Saturday, September 26, 2026

'A Terrorist Country Is Asking Me That Question': EAM Jaishankar's Fiery Reply To Pakistani Journalist At UN Briefing In New York


External Affairs Minister S Jaishankar delivered a sharp and unequivocal response to a Pakistani journalist who attempted to interrupt a media briefing at the United Nations headquarters in New York.

Addressing reporters alongside Liberia's Minister for Foreign Affairs, Sara Beysolow Nyanti, on behalf of the Group of Friends on Safety and Security of Shipping and Seafarers, Jaishankar was speaking during the sidelines of the 81st session of the UN General Assembly.

The event had been explicitly outlined as a remarks-only interaction beforehand. However, towards the close of the briefing, the Pakistani reporter interjected and questioned when the Indian government would stop sponsoring terrorism in Pakistan.

Jaishankar firmly dismissed the heckling remark, stating, "A terrorist country is asking me that question. Come on."

India's Permanent Representative to the UN, Harish Parvathaneni, immediately stepped in to reinforce the minister's statement, informing the journalist that he had received his answer loud and clear.

This intense exchange occurred shortly after an Indian journalist confronted Pakistani Prime Minister Shehbaz Sharif upon his arrival at the UN building, asking him when Pakistan would cease harbouring terrorists.

Jaishankar is currently heading the Indian delegation in New York during the UNGA High-Level Week, where he is scheduled to address the High-Level Session on Saturday following a series of bilateral and plurilateral meetings.

India has consistently asserted its position against cross-border terrorism, calling on Islamabad to execute verified and credible actions to dismantle terrorist networks operating from its soil.

New Delhi has maintained that its military action under Operation Sindoor, launched following the 22 April 2025 Pahalgam terror attack which resulted in the tragic deaths of 26 civilians, was a legitimate exercise of its right to self-defence. Operation Sindoor specifically targeted terror infrastructure across Pakistan and Pakistan-occupied Jammu and Kashmir.

The severe nature of the Pahalgam attack received widespread international acknowledgment, featuring prominently in official outcome documents across multiple global platforms, including a UN Security Council press statement issued in April 2025.

The Resistance Front (TRF), an outfit that India identifies as a proxy for the Pakistan-based Lashkar-e-Taiba, was formally designated as a Foreign Terrorist Organisation and Specially Designated Global Terrorist by the United States on 18 July 2025.

India has maintained TRF's direct involvement in the Pahalgam tragedy, a link that was also highlighted in the 36th monitoring report of the UN Security Council's 1267 Sanctions Committee released in July last year.

Furthermore, Pakistan's history of being placed on the Financial Action Task Force grey list—specifically during its extended monitoring period between June 2018 and October 2022—required it to disrupt terror financing channels and prosecute individuals linked to militant networks.

India continues to highlight that sustained international pressure and FATF scrutiny forced Pakistan to take enforced action against prominent terrorists, including key perpetrators associated with the 2008 Mumbai terror attacks.

ANI


Game-Changing Tech: India Harnesses Private Industry To Build Indigenous Hyper-Velocity Railgun


India is advancing towards the development of an indigenous electromagnetic launcher capability by establishing fresh industry partnerships, ANI news agency reported.

Heavy Vehicles Factory in Avadi has issued expressions of interest to procure essential components for an Electromagnetic Launcher system.

The Defence Research and Development Organisation aims to engineer a railgun that fires projectiles at ultra-high velocities. Significant hurdles remain, particularly around power generation and severe barrel wear, which necessitate cutting-edge technological solutions.

This initiative signifies a shift to move the technology past lab-scale research into industrial manufacturing. Armoured Vehicles Nigam Limited published the first expression of interest, seeking an industrial partner to design, develop, and supply an EM launch barrel assembly alongside its electrical accessories.

A second notice was released the following day for the design, development, and supply of the barrel's platform and drives. While exact weapon configurations and performance metrics are undisclosed, these simultaneous tenders indicate concurrent work on the mechanical mountings, launcher, and electrical systems.

Unlike traditional artillery relying on chemical propellants, an electromagnetic railgun operates purely on electrical power. The system passes a high-current pulse through two parallel conductive rails and a moving armature. This creates an intense electromagnetic force that propels the projectile down the barrel at unprecedented speeds.

The Defence Research and Development Organisation has been building this capability by focusing on high-power energy systems, specialised rails, protective coatings, switching devices, and precise targeting systems.

Testing at facilities like the Centre for Electromagnetic Launch Technology in Pune previously established a 10-megajoule pulsed power bank, enabling hyper-velocity launches above 2,000 metres per second for lighter test projectiles.

The scope of this program is highly ambitious. The Defence Research and Development Organisation envisions a 100-megajoule railgun system capable of launching an 18-kg payload at speeds exceeding 2,000 metres per second. High-velocity tank rounds reach speeds up to 1,780 metres per second. Long-term developmental goals include potential calibres up to 155 mm and strike ranges between 100 km and 400 km.

The technology offers key military benefits for naval strike roles, air defence, and anti-ship warfare by vastly reducing flight duration and simplifying volatile on-board ammunition storage. 

Operationalising the weapon presents formidable challenges. Delivering enormous electrical pulses requires high-capacity capacitor banks and advanced switching technology.

Extreme thermal and electrical stress creates severe rail and barrel wear. To solve this, friction-reduction coatings and erosion-resistant materials are being researched alongside high-mobility vehicle mountings and recoil systems led by the Armament Research and Development Establishment.

