Wednesday, August 12, 2026

Indian Air Force Floats ₹1 Lakh Crore Tender To Acquire 60 Multi-Role Transport Aircraft: Report


TATA, Mahindra and HAL compete for ₹1 lakh Crores IAF transport aircraft program

The Defence Ministry has issued a tender worth approximately ₹1 lakh crore to acquire 60 multirole transport aircraft for the Indian Air Force, Money Control reported.

This initiative is part of a wider effort to replace the IAF’s ageing cargo aircraft fleet and strengthen its tactical and strategic airlift capabilities.

Officials have confirmed that Indian companies will play the lead role in the program, ensuring significant domestic participation in manufacturing.

Mahindra Defence has partnered with Brazil’s Embraer to offer the C-390 Millennium transport aircraft. TATA has joined forces with Lockheed Martin to propose the C-130, which is already in service with the IAF for special operations.

Hindustan Aeronautics Limited (HAL) is also in contention, with plans to collaborate with original equipment manufacturers to build the aircraft in India. This competitive field highlights the growing emphasis on joint ventures between Indian defence firms and global aerospace giants.

Under the program, around 20 per cent of the aircraft will be inducted in fly-away condition, while the remaining majority will be manufactured domestically. More than 60 per cent indigenous content is expected, covering structural assemblies, avionics, and systems integration.

HAL is expected to play a central role in ensuring that the aircraft are built in India through these joint ventures, thereby boosting local aerospace capabilities.

The Indian Air Force currently operates 12 C-130J Super Hercules aircraft, which have been deployed extensively for special operations, humanitarian missions, and tactical transport. In parallel, the IAF is working with Airbus on the C-295 transport aircraft program, with around 70 aircraft planned for induction. Most of these will be manufactured in India, further consolidating the country’s transport aviation ecosystem.

The tender for 60 transport aircraft comes alongside other major modernisation efforts. The IAF has already issued a tender for 114 Rafale fighter jets to expand its combat fleet. Additionally, plans are underway to induct more than 100 trainer aircraft to replace the Hawk jet trainers, thereby enhancing pilot training capacity in line with the growing number of fighter squadrons.

The new Medium Transport Aircraft (MTA) fleet may also be configured for aerial refuelling roles, expanding their utility beyond troop and equipment transport.

This would provide the IAF with greater flexibility in sustaining long-range operations and enhancing its rapid deployment capability across diverse theatres, including high-altitude regions and forward bases.

This tender represents one of the largest transport aircraft acquisition programs in India’s defence history. It underscores the government’s commitment to indigenisation, joint ventures, and strengthening the aerospace industrial base under the Aatmanirbhar Bharat vision.

The outcome of this competition between TATA, Mahindra, and HAL will shape the future of India’s military transport fleet for decades to come.

Agencies


IAF Launches Global Hunt For Ageing Hawk Successor To Train Future Fighter Pilots


The Indian Air Force has initiated the long-awaited process to replace its Hawk MK-132 advanced jet trainers, issuing a Request for Information to both Indian and global manufacturers for around 150 aircraft, The New Indian Express reported.

These Stage-III (F) trainers will be the final step before pilots move into operational fighter squadrons. They are expected to familiarise young pilots with airborne radars, electronic warfare systems and beyond-visual-range missiles before they graduate to frontline fighters such as the Rafale and Tejas, and eventually the Advanced Medium Combat Aircraft.

Responses to the RFI are due by October 5, with trials to be conducted in India on a no-cost-no-commitment basis. The program remains at the market-sounding stage, with the RFP scheduled for December 2027.

Deliveries are to be completed within 60 months of the contract’s effective date, meaning the first aircraft is unlikely to reach a training base before the mid-2030s. The IAF has specified “Buy (Indian) or better” as the preferred procurement category, requiring manufacturers to detail the scope of technology transfer they can offer.

Foreign contenders are expected to include Leonardo’s M-346 Master and Korea Aerospace Industries’ T-50 family, while Hindustan Aeronautics Ltd.'s proposed HLFT-42 is the principal Indian option. The procurement will follow a single-stage, two-envelope process, with technical and commercial bids submitted separately. Aircraft that clear technical evaluation will undergo field trials in India before the contract is awarded to the lowest technically compliant bidder.

The IAF has contracted 106 Hawk MK-132 aircraft in two tranches. The first contract in 2004 covered 66 aircraft, with 24 supplied directly from the UK and 42 licence-produced by HAL. A further 40 were contracted in 2010.

The sanctioned strength was 106, while the Parliamentary Standing Committee on Defence recorded 104 in 2017-18. The figure of 123 includes 17 aircraft ordered for the Indian Navy. The Hawk entered service in 2008 and has been the principal Stage-III trainer for nearly two decades.

The need for a successor is not simply about ageing airframes. The combat environment has changed substantially, with modern fighters relying on networked sensors, electronic warfare, long-range missiles and sophisticated data links.

The IAF wants these capabilities reflected in the new trainer. The global Hawk production line has closed, and the UK has also issued an RFI for a successor, pursuing Boeing’s T-7 training system in partnership with BAE Systems and Saab.

India’s experience with indigenous trainer programs has been marked by delays. The HTT-40 basic trainer, cleared for 106 aircraft in 2020 and contracted for 70, saw its first series-production aircraft fly only in October 2025, eight years after its prototype.

Delays in Honeywell engine supply highlighted dependence on imported components. Similar vulnerabilities exist with the TEJAS MK-1A, which faces delays in GE Aerospace engine deliveries. The HJT-36, renamed Yashas, has been in development for two decades, while HAL’s HLFT-42 remains at the design stage.

The new trainer is expected to incorporate advanced features. The RFI calls for fly-by-wire controls, a glass cockpit with configurable HOTAS, navigation integrating NavIC with GPS and GLONASS, and zero-zero ejection seats.

The aircraft must be resistant to departures and capable of automatic recovery. Embedded simulation is a major shift, with requirements for virtual avionics, electronic warfare suites, and missile seeker head simulation. A secure data link will connect the aircraft with a full-motion dome simulator and scenario generator in a Live-Virtual-Constructive environment, with holographic debriefing support.

