, providing thrust for powered gliding. The design features enhanced aerodynamics with a curved, sloping tail and lighter composite materials, reducing drag by 20-30%. A 12-antenna controlled reception pattern antenna (CRPA) array bolsters resistance to electronic warfare jamming, ensuring reliable terminal guidance even in contested airspace. Released from high altitudes, the bomb rotates 180 degrees post-drop, deploying wings and igniting the engine for sustained propulsion, reaching speeds of 800-900 km/h. In operational terms, the FAB-3000-UMPK-PD has been combat-tested in eastern Ukraine since mid-2025, targeting deep rear-area logistics and command nodes. Its 1.4-ton explosive yield can level multi-story buildings or crater runways, while the standoff capability shields launch aircraft from ground fire. Production ramps up at facilities like the Izhevsk Mechanical Plant, with monthly outputs exceeding 500 units. However, challenges persist: the bomb's mass limits fuel efficiency, capping practical range at 150-180 kilometers under load, and vulnerability to advanced air defenses remains a concern. Nonetheless, this evolution underscores Russia's shift toward affordable, mass-produced precision munitions, blending Cold War brute force with 21st-century lethality.

𝐃𝐚𝐯𝐢𝐝 𝐙 🇷🇺🇮🇪

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