Insights from this development can directly assist the Electromagnetic Aircraft Launch System project, which aims to launch fixed-wing aircraft from future indigenous aircraft carriers.

India joins a select group of nations publicly pursuing military railgun technologies, including the United States, China, Japan, Turkey, France, and Germany.

The expressions of interest represent a meaningful transition towards industrial partnership, though mastering power generation, repeat-fire durability, and component wear remains the decisive test for operational deployment.

Agencies


Indian Navy Seeks Indigenous Harbour Defence System To Secure Four Key Naval Bases


The Indian Navy has issued a Request for Proposal for an Indigenous Harbour Defence System, or IHDS, to replace its legacy Integrated Underwater Harbour Defence and Surveillance System at Mumbai, Karwar, Kochi and Visakhapatnam.

The proposed system is intended to create an integrated, indigenous surveillance and command-and-control network around four of India’s most important naval hubs, strengthening protection against surface, subsurface and asymmetric threats.

The IHDS will combine coastal surveillance radars, electro-optical and infrared suites, diver-detection sonars, unmanned aerial vehicles and a centralised command-and-control architecture.

Its command-and-control system is required to handle more than 600 surface tracks and over 50 subsurface tracks simultaneously. This capacity will enable operators to maintain a consolidated operational picture across a busy harbour environment containing naval vessels, merchant shipping, fishing craft and other contacts.

The requirement reflects the need to distinguish legitimate activity from potentially hostile or suspicious movement in real time, while allowing naval security teams to assess and respond to threats rapidly.

The sonar network must provide 360-degree underwater surveillance around protected naval installations and harbour approaches.

It must detect divers at ranges of 500–700 metres, swimmer delivery vehicles at 1 km and midget submarines at up to 1.5 km. These capabilities are aimed at countering covert underwater intrusions against warships, jetties, submarines, fuel facilities and other critical naval infrastructure.

The sonar requirement is particularly significant because divers, underwater vehicles and small submarines can exploit the cluttered acoustic environment of ports and shallow coastal waters to approach high-value assets undetected.

The Navy plans to deploy 13 sonar systems under the IHDS programme, forming the underwater detection layer at the four selected locations.

The surface-surveillance element will include five X-band radars with a detection range of at least 150 km. These radars will be required to monitor vessel movement beyond immediate harbour limits and provide early warning of approaching contacts.

X-band radar is suited to detecting and tracking smaller surface craft, including fast boats, in coastal and harbour environments. Its inclusion indicates that the IHDS will cover both close-in security and wider maritime approaches.

Five electro-optical and infrared surveillance suites will complement radar and sonar coverage. The suites are expected to use medium-wave infrared, short-wave infrared and day cameras to provide round-the-clock visual identification.

The electro-optical systems must be able to detect boats at ranges of up to 20 km. The multi-spectral arrangement will support target identification in daylight, darkness, haze and other challenging coastal-weather conditions.

The proposed system will also include vertical take-off and landing unmanned aerial vehicles, providing an airborne surveillance component for harbour-security operations.

The VTOL UAVs are required to operate at ranges of 20–25 km and remain airborne for at least two hours. They could be used to investigate radar contacts, monitor harbour approaches, support patrol craft and provide visual confirmation of suspicious activity.

The indigenous IHDS is expected to replace the older IUHDSS architecture, which integrated radars, electro-optical cameras and sonars to establish real-time awareness around naval harbours. The existing system was designed to detect, locate and track threats including small boats, submersibles, swimmer delivery vehicles, divers and swimmers.

The Navy inaugurated an IUHDSS at Mumbai in 2017, describing it as a major step in strengthening harbour defence and security against asymmetric threats. Its sensors were positioned to provide comprehensive surveillance and analysis of activity in Mumbai Harbour.

A similar system was commissioned at Port Blair in February 2024, where the Navy said it could detect, identify and track surface and underwater targets near the naval jetty, underlining the continuing importance of layered harbour protection at strategically significant naval facilities.

By seeking an indigenous successor system, the Navy is placing emphasis on domestic integration of sensors, data links, command software, unmanned systems and support infrastructure. The programme could offer Indian industry an opportunity to develop a scalable harbour-security solution for future naval bases and other sensitive maritime facilities.

Agencies


India Revamps Infantry Small-Arms With Indigenous Rifles And Modern Carbines


India is modernising the small-arms arsenal used by its soldiers, with a focus on newer weapons, improved equipment and greater domestic manufacturing. The effort is part of a broader push to strengthen infantry capabilities, reduce dependence on imports and equip troops with more modern battlefield systems, WION reported.

The Indian Army is phasing out the legacy INSAS 5.56 mm assault rifle, which has served for over two decades but faced criticism for reliability and performance issues. It is being replaced by a dual-rifle strategy centred on the American SIG-716i battle rifle and the Russian-designed AK-203, now manufactured in India as the 'Sher'.

Over 66,400 SIG 716i rifles are already in service, with an additional 73,000 on order. Initially intended only for frontline units, the SIG 716i is now being issued to all infantry battalions, including those at peace stations, to rapidly upgrade firepower across the force.

Simultaneously, India is indigenising the AK-203 through Indo-Russian Rifles Private Limited (IRRPL) at Korwa in Uttar Pradesh. More than 53,000 AK-203 rifles have been delivered, and a total order for 6,01,427 units places it as the future standard service rifle of the Army. The first batches were imported, but recent deliveries are fully 'Made in India', marking a significant milestone in self-reliance.