Operational requirements include hot refuelling and rearming within 30 minutes, engine changes within an hour, AI-based predictive maintenance and open architecture for future upgrades.

The IAF continues to operate with 29 fighter squadrons against an authorised strength of 42.5, limiting the use of frontline aircraft for training. The new trainer is intended to bridge the gap between current fighters and next-generation combat aircraft, while reducing pressure on operational squadrons.

Agencies


Astra Microwave Emerges As Lowest Bidder For AMCA Radar AAAU


Astra Microwave Products has emerged as the lowest bidder (L1) for the Active Antenna Array Unit (AAAU) to equip four radar prototypes for India’s Advanced Medium Combat Aircraft (AMCA), with Bharat Electronics Limited (BEL) positioned as L2.

This marks a critical step in the DRDO-LRDE led radar development program under ADA’s framework, with contract finalisation expected within a month.

Astra Microwave’s selection as L1 bidder underscores its growing dominance in India’s indigenous radar ecosystem. The AAAU is the technological core of an Active Electronically Scanned Array (AESA) radar, housing hundreds to thousands of transmit/receive modules that enable electronic beam steering without mechanical movement.

This allows simultaneous multi-target tracking, rapid mode switching, and resilience against electronic jamming. For the AMCA, which is India’s flagship fifth-generation stealth fighter project, the AAAU will be pivotal in ensuring long-range detection and survivability against advanced threats.

The bidding process specifically covers the development of AAAU components for four initial radar prototypes. These prototypes will form the backbone of the AMCA’s sensor suite, enabling integration testing and validation before full-scale production.

The Electronics and Radar Development Establishment (LRDE), under DRDO, is steering the radar development, while the Aeronautical Development Agency (ADA) oversees the broader aircraft program. This layered leadership ensures that radar development aligns seamlessly with airframe and mission system requirements.

The announcement was made during Astra Microwave’s Q1 FY27 earnings call, where company leadership confirmed its emergence as L1. The formal contract development is anticipated to be finalised within a month, positioning Astra Microwave to begin work on the AAAU prototypes.

BEL, ranked as L2, remains a key partner in India’s radar ecosystem and may contribute to integration and production scaling once the prototypes are validated.

This development mirrors Astra Microwave’s earlier success in securing major contracts for the Uttam AESA radar, including a ₹2,205 crore order from Hindustan Aeronautics Limited (HAL) for 122 AAAUs and 121 Interface Frames.

The company’s proven track record in delivering radar subsystems for TEJAS MK-1A, Su-30MKI upgrades, and AEW&C platforms strengthens confidence in its ability to meet AMCA’s demanding requirements.

The AMCA project itself represents India’s most ambitious aerospace initiative, aimed at producing a stealth-capable, multirole fighter with advanced avionics, sensors, and weapons integration.

The radar system, with its AAAU at the core, will be critical in providing the aircraft with situational awareness, electronic warfare resilience, and precision targeting capabilities. Successful execution of the AAAU prototypes will mark a decisive milestone in the AMCA’s path toward flight testing and eventual induction.

Astra Microwave’s emergence as L1 bidder not only reinforces its role as a leading private-sector defence electronics supplier but also highlights India’s broader push for self-reliance in advanced military technologies. With the AMCA radar prototypes now moving closer to development, India is set to strengthen its indigenous capabilities in fifth-generation fighter technology.

Agencies


From 36 To 176: The Strategic Logic Behind India’s Massive Rafale Push


India’s Rafale Expansion: 114 jets to bridge fighter gap and boost domestic aerospace program

India has moved closer to acquiring 114 Rafale fighter jets, with Dassault Aviation submitting its technical and commercial proposal for a deal worth ₹3.25 lakh crore, Times of India reported.

This proposal follows India’s Letter of Request issued in May and envisages extensive local production and technology transfer under the Intergovernmental Agreement framework.

The Defence Acquisition Council, chaired by Defence Minister Rajnath Singh, had already accorded Acceptance of Necessity in February, and final approval will rest with the Cabinet Committee on Security led by Prime Minister Narendra Modi.

The acquisition is intended to address the Indian Air Force’s shortage of fighter squadrons and bridge the gap until indigenous platforms such as the TEJAS MK-2 and Advanced Medium Combat Aircraft (AMCA) become operational.

The plan includes 18 Rafales delivered in fly-away condition and 96 assembled in India, with indigenous content rising from 30% to over 60% as production matures. Dassault will partner with Indian private-sector firms for assembly and integration, while India has sought the integration of indigenous weapons and secure data links.

Technology transfer will cover airframes, engines and avionics, with French companies Safran and Thales playing key roles. A proposed maintenance, repair and overhaul facility for Safran’s M88 engines in Hyderabad will further strengthen domestic support.

This proposal comes amid deepening India-France defence cooperation, highlighted during Prime Minister Modi’s visit to France in June, where ties were elevated to a Special Global Strategic Partnership. The Rafale itself is a twin-engine multi-role fighter capable of air superiority, interception, ground attack, reconnaissance and maritime strike.

Its delta-wing design, close-coupled canards and fly-by-wire controls provide high manoeuvrability, while its integrated avionics architecture enhances situational awareness.

The Thales RBE2-AESA radar can detect multiple targets in varied conditions, generate terrain maps and support the Meteor missile. Complementing this is the Front Sector Optronics system for passive detection and the SPECTRA electronic warfare suite, which provides multi-spectral threat detection and countermeasures.

The Rafale’s networked combat capability allows real-time information sharing with other platforms, enhancing India’s battlefield awareness. Precision targeting is enabled by the TALIOS pod, while helmet-mounted displays improve pilot efficiency. Importantly, the Rafale is built for upgrades, with India seeking the F4 standard and eyeing future F5 capabilities, ensuring longevity in service.

