[Answered] Critically evaluate how homegrown deep-tech innovation can drive India’s transition from an IT services hub to a product-driven technological powerhouse.

Introduction

India’s economic trajectory is undergoing a paradigm shift from low-margin IT services and low-value assembly to IP-led, homegrown deep-tech manufacturing. Backed by a ₹1-lakh-crore RDI Corpus under the Anusandhan National Research Foundation (ANRF) and a record rise in private R&D spending to 45.2%, localized innovation is becoming the cornerstone of Viksit Bharat@2047.

From Service Provider to Technology Owner

  1. India’s IT-BPO model created export earnings, employment and global integration, but primarily monetised human capital rather than proprietary technology. Deep-tech can alter this trajectory by embedding IP, patents, advanced manufacturing and standards into Indian products.
  2. The Economic Survey 2025-26 notes that India ranks strongly in research output across AI, quantum, advanced materials, biotechnology, space and defence, yet GERD remains only 0.64% of GDP, with business contributing just 41% of R&D expenditure. Thus, the challenge is converting scientific capability into commercially scalable technology. Example: GaN MMICs.

How Deep-Tech Can Transform India’s Economic Structure

  1. Mitigating Tech-Vulnerability & Sanctions Risk: Developing indigenous defense systems, quantum communications, and semiconductor IP safeguards national sovereignty against global supply chain disruptions. Example:  iDEX defense deep-tech.
  2. Sovereign Digital Infrastructure: Building localized Large Language Models (LLMs) and core telecom stacks ensures data privacy and reduces foreign software reliance. Example:  BharatGen AI model.
  3. Moving Up Global Value Chains (GVCs): Shifting from IT-BPO models to high-value product IP elevates trade surpluses and margins. Example:  NavIC chip commercialization.
  4. Derisking Patient Capital & Commercialization: The Deep-Tech Startup Policy and targeted venture funds address high gestation periods, bridging the gap between lab research and market deployment. Example:  ANRF RDI Fund.
  5. Triple-Helix Collaboration: Academia, private industry, and startup incubators are co-developing frontier hardware. Example:  IIT-Madras Brain Centre.
  6. Space-Tech & Clean-Tech Frontiers: Commercializing space launch vehicles and green hydrogen technologies positions domestic startups in high-tech export markets. Example:  Skyroot aerospace launches.
  7. Social Justice Enabler: Deep-tech can democratise sophisticated services, affordable CAR-T therapy, AI-enabled diagnostics, agricultural technologies and climate solutions turning innovation into inclusive development, rather than merely high-end industrial growth. Example: NexCAR19.

Structural Bottlenecks in the Deep-Tech Ecosystem

  1. Stagnant GERD-to-GDP Ratio: Gross Expenditure on R&D remains below ~0.7% of GDP, far lower than Israel (~5.6%) or South Korea (~4.8%). Example:  Low corporate R&D.
  2. Missing Domestic Venture Risk-Capital: High dependence on foreign venture capital leaves deep-tech startups vulnerable to global funding winter cycles. Example:  Foreign VC dominance.
  3. Institutional fragmentation: NITI Aayog identifies weak university-industry collaboration, regulatory hurdles, uneven infrastructure and fragmented innovation governance as continuing barriers.

Way Forward

  1. Mandate Public Procurement for Deep-Tech: Expand government procurement schemes like iDEX and GeM to guarantee anchor purchase contracts for local innovations. Example:  Defense procurement quotas.
  2. Streamline Technology Transfer (TTO): Standardize IP-sharing models in public universities to ease university-spinout friction. Example:  University IP spin-offs.
  3. Incentivize Corporate R&D Tax Offsets: Introduce super-deductions on corporate R&D expenditures in strategic sunrise sectors. Example:  R&D tax credits.
  4. Fund the full innovation pipeline: Use RDI and ANRF financing from basic research through prototypes, scale-up and commercialisation.
  5. Reform technology transfer: Standardise IP-sharing and spin-off rules in public institutions and strengthen Technology Transfer Offices.

Conclusion

Dr. Homi Bhabha asserted that “Technology must be developed at home to build self-reliance.” Transitioning to a deep-tech product economy is essential for India to secure tech sovereignty and drive economic expansion.

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