In a major close-quarters combat upgrade, the Ministry of Defence awarded a ₹2,770 crore contract in December 2025 for 4.25 lakh 5.56×45 mm Close Quarter Battle (CQB) carbines. The deal, split between Israeli-Indian joint venture PLR Systems and Bangalore-based Bharat Forge, will replace ageing 9 mm sub-machine guns from the 1950s. Deliveries are scheduled to begin in 2026 and conclude by 2028.

The push for domestic manufacturing has accelerated following the corporatisation of the Ordnance Factory Board into seven defence public sector undertakings. Private players such as SSS Defence, Kalyani Strategic Systems and Adani Defence have entered the small-arms segment, designing and producing export-grade weapons entirely within India.

DRDO has also unveiled a new 6.8 mm prototype assault rifle, aiming to balance the low recoil of 5.56 mm rounds with the stopping power of 7.62 mm systems. This development aligns with global trends and signals India's ambition to move beyond licensed production toward indigenous calibre innovation.

The modernisation drive forms part of the broader Future Infantry Soldier As a System (F-INSAS) program, which seeks to equip soldiers with advanced weapons, protection gear, and digital systems for networked, multi-domain warfare. The transition reflects a strategic shift from import dependency to a robust, diversified and increasingly self-sufficient small-arms ecosystem.

Agencies


Indian Navy Begins Conversion of Six Patrol Boats Into Autonomous USVs


The Indian Navy has begun converting six patrol and support boats into fully autonomous Unmanned Surface Vessels (USVs) under a contract awarded to Pune-based marine-automation specialist Accurate Industrial Controls.

The contract was signed in 2022. Accurate has now completed the autonomy-stack development program, including five audited milestones, allowing the initial vessel-conversion phase to begin in September 2026.

Work on the first three boats is under way at the Naval Dockyard, Mumbai, following a feasibility assessment of the selected vessels.

The initial batch includes one 13-metre Fast Interceptor Craft (FIC), intended for coastal reconnaissance, and two 23-metre Immediate Support Vessels (ISVs).

The ISVs are designed to operate in open and mid-ocean waters alongside frigates and other major naval assets. Each has a stated operational range of 400 nautical miles.

The remaining three vessels under the six-boat contract will be converted in subsequent phases.

All six craft will receive Pune-based Accurate Industrial Control’s indigenous Intelligent Situational Awareness and Collision Avoidance, or ISACA, autonomy system.

ISACA combines radar, an inertial-navigation system, electro-optical and infrared sensors, remote command-and-control capability, and 360-degree situational awareness.

Its edge-computing architecture processes sensor data on board, enabling autonomous operation without an internet connection, cloud dependence, or a continuously embarked crew.

The system can interface directly with Mercury, Cox, and CAN/MODBUS-based propulsion equipment. Actuator-based integration also allows it to control steering and propulsion on vessels fitted with non-digital machinery.

Before receiving approval for operational conversions, Accurate built and tested two prototype USVs: a 13-metre interceptor craft and a five-metre search-and-rescue workboat.

Working with the Indian Navy, the two demonstrators completed 2,500 hours of sea, river, and controlled-water trials. These trials tested autonomous navigation and collision-avoidance performance, including demanding high-speed situations.

The Indian Register of Shipping has certified the ISACA stack to the IRS AUTN 4-R(N) standard following sea trials. The certification confirms compliance with the International Maritime Organisation’s International Regulations for Preventing Collisions at Sea.

An earlier 13-metre patrol boat fitted with ISACA at Mumbai’s SHM Shipyard also received certification after trials in the Arabian Sea off Karwar.

The Navy’s support included a guided development framework and controlled trial areas, helping Accurate validate the system under realistic maritime conditions.

Accurate says autonomous vessels fitted with ISACA could deliver persistent, round-the-clock maritime surveillance, coastal reconnaissance, and search-and-rescue support while keeping personnel away from high-risk zones.

The company also says the system’s low computing and energy requirements may reduce fuel consumption and operating costs, while millisecond-level response times support rapid decision-making.

Accurate intends to offer the ISACA autonomy stack to allied navies and coastguards for export, with potential interest identified in North Africa and the Middle East. It is also examining training and simulator partnerships with European organisations to support wider USV adoption.

Agencies


Gliders India Seeks Industry Partners For 19-Ton G-11 Heavy-Drop Platform For C-130J And C-17

A C17 Heavy-Lift aircraft dropping Mahindra AXE Light Military Utility Tactical Vehicle

Gliders India Limited’s Ordnance Parachute Factory at Kanpur is seeking industry partners to develop, manufacture and qualify the G-11 Heavy-Drop Platform, intended for air-dropping loads of up to 19 tons.

The platform is being developed for operations from the Indian Air Force’s C-130J Super Hercules tactical airlifters and C-17 Globemaster-III strategic transport aircraft.

A heavy-drop platform enables military stores, vehicles, engineering equipment and other outsized cargo to be delivered by parachute where an airfield is unavailable, unusable or exposed to hostile action.

The proposed collaboration is expected to cover design development, prototyping, manufacturing, ground testing, airworthiness-related assessment and qualification of the platform for operational use.

The requirement points to the need for an indigenous aerial-delivery system capable of handling heavier payloads for tactical and strategic airlift missions.

The C-130J can support tactical insertion and resupply missions from relatively short or austere airstrips, while the C-17 provides substantially greater strategic lift capacity and can transport heavy equipment over long distances.