Its weapons include Meteor and MICA missiles for air combat, SCALP cruise missiles for deep strikes, AASM Hammer for precision ground attacks and AM39 Exocet for anti-ship missions. The aircraft’s operational experience during Operation Sindoor has reinforced its value for India.

India currently operates 36 Rafales across 17 Squadron at Ambala and 101 Squadron at Hasimara. The proposed acquisition of 114 more is crucial as the ageing MiG-21 fleet retires and indigenous fighters remain years away.

With the AMCA not expected before the mid-2030s, Rafales will provide a proven multi-role capability. If cleared, India’s Rafale inventory would rise to 176 aircraft, with 150 for the Air Force and 26 Rafale-Marine fighters for the Navy.

The naval variant, acquired under a ₹63,000 crore deal in 2025, is designed for carrier operations from INS Vikrant and INS Vikramaditya, providing fleet air defence and maritime strike capabilities.

The Make in India emphasis distinguishes this acquisition from the 2016 deal for 36 Rafales. With 96 aircraft assembled domestically, the program will create a robust aerospace ecosystem, involving Indian companies in assembly, integration, maintenance and manufacturing.

Indigenous content is expected to rise to 55–60%, with technology transfer covering critical systems. The M88 engine MRO facility in Hyderabad will add depth to India’s aerospace capabilities.

Beyond the aircraft, the program will help Indian firms develop precision manufacturing, avionics and systems integration expertise, supporting future indigenous fighter programs.

India’s Rafale fleet has already transformed its combat capability, and the proposed expansion will simplify logistics and training by standardising on a larger fleet of the same aircraft family.

The Rafale-M acquisition strengthens naval aviation while India develops its Twin Engine Deck Based Fighter. Overall, the Rafale program is not just about acquiring more aircraft but about bridging capability gaps, strengthening India’s combat fleet and deepening domestic aerospace manufacturing.

Agencies


ISRO Successfully Tests Improved SSLV First Stage Solid Booster


The Indian Space Research Organisation has successfully carried out the ground static test of an improved version of the solid booster stage, designated SS1, of the Small Satellite Launch Vehicle, announced ISRO.

The test was conducted on 11 August 2026 at the static test facility located at the Satish Dhawan Space Centre in Sriharikota.

The design improvements incorporated into the SS1 stage include an enhanced propellant burn rate in two motor segments, an optimised thermal protection system, and process refinements in the nozzle sub-system. These changes were aimed at making the stage more production friendly while also achieving a reduction in mass.

The performance of the solid motor during the test was monitored through extensive instrumentation. More than 600 parameters were measured to capture ignition, ballistics, structural behaviour, thermal response, dynamic loads, and acoustic performance.

The data collected indicated that the motor’s behaviour was very close to the predicted performance.

This static test has qualified the design improvements implemented in the first stage of SSLV. With the induction of this improved SS1, the payload capability of the SSLV is expected to be enhanced by approximately 100 kilograms to Low Earth Orbit.

The SSLV was developed by ISRO as a production friendly, quick turn-around, launch-on-demand launcher. It has already completed two successful development flights, demonstrating its utility for small satellite launches.

The Transfer of Technology to Indian industry is already underway. The SSLV is expected to be manufactured in large numbers to provide small satellite launch services to domestic and international customers.

The improvements in SS1 are part of ISRO’s broader efforts to make SSLV more efficient and competitive in the global small satellite launch market. The enhanced payload capability will allow SSLV to cater to a wider range of missions, including commercial launches for Earth observation, communication, and scientific satellites.

SSLV’s design philosophy emphasises modularity and rapid integration, enabling launch readiness within a short timeframe compared to larger vehicles. This makes it particularly suitable for responsive space missions where satellites need to be deployed quickly.

The successful test of the improved SS1 stage reinforces ISRO’s commitment to advancing indigenous launch vehicle technology. It also strengthens India’s position in the growing small satellite launch sector, which is projected to expand significantly over the next decade.

ISRO


Indian Navy To Induct Medium‑Range Loitering Munition For Ship‑Based Operations


The Ministry of Defence is now advancing plans to induct a Medium‑Range Loitering Munition specifically designed for ship‑based operations with the Indian Navy.

This initiative reflects a growing emphasis on enhancing maritime strike capabilities through indigenous unmanned systems that can deliver precision effects against both sea and land targets.

The requirements outlined for the system are ambitious. A strike range of at least 1,000 kilometres ensures that the munition can engage adversary assets far beyond the immediate maritime theatre, extending India’s reach deep into contested zones.

This range is particularly significant for naval operations, where the ability to project power across oceanic distances is critical.

Loitering endurance is set at a minimum of nine hours, allowing the munition to persist over target areas, conduct surveillance, and await the most opportune moment to strike. This persistence is vital in maritime environments, where targets such as warships or mobile land assets may manoeuvre unpredictably.

A loiter speed of at least 75 knots provides steady coverage, while an attack speed exceeding 200 knots ensures rapid terminal engagement, reducing the window for enemy countermeasures.

The operational ceiling of 15,000 feet offers flexibility in mission profiles, enabling both high‑altitude ingress and low‑level approaches depending on tactical requirements.

A circular error probable of less than one metre underscores the precision expected of the system, making it suitable for neutralising high‑value targets with minimal collateral damage.

The munition is to be equipped with both RF and SATCOM data links, ensuring robust communication and control even in contested electromagnetic environments. This dual‑link capability enhances resilience against jamming and allows operators to maintain connectivity across extended ranges. A radar cross‑section of less than one square metre further improves survivability by reducing detectability against advanced air defence systems.

The intended role of the system is to engage opportune targets at sea and on land. This dual‑domain capability is crucial for the Navy, which must be prepared to counter both surface combatants and shore‑based installations.

By integrating such munitions into ship‑based operations, India will significantly enhance its ability to conduct precision strikes without exposing manned platforms to direct risk.

