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Technology News Updated Jul 31, 2026

FM Sitharaman Hails India's First Flight-Proven Satellite Battery as 'Brilliant'

Union Finance Minister Nirmala Sitharaman praised Hyderabad-based space startup TakeMe2Space for its PowerBank-50, India's first flight-proven satellite battery. The battery flew aboard Skyroot Aerospace's Vikram-1 rocket during the 'Aagaman' mission on July 18, powering Cosmoserve Space's payload at 450 km altitude. This achievement earns the battery flight heritage status, a critical qualification in the space industry that boosts confidence among satellite manufacturers and insurers. The milestone is expected to reduce India's dependence on imported satellite batteries and support the growing small satellite ecosystem.

FM Sitharaman hails India's first flight-proven satellite battery as 'brilliant'

New Delhi, July 31

Union Finance Minister Nirmala Sitharaman on Friday hailed Hyderabad-based space startup TakeMe2Space after its 'PowerBank-50' became India's first indigenously developed satellite battery to earn the coveted flight heritage status.

Reacting to the milestone on social media platform X, FM Sitharaman wrote, "Brilliant! Until now, Indian satellite builders mostly had to import this critical component at high cost and long waiting times."

The achievement follows the successful deployment of the PowerBank-50 aboard Skyroot Aerospace's Vikram-1 rocket during its maiden mission, 'Aagaman', launched on July 18.

The battery powered Cosmoserve Space's experimental payload on the launch vehicle's Orbital Adjustment Module at an altitude of 450 km, performing successfully throughout the mission.

The successful flight has earned the battery the flight heritage tag, a key qualification in the space industry that validates a component's performance in orbit, according to TakeMe2Space.

Moreover, the certification significantly boosts confidence among satellite manufacturers, launch providers and insurers, who typically prefer hardware with proven spaceflight experience.

The company also said the battery pack uses high-energy-density lithium-ion cells, an intelligent battery management system, integrated cell heaters and a lightweight aluminium enclosure to withstand launch vibrations, radiation, vacuum and extreme temperature variations in space.

According to the startup, the milestone is expected to reduce India's dependence on imported satellite batteries, which are often expensive and involve long procurement timelines.

A domestically developed, flight-proven power system is expected to support the country's fast-growing small satellite ecosystem and make satellite development more affordable for startups, research institutions and universities.

TakeMe2Space said the compact battery stores more than 50 watt-hours of energy, weighs about 380 grams and is designed to power CubeSats and microsatellites for missions of up to five years in low-Earth orbit.

— IANS

Reader Comments

Sarah B

Great to see India's private space sector maturing. The flight heritage tag is crucial for any component, and this will help Indian start-ups compete in the global small satellite market. Impressive engineering, especially considering the battery packs only 380 grams.

Priya S

While this is definitely a proud moment, I wish the government would give more funding for R&D in such critical sectors. Long waiting times for imports are a real problem, but domestic innovation needs more institutional support to scale up. Congrats to the team though! 👏

Michael C

A 5-year mission life for a battery that weighs less than a standard laptop is impressive technology. This is precisely how you build a robust small satellite ecosystem. Looking forward to more Indian components earning flight heritage in the coming years.

Rohit P

Yehi hai Atmanirbhar Bharat ka asli matlab! 🇮🇳 Hyderabad startup making us proud. Reducing import dependency in niche sectors like space tech is so important. Kaash aur Indian startups is direction mein aage badhein. Proud moment for the entire country!

Kavya N

The fact that this was tested in a real orbital mission - at 450 km altitude - gives it credibility beyond theoretical design. Universities and research institutes will now have an affordable, proven power option for their satellites. This is exactly the kind of ecosystem India needs to grow in space tech.

We welcome thoughtful discussions from our readers. Please keep comments respectful and on-topic.

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