A common or compatible heavy-drop solution for both aircraft could give the Indian Armed Forces greater flexibility in sustaining forces deployed in remote, mountainous, disaster-affected or operationally contested areas.

The initiative could also reduce reliance on imported heavy airdrop equipment and associated certification support, while creating opportunities for domestic specialists in aerospace structures, textile systems, parachutes, restraint equipment, release mechanisms and cargo-handling systems.

Gliders India Limited, a Ministry of Defence undertaking headquartered at Kanpur, specialises in military parachutes, cargo systems and aero-sport equipment. The company has also developed the indigenous ADC-150 air-droppable container with DRDO for delivery of 150 kg payloads.

Agencies


TDB-DST Funds Agnikul’s Agnibaan Reusable Launch Vehicle With ₹200 Crore


India has taken a major step towards developing fully reusable space transportation systems, with the Technology Development Board (TDB) and the Department of Science and Technology (DST) signing an agreement with Chennai-based Agnikul Cosmos Private Limited. Under the agreement, Agnikul Cosmos will receive ₹200 crore in financial support through the Research, Development and Innovation (RDI) Fund, announced PIB.

The funding will support the development of the Agnibaan Reusable Launch Vehicle, or Agnibaan RLV. The project aims to advance the vehicle’s technology from Technology Readiness Level (TRL)-4 and above to TRL-8, moving it closer to a mature and deployable system.

The proposed launch vehicle is intended to go beyond the conventional approach of recovering only the first stage of a rocket. Instead, Agnibaan RLV is being designed around full-system reusability, with the objective of enabling the recovery and repeated use of major elements of the launch vehicle.

The architecture is expected to support high-frequency and repeatable launches. Repeated use could help reduce launch costs, lower manufacturing expenditure and limit the creation of additional space debris.

At the centre of the proposed system is a reusable launch architecture combining a lightweight upper stage, accurate orbital insertion capabilities and a semi-cryogenic liquid propulsion system. The propulsion system is planned to provide deep-throttling and restart capabilities. Deep throttling would allow the engine to regulate thrust over a wide range, an important requirement during descent and landing. Restart capability would enable the propulsion system to be switched on again after an earlier burn.

These capabilities are particularly important for controlled descent, recovery operations and the potential reuse of the launch vehicle. The Agnibaan RLV is expected to incorporate a reusable upper-stage architecture and a dedicated descent propulsion system. The development effort will cover the technologies required for ascent, orbital insertion, descent and recovery. It will also include propulsion systems capable of restarting and operating at deeply throttled settings.

Agnikul Cosmos has already demonstrated several technologies relevant to the project through its earlier development and testing work. The company has developed Agnibaan, its indigenous orbital-class launch vehicle for small satellite missions.

It has also developed the Agnilet engine, a single-piece rocket engine manufactured using three-dimensional printing technology. The Agnilet was developed and produced in-house, demonstrating Agnikul’s focus on indigenous propulsion development and advanced manufacturing.

TDB had previously supported Agnikul Cosmos in the development and commercialisation of a modular and configurable launch vehicle for small satellite missions. The latest RDI-supported effort represents a further stage in that technology journey. The focus is now shifting from developing an orbital launch vehicle to creating a launch system designed for reusability, repeatability and improved operational efficiency.

The financial support will be provided through Optionally Convertible Debentures (OCD). This mechanism provides a form of financing that may subsequently be converted into equity under agreed conditions. The arrangement reflects the RDI Fund’s objective of supporting technically demanding projects that require sustained investment before reaching commercial maturity.

The framework also provides for long-term financing, extended tenures and milestone-linked disbursements. This structure is intended to give high-technology companies sufficient time to develop, test and validate complex systems whose commercial returns may take several years to materialise.

For Agnibaan RLV, the principal challenge will be integrating several demanding technologies into a single operational system. The vehicle will need to demonstrate reliable propulsion, accurate guidance, controlled ascent, precise orbital insertion and stable descent. It will also need to withstand the thermal, structural and aerodynamic stresses associated with repeated flight operations.

The program’s emphasis on a reusable upper stage is significant because the upper stage operates in the demanding environment of orbital flight. Recovering and reusing it would require accurate trajectory management, sufficient remaining propellant, reliable re-startable engines and a controlled return profile. A successful system would represent a more advanced approach than recovering only a rocket’s first stage.

The proposed architecture could eventually support more frequent launches for small satellites and other payloads. It may also improve flexibility for customers requiring responsive access to orbit. Lower manufacturing requirements per mission could improve launch economics if the recovered stages require limited refurbishment between flights.

However, the extent of cost reduction will depend on the vehicle’s recovery success rate, refurbishment requirements, turnaround time, payload capacity and operational reliability. The project also has potential environmental benefits.

By reusing major launch-vehicle elements, the system could reduce the number of discarded stages and limit the generation of space debris. The development of re-startable and deeply throttled propulsion could also contribute to future landing, recovery and in-space transportation applications.

The agreement strengthens the role of India’s private space industry in developing advanced launch systems. It also demonstrates how public financial support can help Indian companies move promising technologies from laboratory and demonstration stages towards operational deployment. Agnikul Cosmos’s earlier work on the Agnibaan launch vehicle and the 3D-printed Agnilet engine provides a technological foundation for the new effort.

The RDI-supported project will build on that foundation by addressing the more complex requirements of full-system reusability. The program is aligned with the RDI Fund’s identified priority area of advanced and reusable launch vehicles and propulsion innovation within space technologies. Its success will depend on sustained engineering development, ground testing, flight testing and the progressive validation of each major subsystem.