Globally, loitering munitions have emerged as a disruptive category of weapons, bridging the gap between drones and cruise missiles. Systems such as Israel’s Harop and newer European concepts have demonstrated their effectiveness in suppressing enemy air defences and striking time‑sensitive targets. India’s pursuit of a medium‑range, ship‑launched variant places it among a select group of nations seeking to adapt loitering technology for naval warfare.

The emphasis on indigenous development underlines India’s broader defence industrial strategy. By fostering domestic innovation and production, the Navy aims to reduce reliance on imports and build a sustainable ecosystem for advanced unmanned strike systems.

This aligns with the national vision of self‑reliance in defence and ensures that future requirements can be met through homegrown solutions.

Operationally, the induction of such munitions would transform India’s maritime deterrence posture. They could be deployed to neutralise enemy warships, coastal infrastructure, or command centres, thereby shaping the battlespace before conventional forces are engaged.

Their relatively lower cost compared to cruise missiles also makes them suitable for mass deployment, enabling saturation attacks that can overwhelm adversary defences.

The combination of extended range, long endurance, precision, survivability, and autonomy makes the Medium‑Range Loitering Munition a formidable addition to the Indian Navy’s arsenal. Its development will not only strengthen India’s maritime strike capabilities but also reinforce its defence industrial base, ensuring that the country remains at the forefront of unmanned warfare technologies.

Agencies


India Warns Border Incidents Will Impact China Relations


India has warned that incidents along its disputed border with China are considered “most serious” and that the state of border affairs will directly reflect on the broader bilateral relationship.

The Ministry of External Affairs made this clear during its regular biweekly briefing on Tuesday, underscoring the sensitivity of frontier stability in shaping ties between the two nations.

Foreign ministry spokesperson Randhir Jaiswal did not deny that a fresh border incident had taken place. He confirmed that India had reiterated its position during a meeting of the joint military and diplomatic working committee on border affairs in August, though he declined to provide further details. His remarks signalled New Delhi’s determination to keep border issues at the forefront of diplomatic engagement.

Social media has been flooded with videos from Indian content creators alleging increased Chinese activity in Arunachal Pradesh. These claims have gone viral, though they remain unverified and cannot be independently confirmed. The circulation of such material highlights the role of public perception in fuelling tensions and shaping narratives around the disputed frontier.

Jaiswal emphasised that India once again underlined the necessity of peace and tranquillity in border areas as a prerequisite for the overall development of bilateral ties. He noted that both sides had agreed to continue using existing diplomatic and military channels to address outstanding issues and to avoid misunderstanding and miscalculation along the disputed border. This reflects the cautious approach both governments are taking to prevent escalation.

India’s Ministry of Defense and the army did not respond to requests for comment, leaving unanswered questions about the operational situation on the ground. The silence from defence authorities suggests the sensitivity of the matter and the reluctance to publicly disclose military details.

The comments come just days after officials from both countries met in New Delhi, and ahead of Chinese President Xi Jinping’s expected visit to India for the BRICS summit. India is hosting the summit as the rotating chair of the grouping, which brings together Brazil, Russia, India, China and South Africa. The timing of the remarks underscores the delicate balance between diplomatic engagement and unresolved frontier tensions.

The ministry’s statement highlights the limits of the recent thaw in ties. India has signalled that deeper engagement with Beijing will remain constrained unless peace and stability are maintained along the disputed frontier. This reflects New Delhi’s consistent position that border tranquillity is non-negotiable for the broader relationship to flourish.

China and India share a 3,488-kilometre unmarked border, which has been a persistent source of tension. Relations between the nuclear-armed neighbours are gradually recovering after the deadly clash in June 2020, when soldiers were killed in hand-to-hand combat in the Galwan Valley.

That incident marked the most serious confrontation in decades and continues to cast a shadow over bilateral ties.

Indian Prime Minister Narendra Modi met Chinese President Xi Jinping in Tianjin last August, signalling a tentative thaw in relations. The meeting was seen as a step towards normalisation, though the latest developments show that progress remains fragile and conditional on frontier stability.


The broader context is that both nations are attempting to balance competition and cooperation. While trade and multilateral engagement through platforms like BRICS continue, the disputed border remains the single most significant obstacle to a full restoration of trust. India’s latest warning makes clear that any fresh incident will directly impact the trajectory of ties with Beijing.

Agencies


India Seeks Two More Industry Partners For Indigenous Expendable Turbojet Engine


India is seeking two additional Indian industry partners to support the mass production of an indigenous expendable turbojet engine, marking a shift from technology demonstration to the creation of a broader production ecosystem.

The initiative is being pursued by the Defence Research and Development Organisation’s Gas Turbine Research Establishment, or GTRE, which is based in Bangalore and is India’s principal organisation for military gas-turbine research.

The search for additional partners follows the successful development of India’s first indigenous expendable turbojet engine in the 350-kilogram thrust class.

The engine was designed by GTRE and manufactured and assembled by Hyderabad-based Azad Engineering, which was selected as the initial industry partner.

Azad Engineering completed and delivered the first engine to GTRE on 22 July 2026. The delivery represented an important transition from laboratory development to industrial realisation.

The latest move indicates that GTRE does not intend to rely on a single private-sector company for future production. Instead, it is seeking to distribute manufacturing responsibilities among multiple Indian companies capable of producing the engine in significant numbers. This approach is expected to improve production capacity, create industrial redundancy and reduce the risks associated with depending on one supplier for a critical propulsion system.

An expendable turbojet engine is designed for a single mission or a limited number of operating hours. Unlike the engines used in fighter aircraft and transport planes, it is not required to function reliably for thousands of flight hours or to undergo repeated maintenance and overhaul cycles.  The engine is instead optimised for simplicity, compactness, reliability, affordability and ease of manufacture. Once installed in a missile, unmanned aircraft or loitering munition, the engine powers the platform during its mission and is not recovered for reuse.

This makes expendable propulsion particularly suitable for weapons and unmanned platforms where the cost of the engine must remain proportionate to the cost of the overall system. The engine developed by GTRE belongs to the 350-kilogram thrust class. Its design is based on a single-spool turbojet configuration comprising a four-stage axial-flow compressor, an annular combustor, a single-stage uncooled axial-flow turbine and a fixed-exit nozzle.

The architecture is considerably simpler than that of a modern fighter engine. It does not require the sophisticated high-temperature materials, cooling arrangements, afterburner systems, variable-area nozzles or long-life maintenance features associated with combat aircraft propulsion.

The absence of turbine cooling helps reduce design and manufacturing complexity. It also makes the engine suitable for expendable applications, in which the turbine is required to operate reliably for a short mission rather than remain serviceable for years.

The propulsion system is expected to support a range of military platforms, including cruise missiles, anti-ship missiles, jet-powered loitering munitions, target drones and unmanned aerial vehicles.

It could also be adapted for other air-breathing weapons and autonomous systems that require a compact jet engine capable of sustaining flight over considerable distances. The engine’s availability could be particularly important for India’s expanding inventory of long-range unmanned platforms and precision-strike weapons.

Many such systems depend on imported propulsion units. Import dependence can create delays, raise procurement costs and expose operational programs to export restrictions, political pressure and supply-chain disruption.

An indigenous engine would give Indian designers greater control over the propulsion system, including its dimensions, mounting arrangements, fuel requirements, control architecture and integration with the host platform.

Domestic production could also allow the engine to be modified for different missions. A missile may require a compact, low-cost engine with a short operating time, while a loitering munition or unmanned aircraft may require better endurance and fuel efficiency.

The move to identify two more industry partners suggests that GTRE is preparing for a structured production model rather than a limited batch of development engines. According to the available production plan, the broader objective is to manufacture approximately 300 engines over a period of five years.

The initial phase is expected to involve the selection of two Indian companies, with each company required to supply three engines over an 18-month period. This first stage would allow GTRE to evaluate the industrial capabilities of the selected companies before issuing a subsequent request for information covering larger production quantities.
The staged model is intended to ensure that companies are assessed not only on their ability to manufacture individual components but also on their capacity to carry out complete engine production, assembly, integration and quality assurance.

The partners will need to demonstrate competence in high-precision aerospace manufacturing.

They are likely to require capabilities in the production of compressor blades, turbine components, combustion-chamber assemblies, shafts, casings, nozzles and other parts that must operate under demanding mechanical and thermal conditions.

The manufacturing process may involve advanced machining, precision grinding, investment casting, fabrication of high-temperature alloys, surface treatment, balancing and non-destructive testing. Engine production also requires strict control over dimensional tolerances. Even small deviations in compressor or turbine components can affect airflow, vibration levels, fuel consumption and overall engine performance.

The selected companies will therefore have to establish robust inspection, traceability and documentation systems. They will also need to maintain aerospace-quality procedures throughout the production chain, including the procurement of materials, component manufacture, sub-assembly, final assembly and acceptance testing.

GTRE’s partnership with Azad Engineering demonstrated the value of combining government research and development with private-sector manufacturing expertise. GTRE retained responsibility for the engine’s design and technological development, while Azad Engineering converted that design into a manufactured and assembled engine.

The company’s role covered end-to-end manufacturing, assembly and integration. This model enabled the DRDO laboratory to focus on propulsion technology while relying on industrial expertise for production execution.

The participation of additional companies could help expand this model across the Indian aerospace sector. It could also encourage companies that have traditionally supplied aerospace components to move into higher-value system manufacturing.

India has a growing network of private firms involved in precision engineering, aerospace components, defence systems, additive manufacturing and advanced materials. However, building a complete gas-turbine engine remains substantially more demanding than producing individual parts. The real test will be whether the new partners can achieve repeatable production quality, maintain delivery schedules and manufacture engines that perform consistently across multiple batches.

The search for additional partners must also be viewed against the background of India’s long-standing difficulties in developing indigenous aircraft engines.

The Kaveri engine program, initiated to power the Light Combat Aircraft, generated valuable expertise but did not achieve the required performance for installation on the aircraft.

The experience nevertheless helped India develop knowledge in compressors, combustion systems, turbines, afterburners, materials and engine testing. The new expendable turbojet is not a replacement for a fighter engine. Its thrust level, operating profile and intended use are entirely different from those of a high-thrust afterburning turbofan required for combat aircraft.

Even so, mastering a smaller and less complex engine can help strengthen the country’s wider propulsion ecosystem. It provides opportunities to improve the domestic supply chain, train engineers and technicians, validate manufacturing processes and develop companies that may later participate in larger propulsion projects. The development also complements India’s efforts to establish industrial partners for more advanced aero-engine programs.

GTRE has separately sought an Indian development-cum-production partner for an Advanced High Thrust Class Aero Engine intended to support future combat-aircraft requirements. That effort involves far more demanding challenges, including the design and manufacture of a high-pressure core, advanced turbine materials, sophisticated cooling systems, digital engine controls and long-duration reliability.

India is also pursuing international cooperation for a high-thrust fighter engine, including discussions with major foreign engine manufacturers.

The expendable turbojet effort therefore occupies a different position within the national propulsion strategy. It offers a nearer-term opportunity to build practical production experience while the country continues to pursue much more challenging combat-aircraft engine objectives.

Another related effort involves the Small Turbo Fan Engine, or STFE, an expendable engine intended for future long-range land-attack cruise missiles. The STFE production plan reportedly envisages around 300 engines over five years, with an initial phase involving two industrial companies supplying three engines each over an 18-month period.

For India, the significance of the initiative lies in this combination of technology, industrial capacity and operational relevance. A small expendable engine may not attract the same attention as a high-thrust fighter turbofan, but it can have an immediate effect on the country’s ability to produce missiles, drones and other autonomous weapons at scale. The decision to seek two more industry partners suggests that GTRE is preparing to make that capability a sustained part of India’s defence-manufacturing base.

Agencies


PAF JF‑17s Rain Seven Bombs On Balochistan’s Surab; 30 Plus Civilians Dead; Scores Injured


Pakistan’s military under Asim Munir has once again unleashed brutal force against the citizens in Balochistan who is seeking freedom from Pakistani occupation, News18 reported.