If the targeted technologies reach TRL-8, Agnibaan RLV could become an important step in India’s effort to develop indigenous, reusable and commercially efficient space transportation systems. The agreement therefore combines public-sector support, private-sector engineering capability and a national objective of strengthening India’s position in advanced space transportation.

PIB


SkyStriker Loitering Munition Executes Precision Strike During India-US Yudh Abhyas 2026


The SkyStriker loitering munition successfully executed a precision strike at the Mahajan Field Firing Range during Exercise Yudh Abhyas 2026, the Indian Army said on Saturday.

In a video shared by the Army on X, the loitering munition was seen detecting, engaging and accurately striking designated targets in a realistic operational environment.

The engagement showcased the growing role of indigenous defence technology, precision effects and unmanned systems in contemporary warfare, the Army said.

According to the Ministry of Defence, the exercise is aimed at enhancing the joint military capability of both armies for employment of Integrated Battle Groups in mountainous and semi-mountainous terrain, with emphasis on infantry-dominated operations.

It will strengthen interoperability, facilitate exchanges of best operational practices and strengthen joint planning and execution.

Technology infusion is a key focus area. The training includes the employment of drones and autonomous systems for surveillance and reconnaissance as well as the demonstration of contemporary weapon systems.

This comes as armies adapt to drone-enabled battlefields and increasingly complex multi-domain kinetic operations, it added.

The exercise provides an opportunity for both Armies to share tactics, techniques and procedures, and enhance their ability to undertake coordinated military operations across varied terrain and operational environment.

Earlier, on Thursday, US Ambassador Sergio Gor and Lieutenant General Vikrant Suresh Deshpande, General Officer Commanding, 10 Corps, witnessed a joint firing demonstration by Indian and US Army personnel at the Mahajan Field Firing Range during Exercise Yudh Abhyas 2026, highlighting the scale and sophistication of the bilateral training.

The demonstration featured the Pinaka multi-barrel rocket launcher, M777 ultra-light howitzer and Dhanush artillery system, along with AH-64E Apache attack helicopters, L70 air-defence guns and Swathi weapon-locating radars.

The US Army fielded HIMARS and M-LIDS, bringing together diverse artillery, aviation, air-defence and surveillance capabilities in a demanding field environment.

The joint training reflected the ability of both armies to plan, coordinate and execute complex activities together, while enhancing interoperability, professional trust and mutual confidence. Regular training at this scale also deepens understanding of each other's systems, procedures and tactical approaches.

Sharing his observations on X, US Ambassador to India Sergio Gor wrote, "Impressive to see U.S. and Indian forces training together at Mahajan Field Firing Range. This exercise reflects the strength of our defence partnership, trust, readiness, interoperability, and shared purpose. Proud of what @USArmy and @adgpi are achieving together."

Marking his arrival at the site, Gor also posted on X, "Just touched down at Mahajan Field Firing Range in Rajasthan for Yudh Abhyas 2026, India's largest bilateral defence exercise with any nation. Looking forward to seeing US Army and Indian troops train side by side."

The 22nd edition of the annual India-US bilateral exercise commenced on September 15 and is being conducted simultaneously at the Auli Foreign Training Node in Uttarakhand and the Mahajan Field Firing Range in Rajasthan, with around 600 personnel from each side participating.

While Auli hosts mountain warfare training, Mahajan is being used for live-fire drills and the demonstration of advanced weapons systems, including drones, autonomous platforms and long-range precision fires.

The SkyStriker, an indigenous loitering munition developed in India, is designed for high-precision, time-sensitive strikes against point targets such as enemy positions, light vehicles and radar or communication nodes, and can loiter over an area before engaging when a target is identified.

Its deployment at Yudh Abhyas underlines how loitering munitions are being integrated into combined-arms manoeuvres alongside conventional artillery, air-defence and aviation assets to create layered, networked effects on a modern battlefield.

ANI


U.S. F-35s To Deploy For The First Time In 'Tarang Shakti' Exercise As India Plans To Buy Rival Russia's Su-57 Stealth Jets


United States Air Force F-35 stealth fighters are set to participate in India's multinational Tarang Shakti 2026 air exercise, marking the first time the fifth-generation aircraft will conduct tactical missions alongside Indian fighters from an Indian airbase.

The exercise is scheduled to begin on September 26 at Jodhpur Air Force Station in Rajasthan, approximately 200 kilometres from the Pakistani border, and will continue through October 12.

The F-35s will operate alongside a broad range of Indian combat aircraft, including the Su-30MKI, Rafale, TEJAS and Mirage-2000. France is also deploying Rafale fighters, while the United Arab Emirates will participate with F-16s. The United States is expected to field six F-35A aircraft along with two KC-135 Stratotankers to support aerial refuelling operations during the exercise.

The deployment is significant for the Indian Air Force because India and France have no operational fifth-generation fighters of their own. The F-35 will therefore provide Indian pilots and mission planners with an opportunity to observe and train alongside an aircraft designed around very low observability, advanced sensor fusion and networked operations.

The exercise could give the Indian Air Force first-hand experience of how a stealth fighter integrates sensor data into a wider force and how its reduced radar signature affects the conduct of air operations.

Commenting on the exercises, Indian Vice Chief of the Air Staff Air Marshal Ashutosh Dixit observed: "We do not conduct Tarang Shakti to demonstrate what we already know. We conduct it to discover what we still need to learn."