The latest atrocity unfolded in Surab district’s Goandhan village, where an airstrike at midnight turned a celebration of independence into a massacre. On the very night when Baloch citizens were rejoicing with flags and slogans of freedom, JF-17 fighter jets descended like predators, raining explosives on sleeping families.

The devastation left 28 civilians dead, including nine children, seven women, and twelve men, while more than seventeen others were pulled out of rubble with severe injuries. The death toll is expected to rise further as many remain in critical condition.

Eyewitnesses described the horror as houses collapsed into heaps of mud and concrete, burying bodies beneath debris. Survivors clawed through ruins with bare hands, searching for loved ones, while the Pakistani administration maintained complete silence.

The brutality was not limited to aerial bombardment; local sources revealed that soldiers encircled the area before and after the strikes, subjecting civilians to torture. This pattern reflects a long-standing military program in Balochistan, where enforced disappearances, torture cells, and staged encounters have become routine. The midnight bombing, however, marks a chilling escalation, showing the army’s descent into sheer savagery.

The timing of the attack underscores Munir’s fury at the growing defiance of Baloch citizens. Just a day earlier, the province had witnessed widespread celebrations of independence from Pakistan, with streets filled by flags and chants against Islamabad’s rule.

This open defiance rattled Munir, who reportedly gave his forces free rein to crush the spirit of rebellion. The airstrike was thus not a tactical operation but a calculated act of vengeance, designed to instil fear and silence the voices of freedom.

The roots of Balochistan’s rebellion lie in decades of exploitation and neglect. Despite being rich in natural gas, gold, copper, and other minerals, the province remains mired in poverty, unemployment, and lack of basic facilities. Locals accuse the Pakistani state of plundering their resources while offering nothing in return but repression.

The China-Pakistan Economic Corridor (CPEC) has further alienated the population, as mega projects bypass local communities and benefit outsiders. The military’s heavy-handed tactics—abductions, torture, and killings—have only deepened resentment, fuelling insurgent groups and strengthening the demand for separation.

The aftermath in Goandhan village is one of utter ruin. Broken homes, scattered belongings, and lifeless bodies pulled from rubble paint a grim picture of Pakistan’s war against its own people. The silence of the authorities adds insult to injury, leaving survivors to grieve alone.

For Balochistan, this massacre is not an isolated incident but part of a larger struggle for dignity, identity, and control over its own resources. The midnight airstrike has become a symbol of Munir’s desperation to crush a movement that refuses to die.

Agencies


Bangalore Start-Up Othisis Successfully Hot-Fires 5 kN Cryogenic 3D-Printed Rocket Engine For Reusable Hopper Rocket


Bangalore-based Othisis has achieved a major breakthrough by successfully hot-firing its fully cryogenic, 3D-printed rocket engine delivering 5 kN thrust. With a total impulse of 100 kNs, this engine is set to power their reusable hopper rocket scheduled for launch and landing trials later this year, marking a significant step in India’s private space sector.

The successful hot-fire test demonstrates the maturity of Othisis’s cryogenic propulsion technology. Cryogenic engines, which use propellants stored at extremely low temperatures, are known for their efficiency and high performance. By achieving stable thrust at 5 kN, Othisis has validated the reliability of its design and manufacturing processes.

The engine is fully 3D-printed, a feature that reduces production time and cost while allowing complex geometries to be manufactured with precision. Additive manufacturing also enables rapid prototyping and scalability, which is crucial for start-ups aiming to compete in the global launch market.

With a total impulse of 100 kNs, the engine is designed to support short-duration flights for reusable hopper rockets.

These hopper systems are typically used for vertical take-off and landing demonstrations, validating reusability concepts before scaling up to larger orbital-class launch vehicles. Othisis’s upcoming hopper rocket will serve as a testbed for their reusable launch program, showcasing the potential for cost-effective and sustainable access to space.

The use of cryogenic propellants, particularly liquid oxygen and liquid methane, ensures cleaner combustion compared to traditional fuels. This reduces soot formation and thermal stress, making the engine more suitable for repeated use. Such design choices align with global trends in reusable launch systems, similar to SpaceX’s Raptor engines.

India’s private space sector has seen rapid growth in recent years, with start-ups like Skyroot, Agnikul, and Bellatrix pushing boundaries in propulsion and satellite launch technologies. Othisis’s achievement adds to this momentum, positioning Bangalore as a hub for advanced space innovation.

The company’s focus on reusability reflects the broader industry shift towards lowering launch costs and increasing mission frequency. By proving the viability of their cryogenic engine in a reusable hopper rocket, Othisis is laying the groundwork for future orbital-class vehicles that could compete in commercial satellite launches and deep-space missions.

This milestone also highlights the increasing role of private firms in complementing ISRO’s efforts. While ISRO continues to develop semi-cryogenic and heavy-lift propulsion systems, start-ups like Othisis are pioneering smaller, agile solutions that can serve niche markets and accelerate India’s presence in the global space economy.

The upcoming flight of the reusable hopper rocket later this year will be closely watched as a demonstration of India’s growing private capabilities in cryogenic propulsion. Success in this mission would validate Othisis’s technology and open pathways for scaling up to larger reusable launch vehicles.

Agencies


LeT Terror Group's Commander Qari Saeed Abdul Aziz Dies Under Mysterious Circumstances In A Mosque In Islamabad


Senior Lashkar-e-Taiba terrror group's commander Qari Saeed Abdul Aziz, a close associate of Hafiz Saeed and reportedly linked to the 26/11 Mumbai attacks, has died under mysterious circumstances at the Quba Mosque in Islamabad.

His sudden collapse after eating at an unfamiliar location has raised speculation of poisoning or targeted elimination, adding to a growing pattern of unexplained deaths of Pakistan-based terror operatives.

Qari Saeed Abdul Aziz was a senior figure in Lashkar-e-Taiba, the Pakistan-based terrorist organisation banned internationally for its role in attacks against India. He had long been associated with Hafiz Saeed since the 1990s and held a crucial operational position within the group.

His responsibilities included heading the Shoaba-e-Warasa-e-Shuhada department, which managed pensions and financial assistance for families of militants killed in encounters in Jammu and Kashmir. This welfare network was vital for sustaining morale among Lashkar cadres, making his death a significant blow to the organisation’s internal support structure.

On 8 August 2026, Qari Saeed arrived at the Quba Mosque in Islamabad to offer prayers. CCTV footage shows him carrying a bag, performing ablution, and then collapsing suddenly near the entrance as he sat to remove his footwear.

Fellow terrorists attempted to revive him with CPR, but he was declared dead at hospital. Reports indicate that he had eaten food at an unfamiliar restaurant before arriving at the mosque, fuelling speculation of poisoning. Pakistani authorities have not clarified the cause of death, leaving open questions about whether it was a medical emergency, deliberate targeting, or internal factional rivalry.

His demise comes amid a surge of mysterious deaths of Pakistan-based terror operatives. In recent months, senior figures from Lashkar-e-Taiba, Hizbul Mujahideen, and Jaish-e-Mohammad have been eliminated under unexplained circumstances.

A video released by Lashkar operative Rizwan Hanif claimed that 30 to 40 members of the organisation had been killed by “unknown gunmen” across Pakistan and Pakistan-occupied Kashmir in the past few years. He alleged Indian intelligence involvement, though no independent verification has been provided.

Qari Saeed’s reported role in the planning of the 26/11 Mumbai attacks, which killed 166 people, makes his death particularly significant. Analysts suggest that the elimination of such high-ranking operatives could indicate a systematic campaign against Pakistan-based terror networks. The lack of transparency from Pakistani authorities, however, continues to fuel speculation.

The incident has caused panic among Lashkar cadres, as the organisation faces increasing strain with the loss of senior leadership. For India, these developments reaffirm long-standing claims that Pakistan harbours terrorists, while simultaneously exposing cracks in the networks that have sustained cross-border violence for decades.

Agencies


Suspected Pakistani National Arrested By West Bengal STF Near Border


West Bengal’s Special Task Force has arrested two individuals, including a suspected Pakistani national identified as Rana Rauf alias Wahab Alam, near the India-Bangladesh border. Investigators believe he has links to Pakistan’s ISI and was involved in espionage activities, including tracking military and railway movements.

Rana Rauf, reportedly a resident of Faisalabad in Pakistan, was apprehended in Bangaon, North 24 Parganas district, following a search operation based on specific intelligence.

He had allegedly entered India illegally through Nepal in 2012 after spending some time there. Officials revealed that he subsequently settled in West Bengal and assumed the identity of Wahab Alam using forged documents such as Aadhaar and voter identity cards.

Investigators suspect Rauf maintained links with Pakistan’s Inter-Services Intelligence and collected information of potential intelligence value. His activities included photographing railway stations, tracks, and train movements, as well as monitoring the movements of armed forces. Authorities are examining electronic devices and documents recovered during the operation to determine whether this information was transmitted outside India.

The second person arrested, identified in some reports as Muhammad Izaz or Md Aziz, was taken into custody from Topsia in Kolkata. He allegedly had direct contact with Rauf and assisted him in securing fraudulent Indian identity documents and establishing a local support system.

Investigators believe he knew Rauf from Nepal and later helped him integrate into West Bengal society. Reports suggest Aziz even travelled with Rauf to Nepal on multiple occasions and married a local woman there.

Officials are scrutinising telephone numbers linked to Rauf to identify recipients of the transmitted photographs and to ascertain whether payments were made through hawala or other informal financial channels. Both suspects are being interrogated to establish whether they were part of a wider espionage network and to identify additional facilitators who may have assisted Rauf during his long stay in India.

Lawyers representing the STF told the Barasat court that Rauf, also referred to as Rana Rauf Khalid, had been tracking the movements of Army and railway officials since entering India.

Both suspects attempted to delete data from their mobile phones before being apprehended. The court has remanded them in police custody until 26 August for further investigation.

The arrests highlight the continuing threat of cross-border espionage and the use of forged documents to infiltrate Indian society.

They also underscore the importance of vigilance along the India-Bangladesh border, which has historically been exploited for illegal crossings and intelligence operations. The STF is now focusing on dismantling any broader network linked to these suspects and preventing further attempts to compromise national security.

PTI


Indian And Australian Navies Strengthen Maritime Partnership At 17th Staff Talks


The navies of India and Australia convened in Sydney from 11 to 12 August 2026 for the 17th Navy-to-Navy Staff Talks. The discussions were co-chaired by Rear Admiral Sachin Reuben Sequeira, Assistant Chief of Naval Staff (Foreign Cooperation and Intelligence), and Rear Admiral Christopher Smith, Commander of the Australian Fleet.

The talks centred on strengthening operational interoperability, expanding cooperation in capability building, and advancing training initiatives. Both sides emphasised the importance of deepening maritime collaboration to enhance the overall partnership.

The Indian Navy Spokesperson highlighted on social media that the engagement reaffirmed the shared commitment of both navies towards building a stronger and more interoperable maritime partnership. The talks also focused on increasing the complexity of bilateral exercises, ensuring that future engagements reflect the growing strategic convergence between the two nations.

These naval interactions followed the Indian Air Force’s successful participation in Exercise Pitch Black 2026, hosted at the Royal Australian Air Force Base Darwin from 20 July to 7 August. The Indian contingent included pilots, engineers, technicians, air traffic controllers, and other domain experts.

The exercise involved over 2,500 personnel and 100 aircraft from 21 partner nations, showcasing seamless coalition integration. The Indian Air Force operated Rafale fighter jets in the exercise for the first time, alongside Japan’s debut of its F-35A Lightning II fighters.

The Indian Air Force’s Media Coordination Centre described the exercise as a mission accomplished, with skies mastered and partnerships strengthened. It noted that every mission and interaction delivered mutual gains in tactics, procedures, and professional excellence.