He explained that the participation of foreign air forces allowed India to test assumptions, challenge existing procedures and examine different methods of employing air power. For the United States, the ability to operate alongside Russian-origin Su-30MKI '4+ generation' fighters is invaluable, with closely related advanced variants of the Su-30 relied on heavily by multiple potential adversaries, most notably Russia, Algeria and Belarus.

An F-35 previously landed in India in February 2025 for the Aero India Air Show, participating alongside a Russian Su-57 fifth-generation fighter. U.S. President Donald Trump at the time stated that Washington would offer the F-35 to India as part of broader efforts to increase arms exports, although this was from the outset expected to be non-viable for political reasons.

The extensive controls the United States imposes on how its fighters are utilised provide a key obstacle to the sale of even lower-end aircraft such as the F-16, with controls being even more stringent for the F-35 and exploiting the extreme centralisation of its ALIS and ODIN logistics systems.

Washington's history of seeking to pressure Delhi on geopolitical issues, including under the previous Trump administration with threats to impose economic sanctions, has further worsened prospects for a breakthrough in the export of equipment and sensitive assets such as fighter aircraft. With the F-35 and Chinese fifth-generation fighter types excluded for political reasons, the Russian Su-57 is considered effectively India's only near-term option to procure fifth-generation fighters.

In late January it was confirmed that Russian-Indian talks regarding a licence production deal for the Su-57 had reached advanced technical stages, leading multiple Indian sources to comment on the significant possibility of the aircraft equipping frontline squadrons and being heavily customised to meet local requirements.

The Russian Defence Ministry was June 2025 reported to have made an unprecedented offer to provide full access to the fighter's source code. A reported leading demand from the Indian Defence Ministry has been for the development of a twin-seat variant of the Su-57, with the development of the Su-57D variant, which recently made its first flight on May 19, allowing Russia to meet this requirement.

Agencies


Spin Craft Develops India’s First Indigenous 500cc Twin-Cylinder Two-Stroke UAV Engine


Spin Craft has developed what it describes as India’s first indigenous 500cc twin-cylinder, two-stroke engine for unmanned aerial vehicles, drones and vertical take-off and landing aircraft.

The company said the powerplant was designed, developed and manufactured entirely in-house, marking a significant domestic propulsion-development effort for larger unmanned platforms.

The 500cc engine is intended to provide a compact piston-engine option for UAV missions that require greater endurance and payload capacity than battery-powered systems can ordinarily offer.

Twin-cylinder two-stroke engines can offer a favourable power-to-weight ratio, an important consideration for fixed-wing UAVs and VTOL aircraft operating with sensors, communications equipment or cargo payloads.

Spin Craft’s wider UAV-engine portfolio is aimed at applications including intelligence, surveillance and reconnaissance, logistics, agricultural operations and maritime use. The company has highlighted domestic work in casting, precision machining, forging and electronic-control-unit integration.

The development could support India’s effort to reduce reliance on imported propulsion systems, which remain a critical component in the indigenous drone and unmanned-aircraft ecosystem.

Agencies


Strider Robotics’ M3 Quadruped Robot Tows Honda Amaze In Landmark Heavy-Payload Demonstration


Bangalore-based Strider Robotics has demonstrated the towing capability of its M3 autonomous quadruped robot by pulling a full-sized Honda Amaze.

The Honda Amaze’s engine was completely switched off during the demonstration. Nobody was seated in the driver’s seat. Two people remained inside the car while the robot pulled it. One passenger held the handbrake down as a safety precaution throughout the pull.

The demonstration showcased the traction, balance and controlled force delivery of Strider Robotics’ four-legged platform under a demanding real-world load. The M3 is an indigenous autonomous quadruped developed for industrial inspection, material handling, infrastructure monitoring and operations in difficult terrain.

Strider Robotics says the M3 has reached Technology Readiness Level-6. TRL-6 indicates that a prototype has been demonstrated in a relevant operating environment, rather than solely in laboratory conditions. This represents an important transition from foundational research and prototype engineering towards commercial validation and deployment.

The company’s wider demonstration campaign tested stable sit-to-stand recovery, controlled locomotion and movement while carrying heavy loads.

Its quadruped platform has demonstrated stability with payloads ranging from 20 kg to 40 kg. The 40 kg configuration places the platform among the higher-payload quadruped robots demonstrated in India.

The M3 prototype itself carries a 20 kg payload and has been designed and manufactured in-house.

More than 80% of its component cost is sourced from Indian content.

This indigenous content level is intended to strengthen domestic robotics design, manufacturing capability and supply-chain resilience. The robot is designed to climb stairs, traverse uneven ground and move through spaces where wheeled systems may lose mobility or be unable to operate.

Such mobility can be valuable in industrial plants, oil and gas facilities, mines, utility sites, warehouses and large infrastructure assets. In these environments, the robot can potentially carry cameras, thermal imagers, gas sensors, LiDAR units, communications equipment and other inspection payloads.

The platform is being developed alongside an AI-powered software stack for autonomous navigation, mission planning, industrial inspection, asset monitoring and analytics. The software is hardware-agnostic, meaning it can also be integrated with compatible third-party quadruped robots rather than being restricted only to Strider Robotics’ own hardware.

This approach could allow industrial customers to use the company’s inspection and autonomy software with existing robotic fleets. Strider Robotics is moving from prototype development into commercial field deployment. It has begun pilots with a major oil and gas company and an automotive manufacturer.

These pilots are expected to provide operating data from live industrial environments, enabling the company to refine navigation, inspection workflows, payload integration and system reliability. The company’s development work builds on robotics research undertaken by its founders since 2015.

Its technological roots include work at the Indian Institute of Science, Bangalore, and the Indian Institute of Technology Madras. Strider Robotics was also incubated at ARTPARK, the AI and robotics innovation hub based at the Indian Institute of Science, Bangalore.

The M3’s intended application areas include energy, mining, utilities, infrastructure, industrial safety, public safety and defence. For hazardous sites, a quadruped robot could reduce the need to send personnel into areas with extreme heat, toxic gases, unstable surfaces, confined access or difficult terrain.

The Honda Amaze pull is therefore more than a display exercise.

It demonstrates that the robot’s legged architecture, actuators, control software and structural design can generate and manage substantial force while remaining stable. Commercial usefulness will ultimately depend on performance factors beyond raw payload, including battery endurance, mission reliability, autonomous perception, weather resistance, communications range, maintenance requirements and safety certification.

Strider Robotics’ progression from research-led development to industrial pilots signals a growing effort to build capable Indian legged-robotics systems for practical inspection and material-handling tasks.

Agencies


TDB-DST Backs GalaxEye’s ₹63.84 Crore Indigenous OptoSAR Satellite Program


The Technology Development Board (TDB), under the Department of Science and Technology (DST), has signed an agreement with Bangalore-based GalaxEye Space Solutions Private Limited to support development of next-generation multi-sensor satellite technology, announced PIB.

The company will receive ₹63.84 crore under the Government of India’s Research, Development and Innovation (RDI) Fund, which is intended to accelerate private-sector R&D in strategic and emerging technologies.

GalaxEye’s project has a total approved cost of ₹247.69 crore. TDB’s assistance will be provided through Optionally Convertible Debentures, a financing instrument that can be converted into equity under agreed conditions.

The project aims to develop an indigenous multi-sensor Earth-observation satellite capable of sub-0.5-metre OptoSAR imaging. It will seek to mature the technology from Technology Readiness Level-6 to TRL-9.

TRL-6 broadly represents a prototype demonstrated in a relevant environment, while TRL-9 denotes a system that has been proven in operational use. The funding will therefore support the engineering, testing, validation and technology-maturation activities required before operational deployment.

At the centre of the project is GalaxEye’s OptoSAR approach, which combines Synthetic Aperture Radar (SAR) with electro-optical imaging in a single Earth-observation architecture.

Optical imaging can provide detailed visual information, but its performance can be constrained by cloud cover, poor illumination and night-time conditions.

SAR, by contrast, uses radar sensing and can operate day and night, including through cloud cover. Its all-weather capability can provide imagery when conventional optical satellites face visibility limitations.

By fusing SAR and electro-optical data, the proposed OptoSAR satellite is intended to offer richer, more persistent and more continuous Earth-observation data across varying weather and lighting conditions.

The satellite is designed to deliver imagery at a resolution finer than 0.5 metres. Such resolution could support detailed observation over wide areas while also enabling longer-range monitoring requirements.

Potential applications include wide-area and long-range surveillance, human and vehicle detection, and target classification. The capability could be relevant to security, disaster response, infrastructure monitoring, land-use assessment and other applications requiring dependable imaging in diverse operating conditions.

The agreement marks a significant step in India’s effort to build private-sector capability in advanced space and deep-technology systems, while reducing dependence on single-sensor imaging solutions.

PIB


US Navy Reveals Blackbeard Hypersonic Strike Missiles On Super Hornets In Flight Tests


The US Navy has released its first official footage of Blackbeard hypersonic strike missiles being carried by F/A-18E/F Super Hornets during flight-testing activity, FlightGlobal reported.

The imagery, released by Naval Air Systems Command, shows two Blackbeard rounds mounted beneath the wing of an F/A-18F Super Hornet. It confirms that the air-launched weapon has progressed into aircraft integration and captive-carry flight trials.

The footage does not confirm a powered launch from the fighter. However, it provides the clearest public indication so far that Blackbeard is moving through the flight-test and airworthiness process required for carrier operations.

Blackbeard is being developed by California-based Castelion as a long-range, air-launched hypersonic strike weapon for US Navy carrier air wings.

The missile is intended to give F/A-18E/F crews a fast, survivable standoff attack option, particularly against hostile warships protected by layered air-defence networks.

Its high-speed profile is expected to complicate an adversary’s detection, tracking and interception efforts, while allowing carrier-based fighters to launch attacks from beyond the reach of many enemy air-defence systems.

The US Navy aims to field Blackbeard in at least limited operational service by August 2028, although Castelion has previously indicated that an earlier initial operational capability could be possible.

The weapon is being developed under the Navy’s Multi-mission Affordable Capacity Effector program, which seeks to procure long-range precision weapons in substantially larger numbers than traditional high-cost hypersonic systems.

The emphasis on affordability is central to Blackbeard’s concept. Castelion has said it is targeting a per-missile cost of about ₹4.79 crore, far below the cost commonly associated with advanced hypersonic weapons.

The Pentagon has already awarded Castelion a production delivery order with a potential value of up to ₹1,917 crore for Blackbeard production.

An initial ₹418 crore order covers the manufacture, assembly, testing and delivery of 444 fully functional All-Up Rounds, including their specialised transport and storage containers.