The Ministry of Defence underscored that Pitch Black provided an excellent opportunity to validate expeditionary air operations over extended distances, enhance multinational interoperability, and strengthen professional partnerships across the Indo-Pacific region. India’s participation in previous editions in 2018, 2022, and 2024 reaffirmed its commitment to regional security and defence cooperation.

The naval talks and air force drills came shortly after Prime Minister Narendra Modi’s two-day visit to Australia in July. During the visit, he held high-level delegation talks with Prime Minister Anthony Albanese, engaged with business leaders, and addressed a large gathering of the Indian diaspora at Melbourne’s Docklands Stadium.

The event drew around 35,000 attendees and featured addresses by both Prime Minister Albanese and Victoria’s Premier Jacinta Allan, reflecting the strong people-to-people ties underpinning the bilateral relationship.

Together, these engagements illustrate the expanding scope of India-Australia defence cooperation across naval, air, and strategic domains. They highlight a shared vision for enhanced interoperability, capability building, and regional security in the Indo-Pacific.

ANI


India Hands Over Laser Radial Boats To Seychelles Defence Forces, Maritime Partnership Strengthens


India has formally handed over five laser radial-class boats to the Seychelles Defence Forces on Tuesday, further strengthening the maritime partnership between the two nations.

The handover forms part of India’s development assistance package announced during Prime Minister Narendra Modi’s State Visit to Seychelles in June this year.

The Indian High Commission in Victoria shared details of the delivery in a post on X. It stated that the boats were handed over by the High Commissioner of India to the Chief of Defence Forces of the Seychelles Defence Force, following the Prime Minister’s announcement during the #ByenveniModi visit.

The post emphasised that the boats will help build seamanship skills among SDF personnel and highlighted India’s steadfast commitment to enhancing the capacities and capabilities of the Seychelles Defence Forces.

The High Commission underscored that the delivery reflects the enduring India–Seychelles defence and maritime partnership. The provision of these boats is expected to contribute to training, operational readiness, and the strengthening of maritime security in the Indian Ocean region.

Prime Minister Modi visited Seychelles in June this year, joining the National Day celebrations as the island nation marked 50 years of Independence. He was accorded the rare distinction of being the Guest of Honour at the landmark event, becoming the first Indian Prime Minister to receive this honour.

The Ministry of External Affairs described the visit as a significant milestone in bilateral ties, noting that Prime Minister Modi departed after what it termed a “highly successful” State Visit. The visit allowed both partners to review the full spectrum of bilateral relations and agree to deepen cooperation in multiple sectors.

The leaders committed to strengthening collaboration in health, education, capacity building, digital transformation, sustainable development, social infrastructure, renewable energy, maritime security and defence. This broad agenda reflects the comprehensive nature of the partnership and India’s role as a reliable development partner.

During the visit, India and Seychelles signed 19 memoranda of understanding and agreements. These included an extradition treaty aimed at combating transnational crime, as well as provisions for development assistance. The agreements demonstrate the institutional depth of the relationship and the shared commitment to addressing regional and global challenges.

The handover of the five laser radial boats is therefore both a symbolic and practical step in advancing the partnership. It builds on India’s earlier delivery of patrol vessels, ambulances, and utility vehicles, reinforcing the multi-dimensional nature of its assistance to Seychelles. Together, these initiatives highlight India’s strategic outreach in the Indian Ocean and its enduring support for the security and development of Seychelles.

ANI


Mongolia PM Reviews Progress of India-Facilitated Oil Refinery Project


Mongolian Prime Minister N Uchral, accompanied by senior members of his cabinet, visited the strategic Oil Refinery Project construction site in Dornogovi Province on 12 August 2026. The project is being facilitated by India and has become a symbol of bilateral cooperation between the two nations.

The Prime Minister was joined by B Delgersaikhan, Minister of Road and Transport, Z Mendsaikhan, Minister of Finance, O Batjargal, Governor of Dornogovi Province, and other senior officials. They were welcomed at the site by the Ambassador of India to Mongolia, Atul Malhari Gotsurve, and Dr D Altantsetseg, CEO of Mongol Refinery.

During the visit, Prime Minister Uchral expressed gratitude to the Government of India for supporting the construction of the refinery. He praised the contribution of the 3,700 Indian engineers and workers who are engaged in the project, acknowledging their role in advancing Mongolia’s energy independence.

He assured that Mongolia would take all necessary measures to ensure the swift completion of the refinery. He further announced that the project would be granted the status of a Technological Industrial Park, underscoring its strategic importance for Mongolia’s industrial development.

According to the Embassy of India in Mongolia, 60 per cent of the construction has been completed. EPC-I, the first work package of the refinery, was commissioned in November 2024 with the active intervention of Mr Uchral, who was then Chief of the Cabinet. Construction of EPC-II, III, and IV is progressing steadily, marking significant milestones in the project’s timeline.

The refinery project is a cornerstone of India’s extended neighbourhood policy in Central Asia. It is expected to reduce Mongolia’s dependence on imported petroleum products, stabilise domestic fuel prices, and generate employment opportunities. The project also strengthens India’s strategic outreach in the region.

This development follows External Affairs Minister S Jaishankar’s visit to Mongolia in June 2026, during which he reviewed progress at the refinery site. He interacted with Indian and Mongolian workers and held high-level meetings with Mongolian leadership, including President Khurelsukh Ukhnaa and Foreign Minister Battsetseg Batmunkh.

EAM Jaishankar’s discussions focused on transforming cordial ties into tangible economic outcomes. Areas identified for enhanced cooperation included mining, clean energy, agricultural processing, education, security, and collaboration in multilateral forums. His visit reinforced the momentum established during President Ukhnaa’s earlier trip to India.

The refinery project, supported by India’s Line of Credit, is one of the most ambitious bilateral undertakings in Mongolia. Once completed, it will serve as a strategic asset, bolstering Mongolia’s energy security and contributing to regional stability.

ANI