In April, the Navy also awarded Castelion a contract worth about ₹1,006 crore to complete F/A-18 hardware and software integration, flight testing, system-safety work and airworthiness certification for carrier use.

Castelion is building production capacity at its Project Ranger manufacturing campus in Rio Rancho, New Mexico, and at its Torrance, California, facility.

The company says the manufacturing approach combines vertically integrated propulsion and guidance work with commercial production practices, allowing missiles to be built faster and in far greater numbers.

If the program meets its timeline, Blackbeard could become a significant new anti-ship and land-attack weapon for US carrier strike groups, adding a lower-cost hypersonic option to the Super Hornet’s existing strike arsenal.

Agencies


AFSPA Extended In Parts of Three North-Eastern States For Six Months


The Union government has extended the Armed Forces (Special Powers) Act, 1958, in specified areas of Nagaland, Arunachal Pradesh and Manipur for six months from October 1, following a review of the law-and-order situation.

According to Gazette notifications published on Friday, the AFSPA, which gives special powers to the Armed Forces, will remain in effect in these areas for six months from October 1, unless withdrawn earlier.

In Manipur, the Union home ministry has extended the "disturbed area" declaration across the state, excluding areas under the jurisdiction of 13 police stations in five districts.

The excluded areas are those under the jurisdictions of Imphal, Lamphel, City, Singjamei, Patsoi and Wangoi police stations in Imphal West District; Porompat, Heingang and Irilbung police stations in Imphal East; Thoubal police station in Thoubal district; Bishnupur and Nambol police stations in Bishnupur district and Kakching police station in Kakching district.

In Nagaland, the AFSPA has been extended in nine districts: Dimapur, Niuland, Chumoukedima, Mon, Kiphire, Noklak, Phek, Peren and Meluri. They have been declared "disturbed areas" under Section 3 of the Act, the notification said.

The notification also covers areas under 21 police stations in five other districts in Nagaland: Kohima, Mokokchung, Longleng, Wokha and Zunheboto.

In Arunachal Pradesh, the AFSPA has been extended in Tirap, Changlang and Longding districts.

The order also covers areas under the jurisdiction of Namsai, Mahadevpur and Chowkham police stations in Namsai district bordering Assam. The notification said the decisions followed a "further review of the law-and-order situation" in the three states.

The orders cite Section 3 of the Armed Forces (Special Powers) Act, 1958, which empowers the Central government to declare specified areas as "disturbed areas".

The extension comes amid continuing security concerns in the region, with recent reports of fresh attacks across several districts in Manipur and persistent law-and-order challenges in parts of Nagaland and Arunachal Pradesh.

The move ensures that the Armed Forces retain special powers, including the authority to conduct searches, make arrests without warrants, and use force in what the government has deemed disturbed areas, for maintaining public order.

Agencies


DRI And BSF Seize Nearly 12 Kg of Bangladesh-Route Smuggled Gold Worth ₹17 Crore


The Directorate of Revenue Intelligence, working in close coordination with the Border Security Force, has seized approximately 12 kg of foreign-origin gold valued at about ₹17 crore in a sustained crackdown on cross-border smuggling through the India-Bangladesh border, announced PIB.

The coordinated operations were carried out across West Bengal and Bihar. The recoveries included gold found at locations near the international border and gold concealed on a railway passenger.

The seizures expose the continued use of the Bangladesh route for the clandestine movement, transportation and distribution of foreign-origin gold in India.

During operations conducted on 20 and 21 September 2026, BSF personnel from the 161 Battalion recovered 27 unclaimed pieces of smuggled foreign-origin gold near the India-Bangladesh Border Road.

The recovery was made in the area under the Border Outpost at Gongra in West Bengal.

The recovered gold weighed around 3.15 kg.

Following the recovery by the BSF, the DRI took over the legal proceedings and formally seized the gold under the provisions of the Customs Act, 1962.

In a separate operation on 21 September 2026, BSF personnel of the 161 Battalion at the Border Outpost at Mahakhola recovered 10 pieces of 24-carat foreign-origin gold.

The gold, weighing approximately 1.16 kg, had been concealed near a hand pump in Hathkhola village.

The concealment location was situated ahead of the India-Bangladesh border fence, indicating an apparent attempt to move the consignment across the border through an unguarded or vulnerable stretch.

The DRI subsequently took possession of the recovered gold and seized it under Section 110 of the Customs Act, 1962. Earlier, on 10 and 11 September 2026, BSF personnel had recovered another substantial consignment near the India-Bangladesh border fence in the Border Outpost Pathergata area.

That consignment comprised 48 bars of foreign-origin gold weighing approximately 5.9 kg.

The DRI also took over and seized this gold under the applicable provisions of the Customs Act, 1962. In Patna, DRI officers intercepted a railway passenger and recovered 15 gold bars along with four small cut pieces of foreign-origin gold.

The Patna seizure weighed approximately 1.71 kg.

The passenger had concealed the gold inside cloth knee caps wrapped around both legs, demonstrating the use of body-worn concealment methods to transport smuggled gold by rail. Investigations indicated that the gold recovered from the passenger had been smuggled into India from Bangladesh.

The individual has been arrested in connection with the case.

Taken together, the recoveries from Gongra, Mahakhola, Pathergata and Patna account for the seizure of approximately 12 kg of foreign-origin gold worth around ₹17 crore. The operations underline the DRI and BSF’s continuing joint effort to identify, intercept and disrupt smuggling networks operating along the India-Bangladesh border and those involved in the onward movement of illicit gold within the country.

PIB